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Diffstat (limited to 'sysdeps/i386/fpu/e_powl.S')
-rw-r--r--sysdeps/i386/fpu/e_powl.S78
1 files changed, 20 insertions, 58 deletions
diff --git a/sysdeps/i386/fpu/e_powl.S b/sysdeps/i386/fpu/e_powl.S
index cc6dcd1a88..44cf23880a 100644
--- a/sysdeps/i386/fpu/e_powl.S
+++ b/sysdeps/i386/fpu/e_powl.S
@@ -151,7 +151,7 @@ ENTRY(__ieee754_powl)
fcompl MO(p3) // y : x
fnstsw
sahf
- jnc 2f
+ jnc 3f
popl %eax
cfi_adjust_cfa_offset (-4)
popl %edx
@@ -166,12 +166,22 @@ ENTRY(__ieee754_powl)
4: fldl MO(one) // 1 : x
fxch
+ /* If y is even, take the absolute value of x. Otherwise,
+ ensure all intermediate values that might overflow have the
+ sign of x. */
+ testb $1, %al
+ jnz 6f
+ fabs
+
6: shrdl $1, %edx, %eax
jnc 5f
fxch
+ fabs
fmul %st(1) // x : ST*x
fxch
-5: fmul %st(0), %st // x*x : ST*x
+5: fld %st // x : x : ST*x
+ fabs // |x| : x : ST*x
+ fmulp // |x|*x : ST*x
shrl $1, %edx
movl %eax, %ecx
orl %edx, %ecx
@@ -198,79 +208,31 @@ ENTRY(__ieee754_powl)
cfi_adjust_cfa_offset (8)
.align ALIGNARG(4)
-2: // y is a large integer (absolute value at least 8), but
- // may be odd unless at least 1L<<64. So it may be necessary
- // to adjust the sign of a negative result afterwards.
- fxch // x : y
- fabs // |x| : y
- fxch // y : |x|
+2: // y is a large integer (absolute value at least 1L<<63).
// If y has absolute value at least 1L<<78, then any finite
// nonzero x will result in 0 (underflow), 1 or infinity (overflow).
// Saturate y to those bounds to avoid overflow in the calculation
// of y*log2(x).
- fld %st // y : y : |x|
- fabs // |y| : y : |x|
- fcompl MO(p78) // y : |x|
+ fld %st // y : y : x
+ fabs // |y| : y : x
+ fcompl MO(p78) // y : x
fnstsw
sahf
jc 3f
fstp %st(0) // pop y
- fldl MO(p78) // 1L<<78 : |x|
+ fldl MO(p78) // 1L<<78 : x
testb $2, %dl
jz 3f // y > 0
- fchs // -(1L<<78) : |x|
+ fchs // -(1L<<78) : x
.align ALIGNARG(4)
3: /* y is a real number. */
subl $28, %esp
cfi_adjust_cfa_offset (28)
fstpt 12(%esp) // x
fstpt (%esp) // <empty>
- mov %edx, 24(%esp)
call HIDDEN_JUMPTARGET (__powl_helper) // <result>
- mov 24(%esp), %edx
- addl $28, %esp
- cfi_adjust_cfa_offset (-28)
- testb $2, %dh
- jz 292f
- // x is negative. If y is an odd integer, negate the result.
-#ifdef PIC
- LOAD_PIC_REG (cx)
-#endif
- fldt 24(%esp) // y : abs(result)
- fld %st // y : y : abs(result)
- fabs // |y| : y : abs(result)
- fcompl MO(p64) // y : abs(result)
- fnstsw
- sahf
- jnc 291f
- fldl MO(p63) // p63 : y : abs(result)
- fxch // y : p63 : abs(result)
- fprem // y%p63 : p63 : abs(result)
- fstp %st(1) // y%p63 : abs(result)
-
- // We must find out whether y is an odd integer.
- fld %st // y : y : abs(result)
- fistpll (%esp) // y : abs(result)
- fildll (%esp) // int(y) : y : abs(result)
- fucompp // abs(result)
- fnstsw
- sahf
- jne 292f
-
- // OK, the value is an integer, but is it odd?
- popl %eax
- cfi_adjust_cfa_offset (-4)
- popl %edx
- cfi_adjust_cfa_offset (-4)
- andb $1, %al
- jz 290f // jump if not odd
- // It's an odd integer.
- fchs
-290: ret
- cfi_adjust_cfa_offset (8)
-291: fstp %st(0) // abs(result)
-292: addl $8, %esp
- cfi_adjust_cfa_offset (-8)
+ addl $36, %esp
+ cfi_adjust_cfa_offset (-36)
ret
// pow(x,±0) = 1