FFmpeg
checkasm.c
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1 /*
2  * Assembly testing and benchmarking tool
3  * Copyright (c) 2015 Henrik Gramner
4  * Copyright (c) 2008 Loren Merritt
5  *
6  * This file is part of FFmpeg.
7  *
8  * FFmpeg is free software; you can redistribute it and/or modify
9  * it under the terms of the GNU General Public License as published by
10  * the Free Software Foundation; either version 2 of the License, or
11  * (at your option) any later version.
12  *
13  * FFmpeg is distributed in the hope that it will be useful,
14  * but WITHOUT ANY WARRANTY; without even the implied warranty of
15  * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
16  * GNU General Public License for more details.
17  *
18  * You should have received a copy of the GNU General Public License along
19  * with FFmpeg; if not, write to the Free Software Foundation, Inc.,
20  * 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA.
21  *
22  * Copyright © 2018, VideoLAN and dav1d authors
23  * Copyright © 2018, Two Orioles, LLC
24  * All rights reserved.
25  *
26  * Redistribution and use in source and binary forms, with or without
27  * modification, are permitted provided that the following conditions are met:
28  *
29  * 1. Redistributions of source code must retain the above copyright notice, this
30  * list of conditions and the following disclaimer.
31  *
32  * 2. Redistributions in binary form must reproduce the above copyright notice,
33  * this list of conditions and the following disclaimer in the documentation
34  * and/or other materials provided with the distribution.
35  *
36  * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" AND
37  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED
38  * WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
39  * DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE LIABLE FOR
40  * ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
41  * (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
42  * LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND
43  * ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
44  * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS
45  * SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
46  */
47 
48 #include "config.h"
49 #include "config_components.h"
50 
51 #ifndef _GNU_SOURCE
52 # define _GNU_SOURCE // for syscall (performance monitoring API), strsignal()
53 #endif
54 
55 #include <signal.h>
56 #include <stdarg.h>
57 #include <stdio.h>
58 #include <stdlib.h>
59 #include <string.h>
60 #include "checkasm.h"
61 #include "libavutil/avassert.h"
62 #include "libavutil/common.h"
63 #include "libavutil/cpu.h"
64 #include "libavutil/intfloat.h"
65 #include "libavutil/random_seed.h"
66 
67 #if HAVE_IO_H
68 #include <io.h>
69 #endif
70 #if HAVE_PRCTL
71 #include <sys/prctl.h>
72 #endif
73 
74 #if defined(_WIN32) && !defined(SIGBUS)
75 /* non-standard, use the same value as mingw-w64 */
76 #define SIGBUS 10
77 #endif
78 
79 #if HAVE_SETCONSOLETEXTATTRIBUTE && HAVE_GETSTDHANDLE
80 #include <windows.h>
81 #define COLOR_RED FOREGROUND_RED
82 #define COLOR_GREEN FOREGROUND_GREEN
83 #define COLOR_YELLOW (FOREGROUND_RED|FOREGROUND_GREEN)
84 #else
85 #define COLOR_RED 1
86 #define COLOR_GREEN 2
87 #define COLOR_YELLOW 3
88 #endif
89 
90 #if HAVE_UNISTD_H
91 #include <unistd.h>
92 #endif
93 
94 #if !HAVE_ISATTY
95 #define isatty(fd) 1
96 #endif
97 
98 #if ARCH_AARCH64
99 #include "libavutil/aarch64/cpu.h"
100 #elif ARCH_RISCV
101 #include "libavutil/riscv/cpu.h"
102 #endif
103 
104 #if ARCH_ARM && HAVE_ARMV5TE_EXTERNAL
105 #include "libavutil/arm/cpu.h"
106 
107 void (*checkasm_checked_call)(void *func, int dummy, ...) = checkasm_checked_call_novfp;
108 #endif
109 
110 /* Trade-off between speed and accuracy */
111 uint64_t bench_runs = 1U << 10;
112 
113 /* List of tests to invoke */
114 static const struct {
115  const char *name;
116  void (*func)(void);
117 } tests[] = {
118 #if CONFIG_AVCODEC
119  #if CONFIG_AAC_DECODER
120  { "aacpsdsp", checkasm_check_aacpsdsp },
121  { "sbrdsp", checkasm_check_sbrdsp },
122  #endif
123  #if CONFIG_AAC_ENCODER
124  { "aacencdsp", checkasm_check_aacencdsp },
125  #endif
126  #if CONFIG_AC3DSP
127  { "ac3dsp", checkasm_check_ac3dsp },
128  #endif
129  #if CONFIG_ALAC_DECODER
130  { "alacdsp", checkasm_check_alacdsp },
131  #endif
132  #if CONFIG_APV_DECODER
133  { "apv_dsp", checkasm_check_apv_dsp },
134  #endif
135  #if CONFIG_AUDIODSP
136  { "audiodsp", checkasm_check_audiodsp },
137  #endif
138  #if CONFIG_BLOCKDSP
139  { "blockdsp", checkasm_check_blockdsp },
140  #endif
141  #if CONFIG_BSWAPDSP
142  { "bswapdsp", checkasm_check_bswapdsp },
143  #endif
144  #if CONFIG_CAVS_DECODER
145  { "cavsdsp", checkasm_check_cavsdsp },
146  #endif
147  #if CONFIG_DCA_DECODER
148  { "dcadsp", checkasm_check_dcadsp },
149  { "synth_filter", checkasm_check_synth_filter },
150  #endif
151  #if CONFIG_DIRAC_DECODER
152  { "diracdsp", checkasm_check_diracdsp },
153  #endif
154  #if CONFIG_EXR_DECODER
155  { "exrdsp", checkasm_check_exrdsp },
156  #endif
157  #if CONFIG_FDCTDSP
158  { "fdctdsp", checkasm_check_fdctdsp },
159  #endif
160  #if CONFIG_FLAC_DECODER
161  { "flacdsp", checkasm_check_flacdsp },
162  #endif
163  #if CONFIG_FMTCONVERT
164  { "fmtconvert", checkasm_check_fmtconvert },
165  #endif
166  #if CONFIG_G722DSP
167  { "g722dsp", checkasm_check_g722dsp },
168  #endif
169  #if CONFIG_H263DSP
170  { "h263dsp", checkasm_check_h263dsp },
171  #endif
172  #if CONFIG_H264CHROMA
173  { "h264chroma", checkasm_check_h264chroma },
174  #endif
175  #if CONFIG_H264DSP
176  { "h264dsp", checkasm_check_h264dsp },
177  #endif
178  #if CONFIG_H264PRED
179  { "h264pred", checkasm_check_h264pred },
180  #endif
181  #if CONFIG_H264QPEL
182  { "h264qpel", checkasm_check_h264qpel },
183  #endif
184  #if CONFIG_HEVC_DECODER
185  { "hevc_add_res", checkasm_check_hevc_add_res },
186  { "hevc_deblock", checkasm_check_hevc_deblock },
187  { "hevc_idct", checkasm_check_hevc_idct },
188  { "hevc_pel", checkasm_check_hevc_pel },
189  { "hevc_sao", checkasm_check_hevc_sao },
190  #endif
191  #if CONFIG_HPELDSP
192  { "hpeldsp", checkasm_check_hpeldsp },
193  #endif
194  #if CONFIG_HUFFYUV_DECODER
195  { "huffyuvdsp", checkasm_check_huffyuvdsp },
196  #endif
197  #if CONFIG_IDCTDSP
198  { "idctdsp", checkasm_check_idctdsp },
199  #endif
200  #if CONFIG_JPEG2000_DECODER
201  { "jpeg2000dsp", checkasm_check_jpeg2000dsp },
202  #endif
203  #if CONFIG_LLAUDDSP
204  { "llauddsp", checkasm_check_llauddsp },
205  #endif
206  #if CONFIG_HUFFYUVDSP
207  { "llviddsp", checkasm_check_llviddsp },
208  #endif
209  #if CONFIG_LLVIDENCDSP
210  { "llviddspenc", checkasm_check_llviddspenc },
211  #endif
212  #if CONFIG_LPC
213  { "lpc", checkasm_check_lpc },
214  #endif
215  #if CONFIG_ME_CMP
216  { "motion", checkasm_check_motion },
217  #endif
218  #if CONFIG_MPEGVIDEOENCDSP
219  { "mpegvideoencdsp", checkasm_check_mpegvideoencdsp },
220  #endif
221  #if CONFIG_OPUS_DECODER
222  { "opusdsp", checkasm_check_opusdsp },
223  #endif
224  #if CONFIG_PIXBLOCKDSP
225  { "pixblockdsp", checkasm_check_pixblockdsp },
226  #endif
227  #if CONFIG_QPELDSP
228  { "qpeldsp", checkasm_check_qpeldsp },
229  #endif
230  #if CONFIG_RV34DSP
231  { "rv34dsp", checkasm_check_rv34dsp },
232  #endif
233  #if CONFIG_RV40_DECODER
234  { "rv40dsp", checkasm_check_rv40dsp },
235  #endif
236  #if CONFIG_SVQ1_ENCODER
237  { "svq1enc", checkasm_check_svq1enc },
238  #endif
239  #if CONFIG_TAK_DECODER
240  { "takdsp", checkasm_check_takdsp },
241  #endif
242  #if CONFIG_UTVIDEO_DECODER
243  { "utvideodsp", checkasm_check_utvideodsp },
244  #endif
245  #if CONFIG_V210_DECODER
246  { "v210dec", checkasm_check_v210dec },
247  #endif
248  #if CONFIG_V210_ENCODER
249  { "v210enc", checkasm_check_v210enc },
250  #endif
251  #if CONFIG_VC1DSP
252  { "vc1dsp", checkasm_check_vc1dsp },
253  #endif
254  #if CONFIG_VP3DSP
255  { "vp3dsp", checkasm_check_vp3dsp },
256  #endif
257  #if CONFIG_VP6_DECODER
258  { "vp6dsp", checkasm_check_vp6dsp },
259  #endif
260  #if CONFIG_VP8DSP
261  { "vp8dsp", checkasm_check_vp8dsp },
262  #endif
263  #if CONFIG_VP9_DECODER
264  { "vp9dsp", checkasm_check_vp9dsp },
265  #endif
266  #if CONFIG_VIDEODSP
267  { "videodsp", checkasm_check_videodsp },
268  #endif
269  #if CONFIG_VORBIS_DECODER
270  { "vorbisdsp", checkasm_check_vorbisdsp },
271  #endif
272  #if CONFIG_VVC_DECODER
273  { "vvc_alf", checkasm_check_vvc_alf },
274  { "vvc_mc", checkasm_check_vvc_mc },
275  { "vvc_sao", checkasm_check_vvc_sao },
276  #endif
277 #endif
278 #if CONFIG_AVFILTER
279  #if CONFIG_SCENE_SAD
280  { "scene_sad", checkasm_check_scene_sad },
281  #endif
282  #if CONFIG_AFIR_FILTER
283  { "af_afir", checkasm_check_afir },
284  #endif
285  #if CONFIG_BLACKDETECT_FILTER
286  { "vf_blackdetect", checkasm_check_blackdetect },
287  #endif
288  #if CONFIG_BLEND_FILTER
289  { "vf_blend", checkasm_check_blend },
290  #endif
291  #if CONFIG_BWDIF_FILTER
292  { "vf_bwdif", checkasm_check_vf_bwdif },
293  #endif
294  #if CONFIG_COLORDETECT_FILTER
295  { "vf_colordetect", checkasm_check_colordetect },
296  #endif
297  #if CONFIG_COLORSPACE_FILTER
298  { "vf_colorspace", checkasm_check_colorspace },
299  #endif
300  #if CONFIG_EQ_FILTER
301  { "vf_eq", checkasm_check_vf_eq },
302  #endif
303  #if CONFIG_FSPP_FILTER
304  { "vf_fspp", checkasm_check_vf_fspp },
305  #endif
306  #if CONFIG_GBLUR_FILTER
307  { "vf_gblur", checkasm_check_vf_gblur },
308  #endif
309  #if CONFIG_HFLIP_FILTER
310  { "vf_hflip", checkasm_check_vf_hflip },
311  #endif
312  #if CONFIG_IDET_FILTER
313  { "vf_idet", checkasm_check_idet },
314  #endif
315  #if CONFIG_NLMEANS_FILTER
316  { "vf_nlmeans", checkasm_check_nlmeans },
317  #endif
318  #if CONFIG_THRESHOLD_FILTER
319  { "vf_threshold", checkasm_check_vf_threshold },
320  #endif
321  #if CONFIG_SOBEL_FILTER
322  { "vf_sobel", checkasm_check_vf_sobel },
323  #endif
324 #endif
325 #if CONFIG_SWSCALE
326  { "sw_gbrp", checkasm_check_sw_gbrp },
327  { "sw_range_convert", checkasm_check_sw_range_convert },
328  { "sw_rgb", checkasm_check_sw_rgb },
329  { "sw_scale", checkasm_check_sw_scale },
330  { "sw_yuv2rgb", checkasm_check_sw_yuv2rgb },
331  { "sw_yuv2yuv", checkasm_check_sw_yuv2yuv },
332  { "sw_ops", checkasm_check_sw_ops },
333 #endif
334 #if CONFIG_AVUTIL
335  { "aes", checkasm_check_aes },
336  { "fixed_dsp", checkasm_check_fixed_dsp },
337  { "float_dsp", checkasm_check_float_dsp },
338  { "lls", checkasm_check_lls },
339  { "av_tx", checkasm_check_av_tx },
340 #endif
341  { NULL }
342 };
343 
344 /* List of cpu flags to check */
345 static const struct {
346  const char *name;
347  const char *suffix;
348  int flag;
349 } cpus[] = {
350 #if ARCH_AARCH64
351  { "ARMV8", "armv8", AV_CPU_FLAG_ARMV8 },
352  { "NEON", "neon", AV_CPU_FLAG_NEON },
353  { "DOTPROD", "dotprod", AV_CPU_FLAG_DOTPROD },
354  { "I8MM", "i8mm", AV_CPU_FLAG_I8MM },
355  { "SVE", "sve", AV_CPU_FLAG_SVE },
356  { "SVE2", "sve2", AV_CPU_FLAG_SVE2 },
357 #elif ARCH_ARM
358  { "ARMV5TE", "armv5te", AV_CPU_FLAG_ARMV5TE },
359  { "ARMV6", "armv6", AV_CPU_FLAG_ARMV6 },
360  { "ARMV6T2", "armv6t2", AV_CPU_FLAG_ARMV6T2 },
361  { "VFP", "vfp", AV_CPU_FLAG_VFP },
362  { "VFP_VM", "vfp_vm", AV_CPU_FLAG_VFP_VM },
363  { "VFPV3", "vfp3", AV_CPU_FLAG_VFPV3 },
364  { "NEON", "neon", AV_CPU_FLAG_NEON },
365 #elif ARCH_PPC
366  { "ALTIVEC", "altivec", AV_CPU_FLAG_ALTIVEC },
367  { "VSX", "vsx", AV_CPU_FLAG_VSX },
368  { "POWER8", "power8", AV_CPU_FLAG_POWER8 },
369 #elif ARCH_RISCV
370  { "RVI", "rvi", AV_CPU_FLAG_RVI },
371  { "misaligned", "misaligned", AV_CPU_FLAG_RV_MISALIGNED },
372  { "RV_zbb", "rvb_b", AV_CPU_FLAG_RVB_BASIC },
373  { "RVB", "rvb", AV_CPU_FLAG_RVB },
374  { "RV_zve32x","rvv_i32", AV_CPU_FLAG_RVV_I32 },
375  { "RV_zve32f","rvv_f32", AV_CPU_FLAG_RVV_F32 },
376  { "RV_zve64x","rvv_i64", AV_CPU_FLAG_RVV_I64 },
377  { "RV_zve64d","rvv_f64", AV_CPU_FLAG_RVV_F64 },
378  { "RV_zvbb", "rv_zvbb", AV_CPU_FLAG_RV_ZVBB },
379 #elif ARCH_MIPS
380  { "MMI", "mmi", AV_CPU_FLAG_MMI },
381  { "MSA", "msa", AV_CPU_FLAG_MSA },
382 #elif ARCH_X86
383  { "MMX", "mmx", AV_CPU_FLAG_MMX|AV_CPU_FLAG_CMOV },
384  { "MMXEXT", "mmxext", AV_CPU_FLAG_MMXEXT },
385  { "3DNOW", "3dnow", AV_CPU_FLAG_3DNOW },
386  { "3DNOWEXT", "3dnowext", AV_CPU_FLAG_3DNOWEXT },
387  { "SSE", "sse", AV_CPU_FLAG_SSE },
388  { "SSE2", "sse2", AV_CPU_FLAG_SSE2|AV_CPU_FLAG_SSE2SLOW },
389  { "SSE3", "sse3", AV_CPU_FLAG_SSE3|AV_CPU_FLAG_SSE3SLOW },
390  { "SSSE3", "ssse3", AV_CPU_FLAG_SSSE3|AV_CPU_FLAG_ATOM },
391  { "SSE4.1", "sse4", AV_CPU_FLAG_SSE4 },
392  { "SSE4.2", "sse42", AV_CPU_FLAG_SSE42 },
393  { "AES-NI", "aesni", AV_CPU_FLAG_AESNI },
394  { "AVX", "avx", AV_CPU_FLAG_AVX },
395  { "XOP", "xop", AV_CPU_FLAG_XOP },
396  { "FMA3", "fma3", AV_CPU_FLAG_FMA3 },
397  { "FMA4", "fma4", AV_CPU_FLAG_FMA4 },
398  { "AVX2", "avx2", AV_CPU_FLAG_AVX2 },
399  { "AVX-512", "avx512", AV_CPU_FLAG_AVX512 },
400  { "AVX-512ICL", "avx512icl", AV_CPU_FLAG_AVX512ICL },
401 #elif ARCH_LOONGARCH
402  { "LSX", "lsx", AV_CPU_FLAG_LSX },
403  { "LASX", "lasx", AV_CPU_FLAG_LASX },
404 #elif ARCH_WASM
405  { "SIMD128", "simd128", AV_CPU_FLAG_SIMD128 },
406 #endif
407  { NULL }
408 };
409 
410 typedef struct CheckasmFuncVersion {
412  void *func;
413  int ok;
414  int cpu;
417 
418 /* Binary search tree node */
419 typedef struct CheckasmFunc {
420  struct CheckasmFunc *child[2];
422  uint8_t color; /* 0 = red, 1 = black */
423  char name[1];
424 } CheckasmFunc;
425 
426 /* Internal state */
427 static struct {
431  const char *current_test_name;
432  const char *bench_pattern;
436 
437  /* perf */
438  int nop_time;
439  int sysfd;
440 
441  int cpu_flag;
442  const char *cpu_flag_name;
443  const char *test_pattern;
444  int verbose;
445  int csv;
446  int tsv;
447  volatile sig_atomic_t catch_signals;
448 } state;
449 
450 /* PRNG state */
452 
453 /* float compare support code */
454 static int is_negative(union av_intfloat32 u)
455 {
456  return u.i >> 31;
457 }
458 
459 int float_near_ulp(float a, float b, unsigned max_ulp)
460 {
461  union av_intfloat32 x, y;
462 
463  x.f = a;
464  y.f = b;
465 
466  if (is_negative(x) != is_negative(y)) {
467  // handle -0.0 == +0.0
468  return a == b;
469  }
470 
471  if (llabs((int64_t)x.i - y.i) <= max_ulp)
472  return 1;
473 
474  return 0;
475 }
476 
477 int float_near_ulp_array(const float *a, const float *b, unsigned max_ulp,
478  unsigned len)
479 {
480  unsigned i;
481 
482  for (i = 0; i < len; i++) {
483  if (!float_near_ulp(a[i], b[i], max_ulp))
484  return 0;
485  }
486  return 1;
487 }
488 
489 int float_near_abs_eps(float a, float b, float eps)
490 {
491  float abs_diff = fabsf(a - b);
492  if (abs_diff < eps)
493  return 1;
494 
495  fprintf(stderr, "test failed comparing %g with %g (abs diff=%g with EPS=%g)\n", a, b, abs_diff, eps);
496 
497  return 0;
498 }
499 
500 int float_near_abs_eps_array(const float *a, const float *b, float eps,
501  unsigned len)
502 {
503  unsigned i;
504 
505  for (i = 0; i < len; i++) {
506  if (!float_near_abs_eps(a[i], b[i], eps))
507  return 0;
508  }
509  return 1;
510 }
511 
512 int float_near_abs_eps_ulp(float a, float b, float eps, unsigned max_ulp)
513 {
514  return float_near_ulp(a, b, max_ulp) || float_near_abs_eps(a, b, eps);
515 }
516 
517 int float_near_abs_eps_array_ulp(const float *a, const float *b, float eps,
518  unsigned max_ulp, unsigned len)
519 {
520  unsigned i;
521 
522  for (i = 0; i < len; i++) {
523  if (!float_near_abs_eps_ulp(a[i], b[i], eps, max_ulp))
524  return 0;
525  }
526  return 1;
527 }
528 
529 int double_near_abs_eps(double a, double b, double eps)
530 {
531  double abs_diff = fabs(a - b);
532 
533  return abs_diff < eps;
534 }
535 
536 int double_near_abs_eps_array(const double *a, const double *b, double eps,
537  unsigned len)
538 {
539  unsigned i;
540 
541  for (i = 0; i < len; i++) {
542  if (!double_near_abs_eps(a[i], b[i], eps))
543  return 0;
544  }
545  return 1;
546 }
547 
548 /* Print colored text to stderr if the terminal supports it */
549 static void color_printf(int color, const char *fmt, ...)
550 {
551  static int use_color = -1;
552  va_list arg;
553 
554 #if HAVE_SETCONSOLETEXTATTRIBUTE && HAVE_GETSTDHANDLE
555  static HANDLE con;
556  static WORD org_attributes;
557 
558  if (use_color < 0) {
559  CONSOLE_SCREEN_BUFFER_INFO con_info;
560  con = GetStdHandle(STD_ERROR_HANDLE);
561  if (con && con != INVALID_HANDLE_VALUE && GetConsoleScreenBufferInfo(con, &con_info)) {
562  org_attributes = con_info.wAttributes;
563  use_color = 1;
564  } else
565  use_color = 0;
566  }
567  if (use_color)
568  SetConsoleTextAttribute(con, (org_attributes & 0xfff0) | (color & 0x0f));
569 #else
570  if (use_color < 0) {
571  const char *term = getenv("TERM");
572  use_color = term && strcmp(term, "dumb") && isatty(2);
573  }
574  if (use_color)
575  fprintf(stderr, "\x1b[%d;3%dm", (color & 0x08) >> 3, color & 0x07);
576 #endif
577 
578  va_start(arg, fmt);
579  vfprintf(stderr, fmt, arg);
580  va_end(arg);
581 
582  if (use_color) {
583 #if HAVE_SETCONSOLETEXTATTRIBUTE && HAVE_GETSTDHANDLE
584  SetConsoleTextAttribute(con, org_attributes);
585 #else
586  fprintf(stderr, "\x1b[0m");
587 #endif
588  }
589 }
590 
591 /* Deallocate a tree */
593 {
594  if (f) {
595  CheckasmFuncVersion *v = f->versions.next;
596  while (v) {
597  CheckasmFuncVersion *next = v->next;
598  free(v);
599  v = next;
600  }
601 
602  destroy_func_tree(f->child[0]);
603  destroy_func_tree(f->child[1]);
604  free(f);
605  }
606 }
607 
608 /* Allocate a zero-initialized block, clean up and exit on failure */
609 static void *checkasm_malloc(size_t size)
610 {
611  void *ptr = calloc(1, size);
612  if (!ptr) {
613  fprintf(stderr, "checkasm: malloc failed\n");
614  destroy_func_tree(state.funcs);
615  exit(1);
616  }
617  return ptr;
618 }
619 
620 /* Get the suffix of the specified cpu flag */
621 static const char *cpu_suffix(int cpu)
622 {
623  int i = FF_ARRAY_ELEMS(cpus);
624 
625  while (--i >= 0)
626  if (cpu & cpus[i].flag)
627  return cpus[i].suffix;
628 
629  return "c";
630 }
631 
632 static int cmp_nop(const void *a, const void *b)
633 {
634  return *(const uint16_t*)a - *(const uint16_t*)b;
635 }
636 
637 /* Measure the overhead of the timing code (in decicycles) */
638 static int measure_nop_time(void)
639 {
640  uint16_t nops[10000];
641  int i, nop_sum = 0;
642  av_unused const int sysfd = state.sysfd;
643 
644  uint64_t t = 0;
645  for (i = 0; i < 10000; i++) {
646  PERF_START(t);
647  PERF_STOP(t);
648  nops[i] = t;
649  }
650 
651  qsort(nops, 10000, sizeof(uint16_t), cmp_nop);
652  for (i = 2500; i < 7500; i++)
653  nop_sum += nops[i];
654 
655  return nop_sum / 500;
656 }
657 
658 static inline double avg_cycles_per_call(const CheckasmPerf *const p)
659 {
660  if (p->iterations) {
661  const double cycles = (double)(10 * p->cycles) / p->iterations - state.nop_time;
662  if (cycles > 0.0)
663  return cycles / 32.0; /* 32 calls per iteration */
664  }
665  return 0.0;
666 }
667 
668 /* Print benchmark results */
670 {
671  if (f) {
672  CheckasmFuncVersion *v = &f->versions;
673  const CheckasmPerf *p = &v->perf;
674  const double baseline = avg_cycles_per_call(p);
675  double decicycles;
676 
677  print_benchs(f->child[0]);
678 
679  do {
680  if (p->iterations) {
681  p = &v->perf;
682  decicycles = avg_cycles_per_call(p);
683  if (state.csv || state.tsv) {
684  const char sep = state.csv ? ',' : '\t';
685  printf("%s%c%s%c%.1f\n", f->name, sep,
686  cpu_suffix(v->cpu), sep,
687  decicycles / 10.0);
688  } else {
689  const int pad_length = 10 + 50 -
690  printf("%s_%s:", f->name, cpu_suffix(v->cpu));
691  const double ratio = decicycles ?
692  baseline / decicycles : 0.0;
693  printf("%*.1f (%5.2fx)\n", FFMAX(pad_length, 0),
694  decicycles / 10.0, ratio);
695  }
696  }
697  } while ((v = v->next));
698 
699  print_benchs(f->child[1]);
700  }
701 }
702 
703 /* ASCIIbetical sort except preserving natural order for numbers */
704 static int cmp_func_names(const char *a, const char *b)
705 {
706  const char *start = a;
707  int ascii_diff, digit_diff;
708 
709  for (; !(ascii_diff = *(const unsigned char*)a - *(const unsigned char*)b) && *a; a++, b++);
710  for (; av_isdigit(*a) && av_isdigit(*b); a++, b++);
711 
712  if (a > start && av_isdigit(a[-1]) && (digit_diff = av_isdigit(*a) - av_isdigit(*b)))
713  return digit_diff;
714 
715  return ascii_diff;
716 }
717 
718 /* Perform a tree rotation in the specified direction and return the new root */
720 {
721  CheckasmFunc *r = f->child[dir^1];
722  f->child[dir^1] = r->child[dir];
723  r->child[dir] = f;
724  r->color = f->color;
725  f->color = 0;
726  return r;
727 }
728 
729 #define is_red(f) ((f) && !(f)->color)
730 
731 /* Balance a left-leaning red-black tree at the specified node */
732 static void balance_tree(CheckasmFunc **root)
733 {
734  CheckasmFunc *f = *root;
735 
736  if (is_red(f->child[0]) && is_red(f->child[1])) {
737  f->color ^= 1;
738  f->child[0]->color = f->child[1]->color = 1;
739  }
740 
741  if (!is_red(f->child[0]) && is_red(f->child[1]))
742  *root = rotate_tree(f, 0); /* Rotate left */
743  else if (is_red(f->child[0]) && is_red(f->child[0]->child[0]))
744  *root = rotate_tree(f, 1); /* Rotate right */
745 }
746 
747 /* Get a node with the specified name, creating it if it doesn't exist */
748 static CheckasmFunc *get_func(CheckasmFunc **root, const char *name)
749 {
750  CheckasmFunc *f = *root;
751 
752  if (f) {
753  /* Search the tree for a matching node */
754  int cmp = cmp_func_names(name, f->name);
755  if (cmp) {
756  f = get_func(&f->child[cmp > 0], name);
757 
758  /* Rebalance the tree on the way up if a new node was inserted */
759  if (!f->versions.func)
760  balance_tree(root);
761  }
762  } else {
763  /* Allocate and insert a new node into the tree */
764  int name_length = strlen(name);
765  f = *root = checkasm_malloc(sizeof(CheckasmFunc) + name_length);
766  memcpy(f->name, name, name_length + 1);
767  }
768 
769  return f;
770 }
771 
773 
774 /* Crash handling: attempt to catch crashes and handle them
775  * gracefully instead of just aborting abruptly. */
776 #ifdef _WIN32
777 #if WINAPI_FAMILY_PARTITION(WINAPI_PARTITION_DESKTOP)
778 static LONG NTAPI signal_handler(EXCEPTION_POINTERS *e) {
779  int s;
780 
781  if (!state.catch_signals)
782  return EXCEPTION_CONTINUE_SEARCH;
783 
784  switch (e->ExceptionRecord->ExceptionCode) {
785  case EXCEPTION_FLT_DIVIDE_BY_ZERO:
786  case EXCEPTION_INT_DIVIDE_BY_ZERO:
787  s = SIGFPE;
788  break;
789  case EXCEPTION_ILLEGAL_INSTRUCTION:
790  case EXCEPTION_PRIV_INSTRUCTION:
791  s = SIGILL;
792  break;
793  case EXCEPTION_ACCESS_VIOLATION:
794  case EXCEPTION_ARRAY_BOUNDS_EXCEEDED:
795  case EXCEPTION_DATATYPE_MISALIGNMENT:
796  case EXCEPTION_STACK_OVERFLOW:
797  s = SIGSEGV;
798  break;
799  case EXCEPTION_IN_PAGE_ERROR:
800  s = SIGBUS;
801  break;
802  default:
803  return EXCEPTION_CONTINUE_SEARCH;
804  }
805  state.catch_signals = 0;
807  return EXCEPTION_CONTINUE_EXECUTION; /* never reached, but shuts up gcc */
808 }
809 #endif
810 #elif !defined(_WASI_EMULATED_SIGNAL)
811 static void signal_handler(int s);
812 
813 static const struct sigaction signal_handler_act = {
814  .sa_handler = signal_handler,
815  .sa_flags = SA_RESETHAND,
816 };
817 
818 static void signal_handler(int s) {
819  if (state.catch_signals) {
820  state.catch_signals = 0;
821  sigaction(s, &signal_handler_act, NULL);
823  }
824 }
825 #endif
826 
827 /* Compares a string with a wildcard pattern. */
828 static int wildstrcmp(const char *str, const char *pattern)
829 {
830  const char *wild = strchr(pattern, '*');
831  if (wild) {
832  const size_t len = wild - pattern;
833  if (strncmp(str, pattern, len)) return 1;
834  while (*++wild == '*');
835  if (!*wild) return 0;
836  str += len;
837  while (*str && wildstrcmp(str, wild)) str++;
838  return !*str;
839  }
840  return strcmp(str, pattern);
841 }
842 
843 /* Perform tests and benchmarks for the specified cpu flag if supported by the host */
844 static void check_cpu_flag(const char *name, int flag)
845 {
846  int old_cpu_flag = state.cpu_flag;
847 
848  flag |= old_cpu_flag;
849  av_force_cpu_flags(-1);
850  state.cpu_flag = flag & av_get_cpu_flags();
851  av_force_cpu_flags(state.cpu_flag);
852 
853  if (!flag || state.cpu_flag != old_cpu_flag) {
854  int i;
855 
856  state.cpu_flag_name = name;
857  for (i = 0; tests[i].func; i++) {
858  if (state.test_pattern && wildstrcmp(tests[i].name, state.test_pattern))
859  continue;
860  state.current_test_name = tests[i].name;
861  tests[i].func();
862  }
863  }
864 }
865 
866 /* Print the name of the current CPU flag, but only do it once */
867 static void print_cpu_name(void)
868 {
869  if (state.cpu_flag_name) {
870  color_printf(COLOR_YELLOW, "%s:\n", state.cpu_flag_name);
871  state.cpu_flag_name = NULL;
872  }
873 }
874 
875 #if CONFIG_LINUX_PERF
876 static int bench_init_linux(void)
877 {
878  struct perf_event_attr attr = {
879  .type = PERF_TYPE_HARDWARE,
880  .size = sizeof(struct perf_event_attr),
881  .config = PERF_COUNT_HW_CPU_CYCLES,
882  .disabled = 1, // start counting only on demand
883  .exclude_kernel = 1,
884  .exclude_hv = 1,
885 #if !ARCH_X86
886  .exclude_guest = 1,
887 #endif
888  };
889 
890  fprintf(stderr, "benchmarking with Linux Perf Monitoring API\n");
891 
892  state.sysfd = syscall(__NR_perf_event_open, &attr, 0, -1, -1, 0);
893  if (state.sysfd == -1) {
894  perror("perf_event_open");
895  return -1;
896  }
897  return 0;
898 }
899 #elif CONFIG_MACOS_KPERF
900 static int bench_init_kperf(void)
901 {
902  ff_kperf_init();
903  return 0;
904 }
905 #else
906 static int bench_init_ffmpeg(void)
907 {
908 #ifdef AV_READ_TIME
909  if (!checkasm_save_context()) {
911  AV_READ_TIME();
913  } else {
914  fprintf(stderr, "checkasm: unable to execute platform specific timer\n");
915  return -1;
916  }
917  fprintf(stderr, "benchmarking with native FFmpeg timers\n");
918  return 0;
919 #else
920  fprintf(stderr, "checkasm: --bench is not supported on your system\n");
921  return -1;
922 #endif
923 }
924 #endif
925 
926 static int bench_init(void)
927 {
928 #if CONFIG_LINUX_PERF
929  int ret = bench_init_linux();
930 #elif CONFIG_MACOS_KPERF
931  int ret = bench_init_kperf();
932 #else
933  int ret = bench_init_ffmpeg();
934 #endif
935  if (ret < 0)
936  return ret;
937 
938  state.nop_time = measure_nop_time();
939  fprintf(stderr, "nop: %d.%d\n", state.nop_time/10, state.nop_time%10);
940  return 0;
941 }
942 
943 static void bench_uninit(void)
944 {
945 #if CONFIG_LINUX_PERF
946  close(state.sysfd);
947 #endif
948 }
949 
950 static int usage(const char *path)
951 {
952  fprintf(stderr,
953  "Usage: %s [options...] [seed]\n"
954  " --test=<pattern> Run specific test.\n"
955  " --bench Run benchmark.\n"
956  " --csv, --tsv Output results in rows of comma or tab separated values.\n"
957  " --runs=<ptwo> Manual number of benchmark iterations to run 2**<ptwo>.\n"
958  " --verbose Increase verbosity.\n",
959  path);
960  return 1;
961 }
962 
963 int main(int argc, char *argv[])
964 {
965  unsigned int seed = av_get_random_seed();
966  int i, ret = 0;
967  char arch_info_buf[50] = "";
968 
969 #ifdef _WIN32
970 #if WINAPI_FAMILY_PARTITION(WINAPI_PARTITION_DESKTOP)
971  AddVectoredExceptionHandler(0, signal_handler);
972 #endif
973 #elif !defined(_WASI_EMULATED_SIGNAL)
974  sigaction(SIGBUS, &signal_handler_act, NULL);
975  sigaction(SIGFPE, &signal_handler_act, NULL);
976  sigaction(SIGILL, &signal_handler_act, NULL);
977  sigaction(SIGSEGV, &signal_handler_act, NULL);
978 #endif
979 #if HAVE_PRCTL && defined(PR_SET_UNALIGN)
980  prctl(PR_SET_UNALIGN, PR_UNALIGN_SIGBUS);
981 #endif
982 #if ARCH_ARM && HAVE_ARMV5TE_EXTERNAL
984  checkasm_checked_call = checkasm_checked_call_vfp;
985 #endif
986 
987  if (!tests[0].func || !cpus[0].flag) {
988  fprintf(stderr, "checkasm: no tests to perform\n");
989  return 0;
990  }
991 
992  for (i = 1; i < argc; i++) {
993  const char *arg = argv[i];
994  unsigned long l;
995  char *end;
996 
997  if (!strncmp(arg, "--bench", 7)) {
998  if (bench_init() < 0)
999  return 1;
1000  if (arg[7] == '=') {
1001  state.bench_pattern = arg + 8;
1002  state.bench_pattern_len = strlen(state.bench_pattern);
1003  } else
1004  state.bench_pattern = "*";
1005  } else if (!strncmp(arg, "--test=", 7)) {
1006  state.test_pattern = arg + 7;
1007  } else if (!strcmp(arg, "--csv")) {
1008  state.csv = 1; state.tsv = 0;
1009  } else if (!strcmp(arg, "--tsv")) {
1010  state.csv = 0; state.tsv = 1;
1011  } else if (!strcmp(arg, "--verbose") || !strcmp(arg, "-v")) {
1012  state.verbose = 1;
1013  } else if (!strncmp(arg, "--runs=", 7)) {
1014  l = strtoul(arg + 7, &end, 10);
1015  if (*end == '\0') {
1016  if (l > 30) {
1017  fprintf(stderr, "checkasm: error: runs exponent must be within the range 0 <= 30\n");
1018  usage(argv[0]);
1019  }
1020  bench_runs = 1U << l;
1021  } else {
1022  return usage(argv[0]);
1023  }
1024  } else if ((l = strtoul(arg, &end, 10)) <= UINT_MAX &&
1025  *end == '\0') {
1026  seed = l;
1027  } else {
1028  return usage(argv[0]);
1029  }
1030  }
1031 
1032 #if ARCH_AARCH64 && HAVE_SVE
1033  if (have_sve(av_get_cpu_flags()))
1034  snprintf(arch_info_buf, sizeof(arch_info_buf),
1035  "SVE %d bits, ", 8 * ff_aarch64_sve_length());
1036 #elif ARCH_RISCV && HAVE_RVV
1038  snprintf(arch_info_buf, sizeof (arch_info_buf),
1039  "%zu-bit vectors, ", 8 * ff_get_rv_vlenb());
1040 #endif
1041  fprintf(stderr, "checkasm: %susing random seed %u\n", arch_info_buf, seed);
1043 
1044  if (state.bench_pattern)
1045  fprintf(stderr, "checkasm: bench runs %" PRIu64 " (1 << %i)\n", bench_runs, av_log2(bench_runs));
1046 
1047  check_cpu_flag(NULL, 0);
1048  for (i = 0; cpus[i].flag; i++)
1050 
1051  if (state.num_failed) {
1052  fprintf(stderr, "checkasm: %d of %d tests have failed\n", state.num_failed, state.num_checked);
1053  ret = 1;
1054  } else {
1055  fprintf(stderr, "checkasm: all %d tests passed\n", state.num_checked);
1056  if (state.bench_pattern) {
1057  print_benchs(state.funcs);
1058  }
1059  }
1060 
1061  destroy_func_tree(state.funcs);
1062  bench_uninit();
1063  return ret;
1064 }
1065 
1066 /* Decide whether or not the specified function needs to be tested and
1067  * allocate/initialize data structures if needed. Returns a pointer to a
1068  * reference function if the function should be tested, otherwise NULL */
1069 void *checkasm_check_func(void *func, const char *name, ...)
1070 {
1071  char name_buf[256];
1072  void *ref = func;
1074  int name_length;
1075  va_list arg;
1076 
1077  va_start(arg, name);
1078  name_length = vsnprintf(name_buf, sizeof(name_buf), name, arg);
1079  va_end(arg);
1080 
1081  if (!func || name_length <= 0 || name_length >= sizeof(name_buf))
1082  return NULL;
1083 
1084  state.current_func = get_func(&state.funcs, name_buf);
1085  state.funcs->color = 1;
1086  v = &state.current_func->versions;
1087 
1088  if (v->func) {
1089  CheckasmFuncVersion *prev;
1090  do {
1091  /* Only test functions that haven't already been tested */
1092  if (v->func == func)
1093  return NULL;
1094 
1095  if (v->ok)
1096  ref = v->func;
1097 
1098  prev = v;
1099  } while ((v = v->next));
1100 
1101  v = prev->next = checkasm_malloc(sizeof(CheckasmFuncVersion));
1102  }
1103 
1104  v->func = func;
1105  v->ok = 1;
1106  v->cpu = state.cpu_flag;
1107  state.current_func_ver = v;
1108 
1109  if (state.cpu_flag)
1110  state.num_checked++;
1111 
1112  return ref;
1113 }
1114 
1115 /* Decide whether or not the current function needs to be benchmarked */
1117 {
1118  return !state.num_failed && state.bench_pattern &&
1119  !wildstrcmp(state.current_func->name, state.bench_pattern);
1120 }
1121 
1122 /* Indicate that the current test has failed, return whether verbose printing
1123  * is requested. */
1124 int checkasm_fail_func(const char *msg, ...)
1125 {
1126  if (state.current_func_ver && state.current_func_ver->cpu &&
1127  state.current_func_ver->ok)
1128  {
1129  va_list arg;
1130 
1131  print_cpu_name();
1132  fprintf(stderr, " %s_%s (", state.current_func->name, cpu_suffix(state.current_func_ver->cpu));
1133  va_start(arg, msg);
1134  vfprintf(stderr, msg, arg);
1135  va_end(arg);
1136  fprintf(stderr, ")\n");
1137 
1138  state.current_func_ver->ok = 0;
1139  state.num_failed++;
1140  }
1141  return state.verbose;
1142 }
1143 
1145  state.catch_signals = enabled;
1146 }
1147 
1149  if (s) {
1150 #ifdef __GLIBC__
1151  checkasm_fail_func("fatal signal %d: %s", s, strsignal(s));
1152 #else
1153  checkasm_fail_func(s == SIGFPE ? "fatal arithmetic error" :
1154  s == SIGILL ? "illegal instruction" :
1155  s == SIGBUS ? "bus error" :
1156  "segmentation fault");
1157 #endif
1158  }
1159  return s;
1160 }
1161 
1162 /* Get the benchmark context of the current function */
1164 {
1165  CheckasmPerf *perf = &state.current_func_ver->perf;
1166  memset(perf, 0, sizeof(*perf));
1167  perf->sysfd = state.sysfd;
1168  return perf;
1169 }
1170 
1171 /* Print the outcome of all tests performed since the last time this function was called */
1172 void checkasm_report(const char *name, ...)
1173 {
1174  static int prev_checked, prev_failed, max_length;
1175 
1176  if (state.num_checked > prev_checked) {
1177  int pad_length = max_length + 4;
1178  va_list arg;
1179 
1180  print_cpu_name();
1181  pad_length -= fprintf(stderr, " - %s.", state.current_test_name);
1182  va_start(arg, name);
1183  pad_length -= vfprintf(stderr, name, arg);
1184  va_end(arg);
1185  fprintf(stderr, "%*c", FFMAX(pad_length, 0) + 2, '[');
1186 
1187  if (state.num_failed == prev_failed)
1188  color_printf(COLOR_GREEN, "OK");
1189  else
1190  color_printf(COLOR_RED, "FAILED");
1191  fprintf(stderr, "]\n");
1192 
1193  prev_checked = state.num_checked;
1194  prev_failed = state.num_failed;
1195  } else if (!state.cpu_flag) {
1196  /* Calculate the amount of padding required to make the output vertically aligned */
1197  int length = strlen(state.current_test_name);
1198  va_list arg;
1199 
1200  va_start(arg, name);
1201  length += vsnprintf(NULL, 0, name, arg);
1202  va_end(arg);
1203 
1204  if (length > max_length)
1205  max_length = length;
1206  }
1207 }
1208 
1209 static int check_err(const char *file, int line,
1210  const char *name, int w, int h,
1211  int *err)
1212 {
1213  if (*err)
1214  return 0;
1215  if (!checkasm_fail_func("%s:%d", file, line))
1216  return 1;
1217  *err = 1;
1218  fprintf(stderr, "%s (%dx%d):\n", name, w, h);
1219  return 0;
1220 }
1221 
1222 #define DEF_CHECKASM_CHECK_BODY(compare, type, fmt) \
1223 do { \
1224  int64_t aligned_w = (w - 1LL + align_w) & ~(align_w - 1); \
1225  int64_t aligned_h = (h - 1LL + align_h) & ~(align_h - 1); \
1226  int err = 0; \
1227  int y = 0; \
1228  av_assert0(aligned_w == (int32_t)aligned_w);\
1229  av_assert0(aligned_h == (int32_t)aligned_h);\
1230  stride1 /= sizeof(*buf1); \
1231  stride2 /= sizeof(*buf2); \
1232  for (y = 0; y < h; y++) \
1233  if (!compare(&buf1[y*stride1], &buf2[y*stride2], w)) \
1234  break; \
1235  if (y != h) { \
1236  if (check_err(file, line, name, w, h, &err)) \
1237  return 1; \
1238  for (y = 0; y < h; y++) { \
1239  for (int x = 0; x < w; x++) \
1240  fprintf(stderr, " " fmt, buf1[x]); \
1241  fprintf(stderr, " "); \
1242  for (int x = 0; x < w; x++) \
1243  fprintf(stderr, " " fmt, buf2[x]); \
1244  fprintf(stderr, " "); \
1245  for (int x = 0; x < w; x++) \
1246  fprintf(stderr, "%c", buf1[x] != buf2[x] ? 'x' : '.'); \
1247  buf1 += stride1; \
1248  buf2 += stride2; \
1249  fprintf(stderr, "\n"); \
1250  } \
1251  buf1 -= h*stride1; \
1252  buf2 -= h*stride2; \
1253  } \
1254  for (y = -padding; y < 0; y++) \
1255  if (!compare(&buf1[y*stride1 - padding], &buf2[y*stride2 - padding], \
1256  w + 2*padding)) { \
1257  if (check_err(file, line, name, w, h, &err)) \
1258  return 1; \
1259  fprintf(stderr, " overwrite above\n"); \
1260  break; \
1261  } \
1262  for (y = aligned_h; y < aligned_h + padding; y++) \
1263  if (!compare(&buf1[y*stride1 - padding], &buf2[y*stride2 - padding], \
1264  w + 2*padding)) { \
1265  if (check_err(file, line, name, w, h, &err)) \
1266  return 1; \
1267  fprintf(stderr, " overwrite below\n"); \
1268  break; \
1269  } \
1270  for (y = 0; y < h; y++) \
1271  if (!compare(&buf1[y*stride1 - padding], &buf2[y*stride2 - padding], \
1272  padding)) { \
1273  if (check_err(file, line, name, w, h, &err)) \
1274  return 1; \
1275  fprintf(stderr, " overwrite left\n"); \
1276  break; \
1277  } \
1278  for (y = 0; y < h; y++) \
1279  if (!compare(&buf1[y*stride1 + aligned_w], &buf2[y*stride2 + aligned_w], \
1280  padding)) { \
1281  if (check_err(file, line, name, w, h, &err)) \
1282  return 1; \
1283  fprintf(stderr, " overwrite right\n"); \
1284  break; \
1285  } \
1286  return err; \
1287 } while (0)
1288 
1289 #define cmp_int(a, b, len) (!memcmp(a, b, (len) * sizeof(*(a))))
1290 #define DEF_CHECKASM_CHECK_FUNC(type, fmt) \
1291 int checkasm_check_##type(const char *file, int line, \
1292  const type *buf1, ptrdiff_t stride1, \
1293  const type *buf2, ptrdiff_t stride2, \
1294  int w, int h, const char *name, \
1295  int align_w, int align_h, \
1296  int padding) \
1297 { \
1298  DEF_CHECKASM_CHECK_BODY(cmp_int, type, fmt); \
1299 }
1300 
1301 DEF_CHECKASM_CHECK_FUNC(uint8_t, "%02x")
1302 DEF_CHECKASM_CHECK_FUNC(uint16_t, "%04x")
1303 DEF_CHECKASM_CHECK_FUNC(uint32_t, "%08x")
1304 DEF_CHECKASM_CHECK_FUNC(int16_t, "%6d")
1306 
1307 int checkasm_check_float_ulp(const char *file, int line,
1308  const float *buf1, ptrdiff_t stride1,
1309  const float *buf2, ptrdiff_t stride2,
1310  int w, int h, const char *name,
1311  unsigned max_ulp, int align_w, int align_h,
1312  int padding)
1313 {
1314  #define cmp_float(a, b, len) float_near_ulp_array(a, b, max_ulp, len)
1315  DEF_CHECKASM_CHECK_BODY(cmp_float, float, "%g");
1316  #undef cmp_float
1317 }
checkasm_check_nlmeans
void checkasm_check_nlmeans(void)
Definition: vf_nlmeans.c:32
AV_CPU_FLAG_VFP
#define AV_CPU_FLAG_VFP
Definition: cpu.h:70
checkasm_check_sw_gbrp
void checkasm_check_sw_gbrp(void)
Definition: sw_gbrp.c:398
bench_pattern_len
int bench_pattern_len
Definition: checkasm.c:433
av_force_cpu_flags
void av_force_cpu_flags(int arg)
Disables cpu detection and forces the specified flags.
Definition: cpu.c:81
checkasm_check_vp8dsp
void checkasm_check_vp8dsp(void)
Definition: vp8dsp.c:511
checkasm_check_idet
void checkasm_check_idet(void)
Definition: vf_idet.c:58
checkasm_check_blockdsp
void checkasm_check_blockdsp(void)
Definition: blockdsp.c:78
AV_CPU_FLAG_SSE3
#define AV_CPU_FLAG_SSE3
Prescott SSE3 functions.
Definition: cpu.h:41
checkasm_check_fdctdsp
void checkasm_check_fdctdsp(void)
Definition: fdctdsp.c:67
destroy_func_tree
static void destroy_func_tree(CheckasmFunc *f)
Definition: checkasm.c:592
r
const char * r
Definition: vf_curves.c:127
printf
__device__ int printf(const char *,...)
checkasm_check_videodsp
void checkasm_check_videodsp(void)
Definition: videodsp.c:80
cmp_nop
static int cmp_nop(const void *a, const void *b)
Definition: checkasm.c:632
checkasm_check_vf_eq
void checkasm_check_vf_eq(void)
Definition: vf_eq.c:76
AV_CPU_FLAG_RVB_BASIC
#define AV_CPU_FLAG_RVB_BASIC
Basic bit-manipulations.
Definition: cpu.h:98
COLOR_RED
#define COLOR_RED
Definition: checkasm.c:85
checkasm_check_dcadsp
void checkasm_check_dcadsp(void)
Definition: dcadsp.c:89
wildstrcmp
static int wildstrcmp(const char *str, const char *pattern)
Definition: checkasm.c:828
checkasm_lfg
AVLFG checkasm_lfg
Definition: checkasm.c:451
color
Definition: vf_paletteuse.c:513
av_lfg_init
av_cold void av_lfg_init(AVLFG *c, unsigned int seed)
Definition: lfg.c:32
checkasm_check_alacdsp
void checkasm_check_alacdsp(void)
Definition: alacdsp.c:116
AV_CPU_FLAG_LSX
#define AV_CPU_FLAG_LSX
Definition: cpu.h:85
checkasm_check_v210dec
void checkasm_check_v210dec(void)
Definition: v210dec.c:47
float_near_abs_eps_array
int float_near_abs_eps_array(const float *a, const float *b, float eps, unsigned len)
Definition: checkasm.c:500
AV_CPU_FLAG_SSE3SLOW
#define AV_CPU_FLAG_SSE3SLOW
SSE3 supported, but usually not faster.
Definition: cpu.h:42
CheckasmFunc
Definition: checkasm.c:419
checkasm_check_sw_yuv2yuv
void checkasm_check_sw_yuv2yuv(void)
Definition: sw_yuv2yuv.c:131
name
const char * name
Definition: checkasm.c:115
checkasm_fail_func
int checkasm_fail_func(const char *msg,...)
Definition: checkasm.c:1124
bench_pattern
const char * bench_pattern
Definition: checkasm.c:432
cpus
static const struct @544 cpus[]
AV_CPU_FLAG_RV_ZVBB
#define AV_CPU_FLAG_RV_ZVBB
Vector basic bit-manipulations.
Definition: cpu.h:102
int64_t
long long int64_t
Definition: coverity.c:34
av_unused
#define av_unused
Definition: attributes.h:151
checkasm_check_hevc_idct
void checkasm_check_hevc_idct(void)
Definition: hevc_idct.c:108
checkasm_check_sw_scale
void checkasm_check_sw_scale(void)
Definition: sw_scale.c:460
CheckasmFunc::child
struct CheckasmFunc * child[2]
Definition: checkasm.c:420
AV_CPU_FLAG_SVE2
#define AV_CPU_FLAG_SVE2
Definition: cpu.h:78
checkasm_check_afir
void checkasm_check_afir(void)
Definition: af_afir.c:144
checkasm_check_aes
void checkasm_check_aes(void)
Definition: aes.c:28
print_cpu_name
static void print_cpu_name(void)
Definition: checkasm.c:867
AV_CPU_FLAG_3DNOW
#define AV_CPU_FLAG_3DNOW
AMD 3DNOW.
Definition: cpu.h:35
w
uint8_t w
Definition: llviddspenc.c:38
u
#define u(width, name, range_min, range_max)
Definition: cbs_apv.c:68
av_intfloat32::i
uint32_t i
Definition: intfloat.h:28
AV_CPU_FLAG_SVE
#define AV_CPU_FLAG_SVE
Definition: cpu.h:77
float_near_abs_eps
int float_near_abs_eps(float a, float b, float eps)
Definition: checkasm.c:489
b
#define b
Definition: input.c:42
checkasm_check_aacpsdsp
void checkasm_check_aacpsdsp(void)
Definition: aacpsdsp.c:234
bench_uninit
static void bench_uninit(void)
Definition: checkasm.c:943
CheckasmFuncVersion::cpu
int cpu
Definition: checkasm.c:414
cpu_flag
int cpu_flag
Definition: checkasm.c:441
AV_CPU_FLAG_DOTPROD
#define AV_CPU_FLAG_DOTPROD
Definition: cpu.h:75
checkasm_check_vvc_sao
void checkasm_check_vvc_sao(void)
Definition: vvc_sao.c:134
FFMAX
#define FFMAX(a, b)
Definition: macros.h:47
av_get_cpu_flags
int av_get_cpu_flags(void)
Return the flags which specify extensions supported by the CPU.
Definition: cpu.c:109
cpu_suffix
static const char * cpu_suffix(int cpu)
Definition: checkasm.c:621
CheckasmPerf::sysfd
int sysfd
Definition: checkasm.h:331
checkasm_check_llviddspenc
void checkasm_check_llviddspenc(void)
Definition: llviddspenc.c:104
intfloat.h
checkasm_check_h264dsp
void checkasm_check_h264dsp(void)
Definition: h264dsp.c:499
tf_sess_config.config
config
Definition: tf_sess_config.py:33
color_printf
static void color_printf(int color, const char *fmt,...)
Definition: checkasm.c:549
AV_CPU_FLAG_RVV_F64
#define AV_CPU_FLAG_RVV_F64
Vectors of double's.
Definition: cpu.h:97
av_get_random_seed
uint32_t av_get_random_seed(void)
Get a seed to use in conjunction with random functions.
Definition: random_seed.c:196
main
int main(int argc, char *argv[])
Definition: checkasm.c:963
checkasm_check_float_ulp
int checkasm_check_float_ulp(const char *file, int line, const float *buf1, ptrdiff_t stride1, const float *buf2, ptrdiff_t stride2, int w, int h, const char *name, unsigned max_ulp, int align_w, int align_h, int padding)
Definition: checkasm.c:1307
checkasm_check_motion
void checkasm_check_motion(void)
Definition: motion.c:137
close
static av_cold void close(AVCodecParserContext *s)
Definition: apv_parser.c:136
checkasm_check_h263dsp
void checkasm_check_h263dsp(void)
Definition: h263dsp.c:54
AV_CPU_FLAG_RVB
#define AV_CPU_FLAG_RVB
B (bit manipulations)
Definition: cpu.h:104
AV_CPU_FLAG_SSSE3
#define AV_CPU_FLAG_SSSE3
Conroe SSSE3 functions.
Definition: cpu.h:44
double_near_abs_eps
int double_near_abs_eps(double a, double b, double eps)
Definition: checkasm.c:529
CheckasmPerf
Definition: checkasm.h:330
current_test_name
const char * current_test_name
Definition: checkasm.c:431
PERF_START
#define PERF_START(t)
Definition: checkasm.h:403
rotate_tree
static CheckasmFunc * rotate_tree(CheckasmFunc *f, int dir)
Definition: checkasm.c:719
dummy
int dummy
Definition: motion.c:64
AV_CPU_FLAG_XOP
#define AV_CPU_FLAG_XOP
Bulldozer XOP functions.
Definition: cpu.h:52
checkasm_check_vp9dsp
void checkasm_check_vp9dsp(void)
Definition: vp9dsp.c:627
checkasm.h
checkasm_check_vf_threshold
void checkasm_check_vf_threshold(void)
Definition: vf_threshold.c:79
state
static struct @545 state
checkasm_check_vf_gblur
void checkasm_check_vf_gblur(void)
Definition: vf_gblur.c:82
AV_CPU_FLAG_3DNOWEXT
#define AV_CPU_FLAG_3DNOWEXT
AMD 3DNowExt.
Definition: cpu.h:40
float_near_abs_eps_ulp
int float_near_abs_eps_ulp(float a, float b, float eps, unsigned max_ulp)
Definition: checkasm.c:512
have_sve
#define have_sve(flags)
Definition: cpu.h:30
checkasm_check_vvc_mc
void checkasm_check_vvc_mc(void)
Definition: vvc_mc.c:471
AV_CPU_FLAG_VSX
#define AV_CPU_FLAG_VSX
ISA 2.06.
Definition: cpu.h:64
fabsf
static __device__ float fabsf(float a)
Definition: cuda_runtime.h:181
checkasm_check_sw_yuv2rgb
void checkasm_check_sw_yuv2rgb(void)
Definition: sw_yuv2rgb.c:233
AV_CPU_FLAG_RVV_F32
#define AV_CPU_FLAG_RVV_F32
Vectors of float's *‍/.
Definition: cpu.h:95
num_failed
int num_failed
Definition: checkasm.c:435
checkasm_check_float_dsp
void checkasm_check_float_dsp(void)
Definition: float_dsp.c:297
AV_CPU_FLAG_AVX512
#define AV_CPU_FLAG_AVX512
AVX-512 functions: requires OS support even if YMM/ZMM registers aren't used.
Definition: cpu.h:59
bench_init
static int bench_init(void)
Definition: checkasm.c:926
avassert.h
checkasm_check_pixblockdsp
void checkasm_check_pixblockdsp(void)
Definition: pixblockdsp.c:82
FF_ARRAY_ELEMS
#define FF_ARRAY_ELEMS(a)
Definition: sinewin_tablegen.c:29
CheckasmFuncVersion
Definition: checkasm.c:410
COLOR_YELLOW
#define COLOR_YELLOW
Definition: checkasm.c:87
nop_time
int nop_time
Definition: checkasm.c:438
CheckasmFuncVersion::perf
CheckasmPerf perf
Definition: checkasm.c:415
s
#define s(width, name)
Definition: cbs_vp9.c:198
checkasm_check_vf_bwdif
void checkasm_check_vf_bwdif(void)
Definition: vf_bwdif.c:72
checkasm_report
void checkasm_report(const char *name,...)
Definition: checkasm.c:1172
get_func
static CheckasmFunc * get_func(CheckasmFunc **root, const char *name)
Definition: checkasm.c:748
cpu.h
checkasm_check_sw_rgb
void checkasm_check_sw_rgb(void)
Definition: sw_rgb.c:804
checkasm_check_hevc_sao
void checkasm_check_hevc_sao(void)
Definition: hevc_sao.c:136
num_checked
int num_checked
Definition: checkasm.c:434
AV_CPU_FLAG_ARMV6
#define AV_CPU_FLAG_ARMV6
Definition: cpu.h:68
AV_READ_TIME
#define AV_READ_TIME
Definition: timer.h:28
AV_CPU_FLAG_SSE4
#define AV_CPU_FLAG_SSE4
Penryn SSE4.1 functions.
Definition: cpu.h:47
checkasm_check_hevc_pel
void checkasm_check_hevc_pel(void)
Definition: hevc_pel.c:621
checkasm_set_signal_handler_state
void checkasm_set_signal_handler_state(int enabled)
Definition: checkasm.c:1144
CheckasmFuncVersion::ok
int ok
Definition: checkasm.c:413
arg
const char * arg
Definition: jacosubdec.c:65
func
void(* func)(void)
Definition: checkasm.c:116
cmp_float
#define cmp_float(a, b, len)
fabs
static __device__ float fabs(float a)
Definition: cuda_runtime.h:182
NULL
#define NULL
Definition: coverity.c:32
measure_nop_time
static int measure_nop_time(void)
Definition: checkasm.c:638
checkasm_check_takdsp
void checkasm_check_takdsp(void)
Definition: takdsp.c:145
double_near_abs_eps_array
int double_near_abs_eps_array(const double *a, const double *b, double eps, unsigned len)
Definition: checkasm.c:536
checkasm_check_sw_ops
void checkasm_check_sw_ops(void)
Definition: sw_ops.c:752
AV_CPU_FLAG_LASX
#define AV_CPU_FLAG_LASX
Definition: cpu.h:86
AV_CPU_FLAG_AVX512ICL
#define AV_CPU_FLAG_AVX512ICL
F/CD/BW/DQ/VL/VNNI/IFMA/VBMI/VBMI2/VPOPCNTDQ/BITALG/GFNI/VAES/VPCLMULQDQ.
Definition: cpu.h:60
checkasm_check_fmtconvert
void checkasm_check_fmtconvert(void)
Definition: fmtconvert.c:46
checkasm_load_context
#define checkasm_load_context(s)
Definition: checkasm.h:77
AV_CPU_FLAG_MSA
#define AV_CPU_FLAG_MSA
Definition: cpu.h:82
checkasm_save_context
#define checkasm_save_context()
Definition: checkasm.h:76
COLOR_GREEN
#define COLOR_GREEN
Definition: checkasm.c:86
checkasm_check_aacencdsp
void checkasm_check_aacencdsp(void)
Definition: aacencdsp.c:100
checkasm_check_vorbisdsp
void checkasm_check_vorbisdsp(void)
Definition: vorbisdsp.c:76
cpu.h
double
double
Definition: af_crystalizer.c:132
av_intfloat32
Definition: intfloat.h:27
checkasm_check_cavsdsp
void checkasm_check_cavsdsp(void)
Definition: cavsdsp.c:116
checkasm_check_apv_dsp
void checkasm_check_apv_dsp(void)
Definition: apv_dsp.c:96
AV_CPU_FLAG_CMOV
#define AV_CPU_FLAG_CMOV
supports cmov instruction
Definition: cpu.h:54
seed
static unsigned int seed
Definition: videogen.c:78
checkasm_check_hpeldsp
void checkasm_check_hpeldsp(void)
Definition: hpeldsp.c:54
AV_CPU_FLAG_ALTIVEC
#define AV_CPU_FLAG_ALTIVEC
standard
Definition: cpu.h:63
checkasm_check_rv40dsp
void checkasm_check_rv40dsp(void)
Definition: rv40dsp.c:71
print_benchs
static void print_benchs(CheckasmFunc *f)
Definition: checkasm.c:669
current_func
CheckasmFunc * current_func
Definition: checkasm.c:429
AV_CPU_FLAG_I8MM
#define AV_CPU_FLAG_I8MM
Definition: cpu.h:76
checkasm_check_vc1dsp
void checkasm_check_vc1dsp(void)
Definition: vc1dsp.c:476
catch_signals
volatile sig_atomic_t catch_signals
Definition: checkasm.c:447
checkasm_check_h264chroma
void checkasm_check_h264chroma(void)
Definition: h264chroma.c:81
AV_CPU_FLAG_SSE2
#define AV_CPU_FLAG_SSE2
PIV SSE2 functions.
Definition: cpu.h:37
CheckasmFunc::color
uint8_t color
Definition: checkasm.c:422
AVLFG
Context structure for the Lagged Fibonacci PRNG.
Definition: lfg.h:33
f
f
Definition: af_crystalizer.c:122
checkasm_check_llauddsp
void checkasm_check_llauddsp(void)
Definition: llauddsp.c:108
AV_CPU_FLAG_AVX
#define AV_CPU_FLAG_AVX
AVX functions: requires OS support even if YMM registers aren't used.
Definition: cpu.h:50
csv
int csv
Definition: checkasm.c:445
AV_CPU_FLAG_FMA4
#define AV_CPU_FLAG_FMA4
Bulldozer FMA4 functions.
Definition: cpu.h:53
cpu.h
AV_CPU_FLAG_AVX2
#define AV_CPU_FLAG_AVX2
AVX2 functions: requires OS support even if YMM registers aren't used.
Definition: cpu.h:55
checkasm_check_llviddsp
void checkasm_check_llviddsp(void)
Definition: llviddsp.c:195
checkasm_handle_signal
int checkasm_handle_signal(int s)
Definition: checkasm.c:1148
AV_CPU_FLAG_SSE2SLOW
#define AV_CPU_FLAG_SSE2SLOW
SSE2 supported, but usually not faster.
Definition: cpu.h:38
AV_CPU_FLAG_NEON
#define AV_CPU_FLAG_NEON
Definition: cpu.h:72
size
int size
Definition: twinvq_data.h:10344
checkasm_check_vp3dsp
void checkasm_check_vp3dsp(void)
Definition: vp3dsp.c:113
checkasm_check_diracdsp
void checkasm_check_diracdsp(void)
Definition: diracdsp.c:85
DEF_CHECKASM_CHECK_FUNC
#define DEF_CHECKASM_CHECK_FUNC(type, fmt)
Definition: checkasm.c:1290
sysfd
int sysfd
Definition: checkasm.c:439
cmp
static av_always_inline int cmp(MPVEncContext *const s, const int x, const int y, const int subx, const int suby, const int size, const int h, int ref_index, int src_index, me_cmp_func cmp_func, me_cmp_func chroma_cmp_func, const int flags)
compares a block (either a full macroblock or a partition thereof) against a proposed motion-compensa...
Definition: motion_est.c:263
have_neon
#define have_neon(flags)
Definition: cpu.h:26
CheckasmFuncVersion::func
void * func
Definition: checkasm.c:412
checkasm_check_h264pred
void checkasm_check_h264pred(void)
Definition: h264pred.c:233
av_isdigit
static av_const int av_isdigit(int c)
Locale-independent conversion of ASCII isdigit.
Definition: avstring.h:202
AV_CPU_FLAG_FMA3
#define AV_CPU_FLAG_FMA3
Haswell FMA3 functions.
Definition: cpu.h:56
a
The reader does not expect b to be semantically here and if the code is changed by maybe adding a a division or other the signedness will almost certainly be mistaken To avoid this confusion a new type was SUINT is the C unsigned type but it holds a signed int to use the same example SUINT a
Definition: undefined.txt:41
ff_kperf_init
void ff_kperf_init(void)
Definition: macos_kperf.c:102
bench_runs
uint64_t bench_runs
Definition: checkasm.c:111
checkasm_check_huffyuvdsp
void checkasm_check_huffyuvdsp(void)
Definition: huffyuvdsp.c:95
line
Definition: graph2dot.c:48
float_near_abs_eps_array_ulp
int float_near_abs_eps_array_ulp(const float *a, const float *b, float eps, unsigned max_ulp, unsigned len)
Definition: checkasm.c:517
checkasm_get_perf_context
CheckasmPerf * checkasm_get_perf_context(void)
Definition: checkasm.c:1163
checkasm_check_fixed_dsp
void checkasm_check_fixed_dsp(void)
Definition: fixed_dsp.c:133
checkasm_check_colorspace
void checkasm_check_colorspace(void)
Definition: vf_colorspace.c:309
tests
static const struct @543 tests[]
checkasm_check_utvideodsp
void checkasm_check_utvideodsp(void)
Definition: utvideodsp.c:90
is_negative
static int is_negative(union av_intfloat32 u)
Definition: checkasm.c:454
checkasm_check_audiodsp
void checkasm_check_audiodsp(void)
Definition: audiodsp.c:52
checkasm_check_sw_range_convert
void checkasm_check_sw_range_convert(void)
Definition: sw_range_convert.c:224
AV_CPU_FLAG_RV_MISALIGNED
#define AV_CPU_FLAG_RV_MISALIGNED
Fast misaligned accesses.
Definition: cpu.h:103
checkasm_check_mpegvideoencdsp
void checkasm_check_mpegvideoencdsp(void)
Definition: mpegvideoencdsp.c:191
i
#define i(width, name, range_min, range_max)
Definition: cbs_h2645.c:256
AV_CPU_FLAG_SIMD128
#define AV_CPU_FLAG_SIMD128
Definition: cpu.h:107
checkasm_check_flacdsp
void checkasm_check_flacdsp(void)
Definition: flacdsp.c:155
checkasm_check_func
void * checkasm_check_func(void *func, const char *name,...)
Definition: checkasm.c:1069
AV_CPU_FLAG_SSE42
#define AV_CPU_FLAG_SSE42
Nehalem SSE4.2 functions.
Definition: cpu.h:48
checkasm_check_idctdsp
void checkasm_check_idctdsp(void)
Definition: idctdsp.c:95
CheckasmFuncVersion::next
struct CheckasmFuncVersion * next
Definition: checkasm.c:411
vsnprintf
#define vsnprintf
Definition: snprintf.h:36
common.h
use_color
static int use_color
Definition: log.c:127
AV_CPU_FLAG_RVV_I32
#define AV_CPU_FLAG_RVV_I32
Vectors of 8/16/32-bit int's *‍/.
Definition: cpu.h:94
checkasm_check_synth_filter
void checkasm_check_synth_filter(void)
Definition: synth_filter.c:47
cmp_func_names
static int cmp_func_names(const char *a, const char *b)
Definition: checkasm.c:704
AV_CPU_FLAG_ARMV8
#define AV_CPU_FLAG_ARMV8
Definition: cpu.h:73
checkasm_check_lpc
void checkasm_check_lpc(void)
Definition: lpc.c:96
len
int len
Definition: vorbis_enc_data.h:426
checkasm_check_g722dsp
void checkasm_check_g722dsp(void)
Definition: g722dsp.c:53
checkasm_check_ac3dsp
void checkasm_check_ac3dsp(void)
Definition: ac3dsp.c:193
PERF_STOP
#define PERF_STOP(t)
Definition: checkasm.h:404
is_red
#define is_red(f)
Definition: checkasm.c:729
AV_CPU_FLAG_ATOM
#define AV_CPU_FLAG_ATOM
Atom processor, some SSSE3 instructions are slower.
Definition: cpu.h:46
have_vfp
#define have_vfp(flags)
Definition: cpu.h:27
checkasm_check_svq1enc
void checkasm_check_svq1enc(void)
Definition: svq1enc.c:63
checkasm_check_vf_hflip
void checkasm_check_vf_hflip(void)
Definition: vf_hflip.c:72
ret
ret
Definition: filter_design.txt:187
checkasm_check_lls
void checkasm_check_lls(void)
Definition: lls.c:84
checkasm_check_scene_sad
void checkasm_check_scene_sad(void)
Definition: scene_sad.c:66
checkasm_check_blend
void checkasm_check_blend(void)
Definition: vf_blend.c:89
verbose
int verbose
Definition: checkasm.c:444
DEF_CHECKASM_CHECK_BODY
#define DEF_CHECKASM_CHECK_BODY(compare, type, fmt)
Definition: checkasm.c:1222
AV_CPU_FLAG_VFPV3
#define AV_CPU_FLAG_VFPV3
Definition: cpu.h:71
checkasm_check_bswapdsp
void checkasm_check_bswapdsp(void)
Definition: bswapdsp.c:60
checkasm_context_buf
checkasm_context checkasm_context_buf
Definition: checkasm.c:772
U
#define U(x)
Definition: vpx_arith.h:37
AV_CPU_FLAG_ARMV5TE
#define AV_CPU_FLAG_ARMV5TE
Definition: cpu.h:67
checkasm_check_vf_fspp
void checkasm_check_vf_fspp(void)
Definition: vf_fspp.c:165
AV_CPU_FLAG_MMX
#define AV_CPU_FLAG_MMX
standard MMX
Definition: cpu.h:32
suffix
const char * suffix
Definition: checkasm.c:347
checkasm_malloc
static void * checkasm_malloc(size_t size)
Definition: checkasm.c:609
AV_CPU_FLAG_RVI
#define AV_CPU_FLAG_RVI
I (full GPR bank)
Definition: cpu.h:89
checkasm_check_h264qpel
void checkasm_check_h264qpel(void)
Definition: h264qpel.c:51
random_seed.h
signal_handler
static void signal_handler(int s)
Definition: checkasm.c:818
checkasm_check_colordetect
void checkasm_check_colordetect(void)
Definition: vf_colordetect.c:135
AV_CPU_FLAG_AESNI
#define AV_CPU_FLAG_AESNI
Advanced Encryption Standard functions.
Definition: cpu.h:49
checkasm_bench_func
int checkasm_bench_func(void)
Definition: checkasm.c:1116
AV_CPU_FLAG_POWER8
#define AV_CPU_FLAG_POWER8
ISA 2.07.
Definition: cpu.h:65
cpu_flag_name
const char * cpu_flag_name
Definition: checkasm.c:442
checkasm_check_vf_sobel
void checkasm_check_vf_sobel(void)
Definition: vf_convolution.c:100
AV_CPU_FLAG_SSE
#define AV_CPU_FLAG_SSE
SSE functions.
Definition: cpu.h:36
ref
static int ref[MAX_W *MAX_W]
Definition: jpeg2000dwt.c:117
float_near_ulp_array
int float_near_ulp_array(const float *a, const float *b, unsigned max_ulp, unsigned len)
Definition: checkasm.c:477
signal_handler_act
static const struct sigaction signal_handler_act
Definition: checkasm.c:813
AV_CPU_FLAG_MMXEXT
#define AV_CPU_FLAG_MMXEXT
SSE integer functions or AMD MMX ext.
Definition: cpu.h:33
Windows::Graphics::DirectX::Direct3D11::p
IDirect3DDxgiInterfaceAccess _COM_Outptr_ void ** p
Definition: vsrc_gfxcapture_winrt.hpp:53
checkasm_check_vp6dsp
void checkasm_check_vp6dsp(void)
Definition: vp6dsp.c:39
checkasm_check_av_tx
void checkasm_check_av_tx(void)
Definition: av_tx.c:102
checkasm_check_qpeldsp
void checkasm_check_qpeldsp(void)
Definition: qpeldsp.c:52
checkasm_check_blackdetect
void checkasm_check_blackdetect(void)
Definition: vf_blackdetect.c:62
av_intfloat32::f
float f
Definition: intfloat.h:29
flag
int flag
Definition: checkasm.c:348
checkasm_check_v210enc
void checkasm_check_v210enc(void)
Definition: v210enc.c:83
checkasm_check_sbrdsp
void checkasm_check_sbrdsp(void)
Definition: sbrdsp.c:257
checkasm_check_hevc_deblock
void checkasm_check_hevc_deblock(void)
Definition: hevc_deblock.c:264
test_pattern
const char * test_pattern
Definition: checkasm.c:443
usage
static int usage(const char *path)
Definition: checkasm.c:950
AV_CPU_FLAG_VFP_VM
#define AV_CPU_FLAG_VFP_VM
VFPv2 vector mode, deprecated in ARMv7-A and unavailable in various CPUs implementations.
Definition: cpu.h:74
AV_CPU_FLAG_MMI
#define AV_CPU_FLAG_MMI
Definition: cpu.h:81
checkasm_check_jpeg2000dsp
void checkasm_check_jpeg2000dsp(void)
Definition: jpeg2000dsp.c:92
checkasm_check_hevc_add_res
void checkasm_check_hevc_add_res(void)
Definition: hevc_add_res.c:87
int32_t
int32_t
Definition: audioconvert.c:56
float_near_ulp
int float_near_ulp(float a, float b, unsigned max_ulp)
Definition: checkasm.c:459
current_func_ver
CheckasmFuncVersion * current_func_ver
Definition: checkasm.c:430
check_cpu_flag
static void check_cpu_flag(const char *name, int flag)
Definition: checkasm.c:844
checkasm_context
sigjmp_buf checkasm_context
Definition: checkasm.h:75
bench_init_ffmpeg
static int bench_init_ffmpeg(void)
Definition: checkasm.c:906
checkasm_check_rv34dsp
void checkasm_check_rv34dsp(void)
Definition: rv34dsp.c:82
CheckasmFunc::versions
CheckasmFuncVersion versions
Definition: checkasm.c:421
isatty
#define isatty(fd)
Definition: checkasm.c:95
h
h
Definition: vp9dsp_template.c:2070
avg_cycles_per_call
static double avg_cycles_per_call(const CheckasmPerf *const p)
Definition: checkasm.c:658
AV_CPU_FLAG_RVV_I64
#define AV_CPU_FLAG_RVV_I64
Vectors of 64-bit int's *‍/.
Definition: cpu.h:96
check_err
static int check_err(const char *file, int line, const char *name, int w, int h, int *err)
Definition: checkasm.c:1209
cpu.h
CheckasmFunc::name
char name[1]
Definition: checkasm.c:423
checkasm_check_vvc_alf
void checkasm_check_vvc_alf(void)
Definition: vvc_alf.c:178
snprintf
#define snprintf
Definition: snprintf.h:34
av_log2
int av_log2(unsigned v)
Definition: intmath.c:26
checkasm_check_exrdsp
void checkasm_check_exrdsp(void)
Definition: exrdsp.c:77
balance_tree
static void balance_tree(CheckasmFunc **root)
Definition: checkasm.c:732
AV_CPU_FLAG_ARMV6T2
#define AV_CPU_FLAG_ARMV6T2
Definition: cpu.h:69
tsv
int tsv
Definition: checkasm.c:446
funcs
CheckasmFunc * funcs
Definition: checkasm.c:428
checkasm_check_opusdsp
void checkasm_check_opusdsp(void)
Definition: opusdsp.c:86