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  1. ;******************************************************************************
  2. ;* x86 optimized channel mixing
  3. ;* Copyright (c) 2012 Justin Ruggles <justin.ruggles@gmail.com>
  4. ;*
  5. ;* This file is part of Libav.
  6. ;*
  7. ;* Libav is free software; you can redistribute it and/or
  8. ;* modify it under the terms of the GNU Lesser General Public
  9. ;* License as published by the Free Software Foundation; either
  10. ;* version 2.1 of the License, or (at your option) any later version.
  11. ;*
  12. ;* Libav is distributed in the hope that it will be useful,
  13. ;* but WITHOUT ANY WARRANTY; without even the implied warranty of
  14. ;* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
  15. ;* Lesser General Public License for more details.
  16. ;*
  17. ;* You should have received a copy of the GNU Lesser General Public
  18. ;* License along with Libav; if not, write to the Free Software
  19. ;* Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
  20. ;******************************************************************************
  21. %include "libavutil/x86/x86util.asm"
  22. %include "util.asm"
  23. SECTION .text
  24. ;-----------------------------------------------------------------------------
  25. ; void ff_mix_2_to_1_fltp_flt(float **src, float **matrix, int len,
  26. ; int out_ch, int in_ch);
  27. ;-----------------------------------------------------------------------------
  28. %macro MIX_2_TO_1_FLTP_FLT 0
  29. cglobal mix_2_to_1_fltp_flt, 3,4,6, src, matrix, len, src1
  30. mov src1q, [srcq+gprsize]
  31. mov srcq, [srcq ]
  32. sub src1q, srcq
  33. mov matrixq, [matrixq ]
  34. VBROADCASTSS m4, [matrixq ]
  35. VBROADCASTSS m5, [matrixq+4]
  36. ALIGN 16
  37. .loop:
  38. mulps m0, m4, [srcq ]
  39. mulps m1, m5, [srcq+src1q ]
  40. mulps m2, m4, [srcq+ mmsize]
  41. mulps m3, m5, [srcq+src1q+mmsize]
  42. addps m0, m0, m1
  43. addps m2, m2, m3
  44. mova [srcq ], m0
  45. mova [srcq+mmsize], m2
  46. add srcq, mmsize*2
  47. sub lend, mmsize*2/4
  48. jg .loop
  49. REP_RET
  50. %endmacro
  51. INIT_XMM sse
  52. MIX_2_TO_1_FLTP_FLT
  53. INIT_YMM avx
  54. MIX_2_TO_1_FLTP_FLT
  55. ;-----------------------------------------------------------------------------
  56. ; void ff_mix_2_to_1_s16p_flt(int16_t **src, float **matrix, int len,
  57. ; int out_ch, int in_ch);
  58. ;-----------------------------------------------------------------------------
  59. %macro MIX_2_TO_1_S16P_FLT 0
  60. cglobal mix_2_to_1_s16p_flt, 3,4,6, src, matrix, len, src1
  61. mov src1q, [srcq+gprsize]
  62. mov srcq, [srcq]
  63. sub src1q, srcq
  64. mov matrixq, [matrixq ]
  65. VBROADCASTSS m4, [matrixq ]
  66. VBROADCASTSS m5, [matrixq+4]
  67. ALIGN 16
  68. .loop:
  69. mova m0, [srcq ]
  70. mova m2, [srcq+src1q]
  71. S16_TO_S32_SX 0, 1
  72. S16_TO_S32_SX 2, 3
  73. cvtdq2ps m0, m0
  74. cvtdq2ps m1, m1
  75. cvtdq2ps m2, m2
  76. cvtdq2ps m3, m3
  77. mulps m0, m4
  78. mulps m1, m4
  79. mulps m2, m5
  80. mulps m3, m5
  81. addps m0, m2
  82. addps m1, m3
  83. cvtps2dq m0, m0
  84. cvtps2dq m1, m1
  85. packssdw m0, m1
  86. mova [srcq], m0
  87. add srcq, mmsize
  88. sub lend, mmsize/2
  89. jg .loop
  90. REP_RET
  91. %endmacro
  92. INIT_XMM sse2
  93. MIX_2_TO_1_S16P_FLT
  94. INIT_XMM sse4
  95. MIX_2_TO_1_S16P_FLT
  96. ;-----------------------------------------------------------------------------
  97. ; void ff_mix_2_to_1_s16p_q8(int16_t **src, int16_t **matrix, int len,
  98. ; int out_ch, int in_ch);
  99. ;-----------------------------------------------------------------------------
  100. INIT_XMM sse2
  101. cglobal mix_2_to_1_s16p_q8, 3,4,6, src, matrix, len, src1
  102. mov src1q, [srcq+gprsize]
  103. mov srcq, [srcq]
  104. sub src1q, srcq
  105. mov matrixq, [matrixq]
  106. movd m4, [matrixq]
  107. movd m5, [matrixq]
  108. SPLATW m4, m4, 0
  109. SPLATW m5, m5, 1
  110. pxor m0, m0
  111. punpcklwd m4, m0
  112. punpcklwd m5, m0
  113. ALIGN 16
  114. .loop:
  115. mova m0, [srcq ]
  116. mova m2, [srcq+src1q]
  117. punpckhwd m1, m0, m0
  118. punpcklwd m0, m0
  119. punpckhwd m3, m2, m2
  120. punpcklwd m2, m2
  121. pmaddwd m0, m4
  122. pmaddwd m1, m4
  123. pmaddwd m2, m5
  124. pmaddwd m3, m5
  125. paddd m0, m2
  126. paddd m1, m3
  127. psrad m0, 8
  128. psrad m1, 8
  129. packssdw m0, m1
  130. mova [srcq], m0
  131. add srcq, mmsize
  132. sub lend, mmsize/2
  133. jg .loop
  134. REP_RET
  135. ;-----------------------------------------------------------------------------
  136. ; void ff_mix_1_to_2_fltp_flt(float **src, float **matrix, int len,
  137. ; int out_ch, int in_ch);
  138. ;-----------------------------------------------------------------------------
  139. %macro MIX_1_TO_2_FLTP_FLT 0
  140. cglobal mix_1_to_2_fltp_flt, 3,5,4, src0, matrix0, len, src1, matrix1
  141. mov src1q, [src0q+gprsize]
  142. mov src0q, [src0q]
  143. sub src1q, src0q
  144. mov matrix1q, [matrix0q+gprsize]
  145. mov matrix0q, [matrix0q]
  146. VBROADCASTSS m2, [matrix0q]
  147. VBROADCASTSS m3, [matrix1q]
  148. ALIGN 16
  149. .loop:
  150. mova m0, [src0q]
  151. mulps m1, m0, m3
  152. mulps m0, m0, m2
  153. mova [src0q ], m0
  154. mova [src0q+src1q], m1
  155. add src0q, mmsize
  156. sub lend, mmsize/4
  157. jg .loop
  158. REP_RET
  159. %endmacro
  160. INIT_XMM sse
  161. MIX_1_TO_2_FLTP_FLT
  162. INIT_YMM avx
  163. MIX_1_TO_2_FLTP_FLT
  164. ;-----------------------------------------------------------------------------
  165. ; void ff_mix_1_to_2_s16p_flt(int16_t **src, float **matrix, int len,
  166. ; int out_ch, int in_ch);
  167. ;-----------------------------------------------------------------------------
  168. %macro MIX_1_TO_2_S16P_FLT 0
  169. cglobal mix_1_to_2_s16p_flt, 3,5,6, src0, matrix0, len, src1, matrix1
  170. mov src1q, [src0q+gprsize]
  171. mov src0q, [src0q]
  172. sub src1q, src0q
  173. mov matrix1q, [matrix0q+gprsize]
  174. mov matrix0q, [matrix0q]
  175. VBROADCASTSS m4, [matrix0q]
  176. VBROADCASTSS m5, [matrix1q]
  177. ALIGN 16
  178. .loop:
  179. mova m0, [src0q]
  180. S16_TO_S32_SX 0, 2
  181. cvtdq2ps m0, m0
  182. cvtdq2ps m2, m2
  183. mulps m1, m0, m5
  184. mulps m0, m0, m4
  185. mulps m3, m2, m5
  186. mulps m2, m2, m4
  187. cvtps2dq m0, m0
  188. cvtps2dq m1, m1
  189. cvtps2dq m2, m2
  190. cvtps2dq m3, m3
  191. packssdw m0, m2
  192. packssdw m1, m3
  193. mova [src0q ], m0
  194. mova [src0q+src1q], m1
  195. add src0q, mmsize
  196. sub lend, mmsize/2
  197. jg .loop
  198. REP_RET
  199. %endmacro
  200. INIT_XMM sse2
  201. MIX_1_TO_2_S16P_FLT
  202. INIT_XMM sse4
  203. MIX_1_TO_2_S16P_FLT
  204. INIT_XMM avx
  205. MIX_1_TO_2_S16P_FLT
  206. ;-----------------------------------------------------------------------------
  207. ; void ff_mix_3_8_to_1_2_fltp/s16p_flt(float/int16_t **src, float **matrix,
  208. ; int len, int out_ch, int in_ch);
  209. ;-----------------------------------------------------------------------------
  210. %macro MIX_3_8_TO_1_2_FLT 3 ; %1 = in channels, %2 = out channels, %3 = s16p or fltp
  211. ; define some names to make the code clearer
  212. %assign in_channels %1
  213. %assign out_channels %2
  214. %assign stereo out_channels - 1
  215. %ifidn %3, s16p
  216. %assign is_s16 1
  217. %else
  218. %assign is_s16 0
  219. %endif
  220. ; determine how many matrix elements must go on the stack vs. mmregs
  221. %assign matrix_elements in_channels * out_channels
  222. %if is_s16
  223. %if stereo
  224. %assign needed_mmregs 7
  225. %else
  226. %assign needed_mmregs 5
  227. %endif
  228. %else
  229. %if stereo
  230. %assign needed_mmregs 4
  231. %else
  232. %assign needed_mmregs 3
  233. %endif
  234. %endif
  235. %assign matrix_elements_mm num_mmregs - needed_mmregs
  236. %if matrix_elements < matrix_elements_mm
  237. %assign matrix_elements_mm matrix_elements
  238. %endif
  239. %if matrix_elements_mm < matrix_elements
  240. %assign matrix_elements_stack matrix_elements - matrix_elements_mm
  241. %else
  242. %assign matrix_elements_stack 0
  243. %endif
  244. %assign matrix_stack_size matrix_elements_stack * mmsize
  245. %assign needed_stack_size -1 * matrix_stack_size
  246. %if ARCH_X86_32 && in_channels >= 7
  247. %assign needed_stack_size needed_stack_size - 16
  248. %endif
  249. cglobal mix_%1_to_%2_%3_flt, 3,in_channels+2,needed_mmregs+matrix_elements_mm, needed_stack_size, src0, src1, len, src2, src3, src4, src5, src6, src7
  250. ; define src pointers on stack if needed
  251. %if matrix_elements_stack > 0 && ARCH_X86_32 && in_channels >= 7
  252. %define src5m [rsp+matrix_stack_size+0]
  253. %define src6m [rsp+matrix_stack_size+4]
  254. %define src7m [rsp+matrix_stack_size+8]
  255. %endif
  256. ; load matrix pointers
  257. %define matrix0q r1q
  258. %define matrix1q r3q
  259. %if stereo
  260. mov matrix1q, [matrix0q+gprsize]
  261. %endif
  262. mov matrix0q, [matrix0q]
  263. ; define matrix coeff names
  264. %assign %%i 0
  265. %assign %%j needed_mmregs
  266. %rep in_channels
  267. %if %%i >= matrix_elements_mm
  268. CAT_XDEFINE mx_stack_0_, %%i, 1
  269. CAT_XDEFINE mx_0_, %%i, [rsp+(%%i-matrix_elements_mm)*mmsize]
  270. %else
  271. CAT_XDEFINE mx_stack_0_, %%i, 0
  272. CAT_XDEFINE mx_0_, %%i, m %+ %%j
  273. %assign %%j %%j+1
  274. %endif
  275. %assign %%i %%i+1
  276. %endrep
  277. %if stereo
  278. %assign %%i 0
  279. %rep in_channels
  280. %if in_channels + %%i >= matrix_elements_mm
  281. CAT_XDEFINE mx_stack_1_, %%i, 1
  282. CAT_XDEFINE mx_1_, %%i, [rsp+(in_channels+%%i-matrix_elements_mm)*mmsize]
  283. %else
  284. CAT_XDEFINE mx_stack_1_, %%i, 0
  285. CAT_XDEFINE mx_1_, %%i, m %+ %%j
  286. %assign %%j %%j+1
  287. %endif
  288. %assign %%i %%i+1
  289. %endrep
  290. %endif
  291. ; load/splat matrix coeffs
  292. %assign %%i 0
  293. %rep in_channels
  294. %if mx_stack_0_ %+ %%i
  295. VBROADCASTSS m0, [matrix0q+4*%%i]
  296. mova mx_0_ %+ %%i, m0
  297. %else
  298. VBROADCASTSS mx_0_ %+ %%i, [matrix0q+4*%%i]
  299. %endif
  300. %if stereo
  301. %if mx_stack_1_ %+ %%i
  302. VBROADCASTSS m0, [matrix1q+4*%%i]
  303. mova mx_1_ %+ %%i, m0
  304. %else
  305. VBROADCASTSS mx_1_ %+ %%i, [matrix1q+4*%%i]
  306. %endif
  307. %endif
  308. %assign %%i %%i+1
  309. %endrep
  310. ; load channel pointers to registers as offsets from the first channel pointer
  311. %if ARCH_X86_64
  312. movsxd lenq, r2d
  313. %endif
  314. shl lenq, 2-is_s16
  315. %assign %%i 1
  316. %rep (in_channels - 1)
  317. %if ARCH_X86_32 && in_channels >= 7 && %%i >= 5
  318. mov src5q, [src0q+%%i*gprsize]
  319. add src5q, lenq
  320. mov src %+ %%i %+ m, src5q
  321. %else
  322. mov src %+ %%i %+ q, [src0q+%%i*gprsize]
  323. add src %+ %%i %+ q, lenq
  324. %endif
  325. %assign %%i %%i+1
  326. %endrep
  327. mov src0q, [src0q]
  328. add src0q, lenq
  329. neg lenq
  330. .loop:
  331. ; for x86-32 with 7-8 channels we do not have enough gp registers for all src
  332. ; pointers, so we have to load some of them from the stack each time
  333. %define copy_src_from_stack ARCH_X86_32 && in_channels >= 7 && %%i >= 5
  334. %if is_s16
  335. ; mix with s16p input
  336. mova m0, [src0q+lenq]
  337. S16_TO_S32_SX 0, 1
  338. cvtdq2ps m0, m0
  339. cvtdq2ps m1, m1
  340. %if stereo
  341. mulps m2, m0, mx_1_0
  342. mulps m3, m1, mx_1_0
  343. %endif
  344. mulps m0, m0, mx_0_0
  345. mulps m1, m1, mx_0_0
  346. %assign %%i 1
  347. %rep (in_channels - 1)
  348. %if copy_src_from_stack
  349. %define src_ptr src5q
  350. %else
  351. %define src_ptr src %+ %%i %+ q
  352. %endif
  353. %if stereo
  354. %if copy_src_from_stack
  355. mov src_ptr, src %+ %%i %+ m
  356. %endif
  357. mova m4, [src_ptr+lenq]
  358. S16_TO_S32_SX 4, 5
  359. cvtdq2ps m4, m4
  360. cvtdq2ps m5, m5
  361. FMULADD_PS m2, m4, mx_1_ %+ %%i, m2, m6
  362. FMULADD_PS m3, m5, mx_1_ %+ %%i, m3, m6
  363. FMULADD_PS m0, m4, mx_0_ %+ %%i, m0, m4
  364. FMULADD_PS m1, m5, mx_0_ %+ %%i, m1, m5
  365. %else
  366. %if copy_src_from_stack
  367. mov src_ptr, src %+ %%i %+ m
  368. %endif
  369. mova m2, [src_ptr+lenq]
  370. S16_TO_S32_SX 2, 3
  371. cvtdq2ps m2, m2
  372. cvtdq2ps m3, m3
  373. FMULADD_PS m0, m2, mx_0_ %+ %%i, m0, m4
  374. FMULADD_PS m1, m3, mx_0_ %+ %%i, m1, m4
  375. %endif
  376. %assign %%i %%i+1
  377. %endrep
  378. %if stereo
  379. cvtps2dq m2, m2
  380. cvtps2dq m3, m3
  381. packssdw m2, m3
  382. mova [src1q+lenq], m2
  383. %endif
  384. cvtps2dq m0, m0
  385. cvtps2dq m1, m1
  386. packssdw m0, m1
  387. mova [src0q+lenq], m0
  388. %else
  389. ; mix with fltp input
  390. %if stereo || mx_stack_0_0
  391. mova m0, [src0q+lenq]
  392. %endif
  393. %if stereo
  394. mulps m1, m0, mx_1_0
  395. %endif
  396. %if stereo || mx_stack_0_0
  397. mulps m0, m0, mx_0_0
  398. %else
  399. mulps m0, mx_0_0, [src0q+lenq]
  400. %endif
  401. %assign %%i 1
  402. %rep (in_channels - 1)
  403. %if copy_src_from_stack
  404. %define src_ptr src5q
  405. mov src_ptr, src %+ %%i %+ m
  406. %else
  407. %define src_ptr src %+ %%i %+ q
  408. %endif
  409. ; avoid extra load for mono if matrix is in a mm register
  410. %if stereo || mx_stack_0_ %+ %%i
  411. mova m2, [src_ptr+lenq]
  412. %endif
  413. %if stereo
  414. FMULADD_PS m1, m2, mx_1_ %+ %%i, m1, m3
  415. %endif
  416. %if stereo || mx_stack_0_ %+ %%i
  417. FMULADD_PS m0, m2, mx_0_ %+ %%i, m0, m2
  418. %else
  419. FMULADD_PS m0, mx_0_ %+ %%i, [src_ptr+lenq], m0, m1
  420. %endif
  421. %assign %%i %%i+1
  422. %endrep
  423. mova [src0q+lenq], m0
  424. %if stereo
  425. mova [src1q+lenq], m1
  426. %endif
  427. %endif
  428. add lenq, mmsize
  429. jl .loop
  430. ; zero ymm high halves
  431. %if mmsize == 32
  432. vzeroupper
  433. %endif
  434. RET
  435. %endmacro
  436. %macro MIX_3_8_TO_1_2_FLT_FUNCS 0
  437. %assign %%i 3
  438. %rep 6
  439. INIT_XMM sse
  440. MIX_3_8_TO_1_2_FLT %%i, 1, fltp
  441. MIX_3_8_TO_1_2_FLT %%i, 2, fltp
  442. INIT_XMM sse2
  443. MIX_3_8_TO_1_2_FLT %%i, 1, s16p
  444. MIX_3_8_TO_1_2_FLT %%i, 2, s16p
  445. INIT_XMM sse4
  446. MIX_3_8_TO_1_2_FLT %%i, 1, s16p
  447. MIX_3_8_TO_1_2_FLT %%i, 2, s16p
  448. ; do not use ymm AVX or FMA4 in x86-32 for 6 or more channels due to stack alignment issues
  449. %if ARCH_X86_64 || %%i < 6
  450. INIT_YMM avx
  451. %else
  452. INIT_XMM avx
  453. %endif
  454. MIX_3_8_TO_1_2_FLT %%i, 1, fltp
  455. MIX_3_8_TO_1_2_FLT %%i, 2, fltp
  456. INIT_XMM avx
  457. MIX_3_8_TO_1_2_FLT %%i, 1, s16p
  458. MIX_3_8_TO_1_2_FLT %%i, 2, s16p
  459. %if HAVE_FMA4_EXTERNAL
  460. %if ARCH_X86_64 || %%i < 6
  461. INIT_YMM fma4
  462. %else
  463. INIT_XMM fma4
  464. %endif
  465. MIX_3_8_TO_1_2_FLT %%i, 1, fltp
  466. MIX_3_8_TO_1_2_FLT %%i, 2, fltp
  467. INIT_XMM fma4
  468. MIX_3_8_TO_1_2_FLT %%i, 1, s16p
  469. MIX_3_8_TO_1_2_FLT %%i, 2, s16p
  470. %endif
  471. %assign %%i %%i+1
  472. %endrep
  473. %endmacro
  474. MIX_3_8_TO_1_2_FLT_FUNCS