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  1. ;*****************************************************************************
  2. ;* MMX/SSE2/AVX-optimized 10-bit H.264 iDCT code
  3. ;*****************************************************************************
  4. ;* Copyright (C) 2005-2011 x264 project
  5. ;*
  6. ;* Authors: Daniel Kang <daniel.d.kang@gmail.com>
  7. ;*
  8. ;* This file is part of Libav.
  9. ;*
  10. ;* Libav is free software; you can redistribute it and/or
  11. ;* modify it under the terms of the GNU Lesser General Public
  12. ;* License as published by the Free Software Foundation; either
  13. ;* version 2.1 of the License, or (at your option) any later version.
  14. ;*
  15. ;* Libav is distributed in the hope that it will be useful,
  16. ;* but WITHOUT ANY WARRANTY; without even the implied warranty of
  17. ;* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
  18. ;* Lesser General Public License for more details.
  19. ;*
  20. ;* You should have received a copy of the GNU Lesser General Public
  21. ;* License along with Libav; if not, write to the Free Software
  22. ;* Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
  23. ;******************************************************************************
  24. %include "x86inc.asm"
  25. %include "x86util.asm"
  26. SECTION_RODATA
  27. pw_pixel_max: times 8 dw ((1 << 10)-1)
  28. pd_32: times 4 dd 32
  29. scan8_mem: db 4+ 1*8, 5+ 1*8, 4+ 2*8, 5+ 2*8
  30. db 6+ 1*8, 7+ 1*8, 6+ 2*8, 7+ 2*8
  31. db 4+ 3*8, 5+ 3*8, 4+ 4*8, 5+ 4*8
  32. db 6+ 3*8, 7+ 3*8, 6+ 4*8, 7+ 4*8
  33. db 4+ 6*8, 5+ 6*8, 4+ 7*8, 5+ 7*8
  34. db 6+ 6*8, 7+ 6*8, 6+ 7*8, 7+ 7*8
  35. db 4+ 8*8, 5+ 8*8, 4+ 9*8, 5+ 9*8
  36. db 6+ 8*8, 7+ 8*8, 6+ 9*8, 7+ 9*8
  37. db 4+11*8, 5+11*8, 4+12*8, 5+12*8
  38. db 6+11*8, 7+11*8, 6+12*8, 7+12*8
  39. db 4+13*8, 5+13*8, 4+14*8, 5+14*8
  40. db 6+13*8, 7+13*8, 6+14*8, 7+14*8
  41. %ifdef PIC
  42. %define scan8 r11
  43. %else
  44. %define scan8 scan8_mem
  45. %endif
  46. SECTION .text
  47. ;-----------------------------------------------------------------------------
  48. ; void h264_idct_add(pixel *dst, dctcoef *block, int stride)
  49. ;-----------------------------------------------------------------------------
  50. %macro STORE_DIFFx2 6
  51. psrad %1, 6
  52. psrad %2, 6
  53. packssdw %1, %2
  54. movq %3, [%5]
  55. movhps %3, [%5+%6]
  56. paddsw %1, %3
  57. CLIPW %1, %4, [pw_pixel_max]
  58. movq [%5], %1
  59. movhps [%5+%6], %1
  60. %endmacro
  61. %macro STORE_DIFF16 5
  62. psrad %1, 6
  63. psrad %2, 6
  64. packssdw %1, %2
  65. paddsw %1, [%5]
  66. CLIPW %1, %3, %4
  67. mova [%5], %1
  68. %endmacro
  69. ;dst, in, stride
  70. %macro IDCT4_ADD_10 3
  71. mova m0, [%2+ 0]
  72. mova m1, [%2+16]
  73. mova m2, [%2+32]
  74. mova m3, [%2+48]
  75. IDCT4_1D d,0,1,2,3,4,5
  76. TRANSPOSE4x4D 0,1,2,3,4
  77. paddd m0, [pd_32]
  78. IDCT4_1D d,0,1,2,3,4,5
  79. pxor m5, m5
  80. STORE_DIFFx2 m0, m1, m4, m5, %1, %3
  81. lea %1, [%1+%3*2]
  82. STORE_DIFFx2 m2, m3, m4, m5, %1, %3
  83. %endmacro
  84. %macro IDCT_ADD_10 1
  85. cglobal h264_idct_add_10_%1, 3,3
  86. IDCT4_ADD_10 r0, r1, r2
  87. RET
  88. %endmacro
  89. INIT_XMM
  90. IDCT_ADD_10 sse2
  91. %ifdef HAVE_AVX
  92. INIT_AVX
  93. IDCT_ADD_10 avx
  94. %endif
  95. ;-----------------------------------------------------------------------------
  96. ; h264_idct_add16(pixel *dst, const int *block_offset, dctcoef *block, int stride, const uint8_t nnzc[6*8])
  97. ;-----------------------------------------------------------------------------
  98. ;;;;;;; NO FATE SAMPLES TRIGGER THIS
  99. %macro ADD4x4IDCT 1
  100. add4x4_idct_%1:
  101. add r5, r0
  102. mova m0, [r2+ 0]
  103. mova m1, [r2+16]
  104. mova m2, [r2+32]
  105. mova m3, [r2+48]
  106. IDCT4_1D d,0,1,2,3,4,5
  107. TRANSPOSE4x4D 0,1,2,3,4
  108. paddd m0, [pd_32]
  109. IDCT4_1D d,0,1,2,3,4,5
  110. pxor m5, m5
  111. STORE_DIFFx2 m0, m1, m4, m5, r5, r3
  112. lea r5, [r5+r3*2]
  113. STORE_DIFFx2 m2, m3, m4, m5, r5, r3
  114. ret
  115. %endmacro
  116. INIT_XMM
  117. ALIGN 16
  118. ADD4x4IDCT sse2
  119. %ifdef HAVE_AVX
  120. INIT_AVX
  121. ALIGN 16
  122. ADD4x4IDCT avx
  123. %endif
  124. %macro ADD16_OP 3
  125. cmp byte [r4+%3], 0
  126. jz .skipblock%2
  127. mov r5d, [r1+%2*4]
  128. call add4x4_idct_%1
  129. .skipblock%2:
  130. %if %2<15
  131. add r2, 64
  132. %endif
  133. %endmacro
  134. %macro IDCT_ADD16_10 1
  135. cglobal h264_idct_add16_10_%1, 5,6
  136. ADD16_OP %1, 0, 4+1*8
  137. ADD16_OP %1, 1, 5+1*8
  138. ADD16_OP %1, 2, 4+2*8
  139. ADD16_OP %1, 3, 5+2*8
  140. ADD16_OP %1, 4, 6+1*8
  141. ADD16_OP %1, 5, 7+1*8
  142. ADD16_OP %1, 6, 6+2*8
  143. ADD16_OP %1, 7, 7+2*8
  144. ADD16_OP %1, 8, 4+3*8
  145. ADD16_OP %1, 9, 5+3*8
  146. ADD16_OP %1, 10, 4+4*8
  147. ADD16_OP %1, 11, 5+4*8
  148. ADD16_OP %1, 12, 6+3*8
  149. ADD16_OP %1, 13, 7+3*8
  150. ADD16_OP %1, 14, 6+4*8
  151. ADD16_OP %1, 15, 7+4*8
  152. REP_RET
  153. %endmacro
  154. INIT_XMM
  155. IDCT_ADD16_10 sse2
  156. %ifdef HAVE_AVX
  157. INIT_AVX
  158. IDCT_ADD16_10 avx
  159. %endif
  160. ;-----------------------------------------------------------------------------
  161. ; void h264_idct_dc_add(pixel *dst, dctcoef *block, int stride)
  162. ;-----------------------------------------------------------------------------
  163. %macro IDCT_DC_ADD_OP_10 3
  164. pxor m5, m5
  165. %if avx_enabled
  166. paddw m1, m0, [%1+0 ]
  167. paddw m2, m0, [%1+%2 ]
  168. paddw m3, m0, [%1+%2*2]
  169. paddw m4, m0, [%1+%3 ]
  170. %else
  171. mova m1, [%1+0 ]
  172. mova m2, [%1+%2 ]
  173. mova m3, [%1+%2*2]
  174. mova m4, [%1+%3 ]
  175. paddw m1, m0
  176. paddw m2, m0
  177. paddw m3, m0
  178. paddw m4, m0
  179. %endif
  180. CLIPW m1, m5, m6
  181. CLIPW m2, m5, m6
  182. CLIPW m3, m5, m6
  183. CLIPW m4, m5, m6
  184. mova [%1+0 ], m1
  185. mova [%1+%2 ], m2
  186. mova [%1+%2*2], m3
  187. mova [%1+%3 ], m4
  188. %endmacro
  189. INIT_MMX
  190. cglobal h264_idct_dc_add_10_mmx2,3,3
  191. movd m0, [r1]
  192. paddd m0, [pd_32]
  193. psrad m0, 6
  194. lea r1, [r2*3]
  195. pshufw m0, m0, 0
  196. mova m6, [pw_pixel_max]
  197. IDCT_DC_ADD_OP_10 r0, r2, r1
  198. RET
  199. ;-----------------------------------------------------------------------------
  200. ; void h264_idct8_dc_add(pixel *dst, dctcoef *block, int stride)
  201. ;-----------------------------------------------------------------------------
  202. %macro IDCT8_DC_ADD 1
  203. cglobal h264_idct8_dc_add_10_%1,3,3,7
  204. mov r1d, [r1]
  205. add r1, 32
  206. sar r1, 6
  207. movd m0, r1d
  208. lea r1, [r2*3]
  209. SPLATW m0, m0, 0
  210. mova m6, [pw_pixel_max]
  211. IDCT_DC_ADD_OP_10 r0, r2, r1
  212. lea r0, [r0+r2*4]
  213. IDCT_DC_ADD_OP_10 r0, r2, r1
  214. RET
  215. %endmacro
  216. INIT_XMM
  217. IDCT8_DC_ADD sse2
  218. %ifdef HAVE_AVX
  219. INIT_AVX
  220. IDCT8_DC_ADD avx
  221. %endif
  222. ;-----------------------------------------------------------------------------
  223. ; h264_idct_add16intra(pixel *dst, const int *block_offset, dctcoef *block, int stride, const uint8_t nnzc[6*8])
  224. ;-----------------------------------------------------------------------------
  225. %macro AC 2
  226. .ac%2
  227. mov r5d, [r1+(%2+0)*4]
  228. call add4x4_idct_%1
  229. mov r5d, [r1+(%2+1)*4]
  230. add r2, 64
  231. call add4x4_idct_%1
  232. add r2, 64
  233. jmp .skipadd%2
  234. %endmacro
  235. %assign last_block 16
  236. %macro ADD16_OP_INTRA 3
  237. cmp word [r4+%3], 0
  238. jnz .ac%2
  239. mov r5d, [r2+ 0]
  240. or r5d, [r2+64]
  241. jz .skipblock%2
  242. mov r5d, [r1+(%2+0)*4]
  243. call idct_dc_add_%1
  244. .skipblock%2:
  245. %if %2<last_block-2
  246. add r2, 128
  247. %endif
  248. .skipadd%2:
  249. %endmacro
  250. %macro IDCT_ADD16INTRA_10 1
  251. idct_dc_add_%1:
  252. add r5, r0
  253. movq m0, [r2+ 0]
  254. movhps m0, [r2+64]
  255. paddd m0, [pd_32]
  256. psrad m0, 6
  257. pshufhw m0, m0, 0
  258. pshuflw m0, m0, 0
  259. lea r6, [r3*3]
  260. mova m6, [pw_pixel_max]
  261. IDCT_DC_ADD_OP_10 r5, r3, r6
  262. ret
  263. cglobal h264_idct_add16intra_10_%1,5,7,8
  264. ADD16_OP_INTRA %1, 0, 4+1*8
  265. ADD16_OP_INTRA %1, 2, 4+2*8
  266. ADD16_OP_INTRA %1, 4, 6+1*8
  267. ADD16_OP_INTRA %1, 6, 6+2*8
  268. ADD16_OP_INTRA %1, 8, 4+3*8
  269. ADD16_OP_INTRA %1, 10, 4+4*8
  270. ADD16_OP_INTRA %1, 12, 6+3*8
  271. ADD16_OP_INTRA %1, 14, 6+4*8
  272. REP_RET
  273. AC %1, 8
  274. AC %1, 10
  275. AC %1, 12
  276. AC %1, 14
  277. AC %1, 0
  278. AC %1, 2
  279. AC %1, 4
  280. AC %1, 6
  281. %endmacro
  282. INIT_XMM
  283. IDCT_ADD16INTRA_10 sse2
  284. %ifdef HAVE_AVX
  285. INIT_AVX
  286. IDCT_ADD16INTRA_10 avx
  287. %endif
  288. %assign last_block 36
  289. ;-----------------------------------------------------------------------------
  290. ; h264_idct_add8(pixel **dst, const int *block_offset, dctcoef *block, int stride, const uint8_t nnzc[6*8])
  291. ;-----------------------------------------------------------------------------
  292. %macro IDCT_ADD8 1
  293. cglobal h264_idct_add8_10_%1,5,7
  294. %ifdef ARCH_X86_64
  295. mov r10, r0
  296. %endif
  297. add r2, 1024
  298. mov r0, [r0]
  299. ADD16_OP_INTRA %1, 16, 4+ 6*8
  300. ADD16_OP_INTRA %1, 18, 4+ 7*8
  301. add r2, 1024-128*2
  302. %ifdef ARCH_X86_64
  303. mov r0, [r10+gprsize]
  304. %else
  305. mov r0, r0m
  306. mov r0, [r0+gprsize]
  307. %endif
  308. ADD16_OP_INTRA %1, 32, 4+11*8
  309. ADD16_OP_INTRA %1, 34, 4+12*8
  310. REP_RET
  311. AC %1, 16
  312. AC %1, 18
  313. AC %1, 32
  314. AC %1, 34
  315. %endmacro ; IDCT_ADD8
  316. INIT_XMM
  317. IDCT_ADD8 sse2
  318. %ifdef HAVE_AVX
  319. INIT_AVX
  320. IDCT_ADD8 avx
  321. %endif
  322. ;-----------------------------------------------------------------------------
  323. ; void h264_idct8_add(pixel *dst, dctcoef *block, int stride)
  324. ;-----------------------------------------------------------------------------
  325. %macro IDCT8_1D 2
  326. SWAP 0, 1
  327. psrad m4, m5, 1
  328. psrad m1, m0, 1
  329. paddd m4, m5
  330. paddd m1, m0
  331. paddd m4, m7
  332. paddd m1, m5
  333. psubd m4, m0
  334. paddd m1, m3
  335. psubd m0, m3
  336. psubd m5, m3
  337. paddd m0, m7
  338. psubd m5, m7
  339. psrad m3, 1
  340. psrad m7, 1
  341. psubd m0, m3
  342. psubd m5, m7
  343. SWAP 1, 7
  344. psrad m1, m7, 2
  345. psrad m3, m4, 2
  346. paddd m3, m0
  347. psrad m0, 2
  348. paddd m1, m5
  349. psrad m5, 2
  350. psubd m0, m4
  351. psubd m7, m5
  352. SWAP 5, 6
  353. psrad m4, m2, 1
  354. psrad m6, m5, 1
  355. psubd m4, m5
  356. paddd m6, m2
  357. mova m2, %1
  358. mova m5, %2
  359. SUMSUB_BA d, 5, 2
  360. SUMSUB_BA d, 6, 5
  361. SUMSUB_BA d, 4, 2
  362. SUMSUB_BA d, 7, 6
  363. SUMSUB_BA d, 0, 4
  364. SUMSUB_BA d, 3, 2
  365. SUMSUB_BA d, 1, 5
  366. SWAP 7, 6, 4, 5, 2, 3, 1, 0 ; 70315246 -> 01234567
  367. %endmacro
  368. %macro IDCT8_1D_FULL 1
  369. mova m7, [%1+112*2]
  370. mova m6, [%1+ 96*2]
  371. mova m5, [%1+ 80*2]
  372. mova m3, [%1+ 48*2]
  373. mova m2, [%1+ 32*2]
  374. mova m1, [%1+ 16*2]
  375. IDCT8_1D [%1], [%1+ 64*2]
  376. %endmacro
  377. ; %1=int16_t *block, %2=int16_t *dstblock
  378. %macro IDCT8_ADD_SSE_START 2
  379. IDCT8_1D_FULL %1
  380. %ifdef ARCH_X86_64
  381. TRANSPOSE4x4D 0,1,2,3,8
  382. mova [%2 ], m0
  383. TRANSPOSE4x4D 4,5,6,7,8
  384. mova [%2+8*2], m4
  385. %else
  386. mova [%1], m7
  387. TRANSPOSE4x4D 0,1,2,3,7
  388. mova m7, [%1]
  389. mova [%2 ], m0
  390. mova [%2+16*2], m1
  391. mova [%2+32*2], m2
  392. mova [%2+48*2], m3
  393. TRANSPOSE4x4D 4,5,6,7,3
  394. mova [%2+ 8*2], m4
  395. mova [%2+24*2], m5
  396. mova [%2+40*2], m6
  397. mova [%2+56*2], m7
  398. %endif
  399. %endmacro
  400. ; %1=uint8_t *dst, %2=int16_t *block, %3=int stride
  401. %macro IDCT8_ADD_SSE_END 3
  402. IDCT8_1D_FULL %2
  403. mova [%2 ], m6
  404. mova [%2+16*2], m7
  405. pxor m7, m7
  406. STORE_DIFFx2 m0, m1, m6, m7, %1, %3
  407. lea %1, [%1+%3*2]
  408. STORE_DIFFx2 m2, m3, m6, m7, %1, %3
  409. mova m0, [%2 ]
  410. mova m1, [%2+16*2]
  411. lea %1, [%1+%3*2]
  412. STORE_DIFFx2 m4, m5, m6, m7, %1, %3
  413. lea %1, [%1+%3*2]
  414. STORE_DIFFx2 m0, m1, m6, m7, %1, %3
  415. %endmacro
  416. %macro IDCT8_ADD 1
  417. cglobal h264_idct8_add_10_%1, 3,4,16
  418. %ifndef UNIX64
  419. %assign pad 16-gprsize-(stack_offset&15)
  420. sub rsp, pad
  421. call h264_idct8_add1_10_%1
  422. add rsp, pad
  423. RET
  424. %endif
  425. ALIGN 16
  426. ; TODO: does not need to use stack
  427. h264_idct8_add1_10_%1:
  428. %assign pad 256+16-gprsize
  429. sub rsp, pad
  430. add dword [r1], 32
  431. %ifdef ARCH_X86_64
  432. IDCT8_ADD_SSE_START r1, rsp
  433. SWAP 1, 9
  434. SWAP 2, 10
  435. SWAP 3, 11
  436. SWAP 5, 13
  437. SWAP 6, 14
  438. SWAP 7, 15
  439. IDCT8_ADD_SSE_START r1+16, rsp+128
  440. PERMUTE 1,9, 2,10, 3,11, 5,1, 6,2, 7,3, 9,13, 10,14, 11,15, 13,5, 14,6, 15,7
  441. IDCT8_1D [rsp], [rsp+128]
  442. SWAP 0, 8
  443. SWAP 1, 9
  444. SWAP 2, 10
  445. SWAP 3, 11
  446. SWAP 4, 12
  447. SWAP 5, 13
  448. SWAP 6, 14
  449. SWAP 7, 15
  450. IDCT8_1D [rsp+16], [rsp+144]
  451. psrad m8, 6
  452. psrad m0, 6
  453. packssdw m8, m0
  454. paddsw m8, [r0]
  455. pxor m0, m0
  456. CLIPW m8, m0, [pw_pixel_max]
  457. mova [r0], m8
  458. mova m8, [pw_pixel_max]
  459. STORE_DIFF16 m9, m1, m0, m8, r0+r2
  460. lea r0, [r0+r2*2]
  461. STORE_DIFF16 m10, m2, m0, m8, r0
  462. STORE_DIFF16 m11, m3, m0, m8, r0+r2
  463. lea r0, [r0+r2*2]
  464. STORE_DIFF16 m12, m4, m0, m8, r0
  465. STORE_DIFF16 m13, m5, m0, m8, r0+r2
  466. lea r0, [r0+r2*2]
  467. STORE_DIFF16 m14, m6, m0, m8, r0
  468. STORE_DIFF16 m15, m7, m0, m8, r0+r2
  469. %else
  470. IDCT8_ADD_SSE_START r1, rsp
  471. IDCT8_ADD_SSE_START r1+16, rsp+128
  472. lea r3, [r0+8]
  473. IDCT8_ADD_SSE_END r0, rsp, r2
  474. IDCT8_ADD_SSE_END r3, rsp+16, r2
  475. %endif ; ARCH_X86_64
  476. add rsp, pad
  477. ret
  478. %endmacro
  479. INIT_XMM
  480. IDCT8_ADD sse2
  481. %ifdef HAVE_AVX
  482. INIT_AVX
  483. IDCT8_ADD avx
  484. %endif
  485. ;-----------------------------------------------------------------------------
  486. ; h264_idct8_add4(pixel **dst, const int *block_offset, dctcoef *block, int stride, const uint8_t nnzc[6*8])
  487. ;-----------------------------------------------------------------------------
  488. ;;;;;;; NO FATE SAMPLES TRIGGER THIS
  489. %macro IDCT8_ADD4_OP 3
  490. cmp byte [r4+%3], 0
  491. jz .skipblock%2
  492. mov r0d, [r6+%2*4]
  493. add r0, r5
  494. call h264_idct8_add1_10_%1
  495. .skipblock%2:
  496. %if %2<12
  497. add r1, 256
  498. %endif
  499. %endmacro
  500. %macro IDCT8_ADD4 1
  501. cglobal h264_idct8_add4_10_%1, 0,7,16
  502. %assign pad 16-gprsize-(stack_offset&15)
  503. SUB rsp, pad
  504. mov r5, r0mp
  505. mov r6, r1mp
  506. mov r1, r2mp
  507. mov r2d, r3m
  508. movifnidn r4, r4mp
  509. IDCT8_ADD4_OP %1, 0, 4+1*8
  510. IDCT8_ADD4_OP %1, 4, 6+1*8
  511. IDCT8_ADD4_OP %1, 8, 4+3*8
  512. IDCT8_ADD4_OP %1, 12, 6+3*8
  513. ADD rsp, pad
  514. RET
  515. %endmacro ; IDCT8_ADD4
  516. INIT_XMM
  517. IDCT8_ADD4 sse2
  518. %ifdef HAVE_AVX
  519. INIT_AVX
  520. IDCT8_ADD4 avx
  521. %endif