1 # Copyright
(C
) 1997-2015 Free Software Foundation
, Inc.
3 # This
program is free software
; you can redistribute it and
/or modify
4 # it under the terms of the GNU General Public License as published by
5 # the Free Software Foundation
; either version
3 of the License
, or
6 #
(at your option
) any later version.
8 # This
program is distributed in the hope that it will be useful
,
9 # but WITHOUT
ANY WARRANTY
; without even the implied warranty of
10 # MERCHANTABILITY or FITNESS
FOR A PARTICULAR PURPOSE. See the
11 # GNU General Public License
for more details.
13 # You should have received a copy of the GNU General Public License
14 # along with GCC
; see the file COPYING3.
If not see
15 #
<http
://www.gnu.org
/licenses
/>.
17 # GCC testsuite that uses the `dg.exp
' driver.
19 # Exit immediately if this isn't a x86 target.
20 if { ![istarget i?
86*-*-*] && ![istarget x86_64
-*-*] } then {
29 #
Return 1 if attribute ms_hook_prologue is supported.
30 proc check_effective_target_ms_hook_prologue
{ } {
31 if { [check_no_compiler_messages ms_hook_prologue object
{
32 void __attribute__
((__ms_hook_prologue__
)) foo
();
40 #
Return 1 if 3dnow instructions can be compiled.
41 proc check_effective_target_3dnow
{ } {
42 return [check_no_compiler_messages
3dnow object
{
43 typedef
int __m64 __attribute__
((__vector_size__
(8)));
44 typedef float __v2sf __attribute__
((__vector_size__
(8)));
46 __m64 _m_pfadd
(__m64 __A
, __m64 __B
)
48 return (__m64
) __builtin_ia32_pfadd
((__v2sf
)__A
, (__v2sf
)__B
);
53 #
Return 1 if sse3 instructions can be compiled.
54 proc check_effective_target_sse3
{ } {
55 return [check_no_compiler_messages sse3 object
{
56 typedef double __m128d __attribute__
((__vector_size__
(16)));
57 typedef double __v2df __attribute__
((__vector_size__
(16)));
59 __m128d _mm_addsub_pd
(__m128d __X
, __m128d __Y
)
61 return (__m128d
) __builtin_ia32_addsubpd
((__v2df
)__X
, (__v2df
)__Y
);
66 #
Return 1 if ssse3 instructions can be compiled.
67 proc check_effective_target_ssse3
{ } {
68 return [check_no_compiler_messages ssse3 object
{
69 typedef long long __m128i __attribute__
((__vector_size__
(16)));
70 typedef
int __v4si __attribute__
((__vector_size__
(16)));
72 __m128i _mm_abs_epi32
(__m128i __X
)
74 return (__m128i
) __builtin_ia32_pabsd128
((__v4si
)__X
);
79 #
Return 1 if sse4 instructions can be compiled.
80 proc check_effective_target_sse4
{ } {
81 return [check_no_compiler_messages sse4.1 object
{
82 typedef long long __m128i __attribute__
((__vector_size__
(16)));
83 typedef
int __v4si __attribute__
((__vector_size__
(16)));
85 __m128i _mm_mullo_epi32
(__m128i __X
, __m128i __Y
)
87 return (__m128i
) __builtin_ia32_pmulld128
((__v4si
)__X
,
93 #
Return 1 if aes instructions can be compiled.
94 proc check_effective_target_aes
{ } {
95 return [check_no_compiler_messages aes object
{
96 typedef long long __m128i __attribute__
((__vector_size__
(16)));
97 typedef long long __v2di __attribute__
((__vector_size__
(16)));
99 __m128i _mm_aesimc_si128
(__m128i __X
)
101 return (__m128i
) __builtin_ia32_aesimc128
((__v2di
)__X
);
106 #
Return 1 if vaes instructions can be compiled.
107 proc check_effective_target_vaes
{ } {
108 return [check_no_compiler_messages vaes object
{
109 typedef long long __m128i __attribute__
((__vector_size__
(16)));
110 typedef long long __v2di __attribute__
((__vector_size__
(16)));
112 __m128i _mm_aesimc_si128
(__m128i __X
)
114 return (__m128i
) __builtin_ia32_aesimc128
((__v2di
)__X
);
116 } "-O2 -maes -mavx" ]
119 #
Return 1 if pclmul instructions can be compiled.
120 proc check_effective_target_pclmul
{ } {
121 return [check_no_compiler_messages pclmul object
{
122 typedef long long __m128i __attribute__
((__vector_size__
(16)));
123 typedef long long __v2di __attribute__
((__vector_size__
(16)));
125 __m128i pclmulqdq_test
(__m128i __X
, __m128i __Y
)
127 return (__m128i
) __builtin_ia32_pclmulqdq128
((__v2di
)__X
,
134 #
Return 1 if vpclmul instructions can be compiled.
135 proc check_effective_target_vpclmul
{ } {
136 return [check_no_compiler_messages vpclmul object
{
137 typedef long long __m128i __attribute__
((__vector_size__
(16)));
138 typedef long long __v2di __attribute__
((__vector_size__
(16)));
140 __m128i pclmulqdq_test
(__m128i __X
, __m128i __Y
)
142 return (__m128i
) __builtin_ia32_pclmulqdq128
((__v2di
)__X
,
146 } "-O2 -mpclmul -mavx" ]
149 #
Return 1 if sse4a instructions can be compiled.
150 proc check_effective_target_sse4a
{ } {
151 return [check_no_compiler_messages sse4a object
{
152 typedef long long __m128i __attribute__
((__vector_size__
(16)));
153 typedef long long __v2di __attribute__
((__vector_size__
(16)));
155 __m128i _mm_insert_si64
(__m128i __X
,__m128i __Y
)
157 return (__m128i
) __builtin_ia32_insertq
((__v2di
)__X
, (__v2di
)__Y
);
162 #
Return 1 if fma4 instructions can be compiled.
163 proc check_effective_target_fma4
{ } {
164 return [check_no_compiler_messages fma4 object
{
165 typedef float __m128 __attribute__
((__vector_size__
(16)));
166 typedef float __v4sf __attribute__
((__vector_size__
(16)));
167 __m128 _mm_macc_ps
(__m128 __A
, __m128 __B
, __m128 __C
)
169 return (__m128
) __builtin_ia32_vfmaddps
((__v4sf
)__A
,
176 #
Return 1 if fma instructions can be compiled.
177 proc check_effective_target_fma
{ } {
178 return [check_no_compiler_messages fma object
{
179 typedef float __m128 __attribute__
((__vector_size__
(16)));
180 typedef float __v4sf __attribute__
((__vector_size__
(16)));
181 __m128 _mm_macc_ps
(__m128 __A
, __m128 __B
, __m128 __C
)
183 return (__m128
) __builtin_ia32_vfmaddps
((__v4sf
)__A
,
190 #
Return 1 if xop instructions can be compiled.
191 proc check_effective_target_xop
{ } {
192 return [check_no_compiler_messages xop object
{
193 typedef long long __m128i __attribute__
((__vector_size__
(16)));
194 typedef short __v8hi __attribute__
((__vector_size__
(16)));
195 __m128i _mm_maccs_epi16
(__m128i __A
, __m128i __B
, __m128i __C
)
197 return (__m128i
) __builtin_ia32_vpmacssww
((__v8hi
)__A
,
204 #
Return 1 if lzcnt instruction can be compiled.
205 proc check_effective_target_lzcnt
{ } {
206 return [check_no_compiler_messages lzcnt object
{
207 unsigned short _lzcnt
(unsigned short __X
)
209 return __builtin_clzs
(__X
);
214 #
Return 1 if bmi instructions can be compiled.
215 proc check_effective_target_bmi
{ } {
216 return [check_no_compiler_messages bmi object
{
217 unsigned
int __bextr_u32
(unsigned
int __X
, unsigned
int __Y
)
219 return __builtin_ia32_bextr_u32
(__X
, __Y
);
224 #
Return 1 if bmi2 instructions can be compiled.
225 proc check_effective_target_bmi2
{ } {
226 return [check_no_compiler_messages bmi2 object
{
228 _bzhi_u32
(unsigned
int __X
, unsigned
int __Y
)
230 return __builtin_ia32_bzhi_si
(__X
, __Y
);
235 #
Return 1 if ADX instructions can be compiled.
236 proc check_effective_target_adx
{ } {
237 return [check_no_compiler_messages adx object
{
239 _adxcarry_u32
(unsigned char __CF
, unsigned
int __X
,
240 unsigned
int __Y
, unsigned
int *__P
)
242 return __builtin_ia32_addcarryx_u32
(__CF
, __X
, __Y
, __P
);
247 #
Return 1 if rtm instructions can be compiled.
248 proc check_effective_target_rtm
{ } {
249 return [check_no_compiler_messages rtm object
{
253 return __builtin_ia32_xend
();
258 #
Return 1 if avx512f instructions can be compiled.
259 proc check_effective_target_avx512f
{ } {
260 return [check_no_compiler_messages avx512f object
{
261 typedef long long __v8di __attribute__
((__vector_size__
(64)));
263 mm512_and_epi64
(__v8di __X
, __v8di __Y
)
265 return __builtin_ia32_pandq512_mask
(__X
, __Y
, __X
, -1);
270 #
Return 1 if avx512vl instructions can be compiled.
271 proc check_effective_target_avx512vl
{ } {
272 return [check_no_compiler_messages avx512vl object
{
273 typedef long long __v4di __attribute__
((__vector_size__
(32)));
275 mm256_and_epi64
(__v4di __X
, __v4di __Y
)
278 return __builtin_ia32_pandq256_mask
(__X
, __Y
, __W
, -1);
283 #
Return 1 if avx512cd instructions can be compiled.
284 proc check_effective_target_avx512cd
{ } {
285 return [check_no_compiler_messages avx512cd_trans object
{
286 typedef long long __v8di __attribute__
((__vector_size__
(64)));
288 _mm512_conflict_epi64
(__v8di __W
, __v8di __A
)
290 return (__v8di
) __builtin_ia32_vpconflictdi_512_mask
((__v8di
) __A
,
294 } "-Wno-psabi -mavx512cd" ]
297 #
Return 1 if avx512er instructions can be compiled.
298 proc check_effective_target_avx512er
{ } {
299 return [check_no_compiler_messages avx512er_trans object
{
300 typedef float __v16sf __attribute__
((__vector_size__
(64)));
302 mm512_exp2a23_ps
(__v16sf __X
)
304 return __builtin_ia32_exp2ps_mask
(__X
, __X
, -1, 4);
306 } "-Wno-psabi -mavx512er" ]
309 #
Return 1 if sha instructions can be compiled.
310 proc check_effective_target_sha
{ } {
311 return [check_no_compiler_messages sha object
{
312 typedef long long __m128i __attribute__
((__vector_size__
(16)));
313 typedef
int __v4si __attribute__
((__vector_size__
(16)));
315 __m128i _mm_sha1msg1_epu32
(__m128i __X
, __m128i __Y
)
317 return (__m128i
) __builtin_ia32_sha1msg1
((__v4si
)__X
,
323 #
Return 1 if avx512dq instructions can be compiled.
324 proc check_effective_target_avx512dq
{ } {
325 return [check_no_compiler_messages avx512dq object
{
326 typedef long long __v8di __attribute__
((__vector_size__
(64)));
328 _mm512_mask_mullo_epi64
(__v8di __W
, __v8di __A
, __v8di __B
)
330 return (__v8di
) __builtin_ia32_pmullq512_mask
((__v8di
) __A
,
338 #
Return 1 if avx512bw instructions can be compiled.
339 proc check_effective_target_avx512bw
{ } {
340 return [check_no_compiler_messages avx512bw object
{
341 typedef short __v32hi __attribute__
((__vector_size__
(64)));
343 _mm512_mask_mulhrs_epi16
(__v32hi __W
, __v32hi __A
, __v32hi __B
)
345 return (__v32hi
) __builtin_ia32_pmulhrsw512_mask
((__v32hi
) __A
,
353 #
Return 1 if avx512ifma instructions can be compiled.
354 proc check_effective_target_avx512ifma
{ } {
355 return [check_no_compiler_messages avx512ifma object
{
356 typedef long long __v8di __attribute__
((__vector_size__
(64)));
358 _mm512_madd52lo_epu64
(__v8di __X
, __v8di __Y
, __v8di __Z
)
360 return (__v8di
) __builtin_ia32_vpmadd52luq512_mask
((__v8di
) __X
,
368 #
Return 1 if avx512vbmi instructions can be compiled.
369 proc check_effective_target_avx512vbmi
{ } {
370 return [check_no_compiler_messages avx512vbmi object
{
371 typedef char __v64qi __attribute__
((__vector_size__
(64)));
373 _mm512_multishift_epi64_epi8
(__v64qi __X
, __v64qi __Y
)
375 return (__v64qi
) __builtin_ia32_vpmultishiftqb512_mask
((__v64qi
) __X
,
383 #
If a testcase doesn
't have special options, use these.
384 global DEFAULT_CFLAGS
385 if ![info exists DEFAULT_CFLAGS] then {
386 set DEFAULT_CFLAGS " -ansi -pedantic-errors"
394 # Special case compilation of vect
-args.c so we don
't have to
395 # replicate it 16 times.
396 if [runtest_file_p $runtests $srcdir/$subdir/vect-args.c] {
397 foreach type { "" -mmmx -m3dnow -msse -msse2 -mavx -mavx2 -mavx512f } {
398 foreach level { "" -O } {
399 set flags "$type $level"
400 verbose -log "Testing vect-args, $flags" 1
401 dg-test $srcdir/$subdir/vect-args.c $flags ""
407 set tests [lsort [glob -nocomplain $srcdir/$subdir/*.\[cS\]]]
408 set tests [prune $tests $srcdir/$subdir/vect-args.c]
411 dg-runtest $tests "" $DEFAULT_CFLAGS