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README.txt
(14.85 KB)
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aarch64
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absvdi2.c
(815 B)
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absvsi2.c
(815 B)
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absvti2.c
(864 B)
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adddf3.c
(859 B)
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addsf3.c
(853 B)
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addtf3.c
(730 B)
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addvdi3.c
(819 B)
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addvsi3.c
(819 B)
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addvti3.c
(868 B)
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apple_versioning.c
(13.1 KB)
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arm
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ashldi3.c
(1.17 KB)
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ashlti3.c
(1.15 KB)
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ashrdi3.c
(1.27 KB)
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ashrti3.c
(1.25 KB)
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assembly.h
(7.11 KB)
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atomic.c
(16.86 KB)
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atomic_flag_clear.c
(791 B)
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atomic_flag_clear_explicit.c
(859 B)
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atomic_flag_test_and_set.c
(823 B)
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atomic_flag_test_and_set_explicit.c
(898 B)
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atomic_signal_fence.c
(761 B)
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atomic_thread_fence.c
(761 B)
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bswapdi2.c
(958 B)
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bswapsi2.c
(743 B)
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clear_cache.c
(6.13 KB)
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clzdi2.c
(1.27 KB)
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clzsi2.c
(1.48 KB)
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clzti2.c
(884 B)
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cmpdi2.c
(1.12 KB)
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cmpti2.c
(974 B)
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comparedf2.c
(4.29 KB)
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comparesf2.c
(4.28 KB)
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comparetf2.c
(3.79 KB)
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cpu_model.c
(21.28 KB)
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ctzdi2.c
(1.27 KB)
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ctzsi2.c
(1.61 KB)
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ctzti2.c
(884 B)
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divdc3.c
(2.18 KB)
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divdf3.c
(7.55 KB)
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divdi3.c
(1.13 KB)
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divmoddi4.c
(712 B)
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divmodsi4.c
(715 B)
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divsc3.c
(2.14 KB)
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divsf3.c
(6.96 KB)
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divsi3.c
(1.32 KB)
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divtc3.c
(2.23 KB)
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divtf3.c
(8.01 KB)
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divti3.c
(1.18 KB)
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divxc3.c
(2.17 KB)
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emutls.c
(12.39 KB)
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enable_execute_stack.c
(2.08 KB)
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eprintf.c
(953 B)
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extenddftf2.c
(623 B)
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extendhfsf2.c
(946 B)
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extendsfdf2.c
(716 B)
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extendsftf2.c
(622 B)
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ffsdi2.c
(900 B)
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ffssi2.c
(776 B)
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ffsti2.c
(969 B)
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fixdfdi.c
(1.22 KB)
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fixdfsi.c
(755 B)
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fixdfti.c
(633 B)
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fixsfdi.c
(1.22 KB)
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fixsfsi.c
(755 B)
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fixsfti.c
(633 B)
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fixtfdi.c
(624 B)
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fixtfsi.c
(624 B)
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fixtfti.c
(624 B)
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fixunsdfdi.c
(1.29 KB)
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fixunsdfsi.c
(743 B)
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fixunsdfti.c
(611 B)
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fixunssfdi.c
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fixunssfsi.c
(896 B)
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fixunssfti.c
(731 B)
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fixunstfdi.c
(604 B)
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fixunstfsi.c
(604 B)
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fixunstfti.c
(604 B)
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fixunsxfdi.c
(1.65 KB)
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fixunsxfsi.c
(1.62 KB)
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fixunsxfti.c
(1.41 KB)
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fixxfdi.c
(1.75 KB)
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fixxfti.c
(1.48 KB)
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floatdidf.c
(3.37 KB)
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floatdisf.c
(2.49 KB)
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floatditf.c
(1.5 KB)
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floatdixf.c
(1.37 KB)
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floatsidf.c
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floatsisf.c
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floatsitf.c
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floattidf.c
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floattisf.c
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floattitf.c
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floattixf.c
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floatundidf.c
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floatundisf.c
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floatunditf.c
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floatundixf.c
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floatunsidf.c
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floatunsisf.c
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floatunsitf.c
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floatuntidf.c
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floatuntisf.c
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floatuntitf.c
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floatuntixf.c
(2.39 KB)
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fp_add_impl.inc
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fp_extend.h
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fp_extend_impl.inc
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fp_fixint_impl.inc
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fp_fixuint_impl.inc
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fp_lib.h
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fp_mode.c
(812 B)
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fp_mode.h
(824 B)
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fp_mul_impl.inc
(4.37 KB)
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fp_trunc.h
(2.01 KB)
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fp_trunc_impl.inc
(5.57 KB)
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gcc_personality_v0.c
(8.3 KB)
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hexagon
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i386
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int_div_impl.inc
(2.19 KB)
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int_endianness.h
(2.75 KB)
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int_lib.h
(4.57 KB)
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int_math.h
(3.6 KB)
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int_types.h
(4.16 KB)
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int_util.c
(1.95 KB)
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int_util.h
(1.32 KB)
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lshrdi3.c
(1.18 KB)
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lshrti3.c
(1.17 KB)
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mingw_fixfloat.c
(1.29 KB)
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moddi3.c
(1004 B)
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modsi3.c
(649 B)
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modti3.c
(1.03 KB)
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muldc3.c
(2.14 KB)
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muldf3.c
(918 B)
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muldi3.c
(1.55 KB)
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mulodi4.c
(1.31 KB)
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mulosi4.c
(1.31 KB)
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muloti4.c
(1.36 KB)
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mulsc3.c
(2.11 KB)
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mulsf3.c
(918 B)
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multc3.c
(2.02 KB)
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multf3.c
(799 B)
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multi3.c
(1.53 KB)
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mulvdi3.c
(1.26 KB)
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mulvsi3.c
(1.26 KB)
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mulvti3.c
(1.31 KB)
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mulxc3.c
(2.22 KB)
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negdf2.c
(832 B)
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negdi2.c
(719 B)
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negsf2.c
(832 B)
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negti2.c
(768 B)
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negvdi2.c
(768 B)
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negvsi2.c
(768 B)
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negvti2.c
(817 B)
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os_version_check.c
(8.07 KB)
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paritydi2.c
(712 B)
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paritysi2.c
(751 B)
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parityti2.c
(761 B)
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popcountdi2.c
(1.33 KB)
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popcountsi2.c
(1.13 KB)
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popcountti2.c
(1.69 KB)
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powidf2.c
(786 B)
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powisf2.c
(783 B)
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powitf2.c
(888 B)
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powixf2.c
(825 B)
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ppc
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riscv
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sparc64
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subdf3.c
(917 B)
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subsf3.c
(917 B)
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subtf3.c
(825 B)
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subvdi3.c
(819 B)
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subvsi3.c
(819 B)
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subvti3.c
(868 B)
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trampoline_setup.c
(1.75 KB)
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truncdfhf2.c
(715 B)
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truncdfsf2.c
(711 B)
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truncsfhf2.c
(940 B)
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trunctfdf2.c
(625 B)
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trunctfsf2.c
(624 B)
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ucmpdi2.c
(1.13 KB)
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ucmpti2.c
(978 B)
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udivdi3.c
(724 B)
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udivmoddi4.c
(5.4 KB)
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udivmodsi4.c
(715 B)
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udivmodti4.c
(4.87 KB)
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udivsi3.c
(802 B)
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udivti3.c
(699 B)
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umoddi3.c
(724 B)
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umodsi3.c
(724 B)
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umodti3.c
(717 B)
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unwind-ehabi-helpers.h
(1.86 KB)
📁
ve
📁
x86_64
Editing: gcc_personality_v0.c
//===-- gcc_personality_v0.c - Implement __gcc_personality_v0 -------------===// // // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions. // See https://llvm.org/LICENSE.txt for license information. // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception // //===----------------------------------------------------------------------===// #include "int_lib.h" #include <unwind.h> /* * XXX On FreeBSD, this file is compiled into three libraries: * - libcompiler_rt * - libgcc_eh * - libgcc_s * * In the former, the include path points to the contrib/libcxxrt/unwind-arm.h * copy of unwind.h. In the latter, the include path points to the * contrib/libunwind/include/unwind.h header (LLVM libunwind). * * Neither (seemingly redundant) variant of unwind.h needs the redefinitions * provided in the "helpful" header below, and libcxxrt's unwind-arm.h provides * *no* useful distinguishing macros, so just forcibly disable the helper * header on FreeBSD. */ #if defined(__arm__) && !defined(__ARM_DWARF_EH__) && \ !defined(__USING_SJLJ_EXCEPTIONS__) && !defined(__FreeBSD__) // When building with older compilers (e.g. clang <3.9), it is possible that we // have a version of unwind.h which does not provide the EHABI declarations // which are quired for the C personality to conform to the specification. In // order to provide forward compatibility for such compilers, we re-declare the // necessary interfaces in the helper to permit a standalone compilation of the // builtins (which contains the C unwinding personality for historical reasons). #include "unwind-ehabi-helpers.h" #endif // Pointer encodings documented at: // http://refspecs.freestandards.org/LSB_1.3.0/gLSB/gLSB/ehframehdr.html #define DW_EH_PE_omit 0xff // no data follows #define DW_EH_PE_absptr 0x00 #define DW_EH_PE_uleb128 0x01 #define DW_EH_PE_udata2 0x02 #define DW_EH_PE_udata4 0x03 #define DW_EH_PE_udata8 0x04 #define DW_EH_PE_sleb128 0x09 #define DW_EH_PE_sdata2 0x0A #define DW_EH_PE_sdata4 0x0B #define DW_EH_PE_sdata8 0x0C #define DW_EH_PE_pcrel 0x10 #define DW_EH_PE_textrel 0x20 #define DW_EH_PE_datarel 0x30 #define DW_EH_PE_funcrel 0x40 #define DW_EH_PE_aligned 0x50 #define DW_EH_PE_indirect 0x80 // gcc extension // read a uleb128 encoded value and advance pointer static uintptr_t readULEB128(const uint8_t **data) { uintptr_t result = 0; uintptr_t shift = 0; unsigned char byte; const uint8_t *p = *data; do { byte = *p++; result |= (byte & 0x7f) << shift; shift += 7; } while (byte & 0x80); *data = p; return result; } // read a pointer encoded value and advance pointer static uintptr_t readEncodedPointer(const uint8_t **data, uint8_t encoding) { const uint8_t *p = *data; uintptr_t result = 0; if (encoding == DW_EH_PE_omit) return 0; // first get value switch (encoding & 0x0F) { case DW_EH_PE_absptr: result = *((const uintptr_t *)p); p += sizeof(uintptr_t); break; case DW_EH_PE_uleb128: result = readULEB128(&p); break; case DW_EH_PE_udata2: result = *((const uint16_t *)p); p += sizeof(uint16_t); break; case DW_EH_PE_udata4: result = *((const uint32_t *)p); p += sizeof(uint32_t); break; case DW_EH_PE_udata8: result = *((const uint64_t *)p); p += sizeof(uint64_t); break; case DW_EH_PE_sdata2: result = *((const int16_t *)p); p += sizeof(int16_t); break; case DW_EH_PE_sdata4: result = *((const int32_t *)p); p += sizeof(int32_t); break; case DW_EH_PE_sdata8: result = *((const int64_t *)p); p += sizeof(int64_t); break; case DW_EH_PE_sleb128: default: // not supported compilerrt_abort(); break; } // then add relative offset switch (encoding & 0x70) { case DW_EH_PE_absptr: // do nothing break; case DW_EH_PE_pcrel: result += (uintptr_t)(*data); break; case DW_EH_PE_textrel: case DW_EH_PE_datarel: case DW_EH_PE_funcrel: case DW_EH_PE_aligned: default: // not supported compilerrt_abort(); break; } // then apply indirection if (encoding & DW_EH_PE_indirect) { result = *((const uintptr_t *)result); } *data = p; return result; } #if defined(__arm__) && !defined(__USING_SJLJ_EXCEPTIONS__) && \ !defined(__ARM_DWARF_EH__) #define USING_ARM_EHABI 1 _Unwind_Reason_Code __gnu_unwind_frame(struct _Unwind_Exception *, struct _Unwind_Context *); #endif static inline _Unwind_Reason_Code continueUnwind(struct _Unwind_Exception *exceptionObject, struct _Unwind_Context *context) { #if USING_ARM_EHABI // On ARM EHABI the personality routine is responsible for actually // unwinding a single stack frame before returning (ARM EHABI Sec. 6.1). if (__gnu_unwind_frame(exceptionObject, context) != _URC_OK) return _URC_FAILURE; #endif return _URC_CONTINUE_UNWIND; } // The C compiler makes references to __gcc_personality_v0 in // the dwarf unwind information for translation units that use // __attribute__((cleanup(xx))) on local variables. // This personality routine is called by the system unwinder // on each frame as the stack is unwound during a C++ exception // throw through a C function compiled with -fexceptions. #if __USING_SJLJ_EXCEPTIONS__ // the setjump-longjump based exceptions personality routine has a // different name COMPILER_RT_ABI _Unwind_Reason_Code __gcc_personality_sj0( int version, _Unwind_Action actions, uint64_t exceptionClass, struct _Unwind_Exception *exceptionObject, struct _Unwind_Context *context) #elif USING_ARM_EHABI // The ARM EHABI personality routine has a different signature. COMPILER_RT_ABI _Unwind_Reason_Code __gcc_personality_v0( _Unwind_State state, struct _Unwind_Exception *exceptionObject, struct _Unwind_Context *context) #else COMPILER_RT_ABI _Unwind_Reason_Code __gcc_personality_v0( int version, _Unwind_Action actions, uint64_t exceptionClass, struct _Unwind_Exception *exceptionObject, struct _Unwind_Context *context) #endif { // Since C does not have catch clauses, there is nothing to do during // phase 1 (the search phase). #if USING_ARM_EHABI // After resuming from a cleanup we should also continue on to the next // frame straight away. if ((state & _US_ACTION_MASK) != _US_UNWIND_FRAME_STARTING) #else if (actions & _UA_SEARCH_PHASE) #endif return continueUnwind(exceptionObject, context); // There is nothing to do if there is no LSDA for this frame. const uint8_t *lsda = (uint8_t *)_Unwind_GetLanguageSpecificData(context); if (lsda == (uint8_t *)0) return continueUnwind(exceptionObject, context); uintptr_t pc = (uintptr_t)_Unwind_GetIP(context) - 1; uintptr_t funcStart = (uintptr_t)_Unwind_GetRegionStart(context); uintptr_t pcOffset = pc - funcStart; // Parse LSDA header. uint8_t lpStartEncoding = *lsda++; if (lpStartEncoding != DW_EH_PE_omit) { readEncodedPointer(&lsda, lpStartEncoding); } uint8_t ttypeEncoding = *lsda++; if (ttypeEncoding != DW_EH_PE_omit) { readULEB128(&lsda); } // Walk call-site table looking for range that includes current PC. uint8_t callSiteEncoding = *lsda++; uint32_t callSiteTableLength = readULEB128(&lsda); const uint8_t *callSiteTableStart = lsda; const uint8_t *callSiteTableEnd = callSiteTableStart + callSiteTableLength; const uint8_t *p = callSiteTableStart; while (p < callSiteTableEnd) { uintptr_t start = readEncodedPointer(&p, callSiteEncoding); uintptr_t length = readEncodedPointer(&p, callSiteEncoding); uintptr_t landingPad = readEncodedPointer(&p, callSiteEncoding); readULEB128(&p); // action value not used for C code if (landingPad == 0) continue; // no landing pad for this entry if ((start <= pcOffset) && (pcOffset < (start + length))) { // Found landing pad for the PC. // Set Instruction Pointer to so we re-enter function // at landing pad. The landing pad is created by the compiler // to take two parameters in registers. _Unwind_SetGR(context, __builtin_eh_return_data_regno(0), (uintptr_t)exceptionObject); _Unwind_SetGR(context, __builtin_eh_return_data_regno(1), 0); _Unwind_SetIP(context, (funcStart + landingPad)); return _URC_INSTALL_CONTEXT; } } // No landing pad found, continue unwinding. return continueUnwind(exceptionObject, context); }
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