summaryrefslogtreecommitdiff
path: root/gcc/c/c-parser.c
blob: 09cce1c092430ffdb244ba287594851caf0b69e6 (plain)
1
2
3
4
5
6
7
8
9
10
11
12
13
14
15
16
17
18
19
20
21
22
23
24
25
26
27
28
29
30
31
32
33
34
35
36
37
38
39
40
41
42
43
44
45
46
47
48
49
50
51
52
53
54
55
56
57
58
59
60
61
62
63
64
65
66
67
68
69
70
71
72
73
74
75
76
77
78
79
80
81
82
83
84
85
86
87
88
89
90
91
92
93
94
95
96
97
98
99
100
101
102
103
104
105
106
107
108
109
110
111
112
113
114
115
116
117
118
119
120
121
122
123
124
125
126
127
128
129
130
131
132
133
134
135
136
137
138
139
140
141
142
143
144
145
146
147
148
149
150
151
152
153
154
155
156
157
158
159
160
161
162
163
164
165
166
167
168
169
170
171
172
173
174
175
176
177
178
179
180
181
182
183
184
185
186
187
188
189
190
191
192
193
194
195
196
197
198
199
200
201
202
203
204
205
206
207
208
209
210
211
212
213
214
215
216
217
218
219
220
221
222
223
224
225
226
227
228
229
230
231
232
233
234
235
236
237
238
239
240
241
242
243
244
245
246
247
248
249
250
251
252
253
254
255
256
257
258
259
260
261
262
263
264
265
266
267
268
269
270
271
272
273
274
275
276
277
278
279
280
281
282
283
284
285
286
287
288
289
290
291
292
293
294
295
296
297
298
299
300
301
302
303
304
305
306
307
308
309
310
311
312
313
314
315
316
317
318
319
320
321
322
323
324
325
326
327
328
329
330
331
332
333
334
335
336
337
338
339
340
341
342
343
344
345
346
347
348
349
350
351
352
353
354
355
356
357
358
359
360
361
362
363
364
365
366
367
368
369
370
371
372
373
374
375
376
377
378
379
380
381
382
383
384
385
386
387
388
389
390
391
392
393
394
395
396
397
398
399
400
401
402
403
404
405
406
407
408
409
410
411
412
413
414
415
416
417
418
419
420
421
422
423
424
425
426
427
428
429
430
431
432
433
434
435
436
437
438
439
440
441
442
443
444
445
446
447
448
449
450
451
452
453
454
455
456
457
458
459
460
461
462
463
464
465
466
467
468
469
470
471
472
473
474
475
476
477
478
479
480
481
482
483
484
485
486
487
488
489
490
491
492
493
494
495
496
497
498
499
500
501
502
503
504
505
506
507
508
509
510
511
512
513
514
515
516
517
518
519
520
521
522
523
524
525
526
527
528
529
530
531
532
533
534
535
536
537
538
539
540
541
542
543
544
545
546
547
548
549
550
551
552
553
554
555
556
557
558
559
560
561
562
563
564
565
566
567
568
569
570
571
572
573
574
575
576
577
578
579
580
581
582
583
584
585
586
587
588
589
590
591
592
593
594
595
596
597
598
599
600
601
602
603
604
605
606
607
608
609
610
611
612
613
614
615
616
617
618
619
620
621
622
623
624
625
626
627
628
629
630
631
632
633
634
635
636
637
638
639
640
641
642
643
644
645
646
647
648
649
650
651
652
653
654
655
656
657
658
659
660
661
662
663
664
665
666
667
668
669
670
671
672
673
674
675
676
677
678
679
680
681
682
683
684
685
686
687
688
689
690
691
692
693
694
695
696
697
698
699
700
701
702
703
704
705
706
707
708
709
710
711
712
713
714
715
716
717
718
719
720
721
722
723
724
725
726
727
728
729
730
731
732
733
734
735
736
737
738
739
740
741
742
743
744
745
746
747
748
749
750
751
752
753
754
755
756
757
758
759
760
761
762
763
764
765
766
767
768
769
770
771
772
773
774
775
776
777
778
779
780
781
782
783
784
785
786
787
788
789
790
791
792
793
794
795
796
797
798
799
800
801
802
803
804
805
806
807
808
809
810
811
812
813
814
815
816
817
818
819
820
821
822
823
824
825
826
827
828
829
830
831
832
833
834
835
836
837
838
839
840
841
842
843
844
845
846
847
848
849
850
851
852
853
854
855
856
857
858
859
860
861
862
863
864
865
866
867
868
869
870
871
872
873
874
875
876
877
878
879
880
881
882
883
884
885
886
887
888
889
890
891
892
893
894
895
896
897
898
899
900
901
902
903
904
905
906
907
908
909
910
911
912
913
914
915
916
917
918
919
920
921
922
923
924
925
926
927
928
929
930
931
932
933
934
935
936
937
938
939
940
941
942
943
944
945
946
947
948
949
950
951
952
953
954
955
956
957
958
959
960
961
962
963
964
965
966
967
968
969
970
971
972
973
974
975
976
977
978
979
980
981
982
983
984
985
986
987
988
989
990
991
992
993
994
995
996
997
998
999
1000
1001
1002
1003
1004
1005
1006
1007
1008
1009
1010
1011
1012
1013
1014
1015
1016
1017
1018
1019
1020
1021
1022
1023
1024
1025
1026
1027
1028
1029
1030
1031
1032
1033
1034
1035
1036
1037
1038
1039
1040
1041
1042
1043
1044
1045
1046
1047
1048
1049
1050
1051
1052
1053
1054
1055
1056
1057
1058
1059
1060
1061
1062
1063
1064
1065
1066
1067
1068
1069
1070
1071
1072
1073
1074
1075
1076
1077
1078
1079
1080
1081
1082
1083
1084
1085
1086
1087
1088
1089
1090
1091
1092
1093
1094
1095
1096
1097
1098
1099
1100
1101
1102
1103
1104
1105
1106
1107
1108
1109
1110
1111
1112
1113
1114
1115
1116
1117
1118
1119
1120
1121
1122
1123
1124
1125
1126
1127
1128
1129
1130
1131
1132
1133
1134
1135
1136
1137
1138
1139
1140
1141
1142
1143
1144
1145
1146
1147
1148
1149
1150
1151
1152
1153
1154
1155
1156
1157
1158
1159
1160
1161
1162
1163
1164
1165
1166
1167
1168
1169
1170
1171
1172
1173
1174
1175
1176
1177
1178
1179
1180
1181
1182
1183
1184
1185
1186
1187
1188
1189
1190
1191
1192
1193
1194
1195
1196
1197
1198
1199
1200
1201
1202
1203
1204
1205
1206
1207
1208
1209
1210
1211
1212
1213
1214
1215
1216
1217
1218
1219
1220
1221
1222
1223
1224
1225
1226
1227
1228
1229
1230
1231
1232
1233
1234
1235
1236
1237
1238
1239
1240
1241
1242
1243
1244
1245
1246
1247
1248
1249
1250
1251
1252
1253
1254
1255
1256
1257
1258
1259
1260
1261
1262
1263
1264
1265
1266
1267
1268
1269
1270
1271
1272
1273
1274
1275
1276
1277
1278
1279
1280
1281
1282
1283
1284
1285
1286
1287
1288
1289
1290
1291
1292
1293
1294
1295
1296
1297
1298
1299
1300
1301
1302
1303
1304
1305
1306
1307
1308
1309
1310
1311
1312
1313
1314
1315
1316
1317
1318
1319
1320
1321
1322
1323
1324
1325
1326
1327
1328
1329
1330
1331
1332
1333
1334
1335
1336
1337
1338
1339
1340
1341
1342
1343
1344
1345
1346
1347
1348
1349
1350
1351
1352
1353
1354
1355
1356
1357
1358
1359
1360
1361
1362
1363
1364
1365
1366
1367
1368
1369
1370
1371
1372
1373
1374
1375
1376
1377
1378
1379
1380
1381
1382
1383
1384
1385
1386
1387
1388
1389
1390
1391
1392
1393
1394
1395
1396
1397
1398
1399
1400
1401
1402
1403
1404
1405
1406
1407
1408
1409
1410
1411
1412
1413
1414
1415
1416
1417
1418
1419
1420
1421
1422
1423
1424
1425
1426
1427
1428
1429
1430
1431
1432
1433
1434
1435
1436
1437
1438
1439
1440
1441
1442
1443
1444
1445
1446
1447
1448
1449
1450
1451
1452
1453
1454
1455
1456
1457
1458
1459
1460
1461
1462
1463
1464
1465
1466
1467
1468
1469
1470
1471
1472
1473
1474
1475
1476
1477
1478
1479
1480
1481
1482
1483
1484
1485
1486
1487
1488
1489
1490
1491
1492
1493
1494
1495
1496
1497
1498
1499
1500
1501
1502
1503
1504
1505
1506
1507
1508
1509
1510
1511
1512
1513
1514
1515
1516
1517
1518
1519
1520
1521
1522
1523
1524
1525
1526
1527
1528
1529
1530
1531
1532
1533
1534
1535
1536
1537
1538
1539
1540
1541
1542
1543
1544
1545
1546
1547
1548
1549
1550
1551
1552
1553
1554
1555
1556
1557
1558
1559
1560
1561
1562
1563
1564
1565
1566
1567
1568
1569
1570
1571
1572
1573
1574
1575
1576
1577
1578
1579
1580
1581
1582
1583
1584
1585
1586
1587
1588
1589
1590
1591
1592
1593
1594
1595
1596
1597
1598
1599
1600
1601
1602
1603
1604
1605
1606
1607
1608
1609
1610
1611
1612
1613
1614
1615
1616
1617
1618
1619
1620
1621
1622
1623
1624
1625
1626
1627
1628
1629
1630
1631
1632
1633
1634
1635
1636
1637
1638
1639
1640
1641
1642
1643
1644
1645
1646
1647
1648
1649
1650
1651
1652
1653
1654
1655
1656
1657
1658
1659
1660
1661
1662
1663
1664
1665
1666
1667
1668
1669
1670
1671
1672
1673
1674
1675
1676
1677
1678
1679
1680
1681
1682
1683
1684
1685
1686
1687
1688
1689
1690
1691
1692
1693
1694
1695
1696
1697
1698
1699
1700
1701
1702
1703
1704
1705
1706
1707
1708
1709
1710
1711
1712
1713
1714
1715
1716
1717
1718
1719
1720
1721
1722
1723
1724
1725
1726
1727
1728
1729
1730
1731
1732
1733
1734
1735
1736
1737
1738
1739
1740
1741
1742
1743
1744
1745
1746
1747
1748
1749
1750
1751
1752
1753
1754
1755
1756
1757
1758
1759
1760
1761
1762
1763
1764
1765
1766
1767
1768
1769
1770
1771
1772
1773
1774
1775
1776
1777
1778
1779
1780
1781
1782
1783
1784
1785
1786
1787
1788
1789
1790
1791
1792
1793
1794
1795
1796
1797
1798
1799
1800
1801
1802
1803
1804
1805
1806
1807
1808
1809
1810
1811
1812
1813
1814
1815
1816
1817
1818
1819
1820
1821
1822
1823
1824
1825
1826
1827
1828
1829
1830
1831
1832
1833
1834
1835
1836
1837
1838
1839
1840
1841
1842
1843
1844
1845
1846
1847
1848
1849
1850
1851
1852
1853
1854
1855
1856
1857
1858
1859
1860
1861
1862
1863
1864
1865
1866
1867
1868
1869
1870
1871
1872
1873
1874
1875
1876
1877
1878
1879
1880
1881
1882
1883
1884
1885
1886
1887
1888
1889
1890
1891
1892
1893
1894
1895
1896
1897
1898
1899
1900
1901
1902
1903
1904
1905
1906
1907
1908
1909
1910
1911
1912
1913
1914
1915
1916
1917
1918
1919
1920
1921
1922
1923
1924
1925
1926
1927
1928
1929
1930
1931
1932
1933
1934
1935
1936
1937
1938
1939
1940
1941
1942
1943
1944
1945
1946
1947
1948
1949
1950
1951
1952
1953
1954
1955
1956
1957
1958
1959
1960
1961
1962
1963
1964
1965
1966
1967
1968
1969
1970
1971
1972
1973
1974
1975
1976
1977
1978
1979
1980
1981
1982
1983
1984
1985
1986
1987
1988
1989
1990
1991
1992
1993
1994
1995
1996
1997
1998
1999
2000
2001
2002
2003
2004
2005
2006
2007
2008
2009
2010
2011
2012
2013
2014
2015
2016
2017
2018
2019
2020
2021
2022
2023
2024
2025
2026
2027
2028
2029
2030
2031
2032
2033
2034
2035
2036
2037
2038
2039
2040
2041
2042
2043
2044
2045
2046
2047
2048
2049
2050
2051
2052
2053
2054
2055
2056
2057
2058
2059
2060
2061
2062
2063
2064
2065
2066
2067
2068
2069
2070
2071
2072
2073
2074
2075
2076
2077
2078
2079
2080
2081
2082
2083
2084
2085
2086
2087
2088
2089
2090
2091
2092
2093
2094
2095
2096
2097
2098
2099
2100
2101
2102
2103
2104
2105
2106
2107
2108
2109
2110
2111
2112
2113
2114
2115
2116
2117
2118
2119
2120
2121
2122
2123
2124
2125
2126
2127
2128
2129
2130
2131
2132
2133
2134
2135
2136
2137
2138
2139
2140
2141
2142
2143
2144
2145
2146
2147
2148
2149
2150
2151
2152
2153
2154
2155
2156
2157
2158
2159
2160
2161
2162
2163
2164
2165
2166
2167
2168
2169
2170
2171
2172
2173
2174
2175
2176
2177
2178
2179
2180
2181
2182
2183
2184
2185
2186
2187
2188
2189
2190
2191
2192
2193
2194
2195
2196
2197
2198
2199
2200
2201
2202
2203
2204
2205
2206
2207
2208
2209
2210
2211
2212
2213
2214
2215
2216
2217
2218
2219
2220
2221
2222
2223
2224
2225
2226
2227
2228
2229
2230
2231
2232
2233
2234
2235
2236
2237
2238
2239
2240
2241
2242
2243
2244
2245
2246
2247
2248
2249
2250
2251
2252
2253
2254
2255
2256
2257
2258
2259
2260
2261
2262
2263
2264
2265
2266
2267
2268
2269
2270
2271
2272
2273
2274
2275
2276
2277
2278
2279
2280
2281
2282
2283
2284
2285
2286
2287
2288
2289
2290
2291
2292
2293
2294
2295
2296
2297
2298
2299
2300
2301
2302
2303
2304
2305
2306
2307
2308
2309
2310
2311
2312
2313
2314
2315
2316
2317
2318
2319
2320
2321
2322
2323
2324
2325
2326
2327
2328
2329
2330
2331
2332
2333
2334
2335
2336
2337
2338
2339
2340
2341
2342
2343
2344
2345
2346
2347
2348
2349
2350
2351
2352
2353
2354
2355
2356
2357
2358
2359
2360
2361
2362
2363
2364
2365
2366
2367
2368
2369
2370
2371
2372
2373
2374
2375
2376
2377
2378
2379
2380
2381
2382
2383
2384
2385
2386
2387
2388
2389
2390
2391
2392
2393
2394
2395
2396
2397
2398
2399
2400
2401
2402
2403
2404
2405
2406
2407
2408
2409
2410
2411
2412
2413
2414
2415
2416
2417
2418
2419
2420
2421
2422
2423
2424
2425
2426
2427
2428
2429
2430
2431
2432
2433
2434
2435
2436
2437
2438
2439
2440
2441
2442
2443
2444
2445
2446
2447
2448
2449
2450
2451
2452
2453
2454
2455
2456
2457
2458
2459
2460
2461
2462
2463
2464
2465
2466
2467
2468
2469
2470
2471
2472
2473
2474
2475
2476
2477
2478
2479
2480
2481
2482
2483
2484
2485
2486
2487
2488
2489
2490
2491
2492
2493
2494
2495
2496
2497
2498
2499
2500
2501
2502
2503
2504
2505
2506
2507
2508
2509
2510
2511
2512
2513
2514
2515
2516
2517
2518
2519
2520
2521
2522
2523
2524
2525
2526
2527
2528
2529
2530
2531
2532
2533
2534
2535
2536
2537
2538
2539
2540
2541
2542
2543
2544
2545
2546
2547
2548
2549
2550
2551
2552
2553
2554
2555
2556
2557
2558
2559
2560
2561
2562
2563
2564
2565
2566
2567
2568
2569
2570
2571
2572
2573
2574
2575
2576
2577
2578
2579
2580
2581
2582
2583
2584
2585
2586
2587
2588
2589
2590
2591
2592
2593
2594
2595
2596
2597
2598
2599
2600
2601
2602
2603
2604
2605
2606
2607
2608
2609
2610
2611
2612
2613
2614
2615
2616
2617
2618
2619
2620
2621
2622
2623
2624
2625
2626
2627
2628
2629
2630
2631
2632
2633
2634
2635
2636
2637
2638
2639
2640
2641
2642
2643
2644
2645
2646
2647
2648
2649
2650
2651
2652
2653
2654
2655
2656
2657
2658
2659
2660
2661
2662
2663
2664
2665
2666
2667
2668
2669
2670
2671
2672
2673
2674
2675
2676
2677
2678
2679
2680
2681
2682
2683
2684
2685
2686
2687
2688
2689
2690
2691
2692
2693
2694
2695
2696
2697
2698
2699
2700
2701
2702
2703
2704
2705
2706
2707
2708
2709
2710
2711
2712
2713
2714
2715
2716
2717
2718
2719
2720
2721
2722
2723
2724
2725
2726
2727
2728
2729
2730
2731
2732
2733
2734
2735
2736
2737
2738
2739
2740
2741
2742
2743
2744
2745
2746
2747
2748
2749
2750
2751
2752
2753
2754
2755
2756
2757
2758
2759
2760
2761
2762
2763
2764
2765
2766
2767
2768
2769
2770
2771
2772
2773
2774
2775
2776
2777
2778
2779
2780
2781
2782
2783
2784
2785
2786
2787
2788
2789
2790
2791
2792
2793
2794
2795
2796
2797
2798
2799
2800
2801
2802
2803
2804
2805
2806
2807
2808
2809
2810
2811
2812
2813
2814
2815
2816
2817
2818
2819
2820
2821
2822
2823
2824
2825
2826
2827
2828
2829
2830
2831
2832
2833
2834
2835
2836
2837
2838
2839
2840
2841
2842
2843
2844
2845
2846
2847
2848
2849
2850
2851
2852
2853
2854
2855
2856
2857
2858
2859
2860
2861
2862
2863
2864
2865
2866
2867
2868
2869
2870
2871
2872
2873
2874
2875
2876
2877
2878
2879
2880
2881
2882
2883
2884
2885
2886
2887
2888
2889
2890
2891
2892
2893
2894
2895
2896
2897
2898
2899
2900
2901
2902
2903
2904
2905
2906
2907
2908
2909
2910
2911
2912
2913
2914
2915
2916
2917
2918
2919
2920
2921
2922
2923
2924
2925
2926
2927
2928
2929
2930
2931
2932
2933
2934
2935
2936
2937
2938
2939
2940
2941
2942
2943
2944
2945
2946
2947
2948
2949
2950
2951
2952
2953
2954
2955
2956
2957
2958
2959
2960
2961
2962
2963
2964
2965
2966
2967
2968
2969
2970
2971
2972
2973
2974
2975
2976
2977
2978
2979
2980
2981
2982
2983
2984
2985
2986
2987
2988
2989
2990
2991
2992
2993
2994
2995
2996
2997
2998
2999
3000
3001
3002
3003
3004
3005
3006
3007
3008
3009
3010
3011
3012
3013
3014
3015
3016
3017
3018
3019
3020
3021
3022
3023
3024
3025
3026
3027
3028
3029
3030
3031
3032
3033
3034
3035
3036
3037
3038
3039
3040
3041
3042
3043
3044
3045
3046
3047
3048
3049
3050
3051
3052
3053
3054
3055
3056
3057
3058
3059
3060
3061
3062
3063
3064
3065
3066
3067
3068
3069
3070
3071
3072
3073
3074
3075
3076
3077
3078
3079
3080
3081
3082
3083
3084
3085
3086
3087
3088
3089
3090
3091
3092
3093
3094
3095
3096
3097
3098
3099
3100
3101
3102
3103
3104
3105
3106
3107
3108
3109
3110
3111
3112
3113
3114
3115
3116
3117
3118
3119
3120
3121
3122
3123
3124
3125
3126
3127
3128
3129
3130
3131
3132
3133
3134
3135
3136
3137
3138
3139
3140
3141
3142
3143
3144
3145
3146
3147
3148
3149
3150
3151
3152
3153
3154
3155
3156
3157
3158
3159
3160
3161
3162
3163
3164
3165
3166
3167
3168
3169
3170
3171
3172
3173
3174
3175
3176
3177
3178
3179
3180
3181
3182
3183
3184
3185
3186
3187
3188
3189
3190
3191
3192
3193
3194
3195
3196
3197
3198
3199
3200
3201
3202
3203
3204
3205
3206
3207
3208
3209
3210
3211
3212
3213
3214
3215
3216
3217
3218
3219
3220
3221
3222
3223
3224
3225
3226
3227
3228
3229
3230
3231
3232
3233
3234
3235
3236
3237
3238
3239
3240
3241
3242
3243
3244
3245
3246
3247
3248
3249
3250
3251
3252
3253
3254
3255
3256
3257
3258
3259
3260
3261
3262
3263
3264
3265
3266
3267
3268
3269
3270
3271
3272
3273
3274
3275
3276
3277
3278
3279
3280
3281
3282
3283
3284
3285
3286
3287
3288
3289
3290
3291
3292
3293
3294
3295
3296
3297
3298
3299
3300
3301
3302
3303
3304
3305
3306
3307
3308
3309
3310
3311
3312
3313
3314
3315
3316
3317
3318
3319
3320
3321
3322
3323
3324
3325
3326
3327
3328
3329
3330
3331
3332
3333
3334
3335
3336
3337
3338
3339
3340
3341
3342
3343
3344
3345
3346
3347
3348
3349
3350
3351
3352
3353
3354
3355
3356
3357
3358
3359
3360
3361
3362
3363
3364
3365
3366
3367
3368
3369
3370
3371
3372
3373
3374
3375
3376
3377
3378
3379
3380
3381
3382
3383
3384
3385
3386
3387
3388
3389
3390
3391
3392
3393
3394
3395
3396
3397
3398
3399
3400
3401
3402
3403
3404
3405
3406
3407
3408
3409
3410
3411
3412
3413
3414
3415
3416
3417
3418
3419
3420
3421
3422
3423
3424
3425
3426
3427
3428
3429
3430
3431
3432
3433
3434
3435
3436
3437
3438
3439
3440
3441
3442
3443
3444
3445
3446
3447
3448
3449
3450
3451
3452
3453
3454
3455
3456
3457
3458
3459
3460
3461
3462
3463
3464
3465
3466
3467
3468
3469
3470
3471
3472
3473
3474
3475
3476
3477
3478
3479
3480
3481
3482
3483
3484
3485
3486
3487
3488
3489
3490
3491
3492
3493
3494
3495
3496
3497
3498
3499
3500
3501
3502
3503
3504
3505
3506
3507
3508
3509
3510
3511
3512
3513
3514
3515
3516
3517
3518
3519
3520
3521
3522
3523
3524
3525
3526
3527
3528
3529
3530
3531
3532
3533
3534
3535
3536
3537
3538
3539
3540
3541
3542
3543
3544
3545
3546
3547
3548
3549
3550
3551
3552
3553
3554
3555
3556
3557
3558
3559
3560
3561
3562
3563
3564
3565
3566
3567
3568
3569
3570
3571
3572
3573
3574
3575
3576
3577
3578
3579
3580
3581
3582
3583
3584
3585
3586
3587
3588
3589
3590
3591
3592
3593
3594
3595
3596
3597
3598
3599
3600
3601
3602
3603
3604
3605
3606
3607
3608
3609
3610
3611
3612
3613
3614
3615
3616
3617
3618
3619
3620
3621
3622
3623
3624
3625
3626
3627
3628
3629
3630
3631
3632
3633
3634
3635
3636
3637
3638
3639
3640
3641
3642
3643
3644
3645
3646
3647
3648
3649
3650
3651
3652
3653
3654
3655
3656
3657
3658
3659
3660
3661
3662
3663
3664
3665
3666
3667
3668
3669
3670
3671
3672
3673
3674
3675
3676
3677
3678
3679
3680
3681
3682
3683
3684
3685
3686
3687
3688
3689
3690
3691
3692
3693
3694
3695
3696
3697
3698
3699
3700
3701
3702
3703
3704
3705
3706
3707
3708
3709
3710
3711
3712
3713
3714
3715
3716
3717
3718
3719
3720
3721
3722
3723
3724
3725
3726
3727
3728
3729
3730
3731
3732
3733
3734
3735
3736
3737
3738
3739
3740
3741
3742
3743
3744
3745
3746
3747
3748
3749
3750
3751
3752
3753
3754
3755
3756
3757
3758
3759
3760
3761
3762
3763
3764
3765
3766
3767
3768
3769
3770
3771
3772
3773
3774
3775
3776
3777
3778
3779
3780
3781
3782
3783
3784
3785
3786
3787
3788
3789
3790
3791
3792
3793
3794
3795
3796
3797
3798
3799
3800
3801
3802
3803
3804
3805
3806
3807
3808
3809
3810
3811
3812
3813
3814
3815
3816
3817
3818
3819
3820
3821
3822
3823
3824
3825
3826
3827
3828
3829
3830
3831
3832
3833
3834
3835
3836
3837
3838
3839
3840
3841
3842
3843
3844
3845
3846
3847
3848
3849
3850
3851
3852
3853
3854
3855
3856
3857
3858
3859
3860
3861
3862
3863
3864
3865
3866
3867
3868
3869
3870
3871
3872
3873
3874
3875
3876
3877
3878
3879
3880
3881
3882
3883
3884
3885
3886
3887
3888
3889
3890
3891
3892
3893
3894
3895
3896
3897
3898
3899
3900
3901
3902
3903
3904
3905
3906
3907
3908
3909
3910
3911
3912
3913
3914
3915
3916
3917
3918
3919
3920
3921
3922
3923
3924
3925
3926
3927
3928
3929
3930
3931
3932
3933
3934
3935
3936
3937
3938
3939
3940
3941
3942
3943
3944
3945
3946
3947
3948
3949
3950
3951
3952
3953
3954
3955
3956
3957
3958
3959
3960
3961
3962
3963
3964
3965
3966
3967
3968
3969
3970
3971
3972
3973
3974
3975
3976
3977
3978
3979
3980
3981
3982
3983
3984
3985
3986
3987
3988
3989
3990
3991
3992
3993
3994
3995
3996
3997
3998
3999
4000
4001
4002
4003
4004
4005
4006
4007
4008
4009
4010
4011
4012
4013
4014
4015
4016
4017
4018
4019
4020
4021
4022
4023
4024
4025
4026
4027
4028
4029
4030
4031
4032
4033
4034
4035
4036
4037
4038
4039
4040
4041
4042
4043
4044
4045
4046
4047
4048
4049
4050
4051
4052
4053
4054
4055
4056
4057
4058
4059
4060
4061
4062
4063
4064
4065
4066
4067
4068
4069
4070
4071
4072
4073
4074
4075
4076
4077
4078
4079
4080
4081
4082
4083
4084
4085
4086
4087
4088
4089
4090
4091
4092
4093
4094
4095
4096
4097
4098
4099
4100
4101
4102
4103
4104
4105
4106
4107
4108
4109
4110
4111
4112
4113
4114
4115
4116
4117
4118
4119
4120
4121
4122
4123
4124
4125
4126
4127
4128
4129
4130
4131
4132
4133
4134
4135
4136
4137
4138
4139
4140
4141
4142
4143
4144
4145
4146
4147
4148
4149
4150
4151
4152
4153
4154
4155
4156
4157
4158
4159
4160
4161
4162
4163
4164
4165
4166
4167
4168
4169
4170
4171
4172
4173
4174
4175
4176
4177
4178
4179
4180
4181
4182
4183
4184
4185
4186
4187
4188
4189
4190
4191
4192
4193
4194
4195
4196
4197
4198
4199
4200
4201
4202
4203
4204
4205
4206
4207
4208
4209
4210
4211
4212
4213
4214
4215
4216
4217
4218
4219
4220
4221
4222
4223
4224
4225
4226
4227
4228
4229
4230
4231
4232
4233
4234
4235
4236
4237
4238
4239
4240
4241
4242
4243
4244
4245
4246
4247
4248
4249
4250
4251
4252
4253
4254
4255
4256
4257
4258
4259
4260
4261
4262
4263
4264
4265
4266
4267
4268
4269
4270
4271
4272
4273
4274
4275
4276
4277
4278
4279
4280
4281
4282
4283
4284
4285
4286
4287
4288
4289
4290
4291
4292
4293
4294
4295
4296
4297
4298
4299
4300
4301
4302
4303
4304
4305
4306
4307
4308
4309
4310
4311
4312
4313
4314
4315
4316
4317
4318
4319
4320
4321
4322
4323
4324
4325
4326
4327
4328
4329
4330
4331
4332
4333
4334
4335
4336
4337
4338
4339
4340
4341
4342
4343
4344
4345
4346
4347
4348
4349
4350
4351
4352
4353
4354
4355
4356
4357
4358
4359
4360
4361
4362
4363
4364
4365
4366
4367
4368
4369
4370
4371
4372
4373
4374
4375
4376
4377
4378
4379
4380
4381
4382
4383
4384
4385
4386
4387
4388
4389
4390
4391
4392
4393
4394
4395
4396
4397
4398
4399
4400
4401
4402
4403
4404
4405
4406
4407
4408
4409
4410
4411
4412
4413
4414
4415
4416
4417
4418
4419
4420
4421
4422
4423
4424
4425
4426
4427
4428
4429
4430
4431
4432
4433
4434
4435
4436
4437
4438
4439
4440
4441
4442
4443
4444
4445
4446
4447
4448
4449
4450
4451
4452
4453
4454
4455
4456
4457
4458
4459
4460
4461
4462
4463
4464
4465
4466
4467
4468
4469
4470
4471
4472
4473
4474
4475
4476
4477
4478
4479
4480
4481
4482
4483
4484
4485
4486
4487
4488
4489
4490
4491
4492
4493
4494
4495
4496
4497
4498
4499
4500
4501
4502
4503
4504
4505
4506
4507
4508
4509
4510
4511
4512
4513
4514
4515
4516
4517
4518
4519
4520
4521
4522
4523
4524
4525
4526
4527
4528
4529
4530
4531
4532
4533
4534
4535
4536
4537
4538
4539
4540
4541
4542
4543
4544
4545
4546
4547
4548
4549
4550
4551
4552
4553
4554
4555
4556
4557
4558
4559
4560
4561
4562
4563
4564
4565
4566
4567
4568
4569
4570
4571
4572
4573
4574
4575
4576
4577
4578
4579
4580
4581
4582
4583
4584
4585
4586
4587
4588
4589
4590
4591
4592
4593
4594
4595
4596
4597
4598
4599
4600
4601
4602
4603
4604
4605
4606
4607
4608
4609
4610
4611
4612
4613
4614
4615
4616
4617
4618
4619
4620
4621
4622
4623
4624
4625
4626
4627
4628
4629
4630
4631
4632
4633
4634
4635
4636
4637
4638
4639
4640
4641
4642
4643
4644
4645
4646
4647
4648
4649
4650
4651
4652
4653
4654
4655
4656
4657
4658
4659
4660
4661
4662
4663
4664
4665
4666
4667
4668
4669
4670
4671
4672
4673
4674
4675
4676
4677
4678
4679
4680
4681
4682
4683
4684
4685
4686
4687
4688
4689
4690
4691
4692
4693
4694
4695
4696
4697
4698
4699
4700
4701
4702
4703
4704
4705
4706
4707
4708
4709
4710
4711
4712
4713
4714
4715
4716
4717
4718
4719
4720
4721
4722
4723
4724
4725
4726
4727
4728
4729
4730
4731
4732
4733
4734
4735
4736
4737
4738
4739
4740
4741
4742
4743
4744
4745
4746
4747
4748
4749
4750
4751
4752
4753
4754
4755
4756
4757
4758
4759
4760
4761
4762
4763
4764
4765
4766
4767
4768
4769
4770
4771
4772
4773
4774
4775
4776
4777
4778
4779
4780
4781
4782
4783
4784
4785
4786
4787
4788
4789
4790
4791
4792
4793
4794
4795
4796
4797
4798
4799
4800
4801
4802
4803
4804
4805
4806
4807
4808
4809
4810
4811
4812
4813
4814
4815
4816
4817
4818
4819
4820
4821
4822
4823
4824
4825
4826
4827
4828
4829
4830
4831
4832
4833
4834
4835
4836
4837
4838
4839
4840
4841
4842
4843
4844
4845
4846
4847
4848
4849
4850
4851
4852
4853
4854
4855
4856
4857
4858
4859
4860
4861
4862
4863
4864
4865
4866
4867
4868
4869
4870
4871
4872
4873
4874
4875
4876
4877
4878
4879
4880
4881
4882
4883
4884
4885
4886
4887
4888
4889
4890
4891
4892
4893
4894
4895
4896
4897
4898
4899
4900
4901
4902
4903
4904
4905
4906
4907
4908
4909
4910
4911
4912
4913
4914
4915
4916
4917
4918
4919
4920
4921
4922
4923
4924
4925
4926
4927
4928
4929
4930
4931
4932
4933
4934
4935
4936
4937
4938
4939
4940
4941
4942
4943
4944
4945
4946
4947
4948
4949
4950
4951
4952
4953
4954
4955
4956
4957
4958
4959
4960
4961
4962
4963
4964
4965
4966
4967
4968
4969
4970
4971
4972
4973
4974
4975
4976
4977
4978
4979
4980
4981
4982
4983
4984
4985
4986
4987
4988
4989
4990
4991
4992
4993
4994
4995
4996
4997
4998
4999
5000
5001
5002
5003
5004
5005
5006
5007
5008
5009
5010
5011
5012
5013
5014
5015
5016
5017
5018
5019
5020
5021
5022
5023
5024
5025
5026
5027
5028
5029
5030
5031
5032
5033
5034
5035
5036
5037
5038
5039
5040
5041
5042
5043
5044
5045
5046
5047
5048
5049
5050
5051
5052
5053
5054
5055
5056
5057
5058
5059
5060
5061
5062
5063
5064
5065
5066
5067
5068
5069
5070
5071
5072
5073
5074
5075
5076
5077
5078
5079
5080
5081
5082
5083
5084
5085
5086
5087
5088
5089
5090
5091
5092
5093
5094
5095
5096
5097
5098
5099
5100
5101
5102
5103
5104
5105
5106
5107
5108
5109
5110
5111
5112
5113
5114
5115
5116
5117
5118
5119
5120
5121
5122
5123
5124
5125
5126
5127
5128
5129
5130
5131
5132
5133
5134
5135
5136
5137
5138
5139
5140
5141
5142
5143
5144
5145
5146
5147
5148
5149
5150
5151
5152
5153
5154
5155
5156
5157
5158
5159
5160
5161
5162
5163
5164
5165
5166
5167
5168
5169
5170
5171
5172
5173
5174
5175
5176
5177
5178
5179
5180
5181
5182
5183
5184
5185
5186
5187
5188
5189
5190
5191
5192
5193
5194
5195
5196
5197
5198
5199
5200
5201
5202
5203
5204
5205
5206
5207
5208
5209
5210
5211
5212
5213
5214
5215
5216
5217
5218
5219
5220
5221
5222
5223
5224
5225
5226
5227
5228
5229
5230
5231
5232
5233
5234
5235
5236
5237
5238
5239
5240
5241
5242
5243
5244
5245
5246
5247
5248
5249
5250
5251
5252
5253
5254
5255
5256
5257
5258
5259
5260
5261
5262
5263
5264
5265
5266
5267
5268
5269
5270
5271
5272
5273
5274
5275
5276
5277
5278
5279
5280
5281
5282
5283
5284
5285
5286
5287
5288
5289
5290
5291
5292
5293
5294
5295
5296
5297
5298
5299
5300
5301
5302
5303
5304
5305
5306
5307
5308
5309
5310
5311
5312
5313
5314
5315
5316
5317
5318
5319
5320
5321
5322
5323
5324
5325
5326
5327
5328
5329
5330
5331
5332
5333
5334
5335
5336
5337
5338
5339
5340
5341
5342
5343
5344
5345
5346
5347
5348
5349
5350
5351
5352
5353
5354
5355
5356
5357
5358
5359
5360
5361
5362
5363
5364
5365
5366
5367
5368
5369
5370
5371
5372
5373
5374
5375
5376
5377
5378
5379
5380
5381
5382
5383
5384
5385
5386
5387
5388
5389
5390
5391
5392
5393
5394
5395
5396
5397
5398
5399
5400
5401
5402
5403
5404
5405
5406
5407
5408
5409
5410
5411
5412
5413
5414
5415
5416
5417
5418
5419
5420
5421
5422
5423
5424
5425
5426
5427
5428
5429
5430
5431
5432
5433
5434
5435
5436
5437
5438
5439
5440
5441
5442
5443
5444
5445
5446
5447
5448
5449
5450
5451
5452
5453
5454
5455
5456
5457
5458
5459
5460
5461
5462
5463
5464
5465
5466
5467
5468
5469
5470
5471
5472
5473
5474
5475
5476
5477
5478
5479
5480
5481
5482
5483
5484
5485
5486
5487
5488
5489
5490
5491
5492
5493
5494
5495
5496
5497
5498
5499
5500
5501
5502
5503
5504
5505
5506
5507
5508
5509
5510
5511
5512
5513
5514
5515
5516
5517
5518
5519
5520
5521
5522
5523
5524
5525
5526
5527
5528
5529
5530
5531
5532
5533
5534
5535
5536
5537
5538
5539
5540
5541
5542
5543
5544
5545
5546
5547
5548
5549
5550
5551
5552
5553
5554
5555
5556
5557
5558
5559
5560
5561
5562
5563
5564
5565
5566
5567
5568
5569
5570
5571
5572
5573
5574
5575
5576
5577
5578
5579
5580
5581
5582
5583
5584
5585
5586
5587
5588
5589
5590
5591
5592
5593
5594
5595
5596
5597
5598
5599
5600
5601
5602
5603
5604
5605
5606
5607
5608
5609
5610
5611
5612
5613
5614
5615
5616
5617
5618
5619
5620
5621
5622
5623
5624
5625
5626
5627
5628
5629
5630
5631
5632
5633
5634
5635
5636
5637
5638
5639
5640
5641
5642
5643
5644
5645
5646
5647
5648
5649
5650
5651
5652
5653
5654
5655
5656
5657
5658
5659
5660
5661
5662
5663
5664
5665
5666
5667
5668
5669
5670
5671
5672
5673
5674
5675
5676
5677
5678
5679
5680
5681
5682
5683
5684
5685
5686
5687
5688
5689
5690
5691
5692
5693
5694
5695
5696
5697
5698
5699
5700
5701
5702
5703
5704
5705
5706
5707
5708
5709
5710
5711
5712
5713
5714
5715
5716
5717
5718
5719
5720
5721
5722
5723
5724
5725
5726
5727
5728
5729
5730
5731
5732
5733
5734
5735
5736
5737
5738
5739
5740
5741
5742
5743
5744
5745
5746
5747
5748
5749
5750
5751
5752
5753
5754
5755
5756
5757
5758
5759
5760
5761
5762
5763
5764
5765
5766
5767
5768
5769
5770
5771
5772
5773
5774
5775
5776
5777
5778
5779
5780
5781
5782
5783
5784
5785
5786
5787
5788
5789
5790
5791
5792
5793
5794
5795
5796
5797
5798
5799
5800
5801
5802
5803
5804
5805
5806
5807
5808
5809
5810
5811
5812
5813
5814
5815
5816
5817
5818
5819
5820
5821
5822
5823
5824
5825
5826
5827
5828
5829
5830
5831
5832
5833
5834
5835
5836
5837
5838
5839
5840
5841
5842
5843
5844
5845
5846
5847
5848
5849
5850
5851
5852
5853
5854
5855
5856
5857
5858
5859
5860
5861
5862
5863
5864
5865
5866
5867
5868
5869
5870
5871
5872
5873
5874
5875
5876
5877
5878
5879
5880
5881
5882
5883
5884
5885
5886
5887
5888
5889
5890
5891
5892
5893
5894
5895
5896
5897
5898
5899
5900
5901
5902
5903
5904
5905
5906
5907
5908
5909
5910
5911
5912
5913
5914
5915
5916
5917
5918
5919
5920
5921
5922
5923
5924
5925
5926
5927
5928
5929
5930
5931
5932
5933
5934
5935
5936
5937
5938
5939
5940
5941
5942
5943
5944
5945
5946
5947
5948
5949
5950
5951
5952
5953
5954
5955
5956
5957
5958
5959
5960
5961
5962
5963
5964
5965
5966
5967
5968
5969
5970
5971
5972
5973
5974
5975
5976
5977
5978
5979
5980
5981
5982
5983
5984
5985
5986
5987
5988
5989
5990
5991
5992
5993
5994
5995
5996
5997
5998
5999
6000
6001
6002
6003
6004
6005
6006
6007
6008
6009
6010
6011
6012
6013
6014
6015
6016
6017
6018
6019
6020
6021
6022
6023
6024
6025
6026
6027
6028
6029
6030
6031
6032
6033
6034
6035
6036
6037
6038
6039
6040
6041
6042
6043
6044
6045
6046
6047
6048
6049
6050
6051
6052
6053
6054
6055
6056
6057
6058
6059
6060
6061
6062
6063
6064
6065
6066
6067
6068
6069
6070
6071
6072
6073
6074
6075
6076
6077
6078
6079
6080
6081
6082
6083
6084
6085
6086
6087
6088
6089
6090
6091
6092
6093
6094
6095
6096
6097
6098
6099
6100
6101
6102
6103
6104
6105
6106
6107
6108
6109
6110
6111
6112
6113
6114
6115
6116
6117
6118
6119
6120
6121
6122
6123
6124
6125
6126
6127
6128
6129
6130
6131
6132
6133
6134
6135
6136
6137
6138
6139
6140
6141
6142
6143
6144
6145
6146
6147
6148
6149
6150
6151
6152
6153
6154
6155
6156
6157
6158
6159
6160
6161
6162
6163
6164
6165
6166
6167
6168
6169
6170
6171
6172
6173
6174
6175
6176
6177
6178
6179
6180
6181
6182
6183
6184
6185
6186
6187
6188
6189
6190
6191
6192
6193
6194
6195
6196
6197
6198
6199
6200
6201
6202
6203
6204
6205
6206
6207
6208
6209
6210
6211
6212
6213
6214
6215
6216
6217
6218
6219
6220
6221
6222
6223
6224
6225
6226
6227
6228
6229
6230
6231
6232
6233
6234
6235
6236
6237
6238
6239
6240
6241
6242
6243
6244
6245
6246
6247
6248
6249
6250
6251
6252
6253
6254
6255
6256
6257
6258
6259
6260
6261
6262
6263
6264
6265
6266
6267
6268
6269
6270
6271
6272
6273
6274
6275
6276
6277
6278
6279
6280
6281
6282
6283
6284
6285
6286
6287
6288
6289
6290
6291
6292
6293
6294
6295
6296
6297
6298
6299
6300
6301
6302
6303
6304
6305
6306
6307
6308
6309
6310
6311
6312
6313
6314
6315
6316
6317
6318
6319
6320
6321
6322
6323
6324
6325
6326
6327
6328
6329
6330
6331
6332
6333
6334
6335
6336
6337
6338
6339
6340
6341
6342
6343
6344
6345
6346
6347
6348
6349
6350
6351
6352
6353
6354
6355
6356
6357
6358
6359
6360
6361
6362
6363
6364
6365
6366
6367
6368
6369
6370
6371
6372
6373
6374
6375
6376
6377
6378
6379
6380
6381
6382
6383
6384
6385
6386
6387
6388
6389
6390
6391
6392
6393
6394
6395
6396
6397
6398
6399
6400
6401
6402
6403
6404
6405
6406
6407
6408
6409
6410
6411
6412
6413
6414
6415
6416
6417
6418
6419
6420
6421
6422
6423
6424
6425
6426
6427
6428
6429
6430
6431
6432
6433
6434
6435
6436
6437
6438
6439
6440
6441
6442
6443
6444
6445
6446
6447
6448
6449
6450
6451
6452
6453
6454
6455
6456
6457
6458
6459
6460
6461
6462
6463
6464
6465
6466
6467
6468
6469
6470
6471
6472
6473
6474
6475
6476
6477
6478
6479
6480
6481
6482
6483
6484
6485
6486
6487
6488
6489
6490
6491
6492
6493
6494
6495
6496
6497
6498
6499
6500
6501
6502
6503
6504
6505
6506
6507
6508
6509
6510
6511
6512
6513
6514
6515
6516
6517
6518
6519
6520
6521
6522
6523
6524
6525
6526
6527
6528
6529
6530
6531
6532
6533
6534
6535
6536
6537
6538
6539
6540
6541
6542
6543
6544
6545
6546
6547
6548
6549
6550
6551
6552
6553
6554
6555
6556
6557
6558
6559
6560
6561
6562
6563
6564
6565
6566
6567
6568
6569
6570
6571
6572
6573
6574
6575
6576
6577
6578
6579
6580
6581
6582
6583
6584
6585
6586
6587
6588
6589
6590
6591
6592
6593
6594
6595
6596
6597
6598
6599
6600
6601
6602
6603
6604
6605
6606
6607
6608
6609
6610
6611
6612
6613
6614
6615
6616
6617
6618
6619
6620
6621
6622
6623
6624
6625
6626
6627
6628
6629
6630
6631
6632
6633
6634
6635
6636
6637
6638
6639
6640
6641
6642
6643
6644
6645
6646
6647
6648
6649
6650
6651
6652
6653
6654
6655
6656
6657
6658
6659
6660
6661
6662
6663
6664
6665
6666
6667
6668
6669
6670
6671
6672
6673
6674
6675
6676
6677
6678
6679
6680
6681
6682
6683
6684
6685
6686
6687
6688
6689
6690
6691
6692
6693
6694
6695
6696
6697
6698
6699
6700
6701
6702
6703
6704
6705
6706
6707
6708
6709
6710
6711
6712
6713
6714
6715
6716
6717
6718
6719
6720
6721
6722
6723
6724
6725
6726
6727
6728
6729
6730
6731
6732
6733
6734
6735
6736
6737
6738
6739
6740
6741
6742
6743
6744
6745
6746
6747
6748
6749
6750
6751
6752
6753
6754
6755
6756
6757
6758
6759
6760
6761
6762
6763
6764
6765
6766
6767
6768
6769
6770
6771
6772
6773
6774
6775
6776
6777
6778
6779
6780
6781
6782
6783
6784
6785
6786
6787
6788
6789
6790
6791
6792
6793
6794
6795
6796
6797
6798
6799
6800
6801
6802
6803
6804
6805
6806
6807
6808
6809
6810
6811
6812
6813
6814
6815
6816
6817
6818
6819
6820
6821
6822
6823
6824
6825
6826
6827
6828
6829
6830
6831
6832
6833
6834
6835
6836
6837
6838
6839
6840
6841
6842
6843
6844
6845
6846
6847
6848
6849
6850
6851
6852
6853
6854
6855
6856
6857
6858
6859
6860
6861
6862
6863
6864
6865
6866
6867
6868
6869
6870
6871
6872
6873
6874
6875
6876
6877
6878
6879
6880
6881
6882
6883
6884
6885
6886
6887
6888
6889
6890
6891
6892
6893
6894
6895
6896
6897
6898
6899
6900
6901
6902
6903
6904
6905
6906
6907
6908
6909
6910
6911
6912
6913
6914
6915
6916
6917
6918
6919
6920
6921
6922
6923
6924
6925
6926
6927
6928
6929
6930
6931
6932
6933
6934
6935
6936
6937
6938
6939
6940
6941
6942
6943
6944
6945
6946
6947
6948
6949
6950
6951
6952
6953
6954
6955
6956
6957
6958
6959
6960
6961
6962
6963
6964
6965
6966
6967
6968
6969
6970
6971
6972
6973
6974
6975
6976
6977
6978
6979
6980
6981
6982
6983
6984
6985
6986
6987
6988
6989
6990
6991
6992
6993
6994
6995
6996
6997
6998
6999
7000
7001
7002
7003
7004
7005
7006
7007
7008
7009
7010
7011
7012
7013
7014
7015
7016
7017
7018
7019
7020
7021
7022
7023
7024
7025
7026
7027
7028
7029
7030
7031
7032
7033
7034
7035
7036
7037
7038
7039
7040
7041
7042
7043
7044
7045
7046
7047
7048
7049
7050
7051
7052
7053
7054
7055
7056
7057
7058
7059
7060
7061
7062
7063
7064
7065
7066
7067
7068
7069
7070
7071
7072
7073
7074
7075
7076
7077
7078
7079
7080
7081
7082
7083
7084
7085
7086
7087
7088
7089
7090
7091
7092
7093
7094
7095
7096
7097
7098
7099
7100
7101
7102
7103
7104
7105
7106
7107
7108
7109
7110
7111
7112
7113
7114
7115
7116
7117
7118
7119
7120
7121
7122
7123
7124
7125
7126
7127
7128
7129
7130
7131
7132
7133
7134
7135
7136
7137
7138
7139
7140
7141
7142
7143
7144
7145
7146
7147
7148
7149
7150
7151
7152
7153
7154
7155
7156
7157
7158
7159
7160
7161
7162
7163
7164
7165
7166
7167
7168
7169
7170
7171
7172
7173
7174
7175
7176
7177
7178
7179
7180
7181
7182
7183
7184
7185
7186
7187
7188
7189
7190
7191
7192
7193
7194
7195
7196
7197
7198
7199
7200
7201
7202
7203
7204
7205
7206
7207
7208
7209
7210
7211
7212
7213
7214
7215
7216
7217
7218
7219
7220
7221
7222
7223
7224
7225
7226
7227
7228
7229
7230
7231
7232
7233
7234
7235
7236
7237
7238
7239
7240
7241
7242
7243
7244
7245
7246
7247
7248
7249
7250
7251
7252
7253
7254
7255
7256
7257
7258
7259
7260
7261
7262
7263
7264
7265
7266
7267
7268
7269
7270
7271
7272
7273
7274
7275
7276
7277
7278
7279
7280
7281
7282
7283
7284
7285
7286
7287
7288
7289
7290
7291
7292
7293
7294
7295
7296
7297
7298
7299
7300
7301
7302
7303
7304
7305
7306
7307
7308
7309
7310
7311
7312
7313
7314
7315
7316
7317
7318
7319
7320
7321
7322
7323
7324
7325
7326
7327
7328
7329
7330
7331
7332
7333
7334
7335
7336
7337
7338
7339
7340
7341
7342
7343
7344
7345
7346
7347
7348
7349
7350
7351
7352
7353
7354
7355
7356
7357
7358
7359
7360
7361
7362
7363
7364
7365
7366
7367
7368
7369
7370
7371
7372
7373
7374
7375
7376
7377
7378
7379
7380
7381
7382
7383
7384
7385
7386
7387
7388
7389
7390
7391
7392
7393
7394
7395
7396
7397
7398
7399
7400
7401
7402
7403
7404
7405
7406
7407
7408
7409
7410
7411
7412
7413
7414
7415
7416
7417
7418
7419
7420
7421
7422
7423
7424
7425
7426
7427
7428
7429
7430
7431
7432
7433
7434
7435
7436
7437
7438
7439
7440
7441
7442
7443
7444
7445
7446
7447
7448
7449
7450
7451
7452
7453
7454
7455
7456
7457
7458
7459
7460
7461
7462
7463
7464
7465
7466
7467
7468
7469
7470
7471
7472
7473
7474
7475
7476
7477
7478
7479
7480
7481
7482
7483
7484
7485
7486
7487
7488
7489
7490
7491
7492
7493
7494
7495
7496
7497
7498
7499
7500
7501
7502
7503
7504
7505
7506
7507
7508
7509
7510
7511
7512
7513
7514
7515
7516
7517
7518
7519
7520
7521
7522
7523
7524
7525
7526
7527
7528
7529
7530
7531
7532
7533
7534
7535
7536
7537
7538
7539
7540
7541
7542
7543
7544
7545
7546
7547
7548
7549
7550
7551
7552
7553
7554
7555
7556
7557
7558
7559
7560
7561
7562
7563
7564
7565
7566
7567
7568
7569
7570
7571
7572
7573
7574
7575
7576
7577
7578
7579
7580
7581
7582
7583
7584
7585
7586
7587
7588
7589
7590
7591
7592
7593
7594
7595
7596
7597
7598
7599
7600
7601
7602
7603
7604
7605
7606
7607
7608
7609
7610
7611
7612
7613
7614
7615
7616
7617
7618
7619
7620
7621
7622
7623
7624
7625
7626
7627
7628
7629
7630
7631
7632
7633
7634
7635
7636
7637
7638
7639
7640
7641
7642
7643
7644
7645
7646
7647
7648
7649
7650
7651
7652
7653
7654
7655
7656
7657
7658
7659
7660
7661
7662
7663
7664
7665
7666
7667
7668
7669
7670
7671
7672
7673
7674
7675
7676
7677
7678
7679
7680
7681
7682
7683
7684
7685
7686
7687
7688
7689
7690
7691
7692
7693
7694
7695
7696
7697
7698
7699
7700
7701
7702
7703
7704
7705
7706
7707
7708
7709
7710
7711
7712
7713
7714
7715
7716
7717
7718
7719
7720
7721
7722
7723
7724
7725
7726
7727
7728
7729
7730
7731
7732
7733
7734
7735
7736
7737
7738
7739
7740
7741
7742
7743
7744
7745
7746
7747
7748
7749
7750
7751
7752
7753
7754
7755
7756
7757
7758
7759
7760
7761
7762
7763
7764
7765
7766
7767
7768
7769
7770
7771
7772
7773
7774
7775
7776
7777
7778
7779
7780
7781
7782
7783
7784
7785
7786
7787
7788
7789
7790
7791
7792
7793
7794
7795
7796
7797
7798
7799
7800
7801
7802
7803
7804
7805
7806
7807
7808
7809
7810
7811
7812
7813
7814
7815
7816
7817
7818
7819
7820
7821
7822
7823
7824
7825
7826
7827
7828
7829
7830
7831
7832
7833
7834
7835
7836
7837
7838
7839
7840
7841
7842
7843
7844
7845
7846
7847
7848
7849
7850
7851
7852
7853
7854
7855
7856
7857
7858
7859
7860
7861
7862
7863
7864
7865
7866
7867
7868
7869
7870
7871
7872
7873
7874
7875
7876
7877
7878
7879
7880
7881
7882
7883
7884
7885
7886
7887
7888
7889
7890
7891
7892
7893
7894
7895
7896
7897
7898
7899
7900
7901
7902
7903
7904
7905
7906
7907
7908
7909
7910
7911
7912
7913
7914
7915
7916
7917
7918
7919
7920
7921
7922
7923
7924
7925
7926
7927
7928
7929
7930
7931
7932
7933
7934
7935
7936
7937
7938
7939
7940
7941
7942
7943
7944
7945
7946
7947
7948
7949
7950
7951
7952
7953
7954
7955
7956
7957
7958
7959
7960
7961
7962
7963
7964
7965
7966
7967
7968
7969
7970
7971
7972
7973
7974
7975
7976
7977
7978
7979
7980
7981
7982
7983
7984
7985
7986
7987
7988
7989
7990
7991
7992
7993
7994
7995
7996
7997
7998
7999
8000
8001
8002
8003
8004
8005
8006
8007
8008
8009
8010
8011
8012
8013
8014
8015
8016
8017
8018
8019
8020
8021
8022
8023
8024
8025
8026
8027
8028
8029
8030
8031
8032
8033
8034
8035
8036
8037
8038
8039
8040
8041
8042
8043
8044
8045
8046
8047
8048
8049
8050
8051
8052
8053
8054
8055
8056
8057
8058
8059
8060
8061
8062
8063
8064
8065
8066
8067
8068
8069
8070
8071
8072
8073
8074
8075
8076
8077
8078
8079
8080
8081
8082
8083
8084
8085
8086
8087
8088
8089
8090
8091
8092
8093
8094
8095
8096
8097
8098
8099
8100
8101
8102
8103
8104
8105
8106
8107
8108
8109
8110
8111
8112
8113
8114
8115
8116
8117
8118
8119
8120
8121
8122
8123
8124
8125
8126
8127
8128
8129
8130
8131
8132
8133
8134
8135
8136
8137
8138
8139
8140
8141
8142
8143
8144
8145
8146
8147
8148
8149
8150
8151
8152
8153
8154
8155
8156
8157
8158
8159
8160
8161
8162
8163
8164
8165
8166
8167
8168
8169
8170
8171
8172
8173
8174
8175
8176
8177
8178
8179
8180
8181
8182
8183
8184
8185
8186
8187
8188
8189
8190
8191
8192
8193
8194
8195
8196
8197
8198
8199
8200
8201
8202
8203
8204
8205
8206
8207
8208
8209
8210
8211
8212
8213
8214
8215
8216
8217
8218
8219
8220
8221
8222
8223
8224
8225
8226
8227
8228
8229
8230
8231
8232
8233
8234
8235
8236
8237
8238
8239
8240
8241
8242
8243
8244
8245
8246
8247
8248
8249
8250
8251
8252
8253
8254
8255
8256
8257
8258
8259
8260
8261
8262
8263
8264
8265
8266
8267
8268
8269
8270
8271
8272
8273
8274
8275
8276
8277
8278
8279
8280
8281
8282
8283
8284
8285
8286
8287
8288
8289
8290
8291
8292
8293
8294
8295
8296
8297
8298
8299
8300
8301
8302
8303
8304
8305
8306
8307
8308
8309
8310
8311
8312
8313
8314
8315
8316
8317
8318
8319
8320
8321
8322
8323
8324
8325
8326
8327
8328
8329
8330
8331
8332
8333
8334
8335
8336
8337
8338
8339
8340
8341
8342
8343
8344
8345
8346
8347
8348
8349
8350
8351
8352
8353
8354
8355
8356
8357
8358
8359
8360
8361
8362
8363
8364
8365
8366
8367
8368
8369
8370
8371
8372
8373
8374
8375
8376
8377
8378
8379
8380
8381
8382
8383
8384
8385
8386
8387
8388
8389
8390
8391
8392
8393
8394
8395
8396
8397
8398
8399
8400
8401
8402
8403
8404
8405
8406
8407
8408
8409
8410
8411
8412
8413
8414
8415
8416
8417
8418
8419
8420
8421
8422
8423
8424
8425
8426
8427
8428
8429
8430
8431
8432
8433
8434
8435
8436
8437
8438
8439
8440
8441
8442
8443
8444
8445
8446
8447
8448
8449
8450
8451
8452
8453
8454
8455
8456
8457
8458
8459
8460
8461
8462
8463
8464
8465
8466
8467
8468
8469
8470
8471
8472
8473
8474
8475
8476
8477
8478
8479
8480
8481
8482
8483
8484
8485
8486
8487
8488
8489
8490
8491
8492
8493
8494
8495
8496
8497
8498
8499
8500
8501
8502
8503
8504
8505
8506
8507
8508
8509
8510
8511
8512
8513
8514
8515
8516
8517
8518
8519
8520
8521
8522
8523
8524
8525
8526
8527
8528
8529
8530
8531
8532
8533
8534
8535
8536
8537
8538
8539
8540
8541
8542
8543
8544
8545
8546
8547
8548
8549
8550
8551
8552
8553
8554
8555
8556
8557
8558
8559
8560
8561
8562
8563
8564
8565
8566
8567
8568
8569
8570
8571
8572
8573
8574
8575
8576
8577
8578
8579
8580
8581
8582
8583
8584
8585
8586
8587
8588
8589
8590
8591
8592
8593
8594
8595
8596
8597
8598
8599
8600
8601
8602
8603
8604
8605
8606
8607
8608
8609
8610
8611
8612
8613
8614
8615
8616
8617
8618
8619
8620
8621
8622
8623
8624
8625
8626
8627
8628
8629
8630
8631
8632
8633
8634
8635
8636
8637
8638
8639
8640
8641
8642
8643
8644
8645
8646
8647
8648
8649
8650
8651
8652
8653
8654
8655
8656
8657
8658
8659
8660
8661
8662
8663
8664
8665
8666
8667
8668
8669
8670
8671
8672
8673
8674
8675
8676
8677
8678
8679
8680
8681
8682
8683
8684
8685
8686
8687
8688
8689
8690
8691
8692
8693
8694
8695
8696
8697
8698
8699
8700
8701
8702
8703
8704
8705
8706
8707
8708
8709
8710
8711
8712
8713
8714
8715
8716
8717
8718
8719
8720
8721
8722
8723
8724
8725
8726
8727
8728
8729
8730
8731
8732
8733
8734
8735
8736
8737
8738
8739
8740
8741
8742
8743
8744
8745
8746
8747
8748
8749
8750
8751
8752
8753
8754
8755
8756
8757
8758
8759
8760
8761
8762
8763
8764
8765
8766
8767
8768
8769
8770
8771
8772
8773
8774
8775
8776
8777
8778
8779
8780
8781
8782
8783
8784
8785
8786
8787
8788
8789
8790
8791
8792
8793
8794
8795
8796
8797
8798
8799
8800
8801
8802
8803
8804
8805
8806
8807
8808
8809
8810
8811
8812
8813
8814
8815
8816
8817
8818
8819
8820
8821
8822
8823
8824
8825
8826
8827
8828
8829
8830
8831
8832
8833
8834
8835
8836
8837
8838
8839
8840
8841
8842
8843
8844
8845
8846
8847
8848
8849
8850
8851
8852
8853
8854
8855
8856
8857
8858
8859
8860
8861
8862
8863
8864
8865
8866
8867
8868
8869
8870
8871
8872
8873
8874
8875
8876
8877
8878
8879
8880
8881
8882
8883
8884
8885
8886
8887
8888
8889
8890
8891
8892
8893
8894
8895
8896
8897
8898
8899
8900
8901
8902
8903
8904
8905
8906
8907
8908
8909
8910
8911
8912
8913
8914
8915
8916
8917
8918
8919
8920
8921
8922
8923
8924
8925
8926
8927
8928
8929
8930
8931
8932
8933
8934
8935
8936
8937
8938
8939
8940
8941
8942
8943
8944
8945
8946
8947
8948
8949
8950
8951
8952
8953
8954
8955
8956
8957
8958
8959
8960
8961
8962
8963
8964
8965
8966
8967
8968
8969
8970
8971
8972
8973
8974
8975
8976
8977
8978
8979
8980
8981
8982
8983
8984
8985
8986
8987
8988
8989
8990
8991
8992
8993
8994
8995
8996
8997
8998
8999
9000
9001
9002
9003
9004
9005
9006
9007
9008
9009
9010
9011
9012
9013
9014
9015
9016
9017
9018
9019
9020
9021
9022
9023
9024
9025
9026
9027
9028
9029
9030
9031
9032
9033
9034
9035
9036
9037
9038
9039
9040
9041
9042
9043
9044
9045
9046
9047
9048
9049
9050
9051
9052
9053
9054
9055
9056
9057
9058
9059
9060
9061
9062
9063
9064
9065
9066
9067
9068
9069
9070
9071
9072
9073
9074
9075
9076
9077
9078
9079
9080
9081
9082
9083
9084
9085
9086
9087
9088
9089
9090
9091
9092
9093
9094
9095
9096
9097
9098
9099
9100
9101
9102
9103
9104
9105
9106
9107
9108
9109
9110
9111
9112
9113
9114
9115
9116
9117
9118
9119
9120
9121
9122
9123
9124
9125
9126
9127
9128
9129
9130
9131
9132
9133
9134
9135
9136
9137
9138
9139
9140
9141
9142
9143
9144
9145
9146
9147
9148
9149
9150
9151
9152
9153
9154
9155
9156
9157
9158
9159
9160
9161
9162
9163
9164
9165
9166
9167
9168
9169
9170
9171
9172
9173
9174
9175
9176
9177
9178
9179
9180
9181
9182
9183
9184
9185
9186
9187
9188
9189
9190
9191
9192
9193
9194
9195
9196
9197
9198
9199
9200
9201
9202
9203
9204
9205
9206
9207
9208
9209
9210
9211
9212
9213
9214
9215
9216
9217
9218
9219
9220
9221
9222
9223
9224
9225
9226
9227
9228
9229
9230
9231
9232
9233
9234
9235
9236
9237
9238
9239
9240
9241
9242
9243
9244
9245
9246
9247
9248
9249
9250
9251
9252
9253
9254
9255
9256
9257
9258
9259
9260
9261
9262
9263
9264
9265
9266
9267
9268
9269
9270
9271
9272
9273
9274
9275
9276
9277
9278
9279
9280
9281
9282
9283
9284
9285
9286
9287
9288
9289
9290
9291
9292
9293
9294
9295
9296
9297
9298
9299
9300
9301
9302
9303
9304
9305
9306
9307
9308
9309
9310
9311
9312
9313
9314
9315
9316
9317
9318
9319
9320
9321
9322
9323
9324
9325
9326
9327
9328
9329
9330
9331
9332
9333
9334
9335
9336
9337
9338
9339
9340
9341
9342
9343
9344
9345
9346
9347
9348
9349
9350
9351
9352
9353
9354
9355
9356
9357
9358
9359
9360
9361
9362
9363
9364
9365
9366
9367
9368
9369
9370
9371
9372
9373
9374
9375
9376
9377
9378
9379
9380
9381
9382
9383
9384
9385
9386
9387
9388
9389
9390
9391
9392
9393
9394
9395
9396
9397
9398
9399
9400
9401
9402
9403
9404
9405
9406
9407
9408
9409
9410
9411
9412
9413
9414
9415
9416
9417
9418
9419
9420
9421
9422
9423
9424
9425
9426
9427
9428
9429
9430
9431
9432
9433
9434
9435
9436
9437
9438
9439
9440
9441
9442
9443
9444
9445
9446
9447
9448
9449
9450
9451
9452
9453
9454
9455
9456
9457
9458
9459
9460
9461
9462
9463
9464
9465
9466
9467
9468
9469
9470
9471
9472
9473
9474
9475
9476
9477
9478
9479
9480
9481
9482
9483
9484
9485
9486
9487
9488
9489
9490
9491
9492
9493
9494
9495
9496
9497
9498
9499
9500
9501
9502
9503
9504
9505
9506
9507
9508
9509
9510
9511
9512
9513
9514
9515
9516
9517
9518
9519
9520
9521
9522
9523
9524
9525
9526
9527
9528
9529
9530
9531
9532
9533
9534
9535
9536
9537
9538
9539
9540
9541
9542
9543
9544
9545
9546
9547
9548
9549
9550
9551
9552
9553
9554
9555
9556
9557
9558
9559
9560
9561
9562
9563
9564
9565
9566
9567
9568
9569
9570
9571
9572
9573
9574
9575
9576
9577
9578
9579
9580
9581
9582
9583
9584
9585
9586
9587
9588
9589
9590
9591
9592
9593
9594
9595
9596
9597
9598
9599
9600
9601
9602
9603
9604
9605
9606
9607
9608
9609
9610
9611
9612
9613
9614
9615
9616
9617
9618
9619
9620
9621
9622
9623
9624
9625
9626
9627
9628
9629
9630
9631
9632
9633
9634
9635
9636
9637
9638
9639
9640
9641
9642
9643
9644
9645
9646
9647
9648
9649
9650
9651
9652
9653
9654
9655
9656
9657
9658
9659
9660
9661
9662
9663
9664
9665
9666
9667
9668
9669
9670
9671
9672
9673
9674
9675
9676
9677
9678
9679
9680
9681
9682
9683
9684
9685
9686
9687
9688
9689
9690
9691
9692
9693
9694
9695
9696
9697
9698
9699
9700
9701
9702
9703
9704
9705
9706
9707
9708
9709
9710
9711
9712
9713
9714
9715
9716
9717
9718
9719
9720
9721
9722
9723
9724
9725
9726
9727
9728
9729
9730
9731
9732
9733
9734
9735
9736
9737
9738
9739
9740
9741
9742
9743
9744
9745
9746
9747
9748
9749
9750
9751
9752
9753
9754
9755
9756
9757
9758
9759
9760
9761
9762
9763
9764
9765
9766
9767
9768
9769
9770
9771
9772
9773
9774
9775
9776
9777
9778
9779
9780
9781
9782
9783
9784
9785
9786
9787
9788
9789
9790
9791
9792
9793
9794
9795
9796
9797
9798
9799
9800
9801
9802
9803
9804
9805
9806
9807
9808
9809
9810
9811
9812
9813
9814
9815
9816
9817
9818
9819
9820
9821
9822
9823
9824
9825
9826
9827
9828
9829
9830
9831
9832
9833
9834
9835
9836
9837
9838
9839
9840
9841
9842
9843
9844
9845
9846
9847
9848
9849
9850
9851
9852
9853
9854
9855
9856
9857
9858
9859
9860
9861
9862
9863
9864
9865
9866
9867
9868
9869
9870
9871
9872
9873
9874
9875
9876
9877
9878
9879
9880
9881
9882
9883
9884
9885
9886
9887
9888
9889
9890
9891
9892
9893
9894
9895
9896
9897
9898
9899
9900
9901
9902
9903
9904
9905
9906
9907
9908
9909
9910
9911
9912
9913
9914
9915
9916
9917
9918
9919
9920
9921
9922
9923
9924
9925
9926
9927
9928
9929
9930
9931
9932
9933
9934
9935
9936
9937
9938
9939
9940
9941
9942
9943
9944
9945
9946
9947
9948
9949
9950
9951
9952
9953
9954
9955
9956
9957
9958
9959
9960
9961
9962
9963
9964
9965
9966
9967
9968
9969
9970
9971
9972
9973
9974
9975
9976
9977
9978
9979
9980
9981
9982
9983
9984
9985
9986
9987
9988
9989
9990
9991
9992
9993
9994
9995
9996
9997
9998
9999
10000
10001
10002
10003
10004
10005
10006
10007
10008
10009
10010
10011
10012
10013
10014
10015
10016
10017
10018
10019
10020
10021
10022
10023
10024
10025
10026
10027
10028
10029
10030
10031
10032
10033
10034
10035
10036
10037
10038
10039
10040
10041
10042
10043
10044
10045
10046
10047
10048
10049
10050
10051
10052
10053
10054
10055
10056
10057
10058
10059
10060
10061
10062
10063
10064
10065
10066
10067
10068
10069
10070
10071
10072
10073
10074
10075
10076
10077
10078
10079
10080
10081
10082
10083
10084
10085
10086
10087
10088
10089
10090
10091
10092
10093
10094
10095
10096
10097
10098
10099
10100
10101
10102
10103
10104
10105
10106
10107
10108
10109
10110
10111
10112
10113
10114
10115
10116
10117
10118
10119
10120
10121
10122
10123
10124
10125
10126
10127
10128
10129
10130
10131
10132
10133
10134
10135
10136
10137
10138
10139
10140
10141
10142
10143
10144
10145
10146
10147
10148
10149
10150
10151
10152
10153
10154
10155
10156
10157
10158
10159
10160
10161
10162
10163
10164
10165
10166
10167
10168
10169
10170
10171
10172
10173
10174
10175
10176
10177
10178
10179
10180
10181
10182
10183
10184
10185
10186
10187
10188
10189
10190
10191
10192
10193
10194
10195
10196
10197
10198
10199
10200
10201
10202
10203
10204
10205
10206
10207
10208
10209
10210
10211
10212
10213
10214
10215
10216
10217
10218
10219
10220
10221
10222
10223
10224
10225
10226
10227
10228
10229
10230
10231
10232
10233
10234
10235
10236
10237
10238
10239
10240
10241
10242
10243
10244
10245
10246
10247
10248
10249
10250
10251
10252
10253
10254
10255
10256
10257
10258
10259
10260
10261
10262
10263
10264
10265
10266
10267
10268
10269
10270
10271
10272
10273
10274
10275
10276
10277
10278
10279
10280
10281
10282
10283
10284
10285
10286
10287
10288
10289
10290
10291
10292
10293
10294
10295
10296
10297
10298
10299
10300
10301
10302
10303
10304
10305
10306
10307
10308
10309
10310
10311
10312
10313
10314
10315
10316
10317
10318
10319
10320
10321
10322
10323
10324
10325
10326
10327
10328
10329
10330
10331
10332
10333
10334
10335
10336
10337
10338
10339
10340
10341
10342
10343
10344
10345
10346
10347
10348
10349
10350
10351
10352
10353
10354
10355
10356
10357
10358
10359
10360
10361
10362
10363
10364
10365
10366
10367
10368
10369
10370
10371
10372
10373
10374
10375
10376
10377
10378
10379
10380
10381
10382
10383
10384
10385
10386
10387
10388
10389
10390
10391
10392
10393
10394
10395
10396
10397
10398
10399
10400
10401
10402
10403
10404
10405
10406
10407
10408
10409
10410
10411
10412
10413
10414
10415
10416
10417
10418
10419
10420
10421
10422
10423
10424
10425
10426
10427
10428
10429
10430
10431
10432
10433
10434
10435
10436
10437
10438
10439
10440
10441
10442
10443
10444
10445
10446
10447
10448
10449
10450
10451
10452
10453
10454
10455
10456
10457
10458
10459
10460
10461
10462
10463
10464
10465
10466
10467
10468
10469
10470
10471
10472
10473
10474
10475
10476
10477
10478
10479
10480
10481
10482
10483
10484
10485
10486
10487
10488
10489
10490
10491
10492
10493
10494
10495
10496
10497
10498
10499
10500
10501
10502
10503
10504
10505
10506
10507
10508
10509
10510
10511
10512
10513
10514
10515
10516
10517
10518
10519
10520
10521
10522
10523
10524
10525
10526
10527
10528
10529
10530
10531
10532
10533
10534
10535
10536
10537
10538
10539
10540
10541
10542
10543
10544
10545
10546
10547
10548
10549
10550
10551
10552
10553
10554
10555
10556
10557
10558
10559
10560
10561
10562
10563
10564
10565
10566
10567
10568
10569
10570
10571
10572
10573
10574
10575
10576
10577
10578
10579
10580
10581
10582
10583
10584
10585
10586
10587
10588
10589
10590
10591
10592
10593
10594
10595
10596
10597
10598
10599
10600
10601
10602
10603
10604
10605
10606
10607
10608
10609
10610
10611
10612
10613
10614
10615
10616
10617
10618
10619
10620
10621
10622
10623
10624
10625
10626
10627
10628
10629
10630
10631
10632
10633
10634
10635
10636
10637
10638
10639
10640
10641
10642
10643
10644
10645
10646
10647
10648
10649
10650
10651
10652
10653
10654
10655
10656
10657
10658
10659
10660
10661
10662
10663
10664
10665
10666
10667
10668
10669
10670
10671
10672
10673
10674
10675
10676
10677
10678
10679
10680
10681
10682
10683
10684
10685
10686
10687
10688
10689
10690
10691
10692
10693
10694
10695
10696
10697
10698
10699
10700
10701
10702
10703
10704
10705
10706
10707
10708
10709
10710
10711
10712
10713
10714
10715
10716
10717
10718
10719
10720
10721
10722
10723
10724
10725
10726
10727
10728
10729
10730
10731
10732
10733
10734
10735
10736
10737
10738
10739
10740
10741
10742
10743
10744
10745
10746
10747
10748
10749
10750
10751
10752
10753
10754
10755
10756
10757
10758
10759
10760
10761
10762
10763
10764
10765
10766
10767
10768
10769
10770
10771
10772
10773
10774
10775
10776
10777
10778
10779
10780
10781
10782
10783
10784
10785
10786
10787
10788
10789
10790
10791
10792
10793
10794
10795
10796
10797
10798
10799
10800
10801
10802
10803
10804
10805
10806
10807
10808
10809
10810
10811
10812
10813
10814
10815
10816
10817
10818
10819
10820
10821
10822
10823
10824
10825
10826
10827
10828
10829
10830
10831
10832
10833
10834
10835
10836
10837
10838
10839
10840
10841
10842
10843
10844
10845
10846
10847
10848
10849
10850
10851
10852
10853
10854
10855
10856
10857
10858
10859
10860
10861
10862
10863
10864
10865
10866
10867
10868
10869
10870
10871
10872
10873
10874
10875
10876
10877
10878
10879
10880
10881
10882
10883
10884
10885
10886
10887
10888
10889
10890
10891
10892
10893
10894
10895
10896
10897
10898
10899
10900
10901
10902
10903
10904
10905
10906
10907
10908
10909
10910
10911
10912
10913
10914
10915
10916
10917
10918
10919
10920
10921
10922
10923
10924
10925
10926
10927
10928
10929
10930
10931
10932
10933
10934
10935
10936
10937
10938
10939
10940
10941
10942
10943
10944
10945
10946
10947
10948
10949
10950
10951
10952
10953
10954
10955
10956
10957
10958
10959
10960
10961
10962
10963
10964
10965
10966
10967
10968
10969
10970
10971
10972
10973
10974
10975
10976
10977
10978
10979
10980
10981
10982
10983
10984
10985
10986
10987
10988
10989
10990
10991
10992
10993
10994
10995
10996
10997
10998
10999
11000
11001
11002
11003
11004
11005
11006
11007
11008
11009
11010
11011
11012
11013
11014
11015
11016
11017
11018
11019
11020
11021
11022
11023
11024
11025
11026
11027
11028
11029
11030
11031
11032
11033
11034
11035
11036
11037
11038
11039
11040
11041
11042
11043
11044
11045
11046
11047
11048
11049
11050
11051
11052
11053
11054
11055
11056
11057
11058
11059
11060
11061
11062
11063
11064
11065
11066
11067
11068
11069
11070
11071
11072
11073
11074
11075
11076
11077
11078
11079
11080
11081
11082
11083
11084
11085
11086
11087
11088
11089
11090
11091
11092
11093
11094
11095
11096
11097
11098
11099
11100
11101
11102
11103
11104
11105
11106
11107
11108
11109
11110
11111
11112
11113
11114
11115
11116
11117
11118
11119
11120
11121
11122
11123
11124
11125
11126
11127
11128
11129
11130
11131
11132
11133
11134
11135
11136
11137
11138
11139
11140
11141
11142
11143
11144
11145
11146
11147
11148
11149
11150
11151
11152
11153
11154
11155
11156
11157
11158
11159
11160
11161
11162
11163
11164
11165
11166
11167
11168
11169
11170
11171
11172
11173
11174
11175
11176
11177
11178
11179
11180
11181
11182
11183
11184
11185
11186
11187
11188
11189
11190
11191
11192
11193
11194
11195
11196
11197
11198
11199
11200
11201
11202
11203
11204
11205
11206
11207
11208
11209
11210
11211
11212
11213
11214
11215
11216
11217
11218
11219
11220
11221
11222
11223
11224
11225
11226
11227
11228
11229
11230
11231
11232
11233
11234
11235
11236
11237
11238
11239
11240
11241
11242
11243
11244
11245
11246
11247
11248
11249
11250
11251
11252
11253
11254
11255
11256
11257
11258
11259
11260
11261
11262
11263
11264
11265
11266
11267
11268
11269
11270
11271
11272
11273
11274
11275
11276
11277
11278
11279
11280
11281
11282
11283
11284
11285
11286
11287
11288
11289
11290
11291
11292
11293
11294
11295
11296
11297
11298
11299
11300
11301
11302
11303
11304
11305
11306
11307
11308
11309
11310
11311
11312
11313
11314
11315
11316
11317
11318
11319
11320
11321
11322
11323
11324
11325
11326
11327
11328
11329
11330
11331
11332
11333
11334
11335
11336
11337
11338
11339
11340
11341
11342
11343
11344
11345
11346
11347
11348
11349
11350
11351
11352
11353
11354
11355
11356
11357
11358
11359
11360
11361
11362
11363
11364
11365
11366
11367
11368
11369
11370
11371
11372
11373
11374
11375
11376
11377
11378
11379
11380
11381
11382
11383
11384
11385
11386
11387
11388
11389
11390
11391
11392
11393
11394
11395
11396
11397
11398
11399
11400
11401
11402
11403
11404
11405
11406
11407
11408
11409
11410
11411
11412
11413
11414
11415
11416
11417
11418
11419
11420
11421
11422
11423
11424
11425
11426
11427
11428
11429
11430
11431
11432
11433
11434
11435
11436
11437
11438
11439
11440
11441
11442
11443
11444
11445
11446
11447
11448
11449
11450
11451
11452
11453
11454
11455
11456
11457
11458
11459
11460
11461
11462
11463
11464
11465
11466
11467
11468
11469
11470
11471
11472
11473
11474
11475
11476
11477
11478
11479
11480
11481
11482
11483
11484
11485
11486
11487
11488
11489
11490
11491
11492
11493
11494
11495
11496
11497
11498
11499
11500
11501
11502
11503
11504
11505
11506
11507
11508
11509
11510
11511
11512
11513
11514
11515
11516
11517
11518
11519
11520
11521
11522
11523
11524
11525
11526
11527
11528
11529
11530
11531
11532
11533
11534
11535
11536
11537
11538
11539
11540
11541
11542
11543
11544
11545
11546
11547
11548
11549
11550
11551
11552
11553
11554
11555
11556
11557
11558
11559
11560
11561
11562
11563
11564
11565
11566
11567
11568
11569
11570
11571
11572
11573
11574
11575
11576
11577
11578
11579
11580
11581
11582
11583
11584
11585
11586
11587
11588
11589
11590
11591
11592
11593
11594
11595
11596
11597
11598
11599
11600
11601
11602
11603
11604
11605
11606
11607
11608
11609
11610
11611
11612
11613
11614
11615
11616
11617
11618
11619
11620
11621
11622
11623
11624
11625
11626
11627
11628
11629
11630
11631
11632
11633
11634
11635
11636
11637
11638
11639
11640
11641
11642
11643
11644
11645
11646
11647
11648
11649
11650
11651
11652
11653
11654
11655
11656
11657
11658
11659
11660
11661
11662
11663
11664
11665
11666
11667
11668
11669
11670
11671
11672
11673
11674
11675
11676
11677
11678
11679
11680
11681
11682
11683
11684
11685
11686
11687
11688
11689
11690
11691
11692
11693
11694
11695
11696
11697
11698
11699
11700
11701
11702
11703
11704
11705
11706
11707
11708
11709
11710
11711
11712
11713
11714
11715
11716
11717
11718
11719
11720
11721
11722
11723
11724
11725
11726
11727
11728
11729
11730
11731
11732
11733
11734
11735
11736
11737
11738
11739
11740
11741
11742
11743
11744
11745
11746
11747
11748
11749
11750
11751
11752
11753
11754
11755
11756
11757
11758
11759
11760
11761
11762
11763
11764
11765
11766
11767
11768
11769
11770
11771
11772
11773
11774
11775
11776
11777
11778
11779
11780
11781
11782
11783
11784
11785
11786
11787
11788
11789
11790
11791
11792
11793
11794
11795
11796
11797
11798
11799
11800
11801
11802
11803
11804
11805
11806
11807
11808
11809
11810
11811
11812
11813
11814
11815
11816
11817
11818
11819
11820
11821
11822
11823
11824
11825
11826
11827
11828
11829
11830
11831
11832
11833
11834
11835
11836
11837
11838
11839
11840
11841
11842
11843
11844
11845
11846
11847
11848
11849
11850
11851
11852
11853
11854
11855
11856
11857
11858
11859
11860
11861
11862
11863
11864
11865
11866
11867
11868
11869
11870
11871
11872
11873
11874
11875
11876
11877
11878
11879
11880
11881
11882
11883
11884
11885
11886
11887
11888
11889
11890
11891
11892
11893
11894
11895
11896
11897
11898
11899
11900
11901
11902
11903
11904
11905
11906
11907
11908
11909
11910
11911
11912
11913
11914
11915
11916
11917
11918
11919
11920
11921
11922
11923
11924
11925
11926
11927
11928
11929
11930
11931
11932
11933
11934
11935
11936
11937
11938
11939
11940
11941
11942
11943
11944
11945
11946
11947
11948
11949
11950
11951
11952
11953
11954
11955
11956
11957
11958
11959
11960
11961
11962
11963
11964
11965
11966
11967
11968
11969
11970
11971
11972
11973
11974
11975
11976
11977
11978
11979
11980
11981
11982
11983
11984
11985
11986
11987
11988
11989
11990
11991
11992
11993
11994
11995
11996
11997
11998
11999
12000
12001
12002
12003
12004
12005
12006
12007
12008
12009
12010
12011
12012
12013
12014
12015
12016
12017
12018
12019
12020
12021
12022
12023
12024
12025
12026
12027
12028
12029
12030
12031
12032
12033
12034
12035
12036
12037
12038
12039
12040
12041
12042
12043
12044
12045
12046
12047
12048
12049
12050
12051
12052
12053
12054
12055
12056
12057
12058
12059
12060
12061
12062
12063
12064
12065
12066
12067
12068
12069
12070
12071
12072
12073
12074
12075
12076
12077
12078
12079
12080
12081
12082
12083
12084
12085
12086
12087
12088
12089
12090
12091
12092
12093
12094
12095
12096
12097
12098
12099
12100
12101
12102
12103
12104
12105
12106
12107
12108
12109
12110
12111
12112
12113
12114
12115
12116
12117
12118
12119
12120
12121
12122
12123
12124
12125
12126
12127
12128
12129
12130
12131
12132
12133
12134
12135
12136
12137
12138
12139
12140
12141
12142
12143
12144
12145
12146
12147
12148
12149
12150
12151
12152
12153
12154
12155
12156
12157
12158
12159
12160
12161
12162
12163
12164
12165
12166
12167
12168
12169
12170
12171
12172
12173
12174
12175
12176
12177
12178
12179
12180
12181
12182
12183
12184
12185
12186
12187
12188
12189
12190
12191
12192
12193
12194
12195
12196
12197
12198
12199
12200
12201
12202
12203
12204
12205
12206
12207
12208
12209
12210
12211
12212
12213
12214
12215
12216
12217
12218
12219
12220
12221
12222
12223
12224
12225
12226
12227
12228
12229
12230
12231
12232
12233
12234
12235
12236
12237
12238
12239
12240
12241
12242
12243
12244
12245
12246
12247
12248
12249
12250
12251
12252
12253
12254
12255
12256
12257
12258
12259
12260
12261
12262
12263
12264
12265
12266
12267
12268
12269
12270
12271
12272
12273
12274
12275
12276
12277
12278
12279
12280
12281
12282
12283
12284
12285
12286
12287
12288
12289
12290
12291
12292
12293
12294
12295
12296
12297
12298
12299
12300
12301
12302
12303
12304
12305
12306
12307
12308
12309
12310
12311
12312
12313
12314
12315
12316
12317
12318
12319
12320
12321
12322
12323
12324
12325
12326
12327
12328
12329
12330
12331
12332
12333
12334
12335
12336
12337
12338
12339
12340
12341
12342
12343
12344
12345
12346
12347
12348
12349
12350
12351
12352
12353
12354
12355
12356
12357
12358
12359
12360
12361
12362
12363
12364
12365
12366
12367
12368
12369
12370
12371
12372
12373
12374
12375
12376
12377
12378
12379
12380
12381
12382
12383
12384
12385
12386
12387
12388
12389
12390
12391
12392
12393
12394
12395
12396
12397
12398
12399
12400
12401
12402
12403
12404
12405
12406
12407
12408
12409
12410
12411
12412
12413
12414
12415
12416
12417
12418
12419
12420
12421
12422
12423
12424
12425
12426
12427
12428
12429
12430
12431
12432
12433
12434
12435
12436
12437
12438
12439
12440
12441
12442
12443
12444
12445
12446
12447
12448
12449
12450
12451
12452
12453
12454
12455
12456
12457
12458
12459
12460
12461
12462
12463
12464
12465
12466
12467
12468
12469
12470
12471
12472
12473
12474
12475
12476
12477
12478
12479
12480
12481
12482
12483
12484
12485
12486
12487
12488
12489
12490
12491
12492
12493
12494
12495
12496
12497
12498
12499
12500
12501
12502
12503
12504
12505
12506
12507
12508
12509
12510
12511
12512
12513
12514
12515
12516
12517
12518
12519
12520
12521
12522
12523
12524
12525
12526
12527
12528
12529
12530
12531
12532
12533
12534
12535
12536
12537
12538
12539
12540
12541
12542
12543
12544
12545
12546
12547
12548
12549
12550
12551
12552
12553
12554
12555
12556
12557
12558
12559
12560
12561
12562
12563
12564
12565
12566
12567
12568
12569
12570
12571
12572
12573
12574
12575
12576
12577
12578
12579
12580
12581
12582
12583
12584
12585
12586
12587
12588
12589
12590
12591
12592
12593
12594
12595
12596
12597
12598
12599
12600
12601
12602
12603
12604
12605
12606
12607
12608
12609
12610
12611
12612
12613
12614
12615
12616
12617
12618
12619
12620
12621
12622
12623
12624
12625
12626
12627
12628
12629
12630
12631
12632
12633
12634
12635
12636
12637
12638
12639
12640
12641
12642
12643
12644
12645
12646
12647
12648
12649
12650
12651
12652
12653
12654
12655
12656
12657
12658
12659
12660
12661
12662
12663
12664
12665
12666
12667
12668
12669
12670
12671
12672
12673
12674
12675
12676
12677
12678
12679
12680
12681
12682
12683
12684
12685
12686
12687
12688
12689
12690
12691
12692
12693
12694
12695
12696
12697
12698
12699
12700
12701
12702
12703
12704
12705
12706
12707
12708
12709
12710
12711
12712
12713
12714
12715
12716
12717
12718
12719
12720
12721
12722
12723
12724
12725
12726
12727
12728
12729
12730
12731
12732
12733
12734
12735
12736
12737
12738
12739
12740
12741
12742
12743
12744
12745
12746
12747
12748
12749
12750
12751
12752
12753
12754
12755
12756
12757
12758
12759
12760
12761
12762
12763
12764
12765
12766
12767
12768
12769
12770
12771
12772
12773
12774
12775
12776
12777
12778
12779
12780
12781
12782
12783
12784
12785
12786
12787
12788
12789
12790
12791
12792
12793
12794
12795
12796
12797
12798
12799
12800
12801
12802
12803
12804
12805
12806
12807
12808
12809
12810
12811
12812
12813
12814
12815
12816
12817
12818
12819
12820
12821
12822
12823
12824
12825
12826
12827
12828
12829
12830
12831
12832
12833
12834
12835
12836
12837
12838
12839
12840
12841
12842
12843
12844
12845
12846
12847
12848
12849
12850
12851
12852
12853
12854
12855
12856
12857
12858
12859
12860
12861
12862
12863
12864
12865
12866
12867
12868
12869
12870
12871
12872
12873
12874
12875
12876
12877
12878
12879
12880
12881
12882
12883
12884
12885
12886
12887
12888
12889
12890
12891
12892
12893
12894
12895
12896
12897
12898
12899
12900
12901
12902
12903
12904
12905
12906
12907
12908
12909
12910
12911
12912
12913
12914
12915
12916
12917
12918
12919
12920
12921
12922
12923
12924
12925
12926
12927
12928
12929
12930
12931
12932
12933
12934
12935
12936
12937
12938
12939
12940
12941
12942
12943
12944
12945
12946
12947
12948
12949
12950
12951
12952
12953
12954
12955
12956
12957
12958
12959
12960
12961
12962
12963
12964
12965
12966
12967
12968
12969
12970
12971
12972
12973
12974
12975
12976
12977
12978
12979
12980
12981
12982
12983
12984
12985
12986
12987
12988
12989
12990
12991
12992
12993
12994
12995
12996
12997
12998
12999
13000
13001
13002
13003
13004
13005
13006
13007
13008
13009
13010
13011
13012
13013
13014
13015
13016
13017
13018
13019
13020
13021
13022
13023
13024
13025
13026
13027
13028
13029
13030
13031
13032
13033
13034
13035
13036
13037
13038
13039
13040
13041
13042
13043
13044
13045
13046
13047
13048
13049
13050
13051
13052
13053
13054
13055
13056
13057
13058
13059
13060
13061
13062
13063
13064
13065
13066
13067
13068
13069
13070
13071
13072
13073
13074
13075
13076
13077
13078
13079
13080
13081
13082
13083
13084
13085
13086
13087
13088
13089
13090
13091
13092
13093
13094
13095
13096
13097
13098
13099
13100
13101
13102
13103
13104
13105
13106
13107
13108
13109
13110
13111
13112
13113
13114
13115
13116
13117
13118
13119
13120
13121
13122
13123
13124
13125
13126
13127
13128
13129
13130
13131
13132
13133
13134
13135
13136
13137
13138
13139
13140
13141
13142
13143
13144
13145
13146
13147
13148
13149
13150
13151
13152
13153
13154
13155
13156
13157
13158
13159
13160
13161
13162
13163
13164
13165
13166
13167
13168
13169
13170
13171
13172
13173
13174
13175
13176
13177
13178
13179
13180
13181
13182
13183
13184
13185
13186
13187
13188
13189
13190
13191
13192
13193
13194
13195
13196
13197
13198
13199
13200
13201
13202
13203
13204
13205
13206
13207
13208
13209
13210
13211
13212
13213
13214
13215
13216
13217
13218
13219
13220
13221
13222
13223
13224
13225
13226
13227
13228
13229
13230
13231
13232
13233
13234
13235
13236
13237
13238
13239
13240
13241
13242
13243
13244
13245
13246
13247
13248
13249
13250
13251
13252
13253
13254
13255
13256
13257
13258
13259
13260
13261
13262
13263
13264
13265
13266
13267
13268
13269
13270
13271
13272
13273
13274
13275
13276
13277
13278
13279
13280
13281
13282
13283
13284
13285
13286
13287
13288
13289
13290
13291
13292
13293
13294
13295
13296
13297
13298
13299
13300
13301
13302
13303
13304
13305
13306
13307
13308
13309
13310
13311
13312
13313
13314
13315
13316
13317
13318
13319
13320
13321
13322
13323
13324
13325
13326
13327
13328
13329
13330
13331
13332
13333
13334
13335
13336
13337
13338
13339
13340
13341
13342
13343
13344
13345
13346
13347
13348
13349
13350
13351
13352
13353
13354
13355
13356
13357
13358
13359
13360
13361
13362
13363
13364
13365
13366
13367
13368
13369
13370
13371
13372
13373
13374
13375
13376
13377
13378
13379
13380
13381
13382
13383
13384
13385
13386
13387
13388
13389
13390
13391
13392
13393
13394
13395
13396
13397
13398
13399
13400
13401
13402
13403
13404
13405
13406
13407
13408
13409
13410
13411
13412
13413
13414
13415
13416
13417
13418
13419
13420
13421
13422
13423
13424
13425
13426
13427
13428
13429
13430
13431
13432
13433
13434
13435
13436
13437
13438
13439
13440
13441
13442
13443
13444
13445
13446
13447
13448
13449
13450
13451
13452
13453
13454
13455
13456
13457
13458
13459
13460
13461
13462
13463
13464
13465
13466
13467
13468
13469
13470
13471
13472
13473
13474
13475
13476
13477
13478
13479
13480
13481
13482
13483
13484
13485
13486
13487
13488
13489
13490
13491
13492
13493
13494
13495
13496
13497
13498
13499
13500
13501
13502
13503
13504
13505
13506
13507
13508
13509
13510
13511
13512
13513
13514
13515
13516
13517
13518
13519
13520
13521
13522
13523
13524
13525
13526
13527
13528
13529
13530
13531
13532
13533
13534
13535
13536
13537
13538
13539
13540
13541
13542
13543
13544
13545
13546
13547
13548
13549
13550
13551
13552
13553
13554
13555
13556
13557
13558
13559
13560
13561
13562
13563
13564
13565
13566
13567
13568
13569
13570
13571
13572
13573
13574
13575
13576
13577
13578
13579
13580
13581
13582
13583
13584
13585
13586
13587
13588
13589
/* Parser for C and Objective-C.
   Copyright (C) 1987-2013 Free Software Foundation, Inc.

   Parser actions based on the old Bison parser; structure somewhat
   influenced by and fragments based on the C++ parser.

This file is part of GCC.

GCC is free software; you can redistribute it and/or modify it under
the terms of the GNU General Public License as published by the Free
Software Foundation; either version 3, or (at your option) any later
version.

GCC is distributed in the hope that it will be useful, but WITHOUT ANY
WARRANTY; without even the implied warranty of MERCHANTABILITY or
FITNESS FOR A PARTICULAR PURPOSE.  See the GNU General Public License
for more details.

You should have received a copy of the GNU General Public License
along with GCC; see the file COPYING3.  If not see
<http://www.gnu.org/licenses/>.  */

/* TODO:

   Make sure all relevant comments, and all relevant code from all
   actions, brought over from old parser.  Verify exact correspondence
   of syntax accepted.

   Add testcases covering every input symbol in every state in old and
   new parsers.

   Include full syntax for GNU C, including erroneous cases accepted
   with error messages, in syntax productions in comments.

   Make more diagnostics in the front end generally take an explicit
   location rather than implicitly using input_location.  */

#include "config.h"
#include "system.h"
#include "coretypes.h"
#include "tm.h"			/* For rtl.h: needs enum reg_class.  */
#include "tree.h"
#include "langhooks.h"
#include "input.h"
#include "cpplib.h"
#include "timevar.h"
#include "c-family/c-pragma.h"
#include "c-tree.h"
#include "c-lang.h"
#include "flags.h"
#include "ggc.h"
#include "c-family/c-common.h"
#include "c-family/c-objc.h"
#include "vec.h"
#include "target.h"
#include "cgraph.h"
#include "plugin.h"
#include "omp-low.h"


/* Initialization routine for this file.  */

void
c_parse_init (void)
{
  /* The only initialization required is of the reserved word
     identifiers.  */
  unsigned int i;
  tree id;
  int mask = 0;

  /* Make sure RID_MAX hasn't grown past the 8 bits used to hold the keyword in
     the c_token structure.  */
  gcc_assert (RID_MAX <= 255);

  mask |= D_CXXONLY;
  if (!flag_isoc99)
    mask |= D_C99;
  if (flag_no_asm)
    {
      mask |= D_ASM | D_EXT;
      if (!flag_isoc99)
	mask |= D_EXT89;
    }
  if (!c_dialect_objc ())
    mask |= D_OBJC | D_CXX_OBJC;

  ridpointers = ggc_alloc_cleared_vec_tree ((int) RID_MAX);
  for (i = 0; i < num_c_common_reswords; i++)
    {
      /* If a keyword is disabled, do not enter it into the table
	 and so create a canonical spelling that isn't a keyword.  */
      if (c_common_reswords[i].disable & mask)
	{
	  if (warn_cxx_compat
	      && (c_common_reswords[i].disable & D_CXXWARN))
	    {
	      id = get_identifier (c_common_reswords[i].word);
	      C_SET_RID_CODE (id, RID_CXX_COMPAT_WARN);
	      C_IS_RESERVED_WORD (id) = 1;
	    }
	  continue;
	}

      id = get_identifier (c_common_reswords[i].word);
      C_SET_RID_CODE (id, c_common_reswords[i].rid);
      C_IS_RESERVED_WORD (id) = 1;
      ridpointers [(int) c_common_reswords[i].rid] = id;
    }
}

/* The C lexer intermediates between the lexer in cpplib and c-lex.c
   and the C parser.  Unlike the C++ lexer, the parser structure
   stores the lexer information instead of using a separate structure.
   Identifiers are separated into ordinary identifiers, type names,
   keywords and some other Objective-C types of identifiers, and some
   look-ahead is maintained.

   ??? It might be a good idea to lex the whole file up front (as for
   C++).  It would then be possible to share more of the C and C++
   lexer code, if desired.  */

/* The following local token type is used.  */

/* A keyword.  */
#define CPP_KEYWORD ((enum cpp_ttype) (N_TTYPES + 1))

/* More information about the type of a CPP_NAME token.  */
typedef enum c_id_kind {
  /* An ordinary identifier.  */
  C_ID_ID,
  /* An identifier declared as a typedef name.  */
  C_ID_TYPENAME,
  /* An identifier declared as an Objective-C class name.  */
  C_ID_CLASSNAME,
  /* An address space identifier.  */
  C_ID_ADDRSPACE,
  /* Not an identifier.  */
  C_ID_NONE
} c_id_kind;

/* A single C token after string literal concatenation and conversion
   of preprocessing tokens to tokens.  */
typedef struct GTY (()) c_token {
  /* The kind of token.  */
  ENUM_BITFIELD (cpp_ttype) type : 8;
  /* If this token is a CPP_NAME, this value indicates whether also
     declared as some kind of type.  Otherwise, it is C_ID_NONE.  */
  ENUM_BITFIELD (c_id_kind) id_kind : 8;
  /* If this token is a keyword, this value indicates which keyword.
     Otherwise, this value is RID_MAX.  */
  ENUM_BITFIELD (rid) keyword : 8;
  /* If this token is a CPP_PRAGMA, this indicates the pragma that
     was seen.  Otherwise it is PRAGMA_NONE.  */
  ENUM_BITFIELD (pragma_kind) pragma_kind : 8;
  /* The location at which this token was found.  */
  location_t location;
  /* The value associated with this token, if any.  */
  tree value;
} c_token;

/* A parser structure recording information about the state and
   context of parsing.  Includes lexer information with up to two
   tokens of look-ahead; more are not needed for C.  */
typedef struct GTY(()) c_parser {
  /* The look-ahead tokens.  */
  c_token * GTY((skip)) tokens;
  /* Buffer for look-ahead tokens.  */
  c_token tokens_buf[2];
  /* How many look-ahead tokens are available (0, 1 or 2, or
     more if parsing from pre-lexed tokens).  */
  unsigned int tokens_avail;
  /* True if a syntax error is being recovered from; false otherwise.
     c_parser_error sets this flag.  It should clear this flag when
     enough tokens have been consumed to recover from the error.  */
  BOOL_BITFIELD error : 1;
  /* True if we're processing a pragma, and shouldn't automatically
     consume CPP_PRAGMA_EOL.  */
  BOOL_BITFIELD in_pragma : 1;
  /* True if we're parsing the outermost block of an if statement.  */
  BOOL_BITFIELD in_if_block : 1;
  /* True if we want to lex an untranslated string.  */
  BOOL_BITFIELD lex_untranslated_string : 1;

  /* Objective-C specific parser/lexer information.  */

  /* True if we are in a context where the Objective-C "PQ" keywords
     are considered keywords.  */
  BOOL_BITFIELD objc_pq_context : 1;
  /* True if we are parsing a (potential) Objective-C foreach
     statement.  This is set to true after we parsed 'for (' and while
     we wait for 'in' or ';' to decide if it's a standard C for loop or an
     Objective-C foreach loop.  */
  BOOL_BITFIELD objc_could_be_foreach_context : 1;
  /* The following flag is needed to contextualize Objective-C lexical
     analysis.  In some cases (e.g., 'int NSObject;'), it is
     undesirable to bind an identifier to an Objective-C class, even
     if a class with that name exists.  */
  BOOL_BITFIELD objc_need_raw_identifier : 1;
  /* Nonzero if we're processing a __transaction statement.  The value
     is 1 | TM_STMT_ATTR_*.  */
  unsigned int in_transaction : 4;
  /* True if we are in a context where the Objective-C "Property attribute"
     keywords are valid.  */
  BOOL_BITFIELD objc_property_attr_context : 1;
} c_parser;


/* The actual parser and external interface.  ??? Does this need to be
   garbage-collected?  */

static GTY (()) c_parser *the_parser;

/* Read in and lex a single token, storing it in *TOKEN.  */

static void
c_lex_one_token (c_parser *parser, c_token *token)
{
  timevar_push (TV_LEX);

  token->type = c_lex_with_flags (&token->value, &token->location, NULL,
				  (parser->lex_untranslated_string
				   ? C_LEX_STRING_NO_TRANSLATE : 0));
  token->id_kind = C_ID_NONE;
  token->keyword = RID_MAX;
  token->pragma_kind = PRAGMA_NONE;

  switch (token->type)
    {
    case CPP_NAME:
      {
	tree decl;

	bool objc_force_identifier = parser->objc_need_raw_identifier;
	if (c_dialect_objc ())
	  parser->objc_need_raw_identifier = false;

	if (C_IS_RESERVED_WORD (token->value))
	  {
	    enum rid rid_code = C_RID_CODE (token->value);

	    if (rid_code == RID_CXX_COMPAT_WARN)
	      {
		warning_at (token->location,
			    OPT_Wc___compat,
			    "identifier %qE conflicts with C++ keyword",
			    token->value);
	      }
	    else if (rid_code >= RID_FIRST_ADDR_SPACE
		     && rid_code <= RID_LAST_ADDR_SPACE)
	      {
		token->id_kind = C_ID_ADDRSPACE;
		token->keyword = rid_code;
		break;
	      }
	    else if (c_dialect_objc () && OBJC_IS_PQ_KEYWORD (rid_code))
	      {
		/* We found an Objective-C "pq" keyword (in, out,
		   inout, bycopy, byref, oneway).  They need special
		   care because the interpretation depends on the
		   context.  */
		if (parser->objc_pq_context)
		  {
		    token->type = CPP_KEYWORD;
		    token->keyword = rid_code;
		    break;
		  }
		else if (parser->objc_could_be_foreach_context
			 && rid_code == RID_IN)
		  {
		    /* We are in Objective-C, inside a (potential)
		       foreach context (which means after having
		       parsed 'for (', but before having parsed ';'),
		       and we found 'in'.  We consider it the keyword
		       which terminates the declaration at the
		       beginning of a foreach-statement.  Note that
		       this means you can't use 'in' for anything else
		       in that context; in particular, in Objective-C
		       you can't use 'in' as the name of the running
		       variable in a C for loop.  We could potentially
		       try to add code here to disambiguate, but it
		       seems a reasonable limitation.  */
		    token->type = CPP_KEYWORD;
		    token->keyword = rid_code;
		    break;
		  }
		/* Else, "pq" keywords outside of the "pq" context are
		   not keywords, and we fall through to the code for
		   normal tokens.  */
	      }
	    else if (c_dialect_objc () && OBJC_IS_PATTR_KEYWORD (rid_code))
	      {
		/* We found an Objective-C "property attribute"
		   keyword (getter, setter, readonly, etc). These are
		   only valid in the property context.  */
		if (parser->objc_property_attr_context)
		  {
		    token->type = CPP_KEYWORD;
		    token->keyword = rid_code;
		    break;
		  }
		/* Else they are not special keywords.
		*/
	      }
	    else if (c_dialect_objc () 
		     && (OBJC_IS_AT_KEYWORD (rid_code)
			 || OBJC_IS_CXX_KEYWORD (rid_code)))
	      {
		/* We found one of the Objective-C "@" keywords (defs,
		   selector, synchronized, etc) or one of the
		   Objective-C "cxx" keywords (class, private,
		   protected, public, try, catch, throw) without a
		   preceding '@' sign.  Do nothing and fall through to
		   the code for normal tokens (in C++ we would still
		   consider the CXX ones keywords, but not in C).  */
		;
	      }
	    else
	      {
		token->type = CPP_KEYWORD;
		token->keyword = rid_code;
		break;
	      }
	  }

	decl = lookup_name (token->value);
	if (decl)
	  {
	    if (TREE_CODE (decl) == TYPE_DECL)
	      {
		token->id_kind = C_ID_TYPENAME;
		break;
	      }
	  }
	else if (c_dialect_objc ())
	  {
	    tree objc_interface_decl = objc_is_class_name (token->value);
	    /* Objective-C class names are in the same namespace as
	       variables and typedefs, and hence are shadowed by local
	       declarations.  */
	    if (objc_interface_decl
                && (!objc_force_identifier || global_bindings_p ()))
	      {
		token->value = objc_interface_decl;
		token->id_kind = C_ID_CLASSNAME;
		break;
	      }
	  }
        token->id_kind = C_ID_ID;
      }
      break;
    case CPP_AT_NAME:
      /* This only happens in Objective-C; it must be a keyword.  */
      token->type = CPP_KEYWORD;
      switch (C_RID_CODE (token->value))
	{
	  /* Replace 'class' with '@class', 'private' with '@private',
	     etc.  This prevents confusion with the C++ keyword
	     'class', and makes the tokens consistent with other
	     Objective-C 'AT' keywords.  For example '@class' is
	     reported as RID_AT_CLASS which is consistent with
	     '@synchronized', which is reported as
	     RID_AT_SYNCHRONIZED.
	  */
	case RID_CLASS:     token->keyword = RID_AT_CLASS; break;
	case RID_PRIVATE:   token->keyword = RID_AT_PRIVATE; break;
	case RID_PROTECTED: token->keyword = RID_AT_PROTECTED; break;
	case RID_PUBLIC:    token->keyword = RID_AT_PUBLIC; break;
	case RID_THROW:     token->keyword = RID_AT_THROW; break;
	case RID_TRY:       token->keyword = RID_AT_TRY; break;
	case RID_CATCH:     token->keyword = RID_AT_CATCH; break;
	default:            token->keyword = C_RID_CODE (token->value);
	}
      break;
    case CPP_COLON:
    case CPP_COMMA:
    case CPP_CLOSE_PAREN:
    case CPP_SEMICOLON:
      /* These tokens may affect the interpretation of any identifiers
	 following, if doing Objective-C.  */
      if (c_dialect_objc ())
	parser->objc_need_raw_identifier = false;
      break;
    case CPP_PRAGMA:
      /* We smuggled the cpp_token->u.pragma value in an INTEGER_CST.  */
      token->pragma_kind = (enum pragma_kind) TREE_INT_CST_LOW (token->value);
      token->value = NULL;
      break;
    default:
      break;
    }
  timevar_pop (TV_LEX);
}

/* Return a pointer to the next token from PARSER, reading it in if
   necessary.  */

static inline c_token *
c_parser_peek_token (c_parser *parser)
{
  if (parser->tokens_avail == 0)
    {
      c_lex_one_token (parser, &parser->tokens[0]);
      parser->tokens_avail = 1;
    }
  return &parser->tokens[0];
}

/* Return true if the next token from PARSER has the indicated
   TYPE.  */

static inline bool
c_parser_next_token_is (c_parser *parser, enum cpp_ttype type)
{
  return c_parser_peek_token (parser)->type == type;
}

/* Return true if the next token from PARSER does not have the
   indicated TYPE.  */

static inline bool
c_parser_next_token_is_not (c_parser *parser, enum cpp_ttype type)
{
  return !c_parser_next_token_is (parser, type);
}

/* Return true if the next token from PARSER is the indicated
   KEYWORD.  */

static inline bool
c_parser_next_token_is_keyword (c_parser *parser, enum rid keyword)
{
  return c_parser_peek_token (parser)->keyword == keyword;
}

/* Return a pointer to the next-but-one token from PARSER, reading it
   in if necessary.  The next token is already read in.  */

static c_token *
c_parser_peek_2nd_token (c_parser *parser)
{
  if (parser->tokens_avail >= 2)
    return &parser->tokens[1];
  gcc_assert (parser->tokens_avail == 1);
  gcc_assert (parser->tokens[0].type != CPP_EOF);
  gcc_assert (parser->tokens[0].type != CPP_PRAGMA_EOL);
  c_lex_one_token (parser, &parser->tokens[1]);
  parser->tokens_avail = 2;
  return &parser->tokens[1];
}

/* Return true if TOKEN can start a type name,
   false otherwise.  */
static bool
c_token_starts_typename (c_token *token)
{
  switch (token->type)
    {
    case CPP_NAME:
      switch (token->id_kind)
	{
	case C_ID_ID:
	  return false;
	case C_ID_ADDRSPACE:
	  return true;
	case C_ID_TYPENAME:
	  return true;
	case C_ID_CLASSNAME:
	  gcc_assert (c_dialect_objc ());
	  return true;
	default:
	  gcc_unreachable ();
	}
    case CPP_KEYWORD:
      switch (token->keyword)
	{
	case RID_UNSIGNED:
	case RID_LONG:
	case RID_INT128:
	case RID_SHORT:
	case RID_SIGNED:
	case RID_COMPLEX:
	case RID_INT:
	case RID_CHAR:
	case RID_FLOAT:
	case RID_DOUBLE:
	case RID_VOID:
	case RID_DFLOAT32:
	case RID_DFLOAT64:
	case RID_DFLOAT128:
	case RID_BOOL:
	case RID_ENUM:
	case RID_STRUCT:
	case RID_UNION:
	case RID_TYPEOF:
	case RID_CONST:
	case RID_ATOMIC:
	case RID_VOLATILE:
	case RID_RESTRICT:
	case RID_ATTRIBUTE:
	case RID_FRACT:
	case RID_ACCUM:
	case RID_SAT:
	  return true;
	default:
	  return false;
	}
    case CPP_LESS:
      if (c_dialect_objc ())
	return true;
      return false;
    default:
      return false;
    }
}

enum c_lookahead_kind {
  /* Always treat unknown identifiers as typenames.  */
  cla_prefer_type,

  /* Could be parsing a nonabstract declarator.  Only treat an identifier
     as a typename if followed by another identifier or a star.  */
  cla_nonabstract_decl,

  /* Never treat identifiers as typenames.  */
  cla_prefer_id
};

/* Return true if the next token from PARSER can start a type name,
   false otherwise.  LA specifies how to do lookahead in order to
   detect unknown type names.  If unsure, pick CLA_PREFER_ID.  */

static inline bool
c_parser_next_tokens_start_typename (c_parser *parser, enum c_lookahead_kind la)
{
  c_token *token = c_parser_peek_token (parser);
  if (c_token_starts_typename (token))
    return true;

  /* Try a bit harder to detect an unknown typename.  */
  if (la != cla_prefer_id
      && token->type == CPP_NAME
      && token->id_kind == C_ID_ID

      /* Do not try too hard when we could have "object in array".  */
      && !parser->objc_could_be_foreach_context

      && (la == cla_prefer_type
	  || c_parser_peek_2nd_token (parser)->type == CPP_NAME
	  || c_parser_peek_2nd_token (parser)->type == CPP_MULT)

      /* Only unknown identifiers.  */
      && !lookup_name (token->value))
    return true;

  return false;
}

/* Return true if TOKEN is a type qualifier, false otherwise.  */
static bool
c_token_is_qualifier (c_token *token)
{
  switch (token->type)
    {
    case CPP_NAME:
      switch (token->id_kind)
	{
	case C_ID_ADDRSPACE:
	  return true;
	default:
	  return false;
	}
    case CPP_KEYWORD:
      switch (token->keyword)
	{
	case RID_CONST:
	case RID_VOLATILE:
	case RID_RESTRICT:
	case RID_ATTRIBUTE:
	case RID_ATOMIC:
	  return true;
	default:
	  return false;
	}
    case CPP_LESS:
      return false;
    default:
      gcc_unreachable ();
    }
}

/* Return true if the next token from PARSER is a type qualifier,
   false otherwise.  */
static inline bool
c_parser_next_token_is_qualifier (c_parser *parser)
{
  c_token *token = c_parser_peek_token (parser);
  return c_token_is_qualifier (token);
}

/* Return true if TOKEN can start declaration specifiers, false
   otherwise.  */
static bool
c_token_starts_declspecs (c_token *token)
{
  switch (token->type)
    {
    case CPP_NAME:
      switch (token->id_kind)
	{
	case C_ID_ID:
	  return false;
	case C_ID_ADDRSPACE:
	  return true;
	case C_ID_TYPENAME:
	  return true;
	case C_ID_CLASSNAME:
	  gcc_assert (c_dialect_objc ());
	  return true;
	default:
	  gcc_unreachable ();
	}
    case CPP_KEYWORD:
      switch (token->keyword)
	{
	case RID_STATIC:
	case RID_EXTERN:
	case RID_REGISTER:
	case RID_TYPEDEF:
	case RID_INLINE:
	case RID_NORETURN:
	case RID_AUTO:
	case RID_THREAD:
	case RID_UNSIGNED:
	case RID_LONG:
	case RID_INT128:
	case RID_SHORT:
	case RID_SIGNED:
	case RID_COMPLEX:
	case RID_INT:
	case RID_CHAR:
	case RID_FLOAT:
	case RID_DOUBLE:
	case RID_VOID:
	case RID_DFLOAT32:
	case RID_DFLOAT64:
	case RID_DFLOAT128:
	case RID_BOOL:
	case RID_ENUM:
	case RID_STRUCT:
	case RID_UNION:
	case RID_TYPEOF:
	case RID_CONST:
	case RID_VOLATILE:
	case RID_RESTRICT:
	case RID_ATTRIBUTE:
	case RID_FRACT:
	case RID_ACCUM:
	case RID_SAT:
	case RID_ALIGNAS:
	case RID_ATOMIC:
	  return true;
	default:
	  return false;
	}
    case CPP_LESS:
      if (c_dialect_objc ())
	return true;
      return false;
    default:
      return false;
    }
}


/* Return true if TOKEN can start declaration specifiers or a static
   assertion, false otherwise.  */
static bool
c_token_starts_declaration (c_token *token)
{
  if (c_token_starts_declspecs (token)
      || token->keyword == RID_STATIC_ASSERT)
    return true;
  else
    return false;
}

/* Return true if the next token from PARSER can start declaration
   specifiers, false otherwise.  */
static inline bool
c_parser_next_token_starts_declspecs (c_parser *parser)
{
  c_token *token = c_parser_peek_token (parser);

  /* In Objective-C, a classname normally starts a declspecs unless it
     is immediately followed by a dot.  In that case, it is the
     Objective-C 2.0 "dot-syntax" for class objects, ie, calls the
     setter/getter on the class.  c_token_starts_declspecs() can't
     differentiate between the two cases because it only checks the
     current token, so we have a special check here.  */
  if (c_dialect_objc () 
      && token->type == CPP_NAME
      && token->id_kind == C_ID_CLASSNAME 
      && c_parser_peek_2nd_token (parser)->type == CPP_DOT)
    return false;

  return c_token_starts_declspecs (token);
}

/* Return true if the next tokens from PARSER can start declaration
   specifiers or a static assertion, false otherwise.  */
static inline bool
c_parser_next_tokens_start_declaration (c_parser *parser)
{
  c_token *token = c_parser_peek_token (parser);

  /* Same as above.  */
  if (c_dialect_objc () 
      && token->type == CPP_NAME
      && token->id_kind == C_ID_CLASSNAME 
      && c_parser_peek_2nd_token (parser)->type == CPP_DOT)
    return false;

  /* Labels do not start declarations.  */
  if (token->type == CPP_NAME
      && c_parser_peek_2nd_token (parser)->type == CPP_COLON)
    return false;

  if (c_token_starts_declaration (token))
    return true;

  if (c_parser_next_tokens_start_typename (parser, cla_nonabstract_decl))
    return true;

  return false;
}

/* Consume the next token from PARSER.  */

static void
c_parser_consume_token (c_parser *parser)
{
  gcc_assert (parser->tokens_avail >= 1);
  gcc_assert (parser->tokens[0].type != CPP_EOF);
  gcc_assert (!parser->in_pragma || parser->tokens[0].type != CPP_PRAGMA_EOL);
  gcc_assert (parser->error || parser->tokens[0].type != CPP_PRAGMA);
  if (parser->tokens != &parser->tokens_buf[0])
    parser->tokens++;
  else if (parser->tokens_avail == 2)
    parser->tokens[0] = parser->tokens[1];
  parser->tokens_avail--;
}

/* Expect the current token to be a #pragma.  Consume it and remember
   that we've begun parsing a pragma.  */

static void
c_parser_consume_pragma (c_parser *parser)
{
  gcc_assert (!parser->in_pragma);
  gcc_assert (parser->tokens_avail >= 1);
  gcc_assert (parser->tokens[0].type == CPP_PRAGMA);
  if (parser->tokens != &parser->tokens_buf[0])
    parser->tokens++;
  else if (parser->tokens_avail == 2)
    parser->tokens[0] = parser->tokens[1];
  parser->tokens_avail--;
  parser->in_pragma = true;
}

/* Update the globals input_location and in_system_header from
   TOKEN.  */
static inline void
c_parser_set_source_position_from_token (c_token *token)
{
  if (token->type != CPP_EOF)
    {
      input_location = token->location;
    }
}

/* Issue a diagnostic of the form
      FILE:LINE: MESSAGE before TOKEN
   where TOKEN is the next token in the input stream of PARSER.
   MESSAGE (specified by the caller) is usually of the form "expected
   OTHER-TOKEN".

   Do not issue a diagnostic if still recovering from an error.

   ??? This is taken from the C++ parser, but building up messages in
   this way is not i18n-friendly and some other approach should be
   used.  */

static void
c_parser_error (c_parser *parser, const char *gmsgid)
{
  c_token *token = c_parser_peek_token (parser);
  if (parser->error)
    return;
  parser->error = true;
  if (!gmsgid)
    return;
  /* This diagnostic makes more sense if it is tagged to the line of
     the token we just peeked at.  */
  c_parser_set_source_position_from_token (token);
  c_parse_error (gmsgid,
		 /* Because c_parse_error does not understand
		    CPP_KEYWORD, keywords are treated like
		    identifiers.  */
		 (token->type == CPP_KEYWORD ? CPP_NAME : token->type),
		 /* ??? The C parser does not save the cpp flags of a
		    token, we need to pass 0 here and we will not get
		    the source spelling of some tokens but rather the
		    canonical spelling.  */
		 token->value, /*flags=*/0);
}

/* If the next token is of the indicated TYPE, consume it.  Otherwise,
   issue the error MSGID.  If MSGID is NULL then a message has already
   been produced and no message will be produced this time.  Returns
   true if found, false otherwise.  */

static bool
c_parser_require (c_parser *parser,
		  enum cpp_ttype type,
		  const char *msgid)
{
  if (c_parser_next_token_is (parser, type))
    {
      c_parser_consume_token (parser);
      return true;
    }
  else
    {
      c_parser_error (parser, msgid);
      return false;
    }
}

/* If the next token is the indicated keyword, consume it.  Otherwise,
   issue the error MSGID.  Returns true if found, false otherwise.  */

static bool
c_parser_require_keyword (c_parser *parser,
			  enum rid keyword,
			  const char *msgid)
{
  if (c_parser_next_token_is_keyword (parser, keyword))
    {
      c_parser_consume_token (parser);
      return true;
    }
  else
    {
      c_parser_error (parser, msgid);
      return false;
    }
}

/* Like c_parser_require, except that tokens will be skipped until the
   desired token is found.  An error message is still produced if the
   next token is not as expected.  If MSGID is NULL then a message has
   already been produced and no message will be produced this
   time.  */

static void
c_parser_skip_until_found (c_parser *parser,
			   enum cpp_ttype type,
			   const char *msgid)
{
  unsigned nesting_depth = 0;

  if (c_parser_require (parser, type, msgid))
    return;

  /* Skip tokens until the desired token is found.  */
  while (true)
    {
      /* Peek at the next token.  */
      c_token *token = c_parser_peek_token (parser);
      /* If we've reached the token we want, consume it and stop.  */
      if (token->type == type && !nesting_depth)
	{
	  c_parser_consume_token (parser);
	  break;
	}

      /* If we've run out of tokens, stop.  */
      if (token->type == CPP_EOF)
	return;
      if (token->type == CPP_PRAGMA_EOL && parser->in_pragma)
	return;
      if (token->type == CPP_OPEN_BRACE
	  || token->type == CPP_OPEN_PAREN
	  || token->type == CPP_OPEN_SQUARE)
	++nesting_depth;
      else if (token->type == CPP_CLOSE_BRACE
	       || token->type == CPP_CLOSE_PAREN
	       || token->type == CPP_CLOSE_SQUARE)
	{
	  if (nesting_depth-- == 0)
	    break;
	}
      /* Consume this token.  */
      c_parser_consume_token (parser);
    }
  parser->error = false;
}

/* Skip tokens until the end of a parameter is found, but do not
   consume the comma, semicolon or closing delimiter.  */

static void
c_parser_skip_to_end_of_parameter (c_parser *parser)
{
  unsigned nesting_depth = 0;

  while (true)
    {
      c_token *token = c_parser_peek_token (parser);
      if ((token->type == CPP_COMMA || token->type == CPP_SEMICOLON)
	  && !nesting_depth)
	break;
      /* If we've run out of tokens, stop.  */
      if (token->type == CPP_EOF)
	return;
      if (token->type == CPP_PRAGMA_EOL && parser->in_pragma)
	return;
      if (token->type == CPP_OPEN_BRACE
	  || token->type == CPP_OPEN_PAREN
	  || token->type == CPP_OPEN_SQUARE)
	++nesting_depth;
      else if (token->type == CPP_CLOSE_BRACE
	       || token->type == CPP_CLOSE_PAREN
	       || token->type == CPP_CLOSE_SQUARE)
	{
	  if (nesting_depth-- == 0)
	    break;
	}
      /* Consume this token.  */
      c_parser_consume_token (parser);
    }
  parser->error = false;
}

/* Expect to be at the end of the pragma directive and consume an
   end of line marker.  */

static void
c_parser_skip_to_pragma_eol (c_parser *parser)
{
  gcc_assert (parser->in_pragma);
  parser->in_pragma = false;

  if (!c_parser_require (parser, CPP_PRAGMA_EOL, "expected end of line"))
    while (true)
      {
	c_token *token = c_parser_peek_token (parser);
	if (token->type == CPP_EOF)
	  break;
	if (token->type == CPP_PRAGMA_EOL)
	  {
	    c_parser_consume_token (parser);
	    break;
	  }
	c_parser_consume_token (parser);
      }

  parser->error = false;
}

/* Skip tokens until we have consumed an entire block, or until we
   have consumed a non-nested ';'.  */

static void
c_parser_skip_to_end_of_block_or_statement (c_parser *parser)
{
  unsigned nesting_depth = 0;
  bool save_error = parser->error;

  while (true)
    {
      c_token *token;

      /* Peek at the next token.  */
      token = c_parser_peek_token (parser);

      switch (token->type)
	{
	case CPP_EOF:
	  return;

	case CPP_PRAGMA_EOL:
	  if (parser->in_pragma)
	    return;
	  break;

	case CPP_SEMICOLON:
	  /* If the next token is a ';', we have reached the
	     end of the statement.  */
	  if (!nesting_depth)
	    {
	      /* Consume the ';'.  */
	      c_parser_consume_token (parser);
	      goto finished;
	    }
	  break;

	case CPP_CLOSE_BRACE:
	  /* If the next token is a non-nested '}', then we have
	     reached the end of the current block.  */
	  if (nesting_depth == 0 || --nesting_depth == 0)
	    {
	      c_parser_consume_token (parser);
	      goto finished;
	    }
	  break;

	case CPP_OPEN_BRACE:
	  /* If it the next token is a '{', then we are entering a new
	     block.  Consume the entire block.  */
	  ++nesting_depth;
	  break;

	case CPP_PRAGMA:
	  /* If we see a pragma, consume the whole thing at once.  We
	     have some safeguards against consuming pragmas willy-nilly.
	     Normally, we'd expect to be here with parser->error set,
	     which disables these safeguards.  But it's possible to get
	     here for secondary error recovery, after parser->error has
	     been cleared.  */
	  c_parser_consume_pragma (parser);
	  c_parser_skip_to_pragma_eol (parser);
	  parser->error = save_error;
	  continue;

	default:
	  break;
	}

      c_parser_consume_token (parser);
    }

 finished:
  parser->error = false;
}

/* CPP's options (initialized by c-opts.c).  */
extern cpp_options *cpp_opts;

/* Save the warning flags which are controlled by __extension__.  */

static inline int
disable_extension_diagnostics (void)
{
  int ret = (pedantic
	     | (warn_pointer_arith << 1)
	     | (warn_traditional << 2)
	     | (flag_iso << 3)
	     | (warn_long_long << 4)
	     | (warn_cxx_compat << 5)
	     | (warn_overlength_strings << 6));
  cpp_opts->cpp_pedantic = pedantic = 0;
  warn_pointer_arith = 0;
  cpp_opts->cpp_warn_traditional = warn_traditional = 0;
  flag_iso = 0;
  cpp_opts->cpp_warn_long_long = warn_long_long = 0;
  warn_cxx_compat = 0;
  warn_overlength_strings = 0;
  return ret;
}

/* Restore the warning flags which are controlled by __extension__.
   FLAGS is the return value from disable_extension_diagnostics.  */

static inline void
restore_extension_diagnostics (int flags)
{
  cpp_opts->cpp_pedantic = pedantic = flags & 1;
  warn_pointer_arith = (flags >> 1) & 1;
  cpp_opts->cpp_warn_traditional = warn_traditional = (flags >> 2) & 1;
  flag_iso = (flags >> 3) & 1;
  cpp_opts->cpp_warn_long_long = warn_long_long = (flags >> 4) & 1;
  warn_cxx_compat = (flags >> 5) & 1;
  warn_overlength_strings = (flags >> 6) & 1;
}

/* Possibly kinds of declarator to parse.  */
typedef enum c_dtr_syn {
  /* A normal declarator with an identifier.  */
  C_DTR_NORMAL,
  /* An abstract declarator (maybe empty).  */
  C_DTR_ABSTRACT,
  /* A parameter declarator: may be either, but after a type name does
     not redeclare a typedef name as an identifier if it can
     alternatively be interpreted as a typedef name; see DR#009,
     applied in C90 TC1, omitted from C99 and reapplied in C99 TC2
     following DR#249.  For example, given a typedef T, "int T" and
     "int *T" are valid parameter declarations redeclaring T, while
     "int (T)" and "int * (T)" and "int (T[])" and "int (T (int))" are
     abstract declarators rather than involving redundant parentheses;
     the same applies with attributes inside the parentheses before
     "T".  */
  C_DTR_PARM
} c_dtr_syn;

/* The binary operation precedence levels, where 0 is a dummy lowest level
   used for the bottom of the stack.  */
enum c_parser_prec {
  PREC_NONE,
  PREC_LOGOR,
  PREC_LOGAND,
  PREC_BITOR,
  PREC_BITXOR,
  PREC_BITAND,
  PREC_EQ,
  PREC_REL,
  PREC_SHIFT,
  PREC_ADD,
  PREC_MULT,
  NUM_PRECS
};

static void c_parser_external_declaration (c_parser *);
static void c_parser_asm_definition (c_parser *);
static void c_parser_declaration_or_fndef (c_parser *, bool, bool, bool,
					   bool, bool, tree *, vec<c_token>);
static void c_parser_static_assert_declaration_no_semi (c_parser *);
static void c_parser_static_assert_declaration (c_parser *);
static void c_parser_declspecs (c_parser *, struct c_declspecs *, bool, bool,
				bool, bool, enum c_lookahead_kind);
static struct c_typespec c_parser_enum_specifier (c_parser *);
static struct c_typespec c_parser_struct_or_union_specifier (c_parser *);
static tree c_parser_struct_declaration (c_parser *);
static struct c_typespec c_parser_typeof_specifier (c_parser *);
static tree c_parser_alignas_specifier (c_parser *);
static struct c_declarator *c_parser_declarator (c_parser *, bool, c_dtr_syn,
						 bool *);
static struct c_declarator *c_parser_direct_declarator (c_parser *, bool,
							c_dtr_syn, bool *);
static struct c_declarator *c_parser_direct_declarator_inner (c_parser *,
							      bool,
							      struct c_declarator *);
static struct c_arg_info *c_parser_parms_declarator (c_parser *, bool, tree);
static struct c_arg_info *c_parser_parms_list_declarator (c_parser *, tree,
							  tree);
static struct c_parm *c_parser_parameter_declaration (c_parser *, tree);
static tree c_parser_simple_asm_expr (c_parser *);
static tree c_parser_attributes (c_parser *);
static struct c_type_name *c_parser_type_name (c_parser *);
static struct c_expr c_parser_initializer (c_parser *);
static struct c_expr c_parser_braced_init (c_parser *, tree, bool);
static void c_parser_initelt (c_parser *, struct obstack *);
static void c_parser_initval (c_parser *, struct c_expr *,
			      struct obstack *);
static tree c_parser_compound_statement (c_parser *);
static void c_parser_compound_statement_nostart (c_parser *);
static void c_parser_label (c_parser *);
static void c_parser_statement (c_parser *);
static void c_parser_statement_after_labels (c_parser *);
static void c_parser_if_statement (c_parser *);
static void c_parser_switch_statement (c_parser *);
static void c_parser_while_statement (c_parser *, bool);
static void c_parser_do_statement (c_parser *, bool);
static void c_parser_for_statement (c_parser *, bool);
static tree c_parser_asm_statement (c_parser *);
static tree c_parser_asm_operands (c_parser *);
static tree c_parser_asm_goto_operands (c_parser *);
static tree c_parser_asm_clobbers (c_parser *);
static struct c_expr c_parser_expr_no_commas (c_parser *, struct c_expr *,
					      tree = NULL_TREE);
static struct c_expr c_parser_conditional_expression (c_parser *,
						      struct c_expr *, tree);
static struct c_expr c_parser_binary_expression (c_parser *, struct c_expr *,
						 tree);
static struct c_expr c_parser_cast_expression (c_parser *, struct c_expr *);
static struct c_expr c_parser_unary_expression (c_parser *);
static struct c_expr c_parser_sizeof_expression (c_parser *);
static struct c_expr c_parser_alignof_expression (c_parser *);
static struct c_expr c_parser_postfix_expression (c_parser *);
static struct c_expr c_parser_postfix_expression_after_paren_type (c_parser *,
								   struct c_type_name *,
								   location_t);
static struct c_expr c_parser_postfix_expression_after_primary (c_parser *,
								location_t loc,
								struct c_expr);
static tree c_parser_transaction (c_parser *, enum rid);
static struct c_expr c_parser_transaction_expression (c_parser *, enum rid);
static tree c_parser_transaction_cancel (c_parser *);
static struct c_expr c_parser_expression (c_parser *);
static struct c_expr c_parser_expression_conv (c_parser *);
static vec<tree, va_gc> *c_parser_expr_list (c_parser *, bool, bool,
					     vec<tree, va_gc> **, location_t *,
					     tree *);
static void c_parser_omp_construct (c_parser *);
static void c_parser_omp_threadprivate (c_parser *);
static void c_parser_omp_barrier (c_parser *);
static void c_parser_omp_flush (c_parser *);
static void c_parser_omp_taskwait (c_parser *);
static void c_parser_omp_taskyield (c_parser *);
static void c_parser_omp_cancel (c_parser *);
static void c_parser_omp_cancellation_point (c_parser *);

enum pragma_context { pragma_external, pragma_struct, pragma_param,
		      pragma_stmt, pragma_compound };
static bool c_parser_pragma (c_parser *, enum pragma_context);
static bool c_parser_omp_target (c_parser *, enum pragma_context);
static void c_parser_omp_end_declare_target (c_parser *);
static void c_parser_omp_declare (c_parser *, enum pragma_context);

/* These Objective-C parser functions are only ever called when
   compiling Objective-C.  */
static void c_parser_objc_class_definition (c_parser *, tree);
static void c_parser_objc_class_instance_variables (c_parser *);
static void c_parser_objc_class_declaration (c_parser *);
static void c_parser_objc_alias_declaration (c_parser *);
static void c_parser_objc_protocol_definition (c_parser *, tree);
static bool c_parser_objc_method_type (c_parser *);
static void c_parser_objc_method_definition (c_parser *);
static void c_parser_objc_methodprotolist (c_parser *);
static void c_parser_objc_methodproto (c_parser *);
static tree c_parser_objc_method_decl (c_parser *, bool, tree *, tree *);
static tree c_parser_objc_type_name (c_parser *);
static tree c_parser_objc_protocol_refs (c_parser *);
static void c_parser_objc_try_catch_finally_statement (c_parser *);
static void c_parser_objc_synchronized_statement (c_parser *);
static tree c_parser_objc_selector (c_parser *);
static tree c_parser_objc_selector_arg (c_parser *);
static tree c_parser_objc_receiver (c_parser *);
static tree c_parser_objc_message_args (c_parser *);
static tree c_parser_objc_keywordexpr (c_parser *);
static void c_parser_objc_at_property_declaration (c_parser *);
static void c_parser_objc_at_synthesize_declaration (c_parser *);
static void c_parser_objc_at_dynamic_declaration (c_parser *);
static bool c_parser_objc_diagnose_bad_element_prefix
  (c_parser *, struct c_declspecs *);

static tree c_parser_array_notation (location_t, c_parser *, tree, tree);

/* Parse a translation unit (C90 6.7, C99 6.9).

   translation-unit:
     external-declarations

   external-declarations:
     external-declaration
     external-declarations external-declaration

   GNU extensions:

   translation-unit:
     empty
*/

static void
c_parser_translation_unit (c_parser *parser)
{
  if (c_parser_next_token_is (parser, CPP_EOF))
    {
      pedwarn (c_parser_peek_token (parser)->location, OPT_Wpedantic,
	       "ISO C forbids an empty translation unit");
    }
  else
    {
      void *obstack_position = obstack_alloc (&parser_obstack, 0);
      mark_valid_location_for_stdc_pragma (false);
      do
	{
	  ggc_collect ();
	  c_parser_external_declaration (parser);
	  obstack_free (&parser_obstack, obstack_position);
	}
      while (c_parser_next_token_is_not (parser, CPP_EOF));
    }
}

/* Parse an external declaration (C90 6.7, C99 6.9).

   external-declaration:
     function-definition
     declaration

   GNU extensions:

   external-declaration:
     asm-definition
     ;
     __extension__ external-declaration

   Objective-C:

   external-declaration:
     objc-class-definition
     objc-class-declaration
     objc-alias-declaration
     objc-protocol-definition
     objc-method-definition
     @end
*/

static void
c_parser_external_declaration (c_parser *parser)
{
  int ext;
  switch (c_parser_peek_token (parser)->type)
    {
    case CPP_KEYWORD:
      switch (c_parser_peek_token (parser)->keyword)
	{
	case RID_EXTENSION:
	  ext = disable_extension_diagnostics ();
	  c_parser_consume_token (parser);
	  c_parser_external_declaration (parser);
	  restore_extension_diagnostics (ext);
	  break;
	case RID_ASM:
	  c_parser_asm_definition (parser);
	  break;
	case RID_AT_INTERFACE:
	case RID_AT_IMPLEMENTATION:
	  gcc_assert (c_dialect_objc ());
	  c_parser_objc_class_definition (parser, NULL_TREE);
	  break;
	case RID_AT_CLASS:
	  gcc_assert (c_dialect_objc ());
	  c_parser_objc_class_declaration (parser);
	  break;
	case RID_AT_ALIAS:
	  gcc_assert (c_dialect_objc ());
	  c_parser_objc_alias_declaration (parser);
	  break;
	case RID_AT_PROTOCOL:
	  gcc_assert (c_dialect_objc ());
	  c_parser_objc_protocol_definition (parser, NULL_TREE);
	  break;
	case RID_AT_PROPERTY:
	  gcc_assert (c_dialect_objc ());
	  c_parser_objc_at_property_declaration (parser);
	  break;
	case RID_AT_SYNTHESIZE:
	  gcc_assert (c_dialect_objc ());
	  c_parser_objc_at_synthesize_declaration (parser);
	  break;
	case RID_AT_DYNAMIC:
	  gcc_assert (c_dialect_objc ());
	  c_parser_objc_at_dynamic_declaration (parser);
	  break;
	case RID_AT_END:
	  gcc_assert (c_dialect_objc ());
	  c_parser_consume_token (parser);
	  objc_finish_implementation ();
	  break;
	default:
	  goto decl_or_fndef;
	}
      break;
    case CPP_SEMICOLON:
      pedwarn (c_parser_peek_token (parser)->location, OPT_Wpedantic,
	       "ISO C does not allow extra %<;%> outside of a function");
      c_parser_consume_token (parser);
      break;
    case CPP_PRAGMA:
      mark_valid_location_for_stdc_pragma (true);
      c_parser_pragma (parser, pragma_external);
      mark_valid_location_for_stdc_pragma (false);
      break;
    case CPP_PLUS:
    case CPP_MINUS:
      if (c_dialect_objc ())
	{
	  c_parser_objc_method_definition (parser);
	  break;
	}
      /* Else fall through, and yield a syntax error trying to parse
	 as a declaration or function definition.  */
    default:
    decl_or_fndef:
      /* A declaration or a function definition (or, in Objective-C,
	 an @interface or @protocol with prefix attributes).  We can
	 only tell which after parsing the declaration specifiers, if
	 any, and the first declarator.  */
      c_parser_declaration_or_fndef (parser, true, true, true, false, true,
				     NULL, vNULL);
      break;
    }
}

static void c_finish_omp_declare_simd (c_parser *, tree, tree, vec<c_token>);

/* Parse a declaration or function definition (C90 6.5, 6.7.1, C99
   6.7, 6.9.1).  If FNDEF_OK is true, a function definition is
   accepted; otherwise (old-style parameter declarations) only other
   declarations are accepted.  If STATIC_ASSERT_OK is true, a static
   assertion is accepted; otherwise (old-style parameter declarations)
   it is not.  If NESTED is true, we are inside a function or parsing
   old-style parameter declarations; any functions encountered are
   nested functions and declaration specifiers are required; otherwise
   we are at top level and functions are normal functions and
   declaration specifiers may be optional.  If EMPTY_OK is true, empty
   declarations are OK (subject to all other constraints); otherwise
   (old-style parameter declarations) they are diagnosed.  If
   START_ATTR_OK is true, the declaration specifiers may start with
   attributes; otherwise they may not.
   OBJC_FOREACH_OBJECT_DECLARATION can be used to get back the parsed
   declaration when parsing an Objective-C foreach statement.

   declaration:
     declaration-specifiers init-declarator-list[opt] ;
     static_assert-declaration

   function-definition:
     declaration-specifiers[opt] declarator declaration-list[opt]
       compound-statement

   declaration-list:
     declaration
     declaration-list declaration

   init-declarator-list:
     init-declarator
     init-declarator-list , init-declarator

   init-declarator:
     declarator simple-asm-expr[opt] attributes[opt]
     declarator simple-asm-expr[opt] attributes[opt] = initializer

   GNU extensions:

   nested-function-definition:
     declaration-specifiers declarator declaration-list[opt]
       compound-statement

   Objective-C:
     attributes objc-class-definition
     attributes objc-category-definition
     attributes objc-protocol-definition

   The simple-asm-expr and attributes are GNU extensions.

   This function does not handle __extension__; that is handled in its
   callers.  ??? Following the old parser, __extension__ may start
   external declarations, declarations in functions and declarations
   at the start of "for" loops, but not old-style parameter
   declarations.

   C99 requires declaration specifiers in a function definition; the
   absence is diagnosed through the diagnosis of implicit int.  In GNU
   C we also allow but diagnose declarations without declaration
   specifiers, but only at top level (elsewhere they conflict with
   other syntax).

   In Objective-C, declarations of the looping variable in a foreach
   statement are exceptionally terminated by 'in' (for example, 'for
   (NSObject *object in array) { ... }').

   OpenMP:

   declaration:
     threadprivate-directive  */

static void
c_parser_declaration_or_fndef (c_parser *parser, bool fndef_ok,
			       bool static_assert_ok, bool empty_ok,
			       bool nested, bool start_attr_ok,
			       tree *objc_foreach_object_declaration,
			       vec<c_token> omp_declare_simd_clauses)
{
  struct c_declspecs *specs;
  tree prefix_attrs;
  tree all_prefix_attrs;
  bool diagnosed_no_specs = false;
  location_t here = c_parser_peek_token (parser)->location;

  if (static_assert_ok
      && c_parser_next_token_is_keyword (parser, RID_STATIC_ASSERT))
    {
      c_parser_static_assert_declaration (parser);
      return;
    }
  specs = build_null_declspecs ();

  /* Try to detect an unknown type name when we have "A B" or "A *B".  */
  if (c_parser_peek_token (parser)->type == CPP_NAME
      && c_parser_peek_token (parser)->id_kind == C_ID_ID
      && (c_parser_peek_2nd_token (parser)->type == CPP_NAME
          || c_parser_peek_2nd_token (parser)->type == CPP_MULT)
      && (!nested || !lookup_name (c_parser_peek_token (parser)->value)))
    {
      error_at (here, "unknown type name %qE",
                c_parser_peek_token (parser)->value);

      /* Parse declspecs normally to get a correct pointer type, but avoid
         a further "fails to be a type name" error.  Refuse nested functions
         since it is not how the user likely wants us to recover.  */
      c_parser_peek_token (parser)->type = CPP_KEYWORD;
      c_parser_peek_token (parser)->keyword = RID_VOID;
      c_parser_peek_token (parser)->value = error_mark_node;
      fndef_ok = !nested;
    }

  c_parser_declspecs (parser, specs, true, true, start_attr_ok,
		      true, cla_nonabstract_decl);
  if (parser->error)
    {
      c_parser_skip_to_end_of_block_or_statement (parser);
      return;
    }
  if (nested && !specs->declspecs_seen_p)
    {
      c_parser_error (parser, "expected declaration specifiers");
      c_parser_skip_to_end_of_block_or_statement (parser);
      return;
    }
  finish_declspecs (specs);
  if (c_parser_next_token_is (parser, CPP_SEMICOLON))
    {
      if (empty_ok)
	shadow_tag (specs);
      else
	{
	  shadow_tag_warned (specs, 1);
	  pedwarn (here, 0, "empty declaration");
	}
      c_parser_consume_token (parser);
      return;
    }

  /* Provide better error recovery.  Note that a type name here is usually
     better diagnosed as a redeclaration.  */
  if (empty_ok
      && specs->typespec_kind == ctsk_tagdef
      && c_parser_next_token_starts_declspecs (parser)
      && !c_parser_next_token_is (parser, CPP_NAME))
    {
      c_parser_error (parser, "expected %<;%>, identifier or %<(%>");
      parser->error = false;
      shadow_tag_warned (specs, 1);
      return;
    }
  else if (c_dialect_objc ())
    {
      /* Prefix attributes are an error on method decls.  */
      switch (c_parser_peek_token (parser)->type)
	{
	  case CPP_PLUS:
	  case CPP_MINUS:
	    if (c_parser_objc_diagnose_bad_element_prefix (parser, specs))
	      return;
	    if (specs->attrs)
	      {
		warning_at (c_parser_peek_token (parser)->location, 
			    OPT_Wattributes,
	       		    "prefix attributes are ignored for methods");
		specs->attrs = NULL_TREE;
	      }
	    if (fndef_ok)
	      c_parser_objc_method_definition (parser);
	    else
	      c_parser_objc_methodproto (parser);
	    return;
	    break;
	  default:
	    break;
	}
      /* This is where we parse 'attributes @interface ...',
	 'attributes @implementation ...', 'attributes @protocol ...'
	 (where attributes could be, for example, __attribute__
	 ((deprecated)).
      */
      switch (c_parser_peek_token (parser)->keyword)
	{
	case RID_AT_INTERFACE:
	  {
	    if (c_parser_objc_diagnose_bad_element_prefix (parser, specs))
	      return;
	    c_parser_objc_class_definition (parser, specs->attrs);
	    return;
	  }
	  break;
	case RID_AT_IMPLEMENTATION:
	  {
	    if (c_parser_objc_diagnose_bad_element_prefix (parser, specs))
	      return;
	    if (specs->attrs)
	      {
		warning_at (c_parser_peek_token (parser)->location, 
			OPT_Wattributes,
			"prefix attributes are ignored for implementations");
		specs->attrs = NULL_TREE;
	      }
	    c_parser_objc_class_definition (parser, NULL_TREE);	    
	    return;
	  }
	  break;
	case RID_AT_PROTOCOL:
	  {
	    if (c_parser_objc_diagnose_bad_element_prefix (parser, specs))
	      return;
	    c_parser_objc_protocol_definition (parser, specs->attrs);
	    return;
	  }
	  break;
	case RID_AT_ALIAS:
	case RID_AT_CLASS:
	case RID_AT_END:
	case RID_AT_PROPERTY:
	  if (specs->attrs)
	    {
	      c_parser_error (parser, "unexpected attribute");
	      specs->attrs = NULL;
	    }
	  break;
	default:
	  break;
	}
    }
  
  pending_xref_error ();
  prefix_attrs = specs->attrs;
  all_prefix_attrs = prefix_attrs;
  specs->attrs = NULL_TREE;
  while (true)
    {
      struct c_declarator *declarator;
      bool dummy = false;
      timevar_id_t tv;
      tree fnbody;
      /* Declaring either one or more declarators (in which case we
	 should diagnose if there were no declaration specifiers) or a
	 function definition (in which case the diagnostic for
	 implicit int suffices).  */
      declarator = c_parser_declarator (parser, 
					specs->typespec_kind != ctsk_none,
					C_DTR_NORMAL, &dummy);
      if (declarator == NULL)
	{
	  if (omp_declare_simd_clauses.exists ())
	    c_finish_omp_declare_simd (parser, NULL_TREE, NULL_TREE,
				       omp_declare_simd_clauses);
	  c_parser_skip_to_end_of_block_or_statement (parser);
	  return;
	}
      if (c_parser_next_token_is (parser, CPP_EQ)
	  || c_parser_next_token_is (parser, CPP_COMMA)
	  || c_parser_next_token_is (parser, CPP_SEMICOLON)
	  || c_parser_next_token_is_keyword (parser, RID_ASM)
	  || c_parser_next_token_is_keyword (parser, RID_ATTRIBUTE)
	  || c_parser_next_token_is_keyword (parser, RID_IN))
	{
	  tree asm_name = NULL_TREE;
	  tree postfix_attrs = NULL_TREE;
	  if (!diagnosed_no_specs && !specs->declspecs_seen_p)
	    {
	      diagnosed_no_specs = true;
	      pedwarn (here, 0, "data definition has no type or storage class");
	    }
	  /* Having seen a data definition, there cannot now be a
	     function definition.  */
	  fndef_ok = false;
	  if (c_parser_next_token_is_keyword (parser, RID_ASM))
	    asm_name = c_parser_simple_asm_expr (parser);
	  if (c_parser_next_token_is_keyword (parser, RID_ATTRIBUTE))
	    postfix_attrs = c_parser_attributes (parser);
	  if (c_parser_next_token_is (parser, CPP_EQ))
	    {
	      tree d;
	      struct c_expr init;
	      location_t init_loc;
	      c_parser_consume_token (parser);
	      /* The declaration of the variable is in effect while
		 its initializer is parsed.  */
	      d = start_decl (declarator, specs, true,
			      chainon (postfix_attrs, all_prefix_attrs));
	      if (!d)
		d = error_mark_node;
	      if (omp_declare_simd_clauses.exists ())
		c_finish_omp_declare_simd (parser, d, NULL_TREE,
					   omp_declare_simd_clauses);
	      start_init (d, asm_name, global_bindings_p ());
	      init_loc = c_parser_peek_token (parser)->location;
	      init = c_parser_initializer (parser);
	      finish_init ();
	      if (d != error_mark_node)
		{
		  maybe_warn_string_init (TREE_TYPE (d), init);
		  finish_decl (d, init_loc, init.value,
		      	       init.original_type, asm_name);
		}
	    }
	  else
	    {
	      tree d = start_decl (declarator, specs, false,
				   chainon (postfix_attrs,
					    all_prefix_attrs));
	      if (omp_declare_simd_clauses.exists ())
		{
		  tree parms = NULL_TREE;
		  if (d && TREE_CODE (d) == FUNCTION_DECL)
		    {
		      struct c_declarator *ce = declarator;
		      while (ce != NULL)
			if (ce->kind == cdk_function)
			  {
			    parms = ce->u.arg_info->parms;
			    break;
			  }
			else
			  ce = ce->declarator;
		    }
		  if (parms)
		    temp_store_parm_decls (d, parms);
		  c_finish_omp_declare_simd (parser, d, parms,
					     omp_declare_simd_clauses);
		  if (parms)
		    temp_pop_parm_decls ();
		}
	      if (d)
		finish_decl (d, UNKNOWN_LOCATION, NULL_TREE,
			     NULL_TREE, asm_name);
	      
	      if (c_parser_next_token_is_keyword (parser, RID_IN))
		{
		  if (d)
		    *objc_foreach_object_declaration = d;
		  else
		    *objc_foreach_object_declaration = error_mark_node;		    
		}
	    }
	  if (c_parser_next_token_is (parser, CPP_COMMA))
	    {
	      c_parser_consume_token (parser);
	      if (c_parser_next_token_is_keyword (parser, RID_ATTRIBUTE))
		all_prefix_attrs = chainon (c_parser_attributes (parser),
					    prefix_attrs);
	      else
		all_prefix_attrs = prefix_attrs;
	      continue;
	    }
	  else if (c_parser_next_token_is (parser, CPP_SEMICOLON))
	    {
	      c_parser_consume_token (parser);
	      return;
	    }
	  else if (c_parser_next_token_is_keyword (parser, RID_IN))
	    {
	      /* This can only happen in Objective-C: we found the
		 'in' that terminates the declaration inside an
		 Objective-C foreach statement.  Do not consume the
		 token, so that the caller can use it to determine
		 that this indeed is a foreach context.  */
	      return;
	    }
	  else
	    {
	      c_parser_error (parser, "expected %<,%> or %<;%>");
	      c_parser_skip_to_end_of_block_or_statement (parser);
	      return;
	    }
	}
      else if (!fndef_ok)
	{
	  c_parser_error (parser, "expected %<=%>, %<,%>, %<;%>, "
			  "%<asm%> or %<__attribute__%>");
	  c_parser_skip_to_end_of_block_or_statement (parser);
	  return;
	}
      /* Function definition (nested or otherwise).  */
      if (nested)
	{
	  pedwarn (here, OPT_Wpedantic, "ISO C forbids nested functions");
	  c_push_function_context ();
	}
      if (!start_function (specs, declarator, all_prefix_attrs))
	{
	  /* This can appear in many cases looking nothing like a
	     function definition, so we don't give a more specific
	     error suggesting there was one.  */
	  c_parser_error (parser, "expected %<=%>, %<,%>, %<;%>, %<asm%> "
			  "or %<__attribute__%>");
	  if (nested)
	    c_pop_function_context ();
	  break;
	}

      if (DECL_DECLARED_INLINE_P (current_function_decl))
        tv = TV_PARSE_INLINE;
      else
        tv = TV_PARSE_FUNC;
      timevar_push (tv);

      /* Parse old-style parameter declarations.  ??? Attributes are
	 not allowed to start declaration specifiers here because of a
	 syntax conflict between a function declaration with attribute
	 suffix and a function definition with an attribute prefix on
	 first old-style parameter declaration.  Following the old
	 parser, they are not accepted on subsequent old-style
	 parameter declarations either.  However, there is no
	 ambiguity after the first declaration, nor indeed on the
	 first as long as we don't allow postfix attributes after a
	 declarator with a nonempty identifier list in a definition;
	 and postfix attributes have never been accepted here in
	 function definitions either.  */
      while (c_parser_next_token_is_not (parser, CPP_EOF)
	     && c_parser_next_token_is_not (parser, CPP_OPEN_BRACE))
	c_parser_declaration_or_fndef (parser, false, false, false,
				       true, false, NULL, vNULL);
      store_parm_decls ();
      if (omp_declare_simd_clauses.exists ())
	c_finish_omp_declare_simd (parser, current_function_decl, NULL_TREE,
				   omp_declare_simd_clauses);
      DECL_STRUCT_FUNCTION (current_function_decl)->function_start_locus
	= c_parser_peek_token (parser)->location;
      fnbody = c_parser_compound_statement (parser);
      if (flag_enable_cilkplus && contains_array_notation_expr (fnbody))
	fnbody = expand_array_notation_exprs (fnbody);
      if (nested)
	{
	  tree decl = current_function_decl;
	  /* Mark nested functions as needing static-chain initially.
	     lower_nested_functions will recompute it but the
	     DECL_STATIC_CHAIN flag is also used before that happens,
	     by initializer_constant_valid_p.  See gcc.dg/nested-fn-2.c.  */
	  DECL_STATIC_CHAIN (decl) = 1;
	  add_stmt (fnbody);
	  finish_function ();
	  c_pop_function_context ();
	  add_stmt (build_stmt (DECL_SOURCE_LOCATION (decl), DECL_EXPR, decl));
	}
      else
	{
	  add_stmt (fnbody);
	  finish_function ();
	}

      timevar_pop (tv);
      break;
    }
}

/* Parse an asm-definition (asm() outside a function body).  This is a
   GNU extension.

   asm-definition:
     simple-asm-expr ;
*/

static void
c_parser_asm_definition (c_parser *parser)
{
  tree asm_str = c_parser_simple_asm_expr (parser);
  if (asm_str)
    add_asm_node (asm_str);
  c_parser_skip_until_found (parser, CPP_SEMICOLON, "expected %<;%>");
}

/* Parse a static assertion (C11 6.7.10).

   static_assert-declaration:
     static_assert-declaration-no-semi ;
*/

static void
c_parser_static_assert_declaration (c_parser *parser)
{
  c_parser_static_assert_declaration_no_semi (parser);
  if (parser->error
      || !c_parser_require (parser, CPP_SEMICOLON, "expected %<;%>"))
    c_parser_skip_to_end_of_block_or_statement (parser);
}

/* Parse a static assertion (C11 6.7.10), without the trailing
   semicolon.

   static_assert-declaration-no-semi:
     _Static_assert ( constant-expression , string-literal )
*/

static void
c_parser_static_assert_declaration_no_semi (c_parser *parser)
{
  location_t assert_loc, value_loc;
  tree value;
  tree string;

  gcc_assert (c_parser_next_token_is_keyword (parser, RID_STATIC_ASSERT));
  assert_loc = c_parser_peek_token (parser)->location;
  if (!flag_isoc11)
    {
      if (flag_isoc99)
	pedwarn (assert_loc, OPT_Wpedantic,
		 "ISO C99 does not support %<_Static_assert%>");
      else
	pedwarn (assert_loc, OPT_Wpedantic,
		 "ISO C90 does not support %<_Static_assert%>");
    }
  c_parser_consume_token (parser);
  if (!c_parser_require (parser, CPP_OPEN_PAREN, "expected %<(%>"))
    return;
  value_loc = c_parser_peek_token (parser)->location;
  value = c_parser_expr_no_commas (parser, NULL).value;
  parser->lex_untranslated_string = true;
  if (!c_parser_require (parser, CPP_COMMA, "expected %<,%>"))
    {
      parser->lex_untranslated_string = false;
      return;
    }
  switch (c_parser_peek_token (parser)->type)
    {
    case CPP_STRING:
    case CPP_STRING16:
    case CPP_STRING32:
    case CPP_WSTRING:
    case CPP_UTF8STRING:
      string = c_parser_peek_token (parser)->value;
      c_parser_consume_token (parser);
      parser->lex_untranslated_string = false;
      break;
    default:
      c_parser_error (parser, "expected string literal");
      parser->lex_untranslated_string = false;
      return;
    }
  c_parser_require (parser, CPP_CLOSE_PAREN, "expected %<)%>");

  if (!INTEGRAL_TYPE_P (TREE_TYPE (value)))
    {
      error_at (value_loc, "expression in static assertion is not an integer");
      return;
    }
  if (TREE_CODE (value) != INTEGER_CST)
    {
      value = c_fully_fold (value, false, NULL);
      if (TREE_CODE (value) == INTEGER_CST)
	pedwarn (value_loc, OPT_Wpedantic, "expression in static assertion "
		 "is not an integer constant expression");
    }
  if (TREE_CODE (value) != INTEGER_CST)
    {
      error_at (value_loc, "expression in static assertion is not constant");
      return;
    }
  constant_expression_warning (value);
  if (integer_zerop (value))
    error_at (assert_loc, "static assertion failed: %E", string);
}

/* Parse some declaration specifiers (possibly none) (C90 6.5, C99
   6.7), adding them to SPECS (which may already include some).
   Storage class specifiers are accepted iff SCSPEC_OK; type
   specifiers are accepted iff TYPESPEC_OK; alignment specifiers are
   accepted iff ALIGNSPEC_OK; attributes are accepted at the start
   iff START_ATTR_OK.

   declaration-specifiers:
     storage-class-specifier declaration-specifiers[opt]
     type-specifier declaration-specifiers[opt]
     type-qualifier declaration-specifiers[opt]
     function-specifier declaration-specifiers[opt]
     alignment-specifier declaration-specifiers[opt]

   Function specifiers (inline) are from C99, and are currently
   handled as storage class specifiers, as is __thread.  Alignment
   specifiers are from C11.

   C90 6.5.1, C99 6.7.1:
   storage-class-specifier:
     typedef
     extern
     static
     auto
     register

   C99 6.7.4:
   function-specifier:
     inline
     _Noreturn

   (_Noreturn is new in C11.)

   C90 6.5.2, C99 6.7.2:
   type-specifier:
     void
     char
     short
     int
     long
     float
     double
     signed
     unsigned
     _Bool
     _Complex
     [_Imaginary removed in C99 TC2]
     struct-or-union-specifier
     enum-specifier
     typedef-name
     atomic-type-specifier

   (_Bool and _Complex are new in C99.)
   (atomic-type-specifier is new in C11.)

   C90 6.5.3, C99 6.7.3:

   type-qualifier:
     const
     restrict
     volatile
     address-space-qualifier
     _Atomic

   (restrict is new in C99.)
   (_Atomic is new in C11.)

   GNU extensions:

   declaration-specifiers:
     attributes declaration-specifiers[opt]

   type-qualifier:
     address-space

   address-space:
     identifier recognized by the target

   storage-class-specifier:
     __thread

   type-specifier:
     typeof-specifier
     __int128
     _Decimal32
     _Decimal64
     _Decimal128
     _Fract
     _Accum
     _Sat

  (_Fract, _Accum, and _Sat are new from ISO/IEC DTR 18037:
   http://www.open-std.org/jtc1/sc22/wg14/www/docs/n1169.pdf)

   atomic-type-specifier
    _Atomic ( type-name )

   Objective-C:

   type-specifier:
     class-name objc-protocol-refs[opt]
     typedef-name objc-protocol-refs
     objc-protocol-refs
*/

static void
c_parser_declspecs (c_parser *parser, struct c_declspecs *specs,
		    bool scspec_ok, bool typespec_ok, bool start_attr_ok,
		    bool alignspec_ok, enum c_lookahead_kind la)
{
  bool attrs_ok = start_attr_ok;
  bool seen_type = specs->typespec_kind != ctsk_none;

  if (!typespec_ok)
    gcc_assert (la == cla_prefer_id);

  while (c_parser_next_token_is (parser, CPP_NAME)
	 || c_parser_next_token_is (parser, CPP_KEYWORD)
	 || (c_dialect_objc () && c_parser_next_token_is (parser, CPP_LESS)))
    {
      struct c_typespec t;
      tree attrs;
      tree align;
      location_t loc = c_parser_peek_token (parser)->location;

      /* If we cannot accept a type, exit if the next token must start
	 one.  Also, if we already have seen a tagged definition,
	 a typename would be an error anyway and likely the user
	 has simply forgotten a semicolon, so we exit.  */
      if ((!typespec_ok || specs->typespec_kind == ctsk_tagdef)
	  && c_parser_next_tokens_start_typename (parser, la)
	  && !c_parser_next_token_is_qualifier (parser))
	break;

      if (c_parser_next_token_is (parser, CPP_NAME))
	{
	  c_token *name_token = c_parser_peek_token (parser);
	  tree value = name_token->value;
	  c_id_kind kind = name_token->id_kind;

	  if (kind == C_ID_ADDRSPACE)
	    {
	      addr_space_t as
		= name_token->keyword - RID_FIRST_ADDR_SPACE;
	      declspecs_add_addrspace (name_token->location, specs, as);
	      c_parser_consume_token (parser);
	      attrs_ok = true;
	      continue;
	    }

	  gcc_assert (!c_parser_next_token_is_qualifier (parser));

	  /* If we cannot accept a type, and the next token must start one,
	     exit.  Do the same if we already have seen a tagged definition,
	     since it would be an error anyway and likely the user has simply
	     forgotten a semicolon.  */
	  if (seen_type || !c_parser_next_tokens_start_typename (parser, la))
	    break;

	  /* Now at an unknown typename (C_ID_ID), a C_ID_TYPENAME or
	     a C_ID_CLASSNAME.  */
	  c_parser_consume_token (parser);
	  seen_type = true;
	  attrs_ok = true;
	  if (kind == C_ID_ID)
	    {
	      error ("unknown type name %qE", value);
	      t.kind = ctsk_typedef;
	      t.spec = error_mark_node;
	    }
	  else if (kind == C_ID_TYPENAME
	           && (!c_dialect_objc ()
	               || c_parser_next_token_is_not (parser, CPP_LESS)))
	    {
	      t.kind = ctsk_typedef;
	      /* For a typedef name, record the meaning, not the name.
		 In case of 'foo foo, bar;'.  */
	      t.spec = lookup_name (value);
	    }
	  else
	    {
	      tree proto = NULL_TREE;
	      gcc_assert (c_dialect_objc ());
	      t.kind = ctsk_objc;
	      if (c_parser_next_token_is (parser, CPP_LESS))
		proto = c_parser_objc_protocol_refs (parser);
	      t.spec = objc_get_protocol_qualified_type (value, proto);
	    }
	  t.expr = NULL_TREE;
	  t.expr_const_operands = true;
	  declspecs_add_type (name_token->location, specs, t);
	  continue;
	}
      if (c_parser_next_token_is (parser, CPP_LESS))
	{
	  /* Make "<SomeProtocol>" equivalent to "id <SomeProtocol>" -
	     nisse@lysator.liu.se.  */
	  tree proto;
	  gcc_assert (c_dialect_objc ());
	  if (!typespec_ok || seen_type)
	    break;
	  proto = c_parser_objc_protocol_refs (parser);
	  t.kind = ctsk_objc;
	  t.spec = objc_get_protocol_qualified_type (NULL_TREE, proto);
	  t.expr = NULL_TREE;
	  t.expr_const_operands = true;
	  declspecs_add_type (loc, specs, t);
	  continue;
	}
      gcc_assert (c_parser_next_token_is (parser, CPP_KEYWORD));
      switch (c_parser_peek_token (parser)->keyword)
	{
	case RID_STATIC:
	case RID_EXTERN:
	case RID_REGISTER:
	case RID_TYPEDEF:
	case RID_INLINE:
	case RID_NORETURN:
	case RID_AUTO:
	case RID_THREAD:
	  if (!scspec_ok)
	    goto out;
	  attrs_ok = true;
	  /* TODO: Distinguish between function specifiers (inline, noreturn)
	     and storage class specifiers, either here or in
	     declspecs_add_scspec.  */
	  declspecs_add_scspec (loc, specs,
				c_parser_peek_token (parser)->value);
	  c_parser_consume_token (parser);
	  break;
	case RID_UNSIGNED:
	case RID_LONG:
	case RID_INT128:
	case RID_SHORT:
	case RID_SIGNED:
	case RID_COMPLEX:
	case RID_INT:
	case RID_CHAR:
	case RID_FLOAT:
	case RID_DOUBLE:
	case RID_VOID:
	case RID_DFLOAT32:
	case RID_DFLOAT64:
	case RID_DFLOAT128:
	case RID_BOOL:
	case RID_FRACT:
	case RID_ACCUM:
	case RID_SAT:
	  if (!typespec_ok)
	    goto out;
	  attrs_ok = true;
	  seen_type = true;
	  if (c_dialect_objc ())
	    parser->objc_need_raw_identifier = true;
	  t.kind = ctsk_resword;
	  t.spec = c_parser_peek_token (parser)->value;
	  t.expr = NULL_TREE;
	  t.expr_const_operands = true;
	  declspecs_add_type (loc, specs, t);
	  c_parser_consume_token (parser);
	  break;
	case RID_ENUM:
	  if (!typespec_ok)
	    goto out;
	  attrs_ok = true;
	  seen_type = true;
	  t = c_parser_enum_specifier (parser);
	  declspecs_add_type (loc, specs, t);
	  break;
	case RID_STRUCT:
	case RID_UNION:
	  if (!typespec_ok)
	    goto out;
	  attrs_ok = true;
	  seen_type = true;
	  t = c_parser_struct_or_union_specifier (parser);
          invoke_plugin_callbacks (PLUGIN_FINISH_TYPE, t.spec);
	  declspecs_add_type (loc, specs, t);
	  break;
	case RID_TYPEOF:
	  /* ??? The old parser rejected typeof after other type
	     specifiers, but is a syntax error the best way of
	     handling this?  */
	  if (!typespec_ok || seen_type)
	    goto out;
	  attrs_ok = true;
	  seen_type = true;
	  t = c_parser_typeof_specifier (parser);
	  declspecs_add_type (loc, specs, t);
	  break;
	case RID_ATOMIC:
	  /* C parser handling of Objective-C constructs needs
	     checking for correct lvalue-to-rvalue conversions, and
	     the code in build_modify_expr handling various
	     Objective-C cases, and that in build_unary_op handling
	     Objective-C cases for increment / decrement, also needs
	     updating; uses of TYPE_MAIN_VARIANT in objc_compare_types
	     and objc_types_are_equivalent may also need updates.  */
	  if (c_dialect_objc ())
	    sorry ("%<_Atomic%> in Objective-C");
	  /* C parser handling of OpenMP constructs needs checking for
	     correct lvalue-to-rvalue conversions.  */
	  if (flag_openmp)
	    sorry ("%<_Atomic%> with OpenMP");
	  if (!flag_isoc11)
	    {
	      if (flag_isoc99)
		pedwarn (loc, OPT_Wpedantic,
			 "ISO C99 does not support the %<_Atomic%> qualifier");
	      else
		pedwarn (loc, OPT_Wpedantic,
			 "ISO C90 does not support the %<_Atomic%> qualifier");
	    }
	  attrs_ok = true;
	  tree value;
	  value = c_parser_peek_token (parser)->value;
	  c_parser_consume_token (parser);
	  if (typespec_ok && c_parser_next_token_is (parser, CPP_OPEN_PAREN))
	    {
	      /* _Atomic ( type-name ).  */
	      seen_type = true;
	      c_parser_consume_token (parser);
	      struct c_type_name *type = c_parser_type_name (parser);
	      t.kind = ctsk_typeof;
	      t.spec = error_mark_node;
	      t.expr = NULL_TREE;
	      t.expr_const_operands = true;
	      if (type != NULL)
		t.spec = groktypename (type, &t.expr,
				       &t.expr_const_operands);
	      c_parser_skip_until_found (parser, CPP_CLOSE_PAREN,
					 "expected %<)%>");
	      if (t.spec != error_mark_node)
		{
		  if (TREE_CODE (t.spec) == ARRAY_TYPE)
		    error_at (loc, "%<_Atomic%>-qualified array type");
		  else if (TREE_CODE (t.spec) == FUNCTION_TYPE)
		    error_at (loc, "%<_Atomic%>-qualified function type");
		  else if (TYPE_QUALS (t.spec) != TYPE_UNQUALIFIED)
		    error_at (loc, "%<_Atomic%> applied to a qualified type");
		  else
		    t.spec = c_build_qualified_type (t.spec, TYPE_QUAL_ATOMIC);
		}
	      declspecs_add_type (loc, specs, t);
	    }
	  else
	    declspecs_add_qual (loc, specs, value);
	  break;
	case RID_CONST:
	case RID_VOLATILE:
	case RID_RESTRICT:
	  attrs_ok = true;
	  declspecs_add_qual (loc, specs, c_parser_peek_token (parser)->value);
	  c_parser_consume_token (parser);
	  break;
	case RID_ATTRIBUTE:
	  if (!attrs_ok)
	    goto out;
	  attrs = c_parser_attributes (parser);
	  declspecs_add_attrs (loc, specs, attrs);
	  break;
	case RID_ALIGNAS:
	  if (!alignspec_ok)
	    goto out;
	  align = c_parser_alignas_specifier (parser);
	  declspecs_add_alignas (loc, specs, align);
	  break;
	default:
	  goto out;
	}
    }
 out: ;
}

/* Parse an enum specifier (C90 6.5.2.2, C99 6.7.2.2).

   enum-specifier:
     enum attributes[opt] identifier[opt] { enumerator-list } attributes[opt]
     enum attributes[opt] identifier[opt] { enumerator-list , } attributes[opt]
     enum attributes[opt] identifier

   The form with trailing comma is new in C99.  The forms with
   attributes are GNU extensions.  In GNU C, we accept any expression
   without commas in the syntax (assignment expressions, not just
   conditional expressions); assignment expressions will be diagnosed
   as non-constant.

   enumerator-list:
     enumerator
     enumerator-list , enumerator

   enumerator:
     enumeration-constant
     enumeration-constant = constant-expression
*/

static struct c_typespec
c_parser_enum_specifier (c_parser *parser)
{
  struct c_typespec ret;
  tree attrs;
  tree ident = NULL_TREE;
  location_t enum_loc;
  location_t ident_loc = UNKNOWN_LOCATION;  /* Quiet warning.  */
  gcc_assert (c_parser_next_token_is_keyword (parser, RID_ENUM));
  enum_loc = c_parser_peek_token (parser)->location;
  c_parser_consume_token (parser);
  attrs = c_parser_attributes (parser);
  enum_loc = c_parser_peek_token (parser)->location;
  /* Set the location in case we create a decl now.  */
  c_parser_set_source_position_from_token (c_parser_peek_token (parser));
  if (c_parser_next_token_is (parser, CPP_NAME))
    {
      ident = c_parser_peek_token (parser)->value;
      ident_loc = c_parser_peek_token (parser)->location;
      enum_loc = ident_loc;
      c_parser_consume_token (parser);
    }
  if (c_parser_next_token_is (parser, CPP_OPEN_BRACE))
    {
      /* Parse an enum definition.  */
      struct c_enum_contents the_enum;
      tree type;
      tree postfix_attrs;
      /* We chain the enumerators in reverse order, then put them in
	 forward order at the end.  */
      tree values;
      timevar_push (TV_PARSE_ENUM);
      type = start_enum (enum_loc, &the_enum, ident);
      values = NULL_TREE;
      c_parser_consume_token (parser);
      while (true)
	{
	  tree enum_id;
	  tree enum_value;
	  tree enum_decl;
	  bool seen_comma;
	  c_token *token;
	  location_t comma_loc = UNKNOWN_LOCATION;  /* Quiet warning.  */
	  location_t decl_loc, value_loc;
	  if (c_parser_next_token_is_not (parser, CPP_NAME))
	    {
	      c_parser_error (parser, "expected identifier");
	      c_parser_skip_until_found (parser, CPP_CLOSE_BRACE, NULL);
	      values = error_mark_node;
	      break;
	    }
	  token = c_parser_peek_token (parser);
	  enum_id = token->value;
	  /* Set the location in case we create a decl now.  */
	  c_parser_set_source_position_from_token (token);
	  decl_loc = value_loc = token->location;
	  c_parser_consume_token (parser);
	  if (c_parser_next_token_is (parser, CPP_EQ))
	    {
	      c_parser_consume_token (parser);
	      value_loc = c_parser_peek_token (parser)->location;
	      enum_value = c_parser_expr_no_commas (parser, NULL).value;
	    }
	  else
	    enum_value = NULL_TREE;
	  enum_decl = build_enumerator (decl_loc, value_loc,
	      				&the_enum, enum_id, enum_value);
	  TREE_CHAIN (enum_decl) = values;
	  values = enum_decl;
	  seen_comma = false;
	  if (c_parser_next_token_is (parser, CPP_COMMA))
	    {
	      comma_loc = c_parser_peek_token (parser)->location;
	      seen_comma = true;
	      c_parser_consume_token (parser);
	    }
	  if (c_parser_next_token_is (parser, CPP_CLOSE_BRACE))
	    {
	      if (seen_comma && !flag_isoc99)
		pedwarn (comma_loc, OPT_Wpedantic, "comma at end of enumerator list");
	      c_parser_consume_token (parser);
	      break;
	    }
	  if (!seen_comma)
	    {
	      c_parser_error (parser, "expected %<,%> or %<}%>");
	      c_parser_skip_until_found (parser, CPP_CLOSE_BRACE, NULL);
	      values = error_mark_node;
	      break;
	    }
	}
      postfix_attrs = c_parser_attributes (parser);
      ret.spec = finish_enum (type, nreverse (values),
			      chainon (attrs, postfix_attrs));
      ret.kind = ctsk_tagdef;
      ret.expr = NULL_TREE;
      ret.expr_const_operands = true;
      timevar_pop (TV_PARSE_ENUM);
      return ret;
    }
  else if (!ident)
    {
      c_parser_error (parser, "expected %<{%>");
      ret.spec = error_mark_node;
      ret.kind = ctsk_tagref;
      ret.expr = NULL_TREE;
      ret.expr_const_operands = true;
      return ret;
    }
  ret = parser_xref_tag (ident_loc, ENUMERAL_TYPE, ident);
  /* In ISO C, enumerated types can be referred to only if already
     defined.  */
  if (pedantic && !COMPLETE_TYPE_P (ret.spec))
    {
      gcc_assert (ident);
      pedwarn (enum_loc, OPT_Wpedantic,
	       "ISO C forbids forward references to %<enum%> types");
    }
  return ret;
}

/* Parse a struct or union specifier (C90 6.5.2.1, C99 6.7.2.1).

   struct-or-union-specifier:
     struct-or-union attributes[opt] identifier[opt]
       { struct-contents } attributes[opt]
     struct-or-union attributes[opt] identifier

   struct-contents:
     struct-declaration-list

   struct-declaration-list:
     struct-declaration ;
     struct-declaration-list struct-declaration ;

   GNU extensions:

   struct-contents:
     empty
     struct-declaration
     struct-declaration-list struct-declaration

   struct-declaration-list:
     struct-declaration-list ;
     ;

   (Note that in the syntax here, unlike that in ISO C, the semicolons
   are included here rather than in struct-declaration, in order to
   describe the syntax with extra semicolons and missing semicolon at
   end.)

   Objective-C:

   struct-declaration-list:
     @defs ( class-name )

   (Note this does not include a trailing semicolon, but can be
   followed by further declarations, and gets a pedwarn-if-pedantic
   when followed by a semicolon.)  */

static struct c_typespec
c_parser_struct_or_union_specifier (c_parser *parser)
{
  struct c_typespec ret;
  tree attrs;
  tree ident = NULL_TREE;
  location_t struct_loc;
  location_t ident_loc = UNKNOWN_LOCATION;
  enum tree_code code;
  switch (c_parser_peek_token (parser)->keyword)
    {
    case RID_STRUCT:
      code = RECORD_TYPE;
      break;
    case RID_UNION:
      code = UNION_TYPE;
      break;
    default:
      gcc_unreachable ();
    }
  struct_loc = c_parser_peek_token (parser)->location;
  c_parser_consume_token (parser);
  attrs = c_parser_attributes (parser);

  /* Set the location in case we create a decl now.  */
  c_parser_set_source_position_from_token (c_parser_peek_token (parser));

  if (c_parser_next_token_is (parser, CPP_NAME))
    {
      ident = c_parser_peek_token (parser)->value;
      ident_loc = c_parser_peek_token (parser)->location;
      struct_loc = ident_loc;
      c_parser_consume_token (parser);
    }
  if (c_parser_next_token_is (parser, CPP_OPEN_BRACE))
    {
      /* Parse a struct or union definition.  Start the scope of the
	 tag before parsing components.  */
      struct c_struct_parse_info *struct_info;
      tree type = start_struct (struct_loc, code, ident, &struct_info);
      tree postfix_attrs;
      /* We chain the components in reverse order, then put them in
	 forward order at the end.  Each struct-declaration may
	 declare multiple components (comma-separated), so we must use
	 chainon to join them, although when parsing each
	 struct-declaration we can use TREE_CHAIN directly.

	 The theory behind all this is that there will be more
	 semicolon separated fields than comma separated fields, and
	 so we'll be minimizing the number of node traversals required
	 by chainon.  */
      tree contents;
      timevar_push (TV_PARSE_STRUCT);
      contents = NULL_TREE;
      c_parser_consume_token (parser);
      /* Handle the Objective-C @defs construct,
	 e.g. foo(sizeof(struct{ @defs(ClassName) }));.  */
      if (c_parser_next_token_is_keyword (parser, RID_AT_DEFS))
	{
	  tree name;
	  gcc_assert (c_dialect_objc ());
	  c_parser_consume_token (parser);
	  if (!c_parser_require (parser, CPP_OPEN_PAREN, "expected %<(%>"))
	    goto end_at_defs;
	  if (c_parser_next_token_is (parser, CPP_NAME)
	      && c_parser_peek_token (parser)->id_kind == C_ID_CLASSNAME)
	    {
	      name = c_parser_peek_token (parser)->value;
	      c_parser_consume_token (parser);
	    }
	  else
	    {
	      c_parser_error (parser, "expected class name");
	      c_parser_skip_until_found (parser, CPP_CLOSE_PAREN, NULL);
	      goto end_at_defs;
	    }
	  c_parser_skip_until_found (parser, CPP_CLOSE_PAREN,
				     "expected %<)%>");
	  contents = nreverse (objc_get_class_ivars (name));
	}
    end_at_defs:
      /* Parse the struct-declarations and semicolons.  Problems with
	 semicolons are diagnosed here; empty structures are diagnosed
	 elsewhere.  */
      while (true)
	{
	  tree decls;
	  /* Parse any stray semicolon.  */
	  if (c_parser_next_token_is (parser, CPP_SEMICOLON))
	    {
	      pedwarn (c_parser_peek_token (parser)->location, OPT_Wpedantic,
		       "extra semicolon in struct or union specified");
	      c_parser_consume_token (parser);
	      continue;
	    }
	  /* Stop if at the end of the struct or union contents.  */
	  if (c_parser_next_token_is (parser, CPP_CLOSE_BRACE))
	    {
	      c_parser_consume_token (parser);
	      break;
	    }
	  /* Accept #pragmas at struct scope.  */
	  if (c_parser_next_token_is (parser, CPP_PRAGMA))
	    {
	      c_parser_pragma (parser, pragma_struct);
	      continue;
	    }
	  /* Parse some comma-separated declarations, but not the
	     trailing semicolon if any.  */
	  decls = c_parser_struct_declaration (parser);
	  contents = chainon (decls, contents);
	  /* If no semicolon follows, either we have a parse error or
	     are at the end of the struct or union and should
	     pedwarn.  */
	  if (c_parser_next_token_is (parser, CPP_SEMICOLON))
	    c_parser_consume_token (parser);
	  else
	    {
	      if (c_parser_next_token_is (parser, CPP_CLOSE_BRACE))
		pedwarn (c_parser_peek_token (parser)->location, 0,
			 "no semicolon at end of struct or union");
	      else if (parser->error
		       || !c_parser_next_token_starts_declspecs (parser))
		{
		  c_parser_error (parser, "expected %<;%>");
		  c_parser_skip_until_found (parser, CPP_CLOSE_BRACE, NULL);
		  break;
		}

	      /* If we come here, we have already emitted an error
		 for an expected `;', identifier or `(', and we also
	         recovered already.  Go on with the next field. */
	    }
	}
      postfix_attrs = c_parser_attributes (parser);
      ret.spec = finish_struct (struct_loc, type, nreverse (contents),
				chainon (attrs, postfix_attrs), struct_info);
      ret.kind = ctsk_tagdef;
      ret.expr = NULL_TREE;
      ret.expr_const_operands = true;
      timevar_pop (TV_PARSE_STRUCT);
      return ret;
    }
  else if (!ident)
    {
      c_parser_error (parser, "expected %<{%>");
      ret.spec = error_mark_node;
      ret.kind = ctsk_tagref;
      ret.expr = NULL_TREE;
      ret.expr_const_operands = true;
      return ret;
    }
  ret = parser_xref_tag (ident_loc, code, ident);
  return ret;
}

/* Parse a struct-declaration (C90 6.5.2.1, C99 6.7.2.1), *without*
   the trailing semicolon.

   struct-declaration:
     specifier-qualifier-list struct-declarator-list
     static_assert-declaration-no-semi

   specifier-qualifier-list:
     type-specifier specifier-qualifier-list[opt]
     type-qualifier specifier-qualifier-list[opt]
     attributes specifier-qualifier-list[opt]

   struct-declarator-list:
     struct-declarator
     struct-declarator-list , attributes[opt] struct-declarator

   struct-declarator:
     declarator attributes[opt]
     declarator[opt] : constant-expression attributes[opt]

   GNU extensions:

   struct-declaration:
     __extension__ struct-declaration
     specifier-qualifier-list

   Unlike the ISO C syntax, semicolons are handled elsewhere.  The use
   of attributes where shown is a GNU extension.  In GNU C, we accept
   any expression without commas in the syntax (assignment
   expressions, not just conditional expressions); assignment
   expressions will be diagnosed as non-constant.  */

static tree
c_parser_struct_declaration (c_parser *parser)
{
  struct c_declspecs *specs;
  tree prefix_attrs;
  tree all_prefix_attrs;
  tree decls;
  location_t decl_loc;
  if (c_parser_next_token_is_keyword (parser, RID_EXTENSION))
    {
      int ext;
      tree decl;
      ext = disable_extension_diagnostics ();
      c_parser_consume_token (parser);
      decl = c_parser_struct_declaration (parser);
      restore_extension_diagnostics (ext);
      return decl;
    }
  if (c_parser_next_token_is_keyword (parser, RID_STATIC_ASSERT))
    {
      c_parser_static_assert_declaration_no_semi (parser);
      return NULL_TREE;
    }
  specs = build_null_declspecs ();
  decl_loc = c_parser_peek_token (parser)->location;
  /* Strictly by the standard, we shouldn't allow _Alignas here,
     but it appears to have been intended to allow it there, so
     we're keeping it as it is until WG14 reaches a conclusion
     of N1731.
     <http://www.open-std.org/jtc1/sc22/wg14/www/docs/n1731.pdf>  */
  c_parser_declspecs (parser, specs, false, true, true,
		      true, cla_nonabstract_decl);
  if (parser->error)
    return NULL_TREE;
  if (!specs->declspecs_seen_p)
    {
      c_parser_error (parser, "expected specifier-qualifier-list");
      return NULL_TREE;
    }
  finish_declspecs (specs);
  if (c_parser_next_token_is (parser, CPP_SEMICOLON)
      || c_parser_next_token_is (parser, CPP_CLOSE_BRACE))
    {
      tree ret;
      if (specs->typespec_kind == ctsk_none)
	{
	  pedwarn (decl_loc, OPT_Wpedantic,
		   "ISO C forbids member declarations with no members");
	  shadow_tag_warned (specs, pedantic);
	  ret = NULL_TREE;
	}
      else
	{
	  /* Support for unnamed structs or unions as members of
	     structs or unions (which is [a] useful and [b] supports
	     MS P-SDK).  */
	  tree attrs = NULL;

	  ret = grokfield (c_parser_peek_token (parser)->location,
			   build_id_declarator (NULL_TREE), specs,
			   NULL_TREE, &attrs);
	  if (ret)
	    decl_attributes (&ret, attrs, 0);
	}
      return ret;
    }

  /* Provide better error recovery.  Note that a type name here is valid,
     and will be treated as a field name.  */
  if (specs->typespec_kind == ctsk_tagdef
      && TREE_CODE (specs->type) != ENUMERAL_TYPE
      && c_parser_next_token_starts_declspecs (parser)
      && !c_parser_next_token_is (parser, CPP_NAME))
    {
      c_parser_error (parser, "expected %<;%>, identifier or %<(%>");
      parser->error = false;
      return NULL_TREE;
    }

  pending_xref_error ();
  prefix_attrs = specs->attrs;
  all_prefix_attrs = prefix_attrs;
  specs->attrs = NULL_TREE;
  decls = NULL_TREE;
  while (true)
    {
      /* Declaring one or more declarators or un-named bit-fields.  */
      struct c_declarator *declarator;
      bool dummy = false;
      if (c_parser_next_token_is (parser, CPP_COLON))
	declarator = build_id_declarator (NULL_TREE);
      else
	declarator = c_parser_declarator (parser,
					  specs->typespec_kind != ctsk_none,
					  C_DTR_NORMAL, &dummy);
      if (declarator == NULL)
	{
	  c_parser_skip_to_end_of_block_or_statement (parser);
	  break;
	}
      if (c_parser_next_token_is (parser, CPP_COLON)
	  || c_parser_next_token_is (parser, CPP_COMMA)
	  || c_parser_next_token_is (parser, CPP_SEMICOLON)
	  || c_parser_next_token_is (parser, CPP_CLOSE_BRACE)
	  || c_parser_next_token_is_keyword (parser, RID_ATTRIBUTE))
	{
	  tree postfix_attrs = NULL_TREE;
	  tree width = NULL_TREE;
	  tree d;
	  if (c_parser_next_token_is (parser, CPP_COLON))
	    {
	      c_parser_consume_token (parser);
	      width = c_parser_expr_no_commas (parser, NULL).value;
	    }
	  if (c_parser_next_token_is_keyword (parser, RID_ATTRIBUTE))
	    postfix_attrs = c_parser_attributes (parser);
	  d = grokfield (c_parser_peek_token (parser)->location,
			 declarator, specs, width, &all_prefix_attrs);
	  decl_attributes (&d, chainon (postfix_attrs,
					all_prefix_attrs), 0);
	  DECL_CHAIN (d) = decls;
	  decls = d;
	  if (c_parser_next_token_is_keyword (parser, RID_ATTRIBUTE))
	    all_prefix_attrs = chainon (c_parser_attributes (parser),
					prefix_attrs);
	  else
	    all_prefix_attrs = prefix_attrs;
	  if (c_parser_next_token_is (parser, CPP_COMMA))
	    c_parser_consume_token (parser);
	  else if (c_parser_next_token_is (parser, CPP_SEMICOLON)
		   || c_parser_next_token_is (parser, CPP_CLOSE_BRACE))
	    {
	      /* Semicolon consumed in caller.  */
	      break;
	    }
	  else
	    {
	      c_parser_error (parser, "expected %<,%>, %<;%> or %<}%>");
	      break;
	    }
	}
      else
	{
	  c_parser_error (parser,
			  "expected %<:%>, %<,%>, %<;%>, %<}%> or "
			  "%<__attribute__%>");
	  break;
	}
    }
  return decls;
}

/* Parse a typeof specifier (a GNU extension).

   typeof-specifier:
     typeof ( expression )
     typeof ( type-name )
*/

static struct c_typespec
c_parser_typeof_specifier (c_parser *parser)
{
  struct c_typespec ret;
  ret.kind = ctsk_typeof;
  ret.spec = error_mark_node;
  ret.expr = NULL_TREE;
  ret.expr_const_operands = true;
  gcc_assert (c_parser_next_token_is_keyword (parser, RID_TYPEOF));
  c_parser_consume_token (parser);
  c_inhibit_evaluation_warnings++;
  in_typeof++;
  if (!c_parser_require (parser, CPP_OPEN_PAREN, "expected %<(%>"))
    {
      c_inhibit_evaluation_warnings--;
      in_typeof--;
      return ret;
    }
  if (c_parser_next_tokens_start_typename (parser, cla_prefer_id))
    {
      struct c_type_name *type = c_parser_type_name (parser);
      c_inhibit_evaluation_warnings--;
      in_typeof--;
      if (type != NULL)
	{
	  ret.spec = groktypename (type, &ret.expr, &ret.expr_const_operands);
	  pop_maybe_used (variably_modified_type_p (ret.spec, NULL_TREE));
	}
    }
  else
    {
      bool was_vm;
      location_t here = c_parser_peek_token (parser)->location;
      struct c_expr expr = c_parser_expression (parser);
      c_inhibit_evaluation_warnings--;
      in_typeof--;
      if (TREE_CODE (expr.value) == COMPONENT_REF
	  && DECL_C_BIT_FIELD (TREE_OPERAND (expr.value, 1)))
	error_at (here, "%<typeof%> applied to a bit-field");
      mark_exp_read (expr.value);
      ret.spec = TREE_TYPE (expr.value);
      was_vm = variably_modified_type_p (ret.spec, NULL_TREE);
      /* This is returned with the type so that when the type is
	 evaluated, this can be evaluated.  */
      if (was_vm)
	ret.expr = c_fully_fold (expr.value, false, &ret.expr_const_operands);
      pop_maybe_used (was_vm);
      /* For use in macros such as those in <stdatomic.h>, remove
	 _Atomic and const qualifiers from atomic types.  (Possibly
	 all qualifiers should be removed; const can be an issue for
	 more macros using typeof than just the <stdatomic.h>
	 ones.)  */
      if (ret.spec != error_mark_node && TYPE_ATOMIC (ret.spec))
	ret.spec = c_build_qualified_type (ret.spec,
					   (TYPE_QUALS (ret.spec)
					    & ~(TYPE_QUAL_ATOMIC
						| TYPE_QUAL_CONST)));
    }
  c_parser_skip_until_found (parser, CPP_CLOSE_PAREN, "expected %<)%>");
  return ret;
}

/* Parse an alignment-specifier.

   C11 6.7.5:

   alignment-specifier:
     _Alignas ( type-name )
     _Alignas ( constant-expression )
*/

static tree
c_parser_alignas_specifier (c_parser * parser)
{
  tree ret = error_mark_node;
  location_t loc = c_parser_peek_token (parser)->location;
  gcc_assert (c_parser_next_token_is_keyword (parser, RID_ALIGNAS));
  c_parser_consume_token (parser);
  if (!flag_isoc11)
    {
      if (flag_isoc99)
	pedwarn (loc, OPT_Wpedantic,
		 "ISO C99 does not support %<_Alignas%>");
      else
	pedwarn (loc, OPT_Wpedantic,
		 "ISO C90 does not support %<_Alignas%>");
    }
  if (!c_parser_require (parser, CPP_OPEN_PAREN, "expected %<(%>"))
    return ret;
  if (c_parser_next_tokens_start_typename (parser, cla_prefer_id))
    {
      struct c_type_name *type = c_parser_type_name (parser);
      if (type != NULL)
	ret = c_alignof (loc, groktypename (type, NULL, NULL));
    }
  else
    ret = c_parser_expr_no_commas (parser, NULL).value;
  c_parser_skip_until_found (parser, CPP_CLOSE_PAREN, "expected %<)%>");
  return ret;
}

/* Parse a declarator, possibly an abstract declarator (C90 6.5.4,
   6.5.5, C99 6.7.5, 6.7.6).  If TYPE_SEEN_P then a typedef name may
   be redeclared; otherwise it may not.  KIND indicates which kind of
   declarator is wanted.  Returns a valid declarator except in the
   case of a syntax error in which case NULL is returned.  *SEEN_ID is
   set to true if an identifier being declared is seen; this is used
   to diagnose bad forms of abstract array declarators and to
   determine whether an identifier list is syntactically permitted.

   declarator:
     pointer[opt] direct-declarator

   direct-declarator:
     identifier
     ( attributes[opt] declarator )
     direct-declarator array-declarator
     direct-declarator ( parameter-type-list )
     direct-declarator ( identifier-list[opt] )

   pointer:
     * type-qualifier-list[opt]
     * type-qualifier-list[opt] pointer

   type-qualifier-list:
     type-qualifier
     attributes
     type-qualifier-list type-qualifier
     type-qualifier-list attributes

   array-declarator:
     [ type-qualifier-list[opt] assignment-expression[opt] ]
     [ static type-qualifier-list[opt] assignment-expression ]
     [ type-qualifier-list static assignment-expression ]
     [ type-qualifier-list[opt] * ]

   parameter-type-list:
     parameter-list
     parameter-list , ...

   parameter-list:
     parameter-declaration
     parameter-list , parameter-declaration

   parameter-declaration:
     declaration-specifiers declarator attributes[opt]
     declaration-specifiers abstract-declarator[opt] attributes[opt]

   identifier-list:
     identifier
     identifier-list , identifier

   abstract-declarator:
     pointer
     pointer[opt] direct-abstract-declarator

   direct-abstract-declarator:
     ( attributes[opt] abstract-declarator )
     direct-abstract-declarator[opt] array-declarator
     direct-abstract-declarator[opt] ( parameter-type-list[opt] )

   GNU extensions:

   direct-declarator:
     direct-declarator ( parameter-forward-declarations
			 parameter-type-list[opt] )

   direct-abstract-declarator:
     direct-abstract-declarator[opt] ( parameter-forward-declarations
				       parameter-type-list[opt] )

   parameter-forward-declarations:
     parameter-list ;
     parameter-forward-declarations parameter-list ;

   The uses of attributes shown above are GNU extensions.

   Some forms of array declarator are not included in C99 in the
   syntax for abstract declarators; these are disallowed elsewhere.
   This may be a defect (DR#289).

   This function also accepts an omitted abstract declarator as being
   an abstract declarator, although not part of the formal syntax.  */

static struct c_declarator *
c_parser_declarator (c_parser *parser, bool type_seen_p, c_dtr_syn kind,
		     bool *seen_id)
{
  /* Parse any initial pointer part.  */
  if (c_parser_next_token_is (parser, CPP_MULT))
    {
      struct c_declspecs *quals_attrs = build_null_declspecs ();
      struct c_declarator *inner;
      c_parser_consume_token (parser);
      c_parser_declspecs (parser, quals_attrs, false, false, true,
			  false, cla_prefer_id);
      inner = c_parser_declarator (parser, type_seen_p, kind, seen_id);
      if (inner == NULL)
	return NULL;
      else
	return make_pointer_declarator (quals_attrs, inner);
    }
  /* Now we have a direct declarator, direct abstract declarator or
     nothing (which counts as a direct abstract declarator here).  */
  return c_parser_direct_declarator (parser, type_seen_p, kind, seen_id);
}

/* Parse a direct declarator or direct abstract declarator; arguments
   as c_parser_declarator.  */

static struct c_declarator *
c_parser_direct_declarator (c_parser *parser, bool type_seen_p, c_dtr_syn kind,
			    bool *seen_id)
{
  /* The direct declarator must start with an identifier (possibly
     omitted) or a parenthesized declarator (possibly abstract).  In
     an ordinary declarator, initial parentheses must start a
     parenthesized declarator.  In an abstract declarator or parameter
     declarator, they could start a parenthesized declarator or a
     parameter list.  To tell which, the open parenthesis and any
     following attributes must be read.  If a declaration specifier
     follows, then it is a parameter list; if the specifier is a
     typedef name, there might be an ambiguity about redeclaring it,
     which is resolved in the direction of treating it as a typedef
     name.  If a close parenthesis follows, it is also an empty
     parameter list, as the syntax does not permit empty abstract
     declarators.  Otherwise, it is a parenthesized declarator (in
     which case the analysis may be repeated inside it, recursively).

     ??? There is an ambiguity in a parameter declaration "int
     (__attribute__((foo)) x)", where x is not a typedef name: it
     could be an abstract declarator for a function, or declare x with
     parentheses.  The proper resolution of this ambiguity needs
     documenting.  At present we follow an accident of the old
     parser's implementation, whereby the first parameter must have
     some declaration specifiers other than just attributes.  Thus as
     a parameter declaration it is treated as a parenthesized
     parameter named x, and as an abstract declarator it is
     rejected.

     ??? Also following the old parser, attributes inside an empty
     parameter list are ignored, making it a list not yielding a
     prototype, rather than giving an error or making it have one
     parameter with implicit type int.

     ??? Also following the old parser, typedef names may be
     redeclared in declarators, but not Objective-C class names.  */

  if (kind != C_DTR_ABSTRACT
      && c_parser_next_token_is (parser, CPP_NAME)
      && ((type_seen_p
	   && (c_parser_peek_token (parser)->id_kind == C_ID_TYPENAME
	       || c_parser_peek_token (parser)->id_kind == C_ID_CLASSNAME))
	  || c_parser_peek_token (parser)->id_kind == C_ID_ID))
    {
      struct c_declarator *inner
	= build_id_declarator (c_parser_peek_token (parser)->value);
      *seen_id = true;
      inner->id_loc = c_parser_peek_token (parser)->location;
      c_parser_consume_token (parser);
      return c_parser_direct_declarator_inner (parser, *seen_id, inner);
    }

  if (kind != C_DTR_NORMAL
      && c_parser_next_token_is (parser, CPP_OPEN_SQUARE))
    {
      struct c_declarator *inner = build_id_declarator (NULL_TREE);
      return c_parser_direct_declarator_inner (parser, *seen_id, inner);
    }

  /* Either we are at the end of an abstract declarator, or we have
     parentheses.  */

  if (c_parser_next_token_is (parser, CPP_OPEN_PAREN))
    {
      tree attrs;
      struct c_declarator *inner;
      c_parser_consume_token (parser);
      attrs = c_parser_attributes (parser);
      if (kind != C_DTR_NORMAL
	  && (c_parser_next_token_starts_declspecs (parser)
	      || c_parser_next_token_is (parser, CPP_CLOSE_PAREN)))
	{
	  struct c_arg_info *args
	    = c_parser_parms_declarator (parser, kind == C_DTR_NORMAL,
					 attrs);
	  if (args == NULL)
	    return NULL;
	  else
	    {
	      inner
		= build_function_declarator (args,
					     build_id_declarator (NULL_TREE));
	      return c_parser_direct_declarator_inner (parser, *seen_id,
						       inner);
	    }
	}
      /* A parenthesized declarator.  */
      inner = c_parser_declarator (parser, type_seen_p, kind, seen_id);
      if (inner != NULL && attrs != NULL)
	inner = build_attrs_declarator (attrs, inner);
      if (c_parser_next_token_is (parser, CPP_CLOSE_PAREN))
	{
	  c_parser_consume_token (parser);
	  if (inner == NULL)
	    return NULL;
	  else
	    return c_parser_direct_declarator_inner (parser, *seen_id, inner);
	}
      else
	{
	  c_parser_skip_until_found (parser, CPP_CLOSE_PAREN,
				     "expected %<)%>");
	  return NULL;
	}
    }
  else
    {
      if (kind == C_DTR_NORMAL)
	{
	  c_parser_error (parser, "expected identifier or %<(%>");
	  return NULL;
	}
      else
	return build_id_declarator (NULL_TREE);
    }
}

/* Parse part of a direct declarator or direct abstract declarator,
   given that some (in INNER) has already been parsed; ID_PRESENT is
   true if an identifier is present, false for an abstract
   declarator.  */

static struct c_declarator *
c_parser_direct_declarator_inner (c_parser *parser, bool id_present,
				  struct c_declarator *inner)
{
  /* Parse a sequence of array declarators and parameter lists.  */
  if (c_parser_next_token_is (parser, CPP_OPEN_SQUARE))
    {
      location_t brace_loc = c_parser_peek_token (parser)->location;
      struct c_declarator *declarator;
      struct c_declspecs *quals_attrs = build_null_declspecs ();
      bool static_seen;
      bool star_seen;
      struct c_expr dimen;
      dimen.value = NULL_TREE;
      dimen.original_code = ERROR_MARK;
      dimen.original_type = NULL_TREE;
      c_parser_consume_token (parser);
      c_parser_declspecs (parser, quals_attrs, false, false, true,
			  false, cla_prefer_id);
      static_seen = c_parser_next_token_is_keyword (parser, RID_STATIC);
      if (static_seen)
	c_parser_consume_token (parser);
      if (static_seen && !quals_attrs->declspecs_seen_p)
	c_parser_declspecs (parser, quals_attrs, false, false, true,
			    false, cla_prefer_id);
      if (!quals_attrs->declspecs_seen_p)
	quals_attrs = NULL;
      /* If "static" is present, there must be an array dimension.
	 Otherwise, there may be a dimension, "*", or no
	 dimension.  */
      if (static_seen)
	{
	  star_seen = false;
	  dimen = c_parser_expr_no_commas (parser, NULL);
	}
      else
	{
	  if (c_parser_next_token_is (parser, CPP_CLOSE_SQUARE))
	    {
	      dimen.value = NULL_TREE;
	      star_seen = false;
	    }
	  else if (flag_enable_cilkplus
		   && c_parser_next_token_is (parser, CPP_COLON))
	    {
	      dimen.value = error_mark_node;
	      star_seen = false;
	      error_at (c_parser_peek_token (parser)->location,
			"array notations cannot be used in declaration");
	      c_parser_consume_token (parser);
	    }   
	  else if (c_parser_next_token_is (parser, CPP_MULT))
	    {
	      if (c_parser_peek_2nd_token (parser)->type == CPP_CLOSE_SQUARE)
		{
		  dimen.value = NULL_TREE;
		  star_seen = true;
		  c_parser_consume_token (parser);
		}
	      else
		{
		  star_seen = false;
		  dimen = c_parser_expr_no_commas (parser, NULL);
		}
	    }
	  else
	    {
	      star_seen = false;
	      dimen = c_parser_expr_no_commas (parser, NULL);
	    }
	}
      if (c_parser_next_token_is (parser, CPP_CLOSE_SQUARE))
	c_parser_consume_token (parser);
      else if (flag_enable_cilkplus
	       && c_parser_next_token_is (parser, CPP_COLON))
	{
	  error_at (c_parser_peek_token (parser)->location,
		    "array notations cannot be used in declaration");
	  c_parser_skip_until_found (parser, CPP_CLOSE_SQUARE, NULL);
	  return NULL;
	}
      else
	{
	  c_parser_skip_until_found (parser, CPP_CLOSE_SQUARE,
				     "expected %<]%>");
	  return NULL;
	}
      if (dimen.value)
	dimen = convert_lvalue_to_rvalue (brace_loc, dimen, true, true);
      declarator = build_array_declarator (brace_loc, dimen.value, quals_attrs,
					   static_seen, star_seen);
      if (declarator == NULL)
	return NULL;
      inner = set_array_declarator_inner (declarator, inner);
      return c_parser_direct_declarator_inner (parser, id_present, inner);
    }
  else if (c_parser_next_token_is (parser, CPP_OPEN_PAREN))
    {
      tree attrs;
      struct c_arg_info *args;
      c_parser_consume_token (parser);
      attrs = c_parser_attributes (parser);
      args = c_parser_parms_declarator (parser, id_present, attrs);
      if (args == NULL)
	return NULL;
      else
	{
	  inner = build_function_declarator (args, inner);
	  return c_parser_direct_declarator_inner (parser, id_present, inner);
	}
    }
  return inner;
}

/* Parse a parameter list or identifier list, including the closing
   parenthesis but not the opening one.  ATTRS are the attributes at
   the start of the list.  ID_LIST_OK is true if an identifier list is
   acceptable; such a list must not have attributes at the start.  */

static struct c_arg_info *
c_parser_parms_declarator (c_parser *parser, bool id_list_ok, tree attrs)
{
  push_scope ();
  declare_parm_level ();
  /* If the list starts with an identifier, it is an identifier list.
     Otherwise, it is either a prototype list or an empty list.  */
  if (id_list_ok
      && !attrs
      && c_parser_next_token_is (parser, CPP_NAME)
      && c_parser_peek_token (parser)->id_kind == C_ID_ID
      
      /* Look ahead to detect typos in type names.  */
      && c_parser_peek_2nd_token (parser)->type != CPP_NAME
      && c_parser_peek_2nd_token (parser)->type != CPP_MULT
      && c_parser_peek_2nd_token (parser)->type != CPP_OPEN_PAREN
      && c_parser_peek_2nd_token (parser)->type != CPP_OPEN_SQUARE)
    {
      tree list = NULL_TREE, *nextp = &list;
      while (c_parser_next_token_is (parser, CPP_NAME)
	     && c_parser_peek_token (parser)->id_kind == C_ID_ID)
	{
	  *nextp = build_tree_list (NULL_TREE,
				    c_parser_peek_token (parser)->value);
	  nextp = & TREE_CHAIN (*nextp);
	  c_parser_consume_token (parser);
	  if (c_parser_next_token_is_not (parser, CPP_COMMA))
	    break;
	  c_parser_consume_token (parser);
	  if (c_parser_next_token_is (parser, CPP_CLOSE_PAREN))
	    {
	      c_parser_error (parser, "expected identifier");
	      break;
	    }
	}
      if (c_parser_next_token_is (parser, CPP_CLOSE_PAREN))
	{
	  struct c_arg_info *ret = build_arg_info ();
	  ret->types = list;
	  c_parser_consume_token (parser);
	  pop_scope ();
	  return ret;
	}
      else
	{
	  c_parser_skip_until_found (parser, CPP_CLOSE_PAREN,
				     "expected %<)%>");
	  pop_scope ();
	  return NULL;
	}
    }
  else
    {
      struct c_arg_info *ret = c_parser_parms_list_declarator (parser, attrs,
							       NULL);
      pop_scope ();
      return ret;
    }
}

/* Parse a parameter list (possibly empty), including the closing
   parenthesis but not the opening one.  ATTRS are the attributes at
   the start of the list.  EXPR is NULL or an expression that needs to
   be evaluated for the side effects of array size expressions in the
   parameters.  */

static struct c_arg_info *
c_parser_parms_list_declarator (c_parser *parser, tree attrs, tree expr)
{
  bool bad_parm = false;

  /* ??? Following the old parser, forward parameter declarations may
     use abstract declarators, and if no real parameter declarations
     follow the forward declarations then this is not diagnosed.  Also
     note as above that attributes are ignored as the only contents of
     the parentheses, or as the only contents after forward
     declarations.  */
  if (c_parser_next_token_is (parser, CPP_CLOSE_PAREN))
    {
      struct c_arg_info *ret = build_arg_info ();
      c_parser_consume_token (parser);
      return ret;
    }
  if (c_parser_next_token_is (parser, CPP_ELLIPSIS))
    {
      struct c_arg_info *ret = build_arg_info ();

      if (flag_allow_parameterless_variadic_functions)
        {
          /* F (...) is allowed.  */
          ret->types = NULL_TREE;
        }
      else
        {
          /* Suppress -Wold-style-definition for this case.  */
          ret->types = error_mark_node;
          error_at (c_parser_peek_token (parser)->location,
                    "ISO C requires a named argument before %<...%>");
        }
      c_parser_consume_token (parser);
      if (c_parser_next_token_is (parser, CPP_CLOSE_PAREN))
	{
	  c_parser_consume_token (parser);
	  return ret;
	}
      else
	{
	  c_parser_skip_until_found (parser, CPP_CLOSE_PAREN,
				     "expected %<)%>");
	  return NULL;
	}
    }
  /* Nonempty list of parameters, either terminated with semicolon
     (forward declarations; recurse) or with close parenthesis (normal
     function) or with ", ... )" (variadic function).  */
  while (true)
    {
      /* Parse a parameter.  */
      struct c_parm *parm = c_parser_parameter_declaration (parser, attrs);
      attrs = NULL_TREE;
      if (parm == NULL)
	bad_parm = true;
      else
	push_parm_decl (parm, &expr);
      if (c_parser_next_token_is (parser, CPP_SEMICOLON))
	{
	  tree new_attrs;
	  c_parser_consume_token (parser);
	  mark_forward_parm_decls ();
	  new_attrs = c_parser_attributes (parser);
	  return c_parser_parms_list_declarator (parser, new_attrs, expr);
	}
      if (c_parser_next_token_is (parser, CPP_CLOSE_PAREN))
	{
	  c_parser_consume_token (parser);
	  if (bad_parm)
	    return NULL;
	  else
	    return get_parm_info (false, expr);
	}
      if (!c_parser_require (parser, CPP_COMMA,
			     "expected %<;%>, %<,%> or %<)%>"))
	{
	  c_parser_skip_until_found (parser, CPP_CLOSE_PAREN, NULL);
	  return NULL;
	}
      if (c_parser_next_token_is (parser, CPP_ELLIPSIS))
	{
	  c_parser_consume_token (parser);
	  if (c_parser_next_token_is (parser, CPP_CLOSE_PAREN))
	    {
	      c_parser_consume_token (parser);
	      if (bad_parm)
		return NULL;
	      else
		return get_parm_info (true, expr);
	    }
	  else
	    {
	      c_parser_skip_until_found (parser, CPP_CLOSE_PAREN,
					 "expected %<)%>");
	      return NULL;
	    }
	}
    }
}

/* Parse a parameter declaration.  ATTRS are the attributes at the
   start of the declaration if it is the first parameter.  */

static struct c_parm *
c_parser_parameter_declaration (c_parser *parser, tree attrs)
{
  struct c_declspecs *specs;
  struct c_declarator *declarator;
  tree prefix_attrs;
  tree postfix_attrs = NULL_TREE;
  bool dummy = false;

  /* Accept #pragmas between parameter declarations.  */
  while (c_parser_next_token_is (parser, CPP_PRAGMA))
    c_parser_pragma (parser, pragma_param);

  if (!c_parser_next_token_starts_declspecs (parser))
    {
      c_token *token = c_parser_peek_token (parser);
      if (parser->error)
	return NULL;
      c_parser_set_source_position_from_token (token);
      if (c_parser_next_tokens_start_typename (parser, cla_prefer_type))
	{
	  error ("unknown type name %qE", token->value);
	  parser->error = true;
	}
      /* ??? In some Objective-C cases '...' isn't applicable so there
	 should be a different message.  */
      else
	c_parser_error (parser,
			"expected declaration specifiers or %<...%>");
      c_parser_skip_to_end_of_parameter (parser);
      return NULL;
    }
  specs = build_null_declspecs ();
  if (attrs)
    {
      declspecs_add_attrs (input_location, specs, attrs);
      attrs = NULL_TREE;
    }
  c_parser_declspecs (parser, specs, true, true, true, true,
		      cla_nonabstract_decl);
  finish_declspecs (specs);
  pending_xref_error ();
  prefix_attrs = specs->attrs;
  specs->attrs = NULL_TREE;
  declarator = c_parser_declarator (parser,
				    specs->typespec_kind != ctsk_none,
				    C_DTR_PARM, &dummy);
  if (declarator == NULL)
    {
      c_parser_skip_until_found (parser, CPP_COMMA, NULL);
      return NULL;
    }
  if (c_parser_next_token_is_keyword (parser, RID_ATTRIBUTE))
    postfix_attrs = c_parser_attributes (parser);
  return build_c_parm (specs, chainon (postfix_attrs, prefix_attrs),
		       declarator);
}

/* Parse a string literal in an asm expression.  It should not be
   translated, and wide string literals are an error although
   permitted by the syntax.  This is a GNU extension.

   asm-string-literal:
     string-literal

   ??? At present, following the old parser, the caller needs to have
   set lex_untranslated_string to 1.  It would be better to follow the
   C++ parser rather than using this kludge.  */

static tree
c_parser_asm_string_literal (c_parser *parser)
{
  tree str;
  int save_flag = warn_overlength_strings;
  warn_overlength_strings = 0;
  if (c_parser_next_token_is (parser, CPP_STRING))
    {
      str = c_parser_peek_token (parser)->value;
      c_parser_consume_token (parser);
    }
  else if (c_parser_next_token_is (parser, CPP_WSTRING))
    {
      error_at (c_parser_peek_token (parser)->location,
		"wide string literal in %<asm%>");
      str = build_string (1, "");
      c_parser_consume_token (parser);
    }
  else
    {
      c_parser_error (parser, "expected string literal");
      str = NULL_TREE;
    }
  warn_overlength_strings = save_flag;
  return str;
}

/* Parse a simple asm expression.  This is used in restricted
   contexts, where a full expression with inputs and outputs does not
   make sense.  This is a GNU extension.

   simple-asm-expr:
     asm ( asm-string-literal )
*/

static tree
c_parser_simple_asm_expr (c_parser *parser)
{
  tree str;
  gcc_assert (c_parser_next_token_is_keyword (parser, RID_ASM));
  /* ??? Follow the C++ parser rather than using the
     lex_untranslated_string kludge.  */
  parser->lex_untranslated_string = true;
  c_parser_consume_token (parser);
  if (!c_parser_require (parser, CPP_OPEN_PAREN, "expected %<(%>"))
    {
      parser->lex_untranslated_string = false;
      return NULL_TREE;
    }
  str = c_parser_asm_string_literal (parser);
  parser->lex_untranslated_string = false;
  if (!c_parser_require (parser, CPP_CLOSE_PAREN, "expected %<)%>"))
    {
      c_parser_skip_until_found (parser, CPP_CLOSE_PAREN, NULL);
      return NULL_TREE;
    }
  return str;
}

static tree
c_parser_attribute_any_word (c_parser *parser)
{
  tree attr_name = NULL_TREE;

  if (c_parser_next_token_is (parser, CPP_KEYWORD))
    {
      /* ??? See comment above about what keywords are accepted here.  */
      bool ok;
      switch (c_parser_peek_token (parser)->keyword)
	{
	case RID_STATIC:
	case RID_UNSIGNED:
	case RID_LONG:
	case RID_INT128:
	case RID_CONST:
	case RID_EXTERN:
	case RID_REGISTER:
	case RID_TYPEDEF:
	case RID_SHORT:
	case RID_INLINE:
	case RID_NORETURN:
	case RID_VOLATILE:
	case RID_SIGNED:
	case RID_AUTO:
	case RID_RESTRICT:
	case RID_COMPLEX:
	case RID_THREAD:
	case RID_INT:
	case RID_CHAR:
	case RID_FLOAT:
	case RID_DOUBLE:
	case RID_VOID:
	case RID_DFLOAT32:
	case RID_DFLOAT64:
	case RID_DFLOAT128:
	case RID_BOOL:
	case RID_FRACT:
	case RID_ACCUM:
	case RID_SAT:
	case RID_TRANSACTION_ATOMIC:
	case RID_TRANSACTION_CANCEL:
	case RID_ATOMIC:
	  ok = true;
	  break;
	default:
	  ok = false;
	  break;
	}
      if (!ok)
	return NULL_TREE;

      /* Accept __attribute__((__const)) as __attribute__((const)) etc.  */
      attr_name = ridpointers[(int) c_parser_peek_token (parser)->keyword];
    }
  else if (c_parser_next_token_is (parser, CPP_NAME))
    attr_name = c_parser_peek_token (parser)->value;

  return attr_name;
}

/* Parse (possibly empty) attributes.  This is a GNU extension.

   attributes:
     empty
     attributes attribute

   attribute:
     __attribute__ ( ( attribute-list ) )

   attribute-list:
     attrib
     attribute_list , attrib

   attrib:
     empty
     any-word
     any-word ( identifier )
     any-word ( identifier , nonempty-expr-list )
     any-word ( expr-list )

   where the "identifier" must not be declared as a type, and
   "any-word" may be any identifier (including one declared as a
   type), a reserved word storage class specifier, type specifier or
   type qualifier.  ??? This still leaves out most reserved keywords
   (following the old parser), shouldn't we include them, and why not
   allow identifiers declared as types to start the arguments?  */

static tree
c_parser_attributes (c_parser *parser)
{
  tree attrs = NULL_TREE;
  while (c_parser_next_token_is_keyword (parser, RID_ATTRIBUTE))
    {
      /* ??? Follow the C++ parser rather than using the
	 lex_untranslated_string kludge.  */
      parser->lex_untranslated_string = true;
      c_parser_consume_token (parser);
      if (!c_parser_require (parser, CPP_OPEN_PAREN, "expected %<(%>"))
	{
	  parser->lex_untranslated_string = false;
	  return attrs;
	}
      if (!c_parser_require (parser, CPP_OPEN_PAREN, "expected %<(%>"))
	{
	  parser->lex_untranslated_string = false;
	  c_parser_skip_until_found (parser, CPP_CLOSE_PAREN, NULL);
	  return attrs;
	}
      /* Parse the attribute list.  */
      while (c_parser_next_token_is (parser, CPP_COMMA)
	     || c_parser_next_token_is (parser, CPP_NAME)
	     || c_parser_next_token_is (parser, CPP_KEYWORD))
	{
	  tree attr, attr_name, attr_args;
	  vec<tree, va_gc> *expr_list;
	  if (c_parser_next_token_is (parser, CPP_COMMA))
	    {
	      c_parser_consume_token (parser);
	      continue;
	    }

	  attr_name = c_parser_attribute_any_word (parser);
	  if (attr_name == NULL)
	    break;
	  c_parser_consume_token (parser);
	  if (c_parser_next_token_is_not (parser, CPP_OPEN_PAREN))
	    {
	      attr = build_tree_list (attr_name, NULL_TREE);
	      attrs = chainon (attrs, attr);
	      continue;
	    }
	  c_parser_consume_token (parser);
	  /* Parse the attribute contents.  If they start with an
	     identifier which is followed by a comma or close
	     parenthesis, then the arguments start with that
	     identifier; otherwise they are an expression list.  
	     In objective-c the identifier may be a classname.  */
	  if (c_parser_next_token_is (parser, CPP_NAME)
	      && (c_parser_peek_token (parser)->id_kind == C_ID_ID
		  || (c_dialect_objc () 
		      && c_parser_peek_token (parser)->id_kind == C_ID_CLASSNAME))
	      && ((c_parser_peek_2nd_token (parser)->type == CPP_COMMA)
		  || (c_parser_peek_2nd_token (parser)->type
		      == CPP_CLOSE_PAREN)))
	    {
	      tree arg1 = c_parser_peek_token (parser)->value;
	      c_parser_consume_token (parser);
	      if (c_parser_next_token_is (parser, CPP_CLOSE_PAREN))
		attr_args = build_tree_list (NULL_TREE, arg1);
	      else
		{
		  tree tree_list;
		  c_parser_consume_token (parser);
		  expr_list = c_parser_expr_list (parser, false, true,
						  NULL, NULL, NULL);
		  tree_list = build_tree_list_vec (expr_list);
		  attr_args = tree_cons (NULL_TREE, arg1, tree_list);
		  release_tree_vector (expr_list);
		}
	    }
	  else
	    {
	      if (c_parser_next_token_is (parser, CPP_CLOSE_PAREN))
		attr_args = NULL_TREE;
	      else
		{
		  expr_list = c_parser_expr_list (parser, false, true,
						  NULL, NULL, NULL);
		  attr_args = build_tree_list_vec (expr_list);
		  release_tree_vector (expr_list);
		}
	    }
	  attr = build_tree_list (attr_name, attr_args);
	  if (c_parser_next_token_is (parser, CPP_CLOSE_PAREN))
	    c_parser_consume_token (parser);
	  else
	    {
	      parser->lex_untranslated_string = false;
	      c_parser_skip_until_found (parser, CPP_CLOSE_PAREN,
					 "expected %<)%>");
	      return attrs;
	    }
	  attrs = chainon (attrs, attr);
	}
      if (c_parser_next_token_is (parser, CPP_CLOSE_PAREN))
	c_parser_consume_token (parser);
      else
	{
	  parser->lex_untranslated_string = false;
	  c_parser_skip_until_found (parser, CPP_CLOSE_PAREN,
				     "expected %<)%>");
	  return attrs;
	}
      if (c_parser_next_token_is (parser, CPP_CLOSE_PAREN))
	c_parser_consume_token (parser);
      else
	{
	  parser->lex_untranslated_string = false;
	  c_parser_skip_until_found (parser, CPP_CLOSE_PAREN,
				     "expected %<)%>");
	  return attrs;
	}
      parser->lex_untranslated_string = false;
    }
  return attrs;
}

/* Parse a type name (C90 6.5.5, C99 6.7.6).

   type-name:
     specifier-qualifier-list abstract-declarator[opt]
*/

static struct c_type_name *
c_parser_type_name (c_parser *parser)
{
  struct c_declspecs *specs = build_null_declspecs ();
  struct c_declarator *declarator;
  struct c_type_name *ret;
  bool dummy = false;
  c_parser_declspecs (parser, specs, false, true, true, false,
		      cla_prefer_type);
  if (!specs->declspecs_seen_p)
    {
      c_parser_error (parser, "expected specifier-qualifier-list");
      return NULL;
    }
  if (specs->type != error_mark_node)
    {
      pending_xref_error ();
      finish_declspecs (specs);
    }
  declarator = c_parser_declarator (parser,
				    specs->typespec_kind != ctsk_none,
				    C_DTR_ABSTRACT, &dummy);
  if (declarator == NULL)
    return NULL;
  ret = XOBNEW (&parser_obstack, struct c_type_name);
  ret->specs = specs;
  ret->declarator = declarator;
  return ret;
}

/* Parse an initializer (C90 6.5.7, C99 6.7.8).

   initializer:
     assignment-expression
     { initializer-list }
     { initializer-list , }

   initializer-list:
     designation[opt] initializer
     initializer-list , designation[opt] initializer

   designation:
     designator-list =

   designator-list:
     designator
     designator-list designator

   designator:
     array-designator
     . identifier

   array-designator:
     [ constant-expression ]

   GNU extensions:

   initializer:
     { }

   designation:
     array-designator
     identifier :

   array-designator:
     [ constant-expression ... constant-expression ]

   Any expression without commas is accepted in the syntax for the
   constant-expressions, with non-constant expressions rejected later.

   This function is only used for top-level initializers; for nested
   ones, see c_parser_initval.  */

static struct c_expr
c_parser_initializer (c_parser *parser)
{
  if (c_parser_next_token_is (parser, CPP_OPEN_BRACE))
    return c_parser_braced_init (parser, NULL_TREE, false);
  else
    {
      struct c_expr ret;
      location_t loc = c_parser_peek_token (parser)->location;
      ret = c_parser_expr_no_commas (parser, NULL);
      if (TREE_CODE (ret.value) != STRING_CST
	  && TREE_CODE (ret.value) != COMPOUND_LITERAL_EXPR)
	ret = convert_lvalue_to_rvalue (loc, ret, true, true);
      return ret;
    }
}

/* Parse a braced initializer list.  TYPE is the type specified for a
   compound literal, and NULL_TREE for other initializers and for
   nested braced lists.  NESTED_P is true for nested braced lists,
   false for the list of a compound literal or the list that is the
   top-level initializer in a declaration.  */

static struct c_expr
c_parser_braced_init (c_parser *parser, tree type, bool nested_p)
{
  struct c_expr ret;
  struct obstack braced_init_obstack;
  location_t brace_loc = c_parser_peek_token (parser)->location;
  gcc_obstack_init (&braced_init_obstack);
  gcc_assert (c_parser_next_token_is (parser, CPP_OPEN_BRACE));
  c_parser_consume_token (parser);
  if (nested_p)
    push_init_level (0, &braced_init_obstack);
  else
    really_start_incremental_init (type);
  if (c_parser_next_token_is (parser, CPP_CLOSE_BRACE))
    {
      pedwarn (brace_loc, OPT_Wpedantic, "ISO C forbids empty initializer braces");
    }
  else
    {
      /* Parse a non-empty initializer list, possibly with a trailing
	 comma.  */
      while (true)
	{
	  c_parser_initelt (parser, &braced_init_obstack);
	  if (parser->error)
	    break;
	  if (c_parser_next_token_is (parser, CPP_COMMA))
	    c_parser_consume_token (parser);
	  else
	    break;
	  if (c_parser_next_token_is (parser, CPP_CLOSE_BRACE))
	    break;
	}
    }
  if (c_parser_next_token_is_not (parser, CPP_CLOSE_BRACE))
    {
      ret.value = error_mark_node;
      ret.original_code = ERROR_MARK;
      ret.original_type = NULL;
      c_parser_skip_until_found (parser, CPP_CLOSE_BRACE, "expected %<}%>");
      pop_init_level (0, &braced_init_obstack);
      obstack_free (&braced_init_obstack, NULL);
      return ret;
    }
  c_parser_consume_token (parser);
  ret = pop_init_level (0, &braced_init_obstack);
  obstack_free (&braced_init_obstack, NULL);
  return ret;
}

/* Parse a nested initializer, including designators.  */

static void
c_parser_initelt (c_parser *parser, struct obstack * braced_init_obstack)
{
  /* Parse any designator or designator list.  A single array
     designator may have the subsequent "=" omitted in GNU C, but a
     longer list or a structure member designator may not.  */
  if (c_parser_next_token_is (parser, CPP_NAME)
      && c_parser_peek_2nd_token (parser)->type == CPP_COLON)
    {
      /* Old-style structure member designator.  */
      set_init_label (c_parser_peek_token (parser)->value,
		      braced_init_obstack);
      /* Use the colon as the error location.  */
      pedwarn (c_parser_peek_2nd_token (parser)->location, OPT_Wpedantic,
	       "obsolete use of designated initializer with %<:%>");
      c_parser_consume_token (parser);
      c_parser_consume_token (parser);
    }
  else
    {
      /* des_seen is 0 if there have been no designators, 1 if there
	 has been a single array designator and 2 otherwise.  */
      int des_seen = 0;
      /* Location of a designator.  */
      location_t des_loc = UNKNOWN_LOCATION;  /* Quiet warning.  */
      while (c_parser_next_token_is (parser, CPP_OPEN_SQUARE)
	     || c_parser_next_token_is (parser, CPP_DOT))
	{
	  int des_prev = des_seen;
	  if (!des_seen)
	    des_loc = c_parser_peek_token (parser)->location;
	  if (des_seen < 2)
	    des_seen++;
	  if (c_parser_next_token_is (parser, CPP_DOT))
	    {
	      des_seen = 2;
	      c_parser_consume_token (parser);
	      if (c_parser_next_token_is (parser, CPP_NAME))
		{
		  set_init_label (c_parser_peek_token (parser)->value,
				  braced_init_obstack);
		  c_parser_consume_token (parser);
		}
	      else
		{
		  struct c_expr init;
		  init.value = error_mark_node;
		  init.original_code = ERROR_MARK;
		  init.original_type = NULL;
		  c_parser_error (parser, "expected identifier");
		  c_parser_skip_until_found (parser, CPP_COMMA, NULL);
		  process_init_element (init, false, braced_init_obstack);
		  return;
		}
	    }
	  else
	    {
	      tree first, second;
	      location_t ellipsis_loc = UNKNOWN_LOCATION;  /* Quiet warning.  */
	      /* ??? Following the old parser, [ objc-receiver
		 objc-message-args ] is accepted as an initializer,
		 being distinguished from a designator by what follows
		 the first assignment expression inside the square
		 brackets, but after a first array designator a
		 subsequent square bracket is for Objective-C taken to
		 start an expression, using the obsolete form of
		 designated initializer without '=', rather than
		 possibly being a second level of designation: in LALR
		 terms, the '[' is shifted rather than reducing
		 designator to designator-list.  */
	      if (des_prev == 1 && c_dialect_objc ())
		{
		  des_seen = des_prev;
		  break;
		}
	      if (des_prev == 0 && c_dialect_objc ())
		{
		  /* This might be an array designator or an
		     Objective-C message expression.  If the former,
		     continue parsing here; if the latter, parse the
		     remainder of the initializer given the starting
		     primary-expression.  ??? It might make sense to
		     distinguish when des_prev == 1 as well; see
		     previous comment.  */
		  tree rec, args;
		  struct c_expr mexpr;
		  c_parser_consume_token (parser);
		  if (c_parser_peek_token (parser)->type == CPP_NAME
		      && ((c_parser_peek_token (parser)->id_kind
			   == C_ID_TYPENAME)
			  || (c_parser_peek_token (parser)->id_kind
			      == C_ID_CLASSNAME)))
		    {
		      /* Type name receiver.  */
		      tree id = c_parser_peek_token (parser)->value;
		      c_parser_consume_token (parser);
		      rec = objc_get_class_reference (id);
		      goto parse_message_args;
		    }
		  first = c_parser_expr_no_commas (parser, NULL).value;
		  mark_exp_read (first);
		  if (c_parser_next_token_is (parser, CPP_ELLIPSIS)
		      || c_parser_next_token_is (parser, CPP_CLOSE_SQUARE))
		    goto array_desig_after_first;
		  /* Expression receiver.  So far only one part
		     without commas has been parsed; there might be
		     more of the expression.  */
		  rec = first;
		  while (c_parser_next_token_is (parser, CPP_COMMA))
		    {
		      struct c_expr next;
		      location_t comma_loc, exp_loc;
		      comma_loc = c_parser_peek_token (parser)->location;
		      c_parser_consume_token (parser);
		      exp_loc = c_parser_peek_token (parser)->location;
		      next = c_parser_expr_no_commas (parser, NULL);
		      next = convert_lvalue_to_rvalue (exp_loc, next,
						       true, true);
		      rec = build_compound_expr (comma_loc, rec, next.value);
		    }
		parse_message_args:
		  /* Now parse the objc-message-args.  */
		  args = c_parser_objc_message_args (parser);
		  c_parser_skip_until_found (parser, CPP_CLOSE_SQUARE,
					     "expected %<]%>");
		  mexpr.value
		    = objc_build_message_expr (rec, args);
		  mexpr.original_code = ERROR_MARK;
		  mexpr.original_type = NULL;
		  /* Now parse and process the remainder of the
		     initializer, starting with this message
		     expression as a primary-expression.  */
		  c_parser_initval (parser, &mexpr, braced_init_obstack);
		  return;
		}
	      c_parser_consume_token (parser);
	      first = c_parser_expr_no_commas (parser, NULL).value;
	      mark_exp_read (first);
	    array_desig_after_first:
	      if (c_parser_next_token_is (parser, CPP_ELLIPSIS))
		{
		  ellipsis_loc = c_parser_peek_token (parser)->location;
		  c_parser_consume_token (parser);
		  second = c_parser_expr_no_commas (parser, NULL).value;
		  mark_exp_read (second);
		}
	      else
		second = NULL_TREE;
	      if (c_parser_next_token_is (parser, CPP_CLOSE_SQUARE))
		{
		  c_parser_consume_token (parser);
		  set_init_index (first, second, braced_init_obstack);
		  if (second)
		    pedwarn (ellipsis_loc, OPT_Wpedantic,
			     "ISO C forbids specifying range of elements to initialize");
		}
	      else
		c_parser_skip_until_found (parser, CPP_CLOSE_SQUARE,
					   "expected %<]%>");
	    }
	}
      if (des_seen >= 1)
	{
	  if (c_parser_next_token_is (parser, CPP_EQ))
	    {
	      if (!flag_isoc99)
		pedwarn (des_loc, OPT_Wpedantic,
			 "ISO C90 forbids specifying subobject to initialize");
	      c_parser_consume_token (parser);
	    }
	  else
	    {
	      if (des_seen == 1)
		pedwarn (c_parser_peek_token (parser)->location, OPT_Wpedantic,
			 "obsolete use of designated initializer without %<=%>");
	      else
		{
		  struct c_expr init;
		  init.value = error_mark_node;
		  init.original_code = ERROR_MARK;
		  init.original_type = NULL;
		  c_parser_error (parser, "expected %<=%>");
		  c_parser_skip_until_found (parser, CPP_COMMA, NULL);
		  process_init_element (init, false, braced_init_obstack);
		  return;
		}
	    }
	}
    }
  c_parser_initval (parser, NULL, braced_init_obstack);
}

/* Parse a nested initializer; as c_parser_initializer but parses
   initializers within braced lists, after any designators have been
   applied.  If AFTER is not NULL then it is an Objective-C message
   expression which is the primary-expression starting the
   initializer.  */

static void
c_parser_initval (c_parser *parser, struct c_expr *after,
		  struct obstack * braced_init_obstack)
{
  struct c_expr init;
  gcc_assert (!after || c_dialect_objc ());
  if (c_parser_next_token_is (parser, CPP_OPEN_BRACE) && !after)
    init = c_parser_braced_init (parser, NULL_TREE, true);
  else
    {
      location_t loc = c_parser_peek_token (parser)->location;
      init = c_parser_expr_no_commas (parser, after);
      if (init.value != NULL_TREE
	  && TREE_CODE (init.value) != STRING_CST
	  && TREE_CODE (init.value) != COMPOUND_LITERAL_EXPR)
	init = convert_lvalue_to_rvalue (loc, init, true, true);
    }
  process_init_element (init, false, braced_init_obstack);
}

/* Parse a compound statement (possibly a function body) (C90 6.6.2,
   C99 6.8.2).

   compound-statement:
     { block-item-list[opt] }
     { label-declarations block-item-list }

   block-item-list:
     block-item
     block-item-list block-item

   block-item:
     nested-declaration
     statement

   nested-declaration:
     declaration

   GNU extensions:

   compound-statement:
     { label-declarations block-item-list }

   nested-declaration:
     __extension__ nested-declaration
     nested-function-definition

   label-declarations:
     label-declaration
     label-declarations label-declaration

   label-declaration:
     __label__ identifier-list ;

   Allowing the mixing of declarations and code is new in C99.  The
   GNU syntax also permits (not shown above) labels at the end of
   compound statements, which yield an error.  We don't allow labels
   on declarations; this might seem like a natural extension, but
   there would be a conflict between attributes on the label and
   prefix attributes on the declaration.  ??? The syntax follows the
   old parser in requiring something after label declarations.
   Although they are erroneous if the labels declared aren't defined,
   is it useful for the syntax to be this way?

   OpenMP:

   block-item:
     openmp-directive

   openmp-directive:
     barrier-directive
     flush-directive
     taskwait-directive
     taskyield-directive
     cancel-directive
     cancellation-point-directive  */

static tree
c_parser_compound_statement (c_parser *parser)
{
  tree stmt;
  location_t brace_loc;
  brace_loc = c_parser_peek_token (parser)->location;
  if (!c_parser_require (parser, CPP_OPEN_BRACE, "expected %<{%>"))
    {
      /* Ensure a scope is entered and left anyway to avoid confusion
	 if we have just prepared to enter a function body.  */
      stmt = c_begin_compound_stmt (true);
      c_end_compound_stmt (brace_loc, stmt, true);
      return error_mark_node;
    }
  stmt = c_begin_compound_stmt (true);
  c_parser_compound_statement_nostart (parser);

  /* If the compound stmt contains array notations, then we expand them.  */
  if (flag_enable_cilkplus && contains_array_notation_expr (stmt))
    stmt = expand_array_notation_exprs (stmt);
  return c_end_compound_stmt (brace_loc, stmt, true);
}

/* Parse a compound statement except for the opening brace.  This is
   used for parsing both compound statements and statement expressions
   (which follow different paths to handling the opening).  */

static void
c_parser_compound_statement_nostart (c_parser *parser)
{
  bool last_stmt = false;
  bool last_label = false;
  bool save_valid_for_pragma = valid_location_for_stdc_pragma_p ();
  location_t label_loc = UNKNOWN_LOCATION;  /* Quiet warning.  */
  if (c_parser_next_token_is (parser, CPP_CLOSE_BRACE))
    {
      c_parser_consume_token (parser);
      return;
    }
  mark_valid_location_for_stdc_pragma (true);
  if (c_parser_next_token_is_keyword (parser, RID_LABEL))
    {
      /* Read zero or more forward-declarations for labels that nested
	 functions can jump to.  */
      mark_valid_location_for_stdc_pragma (false);
      while (c_parser_next_token_is_keyword (parser, RID_LABEL))
	{
	  label_loc = c_parser_peek_token (parser)->location;
	  c_parser_consume_token (parser);
	  /* Any identifiers, including those declared as type names,
	     are OK here.  */
	  while (true)
	    {
	      tree label;
	      if (c_parser_next_token_is_not (parser, CPP_NAME))
		{
		  c_parser_error (parser, "expected identifier");
		  break;
		}
	      label
		= declare_label (c_parser_peek_token (parser)->value);
	      C_DECLARED_LABEL_FLAG (label) = 1;
	      add_stmt (build_stmt (label_loc, DECL_EXPR, label));
	      c_parser_consume_token (parser);
	      if (c_parser_next_token_is (parser, CPP_COMMA))
		c_parser_consume_token (parser);
	      else
		break;
	    }
	  c_parser_skip_until_found (parser, CPP_SEMICOLON, "expected %<;%>");
	}
      pedwarn (label_loc, OPT_Wpedantic, "ISO C forbids label declarations");
    }
  /* We must now have at least one statement, label or declaration.  */
  if (c_parser_next_token_is (parser, CPP_CLOSE_BRACE))
    {
      mark_valid_location_for_stdc_pragma (save_valid_for_pragma);
      c_parser_error (parser, "expected declaration or statement");
      c_parser_consume_token (parser);
      return;
    }
  while (c_parser_next_token_is_not (parser, CPP_CLOSE_BRACE))
    {
      location_t loc = c_parser_peek_token (parser)->location;
      if (c_parser_next_token_is_keyword (parser, RID_CASE)
	  || c_parser_next_token_is_keyword (parser, RID_DEFAULT)
	  || (c_parser_next_token_is (parser, CPP_NAME)
	      && c_parser_peek_2nd_token (parser)->type == CPP_COLON))
	{
	  if (c_parser_next_token_is_keyword (parser, RID_CASE))
	    label_loc = c_parser_peek_2nd_token (parser)->location;
	  else
	    label_loc = c_parser_peek_token (parser)->location;
	  last_label = true;
	  last_stmt = false;
	  mark_valid_location_for_stdc_pragma (false);
	  c_parser_label (parser);
	}
      else if (!last_label
	       && c_parser_next_tokens_start_declaration (parser))
	{
	  last_label = false;
	  mark_valid_location_for_stdc_pragma (false);
	  c_parser_declaration_or_fndef (parser, true, true, true, true,
					 true, NULL, vNULL);
	  if (last_stmt)
	    pedwarn_c90 (loc,
			 (pedantic && !flag_isoc99)
			 ? OPT_Wpedantic
			 : OPT_Wdeclaration_after_statement,
			 "ISO C90 forbids mixed declarations and code");
	  last_stmt = false;
	}
      else if (!last_label
	       && c_parser_next_token_is_keyword (parser, RID_EXTENSION))
	{
	  /* __extension__ can start a declaration, but is also an
	     unary operator that can start an expression.  Consume all
	     but the last of a possible series of __extension__ to
	     determine which.  */
	  while (c_parser_peek_2nd_token (parser)->type == CPP_KEYWORD
		 && (c_parser_peek_2nd_token (parser)->keyword
		     == RID_EXTENSION))
	    c_parser_consume_token (parser);
	  if (c_token_starts_declaration (c_parser_peek_2nd_token (parser)))
	    {
	      int ext;
	      ext = disable_extension_diagnostics ();
	      c_parser_consume_token (parser);
	      last_label = false;
	      mark_valid_location_for_stdc_pragma (false);
	      c_parser_declaration_or_fndef (parser, true, true, true, true,
					     true, NULL, vNULL);
	      /* Following the old parser, __extension__ does not
		 disable this diagnostic.  */
	      restore_extension_diagnostics (ext);
	      if (last_stmt)
		pedwarn_c90 (loc, (pedantic && !flag_isoc99)
			     ? OPT_Wpedantic
			     : OPT_Wdeclaration_after_statement,
			     "ISO C90 forbids mixed declarations and code");
	      last_stmt = false;
	    }
	  else
	    goto statement;
	}
      else if (c_parser_next_token_is (parser, CPP_PRAGMA))
	{
	  /* External pragmas, and some omp pragmas, are not associated
	     with regular c code, and so are not to be considered statements
	     syntactically.  This ensures that the user doesn't put them
	     places that would turn into syntax errors if the directive
	     were ignored.  */
	  if (c_parser_pragma (parser, pragma_compound))
	    last_label = false, last_stmt = true;
	}
      else if (c_parser_next_token_is (parser, CPP_EOF))
	{
	  mark_valid_location_for_stdc_pragma (save_valid_for_pragma);
	  c_parser_error (parser, "expected declaration or statement");
	  return;
	}
      else if (c_parser_next_token_is_keyword (parser, RID_ELSE))
        {
          if (parser->in_if_block)
            {
	      mark_valid_location_for_stdc_pragma (save_valid_for_pragma);
              error_at (loc, """expected %<}%> before %<else%>");
              return;
            }
          else
            {
              error_at (loc, "%<else%> without a previous %<if%>");
              c_parser_consume_token (parser);
              continue;
            }
        }
      else
	{
	statement:
	  last_label = false;
	  last_stmt = true;
	  mark_valid_location_for_stdc_pragma (false);
	  c_parser_statement_after_labels (parser);
	}

      parser->error = false;
    }
  if (last_label)
    error_at (label_loc, "label at end of compound statement");
  c_parser_consume_token (parser);
  /* Restore the value we started with.  */
  mark_valid_location_for_stdc_pragma (save_valid_for_pragma);
}

/* Parse a label (C90 6.6.1, C99 6.8.1).

   label:
     identifier : attributes[opt]
     case constant-expression :
     default :

   GNU extensions:

   label:
     case constant-expression ... constant-expression :

   The use of attributes on labels is a GNU extension.  The syntax in
   GNU C accepts any expressions without commas, non-constant
   expressions being rejected later.  */

static void
c_parser_label (c_parser *parser)
{
  location_t loc1 = c_parser_peek_token (parser)->location;
  tree label = NULL_TREE;
  if (c_parser_next_token_is_keyword (parser, RID_CASE))
    {
      tree exp1, exp2;
      c_parser_consume_token (parser);
      exp1 = c_parser_expr_no_commas (parser, NULL).value;
      if (c_parser_next_token_is (parser, CPP_COLON))
	{
	  c_parser_consume_token (parser);
	  label = do_case (loc1, exp1, NULL_TREE);
	}
      else if (c_parser_next_token_is (parser, CPP_ELLIPSIS))
	{
	  c_parser_consume_token (parser);
	  exp2 = c_parser_expr_no_commas (parser, NULL).value;
	  if (c_parser_require (parser, CPP_COLON, "expected %<:%>"))
	    label = do_case (loc1, exp1, exp2);
	}
      else
	c_parser_error (parser, "expected %<:%> or %<...%>");
    }
  else if (c_parser_next_token_is_keyword (parser, RID_DEFAULT))
    {
      c_parser_consume_token (parser);
      if (c_parser_require (parser, CPP_COLON, "expected %<:%>"))
	label = do_case (loc1, NULL_TREE, NULL_TREE);
    }
  else
    {
      tree name = c_parser_peek_token (parser)->value;
      tree tlab;
      tree attrs;
      location_t loc2 = c_parser_peek_token (parser)->location;
      gcc_assert (c_parser_next_token_is (parser, CPP_NAME));
      c_parser_consume_token (parser);
      gcc_assert (c_parser_next_token_is (parser, CPP_COLON));
      c_parser_consume_token (parser);
      attrs = c_parser_attributes (parser);
      tlab = define_label (loc2, name);
      if (tlab)
	{
	  decl_attributes (&tlab, attrs, 0);
	  label = add_stmt (build_stmt (loc1, LABEL_EXPR, tlab));
	}
    }
  if (label)
    {
      if (c_parser_next_tokens_start_declaration (parser))
	{
	  error_at (c_parser_peek_token (parser)->location,
		    "a label can only be part of a statement and "
		    "a declaration is not a statement");
	  c_parser_declaration_or_fndef (parser, /*fndef_ok*/ false,
					 /*static_assert_ok*/ true,
					 /*empty_ok*/ true, /*nested*/ true,
					 /*start_attr_ok*/ true, NULL,
					 vNULL);
	}
    }
}

/* Parse a statement (C90 6.6, C99 6.8).

   statement:
     labeled-statement
     compound-statement
     expression-statement
     selection-statement
     iteration-statement
     jump-statement

   labeled-statement:
     label statement

   expression-statement:
     expression[opt] ;

   selection-statement:
     if-statement
     switch-statement

   iteration-statement:
     while-statement
     do-statement
     for-statement

   jump-statement:
     goto identifier ;
     continue ;
     break ;
     return expression[opt] ;

   GNU extensions:

   statement:
     asm-statement

   jump-statement:
     goto * expression ;

   Objective-C:

   statement:
     objc-throw-statement
     objc-try-catch-statement
     objc-synchronized-statement

   objc-throw-statement:
     @throw expression ;
     @throw ;

   OpenMP:

   statement:
     openmp-construct

   openmp-construct:
     parallel-construct
     for-construct
     simd-construct
     for-simd-construct
     sections-construct
     single-construct
     parallel-for-construct
     parallel-for-simd-construct
     parallel-sections-construct
     master-construct
     critical-construct
     atomic-construct
     ordered-construct

   parallel-construct:
     parallel-directive structured-block

   for-construct:
     for-directive iteration-statement

   simd-construct:
     simd-directive iteration-statements

   for-simd-construct:
     for-simd-directive iteration-statements

   sections-construct:
     sections-directive section-scope

   single-construct:
     single-directive structured-block

   parallel-for-construct:
     parallel-for-directive iteration-statement

   parallel-for-simd-construct:
     parallel-for-simd-directive iteration-statement

   parallel-sections-construct:
     parallel-sections-directive section-scope

   master-construct:
     master-directive structured-block

   critical-construct:
     critical-directive structured-block

   atomic-construct:
     atomic-directive expression-statement

   ordered-construct:
     ordered-directive structured-block

   Transactional Memory:

   statement:
     transaction-statement
     transaction-cancel-statement
*/

static void
c_parser_statement (c_parser *parser)
{
  while (c_parser_next_token_is_keyword (parser, RID_CASE)
	 || c_parser_next_token_is_keyword (parser, RID_DEFAULT)
	 || (c_parser_next_token_is (parser, CPP_NAME)
	     && c_parser_peek_2nd_token (parser)->type == CPP_COLON))
    c_parser_label (parser);
  c_parser_statement_after_labels (parser);
}

/* Parse a statement, other than a labeled statement.  */

static void
c_parser_statement_after_labels (c_parser *parser)
{
  location_t loc = c_parser_peek_token (parser)->location;
  tree stmt = NULL_TREE;
  bool in_if_block = parser->in_if_block;
  parser->in_if_block = false;
  switch (c_parser_peek_token (parser)->type)
    {
    case CPP_OPEN_BRACE:
      add_stmt (c_parser_compound_statement (parser));
      break;
    case CPP_KEYWORD:
      switch (c_parser_peek_token (parser)->keyword)
	{
	case RID_IF:
	  c_parser_if_statement (parser);
	  break;
	case RID_SWITCH:
	  c_parser_switch_statement (parser);
	  break;
	case RID_WHILE:
	  c_parser_while_statement (parser, false);
	  break;
	case RID_DO:
	  c_parser_do_statement (parser, false);
	  break;
	case RID_FOR:
	  c_parser_for_statement (parser, false);
	  break;
	case RID_CILK_SYNC:
	  c_parser_consume_token (parser);
	  c_parser_skip_until_found (parser, CPP_SEMICOLON, "expected %<;%>");
	  if (!flag_enable_cilkplus) 
	    error_at (loc, "-fcilkplus must be enabled to use %<_Cilk_sync%>");
	  else 
	    add_stmt (build_cilk_sync ());
	  break;
	case RID_GOTO:
	  c_parser_consume_token (parser);
	  if (c_parser_next_token_is (parser, CPP_NAME))
	    {
	      stmt = c_finish_goto_label (loc,
					  c_parser_peek_token (parser)->value);
	      c_parser_consume_token (parser);
	    }
	  else if (c_parser_next_token_is (parser, CPP_MULT))
	    {
	      struct c_expr val;

	      c_parser_consume_token (parser);
	      val = c_parser_expression (parser);
	      val = convert_lvalue_to_rvalue (loc, val, false, true);
	      stmt = c_finish_goto_ptr (loc, val.value);
	    }
	  else
	    c_parser_error (parser, "expected identifier or %<*%>");
	  goto expect_semicolon;
	case RID_CONTINUE:
	  c_parser_consume_token (parser);
	  stmt = c_finish_bc_stmt (loc, &c_cont_label, false);
	  goto expect_semicolon;
	case RID_BREAK:
	  c_parser_consume_token (parser);
	  stmt = c_finish_bc_stmt (loc, &c_break_label, true);
	  goto expect_semicolon;
	case RID_RETURN:
	  c_parser_consume_token (parser);
	  if (c_parser_next_token_is (parser, CPP_SEMICOLON))
	    {
	      stmt = c_finish_return (loc, NULL_TREE, NULL_TREE);
	      c_parser_consume_token (parser);
	    }
	  else
	    {
	      struct c_expr expr = c_parser_expression_conv (parser);
	      mark_exp_read (expr.value);
	      stmt = c_finish_return (loc, expr.value, expr.original_type);
	      goto expect_semicolon;
	    }
	  break;
	case RID_ASM:
	  stmt = c_parser_asm_statement (parser);
	  break;
	case RID_TRANSACTION_ATOMIC:
	case RID_TRANSACTION_RELAXED:
	  stmt = c_parser_transaction (parser,
	      c_parser_peek_token (parser)->keyword);
	  break;
	case RID_TRANSACTION_CANCEL:
	  stmt = c_parser_transaction_cancel (parser);
	  goto expect_semicolon;
	case RID_AT_THROW:
	  gcc_assert (c_dialect_objc ());
	  c_parser_consume_token (parser);
	  if (c_parser_next_token_is (parser, CPP_SEMICOLON))
	    {
	      stmt = objc_build_throw_stmt (loc, NULL_TREE);
	      c_parser_consume_token (parser);
	    }
	  else
	    {
	      struct c_expr expr = c_parser_expression (parser);
	      expr = convert_lvalue_to_rvalue (loc, expr, false, false);
	      expr.value = c_fully_fold (expr.value, false, NULL);
	      stmt = objc_build_throw_stmt (loc, expr.value);
	      goto expect_semicolon;
	    }
	  break;
	case RID_AT_TRY:
	  gcc_assert (c_dialect_objc ());
	  c_parser_objc_try_catch_finally_statement (parser);
	  break;
	case RID_AT_SYNCHRONIZED:
	  gcc_assert (c_dialect_objc ());
	  c_parser_objc_synchronized_statement (parser);
	  break;
	default:
	  goto expr_stmt;
	}
      break;
    case CPP_SEMICOLON:
      c_parser_consume_token (parser);
      break;
    case CPP_CLOSE_PAREN:
    case CPP_CLOSE_SQUARE:
      /* Avoid infinite loop in error recovery:
	 c_parser_skip_until_found stops at a closing nesting
	 delimiter without consuming it, but here we need to consume
	 it to proceed further.  */
      c_parser_error (parser, "expected statement");
      c_parser_consume_token (parser);
      break;
    case CPP_PRAGMA:
      c_parser_pragma (parser, pragma_stmt);
      break;
    default:
    expr_stmt:
      stmt = c_finish_expr_stmt (loc, c_parser_expression_conv (parser).value);
    expect_semicolon:
      c_parser_skip_until_found (parser, CPP_SEMICOLON, "expected %<;%>");
      break;
    }
  /* Two cases cannot and do not have line numbers associated: If stmt
     is degenerate, such as "2;", then stmt is an INTEGER_CST, which
     cannot hold line numbers.  But that's OK because the statement
     will either be changed to a MODIFY_EXPR during gimplification of
     the statement expr, or discarded.  If stmt was compound, but
     without new variables, we will have skipped the creation of a
     BIND and will have a bare STATEMENT_LIST.  But that's OK because
     (recursively) all of the component statements should already have
     line numbers assigned.  ??? Can we discard no-op statements
     earlier?  */
  if (CAN_HAVE_LOCATION_P (stmt)
      && EXPR_LOCATION (stmt) == UNKNOWN_LOCATION)
    SET_EXPR_LOCATION (stmt, loc);

  parser->in_if_block = in_if_block;
}

/* Parse the condition from an if, do, while or for statements.  */

static tree
c_parser_condition (c_parser *parser)
{
  location_t loc = c_parser_peek_token (parser)->location;
  tree cond;
  cond = c_parser_expression_conv (parser).value;
  cond = c_objc_common_truthvalue_conversion (loc, cond);
  cond = c_fully_fold (cond, false, NULL);
  if (warn_sequence_point)
    verify_sequence_points (cond);
  return cond;
}

/* Parse a parenthesized condition from an if, do or while statement.

   condition:
     ( expression )
*/
static tree
c_parser_paren_condition (c_parser *parser)
{
  tree cond;
  if (!c_parser_require (parser, CPP_OPEN_PAREN, "expected %<(%>"))
    return error_mark_node;
  cond = c_parser_condition (parser);
  c_parser_skip_until_found (parser, CPP_CLOSE_PAREN, "expected %<)%>");
  return cond;
}

/* Parse a statement which is a block in C99.  */

static tree
c_parser_c99_block_statement (c_parser *parser)
{
  tree block = c_begin_compound_stmt (flag_isoc99);
  location_t loc = c_parser_peek_token (parser)->location;
  c_parser_statement (parser);
  return c_end_compound_stmt (loc, block, flag_isoc99);
}

/* Parse the body of an if statement.  This is just parsing a
   statement but (a) it is a block in C99, (b) we track whether the
   body is an if statement for the sake of -Wparentheses warnings, (c)
   we handle an empty body specially for the sake of -Wempty-body
   warnings, and (d) we call parser_compound_statement directly
   because c_parser_statement_after_labels resets
   parser->in_if_block.  */

static tree
c_parser_if_body (c_parser *parser, bool *if_p)
{
  tree block = c_begin_compound_stmt (flag_isoc99);
  location_t body_loc = c_parser_peek_token (parser)->location;
  while (c_parser_next_token_is_keyword (parser, RID_CASE)
	 || c_parser_next_token_is_keyword (parser, RID_DEFAULT)
	 || (c_parser_next_token_is (parser, CPP_NAME)
	     && c_parser_peek_2nd_token (parser)->type == CPP_COLON))
    c_parser_label (parser);
  *if_p = c_parser_next_token_is_keyword (parser, RID_IF);
  if (c_parser_next_token_is (parser, CPP_SEMICOLON))
    {
      location_t loc = c_parser_peek_token (parser)->location;
      add_stmt (build_empty_stmt (loc));
      c_parser_consume_token (parser);
      if (!c_parser_next_token_is_keyword (parser, RID_ELSE))
	warning_at (loc, OPT_Wempty_body,
		    "suggest braces around empty body in an %<if%> statement");
    }
  else if (c_parser_next_token_is (parser, CPP_OPEN_BRACE))
    add_stmt (c_parser_compound_statement (parser));
  else
    c_parser_statement_after_labels (parser);
  return c_end_compound_stmt (body_loc, block, flag_isoc99);
}

/* Parse the else body of an if statement.  This is just parsing a
   statement but (a) it is a block in C99, (b) we handle an empty body
   specially for the sake of -Wempty-body warnings.  */

static tree
c_parser_else_body (c_parser *parser)
{
  location_t else_loc = c_parser_peek_token (parser)->location;
  tree block = c_begin_compound_stmt (flag_isoc99);
  while (c_parser_next_token_is_keyword (parser, RID_CASE)
	 || c_parser_next_token_is_keyword (parser, RID_DEFAULT)
	 || (c_parser_next_token_is (parser, CPP_NAME)
	     && c_parser_peek_2nd_token (parser)->type == CPP_COLON))
    c_parser_label (parser);
  if (c_parser_next_token_is (parser, CPP_SEMICOLON))
    {
      location_t loc = c_parser_peek_token (parser)->location;
      warning_at (loc,
		  OPT_Wempty_body,
	         "suggest braces around empty body in an %<else%> statement");
      add_stmt (build_empty_stmt (loc));
      c_parser_consume_token (parser);
    }
  else
    c_parser_statement_after_labels (parser);
  return c_end_compound_stmt (else_loc, block, flag_isoc99);
}

/* Parse an if statement (C90 6.6.4, C99 6.8.4).

   if-statement:
     if ( expression ) statement
     if ( expression ) statement else statement
*/

static void
c_parser_if_statement (c_parser *parser)
{
  tree block;
  location_t loc;
  tree cond;
  bool first_if = false;
  tree first_body, second_body;
  bool in_if_block;
  tree if_stmt;

  gcc_assert (c_parser_next_token_is_keyword (parser, RID_IF));
  c_parser_consume_token (parser);
  block = c_begin_compound_stmt (flag_isoc99);
  loc = c_parser_peek_token (parser)->location;
  cond = c_parser_paren_condition (parser);
  in_if_block = parser->in_if_block;
  parser->in_if_block = true;
  first_body = c_parser_if_body (parser, &first_if);
  parser->in_if_block = in_if_block;
  if (c_parser_next_token_is_keyword (parser, RID_ELSE))
    {
      c_parser_consume_token (parser);
      second_body = c_parser_else_body (parser);
    }
  else
    second_body = NULL_TREE;
  c_finish_if_stmt (loc, cond, first_body, second_body, first_if);
  if_stmt = c_end_compound_stmt (loc, block, flag_isoc99);

  /* If the if statement contains array notations, then we expand them.  */
  if (flag_enable_cilkplus && contains_array_notation_expr (if_stmt))
    if_stmt = fix_conditional_array_notations (if_stmt);
  add_stmt (if_stmt);
}

/* Parse a switch statement (C90 6.6.4, C99 6.8.4).

   switch-statement:
     switch (expression) statement
*/

static void
c_parser_switch_statement (c_parser *parser)
{
  struct c_expr ce;
  tree block, expr, body, save_break;
  location_t switch_loc = c_parser_peek_token (parser)->location;
  location_t switch_cond_loc;
  gcc_assert (c_parser_next_token_is_keyword (parser, RID_SWITCH));
  c_parser_consume_token (parser);
  block = c_begin_compound_stmt (flag_isoc99);
  if (c_parser_require (parser, CPP_OPEN_PAREN, "expected %<(%>"))
    {
      switch_cond_loc = c_parser_peek_token (parser)->location;
      ce = c_parser_expression (parser);
      ce = convert_lvalue_to_rvalue (switch_cond_loc, ce, true, false);
      expr = ce.value;
      if (flag_enable_cilkplus && contains_array_notation_expr (expr))
	{
	  error_at (switch_cond_loc,
		    "array notations cannot be used as a condition for switch "
		    "statement");
	  expr = error_mark_node;
	}
      c_parser_skip_until_found (parser, CPP_CLOSE_PAREN, "expected %<)%>");
    }
  else
    {
      switch_cond_loc = UNKNOWN_LOCATION;
      expr = error_mark_node;
    }
  c_start_case (switch_loc, switch_cond_loc, expr);
  save_break = c_break_label;
  c_break_label = NULL_TREE;
  body = c_parser_c99_block_statement (parser);
  c_finish_case (body);
  if (c_break_label)
    {
      location_t here = c_parser_peek_token (parser)->location;
      tree t = build1 (LABEL_EXPR, void_type_node, c_break_label);
      SET_EXPR_LOCATION (t, here);
      add_stmt (t);
    }
  c_break_label = save_break;
  add_stmt (c_end_compound_stmt (switch_loc, block, flag_isoc99));
}

/* Parse a while statement (C90 6.6.5, C99 6.8.5).

   while-statement:
      while (expression) statement
*/

static void
c_parser_while_statement (c_parser *parser, bool ivdep)
{
  tree block, cond, body, save_break, save_cont;
  location_t loc;
  gcc_assert (c_parser_next_token_is_keyword (parser, RID_WHILE));
  c_parser_consume_token (parser);
  block = c_begin_compound_stmt (flag_isoc99);
  loc = c_parser_peek_token (parser)->location;
  cond = c_parser_paren_condition (parser);
  if (flag_enable_cilkplus && contains_array_notation_expr (cond))
    {
      error_at (loc, "array notations cannot be used as a condition for while "
		"statement");
      cond = error_mark_node;
    }

  if (ivdep && cond != error_mark_node)
    cond = build2 (ANNOTATE_EXPR, TREE_TYPE (cond), cond,
		   build_int_cst (integer_type_node,
		   annot_expr_ivdep_kind));
  save_break = c_break_label;
  c_break_label = NULL_TREE;
  save_cont = c_cont_label;
  c_cont_label = NULL_TREE;
  body = c_parser_c99_block_statement (parser);
  c_finish_loop (loc, cond, NULL, body, c_break_label, c_cont_label, true);
  add_stmt (c_end_compound_stmt (loc, block, flag_isoc99));
  c_break_label = save_break;
  c_cont_label = save_cont;
}

/* Parse a do statement (C90 6.6.5, C99 6.8.5).

   do-statement:
     do statement while ( expression ) ;
*/

static void
c_parser_do_statement (c_parser *parser, bool ivdep)
{
  tree block, cond, body, save_break, save_cont, new_break, new_cont;
  location_t loc;
  gcc_assert (c_parser_next_token_is_keyword (parser, RID_DO));
  c_parser_consume_token (parser);
  if (c_parser_next_token_is (parser, CPP_SEMICOLON))
    warning_at (c_parser_peek_token (parser)->location,
		OPT_Wempty_body,
		"suggest braces around empty body in %<do%> statement");
  block = c_begin_compound_stmt (flag_isoc99);
  loc = c_parser_peek_token (parser)->location;
  save_break = c_break_label;
  c_break_label = NULL_TREE;
  save_cont = c_cont_label;
  c_cont_label = NULL_TREE;
  body = c_parser_c99_block_statement (parser);
  c_parser_require_keyword (parser, RID_WHILE, "expected %<while%>");
  new_break = c_break_label;
  c_break_label = save_break;
  new_cont = c_cont_label;
  c_cont_label = save_cont;
  cond = c_parser_paren_condition (parser);
  if (flag_enable_cilkplus && contains_array_notation_expr (cond))
    {
      error_at (loc, "array notations cannot be used as a condition for a "
		"do-while statement");
      cond = error_mark_node;
    }
  if (ivdep && cond != error_mark_node)
    cond = build2 (ANNOTATE_EXPR, TREE_TYPE (cond), cond,
		   build_int_cst (integer_type_node,
		   annot_expr_ivdep_kind));
  if (!c_parser_require (parser, CPP_SEMICOLON, "expected %<;%>"))
    c_parser_skip_to_end_of_block_or_statement (parser);
  c_finish_loop (loc, cond, NULL, body, new_break, new_cont, false);
  add_stmt (c_end_compound_stmt (loc, block, flag_isoc99));
}

/* Parse a for statement (C90 6.6.5, C99 6.8.5).

   for-statement:
     for ( expression[opt] ; expression[opt] ; expression[opt] ) statement
     for ( nested-declaration expression[opt] ; expression[opt] ) statement

   The form with a declaration is new in C99.

   ??? In accordance with the old parser, the declaration may be a
   nested function, which is then rejected in check_for_loop_decls,
   but does it make any sense for this to be included in the grammar?
   Note in particular that the nested function does not include a
   trailing ';', whereas the "declaration" production includes one.
   Also, can we reject bad declarations earlier and cheaper than
   check_for_loop_decls?

   In Objective-C, there are two additional variants:

   foreach-statement:
     for ( expression in expresssion ) statement
     for ( declaration in expression ) statement

   This is inconsistent with C, because the second variant is allowed
   even if c99 is not enabled.

   The rest of the comment documents these Objective-C foreach-statement.

   Here is the canonical example of the first variant:
    for (object in array)    { do something with object }
   we call the first expression ("object") the "object_expression" and 
   the second expression ("array") the "collection_expression".
   object_expression must be an lvalue of type "id" (a generic Objective-C
   object) because the loop works by assigning to object_expression the
   various objects from the collection_expression.  collection_expression
   must evaluate to something of type "id" which responds to the method
   countByEnumeratingWithState:objects:count:.

   The canonical example of the second variant is:
    for (id object in array)    { do something with object }
   which is completely equivalent to
    {
      id object;
      for (object in array) { do something with object }
    }
   Note that initizializing 'object' in some way (eg, "for ((object =
   xxx) in array) { do something with object }") is possibly
   technically valid, but completely pointless as 'object' will be
   assigned to something else as soon as the loop starts.  We should
   most likely reject it (TODO).

   The beginning of the Objective-C foreach-statement looks exactly
   like the beginning of the for-statement, and we can tell it is a
   foreach-statement only because the initial declaration or
   expression is terminated by 'in' instead of ';'.
*/

static void
c_parser_for_statement (c_parser *parser, bool ivdep)
{
  tree block, cond, incr, save_break, save_cont, body;
  /* The following are only used when parsing an ObjC foreach statement.  */
  tree object_expression;
  /* Silence the bogus uninitialized warning.  */
  tree collection_expression = NULL;
  location_t loc = c_parser_peek_token (parser)->location;
  location_t for_loc = c_parser_peek_token (parser)->location;
  bool is_foreach_statement = false;
  gcc_assert (c_parser_next_token_is_keyword (parser, RID_FOR));
  c_parser_consume_token (parser);
  /* Open a compound statement in Objective-C as well, just in case this is
     as foreach expression.  */
  block = c_begin_compound_stmt (flag_isoc99 || c_dialect_objc ());
  cond = error_mark_node;
  incr = error_mark_node;
  if (c_parser_require (parser, CPP_OPEN_PAREN, "expected %<(%>"))
    {
      /* Parse the initialization declaration or expression.  */
      object_expression = error_mark_node;
      parser->objc_could_be_foreach_context = c_dialect_objc ();
      if (c_parser_next_token_is (parser, CPP_SEMICOLON))
	{
	  parser->objc_could_be_foreach_context = false;
	  c_parser_consume_token (parser);
	  c_finish_expr_stmt (loc, NULL_TREE);
	}
      else if (c_parser_next_tokens_start_declaration (parser))
	{
	  c_parser_declaration_or_fndef (parser, true, true, true, true, true, 
					 &object_expression, vNULL);
	  parser->objc_could_be_foreach_context = false;
	  
	  if (c_parser_next_token_is_keyword (parser, RID_IN))
	    {
	      c_parser_consume_token (parser);
	      is_foreach_statement = true;
	      if (check_for_loop_decls (for_loc, true) == NULL_TREE)
		c_parser_error (parser, "multiple iterating variables in fast enumeration");
	    }
	  else
	    check_for_loop_decls (for_loc, flag_isoc99);
	}
      else if (c_parser_next_token_is_keyword (parser, RID_EXTENSION))
	{
	  /* __extension__ can start a declaration, but is also an
	     unary operator that can start an expression.  Consume all
	     but the last of a possible series of __extension__ to
	     determine which.  */
	  while (c_parser_peek_2nd_token (parser)->type == CPP_KEYWORD
		 && (c_parser_peek_2nd_token (parser)->keyword
		     == RID_EXTENSION))
	    c_parser_consume_token (parser);
	  if (c_token_starts_declaration (c_parser_peek_2nd_token (parser)))
	    {
	      int ext;
	      ext = disable_extension_diagnostics ();
	      c_parser_consume_token (parser);
	      c_parser_declaration_or_fndef (parser, true, true, true, true,
					     true, &object_expression, vNULL);
	      parser->objc_could_be_foreach_context = false;
	      
	      restore_extension_diagnostics (ext);
	      if (c_parser_next_token_is_keyword (parser, RID_IN))
		{
		  c_parser_consume_token (parser);
		  is_foreach_statement = true;
		  if (check_for_loop_decls (for_loc, true) == NULL_TREE)
		    c_parser_error (parser, "multiple iterating variables in fast enumeration");
		}
	      else
		check_for_loop_decls (for_loc, flag_isoc99);
	    }
	  else
	    goto init_expr;
	}
      else
	{
	init_expr:
	  {
	    struct c_expr ce;
	    tree init_expression;
	    ce = c_parser_expression (parser);
	    init_expression = ce.value;
	    parser->objc_could_be_foreach_context = false;
	    if (c_parser_next_token_is_keyword (parser, RID_IN))
	      {
		c_parser_consume_token (parser);
		is_foreach_statement = true;
		if (! lvalue_p (init_expression))
		  c_parser_error (parser, "invalid iterating variable in fast enumeration");
		object_expression = c_fully_fold (init_expression, false, NULL);
	      }
	    else
	      {
		ce = convert_lvalue_to_rvalue (loc, ce, true, false);
		init_expression = ce.value;
		c_finish_expr_stmt (loc, init_expression);
		c_parser_skip_until_found (parser, CPP_SEMICOLON, "expected %<;%>");
	      }
	  }
	}
      /* Parse the loop condition.  In the case of a foreach
	 statement, there is no loop condition.  */
      gcc_assert (!parser->objc_could_be_foreach_context);
      if (!is_foreach_statement)
	{
	  if (c_parser_next_token_is (parser, CPP_SEMICOLON))
	    {
	      if (ivdep)
		{
		  c_parser_error (parser, "missing loop condition in loop with "
				  "%<GCC ivdep%> pragma");
		  cond = error_mark_node;
		}
	      else
		{
		  c_parser_consume_token (parser);
		  cond = NULL_TREE;
		}
	    }
	  else
	    {
	      cond = c_parser_condition (parser);
	      if (flag_enable_cilkplus && contains_array_notation_expr (cond))
		{
		  error_at (loc, "array notations cannot be used in a "
			    "condition for a for-loop");
		  cond = error_mark_node;
		}
	      c_parser_skip_until_found (parser, CPP_SEMICOLON,
					 "expected %<;%>");
	    }
	  if (ivdep && cond != error_mark_node)
	    cond = build2 (ANNOTATE_EXPR, TREE_TYPE (cond), cond,
			   build_int_cst (integer_type_node,
			   annot_expr_ivdep_kind));
	}
      /* Parse the increment expression (the third expression in a
	 for-statement).  In the case of a foreach-statement, this is
	 the expression that follows the 'in'.  */
      if (c_parser_next_token_is (parser, CPP_CLOSE_PAREN))
	{
	  if (is_foreach_statement)
	    {
	      c_parser_error (parser, "missing collection in fast enumeration");
	      collection_expression = error_mark_node;
	    }
	  else
	    incr = c_process_expr_stmt (loc, NULL_TREE);
	}
      else
	{
	  if (is_foreach_statement)
	    collection_expression = c_fully_fold (c_parser_expression (parser).value,
						  false, NULL);
	  else
	    {
	      struct c_expr ce = c_parser_expression (parser);
	      ce = convert_lvalue_to_rvalue (loc, ce, true, false);
	      incr = c_process_expr_stmt (loc, ce.value);
	    }
	}
      c_parser_skip_until_found (parser, CPP_CLOSE_PAREN, "expected %<)%>");
    }
  save_break = c_break_label;
  c_break_label = NULL_TREE;
  save_cont = c_cont_label;
  c_cont_label = NULL_TREE;
  body = c_parser_c99_block_statement (parser);
  if (is_foreach_statement)
    objc_finish_foreach_loop (loc, object_expression, collection_expression, body, c_break_label, c_cont_label);
  else
    c_finish_loop (loc, cond, incr, body, c_break_label, c_cont_label, true);
  add_stmt (c_end_compound_stmt (loc, block, flag_isoc99 || c_dialect_objc ()));
  c_break_label = save_break;
  c_cont_label = save_cont;
}

/* Parse an asm statement, a GNU extension.  This is a full-blown asm
   statement with inputs, outputs, clobbers, and volatile tag
   allowed.

   asm-statement:
     asm type-qualifier[opt] ( asm-argument ) ;
     asm type-qualifier[opt] goto ( asm-goto-argument ) ;

   asm-argument:
     asm-string-literal
     asm-string-literal : asm-operands[opt]
     asm-string-literal : asm-operands[opt] : asm-operands[opt]
     asm-string-literal : asm-operands[opt] : asm-operands[opt] : asm-clobbers[opt]

   asm-goto-argument:
     asm-string-literal : : asm-operands[opt] : asm-clobbers[opt] \
       : asm-goto-operands

   Qualifiers other than volatile are accepted in the syntax but
   warned for.  */

static tree
c_parser_asm_statement (c_parser *parser)
{
  tree quals, str, outputs, inputs, clobbers, labels, ret;
  bool simple, is_goto;
  location_t asm_loc = c_parser_peek_token (parser)->location;
  int section, nsections;

  gcc_assert (c_parser_next_token_is_keyword (parser, RID_ASM));
  c_parser_consume_token (parser);
  if (c_parser_next_token_is_keyword (parser, RID_VOLATILE))
    {
      quals = c_parser_peek_token (parser)->value;
      c_parser_consume_token (parser);
    }
  else if (c_parser_next_token_is_keyword (parser, RID_CONST)
	   || c_parser_next_token_is_keyword (parser, RID_RESTRICT))
    {
      warning_at (c_parser_peek_token (parser)->location,
		  0,
		  "%E qualifier ignored on asm",
		  c_parser_peek_token (parser)->value);
      quals = NULL_TREE;
      c_parser_consume_token (parser);
    }
  else
    quals = NULL_TREE;

  is_goto = false;
  if (c_parser_next_token_is_keyword (parser, RID_GOTO))
    {
      c_parser_consume_token (parser);
      is_goto = true;
    }

  /* ??? Follow the C++ parser rather than using the
     lex_untranslated_string kludge.  */
  parser->lex_untranslated_string = true;
  ret = NULL;

  if (!c_parser_require (parser, CPP_OPEN_PAREN, "expected %<(%>"))
    goto error;

  str = c_parser_asm_string_literal (parser);
  if (str == NULL_TREE)
    goto error_close_paren;

  simple = true;
  outputs = NULL_TREE;
  inputs = NULL_TREE;
  clobbers = NULL_TREE;
  labels = NULL_TREE;

  if (c_parser_next_token_is (parser, CPP_CLOSE_PAREN) && !is_goto)
    goto done_asm;

  /* Parse each colon-delimited section of operands.  */
  nsections = 3 + is_goto;
  for (section = 0; section < nsections; ++section)
    {
      if (!c_parser_require (parser, CPP_COLON,
			     is_goto
			     ? "expected %<:%>"
			     : "expected %<:%> or %<)%>"))
	goto error_close_paren;

      /* Once past any colon, we're no longer a simple asm.  */
      simple = false;

      if ((!c_parser_next_token_is (parser, CPP_COLON)
	   && !c_parser_next_token_is (parser, CPP_CLOSE_PAREN))
	  || section == 3)
	switch (section)
	  {
	  case 0:
	    /* For asm goto, we don't allow output operands, but reserve
	       the slot for a future extension that does allow them.  */
	    if (!is_goto)
	      outputs = c_parser_asm_operands (parser);
	    break;
	  case 1:
	    inputs = c_parser_asm_operands (parser);
	    break;
	  case 2:
	    clobbers = c_parser_asm_clobbers (parser);
	    break;
	  case 3:
	    labels = c_parser_asm_goto_operands (parser);
	    break;
	  default:
	    gcc_unreachable ();
	  }

      if (c_parser_next_token_is (parser, CPP_CLOSE_PAREN) && !is_goto)
	goto done_asm;
    }

 done_asm:
  if (!c_parser_require (parser, CPP_CLOSE_PAREN, "expected %<)%>"))
    {
      c_parser_skip_until_found (parser, CPP_CLOSE_PAREN, NULL);
      goto error;
    }

  if (!c_parser_require (parser, CPP_SEMICOLON, "expected %<;%>"))
    c_parser_skip_to_end_of_block_or_statement (parser);

  ret = build_asm_stmt (quals, build_asm_expr (asm_loc, str, outputs, inputs,
					       clobbers, labels, simple));

 error:
  parser->lex_untranslated_string = false;
  return ret;

 error_close_paren:
  c_parser_skip_until_found (parser, CPP_CLOSE_PAREN, NULL);
  goto error;
}

/* Parse asm operands, a GNU extension.

   asm-operands:
     asm-operand
     asm-operands , asm-operand

   asm-operand:
     asm-string-literal ( expression )
     [ identifier ] asm-string-literal ( expression )
*/

static tree
c_parser_asm_operands (c_parser *parser)
{
  tree list = NULL_TREE;
  while (true)
    {
      tree name, str;
      struct c_expr expr;
      if (c_parser_next_token_is (parser, CPP_OPEN_SQUARE))
	{
	  c_parser_consume_token (parser);
	  if (c_parser_next_token_is (parser, CPP_NAME))
	    {
	      tree id = c_parser_peek_token (parser)->value;
	      c_parser_consume_token (parser);
	      name = build_string (IDENTIFIER_LENGTH (id),
				   IDENTIFIER_POINTER (id));
	    }
	  else
	    {
	      c_parser_error (parser, "expected identifier");
	      c_parser_skip_until_found (parser, CPP_CLOSE_SQUARE, NULL);
	      return NULL_TREE;
	    }
	  c_parser_skip_until_found (parser, CPP_CLOSE_SQUARE,
				     "expected %<]%>");
	}
      else
	name = NULL_TREE;
      str = c_parser_asm_string_literal (parser);
      if (str == NULL_TREE)
	return NULL_TREE;
      parser->lex_untranslated_string = false;
      if (!c_parser_require (parser, CPP_OPEN_PAREN, "expected %<(%>"))
	{
	  parser->lex_untranslated_string = true;
	  return NULL_TREE;
	}
      expr = c_parser_expression (parser);
      mark_exp_read (expr.value);
      parser->lex_untranslated_string = true;
      if (!c_parser_require (parser, CPP_CLOSE_PAREN, "expected %<)%>"))
	{
	  c_parser_skip_until_found (parser, CPP_CLOSE_PAREN, NULL);
	  return NULL_TREE;
	}
      list = chainon (list, build_tree_list (build_tree_list (name, str),
					     expr.value));
      if (c_parser_next_token_is (parser, CPP_COMMA))
	c_parser_consume_token (parser);
      else
	break;
    }
  return list;
}

/* Parse asm clobbers, a GNU extension.

   asm-clobbers:
     asm-string-literal
     asm-clobbers , asm-string-literal
*/

static tree
c_parser_asm_clobbers (c_parser *parser)
{
  tree list = NULL_TREE;
  while (true)
    {
      tree str = c_parser_asm_string_literal (parser);
      if (str)
	list = tree_cons (NULL_TREE, str, list);
      else
	return NULL_TREE;
      if (c_parser_next_token_is (parser, CPP_COMMA))
	c_parser_consume_token (parser);
      else
	break;
    }
  return list;
}

/* Parse asm goto labels, a GNU extension.

   asm-goto-operands:
     identifier
     asm-goto-operands , identifier
*/

static tree
c_parser_asm_goto_operands (c_parser *parser)
{
  tree list = NULL_TREE;
  while (true)
    {
      tree name, label;

      if (c_parser_next_token_is (parser, CPP_NAME))
	{
	  c_token *tok = c_parser_peek_token (parser);
	  name = tok->value;
	  label = lookup_label_for_goto (tok->location, name);
	  c_parser_consume_token (parser);
	  TREE_USED (label) = 1;
	}
      else
	{
	  c_parser_error (parser, "expected identifier");
	  return NULL_TREE;
	}

      name = build_string (IDENTIFIER_LENGTH (name),
			   IDENTIFIER_POINTER (name));
      list = tree_cons (name, label, list);
      if (c_parser_next_token_is (parser, CPP_COMMA))
	c_parser_consume_token (parser);
      else
	return nreverse (list);
    }
}

/* Parse an expression other than a compound expression; that is, an
   assignment expression (C90 6.3.16, C99 6.5.16).  If AFTER is not
   NULL then it is an Objective-C message expression which is the
   primary-expression starting the expression as an initializer.

   assignment-expression:
     conditional-expression
     unary-expression assignment-operator assignment-expression

   assignment-operator: one of
     = *= /= %= += -= <<= >>= &= ^= |=

   In GNU C we accept any conditional expression on the LHS and
   diagnose the invalid lvalue rather than producing a syntax
   error.  */

static struct c_expr
c_parser_expr_no_commas (c_parser *parser, struct c_expr *after,
			 tree omp_atomic_lhs)
{
  struct c_expr lhs, rhs, ret;
  enum tree_code code;
  location_t op_location, exp_location;
  gcc_assert (!after || c_dialect_objc ());
  lhs = c_parser_conditional_expression (parser, after, omp_atomic_lhs);
  op_location = c_parser_peek_token (parser)->location;
  switch (c_parser_peek_token (parser)->type)
    {
    case CPP_EQ:
      code = NOP_EXPR;
      break;
    case CPP_MULT_EQ:
      code = MULT_EXPR;
      break;
    case CPP_DIV_EQ:
      code = TRUNC_DIV_EXPR;
      break;
    case CPP_MOD_EQ:
      code = TRUNC_MOD_EXPR;
      break;
    case CPP_PLUS_EQ:
      code = PLUS_EXPR;
      break;
    case CPP_MINUS_EQ:
      code = MINUS_EXPR;
      break;
    case CPP_LSHIFT_EQ:
      code = LSHIFT_EXPR;
      break;
    case CPP_RSHIFT_EQ:
      code = RSHIFT_EXPR;
      break;
    case CPP_AND_EQ:
      code = BIT_AND_EXPR;
      break;
    case CPP_XOR_EQ:
      code = BIT_XOR_EXPR;
      break;
    case CPP_OR_EQ:
      code = BIT_IOR_EXPR;
      break;
    default:
      return lhs;
    }
  c_parser_consume_token (parser);
  exp_location = c_parser_peek_token (parser)->location;
  rhs = c_parser_expr_no_commas (parser, NULL);
  rhs = convert_lvalue_to_rvalue (exp_location, rhs, true, true);
  
  ret.value = build_modify_expr (op_location, lhs.value, lhs.original_type,
				 code, exp_location, rhs.value,
				 rhs.original_type);
  if (code == NOP_EXPR)
    ret.original_code = MODIFY_EXPR;
  else
    {
      TREE_NO_WARNING (ret.value) = 1;
      ret.original_code = ERROR_MARK;
    }
  ret.original_type = NULL;
  return ret;
}

/* Parse a conditional expression (C90 6.3.15, C99 6.5.15).  If AFTER
   is not NULL then it is an Objective-C message expression which is
   the primary-expression starting the expression as an initializer.

   conditional-expression:
     logical-OR-expression
     logical-OR-expression ? expression : conditional-expression

   GNU extensions:

   conditional-expression:
     logical-OR-expression ? : conditional-expression
*/

static struct c_expr
c_parser_conditional_expression (c_parser *parser, struct c_expr *after,
				 tree omp_atomic_lhs)
{
  struct c_expr cond, exp1, exp2, ret;
  location_t cond_loc, colon_loc, middle_loc;

  gcc_assert (!after || c_dialect_objc ());

  cond = c_parser_binary_expression (parser, after, omp_atomic_lhs);

  if (c_parser_next_token_is_not (parser, CPP_QUERY))
    return cond;
  cond_loc = c_parser_peek_token (parser)->location;
  cond = convert_lvalue_to_rvalue (cond_loc, cond, true, true);
  c_parser_consume_token (parser);
  if (c_parser_next_token_is (parser, CPP_COLON))
    {
      tree eptype = NULL_TREE;

      middle_loc = c_parser_peek_token (parser)->location;
      pedwarn (middle_loc, OPT_Wpedantic, 
	       "ISO C forbids omitting the middle term of a ?: expression");
      warn_for_omitted_condop (middle_loc, cond.value);
      if (TREE_CODE (cond.value) == EXCESS_PRECISION_EXPR)
	{
	  eptype = TREE_TYPE (cond.value);
	  cond.value = TREE_OPERAND (cond.value, 0);
	}
      /* Make sure first operand is calculated only once.  */
      exp1.value = c_save_expr (default_conversion (cond.value));
      if (eptype)
	exp1.value = build1 (EXCESS_PRECISION_EXPR, eptype, exp1.value);
      exp1.original_type = NULL;
      cond.value = c_objc_common_truthvalue_conversion (cond_loc, exp1.value);
      c_inhibit_evaluation_warnings += cond.value == truthvalue_true_node;
    }
  else
    {
      cond.value
	= c_objc_common_truthvalue_conversion
	(cond_loc, default_conversion (cond.value));
      c_inhibit_evaluation_warnings += cond.value == truthvalue_false_node;
      exp1 = c_parser_expression_conv (parser);
      mark_exp_read (exp1.value);
      c_inhibit_evaluation_warnings +=
	((cond.value == truthvalue_true_node)
	 - (cond.value == truthvalue_false_node));
    }

  colon_loc = c_parser_peek_token (parser)->location;
  if (!c_parser_require (parser, CPP_COLON, "expected %<:%>"))
    {
      c_inhibit_evaluation_warnings -= cond.value == truthvalue_true_node;
      ret.value = error_mark_node;
      ret.original_code = ERROR_MARK;
      ret.original_type = NULL;
      return ret;
    }
  {
    location_t exp2_loc = c_parser_peek_token (parser)->location;
    exp2 = c_parser_conditional_expression (parser, NULL, NULL_TREE);
    exp2 = convert_lvalue_to_rvalue (exp2_loc, exp2, true, true);
  }
  c_inhibit_evaluation_warnings -= cond.value == truthvalue_true_node;
  ret.value = build_conditional_expr (colon_loc, cond.value,
				      cond.original_code == C_MAYBE_CONST_EXPR,
				      exp1.value, exp1.original_type,
				      exp2.value, exp2.original_type);
  ret.original_code = ERROR_MARK;
  if (exp1.value == error_mark_node || exp2.value == error_mark_node)
    ret.original_type = NULL;
  else
    {
      tree t1, t2;

      /* If both sides are enum type, the default conversion will have
	 made the type of the result be an integer type.  We want to
	 remember the enum types we started with.  */
      t1 = exp1.original_type ? exp1.original_type : TREE_TYPE (exp1.value);
      t2 = exp2.original_type ? exp2.original_type : TREE_TYPE (exp2.value);
      ret.original_type = ((t1 != error_mark_node
			    && t2 != error_mark_node
			    && (TYPE_MAIN_VARIANT (t1)
				== TYPE_MAIN_VARIANT (t2)))
			   ? t1
			   : NULL);
    }
  return ret;
}

/* Parse a binary expression; that is, a logical-OR-expression (C90
   6.3.5-6.3.14, C99 6.5.5-6.5.14).  If AFTER is not NULL then it is
   an Objective-C message expression which is the primary-expression
   starting the expression as an initializer.

   OMP_ATOMIC_LHS is NULL, unless parsing OpenMP #pragma omp atomic,
   when it should be the unfolded lhs.  In a valid OpenMP source,
   one of the operands of the toplevel binary expression must be equal
   to it.  In that case, just return a build2 created binary operation
   rather than result of parser_build_binary_op.

   multiplicative-expression:
     cast-expression
     multiplicative-expression * cast-expression
     multiplicative-expression / cast-expression
     multiplicative-expression % cast-expression

   additive-expression:
     multiplicative-expression
     additive-expression + multiplicative-expression
     additive-expression - multiplicative-expression

   shift-expression:
     additive-expression
     shift-expression << additive-expression
     shift-expression >> additive-expression

   relational-expression:
     shift-expression
     relational-expression < shift-expression
     relational-expression > shift-expression
     relational-expression <= shift-expression
     relational-expression >= shift-expression

   equality-expression:
     relational-expression
     equality-expression == relational-expression
     equality-expression != relational-expression

   AND-expression:
     equality-expression
     AND-expression & equality-expression

   exclusive-OR-expression:
     AND-expression
     exclusive-OR-expression ^ AND-expression

   inclusive-OR-expression:
     exclusive-OR-expression
     inclusive-OR-expression | exclusive-OR-expression

   logical-AND-expression:
     inclusive-OR-expression
     logical-AND-expression && inclusive-OR-expression

   logical-OR-expression:
     logical-AND-expression
     logical-OR-expression || logical-AND-expression
*/

static struct c_expr
c_parser_binary_expression (c_parser *parser, struct c_expr *after,
			    tree omp_atomic_lhs)
{
  /* A binary expression is parsed using operator-precedence parsing,
     with the operands being cast expressions.  All the binary
     operators are left-associative.  Thus a binary expression is of
     form:

     E0 op1 E1 op2 E2 ...

     which we represent on a stack.  On the stack, the precedence
     levels are strictly increasing.  When a new operator is
     encountered of higher precedence than that at the top of the
     stack, it is pushed; its LHS is the top expression, and its RHS
     is everything parsed until it is popped.  When a new operator is
     encountered with precedence less than or equal to that at the top
     of the stack, triples E[i-1] op[i] E[i] are popped and replaced
     by the result of the operation until the operator at the top of
     the stack has lower precedence than the new operator or there is
     only one element on the stack; then the top expression is the LHS
     of the new operator.  In the case of logical AND and OR
     expressions, we also need to adjust c_inhibit_evaluation_warnings
     as appropriate when the operators are pushed and popped.  */

  struct {
    /* The expression at this stack level.  */
    struct c_expr expr;
    /* The precedence of the operator on its left, PREC_NONE at the
       bottom of the stack.  */
    enum c_parser_prec prec;
    /* The operation on its left.  */
    enum tree_code op;
    /* The source location of this operation.  */
    location_t loc;
  } stack[NUM_PRECS];
  int sp;
  /* Location of the binary operator.  */
  location_t binary_loc = UNKNOWN_LOCATION;  /* Quiet warning.  */
#define POP								      \
  do {									      \
    switch (stack[sp].op)						      \
      {									      \
      case TRUTH_ANDIF_EXPR:						      \
	c_inhibit_evaluation_warnings -= (stack[sp - 1].expr.value	      \
					  == truthvalue_false_node);	      \
	break;								      \
      case TRUTH_ORIF_EXPR:						      \
	c_inhibit_evaluation_warnings -= (stack[sp - 1].expr.value	      \
					  == truthvalue_true_node);	      \
	break;								      \
      default:								      \
	break;								      \
      }									      \
    stack[sp - 1].expr							      \
      = convert_lvalue_to_rvalue (stack[sp - 1].loc,			      \
				  stack[sp - 1].expr, true, true);	      \
    stack[sp].expr							      \
      = convert_lvalue_to_rvalue (stack[sp].loc,			      \
				  stack[sp].expr, true, true);		      \
    if (__builtin_expect (omp_atomic_lhs != NULL_TREE, 0) && sp == 1	      \
	&& c_parser_peek_token (parser)->type == CPP_SEMICOLON		      \
	&& ((1 << stack[sp].prec)					      \
	    & (1 << (PREC_BITOR | PREC_BITXOR | PREC_BITAND | PREC_SHIFT      \
		     | PREC_ADD | PREC_MULT)))				      \
	&& stack[sp].op != TRUNC_MOD_EXPR				      \
	&& stack[0].expr.value != error_mark_node			      \
	&& stack[1].expr.value != error_mark_node			      \
	&& (c_tree_equal (stack[0].expr.value, omp_atomic_lhs)		      \
	    || c_tree_equal (stack[1].expr.value, omp_atomic_lhs)))	      \
      stack[0].expr.value						      \
	= build2 (stack[1].op, TREE_TYPE (stack[0].expr.value),		      \
		  stack[0].expr.value, stack[1].expr.value);		      \
    else								      \
      stack[sp - 1].expr = parser_build_binary_op (stack[sp].loc,	      \
						   stack[sp].op,	      \
						   stack[sp - 1].expr,	      \
						   stack[sp].expr);	      \
    sp--;								      \
  } while (0)
  gcc_assert (!after || c_dialect_objc ());
  stack[0].loc = c_parser_peek_token (parser)->location;
  stack[0].expr = c_parser_cast_expression (parser, after);
  stack[0].prec = PREC_NONE;
  sp = 0;
  while (true)
    {
      enum c_parser_prec oprec;
      enum tree_code ocode;
      if (parser->error)
	goto out;
      switch (c_parser_peek_token (parser)->type)
	{
	case CPP_MULT:
	  oprec = PREC_MULT;
	  ocode = MULT_EXPR;
	  break;
	case CPP_DIV:
	  oprec = PREC_MULT;
	  ocode = TRUNC_DIV_EXPR;
	  break;
	case CPP_MOD:
	  oprec = PREC_MULT;
	  ocode = TRUNC_MOD_EXPR;
	  break;
	case CPP_PLUS:
	  oprec = PREC_ADD;
	  ocode = PLUS_EXPR;
	  break;
	case CPP_MINUS:
	  oprec = PREC_ADD;
	  ocode = MINUS_EXPR;
	  break;
	case CPP_LSHIFT:
	  oprec = PREC_SHIFT;
	  ocode = LSHIFT_EXPR;
	  break;
	case CPP_RSHIFT:
	  oprec = PREC_SHIFT;
	  ocode = RSHIFT_EXPR;
	  break;
	case CPP_LESS:
	  oprec = PREC_REL;
	  ocode = LT_EXPR;
	  break;
	case CPP_GREATER:
	  oprec = PREC_REL;
	  ocode = GT_EXPR;
	  break;
	case CPP_LESS_EQ:
	  oprec = PREC_REL;
	  ocode = LE_EXPR;
	  break;
	case CPP_GREATER_EQ:
	  oprec = PREC_REL;
	  ocode = GE_EXPR;
	  break;
	case CPP_EQ_EQ:
	  oprec = PREC_EQ;
	  ocode = EQ_EXPR;
	  break;
	case CPP_NOT_EQ:
	  oprec = PREC_EQ;
	  ocode = NE_EXPR;
	  break;
	case CPP_AND:
	  oprec = PREC_BITAND;
	  ocode = BIT_AND_EXPR;
	  break;
	case CPP_XOR:
	  oprec = PREC_BITXOR;
	  ocode = BIT_XOR_EXPR;
	  break;
	case CPP_OR:
	  oprec = PREC_BITOR;
	  ocode = BIT_IOR_EXPR;
	  break;
	case CPP_AND_AND:
	  oprec = PREC_LOGAND;
	  ocode = TRUTH_ANDIF_EXPR;
	  break;
	case CPP_OR_OR:
	  oprec = PREC_LOGOR;
	  ocode = TRUTH_ORIF_EXPR;
	  break;
	default:
	  /* Not a binary operator, so end of the binary
	     expression.  */
	  goto out;
	}
      binary_loc = c_parser_peek_token (parser)->location;
      while (oprec <= stack[sp].prec)
	POP;
      c_parser_consume_token (parser);
      switch (ocode)
	{
	case TRUTH_ANDIF_EXPR:
	  stack[sp].expr
	    = convert_lvalue_to_rvalue (stack[sp].loc,
					stack[sp].expr, true, true);
	  stack[sp].expr.value = c_objc_common_truthvalue_conversion
	    (stack[sp].loc, default_conversion (stack[sp].expr.value));
	  c_inhibit_evaluation_warnings += (stack[sp].expr.value
					    == truthvalue_false_node);
	  break;
	case TRUTH_ORIF_EXPR:
	  stack[sp].expr
	    = convert_lvalue_to_rvalue (stack[sp].loc,
					stack[sp].expr, true, true);
	  stack[sp].expr.value = c_objc_common_truthvalue_conversion
	    (stack[sp].loc, default_conversion (stack[sp].expr.value));
	  c_inhibit_evaluation_warnings += (stack[sp].expr.value
					    == truthvalue_true_node);
	  break;
	default:
	  break;
	}
      sp++;
      stack[sp].loc = binary_loc;
      stack[sp].expr = c_parser_cast_expression (parser, NULL);
      stack[sp].prec = oprec;
      stack[sp].op = ocode;
      stack[sp].loc = binary_loc;
    }
 out:
  while (sp > 0)
    POP;
  return stack[0].expr;
#undef POP
}

/* Parse a cast expression (C90 6.3.4, C99 6.5.4).  If AFTER is not
   NULL then it is an Objective-C message expression which is the
   primary-expression starting the expression as an initializer.

   cast-expression:
     unary-expression
     ( type-name ) unary-expression
*/

static struct c_expr
c_parser_cast_expression (c_parser *parser, struct c_expr *after)
{
  location_t cast_loc = c_parser_peek_token (parser)->location;
  gcc_assert (!after || c_dialect_objc ());
  if (after)
    return c_parser_postfix_expression_after_primary (parser,
						      cast_loc, *after);
  /* If the expression begins with a parenthesized type name, it may
     be either a cast or a compound literal; we need to see whether
     the next character is '{' to tell the difference.  If not, it is
     an unary expression.  Full detection of unknown typenames here
     would require a 3-token lookahead.  */
  if (c_parser_next_token_is (parser, CPP_OPEN_PAREN)
      && c_token_starts_typename (c_parser_peek_2nd_token (parser)))
    {
      struct c_type_name *type_name;
      struct c_expr ret;
      struct c_expr expr;
      c_parser_consume_token (parser);
      type_name = c_parser_type_name (parser);
      c_parser_skip_until_found (parser, CPP_CLOSE_PAREN, "expected %<)%>");
      if (type_name == NULL)
	{
	  ret.value = error_mark_node;
	  ret.original_code = ERROR_MARK;
	  ret.original_type = NULL;
	  return ret;
	}

      /* Save casted types in the function's used types hash table.  */
      used_types_insert (type_name->specs->type);

      if (c_parser_next_token_is (parser, CPP_OPEN_BRACE))
	return c_parser_postfix_expression_after_paren_type (parser, type_name,
							     cast_loc);
      {
	location_t expr_loc = c_parser_peek_token (parser)->location;
	expr = c_parser_cast_expression (parser, NULL);
	expr = convert_lvalue_to_rvalue (expr_loc, expr, true, true);
      }
      ret.value = c_cast_expr (cast_loc, type_name, expr.value);
      ret.original_code = ERROR_MARK;
      ret.original_type = NULL;
      return ret;
    }
  else
    return c_parser_unary_expression (parser);
}

/* Parse an unary expression (C90 6.3.3, C99 6.5.3).

   unary-expression:
     postfix-expression
     ++ unary-expression
     -- unary-expression
     unary-operator cast-expression
     sizeof unary-expression
     sizeof ( type-name )

   unary-operator: one of
     & * + - ~ !

   GNU extensions:

   unary-expression:
     __alignof__ unary-expression
     __alignof__ ( type-name )
     && identifier

   (C11 permits _Alignof with type names only.)

   unary-operator: one of
     __extension__ __real__ __imag__

   Transactional Memory:

   unary-expression:
     transaction-expression

   In addition, the GNU syntax treats ++ and -- as unary operators, so
   they may be applied to cast expressions with errors for non-lvalues
   given later.  */

static struct c_expr
c_parser_unary_expression (c_parser *parser)
{
  int ext;
  struct c_expr ret, op;
  location_t op_loc = c_parser_peek_token (parser)->location;
  location_t exp_loc;
  ret.original_code = ERROR_MARK;
  ret.original_type = NULL;
  switch (c_parser_peek_token (parser)->type)
    {
    case CPP_PLUS_PLUS:
      c_parser_consume_token (parser);
      exp_loc = c_parser_peek_token (parser)->location;
      op = c_parser_cast_expression (parser, NULL);

      /* If there is array notations in op, we expand them.  */
      if (flag_enable_cilkplus && TREE_CODE (op.value) == ARRAY_NOTATION_REF)
	return fix_array_notation_expr (exp_loc, PREINCREMENT_EXPR, op);
      else
	{
	  op = default_function_array_read_conversion (exp_loc, op);
	  return parser_build_unary_op (op_loc, PREINCREMENT_EXPR, op);
	}
    case CPP_MINUS_MINUS:
      c_parser_consume_token (parser);
      exp_loc = c_parser_peek_token (parser)->location;
      op = c_parser_cast_expression (parser, NULL);
      
      /* If there is array notations in op, we expand them.  */
      if (flag_enable_cilkplus && TREE_CODE (op.value) == ARRAY_NOTATION_REF)
	return fix_array_notation_expr (exp_loc, PREDECREMENT_EXPR, op);
      else
	{
	  op = default_function_array_read_conversion (exp_loc, op);
	  return parser_build_unary_op (op_loc, PREDECREMENT_EXPR, op);
	}
    case CPP_AND:
      c_parser_consume_token (parser);
      op = c_parser_cast_expression (parser, NULL);
      mark_exp_read (op.value);
      return parser_build_unary_op (op_loc, ADDR_EXPR, op);
    case CPP_MULT:
      c_parser_consume_token (parser);
      exp_loc = c_parser_peek_token (parser)->location;
      op = c_parser_cast_expression (parser, NULL);
      op = convert_lvalue_to_rvalue (exp_loc, op, true, true);
      ret.value = build_indirect_ref (op_loc, op.value, RO_UNARY_STAR);
      return ret;
    case CPP_PLUS:
      if (!c_dialect_objc () && !in_system_header)
	warning_at (op_loc,
		    OPT_Wtraditional,
		    "traditional C rejects the unary plus operator");
      c_parser_consume_token (parser);
      exp_loc = c_parser_peek_token (parser)->location;
      op = c_parser_cast_expression (parser, NULL);
      op = convert_lvalue_to_rvalue (exp_loc, op, true, true);
      return parser_build_unary_op (op_loc, CONVERT_EXPR, op);
    case CPP_MINUS:
      c_parser_consume_token (parser);
      exp_loc = c_parser_peek_token (parser)->location;
      op = c_parser_cast_expression (parser, NULL);
      op = convert_lvalue_to_rvalue (exp_loc, op, true, true);
      return parser_build_unary_op (op_loc, NEGATE_EXPR, op);
    case CPP_COMPL:
      c_parser_consume_token (parser);
      exp_loc = c_parser_peek_token (parser)->location;
      op = c_parser_cast_expression (parser, NULL);
      op = convert_lvalue_to_rvalue (exp_loc, op, true, true);
      return parser_build_unary_op (op_loc, BIT_NOT_EXPR, op);
    case CPP_NOT:
      c_parser_consume_token (parser);
      exp_loc = c_parser_peek_token (parser)->location;
      op = c_parser_cast_expression (parser, NULL);
      op = convert_lvalue_to_rvalue (exp_loc, op, true, true);
      return parser_build_unary_op (op_loc, TRUTH_NOT_EXPR, op);
    case CPP_AND_AND:
      /* Refer to the address of a label as a pointer.  */
      c_parser_consume_token (parser);
      if (c_parser_next_token_is (parser, CPP_NAME))
	{
	  ret.value = finish_label_address_expr
	    (c_parser_peek_token (parser)->value, op_loc);
	  c_parser_consume_token (parser);
	}
      else
	{
	  c_parser_error (parser, "expected identifier");
	  ret.value = error_mark_node;
	}
	return ret;
    case CPP_KEYWORD:
      switch (c_parser_peek_token (parser)->keyword)
	{
	case RID_SIZEOF:
	  return c_parser_sizeof_expression (parser);
	case RID_ALIGNOF:
	  return c_parser_alignof_expression (parser);
	case RID_EXTENSION:
	  c_parser_consume_token (parser);
	  ext = disable_extension_diagnostics ();
	  ret = c_parser_cast_expression (parser, NULL);
	  restore_extension_diagnostics (ext);
	  return ret;
	case RID_REALPART:
	  c_parser_consume_token (parser);
	  exp_loc = c_parser_peek_token (parser)->location;
	  op = c_parser_cast_expression (parser, NULL);
	  op = default_function_array_conversion (exp_loc, op);
	  return parser_build_unary_op (op_loc, REALPART_EXPR, op);
	case RID_IMAGPART:
	  c_parser_consume_token (parser);
	  exp_loc = c_parser_peek_token (parser)->location;
	  op = c_parser_cast_expression (parser, NULL);
	  op = default_function_array_conversion (exp_loc, op);
	  return parser_build_unary_op (op_loc, IMAGPART_EXPR, op);
	case RID_TRANSACTION_ATOMIC:
	case RID_TRANSACTION_RELAXED:
	  return c_parser_transaction_expression (parser,
	      c_parser_peek_token (parser)->keyword);
	default:
	  return c_parser_postfix_expression (parser);
	}
    default:
      return c_parser_postfix_expression (parser);
    }
}

/* Parse a sizeof expression.  */

static struct c_expr
c_parser_sizeof_expression (c_parser *parser)
{
  struct c_expr expr;
  location_t expr_loc;
  gcc_assert (c_parser_next_token_is_keyword (parser, RID_SIZEOF));
  c_parser_consume_token (parser);
  c_inhibit_evaluation_warnings++;
  in_sizeof++;
  if (c_parser_next_token_is (parser, CPP_OPEN_PAREN)
      && c_token_starts_typename (c_parser_peek_2nd_token (parser)))
    {
      /* Either sizeof ( type-name ) or sizeof unary-expression
	 starting with a compound literal.  */
      struct c_type_name *type_name;
      c_parser_consume_token (parser);
      expr_loc = c_parser_peek_token (parser)->location;
      type_name = c_parser_type_name (parser);
      c_parser_skip_until_found (parser, CPP_CLOSE_PAREN, "expected %<)%>");
      if (type_name == NULL)
	{
	  struct c_expr ret;
	  c_inhibit_evaluation_warnings--;
	  in_sizeof--;
	  ret.value = error_mark_node;
	  ret.original_code = ERROR_MARK;
	  ret.original_type = NULL;
	  return ret;
	}
      if (c_parser_next_token_is (parser, CPP_OPEN_BRACE))
	{
	  expr = c_parser_postfix_expression_after_paren_type (parser,
							       type_name,
							       expr_loc);
	  goto sizeof_expr;
	}
      /* sizeof ( type-name ).  */
      c_inhibit_evaluation_warnings--;
      in_sizeof--;
      return c_expr_sizeof_type (expr_loc, type_name);
    }
  else
    {
      expr_loc = c_parser_peek_token (parser)->location;
      expr = c_parser_unary_expression (parser);
    sizeof_expr:
      c_inhibit_evaluation_warnings--;
      in_sizeof--;
      mark_exp_read (expr.value);
      if (TREE_CODE (expr.value) == COMPONENT_REF
	  && DECL_C_BIT_FIELD (TREE_OPERAND (expr.value, 1)))
	error_at (expr_loc, "%<sizeof%> applied to a bit-field");
      return c_expr_sizeof_expr (expr_loc, expr);
    }
}

/* Parse an alignof expression.  */

static struct c_expr
c_parser_alignof_expression (c_parser *parser)
{
  struct c_expr expr;
  location_t loc = c_parser_peek_token (parser)->location;
  tree alignof_spelling = c_parser_peek_token (parser)->value;
  gcc_assert (c_parser_next_token_is_keyword (parser, RID_ALIGNOF));
  /* A diagnostic is not required for the use of this identifier in
     the implementation namespace; only diagnose it for the C11
     spelling because of existing code using the other spellings.  */
  if (!flag_isoc11
      && strcmp (IDENTIFIER_POINTER (alignof_spelling), "_Alignof") == 0)
    {
      if (flag_isoc99)
	pedwarn (loc, OPT_Wpedantic, "ISO C99 does not support %qE",
		 alignof_spelling);
      else
	pedwarn (loc, OPT_Wpedantic, "ISO C90 does not support %qE",
		 alignof_spelling);
    }
  c_parser_consume_token (parser);
  c_inhibit_evaluation_warnings++;
  in_alignof++;
  if (c_parser_next_token_is (parser, CPP_OPEN_PAREN)
      && c_token_starts_typename (c_parser_peek_2nd_token (parser)))
    {
      /* Either __alignof__ ( type-name ) or __alignof__
	 unary-expression starting with a compound literal.  */
      location_t loc;
      struct c_type_name *type_name;
      struct c_expr ret;
      c_parser_consume_token (parser);
      loc = c_parser_peek_token (parser)->location;
      type_name = c_parser_type_name (parser);
      c_parser_skip_until_found (parser, CPP_CLOSE_PAREN, "expected %<)%>");
      if (type_name == NULL)
	{
	  struct c_expr ret;
	  c_inhibit_evaluation_warnings--;
	  in_alignof--;
	  ret.value = error_mark_node;
	  ret.original_code = ERROR_MARK;
	  ret.original_type = NULL;
	  return ret;
	}
      if (c_parser_next_token_is (parser, CPP_OPEN_BRACE))
	{
	  expr = c_parser_postfix_expression_after_paren_type (parser,
							       type_name,
							       loc);
	  goto alignof_expr;
	}
      /* alignof ( type-name ).  */
      c_inhibit_evaluation_warnings--;
      in_alignof--;
      ret.value = c_alignof (loc, groktypename (type_name, NULL, NULL));
      ret.original_code = ERROR_MARK;
      ret.original_type = NULL;
      return ret;
    }
  else
    {
      struct c_expr ret;
      expr = c_parser_unary_expression (parser);
    alignof_expr:
      mark_exp_read (expr.value);
      c_inhibit_evaluation_warnings--;
      in_alignof--;
      pedwarn (loc, OPT_Wpedantic, "ISO C does not allow %<%E (expression)%>",
	       alignof_spelling);
      ret.value = c_alignof_expr (loc, expr.value);
      ret.original_code = ERROR_MARK;
      ret.original_type = NULL;
      return ret;
    }
}

/* Helper function to read arguments of builtins which are interfaces
   for the middle-end nodes like COMPLEX_EXPR, VEC_PERM_EXPR and
   others.  The name of the builtin is passed using BNAME parameter.
   Function returns true if there were no errors while parsing and
   stores the arguments in CEXPR_LIST.  */
static bool
c_parser_get_builtin_args (c_parser *parser, const char *bname,
			   vec<c_expr_t, va_gc> **ret_cexpr_list,
			   bool choose_expr_p)
{
  location_t loc = c_parser_peek_token (parser)->location;
  vec<c_expr_t, va_gc> *cexpr_list;
  c_expr_t expr;
  bool saved_force_folding_builtin_constant_p;

  *ret_cexpr_list = NULL;
  if (c_parser_next_token_is_not (parser, CPP_OPEN_PAREN))
    {
      error_at (loc, "cannot take address of %qs", bname);
      return false;
    }

  c_parser_consume_token (parser);

  if (c_parser_next_token_is (parser, CPP_CLOSE_PAREN))
    {
      c_parser_consume_token (parser);
      return true;
    }

  saved_force_folding_builtin_constant_p
    = force_folding_builtin_constant_p;
  force_folding_builtin_constant_p |= choose_expr_p;
  expr = c_parser_expr_no_commas (parser, NULL);
  force_folding_builtin_constant_p
    = saved_force_folding_builtin_constant_p;
  vec_alloc (cexpr_list, 1);
  C_EXPR_APPEND (cexpr_list, expr);
  while (c_parser_next_token_is (parser, CPP_COMMA))
    {
      c_parser_consume_token (parser);
      expr = c_parser_expr_no_commas (parser, NULL);
      C_EXPR_APPEND (cexpr_list, expr);
    }

  if (!c_parser_require (parser, CPP_CLOSE_PAREN, "expected %<)%>"))
    return false;

  *ret_cexpr_list = cexpr_list;
  return true;
}

/* This represents a single generic-association.  */

struct c_generic_association
{
  /* The location of the starting token of the type.  */
  location_t type_location;
  /* The association's type, or NULL_TREE for 'default'.  */
  tree type;
  /* The association's expression.  */
  struct c_expr expression;
};

/* Parse a generic-selection.  (C11 6.5.1.1).
   
   generic-selection:
     _Generic ( assignment-expression , generic-assoc-list )
     
   generic-assoc-list:
     generic-association
     generic-assoc-list , generic-association
   
   generic-association:
     type-name : assignment-expression
     default : assignment-expression
*/

static struct c_expr
c_parser_generic_selection (c_parser *parser)
{
  vec<c_generic_association> associations = vNULL;
  struct c_expr selector, error_expr;
  tree selector_type;
  struct c_generic_association matched_assoc;
  bool match_found = false;
  location_t generic_loc, selector_loc;

  error_expr.original_code = ERROR_MARK;
  error_expr.original_type = NULL;
  error_expr.value = error_mark_node;
  matched_assoc.type_location = UNKNOWN_LOCATION;
  matched_assoc.type = NULL_TREE;
  matched_assoc.expression = error_expr;

  gcc_assert (c_parser_next_token_is_keyword (parser, RID_GENERIC));
  generic_loc = c_parser_peek_token (parser)->location;
  c_parser_consume_token (parser);
  if (!flag_isoc11)
    {
      if (flag_isoc99)
	pedwarn (generic_loc, OPT_Wpedantic,
		 "ISO C99 does not support %<_Generic%>");
      else
	pedwarn (generic_loc, OPT_Wpedantic,
		 "ISO C90 does not support %<_Generic%>");
    }

  if (!c_parser_require (parser, CPP_OPEN_PAREN, "expected %<(%>"))
    return error_expr;

  c_inhibit_evaluation_warnings++;
  selector_loc = c_parser_peek_token (parser)->location;
  selector = c_parser_expr_no_commas (parser, NULL);
  selector = default_function_array_conversion (selector_loc, selector);
  c_inhibit_evaluation_warnings--;

  if (selector.value == error_mark_node)
    {
      c_parser_skip_until_found (parser, CPP_CLOSE_PAREN, NULL);
      return selector;
    }
  selector_type = TREE_TYPE (selector.value);
  /* In ISO C terms, rvalues (including the controlling expression of
     _Generic) do not have qualified types.  */
  if (TREE_CODE (selector_type) != ARRAY_TYPE)
    selector_type = TYPE_MAIN_VARIANT (selector_type);
  /* In ISO C terms, _Noreturn is not part of the type of expressions
     such as &abort, but in GCC it is represented internally as a type
     qualifier.  */
  if (FUNCTION_POINTER_TYPE_P (selector_type)
      && TYPE_QUALS (TREE_TYPE (selector_type)) != TYPE_UNQUALIFIED)
    selector_type
      = build_pointer_type (TYPE_MAIN_VARIANT (TREE_TYPE (selector_type)));

  if (!c_parser_require (parser, CPP_COMMA, "expected %<,%>"))
    {
      c_parser_skip_until_found (parser, CPP_CLOSE_PAREN, NULL);
      return error_expr;
    }

  while (1)
    {
      struct c_generic_association assoc, *iter;
      unsigned int ix;
      c_token *token = c_parser_peek_token (parser);

      assoc.type_location = token->location;
      if (token->type == CPP_KEYWORD && token->keyword == RID_DEFAULT)
	{
	  c_parser_consume_token (parser);
	  assoc.type = NULL_TREE;
	}
      else
	{
	  struct c_type_name *type_name;

	  type_name = c_parser_type_name (parser);
	  if (type_name == NULL)
	    {
	      c_parser_skip_until_found (parser, CPP_CLOSE_PAREN, NULL);
	      goto error_exit;
	    }
	  assoc.type = groktypename (type_name, NULL, NULL);
	  if (assoc.type == error_mark_node)
	    {
	      c_parser_skip_until_found (parser, CPP_CLOSE_PAREN, NULL);
	      goto error_exit;
	    }

	  if (TREE_CODE (assoc.type) == FUNCTION_TYPE)
	    error_at (assoc.type_location,
		      "%<_Generic%> association has function type");
	  else if (!COMPLETE_TYPE_P (assoc.type))
	    error_at (assoc.type_location,
		      "%<_Generic%> association has incomplete type");

	  if (variably_modified_type_p (assoc.type, NULL_TREE))
	    error_at (assoc.type_location,
		      "%<_Generic%> association has "
		      "variable length type");
	}

      if (!c_parser_require (parser, CPP_COLON, "expected %<:%>"))
	{
	  c_parser_skip_until_found (parser, CPP_CLOSE_PAREN, NULL);
	  goto error_exit;
	}

      assoc.expression = c_parser_expr_no_commas (parser, NULL);
      if (assoc.expression.value == error_mark_node)
	{
	  c_parser_skip_until_found (parser, CPP_CLOSE_PAREN, NULL);
	  goto error_exit;
	}

      for (ix = 0; associations.iterate (ix, &iter); ++ix)
	{
	  if (assoc.type == NULL_TREE)
	    {
	      if (iter->type == NULL_TREE)
		{
		  error_at (assoc.type_location,
			    "duplicate %<default%> case in %<_Generic%>");
		  inform (iter->type_location, "original %<default%> is here");
		}
	    }
	  else if (iter->type != NULL_TREE)
	    {
	      if (comptypes (assoc.type, iter->type))
		{
		  error_at (assoc.type_location,
			    "%<_Generic%> specifies two compatible types");
		  inform (iter->type_location, "compatible type is here");
		}
	    }
	}

      if (assoc.type == NULL_TREE)
	{
	  if (!match_found)
	    {
	      matched_assoc = assoc;
	      match_found = true;
	    }
	}
      else if (comptypes (assoc.type, selector_type))
	{
	  if (!match_found || matched_assoc.type == NULL_TREE)
	    {
	      matched_assoc = assoc;
	      match_found = true;
	    }
	  else
	    {
	      error_at (assoc.type_location,
			"%<_Generic> selector matches multiple associations");
	      inform (matched_assoc.type_location,
		      "other match is here");
	    }
	}

      associations.safe_push (assoc);

      if (c_parser_peek_token (parser)->type != CPP_COMMA)
	break;
      c_parser_consume_token (parser);
    }

  associations.release ();

  if (!c_parser_require (parser, CPP_CLOSE_PAREN, "expected %<)%>"))
    {
      c_parser_skip_until_found (parser, CPP_CLOSE_PAREN, NULL);
      return error_expr;
    }

  if (!match_found)
    {
      error_at (selector_loc, "%<_Generic%> selector of type %qT is not "
		"compatible with any association",
		selector_type);
      return error_expr;
    }

  return matched_assoc.expression;

 error_exit:
  associations.release ();
  return error_expr;
}

/* Parse a postfix expression (C90 6.3.1-6.3.2, C99 6.5.1-6.5.2).

   postfix-expression:
     primary-expression
     postfix-expression [ expression ]
     postfix-expression ( argument-expression-list[opt] )
     postfix-expression . identifier
     postfix-expression -> identifier
     postfix-expression ++
     postfix-expression --
     ( type-name ) { initializer-list }
     ( type-name ) { initializer-list , }

   argument-expression-list:
     argument-expression
     argument-expression-list , argument-expression

   primary-expression:
     identifier
     constant
     string-literal
     ( expression )
     generic-selection

   GNU extensions:

   primary-expression:
     __func__
       (treated as a keyword in GNU C)
     __FUNCTION__
     __PRETTY_FUNCTION__
     ( compound-statement )
     __builtin_va_arg ( assignment-expression , type-name )
     __builtin_offsetof ( type-name , offsetof-member-designator )
     __builtin_choose_expr ( assignment-expression ,
			     assignment-expression ,
			     assignment-expression )
     __builtin_types_compatible_p ( type-name , type-name )
     __builtin_complex ( assignment-expression , assignment-expression )
     __builtin_shuffle ( assignment-expression , assignment-expression )
     __builtin_shuffle ( assignment-expression , 
			 assignment-expression ,
			 assignment-expression, )

   offsetof-member-designator:
     identifier
     offsetof-member-designator . identifier
     offsetof-member-designator [ expression ]

   Objective-C:

   primary-expression:
     [ objc-receiver objc-message-args ]
     @selector ( objc-selector-arg )
     @protocol ( identifier )
     @encode ( type-name )
     objc-string-literal
     Classname . identifier
*/

static struct c_expr
c_parser_postfix_expression (c_parser *parser)
{
  struct c_expr expr, e1;
  struct c_type_name *t1, *t2;
  location_t loc = c_parser_peek_token (parser)->location;;
  expr.original_code = ERROR_MARK;
  expr.original_type = NULL;
  switch (c_parser_peek_token (parser)->type)
    {
    case CPP_NUMBER:
      expr.value = c_parser_peek_token (parser)->value;
      loc = c_parser_peek_token (parser)->location;
      c_parser_consume_token (parser);
      if (TREE_CODE (expr.value) == FIXED_CST
	  && !targetm.fixed_point_supported_p ())
	{
	  error_at (loc, "fixed-point types not supported for this target");
	  expr.value = error_mark_node;
	}
      break;
    case CPP_CHAR:
    case CPP_CHAR16:
    case CPP_CHAR32:
    case CPP_WCHAR:
      expr.value = c_parser_peek_token (parser)->value;
      c_parser_consume_token (parser);
      break;
    case CPP_STRING:
    case CPP_STRING16:
    case CPP_STRING32:
    case CPP_WSTRING:
    case CPP_UTF8STRING:
      expr.value = c_parser_peek_token (parser)->value;
      expr.original_code = STRING_CST;
      c_parser_consume_token (parser);
      break;
    case CPP_OBJC_STRING:
      gcc_assert (c_dialect_objc ());
      expr.value
	= objc_build_string_object (c_parser_peek_token (parser)->value);
      c_parser_consume_token (parser);
      break;
    case CPP_NAME:
      switch (c_parser_peek_token (parser)->id_kind)
	{
	case C_ID_ID:
	  {
	    tree id = c_parser_peek_token (parser)->value;
	    c_parser_consume_token (parser);
	    expr.value = build_external_ref (loc, id,
					     (c_parser_peek_token (parser)->type
					      == CPP_OPEN_PAREN),
					     &expr.original_type);
	    break;
	  }
	case C_ID_CLASSNAME:
	  {
	    /* Here we parse the Objective-C 2.0 Class.name dot
	       syntax.  */
	    tree class_name = c_parser_peek_token (parser)->value;
	    tree component;
	    c_parser_consume_token (parser);
	    gcc_assert (c_dialect_objc ());
	    if (!c_parser_require (parser, CPP_DOT, "expected %<.%>"))
	      {
		expr.value = error_mark_node;
		break;
	      }
	    if (c_parser_next_token_is_not (parser, CPP_NAME))
	      {
		c_parser_error (parser, "expected identifier");
		expr.value = error_mark_node;
		break;
	      }
	    component = c_parser_peek_token (parser)->value;
	    c_parser_consume_token (parser);
	    expr.value = objc_build_class_component_ref (class_name, 
							 component);
	    break;
	  }
	default:
	  c_parser_error (parser, "expected expression");
	  expr.value = error_mark_node;
	  break;
	}
      break;
    case CPP_OPEN_PAREN:
      /* A parenthesized expression, statement expression or compound
	 literal.  */
      if (c_parser_peek_2nd_token (parser)->type == CPP_OPEN_BRACE)
	{
	  /* A statement expression.  */
	  tree stmt;
	  location_t brace_loc;
	  c_parser_consume_token (parser);
	  brace_loc = c_parser_peek_token (parser)->location;
	  c_parser_consume_token (parser);
	  if (!building_stmt_list_p ())
	    {
	      error_at (loc, "braced-group within expression allowed "
			"only inside a function");
	      parser->error = true;
	      c_parser_skip_until_found (parser, CPP_CLOSE_BRACE, NULL);
	      c_parser_skip_until_found (parser, CPP_CLOSE_PAREN, NULL);
	      expr.value = error_mark_node;
	      break;
	    }
	  stmt = c_begin_stmt_expr ();
	  c_parser_compound_statement_nostart (parser);
	  c_parser_skip_until_found (parser, CPP_CLOSE_PAREN,
				     "expected %<)%>");
	  pedwarn (loc, OPT_Wpedantic,
		   "ISO C forbids braced-groups within expressions");
	  expr.value = c_finish_stmt_expr (brace_loc, stmt);
	  mark_exp_read (expr.value);
	}
      else if (c_token_starts_typename (c_parser_peek_2nd_token (parser)))
	{
	  /* A compound literal.  ??? Can we actually get here rather
	     than going directly to
	     c_parser_postfix_expression_after_paren_type from
	     elsewhere?  */
	  location_t loc;
	  struct c_type_name *type_name;
	  c_parser_consume_token (parser);
	  loc = c_parser_peek_token (parser)->location;
	  type_name = c_parser_type_name (parser);
	  c_parser_skip_until_found (parser, CPP_CLOSE_PAREN,
				     "expected %<)%>");
	  if (type_name == NULL)
	    {
	      expr.value = error_mark_node;
	    }
	  else
	    expr = c_parser_postfix_expression_after_paren_type (parser,
								 type_name,
								 loc);
	}
      else
	{
	  /* A parenthesized expression.  */
	  c_parser_consume_token (parser);
	  expr = c_parser_expression (parser);
	  if (TREE_CODE (expr.value) == MODIFY_EXPR)
	    TREE_NO_WARNING (expr.value) = 1;
	  if (expr.original_code != C_MAYBE_CONST_EXPR)
	    expr.original_code = ERROR_MARK;
	  /* Don't change EXPR.ORIGINAL_TYPE.  */
	  c_parser_skip_until_found (parser, CPP_CLOSE_PAREN,
				     "expected %<)%>");
	}
      break;
    case CPP_KEYWORD:
      switch (c_parser_peek_token (parser)->keyword)
	{
	case RID_FUNCTION_NAME:
	case RID_PRETTY_FUNCTION_NAME:
	case RID_C99_FUNCTION_NAME:
	  expr.value = fname_decl (loc,
				   c_parser_peek_token (parser)->keyword,
				   c_parser_peek_token (parser)->value);
	  c_parser_consume_token (parser);
	  break;
	case RID_VA_ARG:
	  c_parser_consume_token (parser);
	  if (!c_parser_require (parser, CPP_OPEN_PAREN, "expected %<(%>"))
	    {
	      expr.value = error_mark_node;
	      break;
	    }
	  e1 = c_parser_expr_no_commas (parser, NULL);
	  mark_exp_read (e1.value);
	  e1.value = c_fully_fold (e1.value, false, NULL);
	  if (!c_parser_require (parser, CPP_COMMA, "expected %<,%>"))
	    {
	      c_parser_skip_until_found (parser, CPP_CLOSE_PAREN, NULL);
	      expr.value = error_mark_node;
	      break;
	    }
	  loc = c_parser_peek_token (parser)->location;
	  t1 = c_parser_type_name (parser);
	  c_parser_skip_until_found (parser, CPP_CLOSE_PAREN,
				     "expected %<)%>");
	  if (t1 == NULL)
	    {
	      expr.value = error_mark_node;
	    }
	  else
	    {
	      tree type_expr = NULL_TREE;
	      expr.value = c_build_va_arg (loc, e1.value,
					   groktypename (t1, &type_expr, NULL));
	      if (type_expr)
		{
		  expr.value = build2 (C_MAYBE_CONST_EXPR,
				       TREE_TYPE (expr.value), type_expr,
				       expr.value);
		  C_MAYBE_CONST_EXPR_NON_CONST (expr.value) = true;
		}
	    }
	  break;
	case RID_OFFSETOF:
	  c_parser_consume_token (parser);
	  if (!c_parser_require (parser, CPP_OPEN_PAREN, "expected %<(%>"))
	    {
	      expr.value = error_mark_node;
	      break;
	    }
	  t1 = c_parser_type_name (parser);
	  if (t1 == NULL)
	    parser->error = true;
	  if (!c_parser_require (parser, CPP_COMMA, "expected %<,%>"))
            gcc_assert (parser->error);
	  if (parser->error)
	    {
	      c_parser_skip_until_found (parser, CPP_CLOSE_PAREN, NULL);
	      expr.value = error_mark_node;
	      break;
	    }

	  {
	    tree type = groktypename (t1, NULL, NULL);
	    tree offsetof_ref;
	    if (type == error_mark_node)
	      offsetof_ref = error_mark_node;
	    else
	      {
		offsetof_ref = build1 (INDIRECT_REF, type, null_pointer_node);
		SET_EXPR_LOCATION (offsetof_ref, loc);
	      }
	    /* Parse the second argument to __builtin_offsetof.  We
	       must have one identifier, and beyond that we want to
	       accept sub structure and sub array references.  */
	    if (c_parser_next_token_is (parser, CPP_NAME))
	      {
		offsetof_ref = build_component_ref
		  (loc, offsetof_ref, c_parser_peek_token (parser)->value);
		c_parser_consume_token (parser);
		while (c_parser_next_token_is (parser, CPP_DOT)
		       || c_parser_next_token_is (parser,
						  CPP_OPEN_SQUARE)
		       || c_parser_next_token_is (parser,
						  CPP_DEREF))
		  {
		    if (c_parser_next_token_is (parser, CPP_DEREF))
		      {
			loc = c_parser_peek_token (parser)->location;
			offsetof_ref = build_array_ref (loc,
							offsetof_ref,
							integer_zero_node);
			goto do_dot;
		      }
		    else if (c_parser_next_token_is (parser, CPP_DOT))
		      {
		      do_dot:
			c_parser_consume_token (parser);
			if (c_parser_next_token_is_not (parser,
							CPP_NAME))
			  {
			    c_parser_error (parser, "expected identifier");
			    break;
			  }
			offsetof_ref = build_component_ref
			  (loc, offsetof_ref,
			   c_parser_peek_token (parser)->value);
			c_parser_consume_token (parser);
		      }
		    else
		      {
			struct c_expr ce;
			tree idx;
			loc = c_parser_peek_token (parser)->location;
			c_parser_consume_token (parser);
			ce = c_parser_expression (parser);
			ce = convert_lvalue_to_rvalue (loc, ce, false, false);
			idx = ce.value;
			idx = c_fully_fold (idx, false, NULL);
			c_parser_skip_until_found (parser, CPP_CLOSE_SQUARE,
						   "expected %<]%>");
			offsetof_ref = build_array_ref (loc, offsetof_ref, idx);
		      }
		  }
	      }
	    else
	      c_parser_error (parser, "expected identifier");
	    c_parser_skip_until_found (parser, CPP_CLOSE_PAREN,
				       "expected %<)%>");
	    expr.value = fold_offsetof (offsetof_ref);
	  }
	  break;
	case RID_CHOOSE_EXPR:
	  {
	    vec<c_expr_t, va_gc> *cexpr_list;
	    c_expr_t *e1_p, *e2_p, *e3_p;
	    tree c;

	    c_parser_consume_token (parser);
	    if (!c_parser_get_builtin_args (parser,
					    "__builtin_choose_expr",
					    &cexpr_list, true))
	      {
		expr.value = error_mark_node;
		break;
	      }

	    if (vec_safe_length (cexpr_list) != 3)
	      {
		error_at (loc, "wrong number of arguments to "
			       "%<__builtin_choose_expr%>");
		expr.value = error_mark_node;
		break;
	      }

	    e1_p = &(*cexpr_list)[0];
	    e2_p = &(*cexpr_list)[1];
	    e3_p = &(*cexpr_list)[2];

	    c = e1_p->value;
	    mark_exp_read (e2_p->value);
	    mark_exp_read (e3_p->value);
	    if (TREE_CODE (c) != INTEGER_CST
		|| !INTEGRAL_TYPE_P (TREE_TYPE (c)))
	      error_at (loc,
			"first argument to %<__builtin_choose_expr%> not"
			" a constant");
	    constant_expression_warning (c);
	    expr = integer_zerop (c) ? *e3_p : *e2_p;
	    break;
	  }
	case RID_TYPES_COMPATIBLE_P:
	  c_parser_consume_token (parser);
	  if (!c_parser_require (parser, CPP_OPEN_PAREN, "expected %<(%>"))
	    {
	      expr.value = error_mark_node;
	      break;
	    }
	  t1 = c_parser_type_name (parser);
	  if (t1 == NULL)
	    {
	      expr.value = error_mark_node;
	      break;
	    }
	  if (!c_parser_require (parser, CPP_COMMA, "expected %<,%>"))
	    {
	      c_parser_skip_until_found (parser, CPP_CLOSE_PAREN, NULL);
	      expr.value = error_mark_node;
	      break;
	    }
	  t2 = c_parser_type_name (parser);
	  if (t2 == NULL)
	    {
	      expr.value = error_mark_node;
	      break;
	    }
	  c_parser_skip_until_found (parser, CPP_CLOSE_PAREN,
				     "expected %<)%>");
	  {
	    tree e1, e2;
	    e1 = groktypename (t1, NULL, NULL);
	    e2 = groktypename (t2, NULL, NULL);
	    if (e1 == error_mark_node || e2 == error_mark_node)
	      {
		expr.value = error_mark_node;
		break;
	      }

	    e1 = TYPE_MAIN_VARIANT (e1);
	    e2 = TYPE_MAIN_VARIANT (e2);

	    expr.value
	      = comptypes (e1, e2) ? integer_one_node : integer_zero_node;
	  }
	  break;
	case RID_BUILTIN_COMPLEX:
	  {
	    vec<c_expr_t, va_gc> *cexpr_list;
	    c_expr_t *e1_p, *e2_p;

	    c_parser_consume_token (parser);
	    if (!c_parser_get_builtin_args (parser,
					    "__builtin_complex",
					    &cexpr_list, false))
	      {
		expr.value = error_mark_node;
		break;
	      }

	    if (vec_safe_length (cexpr_list) != 2)
	      {
		error_at (loc, "wrong number of arguments to "
			       "%<__builtin_complex%>");
		expr.value = error_mark_node;
		break;
	      }

	    e1_p = &(*cexpr_list)[0];
	    e2_p = &(*cexpr_list)[1];

	    *e1_p = convert_lvalue_to_rvalue (loc, *e1_p, true, true);
	    if (TREE_CODE (e1_p->value) == EXCESS_PRECISION_EXPR)
	      e1_p->value = convert (TREE_TYPE (e1_p->value),
				     TREE_OPERAND (e1_p->value, 0));
	    *e2_p = convert_lvalue_to_rvalue (loc, *e2_p, true, true);
	    if (TREE_CODE (e2_p->value) == EXCESS_PRECISION_EXPR)
	      e2_p->value = convert (TREE_TYPE (e2_p->value),
				     TREE_OPERAND (e2_p->value, 0));
	    if (!SCALAR_FLOAT_TYPE_P (TREE_TYPE (e1_p->value))
		|| DECIMAL_FLOAT_TYPE_P (TREE_TYPE (e1_p->value))
		|| !SCALAR_FLOAT_TYPE_P (TREE_TYPE (e2_p->value))
		|| DECIMAL_FLOAT_TYPE_P (TREE_TYPE (e2_p->value)))
	      {
		error_at (loc, "%<__builtin_complex%> operand "
			  "not of real binary floating-point type");
		expr.value = error_mark_node;
		break;
	      }
	    if (TYPE_MAIN_VARIANT (TREE_TYPE (e1_p->value))
		!= TYPE_MAIN_VARIANT (TREE_TYPE (e2_p->value)))
	      {
		error_at (loc,
			  "%<__builtin_complex%> operands of different types");
		expr.value = error_mark_node;
		break;
	      }
	    if (!flag_isoc99)
	      pedwarn (loc, OPT_Wpedantic,
		       "ISO C90 does not support complex types");
	    expr.value = build2 (COMPLEX_EXPR,
				 build_complex_type
				   (TYPE_MAIN_VARIANT
				     (TREE_TYPE (e1_p->value))),
				 e1_p->value, e2_p->value);
	    break;
	  }
	case RID_BUILTIN_SHUFFLE:
	  {
	    vec<c_expr_t, va_gc> *cexpr_list;
	    unsigned int i;
	    c_expr_t *p;

	    c_parser_consume_token (parser);
	    if (!c_parser_get_builtin_args (parser,
					    "__builtin_shuffle",
					    &cexpr_list, false))
	      {
		expr.value = error_mark_node;
		break;
	      }

	    FOR_EACH_VEC_SAFE_ELT (cexpr_list, i, p)
	      *p = convert_lvalue_to_rvalue (loc, *p, true, true);

	    if (vec_safe_length (cexpr_list) == 2)
	      expr.value =
		c_build_vec_perm_expr
		  (loc, (*cexpr_list)[0].value,
		   NULL_TREE, (*cexpr_list)[1].value);

	    else if (vec_safe_length (cexpr_list) == 3)
	      expr.value =
		c_build_vec_perm_expr
		  (loc, (*cexpr_list)[0].value,
		   (*cexpr_list)[1].value,
		   (*cexpr_list)[2].value);
	    else
	      {
		error_at (loc, "wrong number of arguments to "
			       "%<__builtin_shuffle%>");
		expr.value = error_mark_node;
	      }
	    break;
	  }
	case RID_AT_SELECTOR:
	  gcc_assert (c_dialect_objc ());
	  c_parser_consume_token (parser);
	  if (!c_parser_require (parser, CPP_OPEN_PAREN, "expected %<(%>"))
	    {
	      expr.value = error_mark_node;
	      break;
	    }
	  {
	    tree sel = c_parser_objc_selector_arg (parser);
	    c_parser_skip_until_found (parser, CPP_CLOSE_PAREN,
				       "expected %<)%>");
	    expr.value = objc_build_selector_expr (loc, sel);
	  }
	  break;
	case RID_AT_PROTOCOL:
	  gcc_assert (c_dialect_objc ());
	  c_parser_consume_token (parser);
	  if (!c_parser_require (parser, CPP_OPEN_PAREN, "expected %<(%>"))
	    {
	      expr.value = error_mark_node;
	      break;
	    }
	  if (c_parser_next_token_is_not (parser, CPP_NAME))
	    {
	      c_parser_error (parser, "expected identifier");
	      c_parser_skip_until_found (parser, CPP_CLOSE_PAREN, NULL);
	      expr.value = error_mark_node;
	      break;
	    }
	  {
	    tree id = c_parser_peek_token (parser)->value;
	    c_parser_consume_token (parser);
	    c_parser_skip_until_found (parser, CPP_CLOSE_PAREN,
				       "expected %<)%>");
	    expr.value = objc_build_protocol_expr (id);
	  }
	  break;
	case RID_AT_ENCODE:
	  /* Extension to support C-structures in the archiver.  */
	  gcc_assert (c_dialect_objc ());
	  c_parser_consume_token (parser);
	  if (!c_parser_require (parser, CPP_OPEN_PAREN, "expected %<(%>"))
	    {
	      expr.value = error_mark_node;
	      break;
	    }
	  t1 = c_parser_type_name (parser);
	  if (t1 == NULL)
	    {
	      expr.value = error_mark_node;
	      c_parser_skip_until_found (parser, CPP_CLOSE_PAREN, NULL);
	      break;
	    }
	  c_parser_skip_until_found (parser, CPP_CLOSE_PAREN,
				     "expected %<)%>");
	  {
	    tree type = groktypename (t1, NULL, NULL);
	    expr.value = objc_build_encode_expr (type);
	  }
	  break;
	case RID_GENERIC:
	  expr = c_parser_generic_selection (parser);
	  break;
	case RID_CILK_SPAWN:
	  c_parser_consume_token (parser);
	  if (!flag_enable_cilkplus)
	    {
	      error_at (loc, "-fcilkplus must be enabled to use "
			"%<_Cilk_spawn%>");
	      expr = c_parser_postfix_expression (parser);
	      expr.value = error_mark_node;	      
	    }
	  if (c_parser_peek_token (parser)->keyword == RID_CILK_SPAWN)
	    {
	      error_at (loc, "consecutive %<_Cilk_spawn%> keywords "
			"are not permitted");
	      /* Now flush out all the _Cilk_spawns.  */
	      while (c_parser_peek_token (parser)->keyword == RID_CILK_SPAWN)
		c_parser_consume_token (parser);
	      expr = c_parser_postfix_expression (parser);
	    }
	  else
	    {
	      expr = c_parser_postfix_expression (parser);
	      expr.value = build_cilk_spawn (loc, expr.value);
	    }
	  break; 
	default:
	  c_parser_error (parser, "expected expression");
	  expr.value = error_mark_node;
	  break;
	}
      break;
    case CPP_OPEN_SQUARE:
      if (c_dialect_objc ())
	{
	  tree receiver, args;
	  c_parser_consume_token (parser);
	  receiver = c_parser_objc_receiver (parser);
	  args = c_parser_objc_message_args (parser);
	  c_parser_skip_until_found (parser, CPP_CLOSE_SQUARE,
				     "expected %<]%>");
	  expr.value = objc_build_message_expr (receiver, args);
	  break;
	}
      /* Else fall through to report error.  */
    default:
      c_parser_error (parser, "expected expression");
      expr.value = error_mark_node;
      break;
    }
  return c_parser_postfix_expression_after_primary (parser, loc, expr);
}

/* Parse a postfix expression after a parenthesized type name: the
   brace-enclosed initializer of a compound literal, possibly followed
   by some postfix operators.  This is separate because it is not
   possible to tell until after the type name whether a cast
   expression has a cast or a compound literal, or whether the operand
   of sizeof is a parenthesized type name or starts with a compound
   literal.  TYPE_LOC is the location where TYPE_NAME starts--the
   location of the first token after the parentheses around the type
   name.  */

static struct c_expr
c_parser_postfix_expression_after_paren_type (c_parser *parser,
					      struct c_type_name *type_name,
					      location_t type_loc)
{
  tree type;
  struct c_expr init;
  bool non_const;
  struct c_expr expr;
  location_t start_loc;
  tree type_expr = NULL_TREE;
  bool type_expr_const = true;
  check_compound_literal_type (type_loc, type_name);
  start_init (NULL_TREE, NULL, 0);
  type = groktypename (type_name, &type_expr, &type_expr_const);
  start_loc = c_parser_peek_token (parser)->location;
  if (type != error_mark_node && C_TYPE_VARIABLE_SIZE (type))
    {
      error_at (type_loc, "compound literal has variable size");
      type = error_mark_node;
    }
  init = c_parser_braced_init (parser, type, false);
  finish_init ();
  maybe_warn_string_init (type, init);

  if (type != error_mark_node
      && !ADDR_SPACE_GENERIC_P (TYPE_ADDR_SPACE (type))
      && current_function_decl)
    {
      error ("compound literal qualified by address-space qualifier");
      type = error_mark_node;
    }

  if (!flag_isoc99)
    pedwarn (start_loc, OPT_Wpedantic, "ISO C90 forbids compound literals");
  non_const = ((init.value && TREE_CODE (init.value) == CONSTRUCTOR)
	       ? CONSTRUCTOR_NON_CONST (init.value)
	       : init.original_code == C_MAYBE_CONST_EXPR);
  non_const |= !type_expr_const;
  expr.value = build_compound_literal (start_loc, type, init.value, non_const);
  expr.original_code = ERROR_MARK;
  expr.original_type = NULL;
  if (type_expr)
    {
      if (TREE_CODE (expr.value) == C_MAYBE_CONST_EXPR)
	{
	  gcc_assert (C_MAYBE_CONST_EXPR_PRE (expr.value) == NULL_TREE);
	  C_MAYBE_CONST_EXPR_PRE (expr.value) = type_expr;
	}
      else
	{
	  gcc_assert (!non_const);
	  expr.value = build2 (C_MAYBE_CONST_EXPR, type,
			       type_expr, expr.value);
	}
    }
  return c_parser_postfix_expression_after_primary (parser, start_loc, expr);
}

/* Callback function for sizeof_pointer_memaccess_warning to compare
   types.  */

static bool
sizeof_ptr_memacc_comptypes (tree type1, tree type2)
{
  return comptypes (type1, type2) == 1;
}

/* Parse a postfix expression after the initial primary or compound
   literal; that is, parse a series of postfix operators.

   EXPR_LOC is the location of the primary expression.  */

static struct c_expr
c_parser_postfix_expression_after_primary (c_parser *parser,
					   location_t expr_loc,
					   struct c_expr expr)
{
  struct c_expr orig_expr;
  tree ident, idx;
  location_t sizeof_arg_loc[3];
  tree sizeof_arg[3];
  unsigned int i;
  vec<tree, va_gc> *exprlist;
  vec<tree, va_gc> *origtypes = NULL;
  while (true)
    {
      location_t op_loc = c_parser_peek_token (parser)->location;
      switch (c_parser_peek_token (parser)->type)
	{
	case CPP_OPEN_SQUARE:
	  /* Array reference.  */
	  c_parser_consume_token (parser);
	  if (flag_enable_cilkplus
	      && c_parser_peek_token (parser)->type == CPP_COLON)
	    /* If we are here, then we have something like this:
	       Array [ : ]
	    */
	    expr.value = c_parser_array_notation (expr_loc, parser, NULL_TREE,
						  expr.value);
	  else
	    {	      
	      idx = c_parser_expression (parser).value;
	      /* Here we have 3 options:
		 1. Array [EXPR] -- Normal Array call.
		 2. Array [EXPR : EXPR] -- Array notation without stride.
		 3. Array [EXPR : EXPR : EXPR] -- Array notation with stride.

		 For 1, we just handle it just like a normal array expression.
		 For 2 and 3 we handle it like we handle array notations.  The
		 idx value we have above becomes the initial/start index.
	      */
	      if (flag_enable_cilkplus
		  && c_parser_peek_token (parser)->type == CPP_COLON)
		expr.value = c_parser_array_notation (expr_loc, parser, idx, 
						      expr.value);
	      else
		{
		  c_parser_skip_until_found (parser, CPP_CLOSE_SQUARE,
					     "expected %<]%>");
		  expr.value = build_array_ref (op_loc, expr.value, idx);
		}
	    }
	  expr.original_code = ERROR_MARK;
	  expr.original_type = NULL;
	  break;
	case CPP_OPEN_PAREN:
	  /* Function call.  */
	  c_parser_consume_token (parser);
	  for (i = 0; i < 3; i++)
	    {
	      sizeof_arg[i] = NULL_TREE;
	      sizeof_arg_loc[i] = UNKNOWN_LOCATION;
	    }
	  if (c_parser_next_token_is (parser, CPP_CLOSE_PAREN))
	    exprlist = NULL;
	  else
	    exprlist = c_parser_expr_list (parser, true, false, &origtypes,
					   sizeof_arg_loc, sizeof_arg);
	  c_parser_skip_until_found (parser, CPP_CLOSE_PAREN,
				     "expected %<)%>");
	  orig_expr = expr;
	  mark_exp_read (expr.value);
	  if (warn_sizeof_pointer_memaccess)
	    sizeof_pointer_memaccess_warning (sizeof_arg_loc,
					      expr.value, exprlist,
					      sizeof_arg,
					      sizeof_ptr_memacc_comptypes);
	  /* FIXME diagnostics: Ideally we want the FUNCNAME, not the
	     "(" after the FUNCNAME, which is what we have now.    */
	  expr.value = build_function_call_vec (op_loc, expr.value, exprlist,
						origtypes);
	  expr.original_code = ERROR_MARK;
	  if (TREE_CODE (expr.value) == INTEGER_CST
	      && TREE_CODE (orig_expr.value) == FUNCTION_DECL
	      && DECL_BUILT_IN_CLASS (orig_expr.value) == BUILT_IN_NORMAL
	      && DECL_FUNCTION_CODE (orig_expr.value) == BUILT_IN_CONSTANT_P)
	    expr.original_code = C_MAYBE_CONST_EXPR;
	  expr.original_type = NULL;
	  if (exprlist)
	    {
	      release_tree_vector (exprlist);
	      release_tree_vector (origtypes);
	    }
	  break;
	case CPP_DOT:
	  /* Structure element reference.  */
	  c_parser_consume_token (parser);
	  expr = default_function_array_conversion (expr_loc, expr);
	  if (c_parser_next_token_is (parser, CPP_NAME))
	    ident = c_parser_peek_token (parser)->value;
	  else
	    {
	      c_parser_error (parser, "expected identifier");
	      expr.value = error_mark_node;
	      expr.original_code = ERROR_MARK;
              expr.original_type = NULL;
	      return expr;
	    }
	  c_parser_consume_token (parser);
	  expr.value = build_component_ref (op_loc, expr.value, ident);
	  expr.original_code = ERROR_MARK;
	  if (TREE_CODE (expr.value) != COMPONENT_REF)
	    expr.original_type = NULL;
	  else
	    {
	      /* Remember the original type of a bitfield.  */
	      tree field = TREE_OPERAND (expr.value, 1);
	      if (TREE_CODE (field) != FIELD_DECL)
		expr.original_type = NULL;
	      else
		expr.original_type = DECL_BIT_FIELD_TYPE (field);
	    }
	  break;
	case CPP_DEREF:
	  /* Structure element reference.  */
	  c_parser_consume_token (parser);
	  expr = convert_lvalue_to_rvalue (expr_loc, expr, true, false);
	  if (c_parser_next_token_is (parser, CPP_NAME))
	    ident = c_parser_peek_token (parser)->value;
	  else
	    {
	      c_parser_error (parser, "expected identifier");
	      expr.value = error_mark_node;
	      expr.original_code = ERROR_MARK;
	      expr.original_type = NULL;
	      return expr;
	    }
	  c_parser_consume_token (parser);
	  expr.value = build_component_ref (op_loc,
					    build_indirect_ref (op_loc,
								expr.value,
								RO_ARROW),
					    ident);
	  expr.original_code = ERROR_MARK;
	  if (TREE_CODE (expr.value) != COMPONENT_REF)
	    expr.original_type = NULL;
	  else
	    {
	      /* Remember the original type of a bitfield.  */
	      tree field = TREE_OPERAND (expr.value, 1);
	      if (TREE_CODE (field) != FIELD_DECL)
		expr.original_type = NULL;
	      else
		expr.original_type = DECL_BIT_FIELD_TYPE (field);
	    }
	  break;
	case CPP_PLUS_PLUS:
	  /* Postincrement.  */
	  c_parser_consume_token (parser);
	  /* If the expressions have array notations, we expand them.  */
	  if (flag_enable_cilkplus
	      && TREE_CODE (expr.value) == ARRAY_NOTATION_REF)
	    expr = fix_array_notation_expr (expr_loc, POSTINCREMENT_EXPR, expr);
	  else
	    {
	      expr = default_function_array_read_conversion (expr_loc, expr);
	      expr.value = build_unary_op (op_loc,
					   POSTINCREMENT_EXPR, expr.value, 0);
	    }
	  expr.original_code = ERROR_MARK;
	  expr.original_type = NULL;
	  break;
	case CPP_MINUS_MINUS:
	  /* Postdecrement.  */
	  c_parser_consume_token (parser);
	  /* If the expressions have array notations, we expand them.  */
	  if (flag_enable_cilkplus
	      && TREE_CODE (expr.value) == ARRAY_NOTATION_REF)
	    expr = fix_array_notation_expr (expr_loc, POSTDECREMENT_EXPR, expr);
	  else
	    {
	      expr = default_function_array_read_conversion (expr_loc, expr);
	      expr.value = build_unary_op (op_loc,
					   POSTDECREMENT_EXPR, expr.value, 0);
	    }
	  expr.original_code = ERROR_MARK;
	  expr.original_type = NULL;
	  break;
	default:
	  return expr;
	}
    }
}

/* Parse an expression (C90 6.3.17, C99 6.5.17).

   expression:
     assignment-expression
     expression , assignment-expression
*/

static struct c_expr
c_parser_expression (c_parser *parser)
{
  location_t tloc = c_parser_peek_token (parser)->location;
  struct c_expr expr;
  expr = c_parser_expr_no_commas (parser, NULL);
  if (c_parser_next_token_is (parser, CPP_COMMA))
    expr = convert_lvalue_to_rvalue (tloc, expr, true, false);
  while (c_parser_next_token_is (parser, CPP_COMMA))
    {
      struct c_expr next;
      tree lhsval;
      location_t loc = c_parser_peek_token (parser)->location;
      location_t expr_loc;
      c_parser_consume_token (parser);
      expr_loc = c_parser_peek_token (parser)->location;
      lhsval = expr.value;
      while (TREE_CODE (lhsval) == COMPOUND_EXPR)
	lhsval = TREE_OPERAND (lhsval, 1);
      if (DECL_P (lhsval) || handled_component_p (lhsval))
	mark_exp_read (lhsval);
      next = c_parser_expr_no_commas (parser, NULL);
      next = convert_lvalue_to_rvalue (expr_loc, next, true, false);
      expr.value = build_compound_expr (loc, expr.value, next.value);
      expr.original_code = COMPOUND_EXPR;
      expr.original_type = next.original_type;
    }
  return expr;
}

/* Parse an expression and convert functions or arrays to pointers and
   lvalues to rvalues.  */

static struct c_expr
c_parser_expression_conv (c_parser *parser)
{
  struct c_expr expr;
  location_t loc = c_parser_peek_token (parser)->location;
  expr = c_parser_expression (parser);
  expr = convert_lvalue_to_rvalue (loc, expr, true, false);
  return expr;
}

/* Parse a non-empty list of expressions.  If CONVERT_P, convert
   functions and arrays to pointers and lvalues to rvalues.  If
   FOLD_P, fold the expressions.

   nonempty-expr-list:
     assignment-expression
     nonempty-expr-list , assignment-expression
*/

static vec<tree, va_gc> *
c_parser_expr_list (c_parser *parser, bool convert_p, bool fold_p,
		    vec<tree, va_gc> **p_orig_types,
		    location_t *sizeof_arg_loc, tree *sizeof_arg)
{
  vec<tree, va_gc> *ret;
  vec<tree, va_gc> *orig_types;
  struct c_expr expr;
  location_t loc = c_parser_peek_token (parser)->location;
  location_t cur_sizeof_arg_loc = UNKNOWN_LOCATION;
  unsigned int idx = 0;

  ret = make_tree_vector ();
  if (p_orig_types == NULL)
    orig_types = NULL;
  else
    orig_types = make_tree_vector ();

  if (sizeof_arg != NULL
      && c_parser_next_token_is_keyword (parser, RID_SIZEOF))
    cur_sizeof_arg_loc = c_parser_peek_2nd_token (parser)->location;
  expr = c_parser_expr_no_commas (parser, NULL);
  if (convert_p)
    expr = convert_lvalue_to_rvalue (loc, expr, true, true);
  if (fold_p)
    expr.value = c_fully_fold (expr.value, false, NULL);
  ret->quick_push (expr.value);
  if (orig_types)
    orig_types->quick_push (expr.original_type);
  if (sizeof_arg != NULL
      && cur_sizeof_arg_loc != UNKNOWN_LOCATION
      && expr.original_code == SIZEOF_EXPR)
    {
      sizeof_arg[0] = c_last_sizeof_arg;
      sizeof_arg_loc[0] = cur_sizeof_arg_loc;
    }
  while (c_parser_next_token_is (parser, CPP_COMMA))
    {
      c_parser_consume_token (parser);
      loc = c_parser_peek_token (parser)->location;
      if (sizeof_arg != NULL
	  && c_parser_next_token_is_keyword (parser, RID_SIZEOF))
	cur_sizeof_arg_loc = c_parser_peek_2nd_token (parser)->location;
      else
	cur_sizeof_arg_loc = UNKNOWN_LOCATION;
      expr = c_parser_expr_no_commas (parser, NULL);
      if (convert_p)
	expr = convert_lvalue_to_rvalue (loc, expr, true, true);
      if (fold_p)
	expr.value = c_fully_fold (expr.value, false, NULL);
      vec_safe_push (ret, expr.value);
      if (orig_types)
	vec_safe_push (orig_types, expr.original_type);
      if (++idx < 3
	  && sizeof_arg != NULL
	  && cur_sizeof_arg_loc != UNKNOWN_LOCATION
	  && expr.original_code == SIZEOF_EXPR)
	{
	  sizeof_arg[idx] = c_last_sizeof_arg;
	  sizeof_arg_loc[idx] = cur_sizeof_arg_loc;
	}
    }
  if (orig_types)
    *p_orig_types = orig_types;
  return ret;
}

/* Parse Objective-C-specific constructs.  */

/* Parse an objc-class-definition.

   objc-class-definition:
     @interface identifier objc-superclass[opt] objc-protocol-refs[opt]
       objc-class-instance-variables[opt] objc-methodprotolist @end
     @implementation identifier objc-superclass[opt]
       objc-class-instance-variables[opt]
     @interface identifier ( identifier ) objc-protocol-refs[opt]
       objc-methodprotolist @end
     @interface identifier ( ) objc-protocol-refs[opt]
       objc-methodprotolist @end
     @implementation identifier ( identifier )

   objc-superclass:
     : identifier

   "@interface identifier (" must start "@interface identifier (
   identifier ) ...": objc-methodprotolist in the first production may
   not start with a parenthesized identifier as a declarator of a data
   definition with no declaration specifiers if the objc-superclass,
   objc-protocol-refs and objc-class-instance-variables are omitted.  */

static void
c_parser_objc_class_definition (c_parser *parser, tree attributes)
{
  bool iface_p;
  tree id1;
  tree superclass;
  if (c_parser_next_token_is_keyword (parser, RID_AT_INTERFACE))
    iface_p = true;
  else if (c_parser_next_token_is_keyword (parser, RID_AT_IMPLEMENTATION))
    iface_p = false;
  else
    gcc_unreachable ();

  c_parser_consume_token (parser);
  if (c_parser_next_token_is_not (parser, CPP_NAME))
    {
      c_parser_error (parser, "expected identifier");
      return;
    }
  id1 = c_parser_peek_token (parser)->value;
  c_parser_consume_token (parser);
  if (c_parser_next_token_is (parser, CPP_OPEN_PAREN))
    {
      /* We have a category or class extension.  */
      tree id2;
      tree proto = NULL_TREE;
      c_parser_consume_token (parser);
      if (c_parser_next_token_is_not (parser, CPP_NAME))
	{
	  if (iface_p && c_parser_next_token_is (parser, CPP_CLOSE_PAREN))
	    {
	      /* We have a class extension.  */
	      id2 = NULL_TREE;
	    }
	  else
	    {
	      c_parser_error (parser, "expected identifier or %<)%>");
	      c_parser_skip_until_found (parser, CPP_CLOSE_PAREN, NULL);
	      return;
	    }
	}
      else
	{
	  id2 = c_parser_peek_token (parser)->value;
	  c_parser_consume_token (parser);
	}
      c_parser_skip_until_found (parser, CPP_CLOSE_PAREN, "expected %<)%>");
      if (!iface_p)
	{
	  objc_start_category_implementation (id1, id2);
	  return;
	}
      if (c_parser_next_token_is (parser, CPP_LESS))
	proto = c_parser_objc_protocol_refs (parser);
      objc_start_category_interface (id1, id2, proto, attributes);
      c_parser_objc_methodprotolist (parser);
      c_parser_require_keyword (parser, RID_AT_END, "expected %<@end%>");
      objc_finish_interface ();
      return;
    }
  if (c_parser_next_token_is (parser, CPP_COLON))
    {
      c_parser_consume_token (parser);
      if (c_parser_next_token_is_not (parser, CPP_NAME))
	{
	  c_parser_error (parser, "expected identifier");
	  return;
	}
      superclass = c_parser_peek_token (parser)->value;
      c_parser_consume_token (parser);
    }
  else
    superclass = NULL_TREE;
  if (iface_p)
    {
      tree proto = NULL_TREE;
      if (c_parser_next_token_is (parser, CPP_LESS))
	proto = c_parser_objc_protocol_refs (parser);
      objc_start_class_interface (id1, superclass, proto, attributes);
    }
  else
    objc_start_class_implementation (id1, superclass);
  if (c_parser_next_token_is (parser, CPP_OPEN_BRACE))
    c_parser_objc_class_instance_variables (parser);
  if (iface_p)
    {
      objc_continue_interface ();
      c_parser_objc_methodprotolist (parser);
      c_parser_require_keyword (parser, RID_AT_END, "expected %<@end%>");
      objc_finish_interface ();
    }
  else
    {
      objc_continue_implementation ();
      return;
    }
}

/* Parse objc-class-instance-variables.

   objc-class-instance-variables:
     { objc-instance-variable-decl-list[opt] }

   objc-instance-variable-decl-list:
     objc-visibility-spec
     objc-instance-variable-decl ;
     ;
     objc-instance-variable-decl-list objc-visibility-spec
     objc-instance-variable-decl-list objc-instance-variable-decl ;
     objc-instance-variable-decl-list ;

   objc-visibility-spec:
     @private
     @protected
     @public

   objc-instance-variable-decl:
     struct-declaration
*/

static void
c_parser_objc_class_instance_variables (c_parser *parser)
{
  gcc_assert (c_parser_next_token_is (parser, CPP_OPEN_BRACE));
  c_parser_consume_token (parser);
  while (c_parser_next_token_is_not (parser, CPP_EOF))
    {
      tree decls;
      /* Parse any stray semicolon.  */
      if (c_parser_next_token_is (parser, CPP_SEMICOLON))
	{
	  pedwarn (c_parser_peek_token (parser)->location, OPT_Wpedantic,
		   "extra semicolon");
	  c_parser_consume_token (parser);
	  continue;
	}
      /* Stop if at the end of the instance variables.  */
      if (c_parser_next_token_is (parser, CPP_CLOSE_BRACE))
	{
	  c_parser_consume_token (parser);
	  break;
	}
      /* Parse any objc-visibility-spec.  */
      if (c_parser_next_token_is_keyword (parser, RID_AT_PRIVATE))
	{
	  c_parser_consume_token (parser);
	  objc_set_visibility (OBJC_IVAR_VIS_PRIVATE);
	  continue;
	}
      else if (c_parser_next_token_is_keyword (parser, RID_AT_PROTECTED))
	{
	  c_parser_consume_token (parser);
	  objc_set_visibility (OBJC_IVAR_VIS_PROTECTED);
	  continue;
	}
      else if (c_parser_next_token_is_keyword (parser, RID_AT_PUBLIC))
	{
	  c_parser_consume_token (parser);
	  objc_set_visibility (OBJC_IVAR_VIS_PUBLIC);
	  continue;
	}
      else if (c_parser_next_token_is_keyword (parser, RID_AT_PACKAGE))
	{
	  c_parser_consume_token (parser);
	  objc_set_visibility (OBJC_IVAR_VIS_PACKAGE);
	  continue;
	}
      else if (c_parser_next_token_is (parser, CPP_PRAGMA))
	{
	  c_parser_pragma (parser, pragma_external);
	  continue;
	}

      /* Parse some comma-separated declarations.  */
      decls = c_parser_struct_declaration (parser);
      if (decls == NULL)
	{
	  /* There is a syntax error.  We want to skip the offending
	     tokens up to the next ';' (included) or '}'
	     (excluded).  */
	  
	  /* First, skip manually a ')' or ']'.  This is because they
	     reduce the nesting level, so c_parser_skip_until_found()
	     wouldn't be able to skip past them.  */
	  c_token *token = c_parser_peek_token (parser);
	  if (token->type == CPP_CLOSE_PAREN || token->type == CPP_CLOSE_SQUARE)
	    c_parser_consume_token (parser);

	  /* Then, do the standard skipping.  */
	  c_parser_skip_until_found (parser, CPP_SEMICOLON, NULL);

	  /* We hopefully recovered.  Start normal parsing again.  */
	  parser->error = false;
	  continue;
	}
      else
	{
	  /* Comma-separated instance variables are chained together
	     in reverse order; add them one by one.  */
	  tree ivar = nreverse (decls);
	  for (; ivar; ivar = DECL_CHAIN (ivar))
	    objc_add_instance_variable (copy_node (ivar));
	}
      c_parser_skip_until_found (parser, CPP_SEMICOLON, "expected %<;%>");
    }
}

/* Parse an objc-class-declaration.

   objc-class-declaration:
     @class identifier-list ;
*/

static void
c_parser_objc_class_declaration (c_parser *parser)
{
  gcc_assert (c_parser_next_token_is_keyword (parser, RID_AT_CLASS));
  c_parser_consume_token (parser);
  /* Any identifiers, including those declared as type names, are OK
     here.  */
  while (true)
    {
      tree id;
      if (c_parser_next_token_is_not (parser, CPP_NAME))
	{
	  c_parser_error (parser, "expected identifier");
	  c_parser_skip_until_found (parser, CPP_SEMICOLON, NULL);
	  parser->error = false;
	  return;
	}
      id = c_parser_peek_token (parser)->value;
      objc_declare_class (id);
      c_parser_consume_token (parser);
      if (c_parser_next_token_is (parser, CPP_COMMA))
	c_parser_consume_token (parser);
      else
	break;
    }
  c_parser_skip_until_found (parser, CPP_SEMICOLON, "expected %<;%>");
}

/* Parse an objc-alias-declaration.

   objc-alias-declaration:
     @compatibility_alias identifier identifier ;
*/

static void
c_parser_objc_alias_declaration (c_parser *parser)
{
  tree id1, id2;
  gcc_assert (c_parser_next_token_is_keyword (parser, RID_AT_ALIAS));
  c_parser_consume_token (parser);
  if (c_parser_next_token_is_not (parser, CPP_NAME))
    {
      c_parser_error (parser, "expected identifier");
      c_parser_skip_until_found (parser, CPP_SEMICOLON, NULL);
      return;
    }
  id1 = c_parser_peek_token (parser)->value;
  c_parser_consume_token (parser);
  if (c_parser_next_token_is_not (parser, CPP_NAME))
    {
      c_parser_error (parser, "expected identifier");
      c_parser_skip_until_found (parser, CPP_SEMICOLON, NULL);
      return;
    }
  id2 = c_parser_peek_token (parser)->value;
  c_parser_consume_token (parser);
  c_parser_skip_until_found (parser, CPP_SEMICOLON, "expected %<;%>");
  objc_declare_alias (id1, id2);
}

/* Parse an objc-protocol-definition.

   objc-protocol-definition:
     @protocol identifier objc-protocol-refs[opt] objc-methodprotolist @end
     @protocol identifier-list ;

   "@protocol identifier ;" should be resolved as "@protocol
   identifier-list ;": objc-methodprotolist may not start with a
   semicolon in the first alternative if objc-protocol-refs are
   omitted.  */

static void
c_parser_objc_protocol_definition (c_parser *parser, tree attributes)
{
  gcc_assert (c_parser_next_token_is_keyword (parser, RID_AT_PROTOCOL));

  c_parser_consume_token (parser);
  if (c_parser_next_token_is_not (parser, CPP_NAME))
    {
      c_parser_error (parser, "expected identifier");
      return;
    }
  if (c_parser_peek_2nd_token (parser)->type == CPP_COMMA
      || c_parser_peek_2nd_token (parser)->type == CPP_SEMICOLON)
    {
      /* Any identifiers, including those declared as type names, are
	 OK here.  */
      while (true)
	{
	  tree id;
	  if (c_parser_next_token_is_not (parser, CPP_NAME))
	    {
	      c_parser_error (parser, "expected identifier");
	      break;
	    }
	  id = c_parser_peek_token (parser)->value;
	  objc_declare_protocol (id, attributes);
	  c_parser_consume_token (parser);
	  if (c_parser_next_token_is (parser, CPP_COMMA))
	    c_parser_consume_token (parser);
	  else
	    break;
	}
      c_parser_skip_until_found (parser, CPP_SEMICOLON, "expected %<;%>");
    }
  else
    {
      tree id = c_parser_peek_token (parser)->value;
      tree proto = NULL_TREE;
      c_parser_consume_token (parser);
      if (c_parser_next_token_is (parser, CPP_LESS))
	proto = c_parser_objc_protocol_refs (parser);
      parser->objc_pq_context = true;
      objc_start_protocol (id, proto, attributes);
      c_parser_objc_methodprotolist (parser);
      c_parser_require_keyword (parser, RID_AT_END, "expected %<@end%>");
      parser->objc_pq_context = false;
      objc_finish_interface ();
    }
}

/* Parse an objc-method-type.

   objc-method-type:
     +
     -

   Return true if it is a class method (+) and false if it is
   an instance method (-).
*/
static inline bool
c_parser_objc_method_type (c_parser *parser)
{
  switch (c_parser_peek_token (parser)->type)
    {
    case CPP_PLUS:
      c_parser_consume_token (parser);
      return true;
    case CPP_MINUS:
      c_parser_consume_token (parser);
      return false;
    default:
      gcc_unreachable ();
    }
}

/* Parse an objc-method-definition.

   objc-method-definition:
     objc-method-type objc-method-decl ;[opt] compound-statement
*/

static void
c_parser_objc_method_definition (c_parser *parser)
{
  bool is_class_method = c_parser_objc_method_type (parser);
  tree decl, attributes = NULL_TREE, expr = NULL_TREE;
  parser->objc_pq_context = true;
  decl = c_parser_objc_method_decl (parser, is_class_method, &attributes,
				    &expr);
  if (decl == error_mark_node)
    return;  /* Bail here. */

  if (c_parser_next_token_is (parser, CPP_SEMICOLON))
    {
      c_parser_consume_token (parser);
      pedwarn (c_parser_peek_token (parser)->location, OPT_Wpedantic,
	       "extra semicolon in method definition specified");
    }

  if (!c_parser_next_token_is (parser, CPP_OPEN_BRACE))
    {
      c_parser_error (parser, "expected %<{%>");
      return;
    }

  parser->objc_pq_context = false;
  if (objc_start_method_definition (is_class_method, decl, attributes, expr))
    {
      add_stmt (c_parser_compound_statement (parser));
      objc_finish_method_definition (current_function_decl);
    }
  else
    {
      /* This code is executed when we find a method definition
	 outside of an @implementation context (or invalid for other
	 reasons).  Parse the method (to keep going) but do not emit
	 any code.
      */
      c_parser_compound_statement (parser);
    }
}

/* Parse an objc-methodprotolist.

   objc-methodprotolist:
     empty
     objc-methodprotolist objc-methodproto
     objc-methodprotolist declaration
     objc-methodprotolist ;
     @optional
     @required

   The declaration is a data definition, which may be missing
   declaration specifiers under the same rules and diagnostics as
   other data definitions outside functions, and the stray semicolon
   is diagnosed the same way as a stray semicolon outside a
   function.  */

static void
c_parser_objc_methodprotolist (c_parser *parser)
{
  while (true)
    {
      /* The list is terminated by @end.  */
      switch (c_parser_peek_token (parser)->type)
	{
	case CPP_SEMICOLON:
	  pedwarn (c_parser_peek_token (parser)->location, OPT_Wpedantic,
		   "ISO C does not allow extra %<;%> outside of a function");
	  c_parser_consume_token (parser);
	  break;
	case CPP_PLUS:
	case CPP_MINUS:
	  c_parser_objc_methodproto (parser);
	  break;
	case CPP_PRAGMA:
	  c_parser_pragma (parser, pragma_external);
	  break;
	case CPP_EOF:
	  return;
	default:
	  if (c_parser_next_token_is_keyword (parser, RID_AT_END))
	    return;
	  else if (c_parser_next_token_is_keyword (parser, RID_AT_PROPERTY))
	    c_parser_objc_at_property_declaration (parser);
	  else if (c_parser_next_token_is_keyword (parser, RID_AT_OPTIONAL))
	    {
	      objc_set_method_opt (true);
	      c_parser_consume_token (parser);
	    }
	  else if (c_parser_next_token_is_keyword (parser, RID_AT_REQUIRED))
	    {
	      objc_set_method_opt (false);
	      c_parser_consume_token (parser);
	    }
	  else
	    c_parser_declaration_or_fndef (parser, false, false, true,
					   false, true, NULL, vNULL);
	  break;
	}
    }
}

/* Parse an objc-methodproto.

   objc-methodproto:
     objc-method-type objc-method-decl ;
*/

static void
c_parser_objc_methodproto (c_parser *parser)
{
  bool is_class_method = c_parser_objc_method_type (parser);
  tree decl, attributes = NULL_TREE;

  /* Remember protocol qualifiers in prototypes.  */
  parser->objc_pq_context = true;
  decl = c_parser_objc_method_decl (parser, is_class_method, &attributes,
				    NULL);
  /* Forget protocol qualifiers now.  */
  parser->objc_pq_context = false;

  /* Do not allow the presence of attributes to hide an erroneous 
     method implementation in the interface section.  */
  if (!c_parser_next_token_is (parser, CPP_SEMICOLON))
    {
      c_parser_error (parser, "expected %<;%>");
      return;
    }
  
  if (decl != error_mark_node)
    objc_add_method_declaration (is_class_method, decl, attributes);

  c_parser_skip_until_found (parser, CPP_SEMICOLON, "expected %<;%>");
}

/* If we are at a position that method attributes may be present, check that 
   there are not any parsed already (a syntax error) and then collect any 
   specified at the current location.  Finally, if new attributes were present,
   check that the next token is legal ( ';' for decls and '{' for defs).  */
   
static bool 
c_parser_objc_maybe_method_attributes (c_parser* parser, tree* attributes)
{
  bool bad = false;
  if (*attributes)
    {
      c_parser_error (parser, 
		    "method attributes must be specified at the end only");
      *attributes = NULL_TREE;
      bad = true;
    }

  if (c_parser_next_token_is_keyword (parser, RID_ATTRIBUTE))
    *attributes = c_parser_attributes (parser);

  /* If there were no attributes here, just report any earlier error.  */
  if (*attributes == NULL_TREE || bad)
    return bad;

  /* If the attributes are followed by a ; or {, then just report any earlier
     error.  */
  if (c_parser_next_token_is (parser, CPP_SEMICOLON)
      || c_parser_next_token_is (parser, CPP_OPEN_BRACE))
    return bad;

  /* We've got attributes, but not at the end.  */
  c_parser_error (parser, 
		  "expected %<;%> or %<{%> after method attribute definition");
  return true;
}

/* Parse an objc-method-decl.

   objc-method-decl:
     ( objc-type-name ) objc-selector
     objc-selector
     ( objc-type-name ) objc-keyword-selector objc-optparmlist
     objc-keyword-selector objc-optparmlist
     attributes

   objc-keyword-selector:
     objc-keyword-decl
     objc-keyword-selector objc-keyword-decl

   objc-keyword-decl:
     objc-selector : ( objc-type-name ) identifier
     objc-selector : identifier
     : ( objc-type-name ) identifier
     : identifier

   objc-optparmlist:
     objc-optparms objc-optellipsis

   objc-optparms:
     empty
     objc-opt-parms , parameter-declaration

   objc-optellipsis:
     empty
     , ...
*/

static tree
c_parser_objc_method_decl (c_parser *parser, bool is_class_method,
			   tree *attributes, tree *expr)
{
  tree type = NULL_TREE;
  tree sel;
  tree parms = NULL_TREE;
  bool ellipsis = false;
  bool attr_err = false;

  *attributes = NULL_TREE;
  if (c_parser_next_token_is (parser, CPP_OPEN_PAREN))
    {
      c_parser_consume_token (parser);
      type = c_parser_objc_type_name (parser);
      c_parser_skip_until_found (parser, CPP_CLOSE_PAREN, "expected %<)%>");
    }
  sel = c_parser_objc_selector (parser);
  /* If there is no selector, or a colon follows, we have an
     objc-keyword-selector.  If there is a selector, and a colon does
     not follow, that selector ends the objc-method-decl.  */
  if (!sel || c_parser_next_token_is (parser, CPP_COLON))
    {
      tree tsel = sel;
      tree list = NULL_TREE;
      while (true)
	{
	  tree atype = NULL_TREE, id, keyworddecl;
	  tree param_attr = NULL_TREE;
	  if (!c_parser_require (parser, CPP_COLON, "expected %<:%>"))
	    break;
	  if (c_parser_next_token_is (parser, CPP_OPEN_PAREN))
	    {
	      c_parser_consume_token (parser);
	      atype = c_parser_objc_type_name (parser);
	      c_parser_skip_until_found (parser, CPP_CLOSE_PAREN,
					 "expected %<)%>");
	    }
	  /* New ObjC allows attributes on method parameters.  */
	  if (c_parser_next_token_is_keyword (parser, RID_ATTRIBUTE))
	    param_attr = c_parser_attributes (parser);
	  if (c_parser_next_token_is_not (parser, CPP_NAME))
	    {
	      c_parser_error (parser, "expected identifier");
	      return error_mark_node;
	    }
	  id = c_parser_peek_token (parser)->value;
	  c_parser_consume_token (parser);
	  keyworddecl = objc_build_keyword_decl (tsel, atype, id, param_attr);
	  list = chainon (list, keyworddecl);
	  tsel = c_parser_objc_selector (parser);
	  if (!tsel && c_parser_next_token_is_not (parser, CPP_COLON))
	    break;
	}

      attr_err |= c_parser_objc_maybe_method_attributes (parser, attributes) ;

      /* Parse the optional parameter list.  Optional Objective-C
	 method parameters follow the C syntax, and may include '...'
	 to denote a variable number of arguments.  */
      parms = make_node (TREE_LIST);
      while (c_parser_next_token_is (parser, CPP_COMMA))
	{
	  struct c_parm *parm;
	  c_parser_consume_token (parser);
	  if (c_parser_next_token_is (parser, CPP_ELLIPSIS))
	    {
	      ellipsis = true;
	      c_parser_consume_token (parser);
	      attr_err |= c_parser_objc_maybe_method_attributes 
						(parser, attributes) ;
	      break;
	    }
	  parm = c_parser_parameter_declaration (parser, NULL_TREE);
	  if (parm == NULL)
	    break;
	  parms = chainon (parms,
			   build_tree_list (NULL_TREE, grokparm (parm, expr)));
	}
      sel = list;
    }
  else
    attr_err |= c_parser_objc_maybe_method_attributes (parser, attributes) ;

  if (sel == NULL)
    {
      c_parser_error (parser, "objective-c method declaration is expected");
      return error_mark_node;
    }

  if (attr_err)
    return error_mark_node;

  return objc_build_method_signature (is_class_method, type, sel, parms, ellipsis);
}

/* Parse an objc-type-name.

   objc-type-name:
     objc-type-qualifiers[opt] type-name
     objc-type-qualifiers[opt]

   objc-type-qualifiers:
     objc-type-qualifier
     objc-type-qualifiers objc-type-qualifier

   objc-type-qualifier: one of
     in out inout bycopy byref oneway
*/

static tree
c_parser_objc_type_name (c_parser *parser)
{
  tree quals = NULL_TREE;
  struct c_type_name *type_name = NULL;
  tree type = NULL_TREE;
  while (true)
    {
      c_token *token = c_parser_peek_token (parser);
      if (token->type == CPP_KEYWORD
	  && (token->keyword == RID_IN
	      || token->keyword == RID_OUT
	      || token->keyword == RID_INOUT
	      || token->keyword == RID_BYCOPY
	      || token->keyword == RID_BYREF
	      || token->keyword == RID_ONEWAY))
	{
	  quals = chainon (build_tree_list (NULL_TREE, token->value), quals);
	  c_parser_consume_token (parser);
	}
      else
	break;
    }
  if (c_parser_next_tokens_start_typename (parser, cla_prefer_type))
    type_name = c_parser_type_name (parser);
  if (type_name)
    type = groktypename (type_name, NULL, NULL);

  /* If the type is unknown, and error has already been produced and
     we need to recover from the error.  In that case, use NULL_TREE
     for the type, as if no type had been specified; this will use the
     default type ('id') which is good for error recovery.  */
  if (type == error_mark_node)
    type = NULL_TREE;

  return build_tree_list (quals, type);
}

/* Parse objc-protocol-refs.

   objc-protocol-refs:
     < identifier-list >
*/

static tree
c_parser_objc_protocol_refs (c_parser *parser)
{
  tree list = NULL_TREE;
  gcc_assert (c_parser_next_token_is (parser, CPP_LESS));
  c_parser_consume_token (parser);
  /* Any identifiers, including those declared as type names, are OK
     here.  */
  while (true)
    {
      tree id;
      if (c_parser_next_token_is_not (parser, CPP_NAME))
	{
	  c_parser_error (parser, "expected identifier");
	  break;
	}
      id = c_parser_peek_token (parser)->value;
      list = chainon (list, build_tree_list (NULL_TREE, id));
      c_parser_consume_token (parser);
      if (c_parser_next_token_is (parser, CPP_COMMA))
	c_parser_consume_token (parser);
      else
	break;
    }
  c_parser_require (parser, CPP_GREATER, "expected %<>%>");
  return list;
}

/* Parse an objc-try-catch-finally-statement.

   objc-try-catch-finally-statement:
     @try compound-statement objc-catch-list[opt]
     @try compound-statement objc-catch-list[opt] @finally compound-statement

   objc-catch-list:
     @catch ( objc-catch-parameter-declaration ) compound-statement
     objc-catch-list @catch ( objc-catch-parameter-declaration ) compound-statement

   objc-catch-parameter-declaration:
     parameter-declaration
     '...'

   where '...' is to be interpreted literally, that is, it means CPP_ELLIPSIS.

   PS: This function is identical to cp_parser_objc_try_catch_finally_statement
   for C++.  Keep them in sync.  */   

static void
c_parser_objc_try_catch_finally_statement (c_parser *parser)
{
  location_t location;
  tree stmt;

  gcc_assert (c_parser_next_token_is_keyword (parser, RID_AT_TRY));
  c_parser_consume_token (parser);
  location = c_parser_peek_token (parser)->location;
  objc_maybe_warn_exceptions (location);
  stmt = c_parser_compound_statement (parser);
  objc_begin_try_stmt (location, stmt);

  while (c_parser_next_token_is_keyword (parser, RID_AT_CATCH))
    {
      struct c_parm *parm;
      tree parameter_declaration = error_mark_node;
      bool seen_open_paren = false;

      c_parser_consume_token (parser);
      if (!c_parser_require (parser, CPP_OPEN_PAREN, "expected %<(%>"))
	seen_open_paren = true;
      if (c_parser_next_token_is (parser, CPP_ELLIPSIS))
	{
	  /* We have "@catch (...)" (where the '...' are literally
	     what is in the code).  Skip the '...'.
	     parameter_declaration is set to NULL_TREE, and
	     objc_being_catch_clauses() knows that that means
	     '...'.  */
	  c_parser_consume_token (parser);
	  parameter_declaration = NULL_TREE;
	}
      else
	{
	  /* We have "@catch (NSException *exception)" or something
	     like that.  Parse the parameter declaration.  */
	  parm = c_parser_parameter_declaration (parser, NULL_TREE);
	  if (parm == NULL)
	    parameter_declaration = error_mark_node;
	  else
	    parameter_declaration = grokparm (parm, NULL);
	}
      if (seen_open_paren)
	c_parser_require (parser, CPP_CLOSE_PAREN, "expected %<)%>");
      else
	{
	  /* If there was no open parenthesis, we are recovering from
	     an error, and we are trying to figure out what mistake
	     the user has made.  */

	  /* If there is an immediate closing parenthesis, the user
	     probably forgot the opening one (ie, they typed "@catch
	     NSException *e)".  Parse the closing parenthesis and keep
	     going.  */
	  if (c_parser_next_token_is (parser, CPP_CLOSE_PAREN))
	    c_parser_consume_token (parser);
	  
	  /* If these is no immediate closing parenthesis, the user
	     probably doesn't know that parenthesis are required at
	     all (ie, they typed "@catch NSException *e").  So, just
	     forget about the closing parenthesis and keep going.  */
	}
      objc_begin_catch_clause (parameter_declaration);
      if (c_parser_require (parser, CPP_OPEN_BRACE, "expected %<{%>"))
	c_parser_compound_statement_nostart (parser);
      objc_finish_catch_clause ();
    }
  if (c_parser_next_token_is_keyword (parser, RID_AT_FINALLY))
    {
      c_parser_consume_token (parser);
      location = c_parser_peek_token (parser)->location;
      stmt = c_parser_compound_statement (parser);
      objc_build_finally_clause (location, stmt);
    }
  objc_finish_try_stmt ();
}

/* Parse an objc-synchronized-statement.

   objc-synchronized-statement:
     @synchronized ( expression ) compound-statement
*/

static void
c_parser_objc_synchronized_statement (c_parser *parser)
{
  location_t loc;
  tree expr, stmt;
  gcc_assert (c_parser_next_token_is_keyword (parser, RID_AT_SYNCHRONIZED));
  c_parser_consume_token (parser);
  loc = c_parser_peek_token (parser)->location;
  objc_maybe_warn_exceptions (loc);
  if (c_parser_require (parser, CPP_OPEN_PAREN, "expected %<(%>"))
    {
      struct c_expr ce = c_parser_expression (parser);
      ce = convert_lvalue_to_rvalue (loc, ce, false, false);
      expr = ce.value;
      expr = c_fully_fold (expr, false, NULL);
      c_parser_skip_until_found (parser, CPP_CLOSE_PAREN, "expected %<)%>");
    }
  else
    expr = error_mark_node;
  stmt = c_parser_compound_statement (parser);
  objc_build_synchronized (loc, expr, stmt);
}

/* Parse an objc-selector; return NULL_TREE without an error if the
   next token is not an objc-selector.

   objc-selector:
     identifier
     one of
       enum struct union if else while do for switch case default
       break continue return goto asm sizeof typeof __alignof
       unsigned long const short volatile signed restrict _Complex
       in out inout bycopy byref oneway int char float double void _Bool
       _Atomic

   ??? Why this selection of keywords but not, for example, storage
   class specifiers?  */

static tree
c_parser_objc_selector (c_parser *parser)
{
  c_token *token = c_parser_peek_token (parser);
  tree value = token->value;
  if (token->type == CPP_NAME)
    {
      c_parser_consume_token (parser);
      return value;
    }
  if (token->type != CPP_KEYWORD)
    return NULL_TREE;
  switch (token->keyword)
    {
    case RID_ENUM:
    case RID_STRUCT:
    case RID_UNION:
    case RID_IF:
    case RID_ELSE:
    case RID_WHILE:
    case RID_DO:
    case RID_FOR:
    case RID_SWITCH:
    case RID_CASE:
    case RID_DEFAULT:
    case RID_BREAK:
    case RID_CONTINUE:
    case RID_RETURN:
    case RID_GOTO:
    case RID_ASM:
    case RID_SIZEOF:
    case RID_TYPEOF:
    case RID_ALIGNOF:
    case RID_UNSIGNED:
    case RID_LONG:
    case RID_INT128:
    case RID_CONST:
    case RID_SHORT:
    case RID_VOLATILE:
    case RID_SIGNED:
    case RID_RESTRICT:
    case RID_COMPLEX:
    case RID_IN:
    case RID_OUT:
    case RID_INOUT:
    case RID_BYCOPY:
    case RID_BYREF:
    case RID_ONEWAY:
    case RID_INT:
    case RID_CHAR:
    case RID_FLOAT:
    case RID_DOUBLE:
    case RID_VOID:
    case RID_BOOL:
    case RID_ATOMIC:
      c_parser_consume_token (parser);
      return value;
    default:
      return NULL_TREE;
    }
}

/* Parse an objc-selector-arg.

   objc-selector-arg:
     objc-selector
     objc-keywordname-list

   objc-keywordname-list:
     objc-keywordname
     objc-keywordname-list objc-keywordname

   objc-keywordname:
     objc-selector :
     :
*/

static tree
c_parser_objc_selector_arg (c_parser *parser)
{
  tree sel = c_parser_objc_selector (parser);
  tree list = NULL_TREE;
  if (sel && c_parser_next_token_is_not (parser, CPP_COLON))
    return sel;
  while (true)
    {
      if (!c_parser_require (parser, CPP_COLON, "expected %<:%>"))
	return list;
      list = chainon (list, build_tree_list (sel, NULL_TREE));
      sel = c_parser_objc_selector (parser);
      if (!sel && c_parser_next_token_is_not (parser, CPP_COLON))
	break;
    }
  return list;
}

/* Parse an objc-receiver.

   objc-receiver:
     expression
     class-name
     type-name
*/

static tree
c_parser_objc_receiver (c_parser *parser)
{
  location_t loc = c_parser_peek_token (parser)->location;

  if (c_parser_peek_token (parser)->type == CPP_NAME
      && (c_parser_peek_token (parser)->id_kind == C_ID_TYPENAME
	  || c_parser_peek_token (parser)->id_kind == C_ID_CLASSNAME))
    {
      tree id = c_parser_peek_token (parser)->value;
      c_parser_consume_token (parser);
      return objc_get_class_reference (id);
    }
  struct c_expr ce = c_parser_expression (parser);
  ce = convert_lvalue_to_rvalue (loc, ce, false, false);
  return c_fully_fold (ce.value, false, NULL);
}

/* Parse objc-message-args.

   objc-message-args:
     objc-selector
     objc-keywordarg-list

   objc-keywordarg-list:
     objc-keywordarg
     objc-keywordarg-list objc-keywordarg

   objc-keywordarg:
     objc-selector : objc-keywordexpr
     : objc-keywordexpr
*/

static tree
c_parser_objc_message_args (c_parser *parser)
{
  tree sel = c_parser_objc_selector (parser);
  tree list = NULL_TREE;
  if (sel && c_parser_next_token_is_not (parser, CPP_COLON))
    return sel;
  while (true)
    {
      tree keywordexpr;
      if (!c_parser_require (parser, CPP_COLON, "expected %<:%>"))
	return error_mark_node;
      keywordexpr = c_parser_objc_keywordexpr (parser);
      list = chainon (list, build_tree_list (sel, keywordexpr));
      sel = c_parser_objc_selector (parser);
      if (!sel && c_parser_next_token_is_not (parser, CPP_COLON))
	break;
    }
  return list;
}

/* Parse an objc-keywordexpr.

   objc-keywordexpr:
     nonempty-expr-list
*/

static tree
c_parser_objc_keywordexpr (c_parser *parser)
{
  tree ret;
  vec<tree, va_gc> *expr_list = c_parser_expr_list (parser, true, true,
						NULL, NULL, NULL);
  if (vec_safe_length (expr_list) == 1)
    {
      /* Just return the expression, remove a level of
	 indirection.  */
      ret = (*expr_list)[0];
    }
  else
    {
      /* We have a comma expression, we will collapse later.  */
      ret = build_tree_list_vec (expr_list);
    }
  release_tree_vector (expr_list);
  return ret;
}

/* A check, needed in several places, that ObjC interface, implementation or
   method definitions are not prefixed by incorrect items.  */
static bool
c_parser_objc_diagnose_bad_element_prefix (c_parser *parser, 
					   struct c_declspecs *specs)
{
  if (!specs->declspecs_seen_p || specs->non_sc_seen_p
      || specs->typespec_kind != ctsk_none)
    {
      c_parser_error (parser, 
      		      "no type or storage class may be specified here,");
      c_parser_skip_to_end_of_block_or_statement (parser);
      return true;
    }
  return false;
}

/* Parse an Objective-C @property declaration.  The syntax is:

   objc-property-declaration:
     '@property' objc-property-attributes[opt] struct-declaration ;

   objc-property-attributes:
    '(' objc-property-attribute-list ')'

   objc-property-attribute-list:
     objc-property-attribute
     objc-property-attribute-list, objc-property-attribute

   objc-property-attribute
     'getter' = identifier
     'setter' = identifier
     'readonly'
     'readwrite'
     'assign'
     'retain'
     'copy'
     'nonatomic'

  For example:
    @property NSString *name;
    @property (readonly) id object;
    @property (retain, nonatomic, getter=getTheName) id name;
    @property int a, b, c;

  PS: This function is identical to cp_parser_objc_at_propery_declaration
  for C++.  Keep them in sync.  */
static void
c_parser_objc_at_property_declaration (c_parser *parser)
{
  /* The following variables hold the attributes of the properties as
     parsed.  They are 'false' or 'NULL_TREE' if the attribute was not
     seen.  When we see an attribute, we set them to 'true' (if they
     are boolean properties) or to the identifier (if they have an
     argument, ie, for getter and setter).  Note that here we only
     parse the list of attributes, check the syntax and accumulate the
     attributes that we find.  objc_add_property_declaration() will
     then process the information.  */
  bool property_assign = false;
  bool property_copy = false;
  tree property_getter_ident = NULL_TREE;
  bool property_nonatomic = false;
  bool property_readonly = false;
  bool property_readwrite = false;
  bool property_retain = false;
  tree property_setter_ident = NULL_TREE;

  /* 'properties' is the list of properties that we read.  Usually a
     single one, but maybe more (eg, in "@property int a, b, c;" there
     are three).  */
  tree properties;
  location_t loc;

  loc = c_parser_peek_token (parser)->location;
  gcc_assert (c_parser_next_token_is_keyword (parser, RID_AT_PROPERTY));

  c_parser_consume_token (parser);  /* Eat '@property'.  */

  /* Parse the optional attribute list...  */
  if (c_parser_next_token_is (parser, CPP_OPEN_PAREN))
    {
      /* Eat the '(' */
      c_parser_consume_token (parser);
      
      /* Property attribute keywords are valid now.  */
      parser->objc_property_attr_context = true;

      while (true)
	{
	  bool syntax_error = false;
	  c_token *token = c_parser_peek_token (parser);
	  enum rid keyword;

	  if (token->type != CPP_KEYWORD)
	    {
	      if (token->type == CPP_CLOSE_PAREN)
		c_parser_error (parser, "expected identifier");
	      else
		{
		  c_parser_consume_token (parser);
		  c_parser_error (parser, "unknown property attribute");
		}
	      break;
	    }
	  keyword = token->keyword;
	  c_parser_consume_token (parser);
	  switch (keyword)
	    {
	    case RID_ASSIGN:    property_assign = true;    break;
	    case RID_COPY:      property_copy = true;      break;
	    case RID_NONATOMIC: property_nonatomic = true; break;
	    case RID_READONLY:  property_readonly = true;  break;
	    case RID_READWRITE: property_readwrite = true; break;
	    case RID_RETAIN:    property_retain = true;    break;

	    case RID_GETTER:
	    case RID_SETTER:
	      if (c_parser_next_token_is_not (parser, CPP_EQ))
		{
		  if (keyword == RID_GETTER)
		    c_parser_error (parser,
				    "missing %<=%> (after %<getter%> attribute)");
		  else
		    c_parser_error (parser,
				    "missing %<=%> (after %<setter%> attribute)");
		  syntax_error = true;
		  break;
		}
	      c_parser_consume_token (parser); /* eat the = */
	      if (c_parser_next_token_is_not (parser, CPP_NAME))
		{
		  c_parser_error (parser, "expected identifier");
		  syntax_error = true;
		  break;
		}
	      if (keyword == RID_SETTER)
		{
		  if (property_setter_ident != NULL_TREE)
		    c_parser_error (parser, "the %<setter%> attribute may only be specified once");
		  else
		    property_setter_ident = c_parser_peek_token (parser)->value;
		  c_parser_consume_token (parser);
		  if (c_parser_next_token_is_not (parser, CPP_COLON))
		    c_parser_error (parser, "setter name must terminate with %<:%>");
		  else
		    c_parser_consume_token (parser);
		}
	      else
		{
		  if (property_getter_ident != NULL_TREE)
		    c_parser_error (parser, "the %<getter%> attribute may only be specified once");
		  else
		    property_getter_ident = c_parser_peek_token (parser)->value;
		  c_parser_consume_token (parser);
		}
	      break;
	    default:
	      c_parser_error (parser, "unknown property attribute");
	      syntax_error = true;
	      break;
	    }

	  if (syntax_error)
	    break;
	  
	  if (c_parser_next_token_is (parser, CPP_COMMA))
	    c_parser_consume_token (parser);
	  else
	    break;
	}
      parser->objc_property_attr_context = false;
      c_parser_skip_until_found (parser, CPP_CLOSE_PAREN, "expected %<)%>");
    }
  /* ... and the property declaration(s).  */
  properties = c_parser_struct_declaration (parser);

  if (properties == error_mark_node)
    {
      c_parser_skip_until_found (parser, CPP_SEMICOLON, NULL);
      parser->error = false;
      return;
    }

  if (properties == NULL_TREE)
    c_parser_error (parser, "expected identifier");
  else
    {
      /* Comma-separated properties are chained together in
	 reverse order; add them one by one.  */
      properties = nreverse (properties);
      
      for (; properties; properties = TREE_CHAIN (properties))
	objc_add_property_declaration (loc, copy_node (properties),
				       property_readonly, property_readwrite,
				       property_assign, property_retain,
				       property_copy, property_nonatomic,
				       property_getter_ident, property_setter_ident);
    }

  c_parser_skip_until_found (parser, CPP_SEMICOLON, "expected %<;%>");
  parser->error = false;
}

/* Parse an Objective-C @synthesize declaration.  The syntax is:

   objc-synthesize-declaration:
     @synthesize objc-synthesize-identifier-list ;

   objc-synthesize-identifier-list:
     objc-synthesize-identifier
     objc-synthesize-identifier-list, objc-synthesize-identifier

   objc-synthesize-identifier
     identifier
     identifier = identifier

  For example:
    @synthesize MyProperty;
    @synthesize OneProperty, AnotherProperty=MyIvar, YetAnotherProperty;

  PS: This function is identical to cp_parser_objc_at_synthesize_declaration
  for C++.  Keep them in sync.
*/
static void
c_parser_objc_at_synthesize_declaration (c_parser *parser)
{
  tree list = NULL_TREE;
  location_t loc;
  gcc_assert (c_parser_next_token_is_keyword (parser, RID_AT_SYNTHESIZE));
  loc = c_parser_peek_token (parser)->location;

  c_parser_consume_token (parser);
  while (true)
    {
      tree property, ivar;
      if (c_parser_next_token_is_not (parser, CPP_NAME))
	{
	  c_parser_error (parser, "expected identifier");
	  c_parser_skip_until_found (parser, CPP_SEMICOLON, NULL);
	  /* Once we find the semicolon, we can resume normal parsing.
	     We have to reset parser->error manually because
	     c_parser_skip_until_found() won't reset it for us if the
	     next token is precisely a semicolon.  */
	  parser->error = false;
	  return;
	}
      property = c_parser_peek_token (parser)->value;
      c_parser_consume_token (parser);
      if (c_parser_next_token_is (parser, CPP_EQ))
	{
	  c_parser_consume_token (parser);
	  if (c_parser_next_token_is_not (parser, CPP_NAME))
	    {
	      c_parser_error (parser, "expected identifier");
	      c_parser_skip_until_found (parser, CPP_SEMICOLON, NULL);
	      parser->error = false;
	      return;
	    }
	  ivar = c_parser_peek_token (parser)->value;
	  c_parser_consume_token (parser);
	}
      else
	ivar = NULL_TREE;
      list = chainon (list, build_tree_list (ivar, property));
      if (c_parser_next_token_is (parser, CPP_COMMA))
	c_parser_consume_token (parser);
      else
	break;
    }
  c_parser_skip_until_found (parser, CPP_SEMICOLON, "expected %<;%>");
  objc_add_synthesize_declaration (loc, list);
}

/* Parse an Objective-C @dynamic declaration.  The syntax is:

   objc-dynamic-declaration:
     @dynamic identifier-list ;

   For example:
     @dynamic MyProperty;
     @dynamic MyProperty, AnotherProperty;

  PS: This function is identical to cp_parser_objc_at_dynamic_declaration
  for C++.  Keep them in sync.
*/
static void
c_parser_objc_at_dynamic_declaration (c_parser *parser)
{
  tree list = NULL_TREE;
  location_t loc;
  gcc_assert (c_parser_next_token_is_keyword (parser, RID_AT_DYNAMIC));
  loc = c_parser_peek_token (parser)->location;

  c_parser_consume_token (parser);
  while (true)
    {
      tree property;
      if (c_parser_next_token_is_not (parser, CPP_NAME))
	{
	  c_parser_error (parser, "expected identifier");
	  c_parser_skip_until_found (parser, CPP_SEMICOLON, NULL);
	  parser->error = false;
	  return;
	}
      property = c_parser_peek_token (parser)->value;
      list = chainon (list, build_tree_list (NULL_TREE, property));
      c_parser_consume_token (parser);
      if (c_parser_next_token_is (parser, CPP_COMMA))
	c_parser_consume_token (parser);
      else
	break;
    }
  c_parser_skip_until_found (parser, CPP_SEMICOLON, "expected %<;%>");
  objc_add_dynamic_declaration (loc, list);
}


/* Handle pragmas.  Some OpenMP pragmas are associated with, and therefore
   should be considered, statements.  ALLOW_STMT is true if we're within
   the context of a function and such pragmas are to be allowed.  Returns
   true if we actually parsed such a pragma.  */

static bool
c_parser_pragma (c_parser *parser, enum pragma_context context)
{
  unsigned int id;

  id = c_parser_peek_token (parser)->pragma_kind;
  gcc_assert (id != PRAGMA_NONE);

  switch (id)
    {
    case PRAGMA_OMP_BARRIER:
      if (context != pragma_compound)
	{
	  if (context == pragma_stmt)
	    c_parser_error (parser, "%<#pragma omp barrier%> may only be "
			    "used in compound statements");
	  goto bad_stmt;
	}
      c_parser_omp_barrier (parser);
      return false;

    case PRAGMA_OMP_FLUSH:
      if (context != pragma_compound)
	{
	  if (context == pragma_stmt)
	    c_parser_error (parser, "%<#pragma omp flush%> may only be "
			    "used in compound statements");
	  goto bad_stmt;
	}
      c_parser_omp_flush (parser);
      return false;

    case PRAGMA_OMP_TASKWAIT:
      if (context != pragma_compound)
	{
	  if (context == pragma_stmt)
	    c_parser_error (parser, "%<#pragma omp taskwait%> may only be "
			    "used in compound statements");
	  goto bad_stmt;
	}
      c_parser_omp_taskwait (parser);
      return false;

    case PRAGMA_OMP_TASKYIELD:
      if (context != pragma_compound)
	{
	  if (context == pragma_stmt)
	    c_parser_error (parser, "%<#pragma omp taskyield%> may only be "
			    "used in compound statements");
	  goto bad_stmt;
	}
      c_parser_omp_taskyield (parser);
      return false;

    case PRAGMA_OMP_CANCEL:
      if (context != pragma_compound)
	{
	  if (context == pragma_stmt)
	    c_parser_error (parser, "%<#pragma omp cancel%> may only be "
			    "used in compound statements");
	  goto bad_stmt;
	}
      c_parser_omp_cancel (parser);
      return false;

    case PRAGMA_OMP_CANCELLATION_POINT:
      if (context != pragma_compound)
	{
	  if (context == pragma_stmt)
	    c_parser_error (parser, "%<#pragma omp cancellation point%> may "
				    "only be used in compound statements");
	  goto bad_stmt;
	}
      c_parser_omp_cancellation_point (parser);
      return false;

    case PRAGMA_OMP_THREADPRIVATE:
      c_parser_omp_threadprivate (parser);
      return false;

    case PRAGMA_OMP_TARGET:
      return c_parser_omp_target (parser, context);

    case PRAGMA_OMP_END_DECLARE_TARGET:
      c_parser_omp_end_declare_target (parser);
      return false;

    case PRAGMA_OMP_SECTION:
      error_at (c_parser_peek_token (parser)->location,
		"%<#pragma omp section%> may only be used in "
		"%<#pragma omp sections%> construct");
      c_parser_skip_until_found (parser, CPP_PRAGMA_EOL, NULL);
      return false;

    case PRAGMA_OMP_DECLARE_REDUCTION:
      c_parser_omp_declare (parser, context);
      return false;
    case PRAGMA_IVDEP:
      c_parser_consume_pragma (parser);
      c_parser_skip_to_pragma_eol (parser);
      if (!c_parser_next_token_is_keyword (parser, RID_FOR)
	  && !c_parser_next_token_is_keyword (parser, RID_WHILE)
	  && !c_parser_next_token_is_keyword (parser, RID_DO))
	{
	  c_parser_error (parser, "for, while or do statement expected");
	  return false;
	}
      if (c_parser_next_token_is_keyword (parser, RID_FOR))
	c_parser_for_statement (parser, true);
      else if (c_parser_next_token_is_keyword (parser, RID_WHILE))
	c_parser_while_statement (parser, true);
      else
	c_parser_do_statement (parser, true);
      return false;

    case PRAGMA_GCC_PCH_PREPROCESS:
      c_parser_error (parser, "%<#pragma GCC pch_preprocess%> must be first");
      c_parser_skip_until_found (parser, CPP_PRAGMA_EOL, NULL);
      return false;

    default:
      if (id < PRAGMA_FIRST_EXTERNAL)
	{
	  if (context != pragma_stmt && context != pragma_compound)
	    {
	    bad_stmt:
	      c_parser_error (parser, "expected declaration specifiers");
	      c_parser_skip_until_found (parser, CPP_PRAGMA_EOL, NULL);
	      return false;
	    }
	  c_parser_omp_construct (parser);
	  return true;
	}
      break;
    }

  c_parser_consume_pragma (parser);
  c_invoke_pragma_handler (id);

  /* Skip to EOL, but suppress any error message.  Those will have been
     generated by the handler routine through calling error, as opposed
     to calling c_parser_error.  */
  parser->error = true;
  c_parser_skip_to_pragma_eol (parser);

  return false;
}

/* The interface the pragma parsers have to the lexer.  */

enum cpp_ttype
pragma_lex (tree *value)
{
  c_token *tok = c_parser_peek_token (the_parser);
  enum cpp_ttype ret = tok->type;

  *value = tok->value;
  if (ret == CPP_PRAGMA_EOL || ret == CPP_EOF)
    ret = CPP_EOF;
  else
    {
      if (ret == CPP_KEYWORD)
	ret = CPP_NAME;
      c_parser_consume_token (the_parser);
    }

  return ret;
}

static void
c_parser_pragma_pch_preprocess (c_parser *parser)
{
  tree name = NULL;

  c_parser_consume_pragma (parser);
  if (c_parser_next_token_is (parser, CPP_STRING))
    {
      name = c_parser_peek_token (parser)->value;
      c_parser_consume_token (parser);
    }
  else
    c_parser_error (parser, "expected string literal");
  c_parser_skip_to_pragma_eol (parser);

  if (name)
    c_common_pch_pragma (parse_in, TREE_STRING_POINTER (name));
}

/* OpenMP 2.5 / 3.0 / 3.1 / 4.0 parsing routines.  */

/* Returns name of the next clause.
   If the clause is not recognized PRAGMA_OMP_CLAUSE_NONE is returned and
   the token is not consumed.  Otherwise appropriate pragma_omp_clause is
   returned and the token is consumed.  */

static pragma_omp_clause
c_parser_omp_clause_name (c_parser *parser)
{
  pragma_omp_clause result = PRAGMA_OMP_CLAUSE_NONE;

  if (c_parser_next_token_is_keyword (parser, RID_IF))
    result = PRAGMA_OMP_CLAUSE_IF;
  else if (c_parser_next_token_is_keyword (parser, RID_DEFAULT))
    result = PRAGMA_OMP_CLAUSE_DEFAULT;
  else if (c_parser_next_token_is_keyword (parser, RID_FOR))
    result = PRAGMA_OMP_CLAUSE_FOR;
  else if (c_parser_next_token_is (parser, CPP_NAME))
    {
      const char *p = IDENTIFIER_POINTER (c_parser_peek_token (parser)->value);

      switch (p[0])
	{
	case 'a':
	  if (!strcmp ("aligned", p))
	    result = PRAGMA_OMP_CLAUSE_ALIGNED;
	  break;
	case 'c':
	  if (!strcmp ("collapse", p))
	    result = PRAGMA_OMP_CLAUSE_COLLAPSE;
	  else if (!strcmp ("copyin", p))
	    result = PRAGMA_OMP_CLAUSE_COPYIN;
          else if (!strcmp ("copyprivate", p))
	    result = PRAGMA_OMP_CLAUSE_COPYPRIVATE;
	  break;
	case 'd':
	  if (!strcmp ("depend", p))
	    result = PRAGMA_OMP_CLAUSE_DEPEND;
	  else if (!strcmp ("device", p))
	    result = PRAGMA_OMP_CLAUSE_DEVICE;
	  else if (!strcmp ("dist_schedule", p))
	    result = PRAGMA_OMP_CLAUSE_DIST_SCHEDULE;
	  break;
	case 'f':
	  if (!strcmp ("final", p))
	    result = PRAGMA_OMP_CLAUSE_FINAL;
	  else if (!strcmp ("firstprivate", p))
	    result = PRAGMA_OMP_CLAUSE_FIRSTPRIVATE;
	  else if (!strcmp ("from", p))
	    result = PRAGMA_OMP_CLAUSE_FROM;
	  break;
	case 'i':
	  if (!strcmp ("inbranch", p))
	    result = PRAGMA_OMP_CLAUSE_INBRANCH;
	  break;
	case 'l':
	  if (!strcmp ("lastprivate", p))
	    result = PRAGMA_OMP_CLAUSE_LASTPRIVATE;
	  else if (!strcmp ("linear", p))
	    result = PRAGMA_OMP_CLAUSE_LINEAR;
	  break;
	case 'm':
	  if (!strcmp ("map", p))
	    result = PRAGMA_OMP_CLAUSE_MAP;
	  else if (!strcmp ("mergeable", p))
	    result = PRAGMA_OMP_CLAUSE_MERGEABLE;
	  break;
	case 'n':
	  if (!strcmp ("notinbranch", p))
	    result = PRAGMA_OMP_CLAUSE_NOTINBRANCH;
	  else if (!strcmp ("nowait", p))
	    result = PRAGMA_OMP_CLAUSE_NOWAIT;
	  else if (!strcmp ("num_teams", p))
	    result = PRAGMA_OMP_CLAUSE_NUM_TEAMS;
	  else if (!strcmp ("num_threads", p))
	    result = PRAGMA_OMP_CLAUSE_NUM_THREADS;
	  break;
	case 'o':
	  if (!strcmp ("ordered", p))
	    result = PRAGMA_OMP_CLAUSE_ORDERED;
	  break;
	case 'p':
	  if (!strcmp ("parallel", p))
	    result = PRAGMA_OMP_CLAUSE_PARALLEL;
	  else if (!strcmp ("private", p))
	    result = PRAGMA_OMP_CLAUSE_PRIVATE;
	  else if (!strcmp ("proc_bind", p))
	    result = PRAGMA_OMP_CLAUSE_PROC_BIND;
	  break;
	case 'r':
	  if (!strcmp ("reduction", p))
	    result = PRAGMA_OMP_CLAUSE_REDUCTION;
	  break;
	case 's':
	  if (!strcmp ("safelen", p))
	    result = PRAGMA_OMP_CLAUSE_SAFELEN;
	  else if (!strcmp ("schedule", p))
	    result = PRAGMA_OMP_CLAUSE_SCHEDULE;
	  else if (!strcmp ("sections", p))
	    result = PRAGMA_OMP_CLAUSE_SECTIONS;
	  else if (!strcmp ("shared", p))
	    result = PRAGMA_OMP_CLAUSE_SHARED;
	  else if (!strcmp ("simdlen", p))
	    result = PRAGMA_OMP_CLAUSE_SIMDLEN;
	  break;
	case 't':
	  if (!strcmp ("taskgroup", p))
	    result = PRAGMA_OMP_CLAUSE_TASKGROUP;
	  else if (!strcmp ("thread_limit", p))
	    result = PRAGMA_OMP_CLAUSE_THREAD_LIMIT;
	  else if (!strcmp ("to", p))
	    result = PRAGMA_OMP_CLAUSE_TO;
	  break;
	case 'u':
	  if (!strcmp ("uniform", p))
	    result = PRAGMA_OMP_CLAUSE_UNIFORM;
	  else if (!strcmp ("untied", p))
	    result = PRAGMA_OMP_CLAUSE_UNTIED;
	  break;
	}
    }

  if (result != PRAGMA_OMP_CLAUSE_NONE)
    c_parser_consume_token (parser);

  return result;
}

/* Validate that a clause of the given type does not already exist.  */

static void
check_no_duplicate_clause (tree clauses, enum omp_clause_code code,
			   const char *name)
{
  tree c;

  for (c = clauses; c ; c = OMP_CLAUSE_CHAIN (c))
    if (OMP_CLAUSE_CODE (c) == code)
      {
	location_t loc = OMP_CLAUSE_LOCATION (c);
	error_at (loc, "too many %qs clauses", name);
	break;
      }
}

/* OpenMP 2.5:
   variable-list:
     identifier
     variable-list , identifier

   If KIND is nonzero, create the appropriate node and install the
   decl in OMP_CLAUSE_DECL and add the node to the head of the list.
   If KIND is nonzero, CLAUSE_LOC is the location of the clause.

   If KIND is zero, create a TREE_LIST with the decl in TREE_PURPOSE;
   return the list created.  */

static tree
c_parser_omp_variable_list (c_parser *parser,
			    location_t clause_loc,
			    enum omp_clause_code kind, tree list)
{
  if (c_parser_next_token_is_not (parser, CPP_NAME)
      || c_parser_peek_token (parser)->id_kind != C_ID_ID)
    c_parser_error (parser, "expected identifier");

  while (c_parser_next_token_is (parser, CPP_NAME)
	 && c_parser_peek_token (parser)->id_kind == C_ID_ID)
    {
      tree t = lookup_name (c_parser_peek_token (parser)->value);

      if (t == NULL_TREE)
	{
	  undeclared_variable (c_parser_peek_token (parser)->location,
			       c_parser_peek_token (parser)->value);
	  t = error_mark_node;
	}

      c_parser_consume_token (parser);

      if (t == error_mark_node)
	;
      else if (kind != 0)
	{
	  switch (kind)
	    {
	    case OMP_CLAUSE_MAP:
	    case OMP_CLAUSE_FROM:
	    case OMP_CLAUSE_TO:
	    case OMP_CLAUSE_DEPEND:
	      while (c_parser_next_token_is (parser, CPP_OPEN_SQUARE))
		{
		  tree low_bound = NULL_TREE, length = NULL_TREE;

		  c_parser_consume_token (parser);
		  if (!c_parser_next_token_is (parser, CPP_COLON))
		    low_bound = c_parser_expression (parser).value;
		  if (c_parser_next_token_is (parser, CPP_CLOSE_SQUARE))
		    length = integer_one_node;
		  else
		    {
		      /* Look for `:'.  */
		      if (!c_parser_require (parser, CPP_COLON,
					     "expected %<:%>"))
			{
			  t = error_mark_node;
			  break;
			}
		      if (!c_parser_next_token_is (parser, CPP_CLOSE_SQUARE))
			length = c_parser_expression (parser).value;
		    }
		  /* Look for the closing `]'.  */
		  if (!c_parser_require (parser, CPP_CLOSE_SQUARE,
					 "expected %<]%>"))
		    {
		      t = error_mark_node;
		      break;
		    }
		  t = tree_cons (low_bound, length, t);
		}
	      break;
	    default:
	      break;
	    }

	  if (t != error_mark_node)
	    {
	      tree u = build_omp_clause (clause_loc, kind);
	      OMP_CLAUSE_DECL (u) = t;
	      OMP_CLAUSE_CHAIN (u) = list;
	      list = u;
	    }
	}
      else
	list = tree_cons (t, NULL_TREE, list);

      if (c_parser_next_token_is_not (parser, CPP_COMMA))
	break;

      c_parser_consume_token (parser);
    }

  return list;
}

/* Similarly, but expect leading and trailing parenthesis.  This is a very
   common case for omp clauses.  */

static tree
c_parser_omp_var_list_parens (c_parser *parser, enum omp_clause_code kind,
			      tree list)
{
  /* The clauses location.  */
  location_t loc = c_parser_peek_token (parser)->location;

  if (c_parser_require (parser, CPP_OPEN_PAREN, "expected %<(%>"))
    {
      list = c_parser_omp_variable_list (parser, loc, kind, list);
      c_parser_skip_until_found (parser, CPP_CLOSE_PAREN, "expected %<)%>");
    }
  return list;
}

/* OpenMP 3.0:
   collapse ( constant-expression ) */

static tree
c_parser_omp_clause_collapse (c_parser *parser, tree list)
{
  tree c, num = error_mark_node;
  HOST_WIDE_INT n;
  location_t loc;

  check_no_duplicate_clause (list, OMP_CLAUSE_COLLAPSE, "collapse");

  loc = c_parser_peek_token (parser)->location;
  if (c_parser_require (parser, CPP_OPEN_PAREN, "expected %<(%>"))
    {
      num = c_parser_expr_no_commas (parser, NULL).value;
      c_parser_skip_until_found (parser, CPP_CLOSE_PAREN, "expected %<)%>");
    }
  if (num == error_mark_node)
    return list;
  mark_exp_read (num);
  num = c_fully_fold (num, false, NULL);
  if (!INTEGRAL_TYPE_P (TREE_TYPE (num))
      || !host_integerp (num, 0)
      || (n = tree_low_cst (num, 0)) <= 0
      || (int) n != n)
    {
      error_at (loc,
		"collapse argument needs positive constant integer expression");
      return list;
    }
  c = build_omp_clause (loc, OMP_CLAUSE_COLLAPSE);
  OMP_CLAUSE_COLLAPSE_EXPR (c) = num;
  OMP_CLAUSE_CHAIN (c) = list;
  return c;
}

/* OpenMP 2.5:
   copyin ( variable-list ) */

static tree
c_parser_omp_clause_copyin (c_parser *parser, tree list)
{
  return c_parser_omp_var_list_parens (parser, OMP_CLAUSE_COPYIN, list);
}

/* OpenMP 2.5:
   copyprivate ( variable-list ) */

static tree
c_parser_omp_clause_copyprivate (c_parser *parser, tree list)
{
  return c_parser_omp_var_list_parens (parser, OMP_CLAUSE_COPYPRIVATE, list);
}

/* OpenMP 2.5:
   default ( shared | none ) */

static tree
c_parser_omp_clause_default (c_parser *parser, tree list)
{
  enum omp_clause_default_kind kind = OMP_CLAUSE_DEFAULT_UNSPECIFIED;
  location_t loc = c_parser_peek_token (parser)->location;
  tree c;

  if (!c_parser_require (parser, CPP_OPEN_PAREN, "expected %<(%>"))
    return list;
  if (c_parser_next_token_is (parser, CPP_NAME))
    {
      const char *p = IDENTIFIER_POINTER (c_parser_peek_token (parser)->value);

      switch (p[0])
	{
	case 'n':
	  if (strcmp ("none", p) != 0)
	    goto invalid_kind;
	  kind = OMP_CLAUSE_DEFAULT_NONE;
	  break;

	case 's':
	  if (strcmp ("shared", p) != 0)
	    goto invalid_kind;
	  kind = OMP_CLAUSE_DEFAULT_SHARED;
	  break;

	default:
	  goto invalid_kind;
	}

      c_parser_consume_token (parser);
    }
  else
    {
    invalid_kind:
      c_parser_error (parser, "expected %<none%> or %<shared%>");
    }
  c_parser_skip_until_found (parser, CPP_CLOSE_PAREN, "expected %<)%>");

  if (kind == OMP_CLAUSE_DEFAULT_UNSPECIFIED)
    return list;

  check_no_duplicate_clause (list, OMP_CLAUSE_DEFAULT, "default");
  c = build_omp_clause (loc, OMP_CLAUSE_DEFAULT);
  OMP_CLAUSE_CHAIN (c) = list;
  OMP_CLAUSE_DEFAULT_KIND (c) = kind;

  return c;
}

/* OpenMP 2.5:
   firstprivate ( variable-list ) */

static tree
c_parser_omp_clause_firstprivate (c_parser *parser, tree list)
{
  return c_parser_omp_var_list_parens (parser, OMP_CLAUSE_FIRSTPRIVATE, list);
}

/* OpenMP 3.1:
   final ( expression ) */

static tree
c_parser_omp_clause_final (c_parser *parser, tree list)
{
  location_t loc = c_parser_peek_token (parser)->location;
  if (c_parser_next_token_is (parser, CPP_OPEN_PAREN))
    {
      tree t = c_parser_paren_condition (parser);
      tree c;

      check_no_duplicate_clause (list, OMP_CLAUSE_FINAL, "final");

      c = build_omp_clause (loc, OMP_CLAUSE_FINAL);
      OMP_CLAUSE_FINAL_EXPR (c) = t;
      OMP_CLAUSE_CHAIN (c) = list;
      list = c;
    }
  else
    c_parser_error (parser, "expected %<(%>");

  return list;
}

/* OpenMP 2.5:
   if ( expression ) */

static tree
c_parser_omp_clause_if (c_parser *parser, tree list)
{
  location_t loc = c_parser_peek_token (parser)->location;
  if (c_parser_next_token_is (parser, CPP_OPEN_PAREN))
    {
      tree t = c_parser_paren_condition (parser);
      tree c;

      check_no_duplicate_clause (list, OMP_CLAUSE_IF, "if");

      c = build_omp_clause (loc, OMP_CLAUSE_IF);
      OMP_CLAUSE_IF_EXPR (c) = t;
      OMP_CLAUSE_CHAIN (c) = list;
      list = c;
    }
  else
    c_parser_error (parser, "expected %<(%>");

  return list;
}

/* OpenMP 2.5:
   lastprivate ( variable-list ) */

static tree
c_parser_omp_clause_lastprivate (c_parser *parser, tree list)
{
  return c_parser_omp_var_list_parens (parser, OMP_CLAUSE_LASTPRIVATE, list);
}

/* OpenMP 3.1:
   mergeable */

static tree
c_parser_omp_clause_mergeable (c_parser *parser ATTRIBUTE_UNUSED, tree list)
{
  tree c;

  /* FIXME: Should we allow duplicates?  */
  check_no_duplicate_clause (list, OMP_CLAUSE_MERGEABLE, "mergeable");

  c = build_omp_clause (c_parser_peek_token (parser)->location,
			OMP_CLAUSE_MERGEABLE);
  OMP_CLAUSE_CHAIN (c) = list;

  return c;
}

/* OpenMP 2.5:
   nowait */

static tree
c_parser_omp_clause_nowait (c_parser *parser ATTRIBUTE_UNUSED, tree list)
{
  tree c;
  location_t loc = c_parser_peek_token (parser)->location;

  check_no_duplicate_clause (list, OMP_CLAUSE_NOWAIT, "nowait");

  c = build_omp_clause (loc, OMP_CLAUSE_NOWAIT);
  OMP_CLAUSE_CHAIN (c) = list;
  return c;
}

/* OpenMP 2.5:
   num_threads ( expression ) */

static tree
c_parser_omp_clause_num_threads (c_parser *parser, tree list)
{
  location_t num_threads_loc = c_parser_peek_token (parser)->location;
  if (c_parser_require (parser, CPP_OPEN_PAREN, "expected %<(%>"))
    {
      location_t expr_loc = c_parser_peek_token (parser)->location;
      tree c, t = c_parser_expression (parser).value;
      mark_exp_read (t);
      t = c_fully_fold (t, false, NULL);

      c_parser_skip_until_found (parser, CPP_CLOSE_PAREN, "expected %<)%>");

      if (!INTEGRAL_TYPE_P (TREE_TYPE (t)))
	{
	  c_parser_error (parser, "expected integer expression");
	  return list;
	}

      /* Attempt to statically determine when the number isn't positive.  */
      c = fold_build2_loc (expr_loc, LE_EXPR, boolean_type_node, t,
		       build_int_cst (TREE_TYPE (t), 0));
      if (CAN_HAVE_LOCATION_P (c))
	SET_EXPR_LOCATION (c, expr_loc);
      if (c == boolean_true_node)
	{
	  warning_at (expr_loc, 0,
		      "%<num_threads%> value must be positive");
	  t = integer_one_node;
	}

      check_no_duplicate_clause (list, OMP_CLAUSE_NUM_THREADS, "num_threads");

      c = build_omp_clause (num_threads_loc, OMP_CLAUSE_NUM_THREADS);
      OMP_CLAUSE_NUM_THREADS_EXPR (c) = t;
      OMP_CLAUSE_CHAIN (c) = list;
      list = c;
    }

  return list;
}

/* OpenMP 2.5:
   ordered */

static tree
c_parser_omp_clause_ordered (c_parser *parser, tree list)
{
  tree c;

  check_no_duplicate_clause (list, OMP_CLAUSE_ORDERED, "ordered");

  c = build_omp_clause (c_parser_peek_token (parser)->location,
			OMP_CLAUSE_ORDERED);
  OMP_CLAUSE_CHAIN (c) = list;

  return c;
}

/* OpenMP 2.5:
   private ( variable-list ) */

static tree
c_parser_omp_clause_private (c_parser *parser, tree list)
{
  return c_parser_omp_var_list_parens (parser, OMP_CLAUSE_PRIVATE, list);
}

/* OpenMP 2.5:
   reduction ( reduction-operator : variable-list )

   reduction-operator:
     One of: + * - & ^ | && ||

   OpenMP 3.1:
   
   reduction-operator:
     One of: + * - & ^ | && || max min

   OpenMP 4.0:

   reduction-operator:
     One of: + * - & ^ | && ||
     identifier  */

static tree
c_parser_omp_clause_reduction (c_parser *parser, tree list)
{
  location_t clause_loc = c_parser_peek_token (parser)->location;
  if (c_parser_require (parser, CPP_OPEN_PAREN, "expected %<(%>"))
    {
      enum tree_code code = ERROR_MARK;
      tree reduc_id = NULL_TREE;

      switch (c_parser_peek_token (parser)->type)
	{
	case CPP_PLUS:
	  code = PLUS_EXPR;
	  break;
	case CPP_MULT:
	  code = MULT_EXPR;
	  break;
	case CPP_MINUS:
	  code = MINUS_EXPR;
	  break;
	case CPP_AND:
	  code = BIT_AND_EXPR;
	  break;
	case CPP_XOR:
	  code = BIT_XOR_EXPR;
	  break;
	case CPP_OR:
	  code = BIT_IOR_EXPR;
	  break;
	case CPP_AND_AND:
	  code = TRUTH_ANDIF_EXPR;
	  break;
	case CPP_OR_OR:
	  code = TRUTH_ORIF_EXPR;
	  break;
        case CPP_NAME:
	  {
	    const char *p
	      = IDENTIFIER_POINTER (c_parser_peek_token (parser)->value);
	    if (strcmp (p, "min") == 0)
	      {
		code = MIN_EXPR;
		break;
	      }
	    if (strcmp (p, "max") == 0)
	      {
		code = MAX_EXPR;
		break;
	      }
	    reduc_id = c_parser_peek_token (parser)->value;
	    break;
	  }
	default:
	  c_parser_error (parser,
			  "expected %<+%>, %<*%>, %<-%>, %<&%>, "
			  "%<^%>, %<|%>, %<&&%>, %<||%>, %<min%> or %<max%>");
	  c_parser_skip_until_found (parser, CPP_CLOSE_PAREN, 0);
	  return list;
	}
      c_parser_consume_token (parser);
      reduc_id = c_omp_reduction_id (code, reduc_id);
      if (c_parser_require (parser, CPP_COLON, "expected %<:%>"))
	{
	  tree nl, c;

	  nl = c_parser_omp_variable_list (parser, clause_loc,
					   OMP_CLAUSE_REDUCTION, list);
	  for (c = nl; c != list; c = OMP_CLAUSE_CHAIN (c))
	    {
	      tree type = TREE_TYPE (OMP_CLAUSE_DECL (c));
	      OMP_CLAUSE_REDUCTION_CODE (c) = code;
	      if (code == ERROR_MARK
		  || !(INTEGRAL_TYPE_P (type)
		       || TREE_CODE (type) == REAL_TYPE
		       || TREE_CODE (type) == COMPLEX_TYPE))
		OMP_CLAUSE_REDUCTION_PLACEHOLDER (c)
		  = c_omp_reduction_lookup (reduc_id,
					    TYPE_MAIN_VARIANT (type));
	    }

	  list = nl;
	}
      c_parser_skip_until_found (parser, CPP_CLOSE_PAREN, "expected %<)%>");
    }
  return list;
}

/* OpenMP 2.5:
   schedule ( schedule-kind )
   schedule ( schedule-kind , expression )

   schedule-kind:
     static | dynamic | guided | runtime | auto
*/

static tree
c_parser_omp_clause_schedule (c_parser *parser, tree list)
{
  tree c, t;
  location_t loc = c_parser_peek_token (parser)->location;

  if (!c_parser_require (parser, CPP_OPEN_PAREN, "expected %<(%>"))
    return list;

  c = build_omp_clause (loc, OMP_CLAUSE_SCHEDULE);

  if (c_parser_next_token_is (parser, CPP_NAME))
    {
      tree kind = c_parser_peek_token (parser)->value;
      const char *p = IDENTIFIER_POINTER (kind);

      switch (p[0])
	{
	case 'd':
	  if (strcmp ("dynamic", p) != 0)
	    goto invalid_kind;
	  OMP_CLAUSE_SCHEDULE_KIND (c) = OMP_CLAUSE_SCHEDULE_DYNAMIC;
	  break;

        case 'g':
	  if (strcmp ("guided", p) != 0)
	    goto invalid_kind;
	  OMP_CLAUSE_SCHEDULE_KIND (c) = OMP_CLAUSE_SCHEDULE_GUIDED;
	  break;

	case 'r':
	  if (strcmp ("runtime", p) != 0)
	    goto invalid_kind;
	  OMP_CLAUSE_SCHEDULE_KIND (c) = OMP_CLAUSE_SCHEDULE_RUNTIME;
	  break;

	default:
	  goto invalid_kind;
	}
    }
  else if (c_parser_next_token_is_keyword (parser, RID_STATIC))
    OMP_CLAUSE_SCHEDULE_KIND (c) = OMP_CLAUSE_SCHEDULE_STATIC;
  else if (c_parser_next_token_is_keyword (parser, RID_AUTO))
    OMP_CLAUSE_SCHEDULE_KIND (c) = OMP_CLAUSE_SCHEDULE_AUTO;
  else
    goto invalid_kind;

  c_parser_consume_token (parser);
  if (c_parser_next_token_is (parser, CPP_COMMA))
    {
      location_t here;
      c_parser_consume_token (parser);

      here = c_parser_peek_token (parser)->location;
      t = c_parser_expr_no_commas (parser, NULL).value;
      mark_exp_read (t);
      t = c_fully_fold (t, false, NULL);

      if (OMP_CLAUSE_SCHEDULE_KIND (c) == OMP_CLAUSE_SCHEDULE_RUNTIME)
	error_at (here, "schedule %<runtime%> does not take "
		  "a %<chunk_size%> parameter");
      else if (OMP_CLAUSE_SCHEDULE_KIND (c) == OMP_CLAUSE_SCHEDULE_AUTO)
	error_at (here,
		  "schedule %<auto%> does not take "
		  "a %<chunk_size%> parameter");
      else if (TREE_CODE (TREE_TYPE (t)) == INTEGER_TYPE)
	OMP_CLAUSE_SCHEDULE_CHUNK_EXPR (c) = t;
      else
	c_parser_error (parser, "expected integer expression");

      c_parser_skip_until_found (parser, CPP_CLOSE_PAREN, "expected %<)%>");
    }
  else
    c_parser_skip_until_found (parser, CPP_CLOSE_PAREN,
			       "expected %<,%> or %<)%>");

  check_no_duplicate_clause (list, OMP_CLAUSE_SCHEDULE, "schedule");
  OMP_CLAUSE_CHAIN (c) = list;
  return c;

 invalid_kind:
  c_parser_error (parser, "invalid schedule kind");
  c_parser_skip_until_found (parser, CPP_CLOSE_PAREN, 0);
  return list;
}

/* OpenMP 2.5:
   shared ( variable-list ) */

static tree
c_parser_omp_clause_shared (c_parser *parser, tree list)
{
  return c_parser_omp_var_list_parens (parser, OMP_CLAUSE_SHARED, list);
}

/* OpenMP 3.0:
   untied */

static tree
c_parser_omp_clause_untied (c_parser *parser ATTRIBUTE_UNUSED, tree list)
{
  tree c;

  /* FIXME: Should we allow duplicates?  */
  check_no_duplicate_clause (list, OMP_CLAUSE_UNTIED, "untied");

  c = build_omp_clause (c_parser_peek_token (parser)->location,
			OMP_CLAUSE_UNTIED);
  OMP_CLAUSE_CHAIN (c) = list;

  return c;
}

/* OpenMP 4.0:
   inbranch
   notinbranch */

static tree
c_parser_omp_clause_branch (c_parser *parser ATTRIBUTE_UNUSED,
			    enum omp_clause_code code, tree list)
{
  check_no_duplicate_clause (list, code, omp_clause_code_name[code]);

  tree c = build_omp_clause (c_parser_peek_token (parser)->location, code);
  OMP_CLAUSE_CHAIN (c) = list;

  return c;
}

/* OpenMP 4.0:
   parallel
   for
   sections
   taskgroup */

static tree
c_parser_omp_clause_cancelkind (c_parser *parser ATTRIBUTE_UNUSED,
				enum omp_clause_code code, tree list)
{
  tree c = build_omp_clause (c_parser_peek_token (parser)->location, code);
  OMP_CLAUSE_CHAIN (c) = list;

  return c;
}

/* OpenMP 4.0:
   num_teams ( expression ) */

static tree
c_parser_omp_clause_num_teams (c_parser *parser, tree list)
{
  location_t num_teams_loc = c_parser_peek_token (parser)->location;
  if (c_parser_require (parser, CPP_OPEN_PAREN, "expected %<(%>"))
    {
      location_t expr_loc = c_parser_peek_token (parser)->location;
      tree c, t = c_parser_expression (parser).value;
      mark_exp_read (t);
      t = c_fully_fold (t, false, NULL);

      c_parser_skip_until_found (parser, CPP_CLOSE_PAREN, "expected %<)%>");

      if (!INTEGRAL_TYPE_P (TREE_TYPE (t)))
	{
	  c_parser_error (parser, "expected integer expression");
	  return list;
	}

      /* Attempt to statically determine when the number isn't positive.  */
      c = fold_build2_loc (expr_loc, LE_EXPR, boolean_type_node, t,
			   build_int_cst (TREE_TYPE (t), 0));
      if (CAN_HAVE_LOCATION_P (c))
	SET_EXPR_LOCATION (c, expr_loc);
      if (c == boolean_true_node)
	{
	  warning_at (expr_loc, 0, "%<num_teams%> value must be positive");
	  t = integer_one_node;
	}

      check_no_duplicate_clause (list, OMP_CLAUSE_NUM_TEAMS, "num_teams");

      c = build_omp_clause (num_teams_loc, OMP_CLAUSE_NUM_TEAMS);
      OMP_CLAUSE_NUM_TEAMS_EXPR (c) = t;
      OMP_CLAUSE_CHAIN (c) = list;
      list = c;
    }

  return list;
}

/* OpenMP 4.0:
   thread_limit ( expression ) */

static tree
c_parser_omp_clause_thread_limit (c_parser *parser, tree list)
{
  location_t num_teams_loc = c_parser_peek_token (parser)->location;
  if (c_parser_require (parser, CPP_OPEN_PAREN, "expected %<(%>"))
    {
      location_t expr_loc = c_parser_peek_token (parser)->location;
      tree c, t = c_parser_expression (parser).value;
      mark_exp_read (t);
      t = c_fully_fold (t, false, NULL);

      c_parser_skip_until_found (parser, CPP_CLOSE_PAREN, "expected %<)%>");

      if (!INTEGRAL_TYPE_P (TREE_TYPE (t)))
	{
	  c_parser_error (parser, "expected integer expression");
	  return list;
	}

      /* Attempt to statically determine when the number isn't positive.  */
      c = fold_build2_loc (expr_loc, LE_EXPR, boolean_type_node, t,
			   build_int_cst (TREE_TYPE (t), 0));
      if (CAN_HAVE_LOCATION_P (c))
	SET_EXPR_LOCATION (c, expr_loc);
      if (c == boolean_true_node)
	{
	  warning_at (expr_loc, 0, "%<thread_limit%> value must be positive");
	  t = integer_one_node;
	}

      check_no_duplicate_clause (list, OMP_CLAUSE_THREAD_LIMIT,
				 "thread_limit");

      c = build_omp_clause (num_teams_loc, OMP_CLAUSE_THREAD_LIMIT);
      OMP_CLAUSE_THREAD_LIMIT_EXPR (c) = t;
      OMP_CLAUSE_CHAIN (c) = list;
      list = c;
    }

  return list;
}

/* OpenMP 4.0:
   aligned ( variable-list )
   aligned ( variable-list : constant-expression ) */

static tree
c_parser_omp_clause_aligned (c_parser *parser, tree list)
{
  location_t clause_loc = c_parser_peek_token (parser)->location;
  tree nl, c;

  if (!c_parser_require (parser, CPP_OPEN_PAREN, "expected %<(%>"))
    return list;

  nl = c_parser_omp_variable_list (parser, clause_loc,
				   OMP_CLAUSE_ALIGNED, list);

  if (c_parser_next_token_is (parser, CPP_COLON))
    {
      c_parser_consume_token (parser);
      tree alignment = c_parser_expr_no_commas (parser, NULL).value;
      mark_exp_read (alignment);
      alignment = c_fully_fold (alignment, false, NULL);
      if (!INTEGRAL_TYPE_P (TREE_TYPE (alignment))
	  && TREE_CODE (alignment) != INTEGER_CST
	  && tree_int_cst_sgn (alignment) != 1)
	{
	  error_at (clause_loc, "%<aligned%> clause alignment expression must "
				"be positive constant integer expression");
	  alignment = NULL_TREE;
	}

      for (c = nl; c != list; c = OMP_CLAUSE_CHAIN (c))
	OMP_CLAUSE_ALIGNED_ALIGNMENT (c) = alignment;
    }

  c_parser_skip_until_found (parser, CPP_CLOSE_PAREN, "expected %<)%>");
  return nl;
}

/* OpenMP 4.0:
   linear ( variable-list )
   linear ( variable-list : expression ) */

static tree
c_parser_omp_clause_linear (c_parser *parser, tree list)
{
  location_t clause_loc = c_parser_peek_token (parser)->location;
  tree nl, c, step;

  if (!c_parser_require (parser, CPP_OPEN_PAREN, "expected %<(%>"))
    return list;

  nl = c_parser_omp_variable_list (parser, clause_loc,
				   OMP_CLAUSE_LINEAR, list);

  if (c_parser_next_token_is (parser, CPP_COLON))
    {
      c_parser_consume_token (parser);
      step = c_parser_expression (parser).value;
      mark_exp_read (step);
      step = c_fully_fold (step, false, NULL);
      if (!INTEGRAL_TYPE_P (TREE_TYPE (step)))
	{
	  error_at (clause_loc, "%<linear%> clause step expression must "
				"be integral");
	  step = integer_one_node;
	}

    }
  else
    step = integer_one_node;

  for (c = nl; c != list; c = OMP_CLAUSE_CHAIN (c))
    {
      OMP_CLAUSE_LINEAR_STEP (c) = step;
    }

  c_parser_skip_until_found (parser, CPP_CLOSE_PAREN, "expected %<)%>");
  return nl;
}

/* OpenMP 4.0:
   safelen ( constant-expression ) */

static tree
c_parser_omp_clause_safelen (c_parser *parser, tree list)
{
  location_t clause_loc = c_parser_peek_token (parser)->location;
  tree c, t;

  if (!c_parser_require (parser, CPP_OPEN_PAREN, "expected %<(%>"))
    return list;

  t = c_parser_expr_no_commas (parser, NULL).value;
  mark_exp_read (t);
  t = c_fully_fold (t, false, NULL);
  if (!INTEGRAL_TYPE_P (TREE_TYPE (t))
      && TREE_CODE (t) != INTEGER_CST
      && tree_int_cst_sgn (t) != 1)
    {
      error_at (clause_loc, "%<safelen%> clause expression must "
			    "be positive constant integer expression");
      t = NULL_TREE;
    }

  c_parser_skip_until_found (parser, CPP_CLOSE_PAREN, "expected %<)%>");
  if (t == NULL_TREE || t == error_mark_node)
    return list;

  check_no_duplicate_clause (list, OMP_CLAUSE_SAFELEN, "safelen");

  c = build_omp_clause (clause_loc, OMP_CLAUSE_SAFELEN);
  OMP_CLAUSE_SAFELEN_EXPR (c) = t;
  OMP_CLAUSE_CHAIN (c) = list;
  return c;
}

/* OpenMP 4.0:
   simdlen ( constant-expression ) */

static tree
c_parser_omp_clause_simdlen (c_parser *parser, tree list)
{
  location_t clause_loc = c_parser_peek_token (parser)->location;
  tree c, t;

  if (!c_parser_require (parser, CPP_OPEN_PAREN, "expected %<(%>"))
    return list;

  t = c_parser_expr_no_commas (parser, NULL).value;
  mark_exp_read (t);
  t = c_fully_fold (t, false, NULL);
  if (!INTEGRAL_TYPE_P (TREE_TYPE (t))
      && TREE_CODE (t) != INTEGER_CST
      && tree_int_cst_sgn (t) != 1)
    {
      error_at (clause_loc, "%<simdlen%> clause expression must "
			    "be positive constant integer expression");
      t = NULL_TREE;
    }

  c_parser_skip_until_found (parser, CPP_CLOSE_PAREN, "expected %<)%>");
  if (t == NULL_TREE || t == error_mark_node)
    return list;

  check_no_duplicate_clause (list, OMP_CLAUSE_SIMDLEN, "simdlen");

  c = build_omp_clause (clause_loc, OMP_CLAUSE_SIMDLEN);
  OMP_CLAUSE_SIMDLEN_EXPR (c) = t;
  OMP_CLAUSE_CHAIN (c) = list;
  return c;
}

/* OpenMP 4.0:
   depend ( depend-kind: variable-list )

   depend-kind:
     in | out | inout  */

static tree
c_parser_omp_clause_depend (c_parser *parser, tree list)
{
  location_t clause_loc = c_parser_peek_token (parser)->location;
  enum omp_clause_depend_kind kind = OMP_CLAUSE_DEPEND_INOUT;
  tree nl, c;

  if (!c_parser_require (parser, CPP_OPEN_PAREN, "expected %<(%>"))
    return list;

  if (c_parser_next_token_is (parser, CPP_NAME))
    {
      const char *p = IDENTIFIER_POINTER (c_parser_peek_token (parser)->value);
      if (strcmp ("in", p) == 0)
	kind = OMP_CLAUSE_DEPEND_IN;
      else if (strcmp ("inout", p) == 0)
	kind = OMP_CLAUSE_DEPEND_INOUT;
      else if (strcmp ("out", p) == 0)
	kind = OMP_CLAUSE_DEPEND_OUT;
      else
	goto invalid_kind;
    }
  else
    goto invalid_kind;

  c_parser_consume_token (parser);
  if (!c_parser_require (parser, CPP_COLON, "expected %<:%>"))
    goto resync_fail;

  nl = c_parser_omp_variable_list (parser, clause_loc,
				   OMP_CLAUSE_DEPEND, list);

  for (c = nl; c != list; c = OMP_CLAUSE_CHAIN (c))
    OMP_CLAUSE_DEPEND_KIND (c) = kind;

  c_parser_skip_until_found (parser, CPP_CLOSE_PAREN, "expected %<)%>");
  return nl;

 invalid_kind:
  c_parser_error (parser, "invalid depend kind");
 resync_fail:
  c_parser_skip_until_found (parser, CPP_CLOSE_PAREN, "expected %<)%>");
  return list;
}

/* OpenMP 4.0:
   map ( map-kind: variable-list )
   map ( variable-list )

   map-kind:
     alloc | to | from | tofrom  */

static tree
c_parser_omp_clause_map (c_parser *parser, tree list)
{
  location_t clause_loc = c_parser_peek_token (parser)->location;
  enum omp_clause_map_kind kind = OMP_CLAUSE_MAP_TOFROM;
  tree nl, c;

  if (!c_parser_require (parser, CPP_OPEN_PAREN, "expected %<(%>"))
    return list;

  if (c_parser_next_token_is (parser, CPP_NAME)
      && c_parser_peek_2nd_token (parser)->type == CPP_COLON)
    {
      const char *p = IDENTIFIER_POINTER (c_parser_peek_token (parser)->value);
      if (strcmp ("alloc", p) == 0)
	kind = OMP_CLAUSE_MAP_ALLOC;
      else if (strcmp ("to", p) == 0)
	kind = OMP_CLAUSE_MAP_TO;
      else if (strcmp ("from", p) == 0)
	kind = OMP_CLAUSE_MAP_FROM;
      else if (strcmp ("tofrom", p) == 0)
	kind = OMP_CLAUSE_MAP_TOFROM;
      else
	{
	  c_parser_error (parser, "invalid map kind");
	  c_parser_skip_until_found (parser, CPP_CLOSE_PAREN,
				     "expected %<)%>");
	  return list;
	}
      c_parser_consume_token (parser);
      c_parser_consume_token (parser);
    }

  nl = c_parser_omp_variable_list (parser, clause_loc, OMP_CLAUSE_MAP, list);

  for (c = nl; c != list; c = OMP_CLAUSE_CHAIN (c))
    OMP_CLAUSE_MAP_KIND (c) = kind;

  c_parser_skip_until_found (parser, CPP_CLOSE_PAREN, "expected %<)%>");
  return nl;
}

/* OpenMP 4.0:
   device ( expression ) */

static tree
c_parser_omp_clause_device (c_parser *parser, tree list)
{
  location_t clause_loc = c_parser_peek_token (parser)->location;
  if (c_parser_require (parser, CPP_OPEN_PAREN, "expected %<(%>"))
    {
      tree c, t = c_parser_expr_no_commas (parser, NULL).value;
      mark_exp_read (t);
      t = c_fully_fold (t, false, NULL);

      c_parser_skip_until_found (parser, CPP_CLOSE_PAREN, "expected %<)%>");

      if (!INTEGRAL_TYPE_P (TREE_TYPE (t)))
	{
	  c_parser_error (parser, "expected integer expression");
	  return list;
	}

      check_no_duplicate_clause (list, OMP_CLAUSE_DEVICE, "device");

      c = build_omp_clause (clause_loc, OMP_CLAUSE_DEVICE);
      OMP_CLAUSE_DEVICE_ID (c) = t;
      OMP_CLAUSE_CHAIN (c) = list;
      list = c;
    }

  return list;
}

/* OpenMP 4.0:
   dist_schedule ( static )
   dist_schedule ( static , expression ) */

static tree
c_parser_omp_clause_dist_schedule (c_parser *parser, tree list)
{
  tree c, t = NULL_TREE;
  location_t loc = c_parser_peek_token (parser)->location;

  if (!c_parser_require (parser, CPP_OPEN_PAREN, "expected %<(%>"))
    return list;

  if (!c_parser_next_token_is_keyword (parser, RID_STATIC))
    {
      c_parser_error (parser, "invalid dist_schedule kind");
      c_parser_skip_until_found (parser, CPP_CLOSE_PAREN,
				 "expected %<)%>");
      return list;
    }

  c_parser_consume_token (parser);
  if (c_parser_next_token_is (parser, CPP_COMMA))
    {
      c_parser_consume_token (parser);

      t = c_parser_expr_no_commas (parser, NULL).value;
      mark_exp_read (t);
      t = c_fully_fold (t, false, NULL);
      c_parser_skip_until_found (parser, CPP_CLOSE_PAREN, "expected %<)%>");
    }
  else
    c_parser_skip_until_found (parser, CPP_CLOSE_PAREN,
			       "expected %<,%> or %<)%>");

  check_no_duplicate_clause (list, OMP_CLAUSE_SCHEDULE, "schedule");
  if (t == error_mark_node)
    return list;

  c = build_omp_clause (loc, OMP_CLAUSE_DIST_SCHEDULE);
  OMP_CLAUSE_DIST_SCHEDULE_CHUNK_EXPR (c) = t;
  OMP_CLAUSE_CHAIN (c) = list;
  return c;
}

/* OpenMP 4.0:
   proc_bind ( proc-bind-kind )

   proc-bind-kind:
     master | close | spread  */

static tree
c_parser_omp_clause_proc_bind (c_parser *parser, tree list)
{
  location_t clause_loc = c_parser_peek_token (parser)->location;
  enum omp_clause_proc_bind_kind kind;
  tree c;

  if (!c_parser_require (parser, CPP_OPEN_PAREN, "expected %<(%>"))
    return list;

  if (c_parser_next_token_is (parser, CPP_NAME))
    {
      const char *p = IDENTIFIER_POINTER (c_parser_peek_token (parser)->value);
      if (strcmp ("master", p) == 0)
	kind = OMP_CLAUSE_PROC_BIND_MASTER;
      else if (strcmp ("close", p) == 0)
	kind = OMP_CLAUSE_PROC_BIND_CLOSE;
      else if (strcmp ("spread", p) == 0)
	kind = OMP_CLAUSE_PROC_BIND_SPREAD;
      else
	goto invalid_kind;
    }
  else
    goto invalid_kind;

  c_parser_consume_token (parser);
  c_parser_skip_until_found (parser, CPP_CLOSE_PAREN, "expected %<)%>");
  c = build_omp_clause (clause_loc, OMP_CLAUSE_PROC_BIND);
  OMP_CLAUSE_PROC_BIND_KIND (c) = kind;
  OMP_CLAUSE_CHAIN (c) = list;
  return c;

 invalid_kind:
  c_parser_error (parser, "invalid proc_bind kind");
  c_parser_skip_until_found (parser, CPP_CLOSE_PAREN, "expected %<)%>");
  return list;
}

/* OpenMP 4.0:
   to ( variable-list ) */

static tree
c_parser_omp_clause_to (c_parser *parser, tree list)
{
  return c_parser_omp_var_list_parens (parser, OMP_CLAUSE_TO, list);
}

/* OpenMP 4.0:
   from ( variable-list ) */

static tree
c_parser_omp_clause_from (c_parser *parser, tree list)
{
  return c_parser_omp_var_list_parens (parser, OMP_CLAUSE_FROM, list);
}

/* OpenMP 4.0:
   uniform ( variable-list ) */

static tree
c_parser_omp_clause_uniform (c_parser *parser, tree list)
{
  /* The clauses location.  */
  location_t loc = c_parser_peek_token (parser)->location;

  if (c_parser_require (parser, CPP_OPEN_PAREN, "expected %<(%>"))
    {
      list = c_parser_omp_variable_list (parser, loc, OMP_CLAUSE_UNIFORM,
					 list);
      c_parser_skip_until_found (parser, CPP_CLOSE_PAREN, "expected %<)%>");
    }
  return list;
}

/* Parse all OpenMP clauses.  The set clauses allowed by the directive
   is a bitmask in MASK.  Return the list of clauses found; the result
   of clause default goes in *pdefault.  */

static tree
c_parser_omp_all_clauses (c_parser *parser, omp_clause_mask mask,
			  const char *where, bool finish_p = true)
{
  tree clauses = NULL;
  bool first = true;

  while (c_parser_next_token_is_not (parser, CPP_PRAGMA_EOL))
    {
      location_t here;
      pragma_omp_clause c_kind;
      const char *c_name;
      tree prev = clauses;

      if (!first && c_parser_next_token_is (parser, CPP_COMMA))
	c_parser_consume_token (parser);

      here = c_parser_peek_token (parser)->location;
      c_kind = c_parser_omp_clause_name (parser);

      switch (c_kind)
	{
	case PRAGMA_OMP_CLAUSE_COLLAPSE:
	  clauses = c_parser_omp_clause_collapse (parser, clauses);
	  c_name = "collapse";
	  break;
	case PRAGMA_OMP_CLAUSE_COPYIN:
	  clauses = c_parser_omp_clause_copyin (parser, clauses);
	  c_name = "copyin";
	  break;
	case PRAGMA_OMP_CLAUSE_COPYPRIVATE:
	  clauses = c_parser_omp_clause_copyprivate (parser, clauses);
	  c_name = "copyprivate";
	  break;
	case PRAGMA_OMP_CLAUSE_DEFAULT:
	  clauses = c_parser_omp_clause_default (parser, clauses);
	  c_name = "default";
	  break;
	case PRAGMA_OMP_CLAUSE_FIRSTPRIVATE:
	  clauses = c_parser_omp_clause_firstprivate (parser, clauses);
	  c_name = "firstprivate";
	  break;
	case PRAGMA_OMP_CLAUSE_FINAL:
	  clauses = c_parser_omp_clause_final (parser, clauses);
	  c_name = "final";
	  break;
	case PRAGMA_OMP_CLAUSE_IF:
	  clauses = c_parser_omp_clause_if (parser, clauses);
	  c_name = "if";
	  break;
	case PRAGMA_OMP_CLAUSE_LASTPRIVATE:
	  clauses = c_parser_omp_clause_lastprivate (parser, clauses);
	  c_name = "lastprivate";
	  break;
	case PRAGMA_OMP_CLAUSE_MERGEABLE:
	  clauses = c_parser_omp_clause_mergeable (parser, clauses);
	  c_name = "mergeable";
	  break;
	case PRAGMA_OMP_CLAUSE_NOWAIT:
	  clauses = c_parser_omp_clause_nowait (parser, clauses);
	  c_name = "nowait";
	  break;
	case PRAGMA_OMP_CLAUSE_NUM_THREADS:
	  clauses = c_parser_omp_clause_num_threads (parser, clauses);
	  c_name = "num_threads";
	  break;
	case PRAGMA_OMP_CLAUSE_ORDERED:
	  clauses = c_parser_omp_clause_ordered (parser, clauses);
	  c_name = "ordered";
	  break;
	case PRAGMA_OMP_CLAUSE_PRIVATE:
	  clauses = c_parser_omp_clause_private (parser, clauses);
	  c_name = "private";
	  break;
	case PRAGMA_OMP_CLAUSE_REDUCTION:
	  clauses = c_parser_omp_clause_reduction (parser, clauses);
	  c_name = "reduction";
	  break;
	case PRAGMA_OMP_CLAUSE_SCHEDULE:
	  clauses = c_parser_omp_clause_schedule (parser, clauses);
	  c_name = "schedule";
	  break;
	case PRAGMA_OMP_CLAUSE_SHARED:
	  clauses = c_parser_omp_clause_shared (parser, clauses);
	  c_name = "shared";
	  break;
	case PRAGMA_OMP_CLAUSE_UNTIED:
	  clauses = c_parser_omp_clause_untied (parser, clauses);
	  c_name = "untied";
	  break;
	case PRAGMA_OMP_CLAUSE_INBRANCH:
	  clauses = c_parser_omp_clause_branch (parser, OMP_CLAUSE_INBRANCH,
						clauses);
	  c_name = "inbranch";
	  break;
	case PRAGMA_OMP_CLAUSE_NOTINBRANCH:
	  clauses = c_parser_omp_clause_branch (parser, OMP_CLAUSE_NOTINBRANCH,
						clauses);
	  c_name = "notinbranch";
	  break;
	case PRAGMA_OMP_CLAUSE_PARALLEL:
	  clauses
	    = c_parser_omp_clause_cancelkind (parser, OMP_CLAUSE_PARALLEL,
					      clauses);
	  c_name = "parallel";
	  if (!first)
	    {
	     clause_not_first:
	      error_at (here, "%qs must be the first clause of %qs",
			c_name, where);
	      clauses = prev;
	    }
	  break;
	case PRAGMA_OMP_CLAUSE_FOR:
	  clauses
	    = c_parser_omp_clause_cancelkind (parser, OMP_CLAUSE_FOR,
					      clauses);
	  c_name = "for";
	  if (!first)
	    goto clause_not_first;
	  break;
	case PRAGMA_OMP_CLAUSE_SECTIONS:
	  clauses
	    = c_parser_omp_clause_cancelkind (parser, OMP_CLAUSE_SECTIONS,
					      clauses);
	  c_name = "sections";
	  if (!first)
	    goto clause_not_first;
	  break;
	case PRAGMA_OMP_CLAUSE_TASKGROUP:
	  clauses
	    = c_parser_omp_clause_cancelkind (parser, OMP_CLAUSE_TASKGROUP,
					      clauses);
	  c_name = "taskgroup";
	  if (!first)
	    goto clause_not_first;
	  break;
	case PRAGMA_OMP_CLAUSE_TO:
	  clauses = c_parser_omp_clause_to (parser, clauses);
	  c_name = "to";
	  break;
	case PRAGMA_OMP_CLAUSE_FROM:
	  clauses = c_parser_omp_clause_from (parser, clauses);
	  c_name = "from";
	  break;
	case PRAGMA_OMP_CLAUSE_UNIFORM:
	  clauses = c_parser_omp_clause_uniform (parser, clauses);
	  c_name = "uniform";
	  break;
	case PRAGMA_OMP_CLAUSE_NUM_TEAMS:
	  clauses = c_parser_omp_clause_num_teams (parser, clauses);
	  c_name = "num_teams";
	  break;
	case PRAGMA_OMP_CLAUSE_THREAD_LIMIT:
	  clauses = c_parser_omp_clause_thread_limit (parser, clauses);
	  c_name = "thread_limit";
	  break;
	case PRAGMA_OMP_CLAUSE_ALIGNED:
	  clauses = c_parser_omp_clause_aligned (parser, clauses);
	  c_name = "aligned";
	  break;
	case PRAGMA_OMP_CLAUSE_LINEAR:
	  clauses = c_parser_omp_clause_linear (parser, clauses);
	  c_name = "linear";
	  break;
	case PRAGMA_OMP_CLAUSE_DEPEND:
	  clauses = c_parser_omp_clause_depend (parser, clauses);
	  c_name = "depend";
	  break;
	case PRAGMA_OMP_CLAUSE_MAP:
	  clauses = c_parser_omp_clause_map (parser, clauses);
	  c_name = "map";
	  break;
	case PRAGMA_OMP_CLAUSE_DEVICE:
	  clauses = c_parser_omp_clause_device (parser, clauses);
	  c_name = "device";
	  break;
	case PRAGMA_OMP_CLAUSE_DIST_SCHEDULE:
	  clauses = c_parser_omp_clause_dist_schedule (parser, clauses);
	  c_name = "dist_schedule";
	  break;
	case PRAGMA_OMP_CLAUSE_PROC_BIND:
	  clauses = c_parser_omp_clause_proc_bind (parser, clauses);
	  c_name = "proc_bind";
	  break;
	case PRAGMA_OMP_CLAUSE_SAFELEN:
	  clauses = c_parser_omp_clause_safelen (parser, clauses);
	  c_name = "safelen";
	  break;
	case PRAGMA_OMP_CLAUSE_SIMDLEN:
	  clauses = c_parser_omp_clause_simdlen (parser, clauses);
	  c_name = "simdlen";
	  break;
	default:
	  c_parser_error (parser, "expected %<#pragma omp%> clause");
	  goto saw_error;
	}

      first = false;

      if (((mask >> c_kind) & 1) == 0 && !parser->error)
	{
	  /* Remove the invalid clause(s) from the list to avoid
	     confusing the rest of the compiler.  */
	  clauses = prev;
	  error_at (here, "%qs is not valid for %qs", c_name, where);
	}
    }

 saw_error:
  c_parser_skip_to_pragma_eol (parser);

  if (finish_p)
    return c_finish_omp_clauses (clauses);

  return clauses;
}

/* OpenMP 2.5:
   structured-block:
     statement

   In practice, we're also interested in adding the statement to an
   outer node.  So it is convenient if we work around the fact that
   c_parser_statement calls add_stmt.  */

static tree
c_parser_omp_structured_block (c_parser *parser)
{
  tree stmt = push_stmt_list ();
  c_parser_statement (parser);
  return pop_stmt_list (stmt);
}

/* OpenMP 2.5:
   # pragma omp atomic new-line
     expression-stmt

   expression-stmt:
     x binop= expr | x++ | ++x | x-- | --x
   binop:
     +, *, -, /, &, ^, |, <<, >>

  where x is an lvalue expression with scalar type.

   OpenMP 3.1:
   # pragma omp atomic new-line
     update-stmt

   # pragma omp atomic read new-line
     read-stmt

   # pragma omp atomic write new-line
     write-stmt

   # pragma omp atomic update new-line
     update-stmt

   # pragma omp atomic capture new-line
     capture-stmt

   # pragma omp atomic capture new-line
     capture-block

   read-stmt:
     v = x
   write-stmt:
     x = expr
   update-stmt:
     expression-stmt | x = x binop expr
   capture-stmt:
     v = expression-stmt
   capture-block:
     { v = x; update-stmt; } | { update-stmt; v = x; }

   OpenMP 4.0:
   update-stmt:
     expression-stmt | x = x binop expr | x = expr binop x
   capture-stmt:
     v = update-stmt
   capture-block:
     { v = x; update-stmt; } | { update-stmt; v = x; } | { v = x; x = expr; }

  where x and v are lvalue expressions with scalar type.

  LOC is the location of the #pragma token.  */

static void
c_parser_omp_atomic (location_t loc, c_parser *parser)
{
  tree lhs = NULL_TREE, rhs = NULL_TREE, v = NULL_TREE;
  tree lhs1 = NULL_TREE, rhs1 = NULL_TREE;
  tree stmt, orig_lhs, unfolded_lhs = NULL_TREE, unfolded_lhs1 = NULL_TREE;
  enum tree_code code = OMP_ATOMIC, opcode = NOP_EXPR;
  struct c_expr expr;
  location_t eloc;
  bool structured_block = false;
  bool swapped = false;
  bool seq_cst = false;

  if (c_parser_next_token_is (parser, CPP_NAME))
    {
      const char *p = IDENTIFIER_POINTER (c_parser_peek_token (parser)->value);

      if (!strcmp (p, "read"))
	code = OMP_ATOMIC_READ;
      else if (!strcmp (p, "write"))
	code = NOP_EXPR;
      else if (!strcmp (p, "update"))
	code = OMP_ATOMIC;
      else if (!strcmp (p, "capture"))
	code = OMP_ATOMIC_CAPTURE_NEW;
      else
	p = NULL;
      if (p)
	c_parser_consume_token (parser);
    }
  if (c_parser_next_token_is (parser, CPP_NAME))
    {
      const char *p = IDENTIFIER_POINTER (c_parser_peek_token (parser)->value);
      if (!strcmp (p, "seq_cst"))
	{
	  seq_cst = true;
	  c_parser_consume_token (parser);
	}
    }
  c_parser_skip_to_pragma_eol (parser);

  switch (code)
    {
    case OMP_ATOMIC_READ:
    case NOP_EXPR: /* atomic write */
      v = c_parser_unary_expression (parser).value;
      v = c_fully_fold (v, false, NULL);
      if (v == error_mark_node)
	goto saw_error;
      loc = c_parser_peek_token (parser)->location;
      if (!c_parser_require (parser, CPP_EQ, "expected %<=%>"))
	goto saw_error;
      if (code == NOP_EXPR)
	lhs = c_parser_expression (parser).value;
      else
	lhs = c_parser_unary_expression (parser).value;
      lhs = c_fully_fold (lhs, false, NULL);
      if (lhs == error_mark_node)
	goto saw_error;
      if (code == NOP_EXPR)
	{
	  /* atomic write is represented by OMP_ATOMIC with NOP_EXPR
	     opcode.  */
	  code = OMP_ATOMIC;
	  rhs = lhs;
	  lhs = v;
	  v = NULL_TREE;
	}
      goto done;
    case OMP_ATOMIC_CAPTURE_NEW:
      if (c_parser_next_token_is (parser, CPP_OPEN_BRACE))
	{
	  c_parser_consume_token (parser);
	  structured_block = true;
	}
      else
	{
	  v = c_parser_unary_expression (parser).value;
	  v = c_fully_fold (v, false, NULL);
	  if (v == error_mark_node)
	    goto saw_error;
	  if (!c_parser_require (parser, CPP_EQ, "expected %<=%>"))
	    goto saw_error;
	}
      break;
    default:
      break;
    }

  /* For structured_block case we don't know yet whether
     old or new x should be captured.  */
restart:
  eloc = c_parser_peek_token (parser)->location;
  expr = c_parser_unary_expression (parser);
  lhs = expr.value;
  expr = default_function_array_conversion (eloc, expr);
  unfolded_lhs = expr.value;
  lhs = c_fully_fold (lhs, false, NULL);
  orig_lhs = lhs;
  switch (TREE_CODE (lhs))
    {
    case ERROR_MARK:
    saw_error:
      c_parser_skip_to_end_of_block_or_statement (parser);
      if (structured_block)
	{
	  if (c_parser_next_token_is (parser, CPP_CLOSE_BRACE))
	    c_parser_consume_token (parser);
	  else if (code == OMP_ATOMIC_CAPTURE_NEW)
	    {
	      c_parser_skip_to_end_of_block_or_statement (parser);
	      if (c_parser_next_token_is (parser, CPP_CLOSE_BRACE))
		c_parser_consume_token (parser);
	    }
	}
      return;

    case POSTINCREMENT_EXPR:
      if (code == OMP_ATOMIC_CAPTURE_NEW && !structured_block)
	code = OMP_ATOMIC_CAPTURE_OLD;
      /* FALLTHROUGH */
    case PREINCREMENT_EXPR:
      lhs = TREE_OPERAND (lhs, 0);
      unfolded_lhs = NULL_TREE;
      opcode = PLUS_EXPR;
      rhs = integer_one_node;
      break;

    case POSTDECREMENT_EXPR:
      if (code == OMP_ATOMIC_CAPTURE_NEW && !structured_block)
	code = OMP_ATOMIC_CAPTURE_OLD;
      /* FALLTHROUGH */
    case PREDECREMENT_EXPR:
      lhs = TREE_OPERAND (lhs, 0);
      unfolded_lhs = NULL_TREE;
      opcode = MINUS_EXPR;
      rhs = integer_one_node;
      break;

    case COMPOUND_EXPR:
      if (TREE_CODE (TREE_OPERAND (lhs, 0)) == SAVE_EXPR
	  && TREE_CODE (TREE_OPERAND (lhs, 1)) == COMPOUND_EXPR
	  && TREE_CODE (TREE_OPERAND (TREE_OPERAND (lhs, 1), 0)) == MODIFY_EXPR
	  && TREE_OPERAND (TREE_OPERAND (lhs, 1), 1) == TREE_OPERAND (lhs, 0)
	  && TREE_CODE (TREE_TYPE (TREE_OPERAND (TREE_OPERAND
					      (TREE_OPERAND (lhs, 1), 0), 0)))
	     == BOOLEAN_TYPE)
	/* Undo effects of boolean_increment for post {in,de}crement.  */
	lhs = TREE_OPERAND (TREE_OPERAND (lhs, 1), 0);
      /* FALLTHRU */
    case MODIFY_EXPR:
      if (TREE_CODE (lhs) == MODIFY_EXPR
	  && TREE_CODE (TREE_TYPE (TREE_OPERAND (lhs, 0))) == BOOLEAN_TYPE)
	{
	  /* Undo effects of boolean_increment.  */
	  if (integer_onep (TREE_OPERAND (lhs, 1)))
	    {
	      /* This is pre or post increment.  */
	      rhs = TREE_OPERAND (lhs, 1);
	      lhs = TREE_OPERAND (lhs, 0);
	      unfolded_lhs = NULL_TREE;
	      opcode = NOP_EXPR;
	      if (code == OMP_ATOMIC_CAPTURE_NEW
		  && !structured_block
		  && TREE_CODE (orig_lhs) == COMPOUND_EXPR)
		code = OMP_ATOMIC_CAPTURE_OLD;
	      break;
	    }
	  if (TREE_CODE (TREE_OPERAND (lhs, 1)) == TRUTH_NOT_EXPR
	      && TREE_OPERAND (lhs, 0)
		 == TREE_OPERAND (TREE_OPERAND (lhs, 1), 0))
	    {
	      /* This is pre or post decrement.  */
	      rhs = TREE_OPERAND (lhs, 1);
	      lhs = TREE_OPERAND (lhs, 0);
	      unfolded_lhs = NULL_TREE;
	      opcode = NOP_EXPR;
	      if (code == OMP_ATOMIC_CAPTURE_NEW
		  && !structured_block
		  && TREE_CODE (orig_lhs) == COMPOUND_EXPR)
		code = OMP_ATOMIC_CAPTURE_OLD;
	      break;
	    }
	}
      /* FALLTHRU */
    default:
      switch (c_parser_peek_token (parser)->type)
	{
	case CPP_MULT_EQ:
	  opcode = MULT_EXPR;
	  break;
	case CPP_DIV_EQ:
	  opcode = TRUNC_DIV_EXPR;
	  break;
	case CPP_PLUS_EQ:
	  opcode = PLUS_EXPR;
	  break;
	case CPP_MINUS_EQ:
	  opcode = MINUS_EXPR;
	  break;
	case CPP_LSHIFT_EQ:
	  opcode = LSHIFT_EXPR;
	  break;
	case CPP_RSHIFT_EQ:
	  opcode = RSHIFT_EXPR;
	  break;
	case CPP_AND_EQ:
	  opcode = BIT_AND_EXPR;
	  break;
	case CPP_OR_EQ:
	  opcode = BIT_IOR_EXPR;
	  break;
	case CPP_XOR_EQ:
	  opcode = BIT_XOR_EXPR;
	  break;
	case CPP_EQ:
	  c_parser_consume_token (parser);
	  eloc = c_parser_peek_token (parser)->location;
	  expr = c_parser_expr_no_commas (parser, NULL, unfolded_lhs);
	  rhs1 = expr.value;
	  switch (TREE_CODE (rhs1))
	    {
	    case MULT_EXPR:
	    case TRUNC_DIV_EXPR:
	    case PLUS_EXPR:
	    case MINUS_EXPR:
	    case LSHIFT_EXPR:
	    case RSHIFT_EXPR:
	    case BIT_AND_EXPR:
	    case BIT_IOR_EXPR:
	    case BIT_XOR_EXPR:
	      if (c_tree_equal (TREE_OPERAND (rhs1, 0), unfolded_lhs))
		{
		  opcode = TREE_CODE (rhs1);
		  rhs = c_fully_fold (TREE_OPERAND (rhs1, 1), false, NULL);
		  rhs1 = c_fully_fold (TREE_OPERAND (rhs1, 0), false, NULL);
		  goto stmt_done;
		}
	      if (c_tree_equal (TREE_OPERAND (rhs1, 1), unfolded_lhs))
		{
		  opcode = TREE_CODE (rhs1);
		  rhs = c_fully_fold (TREE_OPERAND (rhs1, 0), false, NULL);
		  rhs1 = c_fully_fold (TREE_OPERAND (rhs1, 1), false, NULL);
		  swapped = !commutative_tree_code (opcode);
		  goto stmt_done;
		}
	      break;
	    case ERROR_MARK:
	      goto saw_error;
	    default:
	      break;
	    }
	  if (c_parser_peek_token (parser)->type == CPP_SEMICOLON)
	    {
	      if (structured_block && code == OMP_ATOMIC_CAPTURE_NEW)
		{
		  code = OMP_ATOMIC_CAPTURE_OLD;
		  v = lhs;
		  lhs = NULL_TREE;
		  expr = default_function_array_read_conversion (eloc, expr);
		  unfolded_lhs1 = expr.value;
		  lhs1 = c_fully_fold (unfolded_lhs1, false, NULL);
		  rhs1 = NULL_TREE;
		  c_parser_consume_token (parser);
		  goto restart;
		}
	      if (structured_block)
		{
		  opcode = NOP_EXPR;
		  expr = default_function_array_read_conversion (eloc, expr);
		  rhs = c_fully_fold (expr.value, false, NULL);
		  rhs1 = NULL_TREE;
		  goto stmt_done;
		}
	    }
	  c_parser_error (parser, "invalid form of %<#pragma omp atomic%>");
	  goto saw_error;
	default:
	  c_parser_error (parser,
			  "invalid operator for %<#pragma omp atomic%>");
	  goto saw_error;
	}

      /* Arrange to pass the location of the assignment operator to
	 c_finish_omp_atomic.  */
      loc = c_parser_peek_token (parser)->location;
      c_parser_consume_token (parser);
      eloc = c_parser_peek_token (parser)->location;
      expr = c_parser_expression (parser);
      expr = default_function_array_read_conversion (eloc, expr);
      rhs = expr.value;
      rhs = c_fully_fold (rhs, false, NULL);
      break;
    }
stmt_done:
  if (structured_block && code == OMP_ATOMIC_CAPTURE_NEW)
    {
      if (!c_parser_require (parser, CPP_SEMICOLON, "expected %<;%>"))
	goto saw_error;
      v = c_parser_unary_expression (parser).value;
      v = c_fully_fold (v, false, NULL);
      if (v == error_mark_node)
	goto saw_error;
      if (!c_parser_require (parser, CPP_EQ, "expected %<=%>"))
	goto saw_error;
      eloc = c_parser_peek_token (parser)->location;
      expr = c_parser_unary_expression (parser);
      lhs1 = expr.value;
      expr = default_function_array_read_conversion (eloc, expr);
      unfolded_lhs1 = expr.value;
      lhs1 = c_fully_fold (lhs1, false, NULL);
      if (lhs1 == error_mark_node)
	goto saw_error;
    }
  if (structured_block)
    {
      c_parser_skip_until_found (parser, CPP_SEMICOLON, "expected %<;%>");
      c_parser_require (parser, CPP_CLOSE_BRACE, "expected %<}%>");
    }
done:
  if (unfolded_lhs && unfolded_lhs1
      && !c_tree_equal (unfolded_lhs, unfolded_lhs1))
    {
      error ("%<#pragma omp atomic capture%> uses two different "
	     "expressions for memory");
      stmt = error_mark_node;
    }
  else
    stmt = c_finish_omp_atomic (loc, code, opcode, lhs, rhs, v, lhs1, rhs1,
				swapped, seq_cst);
  if (stmt != error_mark_node)
    add_stmt (stmt);

  if (!structured_block)
    c_parser_skip_until_found (parser, CPP_SEMICOLON, "expected %<;%>");
}


/* OpenMP 2.5:
   # pragma omp barrier new-line
*/

static void
c_parser_omp_barrier (c_parser *parser)
{
  location_t loc = c_parser_peek_token (parser)->location;
  c_parser_consume_pragma (parser);
  c_parser_skip_to_pragma_eol (parser);

  c_finish_omp_barrier (loc);
}

/* OpenMP 2.5:
   # pragma omp critical [(name)] new-line
     structured-block

  LOC is the location of the #pragma itself.  */

static tree
c_parser_omp_critical (location_t loc, c_parser *parser)
{
  tree stmt, name = NULL;

  if (c_parser_next_token_is (parser, CPP_OPEN_PAREN))
    {
      c_parser_consume_token (parser);
      if (c_parser_next_token_is (parser, CPP_NAME))
	{
	  name = c_parser_peek_token (parser)->value;
	  c_parser_consume_token (parser);
	  c_parser_require (parser, CPP_CLOSE_PAREN, "expected %<)%>");
	}
      else
	c_parser_error (parser, "expected identifier");
    }
  else if (c_parser_next_token_is_not (parser, CPP_PRAGMA_EOL))
    c_parser_error (parser, "expected %<(%> or end of line");
  c_parser_skip_to_pragma_eol (parser);

  stmt = c_parser_omp_structured_block (parser);
  return c_finish_omp_critical (loc, stmt, name);
}

/* OpenMP 2.5:
   # pragma omp flush flush-vars[opt] new-line

   flush-vars:
     ( variable-list ) */

static void
c_parser_omp_flush (c_parser *parser)
{
  location_t loc = c_parser_peek_token (parser)->location;
  c_parser_consume_pragma (parser);
  if (c_parser_next_token_is (parser, CPP_OPEN_PAREN))
    c_parser_omp_var_list_parens (parser, OMP_CLAUSE_ERROR, NULL);
  else if (c_parser_next_token_is_not (parser, CPP_PRAGMA_EOL))
    c_parser_error (parser, "expected %<(%> or end of line");
  c_parser_skip_to_pragma_eol (parser);

  c_finish_omp_flush (loc);
}

/* Parse the restricted form of the for statement allowed by OpenMP.
   The real trick here is to determine the loop control variable early
   so that we can push a new decl if necessary to make it private.
   LOC is the location of the OMP in "#pragma omp".  */

static tree
c_parser_omp_for_loop (location_t loc, c_parser *parser, enum tree_code code,
		       tree clauses, tree *cclauses)
{
  tree decl, cond, incr, save_break, save_cont, body, init, stmt, cl;
  tree declv, condv, incrv, initv, ret = NULL;
  bool fail = false, open_brace_parsed = false;
  int i, collapse = 1, nbraces = 0;
  location_t for_loc;
  vec<tree, va_gc> *for_block = make_tree_vector ();

  for (cl = clauses; cl; cl = OMP_CLAUSE_CHAIN (cl))
    if (OMP_CLAUSE_CODE (cl) == OMP_CLAUSE_COLLAPSE)
      collapse = tree_low_cst (OMP_CLAUSE_COLLAPSE_EXPR (cl), 0);

  gcc_assert (collapse >= 1);

  declv = make_tree_vec (collapse);
  initv = make_tree_vec (collapse);
  condv = make_tree_vec (collapse);
  incrv = make_tree_vec (collapse);

  if (!c_parser_next_token_is_keyword (parser, RID_FOR))
    {
      c_parser_error (parser, "for statement expected");
      return NULL;
    }
  for_loc = c_parser_peek_token (parser)->location;
  c_parser_consume_token (parser);

  for (i = 0; i < collapse; i++)
    {
      int bracecount = 0;

      if (!c_parser_require (parser, CPP_OPEN_PAREN, "expected %<(%>"))
	goto pop_scopes;

      /* Parse the initialization declaration or expression.  */
      if (c_parser_next_tokens_start_declaration (parser))
	{
	  if (i > 0)
	    vec_safe_push (for_block, c_begin_compound_stmt (true));
	  c_parser_declaration_or_fndef (parser, true, true, true, true, true,
					 NULL, vNULL);
	  decl = check_for_loop_decls (for_loc, flag_isoc99);
	  if (decl == NULL)
	    goto error_init;
	  if (DECL_INITIAL (decl) == error_mark_node)
	    decl = error_mark_node;
	  init = decl;
	}
      else if (c_parser_next_token_is (parser, CPP_NAME)
	       && c_parser_peek_2nd_token (parser)->type == CPP_EQ)
	{
	  struct c_expr decl_exp;
	  struct c_expr init_exp;
	  location_t init_loc;

	  decl_exp = c_parser_postfix_expression (parser);
	  decl = decl_exp.value;

	  c_parser_require (parser, CPP_EQ, "expected %<=%>");

	  init_loc = c_parser_peek_token (parser)->location;
	  init_exp = c_parser_expr_no_commas (parser, NULL);
	  init_exp = default_function_array_read_conversion (init_loc,
							     init_exp);
	  init = build_modify_expr (init_loc, decl, decl_exp.original_type,
				    NOP_EXPR, init_loc, init_exp.value,
				    init_exp.original_type);
	  init = c_process_expr_stmt (init_loc, init);

	  c_parser_skip_until_found (parser, CPP_SEMICOLON, "expected %<;%>");
	}
      else
	{
	error_init:
	  c_parser_error (parser,
			  "expected iteration declaration or initialization");
	  c_parser_skip_until_found (parser, CPP_CLOSE_PAREN,
				     "expected %<)%>");
	  fail = true;
	  goto parse_next;
	}

      /* Parse the loop condition.  */
      cond = NULL_TREE;
      if (c_parser_next_token_is_not (parser, CPP_SEMICOLON))
	{
	  location_t cond_loc = c_parser_peek_token (parser)->location;
	  struct c_expr cond_expr
	    = c_parser_binary_expression (parser, NULL, NULL_TREE);

	  cond = cond_expr.value;
	  cond = c_objc_common_truthvalue_conversion (cond_loc, cond);
	  cond = c_fully_fold (cond, false, NULL);
	  switch (cond_expr.original_code)
	    {
	    case GT_EXPR:
	    case GE_EXPR:
	    case LT_EXPR:
	    case LE_EXPR:
	      break;
	    default:
	      /* Can't be cond = error_mark_node, because we want to preserve
		 the location until c_finish_omp_for.  */
	      cond = build1 (NOP_EXPR, boolean_type_node, error_mark_node);
	      break;
	    }
	  protected_set_expr_location (cond, cond_loc);
	}
      c_parser_skip_until_found (parser, CPP_SEMICOLON, "expected %<;%>");

      /* Parse the increment expression.  */
      incr = NULL_TREE;
      if (c_parser_next_token_is_not (parser, CPP_CLOSE_PAREN))
	{
	  location_t incr_loc = c_parser_peek_token (parser)->location;

	  incr = c_process_expr_stmt (incr_loc,
				      c_parser_expression (parser).value);
	}
      c_parser_skip_until_found (parser, CPP_CLOSE_PAREN, "expected %<)%>");

      if (decl == NULL || decl == error_mark_node || init == error_mark_node)
	fail = true;
      else
	{
	  TREE_VEC_ELT (declv, i) = decl;
	  TREE_VEC_ELT (initv, i) = init;
	  TREE_VEC_ELT (condv, i) = cond;
	  TREE_VEC_ELT (incrv, i) = incr;
	}

    parse_next:
      if (i == collapse - 1)
	break;

      /* FIXME: OpenMP 3.0 draft isn't very clear on what exactly is allowed
	 in between the collapsed for loops to be still considered perfectly
	 nested.  Hopefully the final version clarifies this.
	 For now handle (multiple) {'s and empty statements.  */
      do
	{
	  if (c_parser_next_token_is_keyword (parser, RID_FOR))
	    {
	      c_parser_consume_token (parser);
	      break;
	    }
	  else if (c_parser_next_token_is (parser, CPP_OPEN_BRACE))
	    {
	      c_parser_consume_token (parser);
	      bracecount++;
	    }
	  else if (bracecount
		   && c_parser_next_token_is (parser, CPP_SEMICOLON))
	    c_parser_consume_token (parser);
	  else
	    {
	      c_parser_error (parser, "not enough perfectly nested loops");
	      if (bracecount)
		{
		  open_brace_parsed = true;
		  bracecount--;
		}
	      fail = true;
	      collapse = 0;
	      break;
	    }
	}
      while (1);

      nbraces += bracecount;
    }

  save_break = c_break_label;
  c_break_label = size_one_node;
  save_cont = c_cont_label;
  c_cont_label = NULL_TREE;
  body = push_stmt_list ();

  if (open_brace_parsed)
    {
      location_t here = c_parser_peek_token (parser)->location;
      stmt = c_begin_compound_stmt (true);
      c_parser_compound_statement_nostart (parser);
      add_stmt (c_end_compound_stmt (here, stmt, true));
    }
  else
    add_stmt (c_parser_c99_block_statement (parser));
  if (c_cont_label)
    {
      tree t = build1 (LABEL_EXPR, void_type_node, c_cont_label);
      SET_EXPR_LOCATION (t, loc);
      add_stmt (t);
    }

  body = pop_stmt_list (body);
  c_break_label = save_break;
  c_cont_label = save_cont;

  while (nbraces)
    {
      if (c_parser_next_token_is (parser, CPP_CLOSE_BRACE))
	{
	  c_parser_consume_token (parser);
	  nbraces--;
	}
      else if (c_parser_next_token_is (parser, CPP_SEMICOLON))
	c_parser_consume_token (parser);
      else
	{
	  c_parser_error (parser, "collapsed loops not perfectly nested");
	  while (nbraces)
	    {
	      location_t here = c_parser_peek_token (parser)->location;
	      stmt = c_begin_compound_stmt (true);
	      add_stmt (body);
	      c_parser_compound_statement_nostart (parser);
	      body = c_end_compound_stmt (here, stmt, true);
	      nbraces--;
	    }
	  goto pop_scopes;
	}
    }

  /* Only bother calling c_finish_omp_for if we haven't already generated
     an error from the initialization parsing.  */
  if (!fail)
    {
      stmt = c_finish_omp_for (loc, code, declv, initv, condv,
			       incrv, body, NULL);
      if (stmt)
	{
	  if (cclauses != NULL
	      && cclauses[C_OMP_CLAUSE_SPLIT_PARALLEL] != NULL)
	    {
	      tree *c;
	      for (c = &cclauses[C_OMP_CLAUSE_SPLIT_PARALLEL]; *c ; )
		if (OMP_CLAUSE_CODE (*c) != OMP_CLAUSE_FIRSTPRIVATE
		    && OMP_CLAUSE_CODE (*c) != OMP_CLAUSE_LASTPRIVATE)
		  c = &OMP_CLAUSE_CHAIN (*c);
		else
		  {
		    for (i = 0; i < collapse; i++)
		      if (TREE_VEC_ELT (declv, i) == OMP_CLAUSE_DECL (*c))
			break;
		    if (i == collapse)
		      c = &OMP_CLAUSE_CHAIN (*c);
		    else if (OMP_CLAUSE_CODE (*c) == OMP_CLAUSE_FIRSTPRIVATE)
		      {
			error_at (loc,
				  "iteration variable %qD should not be firstprivate",
				  OMP_CLAUSE_DECL (*c));
			*c = OMP_CLAUSE_CHAIN (*c);
		      }
		    else
		      {
			/* Copy lastprivate (decl) clause to OMP_FOR_CLAUSES,
			   change it to shared (decl) in
			   OMP_PARALLEL_CLAUSES.  */
			tree l = build_omp_clause (OMP_CLAUSE_LOCATION (*c),
						   OMP_CLAUSE_LASTPRIVATE);
			OMP_CLAUSE_DECL (l) = OMP_CLAUSE_DECL (*c);
			OMP_CLAUSE_CHAIN (l) = clauses;
			clauses = l;
			OMP_CLAUSE_SET_CODE (*c, OMP_CLAUSE_SHARED);
		      }
		  }
	    }
	  OMP_FOR_CLAUSES (stmt) = clauses;
	}
      ret = stmt;
    }
pop_scopes:
  while (!for_block->is_empty ())
    {
      /* FIXME diagnostics: LOC below should be the actual location of
	 this particular for block.  We need to build a list of
	 locations to go along with FOR_BLOCK.  */
      stmt = c_end_compound_stmt (loc, for_block->pop (), true);
      add_stmt (stmt);
    }
  release_tree_vector (for_block);
  return ret;
}

/* Helper function for OpenMP parsing, split clauses and call
   finish_omp_clauses on each of the set of clauses afterwards.  */

static void
omp_split_clauses (location_t loc, enum tree_code code,
		   omp_clause_mask mask, tree clauses, tree *cclauses)
{
  int i;
  c_omp_split_clauses (loc, code, mask, clauses, cclauses);
  for (i = 0; i < C_OMP_CLAUSE_SPLIT_COUNT; i++)
    if (cclauses[i])
      cclauses[i] = c_finish_omp_clauses (cclauses[i]);
}

/* OpenMP 4.0:
   #pragma omp simd simd-clause[optseq] new-line
     for-loop

   LOC is the location of the #pragma token.
*/

#define OMP_SIMD_CLAUSE_MASK					\
	( (OMP_CLAUSE_MASK_1 << PRAGMA_OMP_CLAUSE_SAFELEN)	\
	| (OMP_CLAUSE_MASK_1 << PRAGMA_OMP_CLAUSE_LINEAR)	\
	| (OMP_CLAUSE_MASK_1 << PRAGMA_OMP_CLAUSE_ALIGNED)	\
	| (OMP_CLAUSE_MASK_1 << PRAGMA_OMP_CLAUSE_PRIVATE)	\
	| (OMP_CLAUSE_MASK_1 << PRAGMA_OMP_CLAUSE_LASTPRIVATE)	\
	| (OMP_CLAUSE_MASK_1 << PRAGMA_OMP_CLAUSE_REDUCTION)	\
	| (OMP_CLAUSE_MASK_1 << PRAGMA_OMP_CLAUSE_COLLAPSE))

static tree
c_parser_omp_simd (location_t loc, c_parser *parser,
		   char *p_name, omp_clause_mask mask, tree *cclauses)
{
  tree block, clauses, ret;

  strcat (p_name, " simd");
  mask |= OMP_SIMD_CLAUSE_MASK;
  mask &= ~(OMP_CLAUSE_MASK_1 << PRAGMA_OMP_CLAUSE_ORDERED);

  clauses = c_parser_omp_all_clauses (parser, mask, p_name, cclauses == NULL);
  if (cclauses)
    {
      omp_split_clauses (loc, OMP_SIMD, mask, clauses, cclauses);
      clauses = cclauses[C_OMP_CLAUSE_SPLIT_SIMD];
    }

  block = c_begin_compound_stmt (true);
  ret = c_parser_omp_for_loop (loc, parser, OMP_SIMD, clauses, cclauses);
  block = c_end_compound_stmt (loc, block, true);
  add_stmt (block);

  return ret;
}

/* OpenMP 2.5:
   #pragma omp for for-clause[optseq] new-line
     for-loop

   OpenMP 4.0:
   #pragma omp for simd for-simd-clause[optseq] new-line
     for-loop

   LOC is the location of the #pragma token.
*/

#define OMP_FOR_CLAUSE_MASK					\
	( (OMP_CLAUSE_MASK_1 << PRAGMA_OMP_CLAUSE_PRIVATE)	\
	| (OMP_CLAUSE_MASK_1 << PRAGMA_OMP_CLAUSE_FIRSTPRIVATE)	\
	| (OMP_CLAUSE_MASK_1 << PRAGMA_OMP_CLAUSE_LASTPRIVATE)	\
	| (OMP_CLAUSE_MASK_1 << PRAGMA_OMP_CLAUSE_REDUCTION)	\
	| (OMP_CLAUSE_MASK_1 << PRAGMA_OMP_CLAUSE_ORDERED)	\
	| (OMP_CLAUSE_MASK_1 << PRAGMA_OMP_CLAUSE_SCHEDULE)	\
	| (OMP_CLAUSE_MASK_1 << PRAGMA_OMP_CLAUSE_COLLAPSE)	\
	| (OMP_CLAUSE_MASK_1 << PRAGMA_OMP_CLAUSE_NOWAIT))

static tree
c_parser_omp_for (location_t loc, c_parser *parser,
		  char *p_name, omp_clause_mask mask, tree *cclauses)
{
  tree block, clauses, ret;

  strcat (p_name, " for");
  mask |= OMP_FOR_CLAUSE_MASK;
  if (cclauses)
    mask &= ~(OMP_CLAUSE_MASK_1 << PRAGMA_OMP_CLAUSE_NOWAIT);

  if (c_parser_next_token_is (parser, CPP_NAME))
    {
      const char *p = IDENTIFIER_POINTER (c_parser_peek_token (parser)->value);

      if (strcmp (p, "simd") == 0)
	{
	  tree cclauses_buf[C_OMP_CLAUSE_SPLIT_COUNT];
	  if (cclauses == NULL)
	    cclauses = cclauses_buf;

	  c_parser_consume_token (parser);
	  if (!flag_openmp)  /* flag_openmp_simd  */
	    return c_parser_omp_simd (loc, parser, p_name, mask, cclauses);
	  block = c_begin_compound_stmt (true);
	  ret = c_parser_omp_simd (loc, parser, p_name, mask, cclauses);
	  block = c_end_compound_stmt (loc, block, true);
	  if (ret == NULL_TREE)
	    return ret;
	  ret = make_node (OMP_FOR);
	  TREE_TYPE (ret) = void_type_node;
	  OMP_FOR_BODY (ret) = block;
	  OMP_FOR_CLAUSES (ret) = cclauses[C_OMP_CLAUSE_SPLIT_FOR];
	  SET_EXPR_LOCATION (ret, loc);
	  add_stmt (ret);
	  return ret;
	}
    }
  if (!flag_openmp)  /* flag_openmp_simd  */
    {
      c_parser_skip_to_pragma_eol (parser);
      return NULL_TREE;
    }

  clauses = c_parser_omp_all_clauses (parser, mask, p_name, cclauses == NULL);
  if (cclauses)
    {
      omp_split_clauses (loc, OMP_FOR, mask, clauses, cclauses);
      clauses = cclauses[C_OMP_CLAUSE_SPLIT_FOR];
    }

  block = c_begin_compound_stmt (true);
  ret = c_parser_omp_for_loop (loc, parser, OMP_FOR, clauses, cclauses);
  block = c_end_compound_stmt (loc, block, true);
  add_stmt (block);

  return ret;
}

/* OpenMP 2.5:
   # pragma omp master new-line
     structured-block

   LOC is the location of the #pragma token.
*/

static tree
c_parser_omp_master (location_t loc, c_parser *parser)
{
  c_parser_skip_to_pragma_eol (parser);
  return c_finish_omp_master (loc, c_parser_omp_structured_block (parser));
}

/* OpenMP 2.5:
   # pragma omp ordered new-line
     structured-block

   LOC is the location of the #pragma itself.
*/

static tree
c_parser_omp_ordered (location_t loc, c_parser *parser)
{
  c_parser_skip_to_pragma_eol (parser);
  return c_finish_omp_ordered (loc, c_parser_omp_structured_block (parser));
}

/* OpenMP 2.5:

   section-scope:
     { section-sequence }

   section-sequence:
     section-directive[opt] structured-block
     section-sequence section-directive structured-block

    SECTIONS_LOC is the location of the #pragma omp sections.  */

static tree
c_parser_omp_sections_scope (location_t sections_loc, c_parser *parser)
{
  tree stmt, substmt;
  bool error_suppress = false;
  location_t loc;

  loc = c_parser_peek_token (parser)->location;
  if (!c_parser_require (parser, CPP_OPEN_BRACE, "expected %<{%>"))
    {
      /* Avoid skipping until the end of the block.  */
      parser->error = false;
      return NULL_TREE;
    }

  stmt = push_stmt_list ();

  if (c_parser_peek_token (parser)->pragma_kind != PRAGMA_OMP_SECTION)
    {
      substmt = c_parser_omp_structured_block (parser);
      substmt = build1 (OMP_SECTION, void_type_node, substmt);
      SET_EXPR_LOCATION (substmt, loc);
      add_stmt (substmt);
    }

  while (1)
    {
      if (c_parser_next_token_is (parser, CPP_CLOSE_BRACE))
	break;
      if (c_parser_next_token_is (parser, CPP_EOF))
	break;

      loc = c_parser_peek_token (parser)->location;
      if (c_parser_peek_token (parser)->pragma_kind == PRAGMA_OMP_SECTION)
	{
	  c_parser_consume_pragma (parser);
	  c_parser_skip_to_pragma_eol (parser);
	  error_suppress = false;
	}
      else if (!error_suppress)
	{
	  error_at (loc, "expected %<#pragma omp section%> or %<}%>");
	  error_suppress = true;
	}

      substmt = c_parser_omp_structured_block (parser);
      substmt = build1 (OMP_SECTION, void_type_node, substmt);
      SET_EXPR_LOCATION (substmt, loc);
      add_stmt (substmt);
    }
  c_parser_skip_until_found (parser, CPP_CLOSE_BRACE,
			     "expected %<#pragma omp section%> or %<}%>");

  substmt = pop_stmt_list (stmt);

  stmt = make_node (OMP_SECTIONS);
  SET_EXPR_LOCATION (stmt, sections_loc);
  TREE_TYPE (stmt) = void_type_node;
  OMP_SECTIONS_BODY (stmt) = substmt;

  return add_stmt (stmt);
}

/* OpenMP 2.5:
   # pragma omp sections sections-clause[optseq] newline
     sections-scope

   LOC is the location of the #pragma token.
*/

#define OMP_SECTIONS_CLAUSE_MASK				\
	( (OMP_CLAUSE_MASK_1 << PRAGMA_OMP_CLAUSE_PRIVATE)	\
	| (OMP_CLAUSE_MASK_1 << PRAGMA_OMP_CLAUSE_FIRSTPRIVATE)	\
	| (OMP_CLAUSE_MASK_1 << PRAGMA_OMP_CLAUSE_LASTPRIVATE)	\
	| (OMP_CLAUSE_MASK_1 << PRAGMA_OMP_CLAUSE_REDUCTION)	\
	| (OMP_CLAUSE_MASK_1 << PRAGMA_OMP_CLAUSE_NOWAIT))

static tree
c_parser_omp_sections (location_t loc, c_parser *parser,
		       char *p_name, omp_clause_mask mask, tree *cclauses)
{
  tree block, clauses, ret;

  strcat (p_name, " sections");
  mask |= OMP_SECTIONS_CLAUSE_MASK;
  if (cclauses)
    mask &= ~(OMP_CLAUSE_MASK_1 << PRAGMA_OMP_CLAUSE_NOWAIT);

  clauses = c_parser_omp_all_clauses (parser, mask, p_name, cclauses == NULL);
  if (cclauses)
    {
      omp_split_clauses (loc, OMP_SECTIONS, mask, clauses, cclauses);
      clauses = cclauses[C_OMP_CLAUSE_SPLIT_SECTIONS];
    }

  block = c_begin_compound_stmt (true);
  ret = c_parser_omp_sections_scope (loc, parser);
  if (ret)
    OMP_SECTIONS_CLAUSES (ret) = clauses;
  block = c_end_compound_stmt (loc, block, true);
  add_stmt (block);

  return ret;
}

/* OpenMP 2.5:
   # pragma parallel parallel-clause new-line
   # pragma parallel for parallel-for-clause new-line
   # pragma parallel sections parallel-sections-clause new-line

   LOC is the location of the #pragma token.
*/

#define OMP_PARALLEL_CLAUSE_MASK				\
	( (OMP_CLAUSE_MASK_1 << PRAGMA_OMP_CLAUSE_IF)		\
	| (OMP_CLAUSE_MASK_1 << PRAGMA_OMP_CLAUSE_PRIVATE)	\
	| (OMP_CLAUSE_MASK_1 << PRAGMA_OMP_CLAUSE_FIRSTPRIVATE)	\
	| (OMP_CLAUSE_MASK_1 << PRAGMA_OMP_CLAUSE_DEFAULT)	\
	| (OMP_CLAUSE_MASK_1 << PRAGMA_OMP_CLAUSE_SHARED)	\
	| (OMP_CLAUSE_MASK_1 << PRAGMA_OMP_CLAUSE_COPYIN)	\
	| (OMP_CLAUSE_MASK_1 << PRAGMA_OMP_CLAUSE_REDUCTION)	\
	| (OMP_CLAUSE_MASK_1 << PRAGMA_OMP_CLAUSE_NUM_THREADS)	\
	| (OMP_CLAUSE_MASK_1 << PRAGMA_OMP_CLAUSE_PROC_BIND))

static tree
c_parser_omp_parallel (location_t loc, c_parser *parser,
		       char *p_name, omp_clause_mask mask, tree *cclauses)
{
  tree stmt, clauses, block;

  strcat (p_name, " parallel");
  mask |= OMP_PARALLEL_CLAUSE_MASK;

  if (c_parser_next_token_is_keyword (parser, RID_FOR))
    {
      tree cclauses_buf[C_OMP_CLAUSE_SPLIT_COUNT];
      if (cclauses == NULL)
	cclauses = cclauses_buf;

      c_parser_consume_token (parser);
      if (!flag_openmp)  /* flag_openmp_simd  */
	return c_parser_omp_for (loc, parser, p_name, mask, cclauses);
      block = c_begin_omp_parallel ();
      c_parser_omp_for (loc, parser, p_name, mask, cclauses);
      stmt
	= c_finish_omp_parallel (loc, cclauses[C_OMP_CLAUSE_SPLIT_PARALLEL],
				 block);
      OMP_PARALLEL_COMBINED (stmt) = 1;
      return stmt;
    }
  else if (cclauses)
    {
      error_at (loc, "expected %<for%> after %qs", p_name);
      c_parser_skip_to_pragma_eol (parser);
      return NULL_TREE;
    }
  else if (!flag_openmp)  /* flag_openmp_simd  */
    {
      c_parser_skip_to_pragma_eol (parser);
      return NULL_TREE;
    }
  else if (c_parser_next_token_is (parser, CPP_NAME))
    {
      const char *p = IDENTIFIER_POINTER (c_parser_peek_token (parser)->value);
      if (strcmp (p, "sections") == 0)
	{
	  tree cclauses_buf[C_OMP_CLAUSE_SPLIT_COUNT];
	  if (cclauses == NULL)
	    cclauses = cclauses_buf;

	  c_parser_consume_token (parser);
	  block = c_begin_omp_parallel ();
	  c_parser_omp_sections (loc, parser, p_name, mask, cclauses);
	  stmt = c_finish_omp_parallel (loc,
					cclauses[C_OMP_CLAUSE_SPLIT_PARALLEL],
					block);
	  OMP_PARALLEL_COMBINED (stmt) = 1;
	  return stmt;
	}
    }

  clauses = c_parser_omp_all_clauses (parser, mask, p_name, cclauses == NULL);

  block = c_begin_omp_parallel ();
  c_parser_statement (parser);
  stmt = c_finish_omp_parallel (loc, clauses, block);

  return stmt;
}

/* OpenMP 2.5:
   # pragma omp single single-clause[optseq] new-line
     structured-block

   LOC is the location of the #pragma.
*/

#define OMP_SINGLE_CLAUSE_MASK					\
	( (OMP_CLAUSE_MASK_1 << PRAGMA_OMP_CLAUSE_PRIVATE)	\
	| (OMP_CLAUSE_MASK_1 << PRAGMA_OMP_CLAUSE_FIRSTPRIVATE)	\
	| (OMP_CLAUSE_MASK_1 << PRAGMA_OMP_CLAUSE_COPYPRIVATE)	\
	| (OMP_CLAUSE_MASK_1 << PRAGMA_OMP_CLAUSE_NOWAIT))

static tree
c_parser_omp_single (location_t loc, c_parser *parser)
{
  tree stmt = make_node (OMP_SINGLE);
  SET_EXPR_LOCATION (stmt, loc);
  TREE_TYPE (stmt) = void_type_node;

  OMP_SINGLE_CLAUSES (stmt)
    = c_parser_omp_all_clauses (parser, OMP_SINGLE_CLAUSE_MASK,
				"#pragma omp single");
  OMP_SINGLE_BODY (stmt) = c_parser_omp_structured_block (parser);

  return add_stmt (stmt);
}

/* OpenMP 3.0:
   # pragma omp task task-clause[optseq] new-line

   LOC is the location of the #pragma.
*/

#define OMP_TASK_CLAUSE_MASK					\
	( (OMP_CLAUSE_MASK_1 << PRAGMA_OMP_CLAUSE_IF)		\
	| (OMP_CLAUSE_MASK_1 << PRAGMA_OMP_CLAUSE_UNTIED)	\
	| (OMP_CLAUSE_MASK_1 << PRAGMA_OMP_CLAUSE_DEFAULT)	\
	| (OMP_CLAUSE_MASK_1 << PRAGMA_OMP_CLAUSE_PRIVATE)	\
	| (OMP_CLAUSE_MASK_1 << PRAGMA_OMP_CLAUSE_FIRSTPRIVATE)	\
	| (OMP_CLAUSE_MASK_1 << PRAGMA_OMP_CLAUSE_SHARED)	\
	| (OMP_CLAUSE_MASK_1 << PRAGMA_OMP_CLAUSE_FINAL)	\
	| (OMP_CLAUSE_MASK_1 << PRAGMA_OMP_CLAUSE_MERGEABLE)	\
	| (OMP_CLAUSE_MASK_1 << PRAGMA_OMP_CLAUSE_DEPEND))

static tree
c_parser_omp_task (location_t loc, c_parser *parser)
{
  tree clauses, block;

  clauses = c_parser_omp_all_clauses (parser, OMP_TASK_CLAUSE_MASK,
				      "#pragma omp task");

  block = c_begin_omp_task ();
  c_parser_statement (parser);
  return c_finish_omp_task (loc, clauses, block);
}

/* OpenMP 3.0:
   # pragma omp taskwait new-line
*/

static void
c_parser_omp_taskwait (c_parser *parser)
{
  location_t loc = c_parser_peek_token (parser)->location;
  c_parser_consume_pragma (parser);
  c_parser_skip_to_pragma_eol (parser);

  c_finish_omp_taskwait (loc);
}

/* OpenMP 3.1:
   # pragma omp taskyield new-line
*/

static void
c_parser_omp_taskyield (c_parser *parser)
{
  location_t loc = c_parser_peek_token (parser)->location;
  c_parser_consume_pragma (parser);
  c_parser_skip_to_pragma_eol (parser);

  c_finish_omp_taskyield (loc);
}

/* OpenMP 4.0:
   # pragma omp taskgroup new-line
*/

static tree
c_parser_omp_taskgroup (c_parser *parser)
{
  location_t loc = c_parser_peek_token (parser)->location;
  c_parser_skip_to_pragma_eol (parser);
  return c_finish_omp_taskgroup (loc, c_parser_omp_structured_block (parser));
}

/* OpenMP 4.0:
   # pragma omp cancel cancel-clause[optseq] new-line

   LOC is the location of the #pragma.
*/

#define OMP_CANCEL_CLAUSE_MASK					\
	( (OMP_CLAUSE_MASK_1 << PRAGMA_OMP_CLAUSE_PARALLEL)	\
	| (OMP_CLAUSE_MASK_1 << PRAGMA_OMP_CLAUSE_FOR)		\
	| (OMP_CLAUSE_MASK_1 << PRAGMA_OMP_CLAUSE_SECTIONS)	\
	| (OMP_CLAUSE_MASK_1 << PRAGMA_OMP_CLAUSE_TASKGROUP)	\
	| (OMP_CLAUSE_MASK_1 << PRAGMA_OMP_CLAUSE_IF))

static void
c_parser_omp_cancel (c_parser *parser)
{
  location_t loc = c_parser_peek_token (parser)->location;

  c_parser_consume_pragma (parser);
  tree clauses = c_parser_omp_all_clauses (parser, OMP_CANCEL_CLAUSE_MASK,
					   "#pragma omp cancel");

  c_finish_omp_cancel (loc, clauses);
}

/* OpenMP 4.0:
   # pragma omp cancellation point cancelpt-clause[optseq] new-line

   LOC is the location of the #pragma.
*/

#define OMP_CANCELLATION_POINT_CLAUSE_MASK			\
	( (OMP_CLAUSE_MASK_1 << PRAGMA_OMP_CLAUSE_PARALLEL)	\
	| (OMP_CLAUSE_MASK_1 << PRAGMA_OMP_CLAUSE_FOR)		\
	| (OMP_CLAUSE_MASK_1 << PRAGMA_OMP_CLAUSE_SECTIONS)	\
	| (OMP_CLAUSE_MASK_1 << PRAGMA_OMP_CLAUSE_TASKGROUP))

static void
c_parser_omp_cancellation_point (c_parser *parser)
{
  location_t loc = c_parser_peek_token (parser)->location;
  tree clauses;
  bool point_seen = false;

  c_parser_consume_pragma (parser);
  if (c_parser_next_token_is (parser, CPP_NAME))
    {
      const char *p = IDENTIFIER_POINTER (c_parser_peek_token (parser)->value);
      if (strcmp (p, "point") == 0)
	{
	  c_parser_consume_token (parser);
	  point_seen = true;
	}
    }
  if (!point_seen)
    {
      c_parser_error (parser, "expected %<point%>");
      c_parser_skip_to_pragma_eol (parser);
      return;
    }

  clauses
    = c_parser_omp_all_clauses (parser, OMP_CANCELLATION_POINT_CLAUSE_MASK,
				"#pragma omp cancellation point");

  c_finish_omp_cancellation_point (loc, clauses);
}

/* OpenMP 4.0:
   #pragma omp distribute distribute-clause[optseq] new-line
     for-loop  */

#define OMP_DISTRIBUTE_CLAUSE_MASK				\
	( (OMP_CLAUSE_MASK_1 << PRAGMA_OMP_CLAUSE_PRIVATE)	\
	| (OMP_CLAUSE_MASK_1 << PRAGMA_OMP_CLAUSE_FIRSTPRIVATE)	\
	| (OMP_CLAUSE_MASK_1 << PRAGMA_OMP_CLAUSE_DIST_SCHEDULE)\
	| (OMP_CLAUSE_MASK_1 << PRAGMA_OMP_CLAUSE_COLLAPSE))

static tree
c_parser_omp_distribute (location_t loc, c_parser *parser,
			 char *p_name, omp_clause_mask mask, tree *cclauses)
{
  tree clauses, block, ret;

  strcat (p_name, " distribute");
  mask |= OMP_DISTRIBUTE_CLAUSE_MASK;

  if (c_parser_next_token_is (parser, CPP_NAME))
    {
      const char *p = IDENTIFIER_POINTER (c_parser_peek_token (parser)->value);
      bool simd = false;
      bool parallel = false;

      if (strcmp (p, "simd") == 0)
	simd = true;
      else
	parallel = strcmp (p, "parallel") == 0;
      if (parallel || simd)
	{
	  tree cclauses_buf[C_OMP_CLAUSE_SPLIT_COUNT];
	  if (cclauses == NULL)
	    cclauses = cclauses_buf;
	  c_parser_consume_token (parser);
	  if (!flag_openmp)  /* flag_openmp_simd  */
	    {
	      if (simd)
		return c_parser_omp_simd (loc, parser, p_name, mask, cclauses);
	      else
		return c_parser_omp_parallel (loc, parser, p_name, mask,
					      cclauses);
	    }
	  block = c_begin_compound_stmt (true);
	  if (simd)
	    ret = c_parser_omp_simd (loc, parser, p_name, mask, cclauses);
	  else
	    ret = c_parser_omp_parallel (loc, parser, p_name, mask, cclauses);
	  block = c_end_compound_stmt (loc, block, true);
	  if (ret == NULL)
	    return ret;
	  ret = make_node (OMP_DISTRIBUTE);
	  TREE_TYPE (ret) = void_type_node;
	  OMP_FOR_BODY (ret) = block;
	  OMP_FOR_CLAUSES (ret) = cclauses[C_OMP_CLAUSE_SPLIT_DISTRIBUTE];
	  SET_EXPR_LOCATION (ret, loc);
	  add_stmt (ret);
	  return ret;
	}
    }
  if (!flag_openmp)  /* flag_openmp_simd  */
    {
      c_parser_skip_to_pragma_eol (parser);
      return NULL_TREE;
    }

  clauses = c_parser_omp_all_clauses (parser, mask, p_name, cclauses == NULL);
  if (cclauses)
    {
      omp_split_clauses (loc, OMP_DISTRIBUTE, mask, clauses, cclauses);
      clauses = cclauses[C_OMP_CLAUSE_SPLIT_DISTRIBUTE];
    }

  block = c_begin_compound_stmt (true);
  ret = c_parser_omp_for_loop (loc, parser, OMP_DISTRIBUTE, clauses, NULL);
  block = c_end_compound_stmt (loc, block, true);
  add_stmt (block);

  return ret;
}

/* OpenMP 4.0:
   # pragma omp teams teams-clause[optseq] new-line
     structured-block  */

#define OMP_TEAMS_CLAUSE_MASK					\
	( (OMP_CLAUSE_MASK_1 << PRAGMA_OMP_CLAUSE_PRIVATE)	\
	| (OMP_CLAUSE_MASK_1 << PRAGMA_OMP_CLAUSE_FIRSTPRIVATE)	\
	| (OMP_CLAUSE_MASK_1 << PRAGMA_OMP_CLAUSE_SHARED)	\
	| (OMP_CLAUSE_MASK_1 << PRAGMA_OMP_CLAUSE_REDUCTION)	\
	| (OMP_CLAUSE_MASK_1 << PRAGMA_OMP_CLAUSE_NUM_TEAMS)	\
	| (OMP_CLAUSE_MASK_1 << PRAGMA_OMP_CLAUSE_THREAD_LIMIT)	\
	| (OMP_CLAUSE_MASK_1 << PRAGMA_OMP_CLAUSE_DEFAULT))

static tree
c_parser_omp_teams (location_t loc, c_parser *parser,
		    char *p_name, omp_clause_mask mask, tree *cclauses)
{
  tree clauses, block, ret;

  strcat (p_name, " teams");
  mask |= OMP_TEAMS_CLAUSE_MASK;

  if (c_parser_next_token_is (parser, CPP_NAME))
    {
      const char *p = IDENTIFIER_POINTER (c_parser_peek_token (parser)->value);
      if (strcmp (p, "distribute") == 0)
	{
	  tree cclauses_buf[C_OMP_CLAUSE_SPLIT_COUNT];
	  if (cclauses == NULL)
	    cclauses = cclauses_buf;

	  c_parser_consume_token (parser);
	  if (!flag_openmp)  /* flag_openmp_simd  */
	    return c_parser_omp_distribute (loc, parser, p_name, mask, cclauses);
	  block = c_begin_compound_stmt (true);
	  ret = c_parser_omp_distribute (loc, parser, p_name, mask, cclauses);
	  block = c_end_compound_stmt (loc, block, true);
	  if (ret == NULL)
	    return ret;
	  clauses = cclauses[C_OMP_CLAUSE_SPLIT_TEAMS];
	  ret = make_node (OMP_TEAMS);
	  TREE_TYPE (ret) = void_type_node;
	  OMP_TEAMS_CLAUSES (ret) = clauses;
	  OMP_TEAMS_BODY (ret) = block;
	  return add_stmt (ret);
	}
    }
  if (!flag_openmp)  /* flag_openmp_simd  */
    {
      c_parser_skip_to_pragma_eol (parser);
      return NULL_TREE;
    }

  clauses = c_parser_omp_all_clauses (parser, mask, p_name, cclauses == NULL);
  if (cclauses)
    {
      omp_split_clauses (loc, OMP_TEAMS, mask, clauses, cclauses);
      clauses = cclauses[C_OMP_CLAUSE_SPLIT_TEAMS];
    }

  tree stmt = make_node (OMP_TEAMS);
  TREE_TYPE (stmt) = void_type_node;
  OMP_TEAMS_CLAUSES (stmt) = clauses;
  OMP_TEAMS_BODY (stmt) = c_parser_omp_structured_block (parser);

  return add_stmt (stmt);
}

/* OpenMP 4.0:
   # pragma omp target data target-data-clause[optseq] new-line
     structured-block  */

#define OMP_TARGET_DATA_CLAUSE_MASK				\
	( (OMP_CLAUSE_MASK_1 << PRAGMA_OMP_CLAUSE_DEVICE)	\
	| (OMP_CLAUSE_MASK_1 << PRAGMA_OMP_CLAUSE_MAP)		\
	| (OMP_CLAUSE_MASK_1 << PRAGMA_OMP_CLAUSE_IF))

static tree
c_parser_omp_target_data (location_t loc, c_parser *parser)
{
  tree stmt = make_node (OMP_TARGET_DATA);
  TREE_TYPE (stmt) = void_type_node;

  OMP_TARGET_DATA_CLAUSES (stmt)
    = c_parser_omp_all_clauses (parser, OMP_TARGET_DATA_CLAUSE_MASK,
				"#pragma omp target data");
  keep_next_level ();
  tree block = c_begin_compound_stmt (true);
  add_stmt (c_parser_omp_structured_block (parser));
  OMP_TARGET_DATA_BODY (stmt) = c_end_compound_stmt (loc, block, true);

  SET_EXPR_LOCATION (stmt, loc);
  return add_stmt (stmt);
}

/* OpenMP 4.0:
   # pragma omp target update target-update-clause[optseq] new-line */

#define OMP_TARGET_UPDATE_CLAUSE_MASK				\
	( (OMP_CLAUSE_MASK_1 << PRAGMA_OMP_CLAUSE_FROM)		\
	| (OMP_CLAUSE_MASK_1 << PRAGMA_OMP_CLAUSE_TO)		\
	| (OMP_CLAUSE_MASK_1 << PRAGMA_OMP_CLAUSE_DEVICE)	\
	| (OMP_CLAUSE_MASK_1 << PRAGMA_OMP_CLAUSE_IF))

static bool
c_parser_omp_target_update (location_t loc, c_parser *parser,
			    enum pragma_context context)
{
  if (context == pragma_stmt)
    {
      error_at (loc,
		"%<#pragma omp target update%> may only be "
		"used in compound statements");
      c_parser_skip_to_pragma_eol (parser);
      return false;
    }

  tree clauses
    = c_parser_omp_all_clauses (parser, OMP_TARGET_UPDATE_CLAUSE_MASK,
				"#pragma omp target update");
  if (find_omp_clause (clauses, OMP_CLAUSE_TO) == NULL_TREE
      && find_omp_clause (clauses, OMP_CLAUSE_FROM) == NULL_TREE)
    {
      error_at (loc,
		"%<#pragma omp target update must contain at least one "
		"%<from%> or %<to%> clauses");
      return false;
    }

  tree stmt = make_node (OMP_TARGET_UPDATE);
  TREE_TYPE (stmt) = void_type_node;
  OMP_TARGET_UPDATE_CLAUSES (stmt) = clauses;
  SET_EXPR_LOCATION (stmt, loc);
  add_stmt (stmt);
  return false;
}

/* OpenMP 4.0:
   # pragma omp target target-clause[optseq] new-line
     structured-block  */

#define OMP_TARGET_CLAUSE_MASK					\
	( (OMP_CLAUSE_MASK_1 << PRAGMA_OMP_CLAUSE_DEVICE)	\
	| (OMP_CLAUSE_MASK_1 << PRAGMA_OMP_CLAUSE_MAP)		\
	| (OMP_CLAUSE_MASK_1 << PRAGMA_OMP_CLAUSE_IF))

static bool
c_parser_omp_target (c_parser *parser, enum pragma_context context)
{
  location_t loc = c_parser_peek_token (parser)->location;
  c_parser_consume_pragma (parser);

  if (context != pragma_stmt && context != pragma_compound)
    {
      c_parser_error (parser, "expected declaration specifiers");
      c_parser_skip_to_pragma_eol (parser);
      return false;
    }

  if (c_parser_next_token_is (parser, CPP_NAME))
    {
      const char *p = IDENTIFIER_POINTER (c_parser_peek_token (parser)->value);

      if (strcmp (p, "teams") == 0)
	{
	  tree cclauses[C_OMP_CLAUSE_SPLIT_COUNT];
	  char p_name[sizeof ("#pragma omp target teams distribute "
			      "parallel for simd")];

	  c_parser_consume_token (parser);
	  if (!flag_openmp)  /* flag_openmp_simd  */
	    return c_parser_omp_teams (loc, parser, p_name,
				       OMP_TARGET_CLAUSE_MASK, cclauses);
	  strcpy (p_name, "#pragma omp target");
	  keep_next_level ();
	  tree block = c_begin_compound_stmt (true);
	  tree ret = c_parser_omp_teams (loc, parser, p_name,
					 OMP_TARGET_CLAUSE_MASK, cclauses);
	  block = c_end_compound_stmt (loc, block, true);
	  if (ret == NULL)
	    return ret;
	  tree stmt = make_node (OMP_TARGET);
	  TREE_TYPE (stmt) = void_type_node;
	  OMP_TARGET_CLAUSES (stmt) = cclauses[C_OMP_CLAUSE_SPLIT_TARGET];
	  OMP_TARGET_BODY (stmt) = block;
	  add_stmt (stmt);
	  return true;
	}
      else if (!flag_openmp)  /* flag_openmp_simd  */
	{
	  c_parser_skip_to_pragma_eol (parser);
	  return NULL_TREE;
	}
      else if (strcmp (p, "data") == 0)
	{
	  c_parser_consume_token (parser);
	  c_parser_omp_target_data (loc, parser);
	  return true;
	}
      else if (strcmp (p, "update") == 0)
	{
	  c_parser_consume_token (parser);
	  return c_parser_omp_target_update (loc, parser, context);
	}
    }

  tree stmt = make_node (OMP_TARGET);
  TREE_TYPE (stmt) = void_type_node;

  OMP_TARGET_CLAUSES (stmt)
    = c_parser_omp_all_clauses (parser, OMP_TARGET_CLAUSE_MASK,
				"#pragma omp target");
  keep_next_level ();
  tree block = c_begin_compound_stmt (true);
  add_stmt (c_parser_omp_structured_block (parser));
  OMP_TARGET_BODY (stmt) = c_end_compound_stmt (loc, block, true);

  SET_EXPR_LOCATION (stmt, loc);
  add_stmt (stmt);
  return true;
}

/* OpenMP 4.0:
   # pragma omp declare simd declare-simd-clauses[optseq] new-line  */

#define OMP_DECLARE_SIMD_CLAUSE_MASK				\
	( (OMP_CLAUSE_MASK_1 << PRAGMA_OMP_CLAUSE_SIMDLEN)	\
	| (OMP_CLAUSE_MASK_1 << PRAGMA_OMP_CLAUSE_LINEAR)	\
	| (OMP_CLAUSE_MASK_1 << PRAGMA_OMP_CLAUSE_ALIGNED)	\
	| (OMP_CLAUSE_MASK_1 << PRAGMA_OMP_CLAUSE_UNIFORM)	\
	| (OMP_CLAUSE_MASK_1 << PRAGMA_OMP_CLAUSE_INBRANCH)	\
	| (OMP_CLAUSE_MASK_1 << PRAGMA_OMP_CLAUSE_NOTINBRANCH))

static void
c_parser_omp_declare_simd (c_parser *parser, enum pragma_context context)
{
  vec<c_token> clauses = vNULL;
  while (c_parser_next_token_is_not (parser, CPP_PRAGMA_EOL))
    {
      c_token *token = c_parser_peek_token (parser);
      if (token->type == CPP_EOF)
	{
	  c_parser_skip_to_pragma_eol (parser);
	  clauses.release ();
	  return;
	}
      clauses.safe_push (*token);
      c_parser_consume_token (parser);
    }
  clauses.safe_push (*c_parser_peek_token (parser));
  c_parser_skip_to_pragma_eol (parser);

  while (c_parser_next_token_is (parser, CPP_PRAGMA))
    {
      if (c_parser_peek_token (parser)->pragma_kind
	  != PRAGMA_OMP_DECLARE_REDUCTION
	  || c_parser_peek_2nd_token (parser)->type != CPP_NAME
	  || strcmp (IDENTIFIER_POINTER
				(c_parser_peek_2nd_token (parser)->value),
		     "simd") != 0)
	{
	  c_parser_error (parser,
			  "%<#pragma omp declare simd%> must be followed by "
			  "function declaration or definition or another "
			  "%<#pragma omp declare simd%>");
	  clauses.release ();
	  return;
	}
      c_parser_consume_pragma (parser);
      while (c_parser_next_token_is_not (parser, CPP_PRAGMA_EOL))
	{
	  c_token *token = c_parser_peek_token (parser);
	  if (token->type == CPP_EOF)
	    {
	      c_parser_skip_to_pragma_eol (parser);
	      clauses.release ();
	      return;
	    }
	  clauses.safe_push (*token);
	  c_parser_consume_token (parser);
	}
      clauses.safe_push (*c_parser_peek_token (parser));
      c_parser_skip_to_pragma_eol (parser);
    }

  /* Make sure nothing tries to read past the end of the tokens.  */
  c_token eof_token;
  memset (&eof_token, 0, sizeof (eof_token));
  eof_token.type = CPP_EOF;
  clauses.safe_push (eof_token);
  clauses.safe_push (eof_token);

  switch (context)
    {
    case pragma_external:
      if (c_parser_next_token_is (parser, CPP_KEYWORD)
	  && c_parser_peek_token (parser)->keyword == RID_EXTENSION)
	{
	  int ext = disable_extension_diagnostics ();
	  do
	    c_parser_consume_token (parser);
	  while (c_parser_next_token_is (parser, CPP_KEYWORD)
		 && c_parser_peek_token (parser)->keyword == RID_EXTENSION);
	  c_parser_declaration_or_fndef (parser, true, true, true, false, true,
					 NULL, clauses);
	  restore_extension_diagnostics (ext);
	}
      else
	c_parser_declaration_or_fndef (parser, true, true, true, false, true,
				       NULL, clauses);
      break;
    case pragma_struct:
    case pragma_param:
      c_parser_error (parser, "%<#pragma omp declare simd%> must be followed by "
			      "function declaration or definition");
      break;
    case pragma_compound:
    case pragma_stmt:
      if (c_parser_next_token_is (parser, CPP_KEYWORD)
	  && c_parser_peek_token (parser)->keyword == RID_EXTENSION)
	{
	  int ext = disable_extension_diagnostics ();
	  do
	    c_parser_consume_token (parser);
	  while (c_parser_next_token_is (parser, CPP_KEYWORD)
		 && c_parser_peek_token (parser)->keyword == RID_EXTENSION);
	  if (c_parser_next_tokens_start_declaration (parser))
	    {
	      c_parser_declaration_or_fndef (parser, true, true, true, true,
					     true, NULL, clauses);
	      restore_extension_diagnostics (ext);
	      break;
	    }
	  restore_extension_diagnostics (ext);
	}
      else if (c_parser_next_tokens_start_declaration (parser))
	{
	  c_parser_declaration_or_fndef (parser, true, true, true, true, true,
					 NULL, clauses);
	  break;
	}
      c_parser_error (parser, "%<#pragma omp declare simd%> must be followed by "
			      "function declaration or definition");
      break;
    default:
      gcc_unreachable ();
    }
  clauses.release ();
}

/* Finalize #pragma omp declare simd clauses after FNDECL has been parsed,
   and put that into "omp declare simd" attribute.  */

static void
c_finish_omp_declare_simd (c_parser *parser, tree fndecl, tree parms,
			   vec<c_token> clauses)
{
  /* Normally first token is CPP_NAME "simd".  CPP_EOF there indicates
     error has been reported and CPP_PRAGMA that c_finish_omp_declare_simd
     has already processed the tokens.  */
  if (clauses[0].type == CPP_EOF)
    return;
  if (fndecl == NULL_TREE || TREE_CODE (fndecl) != FUNCTION_DECL)
    {
      error ("%<#pragma omp declare simd%> not immediately followed by "
	     "a function declaration or definition");
      clauses[0].type = CPP_EOF;
      return;
    }
  if (clauses[0].type != CPP_NAME)
    {
      error_at (DECL_SOURCE_LOCATION (fndecl),
		"%<#pragma omp declare simd%> not immediately followed by "
		"a single function declaration or definition");
      clauses[0].type = CPP_EOF;
      return;
    }

  if (parms == NULL_TREE)
    parms = DECL_ARGUMENTS (fndecl);

  unsigned int tokens_avail = parser->tokens_avail;
  gcc_assert (parser->tokens == &parser->tokens_buf[0]);
  parser->tokens = clauses.address ();
  parser->tokens_avail = clauses.length ();

  /* c_parser_omp_declare_simd pushed 2 extra CPP_EOF tokens at the end.  */
  while (parser->tokens_avail > 3)
    {
      c_token *token = c_parser_peek_token (parser);
      gcc_assert (token->type == CPP_NAME
		  && strcmp (IDENTIFIER_POINTER (token->value), "simd") == 0);
      c_parser_consume_token (parser);
      parser->in_pragma = true;

      tree c = c_parser_omp_all_clauses (parser, OMP_DECLARE_SIMD_CLAUSE_MASK,
					 "#pragma omp declare simd");
      c = c_omp_declare_simd_clauses_to_numbers (parms, c);
      if (c != NULL_TREE)
	c = tree_cons (NULL_TREE, c, NULL_TREE);
      c = build_tree_list (get_identifier ("omp declare simd"), c);
      TREE_CHAIN (c) = DECL_ATTRIBUTES (fndecl);
      DECL_ATTRIBUTES (fndecl) = c;
    }

  parser->tokens = &parser->tokens_buf[0];
  parser->tokens_avail = tokens_avail;
  clauses[0].type = CPP_PRAGMA;
}


/* OpenMP 4.0:
   # pragma omp declare target new-line
   declarations and definitions
   # pragma omp end declare target new-line  */

static void
c_parser_omp_declare_target (c_parser *parser)
{
  c_parser_skip_to_pragma_eol (parser);
  current_omp_declare_target_attribute++;
}

static void
c_parser_omp_end_declare_target (c_parser *parser)
{
  location_t loc = c_parser_peek_token (parser)->location;
  c_parser_consume_pragma (parser);
  if (c_parser_next_token_is (parser, CPP_NAME)
      && strcmp (IDENTIFIER_POINTER (c_parser_peek_token (parser)->value),
		 "declare") == 0)
    {
      c_parser_consume_token (parser);
      if (c_parser_next_token_is (parser, CPP_NAME)
	  && strcmp (IDENTIFIER_POINTER (c_parser_peek_token (parser)->value),
		     "target") == 0)
	c_parser_consume_token (parser);
      else
	{
	  c_parser_error (parser, "expected %<target%>");
	  c_parser_skip_to_pragma_eol (parser);
	  return;
	}
    }
  else
    {
      c_parser_error (parser, "expected %<declare%>");
      c_parser_skip_to_pragma_eol (parser);
      return;
    }
  c_parser_skip_to_pragma_eol (parser);
  if (!current_omp_declare_target_attribute)
    error_at (loc, "%<#pragma omp end declare target%> without corresponding "
		   "%<#pragma omp declare target%>");
  else
    current_omp_declare_target_attribute--;
}


/* OpenMP 4.0
   #pragma omp declare reduction (reduction-id : typename-list : expression) \
      initializer-clause[opt] new-line

   initializer-clause:
      initializer (omp_priv = initializer)
      initializer (function-name (argument-list))  */

static void
c_parser_omp_declare_reduction (c_parser *parser, enum pragma_context context)
{
  unsigned int tokens_avail = 0, i;
  vec<tree> types = vNULL;
  vec<c_token> clauses = vNULL;
  enum tree_code reduc_code = ERROR_MARK;
  tree reduc_id = NULL_TREE;
  tree type;
  location_t rloc = c_parser_peek_token (parser)->location;

  if (context == pragma_struct || context == pragma_param)
    {
      error ("%<#pragma omp declare reduction%> not at file or block scope");
      goto fail;
    }

  if (!c_parser_require (parser, CPP_OPEN_PAREN, "expected %<(%>"))
    goto fail;

  switch (c_parser_peek_token (parser)->type)
    {
    case CPP_PLUS:
      reduc_code = PLUS_EXPR;
      break;
    case CPP_MULT:
      reduc_code = MULT_EXPR;
      break;
    case CPP_MINUS:
      reduc_code = MINUS_EXPR;
      break;
    case CPP_AND:
      reduc_code = BIT_AND_EXPR;
      break;
    case CPP_XOR:
      reduc_code = BIT_XOR_EXPR;
      break;
    case CPP_OR:
      reduc_code = BIT_IOR_EXPR;
      break;
    case CPP_AND_AND:
      reduc_code = TRUTH_ANDIF_EXPR;
      break;
    case CPP_OR_OR:
      reduc_code = TRUTH_ORIF_EXPR;
      break;
    case CPP_NAME:
      const char *p;
      p = IDENTIFIER_POINTER (c_parser_peek_token (parser)->value);
      if (strcmp (p, "min") == 0)
	{
	  reduc_code = MIN_EXPR;
	  break;
	}
      if (strcmp (p, "max") == 0)
	{
	  reduc_code = MAX_EXPR;
	  break;
	}
      reduc_id = c_parser_peek_token (parser)->value;
      break;
    default:
      c_parser_error (parser,
		      "expected %<+%>, %<*%>, %<-%>, %<&%>, "
		      "%<^%>, %<|%>, %<&&%>, %<||%>, %<min%> or identifier");
      goto fail;
    }

  tree orig_reduc_id, reduc_decl;
  orig_reduc_id = reduc_id;
  reduc_id = c_omp_reduction_id (reduc_code, reduc_id);
  reduc_decl = c_omp_reduction_decl (reduc_id);
  c_parser_consume_token (parser);

  if (!c_parser_require (parser, CPP_COLON, "expected %<:%>"))
    goto fail;

  while (true)
    {
      location_t loc = c_parser_peek_token (parser)->location;
      struct c_type_name *ctype = c_parser_type_name (parser);
      if (ctype != NULL)
	{
	  type = groktypename (ctype, NULL, NULL);
	  if (type == error_mark_node)
	    ;
	  else if ((INTEGRAL_TYPE_P (type)
		    || TREE_CODE (type) == REAL_TYPE
		    || TREE_CODE (type) == COMPLEX_TYPE)
		   && orig_reduc_id == NULL_TREE)
	    error_at (loc, "predeclared arithmetic type in "
			   "%<#pragma omp declare reduction%>");
	  else if (TREE_CODE (type) == FUNCTION_TYPE
		   || TREE_CODE (type) == ARRAY_TYPE)
	    error_at (loc, "function or array type in "
		      "%<#pragma omp declare reduction%>");
	  else if (TYPE_QUALS_NO_ADDR_SPACE (type))
	    error_at (loc, "const, volatile or restrict qualified type in "
			   "%<#pragma omp declare reduction%>");
	  else
	    {
	      tree t;
	      for (t = DECL_INITIAL (reduc_decl); t; t = TREE_CHAIN (t))
		if (comptypes (TREE_PURPOSE (t), type))
		  {
		    error_at (loc, "redeclaration of %qs "
				   "%<#pragma omp declare reduction%> for "
				   "type %qT",
				   IDENTIFIER_POINTER (reduc_id)
				   + sizeof ("omp declare reduction ") - 1,
				   type);
		    location_t ploc
		      = DECL_SOURCE_LOCATION (TREE_VEC_ELT (TREE_VALUE (t),
							    0));
		    error_at (ploc, "previous %<#pragma omp declare "
				    "reduction%>");
		    break;
		  }
	      if (t == NULL_TREE)
		types.safe_push (type);
	    }
	  if (c_parser_next_token_is (parser, CPP_COMMA))
	    c_parser_consume_token (parser);
	  else
	    break;
	}
      else
	break;
    }

  if (!c_parser_require (parser, CPP_COLON, "expected %<:%>")
      || types.is_empty ())
    {
     fail:
      clauses.release ();
      types.release ();
      while (true)
	{
	  c_token *token = c_parser_peek_token (parser);
	  if (token->type == CPP_EOF || token->type == CPP_PRAGMA_EOL)
	    break;
	  c_parser_consume_token (parser);
	}
      c_parser_skip_to_pragma_eol (parser);
      return;
    }

  if (types.length () > 1)
    {
      while (c_parser_next_token_is_not (parser, CPP_PRAGMA_EOL))
	{
	  c_token *token = c_parser_peek_token (parser);
	  if (token->type == CPP_EOF)
	    goto fail;
	  clauses.safe_push (*token);
	  c_parser_consume_token (parser);
	}
      clauses.safe_push (*c_parser_peek_token (parser));
      c_parser_skip_to_pragma_eol (parser);

      /* Make sure nothing tries to read past the end of the tokens.  */
      c_token eof_token;
      memset (&eof_token, 0, sizeof (eof_token));
      eof_token.type = CPP_EOF;
      clauses.safe_push (eof_token);
      clauses.safe_push (eof_token);
    }

  int errs = errorcount;
  FOR_EACH_VEC_ELT (types, i, type)
    {
      tokens_avail = parser->tokens_avail;
      gcc_assert (parser->tokens == &parser->tokens_buf[0]);
      if (!clauses.is_empty ())
	{
	  parser->tokens = clauses.address ();
	  parser->tokens_avail = clauses.length ();
	  parser->in_pragma = true;
	}

      bool nested = current_function_decl != NULL_TREE;
      if (nested)
	c_push_function_context ();
      tree fndecl = build_decl (BUILTINS_LOCATION, FUNCTION_DECL,
				reduc_id, default_function_type);
      current_function_decl = fndecl;
      allocate_struct_function (fndecl, true);
      push_scope ();
      tree stmt = push_stmt_list ();
      /* Intentionally BUILTINS_LOCATION, so that -Wshadow doesn't
	 warn about these.  */
      tree omp_out = build_decl (BUILTINS_LOCATION, VAR_DECL,
				 get_identifier ("omp_out"), type);
      DECL_ARTIFICIAL (omp_out) = 1;
      DECL_CONTEXT (omp_out) = fndecl;
      pushdecl (omp_out);
      tree omp_in = build_decl (BUILTINS_LOCATION, VAR_DECL,
				get_identifier ("omp_in"), type);
      DECL_ARTIFICIAL (omp_in) = 1;
      DECL_CONTEXT (omp_in) = fndecl;
      pushdecl (omp_in);
      struct c_expr combiner = c_parser_expression (parser);
      struct c_expr initializer;
      tree omp_priv = NULL_TREE, omp_orig = NULL_TREE;
      bool bad = false;
      initializer.value = error_mark_node;
      if (!c_parser_require (parser, CPP_CLOSE_PAREN, "expected %<)%>"))
	bad = true;
      else if (c_parser_next_token_is (parser, CPP_NAME)
	       && strcmp (IDENTIFIER_POINTER
				(c_parser_peek_token (parser)->value),
			  "initializer") == 0)
	{
	  c_parser_consume_token (parser);
	  pop_scope ();
	  push_scope ();
	  omp_priv = build_decl (BUILTINS_LOCATION, VAR_DECL,
				 get_identifier ("omp_priv"), type);
	  DECL_ARTIFICIAL (omp_priv) = 1;
	  DECL_INITIAL (omp_priv) = error_mark_node;
	  DECL_CONTEXT (omp_priv) = fndecl;
	  pushdecl (omp_priv);
	  omp_orig = build_decl (BUILTINS_LOCATION, VAR_DECL,
				 get_identifier ("omp_orig"), type);
	  DECL_ARTIFICIAL (omp_orig) = 1;
	  DECL_CONTEXT (omp_orig) = fndecl;
	  pushdecl (omp_orig);
	  if (!c_parser_require (parser, CPP_OPEN_PAREN, "expected %<(%>"))
	    bad = true;
	  else if (!c_parser_next_token_is (parser, CPP_NAME))
	    {
	      c_parser_error (parser, "expected %<omp_priv%> or "
				      "function-name");
	      bad = true;
	    }
	  else if (strcmp (IDENTIFIER_POINTER
				(c_parser_peek_token (parser)->value),
			   "omp_priv") != 0)
	    {
	      if (c_parser_peek_2nd_token (parser)->type != CPP_OPEN_PAREN
		  || c_parser_peek_token (parser)->id_kind != C_ID_ID)
		{
		  c_parser_error (parser, "expected function-name %<(%>");
		  bad = true;
		}
	      else
		initializer = c_parser_postfix_expression (parser);
	      if (initializer.value
		  && TREE_CODE (initializer.value) == CALL_EXPR)
		{
		  int j;
		  tree c = initializer.value;
		  for (j = 0; j < call_expr_nargs (c); j++)
		    if (TREE_CODE (CALL_EXPR_ARG (c, j)) == ADDR_EXPR
			&& TREE_OPERAND (CALL_EXPR_ARG (c, j), 0) == omp_priv)
		      break;
		  if (j == call_expr_nargs (c))
		    error ("one of the initializer call arguments should be "
			   "%<&omp_priv%>");
		}
	    }
	  else
	    {
	      c_parser_consume_token (parser);
	      if (!c_parser_require (parser, CPP_EQ, "expected %<=%>"))
		bad = true;
	      else
		{
		  tree st = push_stmt_list ();
		  start_init (omp_priv, NULL_TREE, 0);
		  location_t loc = c_parser_peek_token (parser)->location;
		  struct c_expr init = c_parser_initializer (parser);
		  finish_init ();
		  finish_decl (omp_priv, loc, init.value,
		      	       init.original_type, NULL_TREE);
		  pop_stmt_list (st);
		}
	    }
	  if (!bad
	      && !c_parser_require (parser, CPP_CLOSE_PAREN, "expected %<)%>"))
	    bad = true;
	}

      if (!bad)
	{
	  c_parser_skip_to_pragma_eol (parser);

	  tree t = tree_cons (type, make_tree_vec (omp_priv ? 6 : 3),
			      DECL_INITIAL (reduc_decl));
	  DECL_INITIAL (reduc_decl) = t;
	  DECL_SOURCE_LOCATION (omp_out) = rloc;
	  TREE_VEC_ELT (TREE_VALUE (t), 0) = omp_out;
	  TREE_VEC_ELT (TREE_VALUE (t), 1) = omp_in;
	  TREE_VEC_ELT (TREE_VALUE (t), 2) = combiner.value;
	  walk_tree (&combiner.value, c_check_omp_declare_reduction_r,
		     &TREE_VEC_ELT (TREE_VALUE (t), 0), NULL);
	  if (omp_priv)
	    {
	      DECL_SOURCE_LOCATION (omp_priv) = rloc;
	      TREE_VEC_ELT (TREE_VALUE (t), 3) = omp_priv;
	      TREE_VEC_ELT (TREE_VALUE (t), 4) = omp_orig;
	      TREE_VEC_ELT (TREE_VALUE (t), 5) = initializer.value;
	      walk_tree (&initializer.value, c_check_omp_declare_reduction_r,
			 &TREE_VEC_ELT (TREE_VALUE (t), 3), NULL);
	      walk_tree (&DECL_INITIAL (omp_priv),
			 c_check_omp_declare_reduction_r,
			 &TREE_VEC_ELT (TREE_VALUE (t), 3), NULL);
	    }
	}

      pop_stmt_list (stmt);
      pop_scope ();
      if (cfun->language != NULL)
	{
	  ggc_free (cfun->language);
	  cfun->language = NULL;
	}
      set_cfun (NULL);
      current_function_decl = NULL_TREE;
      if (nested)
	c_pop_function_context ();

      if (!clauses.is_empty ())
	{
	  parser->tokens = &parser->tokens_buf[0];
	  parser->tokens_avail = tokens_avail;
	}
      if (bad)
	goto fail;
      if (errs != errorcount)
	break;
    }

  clauses.release ();
  types.release ();
}


/* OpenMP 4.0
   #pragma omp declare simd declare-simd-clauses[optseq] new-line
   #pragma omp declare reduction (reduction-id : typename-list : expression) \
      initializer-clause[opt] new-line
   #pragma omp declare target new-line  */

static void
c_parser_omp_declare (c_parser *parser, enum pragma_context context)
{
  c_parser_consume_pragma (parser);
  if (c_parser_next_token_is (parser, CPP_NAME))
    {
      const char *p = IDENTIFIER_POINTER (c_parser_peek_token (parser)->value);
      if (strcmp (p, "simd") == 0)
	{
	  /* c_parser_consume_token (parser); done in
	     c_parser_omp_declare_simd.  */
	  c_parser_omp_declare_simd (parser, context);
	  return;
	}
      if (strcmp (p, "reduction") == 0)
	{
	  c_parser_consume_token (parser);
	  c_parser_omp_declare_reduction (parser, context);
	  return;
	}
      if (!flag_openmp)  /* flag_openmp_simd  */
	{
	  c_parser_skip_to_pragma_eol (parser);
	  return;
	}
      if (strcmp (p, "target") == 0)
	{
	  c_parser_consume_token (parser);
	  c_parser_omp_declare_target (parser);
	  return;
	}
    }

  c_parser_error (parser, "expected %<simd%> or %<reduction%> "
			  "or %<target%>");
  c_parser_skip_to_pragma_eol (parser);
}

/* Main entry point to parsing most OpenMP pragmas.  */

static void
c_parser_omp_construct (c_parser *parser)
{
  enum pragma_kind p_kind;
  location_t loc;
  tree stmt;
  char p_name[sizeof "#pragma omp teams distribute parallel for simd"];
  omp_clause_mask mask (0);

  loc = c_parser_peek_token (parser)->location;
  p_kind = c_parser_peek_token (parser)->pragma_kind;
  c_parser_consume_pragma (parser);

  switch (p_kind)
    {
    case PRAGMA_OMP_ATOMIC:
      c_parser_omp_atomic (loc, parser);
      return;
    case PRAGMA_OMP_CRITICAL:
      stmt = c_parser_omp_critical (loc, parser);
      break;
    case PRAGMA_OMP_DISTRIBUTE:
      strcpy (p_name, "#pragma omp");
      stmt = c_parser_omp_distribute (loc, parser, p_name, mask, NULL);
      break;
    case PRAGMA_OMP_FOR:
      strcpy (p_name, "#pragma omp");
      stmt = c_parser_omp_for (loc, parser, p_name, mask, NULL);
      break;
    case PRAGMA_OMP_MASTER:
      stmt = c_parser_omp_master (loc, parser);
      break;
    case PRAGMA_OMP_ORDERED:
      stmt = c_parser_omp_ordered (loc, parser);
      break;
    case PRAGMA_OMP_PARALLEL:
      strcpy (p_name, "#pragma omp");
      stmt = c_parser_omp_parallel (loc, parser, p_name, mask, NULL);
      break;
    case PRAGMA_OMP_SECTIONS:
      strcpy (p_name, "#pragma omp");
      stmt = c_parser_omp_sections (loc, parser, p_name, mask, NULL);
      break;
    case PRAGMA_OMP_SIMD:
      strcpy (p_name, "#pragma omp");
      stmt = c_parser_omp_simd (loc, parser, p_name, mask, NULL);
      break;
    case PRAGMA_OMP_SINGLE:
      stmt = c_parser_omp_single (loc, parser);
      break;
    case PRAGMA_OMP_TASK:
      stmt = c_parser_omp_task (loc, parser);
      break;
    case PRAGMA_OMP_TASKGROUP:
      stmt = c_parser_omp_taskgroup (parser);
      break;
    case PRAGMA_OMP_TEAMS:
      strcpy (p_name, "#pragma omp");
      stmt = c_parser_omp_teams (loc, parser, p_name, mask, NULL);
      break;
    default:
      gcc_unreachable ();
    }

  if (stmt)
    gcc_assert (EXPR_LOCATION (stmt) != UNKNOWN_LOCATION);
}


/* OpenMP 2.5:
   # pragma omp threadprivate (variable-list) */

static void
c_parser_omp_threadprivate (c_parser *parser)
{
  tree vars, t;
  location_t loc;

  c_parser_consume_pragma (parser);
  loc = c_parser_peek_token (parser)->location;
  vars = c_parser_omp_var_list_parens (parser, OMP_CLAUSE_ERROR, NULL);

  /* Mark every variable in VARS to be assigned thread local storage.  */
  for (t = vars; t; t = TREE_CHAIN (t))
    {
      tree v = TREE_PURPOSE (t);

      /* FIXME diagnostics: Ideally we should keep individual
	 locations for all the variables in the var list to make the
	 following errors more precise.  Perhaps
	 c_parser_omp_var_list_parens() should construct a list of
	 locations to go along with the var list.  */

      /* If V had already been marked threadprivate, it doesn't matter
	 whether it had been used prior to this point.  */
      if (TREE_CODE (v) != VAR_DECL)
	error_at (loc, "%qD is not a variable", v);
      else if (TREE_USED (v) && !C_DECL_THREADPRIVATE_P (v))
	error_at (loc, "%qE declared %<threadprivate%> after first use", v);
      else if (! TREE_STATIC (v) && ! DECL_EXTERNAL (v))
	error_at (loc, "automatic variable %qE cannot be %<threadprivate%>", v);
      else if (TREE_TYPE (v) == error_mark_node)
	;
      else if (! COMPLETE_TYPE_P (TREE_TYPE (v)))
	error_at (loc, "%<threadprivate%> %qE has incomplete type", v);
      else
	{
	  if (! DECL_THREAD_LOCAL_P (v))
	    {
	      DECL_TLS_MODEL (v) = decl_default_tls_model (v);
	      /* If rtl has been already set for this var, call
		 make_decl_rtl once again, so that encode_section_info
		 has a chance to look at the new decl flags.  */
	      if (DECL_RTL_SET_P (v))
		make_decl_rtl (v);
	    }
	  C_DECL_THREADPRIVATE_P (v) = 1;
	}
    }

  c_parser_skip_to_pragma_eol (parser);
}

/* Parse a transaction attribute (GCC Extension).

   transaction-attribute:
     attributes
     [ [ any-word ] ]

   The transactional memory language description is written for C++,
   and uses the C++0x attribute syntax.  For compatibility, allow the
   bracket style for transactions in C as well.  */

static tree
c_parser_transaction_attributes (c_parser *parser)
{
  tree attr_name, attr = NULL;

  if (c_parser_next_token_is_keyword (parser, RID_ATTRIBUTE))
    return c_parser_attributes (parser);

  if (!c_parser_next_token_is (parser, CPP_OPEN_SQUARE))
    return NULL_TREE;
  c_parser_consume_token (parser);
  if (!c_parser_require (parser, CPP_OPEN_SQUARE, "expected %<[%>"))
    goto error1;

  attr_name = c_parser_attribute_any_word (parser);
  if (attr_name)
    {
      c_parser_consume_token (parser);
      attr = build_tree_list (attr_name, NULL_TREE);
    }
  else
    c_parser_error (parser, "expected identifier");

  c_parser_skip_until_found (parser, CPP_CLOSE_SQUARE, "expected %<]%>");
 error1:
  c_parser_skip_until_found (parser, CPP_CLOSE_SQUARE, "expected %<]%>");
  return attr;
}

/* Parse a __transaction_atomic or __transaction_relaxed statement
   (GCC Extension).

   transaction-statement:
     __transaction_atomic transaction-attribute[opt] compound-statement
     __transaction_relaxed compound-statement

   Note that the only valid attribute is: "outer".
*/

static tree
c_parser_transaction (c_parser *parser, enum rid keyword)
{
  unsigned int old_in = parser->in_transaction;
  unsigned int this_in = 1, new_in;
  location_t loc = c_parser_peek_token (parser)->location;
  tree stmt, attrs;

  gcc_assert ((keyword == RID_TRANSACTION_ATOMIC
      || keyword == RID_TRANSACTION_RELAXED)
      && c_parser_next_token_is_keyword (parser, keyword));
  c_parser_consume_token (parser);

  if (keyword == RID_TRANSACTION_RELAXED)
    this_in |= TM_STMT_ATTR_RELAXED;
  else
    {
      attrs = c_parser_transaction_attributes (parser);
      if (attrs)
	this_in |= parse_tm_stmt_attr (attrs, TM_STMT_ATTR_OUTER);
    }

  /* Keep track if we're in the lexical scope of an outer transaction.  */
  new_in = this_in | (old_in & TM_STMT_ATTR_OUTER);

  parser->in_transaction = new_in;
  stmt = c_parser_compound_statement (parser);
  parser->in_transaction = old_in;

  if (flag_tm)
    stmt = c_finish_transaction (loc, stmt, this_in);
  else
    error_at (loc, (keyword == RID_TRANSACTION_ATOMIC ?
	"%<__transaction_atomic%> without transactional memory support enabled"
	: "%<__transaction_relaxed %> "
	"without transactional memory support enabled"));

  return stmt;
}

/* Parse a __transaction_atomic or __transaction_relaxed expression
   (GCC Extension).

   transaction-expression:
     __transaction_atomic ( expression )
     __transaction_relaxed ( expression )
*/

static struct c_expr
c_parser_transaction_expression (c_parser *parser, enum rid keyword)
{
  struct c_expr ret;
  unsigned int old_in = parser->in_transaction;
  unsigned int this_in = 1;
  location_t loc = c_parser_peek_token (parser)->location;
  tree attrs;

  gcc_assert ((keyword == RID_TRANSACTION_ATOMIC
      || keyword == RID_TRANSACTION_RELAXED)
      && c_parser_next_token_is_keyword (parser, keyword));
  c_parser_consume_token (parser);

  if (keyword == RID_TRANSACTION_RELAXED)
    this_in |= TM_STMT_ATTR_RELAXED;
  else
    {
      attrs = c_parser_transaction_attributes (parser);
      if (attrs)
	this_in |= parse_tm_stmt_attr (attrs, 0);
    }

  parser->in_transaction = this_in;
  if (c_parser_require (parser, CPP_OPEN_PAREN, "expected %<(%>"))
    {
      tree expr = c_parser_expression (parser).value;
      ret.original_type = TREE_TYPE (expr);
      ret.value = build1 (TRANSACTION_EXPR, ret.original_type, expr);
      if (this_in & TM_STMT_ATTR_RELAXED)
	TRANSACTION_EXPR_RELAXED (ret.value) = 1;
      SET_EXPR_LOCATION (ret.value, loc);
      ret.original_code = TRANSACTION_EXPR;
      if (!c_parser_require (parser, CPP_CLOSE_PAREN, "expected %<)%>"))
	{
	  c_parser_skip_until_found (parser, CPP_CLOSE_PAREN, NULL);
	  goto error;
	}
    }
  else
    {
     error:
      ret.value = error_mark_node;
      ret.original_code = ERROR_MARK;
      ret.original_type = NULL;
    }
  parser->in_transaction = old_in;

  if (!flag_tm)
    error_at (loc, (keyword == RID_TRANSACTION_ATOMIC ?
	"%<__transaction_atomic%> without transactional memory support enabled"
	: "%<__transaction_relaxed %> "
	"without transactional memory support enabled"));

  return ret;
}

/* Parse a __transaction_cancel statement (GCC Extension).

   transaction-cancel-statement:
     __transaction_cancel transaction-attribute[opt] ;

   Note that the only valid attribute is "outer".
*/

static tree
c_parser_transaction_cancel (c_parser *parser)
{
  location_t loc = c_parser_peek_token (parser)->location;
  tree attrs;
  bool is_outer = false;

  gcc_assert (c_parser_next_token_is_keyword (parser, RID_TRANSACTION_CANCEL));
  c_parser_consume_token (parser);

  attrs = c_parser_transaction_attributes (parser);
  if (attrs)
    is_outer = (parse_tm_stmt_attr (attrs, TM_STMT_ATTR_OUTER) != 0);

  if (!flag_tm)
    {
      error_at (loc, "%<__transaction_cancel%> without "
		"transactional memory support enabled");
      goto ret_error;
    }
  else if (parser->in_transaction & TM_STMT_ATTR_RELAXED)
    {
      error_at (loc, "%<__transaction_cancel%> within a "
		"%<__transaction_relaxed%>");
      goto ret_error;
    }
  else if (is_outer)
    {
      if ((parser->in_transaction & TM_STMT_ATTR_OUTER) == 0
	  && !is_tm_may_cancel_outer (current_function_decl))
	{
	  error_at (loc, "outer %<__transaction_cancel%> not "
		    "within outer %<__transaction_atomic%>");
	  error_at (loc, "  or a %<transaction_may_cancel_outer%> function");
	  goto ret_error;
	}
    }
  else if (parser->in_transaction == 0)
    {
      error_at (loc, "%<__transaction_cancel%> not within "
		"%<__transaction_atomic%>");
      goto ret_error;
    }

  return add_stmt (build_tm_abort_call (loc, is_outer));

 ret_error:
  return build1 (NOP_EXPR, void_type_node, error_mark_node);
}

/* Parse a single source file.  */

void
c_parse_file (void)
{
  /* Use local storage to begin.  If the first token is a pragma, parse it.
     If it is #pragma GCC pch_preprocess, then this will load a PCH file
     which will cause garbage collection.  */
  c_parser tparser;

  memset (&tparser, 0, sizeof tparser);
  tparser.tokens = &tparser.tokens_buf[0];
  the_parser = &tparser;

  if (c_parser_peek_token (&tparser)->pragma_kind == PRAGMA_GCC_PCH_PREPROCESS)
    c_parser_pragma_pch_preprocess (&tparser);

  the_parser = ggc_alloc_c_parser ();
  *the_parser = tparser;
  if (tparser.tokens == &tparser.tokens_buf[0])
    the_parser->tokens = &the_parser->tokens_buf[0];

  /* Initialize EH, if we've been told to do so.  */
  if (flag_exceptions)
    using_eh_for_cleanups ();

  c_parser_translation_unit (the_parser);
  the_parser = NULL;
}

/* This function parses Cilk Plus array notation.  The starting index is
   passed in INITIAL_INDEX and the array name is passes in ARRAY_VALUE.  The
   return value of this function is a tree_node called VALUE_TREE of type
   ARRAY_NOTATION_REF.  */

static tree 
c_parser_array_notation (location_t loc, c_parser *parser, tree initial_index, 
			 tree array_value)
{
  c_token *token = NULL;
  tree start_index = NULL_TREE, end_index = NULL_TREE, stride = NULL_TREE;
  tree value_tree = NULL_TREE, type = NULL_TREE, array_type = NULL_TREE;
  tree array_type_domain = NULL_TREE; 

  if (array_value == error_mark_node)
    {
      /* No need to continue.  If either of these 2 were true, then an error
	 must be emitted already.  Thus, no need to emit them twice.  */
      c_parser_skip_until_found (parser, CPP_CLOSE_SQUARE, NULL);
      return error_mark_node;
    }
  
  array_type = TREE_TYPE (array_value);
  gcc_assert (array_type);
  type = TREE_TYPE (array_type);
  token = c_parser_peek_token (parser);
   
  if (token->type == CPP_EOF)
    {
      c_parser_error (parser, "expected %<:%> or numeral");
      return value_tree;
    }
  else if (token->type == CPP_COLON)
    {
      if (!initial_index)
	{
	  /* If we are here, then we have a case like this A[:].  */
	  c_parser_consume_token (parser);
	  if (TREE_CODE (array_type) == POINTER_TYPE)
	    {
	      error_at (loc, "start-index and length fields necessary for "
			"using array notations in pointers");
	      c_parser_skip_until_found (parser, CPP_CLOSE_SQUARE, NULL);
	      return error_mark_node;
	    }
	  if (TREE_CODE (array_type) == FUNCTION_TYPE)
	    {
	      error_at (loc, "array notations cannot be used with function "
			"type");
	      c_parser_skip_until_found (parser, CPP_CLOSE_SQUARE, NULL);
	      return error_mark_node;
	    }
	  array_type_domain = TYPE_DOMAIN (array_type);

	  if (!array_type_domain)
	    {
	      error_at (loc, "start-index and length fields necessary for "
			"using array notations in dimensionless arrays");
	      c_parser_skip_until_found (parser, CPP_CLOSE_SQUARE, NULL);
	      return error_mark_node;
	    }

	  start_index = TYPE_MINVAL (array_type_domain);
	  start_index = fold_build1 (CONVERT_EXPR, ptrdiff_type_node,
				     start_index);
	  if (!TYPE_MAXVAL (array_type_domain)
	      || !TREE_CONSTANT (TYPE_MAXVAL (array_type_domain)))
	    {
	      error_at (loc, "start-index and length fields necessary for "
			"using array notations in variable-length arrays");
	      c_parser_skip_until_found (parser, CPP_CLOSE_SQUARE, NULL);
	      return error_mark_node;
	    }
	  end_index = TYPE_MAXVAL (array_type_domain);
	  end_index = fold_build2 (PLUS_EXPR, TREE_TYPE (end_index),
				   end_index, integer_one_node);
	  end_index = fold_build1 (CONVERT_EXPR, ptrdiff_type_node, end_index);
	  stride = build_int_cst (integer_type_node, 1);
	  stride = fold_build1 (CONVERT_EXPR, ptrdiff_type_node, stride);
	}
      else if (initial_index != error_mark_node)
	{
	  /* If we are here, then there should be 2 possibilities:
	     1. Array [EXPR : EXPR]
	     2. Array [EXPR : EXPR : EXPR]
	  */
	  start_index = initial_index;

	  if (TREE_CODE (array_type) == FUNCTION_TYPE)
	    {
	      error_at (loc, "array notations cannot be used with function "
			"type");
	      c_parser_skip_until_found (parser, CPP_CLOSE_SQUARE, NULL);
	      return error_mark_node;
	    }
	  c_parser_consume_token (parser); /* consume the ':' */
	  struct c_expr ce = c_parser_expression (parser);
	  ce = convert_lvalue_to_rvalue (loc, ce, false, false);
	  end_index = ce.value;
	  if (!end_index || end_index == error_mark_node)
	    {
	      c_parser_skip_to_end_of_block_or_statement (parser);
	      return error_mark_node;
	    }
	  if (c_parser_peek_token (parser)->type == CPP_COLON)
	    {
	      c_parser_consume_token (parser);
	      ce = c_parser_expression (parser);
	      ce = convert_lvalue_to_rvalue (loc, ce, false, false);
	      stride = ce.value;
	      if (!stride || stride == error_mark_node)
		{
		  c_parser_skip_to_end_of_block_or_statement (parser);
		  return error_mark_node;
		}
	    }
	}
      else
	c_parser_error (parser, "expected array notation expression");
    }
  else
    c_parser_error (parser, "expected array notation expression");
  
  c_parser_skip_until_found (parser, CPP_CLOSE_SQUARE, "expected %<]%>");

  value_tree = build_array_notation_ref (loc, array_value, start_index,
					 end_index, stride, type);
  if (value_tree != error_mark_node)
    SET_EXPR_LOCATION (value_tree, loc);
  return value_tree;
}

#include "gt-c-c-parser.h"