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authorSimon Marlow <marlowsd@gmail.com>2012-10-03 09:30:56 +0100
committerSimon Marlow <marlowsd@gmail.com>2012-10-08 09:04:40 +0100
commita7c0387d20c1c9994d1100b14fbb8fb4e28a259e (patch)
treeb95d0a512f951a4a463f1aa5178b0cd5c4fdb410 /compiler/codeGen/CgCon.lhs
parentaed37acd4d157791381800d5de960a2461bcbef3 (diff)
downloadhaskell-a7c0387d20c1c9994d1100b14fbb8fb4e28a259e.tar.gz
Produce new-style Cmm from the Cmm parser
The main change here is that the Cmm parser now allows high-level cmm code with argument-passing and function calls. For example: foo ( gcptr a, bits32 b ) { if (b > 0) { // we can make tail calls passing arguments: jump stg_ap_0_fast(a); } return (x,y); } More details on the new cmm syntax are in Note [Syntax of .cmm files] in CmmParse.y. The old syntax is still more-or-less supported for those occasional code fragments that really need to explicitly manipulate the stack. However there are a couple of differences: it is now obligatory to give a list of live GlobalRegs on every jump, e.g. jump %ENTRY_CODE(Sp(0)) [R1]; Again, more details in Note [Syntax of .cmm files]. I have rewritten most of the .cmm files in the RTS into the new syntax, except for AutoApply.cmm which is generated by the genapply program: this file could be generated in the new syntax instead and would probably be better off for it, but I ran out of enthusiasm. Some other changes in this batch: - The PrimOp calling convention is gone, primops now use the ordinary NativeNodeCall convention. This means that primops and "foreign import prim" code must be written in high-level cmm, but they can now take more than 10 arguments. - CmmSink now does constant-folding (should fix #7219) - .cmm files now go through the cmmPipeline, and as a result we generate better code in many cases. All the object files generated for the RTS .cmm files are now smaller. Performance should be better too, but I haven't measured it yet. - RET_DYN frames are removed from the RTS, lots of code goes away - we now have some more canned GC points to cover unboxed-tuples with 2-4 pointers, which will reduce code size a little.
Diffstat (limited to 'compiler/codeGen/CgCon.lhs')
-rw-r--r--compiler/codeGen/CgCon.lhs4
1 files changed, 2 insertions, 2 deletions
diff --git a/compiler/codeGen/CgCon.lhs b/compiler/codeGen/CgCon.lhs
index aeb87235e3..858de3a616 100644
--- a/compiler/codeGen/CgCon.lhs
+++ b/compiler/codeGen/CgCon.lhs
@@ -189,7 +189,7 @@ buildDynCon' dflags platform binder _ con [arg_amode]
, (_, CmmLit (CmmInt val _)) <- arg_amode
, let val_int = (fromIntegral val) :: Int
, val_int <= mAX_INTLIKE dflags && val_int >= mIN_INTLIKE dflags
- = do { let intlike_lbl = mkCmmGcPtrLabel rtsPackageId (fsLit "stg_INTLIKE_closure")
+ = do { let intlike_lbl = mkCmmClosureLabel rtsPackageId (fsLit "stg_INTLIKE")
offsetW = (val_int - mIN_INTLIKE dflags) * (fixedHdrSize dflags + 1)
-- INTLIKE closures consist of a header and one word payload
intlike_amode = CmmLit (cmmLabelOffW dflags intlike_lbl offsetW)
@@ -201,7 +201,7 @@ buildDynCon' dflags platform binder _ con [arg_amode]
, (_, CmmLit (CmmInt val _)) <- arg_amode
, let val_int = (fromIntegral val) :: Int
, val_int <= mAX_CHARLIKE dflags && val_int >= mIN_CHARLIKE dflags
- = do { let charlike_lbl = mkCmmGcPtrLabel rtsPackageId (fsLit "stg_CHARLIKE_closure")
+ = do { let charlike_lbl = mkCmmClosureLabel rtsPackageId (fsLit "stg_CHARLIKE")
offsetW = (val_int - mIN_CHARLIKE dflags) * (fixedHdrSize dflags + 1)
-- CHARLIKE closures consist of a header and one word payload
charlike_amode = CmmLit (cmmLabelOffW dflags charlike_lbl offsetW)