configure.ac 32 KB

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  1. dnl Process this file with autoconf to produce a configure script. -*-m4-*-
  2. dnl The package_version file will be automatically synced to the git revision
  3. dnl by the update_version script when configured in the repository, but will
  4. dnl remain constant in tarball releases unless it is manually edited.
  5. m4_define([CURRENT_VERSION],
  6. m4_esyscmd([ ./update_version 2>/dev/null || true
  7. if test -e package_version; then
  8. . ./package_version
  9. printf "$PACKAGE_VERSION"
  10. else
  11. printf "unknown"
  12. fi ]))
  13. AC_INIT([opus],[CURRENT_VERSION],[opus@xiph.org])
  14. AC_CONFIG_SRCDIR(src/opus_encoder.c)
  15. AC_CONFIG_MACRO_DIR([m4])
  16. dnl enable silent rules on automake 1.11 and later
  17. m4_ifdef([AM_SILENT_RULES], [AM_SILENT_RULES([yes])])
  18. # For libtool.
  19. dnl Please update these for releases.
  20. OPUS_LT_CURRENT=5
  21. OPUS_LT_REVISION=3
  22. OPUS_LT_AGE=5
  23. AC_SUBST(OPUS_LT_CURRENT)
  24. AC_SUBST(OPUS_LT_REVISION)
  25. AC_SUBST(OPUS_LT_AGE)
  26. AM_INIT_AUTOMAKE([no-define])
  27. AM_MAINTAINER_MODE([enable])
  28. AC_CANONICAL_HOST
  29. AC_MINGW32
  30. AM_PROG_LIBTOOL
  31. AM_PROG_CC_C_O
  32. AC_PROG_CC_C99
  33. AC_C_CONST
  34. AC_C_INLINE
  35. AM_PROG_AS
  36. AC_DEFINE([OPUS_BUILD], [], [This is a build of OPUS])
  37. #Use a hacked up version of autoconf's AC_C_RESTRICT because it's not
  38. #strong enough a test to detect old buggy versions of GCC (e.g. 2.95.3)
  39. #Note: Both this and the test for variable-size arrays below are also
  40. # done by AC_PROG_CC_C99, but not thoroughly enough apparently.
  41. AC_CACHE_CHECK([for C/C++ restrict keyword], ac_cv_c_restrict,
  42. [ac_cv_c_restrict=no
  43. # The order here caters to the fact that C++ does not require restrict.
  44. for ac_kw in __restrict __restrict__ _Restrict restrict; do
  45. AC_COMPILE_IFELSE([AC_LANG_PROGRAM(
  46. [[typedef int * int_ptr;
  47. int foo (int_ptr $ac_kw ip, int * $ac_kw baz[]) {
  48. return ip[0];
  49. }]],
  50. [[int s[1];
  51. int * $ac_kw t = s;
  52. t[0] = 0;
  53. return foo(t, (void *)0)]])],
  54. [ac_cv_c_restrict=$ac_kw])
  55. test "$ac_cv_c_restrict" != no && break
  56. done
  57. ])
  58. AH_VERBATIM([restrict],
  59. [/* Define to the equivalent of the C99 'restrict' keyword, or to
  60. nothing if this is not supported. Do not define if restrict is
  61. supported directly. */
  62. #undef restrict
  63. /* Work around a bug in Sun C++: it does not support _Restrict or
  64. __restrict__, even though the corresponding Sun C compiler ends up with
  65. "#define restrict _Restrict" or "#define restrict __restrict__" in the
  66. previous line. Perhaps some future version of Sun C++ will work with
  67. restrict; if so, hopefully it defines __RESTRICT like Sun C does. */
  68. #if defined __SUNPRO_CC && !defined __RESTRICT
  69. # define _Restrict
  70. # define __restrict__
  71. #endif])
  72. case $ac_cv_c_restrict in
  73. restrict) ;;
  74. no) AC_DEFINE([restrict], []) ;;
  75. *) AC_DEFINE_UNQUOTED([restrict], [$ac_cv_c_restrict]) ;;
  76. esac
  77. AC_MSG_CHECKING(for C99 variable-size arrays)
  78. AC_COMPILE_IFELSE([AC_LANG_PROGRAM([],
  79. [[static int x; char a[++x]; a[sizeof a - 1] = 0; int N; return a[0];]])],
  80. [ has_var_arrays=yes
  81. use_alloca="no (using var arrays)"
  82. AC_DEFINE([VAR_ARRAYS], [1], [Use C99 variable-size arrays])
  83. ],[
  84. has_var_arrays=no
  85. ])
  86. AC_MSG_RESULT([$has_var_arrays])
  87. AS_IF([test "$has_var_arrays" = "no"],
  88. [
  89. AC_CHECK_HEADERS([alloca.h])
  90. AC_MSG_CHECKING(for alloca)
  91. AC_COMPILE_IFELSE([AC_LANG_PROGRAM([[#include <alloca.h>]],
  92. [[int foo=10; int *array = alloca(foo);]])],
  93. [ use_alloca=yes;
  94. AC_DEFINE([USE_ALLOCA], [], [Make use of alloca])
  95. ],[
  96. use_alloca=no
  97. ])
  98. AC_MSG_RESULT([$use_alloca])
  99. ])
  100. LT_LIB_M
  101. AC_ARG_ENABLE([fixed-point],
  102. [AS_HELP_STRING([--enable-fixed-point],
  103. [compile without floating point (for machines without a fast enough FPU)])],,
  104. [enable_fixed_point=no])
  105. AS_IF([test "$enable_fixed_point" = "yes"],[
  106. enable_float="no"
  107. AC_DEFINE([FIXED_POINT], [1], [Compile as fixed-point (for machines without a fast enough FPU)])
  108. PC_BUILD="fixed-point"
  109. ],[
  110. enable_float="yes";
  111. PC_BUILD="floating-point"
  112. ])
  113. AM_CONDITIONAL([FIXED_POINT], [test "$enable_fixed_point" = "yes"])
  114. AC_ARG_ENABLE([fixed-point-debug],
  115. [AS_HELP_STRING([--enable-fixed-point-debug], [debug fixed-point implementation])],,
  116. [enable_fixed_point_debug=no])
  117. AS_IF([test "$enable_fixed_point_debug" = "yes"],[
  118. AC_DEFINE([FIXED_DEBUG], [1], [Debug fixed-point implementation])
  119. ])
  120. AC_ARG_ENABLE([float_api],
  121. [AS_HELP_STRING([--disable-float-api],
  122. [compile without the floating point API (for machines with no float library)])],,
  123. [enable_float_api=yes])
  124. AM_CONDITIONAL([DISABLE_FLOAT_API], [test "$enable_float_api" = "no"])
  125. AS_IF([test "$enable_float_api" = "no"],[
  126. AC_DEFINE([DISABLE_FLOAT_API], [1], [Do not build the float API])
  127. ])
  128. AC_ARG_ENABLE([custom-modes],
  129. [AS_HELP_STRING([--enable-custom-modes], [enable non-Opus modes, e.g. 44.1 kHz & 2^n frames])],,
  130. [enable_custom_modes=no])
  131. AS_IF([test "$enable_custom_modes" = "yes"],[
  132. AC_DEFINE([CUSTOM_MODES], [1], [Custom modes])
  133. PC_BUILD="$PC_BUILD, custom modes"
  134. ])
  135. AM_CONDITIONAL([CUSTOM_MODES], [test "$enable_custom_modes" = "yes"])
  136. has_float_approx=no
  137. #case "$host_cpu" in
  138. #i[[3456]]86 | x86_64 | powerpc64 | powerpc32 | ia64)
  139. # has_float_approx=yes
  140. # ;;
  141. #esac
  142. AC_ARG_ENABLE([float-approx],
  143. [AS_HELP_STRING([--enable-float-approx], [enable fast approximations for floating point])],
  144. [if test "$enable_float_approx" = "yes"; then
  145. AC_WARN([Floating point approximations are not supported on all platforms.])
  146. fi
  147. ],
  148. [enable_float_approx=$has_float_approx])
  149. AS_IF([test "$enable_float_approx" = "yes"],[
  150. AC_DEFINE([FLOAT_APPROX], [1], [Float approximations])
  151. ])
  152. AC_ARG_ENABLE([asm],
  153. [AS_HELP_STRING([--disable-asm], [Disable assembly optimizations])],,
  154. [enable_asm=yes])
  155. AC_ARG_ENABLE([rtcd],
  156. [AS_HELP_STRING([--disable-rtcd], [Disable run-time CPU capabilities detection])],,
  157. [enable_rtcd=yes])
  158. AC_ARG_ENABLE([intrinsics],
  159. [AS_HELP_STRING([--disable-intrinsics], [Disable intrinsics optimizations])],,
  160. [enable_intrinsics=yes])
  161. rtcd_support=no
  162. cpu_arm=no
  163. AS_IF([test x"${enable_asm}" = x"yes"],[
  164. inline_optimization="No inline ASM for your platform, please send patches"
  165. case $host_cpu in
  166. arm*)
  167. dnl Currently we only have asm for fixed-point
  168. AS_IF([test "$enable_float" != "yes"],[
  169. cpu_arm=yes
  170. AC_DEFINE([OPUS_ARM_ASM], [], [Make use of ARM asm optimization])
  171. AS_GCC_INLINE_ASSEMBLY(
  172. [inline_optimization="ARM"],
  173. [inline_optimization="disabled"]
  174. )
  175. AS_ASM_ARM_EDSP([OPUS_ARM_INLINE_EDSP=1],[OPUS_ARM_INLINE_EDSP=0])
  176. AS_ASM_ARM_MEDIA([OPUS_ARM_INLINE_MEDIA=1],
  177. [OPUS_ARM_INLINE_MEDIA=0])
  178. AS_ASM_ARM_NEON([OPUS_ARM_INLINE_NEON=1],[OPUS_ARM_INLINE_NEON=0])
  179. AS_IF([test x"$inline_optimization" = x"ARM"],[
  180. AM_CONDITIONAL([OPUS_ARM_INLINE_ASM],[true])
  181. AC_DEFINE([OPUS_ARM_INLINE_ASM], 1,
  182. [Use generic ARMv4 inline asm optimizations])
  183. AS_IF([test x"$OPUS_ARM_INLINE_EDSP" = x"1"],[
  184. AC_DEFINE([OPUS_ARM_INLINE_EDSP], [1],
  185. [Use ARMv5E inline asm optimizations])
  186. inline_optimization="$inline_optimization (EDSP)"
  187. ])
  188. AS_IF([test x"$OPUS_ARM_INLINE_MEDIA" = x"1"],[
  189. AC_DEFINE([OPUS_ARM_INLINE_MEDIA], [1],
  190. [Use ARMv6 inline asm optimizations])
  191. inline_optimization="$inline_optimization (Media)"
  192. ])
  193. AS_IF([test x"$OPUS_ARM_INLINE_NEON" = x"1"],[
  194. AC_DEFINE([OPUS_ARM_INLINE_NEON], 1,
  195. [Use ARM NEON inline asm optimizations])
  196. inline_optimization="$inline_optimization (NEON)"
  197. ])
  198. ])
  199. dnl We need Perl to translate RVCT-syntax asm to gas syntax.
  200. AC_CHECK_PROG([HAVE_PERL], perl, yes, no)
  201. AS_IF([test x"$HAVE_PERL" = x"yes"],[
  202. AM_CONDITIONAL([OPUS_ARM_EXTERNAL_ASM],[true])
  203. asm_optimization="ARM"
  204. AS_IF([test x"$OPUS_ARM_INLINE_EDSP" = x"1"], [
  205. OPUS_ARM_PRESUME_EDSP=1
  206. OPUS_ARM_MAY_HAVE_EDSP=1
  207. ],
  208. [
  209. OPUS_ARM_PRESUME_EDSP=0
  210. OPUS_ARM_MAY_HAVE_EDSP=0
  211. ])
  212. AS_IF([test x"$OPUS_ARM_INLINE_MEDIA" = x"1"], [
  213. OPUS_ARM_PRESUME_MEDIA=1
  214. OPUS_ARM_MAY_HAVE_MEDIA=1
  215. ],
  216. [
  217. OPUS_ARM_PRESUME_MEDIA=0
  218. OPUS_ARM_MAY_HAVE_MEDIA=0
  219. ])
  220. AS_IF([test x"$OPUS_ARM_INLINE_NEON" = x"1"], [
  221. OPUS_ARM_PRESUME_NEON=1
  222. OPUS_ARM_MAY_HAVE_NEON=1
  223. ],
  224. [
  225. OPUS_ARM_PRESUME_NEON=0
  226. OPUS_ARM_MAY_HAVE_NEON=0
  227. ])
  228. AS_IF([test x"$enable_rtcd" = x"yes"],[
  229. AS_IF([test x"$OPUS_ARM_MAY_HAVE_EDSP" != x"1"],[
  230. AC_MSG_NOTICE(
  231. [Trying to force-enable armv5e EDSP instructions...])
  232. AS_ASM_ARM_EDSP_FORCE([OPUS_ARM_MAY_HAVE_EDSP=1])
  233. ])
  234. AS_IF([test x"$OPUS_ARM_MAY_HAVE_MEDIA" != x"1"],[
  235. AC_MSG_NOTICE(
  236. [Trying to force-enable ARMv6 media instructions...])
  237. AS_ASM_ARM_MEDIA_FORCE([OPUS_ARM_MAY_HAVE_MEDIA=1])
  238. ])
  239. AS_IF([test x"$OPUS_ARM_MAY_HAVE_NEON" != x"1"],[
  240. AC_MSG_NOTICE(
  241. [Trying to force-enable NEON instructions...])
  242. AS_ASM_ARM_NEON_FORCE([OPUS_ARM_MAY_HAVE_NEON=1])
  243. ])
  244. ])
  245. rtcd_support=
  246. AS_IF([test x"$OPUS_ARM_MAY_HAVE_EDSP" = x"1"],[
  247. AC_DEFINE(OPUS_ARM_MAY_HAVE_EDSP, 1,
  248. [Define if assembler supports EDSP instructions])
  249. AS_IF([test x"$OPUS_ARM_PRESUME_EDSP" = x"1"],[
  250. AC_DEFINE(OPUS_ARM_PRESUME_EDSP, 1,
  251. [Define if binary requires EDSP instruction support])
  252. asm_optimization="$asm_optimization (EDSP)"
  253. ],
  254. [rtcd_support="$rtcd_support (EDSP)"]
  255. )
  256. ])
  257. AC_SUBST(OPUS_ARM_MAY_HAVE_EDSP)
  258. AS_IF([test x"$OPUS_ARM_MAY_HAVE_MEDIA" = x"1"],[
  259. AC_DEFINE(OPUS_ARM_MAY_HAVE_MEDIA, 1,
  260. [Define if assembler supports ARMv6 media instructions])
  261. AS_IF([test x"$OPUS_ARM_PRESUME_MEDIA" = x"1"],[
  262. AC_DEFINE(OPUS_ARM_PRESUME_MEDIA, 1,
  263. [Define if binary requires ARMv6 media instruction support])
  264. asm_optimization="$asm_optimization (Media)"
  265. ],
  266. [rtcd_support="$rtcd_support (Media)"]
  267. )
  268. ])
  269. AC_SUBST(OPUS_ARM_MAY_HAVE_MEDIA)
  270. AS_IF([test x"$OPUS_ARM_MAY_HAVE_NEON" = x"1"],[
  271. AC_DEFINE(OPUS_ARM_MAY_HAVE_NEON, 1,
  272. [Define if compiler supports NEON instructions])
  273. AS_IF([test x"$OPUS_ARM_PRESUME_NEON" = x"1"], [
  274. AC_DEFINE(OPUS_ARM_PRESUME_NEON, 1,
  275. [Define if binary requires NEON instruction support])
  276. asm_optimization="$asm_optimization (NEON)"
  277. ],
  278. [rtcd_support="$rtcd_support (NEON)"]
  279. )
  280. ])
  281. AC_SUBST(OPUS_ARM_MAY_HAVE_NEON)
  282. dnl Make sure turning on RTCD gets us at least one
  283. dnl instruction set.
  284. AS_IF([test x"$rtcd_support" != x""],
  285. [rtcd_support=ARM"$rtcd_support"],
  286. [rtcd_support="no"]
  287. )
  288. AC_MSG_CHECKING([for apple style tools])
  289. AC_PREPROC_IFELSE([AC_LANG_PROGRAM([
  290. #ifndef __APPLE__
  291. #error 1
  292. #endif],[])],
  293. [AC_MSG_RESULT([yes]); ARM2GNU_PARAMS="--apple"],
  294. [AC_MSG_RESULT([no]); ARM2GNU_PARAMS=""])
  295. AC_SUBST(ARM2GNU_PARAMS)
  296. ],
  297. [
  298. AC_MSG_WARN(
  299. [*** ARM assembly requires perl -- disabling optimizations])
  300. asm_optimization="(missing perl dependency for ARM)"
  301. ])
  302. ])
  303. ;;
  304. esac
  305. ],[
  306. inline_optimization="disabled"
  307. asm_optimization="disabled"
  308. ])
  309. AM_CONDITIONAL([OPUS_ARM_INLINE_ASM],
  310. [test x"${inline_optimization%% *}" = x"ARM"])
  311. AM_CONDITIONAL([OPUS_ARM_EXTERNAL_ASM],
  312. [test x"${asm_optimization%% *}" = x"ARM"])
  313. AM_CONDITIONAL([HAVE_SSE], [false])
  314. AM_CONDITIONAL([HAVE_SSE2], [false])
  315. AM_CONDITIONAL([HAVE_SSE4_1], [false])
  316. AM_CONDITIONAL([HAVE_AVX], [false])
  317. m4_define([DEFAULT_X86_SSE_CFLAGS], [-msse])
  318. m4_define([DEFAULT_X86_SSE2_CFLAGS], [-msse2])
  319. m4_define([DEFAULT_X86_SSE4_1_CFLAGS], [-msse4.1])
  320. m4_define([DEFAULT_X86_AVX_CFLAGS], [-mavx])
  321. m4_define([DEFAULT_ARM_NEON_INTR_CFLAGS], [-mfpu=neon])
  322. # With GCC on ARM32 softfp architectures (e.g. Android, or older Ubuntu) you need to specify
  323. # -mfloat-abi=softfp for -mfpu=neon to work. However, on ARM32 hardfp architectures (e.g. newer Ubuntu),
  324. # this option will break things.
  325. # As a heuristic, if host matches arm*eabi* but not arm*hf*, it's probably soft-float.
  326. m4_define([DEFAULT_ARM_NEON_SOFTFP_INTR_CFLAGS], [-mfpu=neon -mfloat-abi=softfp])
  327. AS_CASE([$host],
  328. [arm*hf*], [AS_VAR_SET([RESOLVED_DEFAULT_ARM_NEON_INTR_CFLAGS], "DEFAULT_ARM_NEON_INTR_CFLAGS")],
  329. [arm*eabi*], [AS_VAR_SET([RESOLVED_DEFAULT_ARM_NEON_INTR_CFLAGS], "DEFAULT_ARM_NEON_SOFTFP_INTR_CFLAGS")],
  330. [AS_VAR_SET([RESOLVED_DEFAULT_ARM_NEON_INTR_CFLAGS], "DEFAULT_ARM_NEON_INTR_CFLAGS")])
  331. AC_ARG_VAR([X86_SSE_CFLAGS], [C compiler flags to compile SSE intrinsics @<:@default=]DEFAULT_X86_SSE_CFLAGS[@:>@])
  332. AC_ARG_VAR([X86_SSE2_CFLAGS], [C compiler flags to compile SSE2 intrinsics @<:@default=]DEFAULT_X86_SSE2_CFLAGS[@:>@])
  333. AC_ARG_VAR([X86_SSE4_1_CFLAGS], [C compiler flags to compile SSE4.1 intrinsics @<:@default=]DEFAULT_X86_SSE4_1_CFLAGS[@:>@])
  334. AC_ARG_VAR([X86_AVX_CFLAGS], [C compiler flags to compile AVX intrinsics @<:@default=]DEFAULT_X86_AVX_CFLAGS[@:>@])
  335. AC_ARG_VAR([ARM_NEON_INTR_CFLAGS], [C compiler flags to compile ARM NEON intrinsics @<:@default=]DEFAULT_ARM_NEON_INTR_CFLAGS / DEFAULT_ARM_NEON_SOFTFP_INTR_CFLAGS[@:>@])
  336. AS_VAR_SET_IF([X86_SSE_CFLAGS], [], [AS_VAR_SET([X86_SSE_CFLAGS], "DEFAULT_X86_SSE_CFLAGS")])
  337. AS_VAR_SET_IF([X86_SSE2_CFLAGS], [], [AS_VAR_SET([X86_SSE2_CFLAGS], "DEFAULT_X86_SSE2_CFLAGS")])
  338. AS_VAR_SET_IF([X86_SSE4_1_CFLAGS], [], [AS_VAR_SET([X86_SSE4_1_CFLAGS], "DEFAULT_X86_SSE4_1_CFLAGS")])
  339. AS_VAR_SET_IF([X86_AVX_CFLAGS], [], [AS_VAR_SET([X86_AVX_CFLAGS], "DEFAULT_X86_AVX_CFLAGS")])
  340. AS_VAR_SET_IF([ARM_NEON_INTR_CFLAGS], [], [AS_VAR_SET([ARM_NEON_INTR_CFLAGS], ["$RESOLVED_DEFAULT_ARM_NEON_INTR_CFLAGS"])])
  341. AC_DEFUN([OPUS_PATH_NE10],
  342. [
  343. AC_ARG_WITH(NE10,
  344. AC_HELP_STRING([--with-NE10=PFX],[Prefix where libNE10 is installed (optional)]),
  345. NE10_prefix="$withval", NE10_prefix="")
  346. AC_ARG_WITH(NE10-libraries,
  347. AC_HELP_STRING([--with-NE10-libraries=DIR],
  348. [Directory where libNE10 library is installed (optional)]),
  349. NE10_libraries="$withval", NE10_libraries="")
  350. AC_ARG_WITH(NE10-includes,
  351. AC_HELP_STRING([--with-NE10-includes=DIR],
  352. [Directory where libNE10 header files are installed (optional)]),
  353. NE10_includes="$withval", NE10_includes="")
  354. if test "x$NE10_libraries" != "x" ; then
  355. NE10_LIBS="-L$NE10_libraries"
  356. elif test "x$NE10_prefix" = "xno" || test "x$NE10_prefix" = "xyes" ; then
  357. NE10_LIBS=""
  358. elif test "x$NE10_prefix" != "x" ; then
  359. NE10_LIBS="-L$NE10_prefix/lib"
  360. elif test "x$prefix" != "xNONE" ; then
  361. NE10_LIBS="-L$prefix/lib"
  362. fi
  363. if test "x$NE10_prefix" != "xno" ; then
  364. NE10_LIBS="$NE10_LIBS -lNE10"
  365. fi
  366. if test "x$NE10_includes" != "x" ; then
  367. NE10_CFLAGS="-I$NE10_includes"
  368. elif test "x$NE10_prefix" = "xno" || test "x$NE10_prefix" = "xyes" ; then
  369. NE10_CFLAGS=""
  370. elif test "x$ogg_prefix" != "x" ; then
  371. NE10_CFLAGS="-I$NE10_prefix/include"
  372. elif test "x$prefix" != "xNONE"; then
  373. NE10_CFLAGS="-I$prefix/include"
  374. fi
  375. AC_MSG_CHECKING(for NE10)
  376. save_CFLAGS="$CFLAGS"; CFLAGS="$NE10_CFLAGS"
  377. save_LIBS="$LIBS"; LIBS="$NE10_LIBS $LIBM"
  378. AC_LINK_IFELSE(
  379. [
  380. AC_LANG_PROGRAM(
  381. [[#include <NE10_init.h>
  382. ]],
  383. [[
  384. ne10_fft_cfg_float32_t cfg;
  385. cfg = ne10_fft_alloc_c2c_float32_neon(480);
  386. ]]
  387. )
  388. ],[
  389. HAVE_ARM_NE10=1
  390. AC_MSG_RESULT([yes])
  391. ],[
  392. HAVE_ARM_NE10=0
  393. AC_MSG_RESULT([no])
  394. NE10_CFLAGS=""
  395. NE10_LIBS=""
  396. ]
  397. )
  398. CFLAGS="$save_CFLAGS"; LIBS="$save_LIBS"
  399. #Now we know if libNE10 is installed or not
  400. AS_IF([test x"$HAVE_ARM_NE10" = x"1"],
  401. [
  402. AC_DEFINE([HAVE_ARM_NE10], 1, [NE10 library is installed on host. Make sure it is on target!])
  403. AC_SUBST(HAVE_ARM_NE10)
  404. AC_SUBST(NE10_CFLAGS)
  405. AC_SUBST(NE10_LIBS)
  406. ]
  407. )
  408. ]
  409. )
  410. AS_IF([test x"$enable_intrinsics" = x"yes"],[
  411. intrinsics_support=""
  412. AS_CASE([$host_cpu],
  413. [arm*|aarch64*],
  414. [
  415. cpu_arm=yes
  416. OPUS_CHECK_INTRINSICS(
  417. [ARM Neon],
  418. [$ARM_NEON_INTR_CFLAGS],
  419. [OPUS_ARM_MAY_HAVE_NEON_INTR],
  420. [OPUS_ARM_PRESUME_NEON_INTR],
  421. [[#include <arm_neon.h>
  422. ]],
  423. [[
  424. static float32x4_t A0, A1, SUMM;
  425. SUMM = vmlaq_f32(SUMM, A0, A1);
  426. return (int)vgetq_lane_f32(SUMM, 0);
  427. ]]
  428. )
  429. AS_IF([test x"$OPUS_ARM_MAY_HAVE_NEON_INTR" = x"1" && test x"$OPUS_ARM_PRESUME_NEON_INTR" != x"1"],
  430. [
  431. OPUS_ARM_NEON_INTR_CFLAGS="$ARM_NEON_INTR_CFLAGS"
  432. AC_SUBST([OPUS_ARM_NEON_INTR_CFLAGS])
  433. ]
  434. )
  435. AS_IF([test x"$OPUS_ARM_MAY_HAVE_NEON_INTR" = x"1"],
  436. [
  437. AC_DEFINE([OPUS_ARM_MAY_HAVE_NEON_INTR], 1, [Compiler supports ARMv7/Aarch64 Neon Intrinsics])
  438. intrinsics_support="$intrinsics_support (NEON)"
  439. AS_IF([test x"$enable_rtcd" != x"no" && test x"$OPUS_ARM_PRESUME_NEON_INTR" != x"1"],
  440. [AS_IF([test x"$rtcd_support" = x"no"],
  441. [rtcd_support="ARM (NEON Intrinsics)"],
  442. [rtcd_support="$rtcd_support (NEON Intrinsics)"])])
  443. AS_IF([test x"$OPUS_ARM_PRESUME_NEON_INTR" = x"1"],
  444. [AC_DEFINE([OPUS_ARM_PRESUME_NEON_INTR], 1, [Define if binary requires NEON intrinsics support])])
  445. OPUS_PATH_NE10()
  446. AS_IF([test x"$NE10_LIBS" != x""],
  447. [
  448. intrinsics_support="$intrinsics_support (NE10)"
  449. AS_IF([test x"enable_rtcd" != x"" \
  450. && test x"$OPUS_ARM_PRESUME_NEON_INTR" != x"1"],
  451. [rtcd_support="$rtcd_support (NE10)"])
  452. ])
  453. OPUS_CHECK_INTRINSICS(
  454. [Aarch64 Neon],
  455. [$ARM_NEON_INTR_CFLAGS],
  456. [OPUS_ARM_MAY_HAVE_AARCH64_NEON_INTR],
  457. [OPUS_ARM_PRESUME_AARCH64_NEON_INTR],
  458. [[#include <arm_neon.h>
  459. ]],
  460. [[
  461. static int32_t IN;
  462. static int16_t OUT;
  463. OUT = vqmovns_s32(IN);
  464. ]]
  465. )
  466. AS_IF([test x"$OPUS_ARM_PRESUME_AARCH64_NEON_INTR" = x"1"],
  467. [
  468. AC_DEFINE([OPUS_ARM_PRESUME_AARCH64_NEON_INTR], 1, [Define if binary requires Aarch64 Neon Intrinsics])
  469. intrinsics_support="$intrinsics_support (NEON [Aarch64])"
  470. ])
  471. AS_IF([test x"$intrinsics_support" = x""],
  472. [intrinsics_support=no],
  473. [intrinsics_support="ARM$intrinsics_support"])
  474. ],
  475. [
  476. AC_MSG_WARN([Compiler does not support ARM intrinsics])
  477. intrinsics_support=no
  478. ])
  479. ],
  480. [i?86|x86_64],
  481. [
  482. OPUS_CHECK_INTRINSICS(
  483. [SSE],
  484. [$X86_SSE_CFLAGS],
  485. [OPUS_X86_MAY_HAVE_SSE],
  486. [OPUS_X86_PRESUME_SSE],
  487. [[#include <xmmintrin.h>
  488. #include <time.h>
  489. ]],
  490. [[
  491. __m128 mtest;
  492. mtest = _mm_set1_ps((float)time(NULL));
  493. mtest = _mm_mul_ps(mtest, mtest);
  494. return _mm_cvtss_si32(mtest);
  495. ]]
  496. )
  497. AS_IF([test x"$OPUS_X86_MAY_HAVE_SSE" = x"1" && test x"$OPUS_X86_PRESUME_SSE" != x"1"],
  498. [
  499. OPUS_X86_SSE_CFLAGS="$X86_SSE_CFLAGS"
  500. AC_SUBST([OPUS_X86_SSE_CFLAGS])
  501. ]
  502. )
  503. OPUS_CHECK_INTRINSICS(
  504. [SSE2],
  505. [$X86_SSE2_CFLAGS],
  506. [OPUS_X86_MAY_HAVE_SSE2],
  507. [OPUS_X86_PRESUME_SSE2],
  508. [[#include <emmintrin.h>
  509. #include <time.h>
  510. ]],
  511. [[
  512. __m128i mtest;
  513. mtest = _mm_set1_epi32((int)time(NULL));
  514. mtest = _mm_mul_epu32(mtest, mtest);
  515. return _mm_cvtsi128_si32(mtest);
  516. ]]
  517. )
  518. AS_IF([test x"$OPUS_X86_MAY_HAVE_SSE2" = x"1" && test x"$OPUS_X86_PRESUME_SSE2" != x"1"],
  519. [
  520. OPUS_X86_SSE2_CFLAGS="$X86_SSE2_CFLAGS"
  521. AC_SUBST([OPUS_X86_SSE2_CFLAGS])
  522. ]
  523. )
  524. OPUS_CHECK_INTRINSICS(
  525. [SSE4.1],
  526. [$X86_SSE4_1_CFLAGS],
  527. [OPUS_X86_MAY_HAVE_SSE4_1],
  528. [OPUS_X86_PRESUME_SSE4_1],
  529. [[#include <smmintrin.h>
  530. #include <time.h>
  531. ]],
  532. [[
  533. __m128i mtest;
  534. mtest = _mm_set1_epi32((int)time(NULL));
  535. mtest = _mm_mul_epi32(mtest, mtest);
  536. return _mm_cvtsi128_si32(mtest);
  537. ]]
  538. )
  539. AS_IF([test x"$OPUS_X86_MAY_HAVE_SSE4_1" = x"1" && test x"$OPUS_X86_PRESUME_SSE4_1" != x"1"],
  540. [
  541. OPUS_X86_SSE4_1_CFLAGS="$X86_SSE4_1_CFLAGS"
  542. AC_SUBST([OPUS_X86_SSE4_1_CFLAGS])
  543. ]
  544. )
  545. OPUS_CHECK_INTRINSICS(
  546. [AVX],
  547. [$X86_AVX_CFLAGS],
  548. [OPUS_X86_MAY_HAVE_AVX],
  549. [OPUS_X86_PRESUME_AVX],
  550. [[#include <immintrin.h>
  551. #include <time.h>
  552. ]],
  553. [[
  554. __m256 mtest;
  555. mtest = _mm256_set1_ps((float)time(NULL));
  556. mtest = _mm256_addsub_ps(mtest, mtest);
  557. return _mm_cvtss_si32(_mm256_extractf128_ps(mtest, 0));
  558. ]]
  559. )
  560. AS_IF([test x"$OPUS_X86_MAY_HAVE_AVX" = x"1" && test x"$OPUS_X86_PRESUME_AVX" != x"1"],
  561. [
  562. OPUS_X86_AVX_CFLAGS="$X86_AVX_CFLAGS"
  563. AC_SUBST([OPUS_X86_AVX_CFLAGS])
  564. ]
  565. )
  566. AS_IF([test x"$rtcd_support" = x"no"], [rtcd_support=""])
  567. AS_IF([test x"$OPUS_X86_MAY_HAVE_SSE" = x"1"],
  568. [
  569. AC_DEFINE([OPUS_X86_MAY_HAVE_SSE], 1, [Compiler supports X86 SSE Intrinsics])
  570. intrinsics_support="$intrinsics_support SSE"
  571. AS_IF([test x"$OPUS_X86_PRESUME_SSE" = x"1"],
  572. [AC_DEFINE([OPUS_X86_PRESUME_SSE], 1, [Define if binary requires SSE intrinsics support])],
  573. [rtcd_support="$rtcd_support SSE"])
  574. ],
  575. [
  576. AC_MSG_WARN([Compiler does not support SSE intrinsics])
  577. ])
  578. AS_IF([test x"$OPUS_X86_MAY_HAVE_SSE2" = x"1"],
  579. [
  580. AC_DEFINE([OPUS_X86_MAY_HAVE_SSE2], 1, [Compiler supports X86 SSE2 Intrinsics])
  581. intrinsics_support="$intrinsics_support SSE2"
  582. AS_IF([test x"$OPUS_X86_PRESUME_SSE2" = x"1"],
  583. [AC_DEFINE([OPUS_X86_PRESUME_SSE2], 1, [Define if binary requires SSE2 intrinsics support])],
  584. [rtcd_support="$rtcd_support SSE2"])
  585. ],
  586. [
  587. AC_MSG_WARN([Compiler does not support SSE2 intrinsics])
  588. ])
  589. AS_IF([test x"$OPUS_X86_MAY_HAVE_SSE4_1" = x"1"],
  590. [
  591. AC_DEFINE([OPUS_X86_MAY_HAVE_SSE4_1], 1, [Compiler supports X86 SSE4.1 Intrinsics])
  592. intrinsics_support="$intrinsics_support SSE4.1"
  593. AS_IF([test x"$OPUS_X86_PRESUME_SSE4_1" = x"1"],
  594. [AC_DEFINE([OPUS_X86_PRESUME_SSE4_1], 1, [Define if binary requires SSE4.1 intrinsics support])],
  595. [rtcd_support="$rtcd_support SSE4.1"])
  596. ],
  597. [
  598. AC_MSG_WARN([Compiler does not support SSE4.1 intrinsics])
  599. ])
  600. AS_IF([test x"$OPUS_X86_MAY_HAVE_AVX" = x"1"],
  601. [
  602. AC_DEFINE([OPUS_X86_MAY_HAVE_AVX], 1, [Compiler supports X86 AVX Intrinsics])
  603. intrinsics_support="$intrinsics_support AVX"
  604. AS_IF([test x"$OPUS_X86_PRESUME_AVX" = x"1"],
  605. [AC_DEFINE([OPUS_X86_PRESUME_AVX], 1, [Define if binary requires AVX intrinsics support])],
  606. [rtcd_support="$rtcd_support AVX"])
  607. ],
  608. [
  609. AC_MSG_WARN([Compiler does not support AVX intrinsics])
  610. ])
  611. AS_IF([test x"$intrinsics_support" = x""],
  612. [intrinsics_support=no],
  613. [intrinsics_support="x86$intrinsics_support"]
  614. )
  615. AS_IF([test x"$rtcd_support" = x""],
  616. [rtcd_support=no],
  617. [rtcd_support="x86$rtcd_support"],
  618. )
  619. AS_IF([test x"$enable_rtcd" = x"yes" && test x"$rtcd_support" != x""],[
  620. get_cpuid_by_asm="no"
  621. AC_MSG_CHECKING([How to get X86 CPU Info])
  622. AC_LINK_IFELSE([AC_LANG_PROGRAM([[
  623. #include <stdio.h>
  624. ]],[[
  625. unsigned int CPUInfo0;
  626. unsigned int CPUInfo1;
  627. unsigned int CPUInfo2;
  628. unsigned int CPUInfo3;
  629. unsigned int InfoType;
  630. __asm__ __volatile__ (
  631. "cpuid":
  632. "=a" (CPUInfo0),
  633. "=b" (CPUInfo1),
  634. "=c" (CPUInfo2),
  635. "=d" (CPUInfo3) :
  636. "a" (InfoType), "c" (0)
  637. );
  638. ]])],
  639. [get_cpuid_by_asm="yes"
  640. AC_MSG_RESULT([Inline Assembly])
  641. AC_DEFINE([CPU_INFO_BY_ASM], [1], [Get CPU Info by asm method])],
  642. [AC_LINK_IFELSE([AC_LANG_PROGRAM([[
  643. #include <cpuid.h>
  644. ]],[[
  645. unsigned int CPUInfo0;
  646. unsigned int CPUInfo1;
  647. unsigned int CPUInfo2;
  648. unsigned int CPUInfo3;
  649. unsigned int InfoType;
  650. __get_cpuid(InfoType, &CPUInfo0, &CPUInfo1, &CPUInfo2, &CPUInfo3);
  651. ]])],
  652. [AC_MSG_RESULT([C method])
  653. AC_DEFINE([CPU_INFO_BY_C], [1], [Get CPU Info by c method])],
  654. [AC_MSG_ERROR([no supported Get CPU Info method, please disable intrinsics])])])])
  655. ],
  656. [
  657. AC_MSG_WARN([No intrinsics support for your architecture])
  658. intrinsics_support="no"
  659. ])
  660. ],
  661. [
  662. intrinsics_support="no"
  663. ])
  664. AM_CONDITIONAL([CPU_ARM], [test "$cpu_arm" = "yes"])
  665. AM_CONDITIONAL([HAVE_ARM_NEON_INTR],
  666. [test x"$OPUS_ARM_MAY_HAVE_NEON_INTR" = x"1"])
  667. AM_CONDITIONAL([HAVE_ARM_NE10],
  668. [test x"$HAVE_ARM_NE10" = x"1"])
  669. AM_CONDITIONAL([HAVE_SSE],
  670. [test x"$OPUS_X86_MAY_HAVE_SSE" = x"1"])
  671. AM_CONDITIONAL([HAVE_SSE2],
  672. [test x"$OPUS_X86_MAY_HAVE_SSE2" = x"1"])
  673. AM_CONDITIONAL([HAVE_SSE4_1],
  674. [test x"$OPUS_X86_MAY_HAVE_SSE4_1" = x"1"])
  675. AM_CONDITIONAL([HAVE_AVX],
  676. [test x"$OPUS_X86_MAY_HAVE_AVX" = x"1"])
  677. AS_IF([test x"$enable_rtcd" = x"yes"],[
  678. AS_IF([test x"$rtcd_support" != x"no"],[
  679. AC_DEFINE([OPUS_HAVE_RTCD], [1],
  680. [Use run-time CPU capabilities detection])
  681. OPUS_HAVE_RTCD=1
  682. AC_SUBST(OPUS_HAVE_RTCD)
  683. ])
  684. ],[
  685. rtcd_support="disabled"
  686. ])
  687. AC_ARG_ENABLE([assertions],
  688. [AS_HELP_STRING([--enable-assertions],[enable additional software error checking])],,
  689. [enable_assertions=no])
  690. AS_IF([test "$enable_assertions" = "yes"], [
  691. AC_DEFINE([ENABLE_ASSERTIONS], [1], [Assertions])
  692. ])
  693. AC_ARG_ENABLE([fuzzing],
  694. [AS_HELP_STRING([--enable-fuzzing],[causes the encoder to make random decisions])],,
  695. [enable_fuzzing=no])
  696. AS_IF([test "$enable_fuzzing" = "yes"], [
  697. AC_DEFINE([FUZZING], [1], [Fuzzing])
  698. ])
  699. AC_ARG_ENABLE([ambisonics],
  700. [AS_HELP_STRING([--enable-ambisonics],[enable experimental ambisonic encoding and decoding support])],,
  701. [enable_ambisonics=no])
  702. AS_IF([test "$enable_ambisonics" = "yes"], [
  703. AC_DEFINE([ENABLE_EXPERIMENTAL_AMBISONICS], [1], [Ambisonics Support])
  704. ])
  705. AC_ARG_ENABLE([doc],
  706. [AS_HELP_STRING([--disable-doc], [Do not build API documentation])],,
  707. [enable_doc=yes])
  708. AS_IF([test "$enable_doc" = "yes"], [
  709. AC_CHECK_PROG(HAVE_DOXYGEN, [doxygen], [yes], [no])
  710. ],[
  711. HAVE_DOXYGEN=no
  712. ])
  713. AM_CONDITIONAL([HAVE_DOXYGEN], [test "$HAVE_DOXYGEN" = "yes"])
  714. AC_ARG_ENABLE([extra-programs],
  715. [AS_HELP_STRING([--disable-extra-programs], [Do not build extra programs (demo and tests)])],,
  716. [enable_extra_programs=yes])
  717. AM_CONDITIONAL([EXTRA_PROGRAMS], [test "$enable_extra_programs" = "yes"])
  718. AC_ARG_ENABLE([update-draft],
  719. AS_HELP_STRING([--enable-update-draft], [Enable bitstream changes from draft-ietf-codec-opus-update]),,
  720. [enable_update_draft=no])
  721. AS_IF([test "$enable_update_draft" = "yes"], [
  722. AC_DEFINE([ENABLE_UPDATE_DRAFT], [1], [Enable bitstream changes from draft-ietf-codec-opus-update])
  723. ])
  724. saved_CFLAGS="$CFLAGS"
  725. CFLAGS="$CFLAGS -fvisibility=hidden"
  726. AC_MSG_CHECKING([if ${CC} supports -fvisibility=hidden])
  727. AC_COMPILE_IFELSE([AC_LANG_SOURCE([[char foo;]])],
  728. [ AC_MSG_RESULT([yes]) ],
  729. [ AC_MSG_RESULT([no])
  730. CFLAGS="$saved_CFLAGS"
  731. ])
  732. CFLAGS="$CFLAGS -W"
  733. warn_CFLAGS="-Wall -Wextra -Wcast-align -Wnested-externs -Wshadow -Wstrict-prototypes"
  734. saved_CFLAGS="$CFLAGS"
  735. CFLAGS="$CFLAGS $warn_CFLAGS"
  736. AC_MSG_CHECKING([if ${CC} supports ${warn_CFLAGS}])
  737. AC_COMPILE_IFELSE([AC_LANG_SOURCE([[char foo;]])],
  738. [ AC_MSG_RESULT([yes]) ],
  739. [ AC_MSG_RESULT([no])
  740. CFLAGS="$saved_CFLAGS"
  741. ])
  742. saved_LIBS="$LIBS"
  743. LIBS="$LIBS $LIBM"
  744. AC_CHECK_FUNCS([lrintf])
  745. AC_CHECK_FUNCS([lrint])
  746. LIBS="$saved_LIBS"
  747. AC_CHECK_FUNCS([__malloc_hook])
  748. AC_SUBST([PC_BUILD])
  749. AC_CONFIG_FILES([
  750. Makefile
  751. opus.pc
  752. opus-uninstalled.pc
  753. celt/arm/armopts.s
  754. doc/Makefile
  755. doc/Doxyfile
  756. ])
  757. AC_CONFIG_HEADERS([config.h])
  758. AC_OUTPUT
  759. AC_MSG_NOTICE([
  760. ------------------------------------------------------------------------
  761. $PACKAGE_NAME $PACKAGE_VERSION: Automatic configuration OK.
  762. Compiler support:
  763. C99 var arrays: ................ ${has_var_arrays}
  764. C99 lrintf: .................... ${ac_cv_func_lrintf}
  765. Use alloca: .................... ${use_alloca}
  766. General configuration:
  767. Floating point support: ........ ${enable_float}
  768. Fast float approximations: ..... ${enable_float_approx}
  769. Fixed point debugging: ......... ${enable_fixed_point_debug}
  770. Inline Assembly Optimizations: . ${inline_optimization}
  771. External Assembly Optimizations: ${asm_optimization}
  772. Intrinsics Optimizations.......: ${intrinsics_support}
  773. Run-time CPU detection: ........ ${rtcd_support}
  774. Custom modes: .................. ${enable_custom_modes}
  775. Assertion checking: ............ ${enable_assertions}
  776. Fuzzing: ....................... ${enable_fuzzing}
  777. Ambisonics support: .............${enable_ambisonics}
  778. API documentation: ............. ${enable_doc}
  779. Extra programs: ................ ${enable_extra_programs}
  780. ------------------------------------------------------------------------
  781. Type "make; make install" to compile and install
  782. Type "make check" to run the test suite
  783. ])