forked from OSchip/llvm-project
63 lines
1.3 KiB
ArmAsm
63 lines
1.3 KiB
ArmAsm
// This file is dual licensed under the MIT and the University of Illinois Open
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// Source Licenses. See LICENSE.TXT for details.
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#include "../assembly.h"
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// long double __floatundixf(du_int a);
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#ifdef __x86_64__
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#ifndef __ELF__
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.const
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#endif
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.align 4
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twop64: .quad 0x43f0000000000000
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#define REL_ADDR(_a) (_a)(%rip)
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.text
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.align 4
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DEFINE_COMPILERRT_FUNCTION(__floatundixf)
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movq %rdi, -8(%rsp)
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fildq -8(%rsp)
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test %rdi, %rdi
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js 1f
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ret
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1: faddl REL_ADDR(twop64)
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ret
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#endif // __x86_64__
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/* Branch-free implementation is ever so slightly slower, but more beautiful.
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It is likely superior for inlining, so I kept it around for future reference.
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#ifdef __x86_64__
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.const
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.align 4
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twop52: .quad 0x4330000000000000
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twop84_plus_twop52_neg:
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.quad 0xc530000000100000
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twop84: .quad 0x4530000000000000
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#define REL_ADDR(_a) (_a)(%rip)
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.text
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.align 4
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DEFINE_COMPILERRT_FUNCTION(__floatundixf)
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movl %edi, %esi // low 32 bits of input
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shrq $32, %rdi // hi 32 bits of input
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orq REL_ADDR(twop84), %rdi // 2^84 + hi (as a double)
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orq REL_ADDR(twop52), %rsi // 2^52 + lo (as a double)
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movq %rdi, -8(%rsp)
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movq %rsi, -16(%rsp)
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fldl REL_ADDR(twop84_plus_twop52_neg)
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faddl -8(%rsp) // hi - 2^52 (as double extended, no rounding occurs)
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faddl -16(%rsp) // hi + lo (as double extended)
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ret
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#endif // __x86_64__
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*/
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