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  1. /*
  2. * simple_idct_arm.S
  3. * Copyright (C) 2002 Frederic 'dilb' Boulay.
  4. *
  5. * Author: Frederic Boulay <dilb@handhelds.org>
  6. *
  7. * The function defined in this file is derived from the simple_idct function
  8. * from the libavcodec library part of the FFmpeg project.
  9. *
  10. * This file is part of FFmpeg.
  11. *
  12. * FFmpeg is free software; you can redistribute it and/or
  13. * modify it under the terms of the GNU Lesser General Public
  14. * License as published by the Free Software Foundation; either
  15. * version 2.1 of the License, or (at your option) any later version.
  16. *
  17. * FFmpeg is distributed in the hope that it will be useful,
  18. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  19. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
  20. * Lesser General Public License for more details.
  21. *
  22. * You should have received a copy of the GNU Lesser General Public
  23. * License along with FFmpeg; if not, write to the Free Software
  24. * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
  25. */
  26. /* useful constants for the algorithm, they are save in __constant_ptr__ at */
  27. /* the end of the source code.*/
  28. #define W1 22725
  29. #define W2 21407
  30. #define W3 19266
  31. #define W4 16383
  32. #define W5 12873
  33. #define W6 8867
  34. #define W7 4520
  35. #define MASK_MSHW 0xFFFF0000
  36. /* offsets of the constants in the vector */
  37. #define offW1 0
  38. #define offW2 4
  39. #define offW3 8
  40. #define offW4 12
  41. #define offW5 16
  42. #define offW6 20
  43. #define offW7 24
  44. #define offMASK_MSHW 28
  45. #define ROW_SHIFT 11
  46. #define ROW_SHIFT2MSHW (16-11)
  47. #define COL_SHIFT 20
  48. #define ROW_SHIFTED_1 1024 /* 1<< (ROW_SHIFT-1) */
  49. #define COL_SHIFTED_1 524288 /* 1<< (COL_SHIFT-1) */
  50. .text
  51. .align
  52. .global simple_idct_ARM
  53. simple_idct_ARM:
  54. @@ void simple_idct_ARM(int16_t *block)
  55. @@ save stack for reg needed (take all of them),
  56. @@ R0-R3 are scratch regs, so no need to save them, but R0 contains the pointer to block
  57. @@ so it must not be overwritten, if it is not saved!!
  58. @@ R12 is another scratch register, so it should not be saved too
  59. @@ save all registers
  60. stmfd sp!, {r4-r11, r14} @ R14 is also called LR
  61. @@ at this point, R0=block, other registers are free.
  62. add r14, r0, #112 @ R14=&block[8*7], better start from the last row, and decrease the value until row=0, i.e. R12=block.
  63. add r12, pc, #(__constant_ptr__-.-8) @ R12=__constant_ptr__, the vector containing the constants, probably not necessary to reserve a register for it
  64. @@ add 2 temporary variables in the stack: R0 and R14
  65. sub sp, sp, #8 @ allow 2 local variables
  66. str r0, [sp, #0] @ save block in sp[0]
  67. @@ stack status
  68. @@ sp+4 free
  69. @@ sp+0 R0 (block)
  70. @@ at this point, R0=block, R14=&block[56], R12=__const_ptr_, R1-R11 free
  71. __row_loop:
  72. @@ read the row and check if it is null, almost null, or not, according to strongarm specs, it is not necessary to optimize ldr accesses (i.e. split 32bits in 2 16bits words), at least it gives more usable registers :)
  73. ldr r1, [r14, #0] @ R1=(int32)(R12)[0]=ROWr32[0] (relative row cast to a 32b pointer)
  74. ldr r2, [r14, #4] @ R2=(int32)(R12)[1]=ROWr32[1]
  75. ldr r3, [r14, #8] @ R3=ROWr32[2]
  76. ldr r4, [r14, #12] @ R4=ROWr32[3]
  77. @@ check if the words are null, if all of them are null, then proceed with next row (branch __end_row_loop),
  78. @@ if ROWr16[0] is the only one not null, then proceed with this special case (branch __almost_empty_row)
  79. @@ else follow the complete algorithm.
  80. @@ at this point, R0=block, R14=&block[n], R12=__const_ptr_, R1=ROWr32[0], R2=ROWr32[1],
  81. @@ R3=ROWr32[2], R4=ROWr32[3], R5-R11 free
  82. orr r5, r4, r3 @ R5=R4 | R3
  83. orr r5, r5, r2 @ R5=R4 | R3 | R2
  84. orrs r6, r5, r1 @ Test R5 | R1 (the aim is to check if everything is null)
  85. beq __end_row_loop
  86. mov r7, r1, asr #16 @ R7=R1>>16=ROWr16[1] (evaluate it now, as it could be useful later)
  87. ldrsh r6, [r14, #0] @ R6=ROWr16[0]
  88. orrs r5, r5, r7 @ R5=R4 | R3 | R2 | R7
  89. beq __almost_empty_row
  90. __b_evaluation:
  91. @@ at this point, R0=block (temp), R1(free), R2=ROWr32[1], R3=ROWr32[2], R4=ROWr32[3],
  92. @@ R5=(temp), R6=ROWr16[0], R7=ROWr16[1], R8-R11 free,
  93. @@ R12=__const_ptr_, R14=&block[n]
  94. @@ to save some registers/calls, proceed with b0-b3 first, followed by a0-a3
  95. @@ MUL16(b0, W1, row[1]);
  96. @@ MUL16(b1, W3, row[1]);
  97. @@ MUL16(b2, W5, row[1]);
  98. @@ MUL16(b3, W7, row[1]);
  99. @@ MAC16(b0, W3, row[3]);
  100. @@ MAC16(b1, -W7, row[3]);
  101. @@ MAC16(b2, -W1, row[3]);
  102. @@ MAC16(b3, -W5, row[3]);
  103. ldr r8, [r12, #offW1] @ R8=W1
  104. mov r2, r2, asr #16 @ R2=ROWr16[3]
  105. mul r0, r8, r7 @ R0=W1*ROWr16[1]=b0 (ROWr16[1] must be the second arg, to have the possibility to save 1 cycle)
  106. ldr r9, [r12, #offW3] @ R9=W3
  107. ldr r10, [r12, #offW5] @ R10=W5
  108. mul r1, r9, r7 @ R1=W3*ROWr16[1]=b1 (ROWr16[1] must be the second arg, to have the possibility to save 1 cycle)
  109. ldr r11, [r12, #offW7] @ R11=W7
  110. mul r5, r10, r7 @ R5=W5*ROWr16[1]=b2 (ROWr16[1] must be the second arg, to have the possibility to save 1 cycle)
  111. mul r7, r11, r7 @ R7=W7*ROWr16[1]=b3 (ROWr16[1] must be the second arg, to have the possibility to save 1 cycle)
  112. teq r2, #0 @ if null avoid muls
  113. mlane r0, r9, r2, r0 @ R0+=W3*ROWr16[3]=b0 (ROWr16[3] must be the second arg, to have the possibility to save 1 cycle)
  114. rsbne r2, r2, #0 @ R2=-ROWr16[3]
  115. mlane r1, r11, r2, r1 @ R1-=W7*ROWr16[3]=b1 (ROWr16[3] must be the second arg, to have the possibility to save 1 cycle)
  116. mlane r5, r8, r2, r5 @ R5-=W1*ROWr16[3]=b2 (ROWr16[3] must be the second arg, to have the possibility to save 1 cycle)
  117. mlane r7, r10, r2, r7 @ R7-=W5*ROWr16[3]=b3 (ROWr16[3] must be the second arg, to have the possibility to save 1 cycle)
  118. @@ at this point, R0=b0, R1=b1, R2 (free), R3=ROWr32[2], R4=ROWr32[3],
  119. @@ R5=b2, R6=ROWr16[0], R7=b3, R8=W1, R9=W3, R10=W5, R11=W7,
  120. @@ R12=__const_ptr_, R14=&block[n]
  121. @@ temp = ((uint32_t*)row)[2] | ((uint32_t*)row)[3];
  122. @@ if (temp != 0) {}
  123. orrs r2, r3, r4 @ R2=ROWr32[2] | ROWr32[3]
  124. beq __end_b_evaluation
  125. @@ at this point, R0=b0, R1=b1, R2 (free), R3=ROWr32[2], R4=ROWr32[3],
  126. @@ R5=b2, R6=ROWr16[0], R7=b3, R8=W1, R9=W3, R10=W5, R11=W7,
  127. @@ R12=__const_ptr_, R14=&block[n]
  128. @@ MAC16(b0, W5, row[5]);
  129. @@ MAC16(b2, W7, row[5]);
  130. @@ MAC16(b3, W3, row[5]);
  131. @@ MAC16(b1, -W1, row[5]);
  132. @@ MAC16(b0, W7, row[7]);
  133. @@ MAC16(b2, W3, row[7]);
  134. @@ MAC16(b3, -W1, row[7]);
  135. @@ MAC16(b1, -W5, row[7]);
  136. mov r3, r3, asr #16 @ R3=ROWr16[5]
  137. teq r3, #0 @ if null avoid muls
  138. mlane r0, r10, r3, r0 @ R0+=W5*ROWr16[5]=b0
  139. mov r4, r4, asr #16 @ R4=ROWr16[7]
  140. mlane r5, r11, r3, r5 @ R5+=W7*ROWr16[5]=b2
  141. mlane r7, r9, r3, r7 @ R7+=W3*ROWr16[5]=b3
  142. rsbne r3, r3, #0 @ R3=-ROWr16[5]
  143. mlane r1, r8, r3, r1 @ R7-=W1*ROWr16[5]=b1
  144. @@ R3 is free now
  145. teq r4, #0 @ if null avoid muls
  146. mlane r0, r11, r4, r0 @ R0+=W7*ROWr16[7]=b0
  147. mlane r5, r9, r4, r5 @ R5+=W3*ROWr16[7]=b2
  148. rsbne r4, r4, #0 @ R4=-ROWr16[7]
  149. mlane r7, r8, r4, r7 @ R7-=W1*ROWr16[7]=b3
  150. mlane r1, r10, r4, r1 @ R1-=W5*ROWr16[7]=b1
  151. @@ R4 is free now
  152. __end_b_evaluation:
  153. @@ at this point, R0=b0, R1=b1, R2=ROWr32[2] | ROWr32[3] (tmp), R3 (free), R4 (free),
  154. @@ R5=b2, R6=ROWr16[0], R7=b3, R8 (free), R9 (free), R10 (free), R11 (free),
  155. @@ R12=__const_ptr_, R14=&block[n]
  156. __a_evaluation:
  157. @@ a0 = (W4 * row[0]) + (1 << (ROW_SHIFT - 1));
  158. @@ a1 = a0 + W6 * row[2];
  159. @@ a2 = a0 - W6 * row[2];
  160. @@ a3 = a0 - W2 * row[2];
  161. @@ a0 = a0 + W2 * row[2];
  162. ldr r9, [r12, #offW4] @ R9=W4
  163. mul r6, r9, r6 @ R6=W4*ROWr16[0]
  164. ldr r10, [r12, #offW6] @ R10=W6
  165. ldrsh r4, [r14, #4] @ R4=ROWr16[2] (a3 not defined yet)
  166. add r6, r6, #ROW_SHIFTED_1 @ R6=W4*ROWr16[0] + 1<<(ROW_SHIFT-1) (a0)
  167. mul r11, r10, r4 @ R11=W6*ROWr16[2]
  168. ldr r8, [r12, #offW2] @ R8=W2
  169. sub r3, r6, r11 @ R3=a0-W6*ROWr16[2] (a2)
  170. @@ temp = ((uint32_t*)row)[2] | ((uint32_t*)row)[3];
  171. @@ if (temp != 0) {}
  172. teq r2, #0
  173. beq __end_bef_a_evaluation
  174. add r2, r6, r11 @ R2=a0+W6*ROWr16[2] (a1)
  175. mul r11, r8, r4 @ R11=W2*ROWr16[2]
  176. sub r4, r6, r11 @ R4=a0-W2*ROWr16[2] (a3)
  177. add r6, r6, r11 @ R6=a0+W2*ROWr16[2] (a0)
  178. @@ at this point, R0=b0, R1=b1, R2=a1, R3=a2, R4=a3,
  179. @@ R5=b2, R6=a0, R7=b3, R8=W2, R9=W4, R10=W6, R11 (free),
  180. @@ R12=__const_ptr_, R14=&block[n]
  181. @@ a0 += W4*row[4]
  182. @@ a1 -= W4*row[4]
  183. @@ a2 -= W4*row[4]
  184. @@ a3 += W4*row[4]
  185. ldrsh r11, [r14, #8] @ R11=ROWr16[4]
  186. teq r11, #0 @ if null avoid muls
  187. mulne r11, r9, r11 @ R11=W4*ROWr16[4]
  188. @@ R9 is free now
  189. ldrsh r9, [r14, #12] @ R9=ROWr16[6]
  190. addne r6, r6, r11 @ R6+=W4*ROWr16[4] (a0)
  191. subne r2, r2, r11 @ R2-=W4*ROWr16[4] (a1)
  192. subne r3, r3, r11 @ R3-=W4*ROWr16[4] (a2)
  193. addne r4, r4, r11 @ R4+=W4*ROWr16[4] (a3)
  194. @@ W6 alone is no more useful, save W2*ROWr16[6] in it instead
  195. teq r9, #0 @ if null avoid muls
  196. mulne r11, r10, r9 @ R11=W6*ROWr16[6]
  197. addne r6, r6, r11 @ R6+=W6*ROWr16[6] (a0)
  198. mulne r10, r8, r9 @ R10=W2*ROWr16[6]
  199. @@ a0 += W6*row[6];
  200. @@ a3 -= W6*row[6];
  201. @@ a1 -= W2*row[6];
  202. @@ a2 += W2*row[6];
  203. subne r4, r4, r11 @ R4-=W6*ROWr16[6] (a3)
  204. subne r2, r2, r10 @ R2-=W2*ROWr16[6] (a1)
  205. addne r3, r3, r10 @ R3+=W2*ROWr16[6] (a2)
  206. __end_a_evaluation:
  207. @@ at this point, R0=b0, R1=b1, R2=a1, R3=a2, R4=a3,
  208. @@ R5=b2, R6=a0, R7=b3, R8 (free), R9 (free), R10 (free), R11 (free),
  209. @@ R12=__const_ptr_, R14=&block[n]
  210. @@ row[0] = (a0 + b0) >> ROW_SHIFT;
  211. @@ row[1] = (a1 + b1) >> ROW_SHIFT;
  212. @@ row[2] = (a2 + b2) >> ROW_SHIFT;
  213. @@ row[3] = (a3 + b3) >> ROW_SHIFT;
  214. @@ row[4] = (a3 - b3) >> ROW_SHIFT;
  215. @@ row[5] = (a2 - b2) >> ROW_SHIFT;
  216. @@ row[6] = (a1 - b1) >> ROW_SHIFT;
  217. @@ row[7] = (a0 - b0) >> ROW_SHIFT;
  218. add r8, r6, r0 @ R8=a0+b0
  219. add r9, r2, r1 @ R9=a1+b1
  220. @@ put 2 16 bits half-words in a 32bits word
  221. @@ ROWr32[0]=ROWr16[0] | (ROWr16[1]<<16) (only Little Endian compliant then!!!)
  222. ldr r10, [r12, #offMASK_MSHW] @ R10=0xFFFF0000
  223. and r9, r10, r9, lsl #ROW_SHIFT2MSHW @ R9=0xFFFF0000 & ((a1+b1)<<5)
  224. mvn r11, r10 @ R11= NOT R10= 0x0000FFFF
  225. and r8, r11, r8, asr #ROW_SHIFT @ R8=0x0000FFFF & ((a0+b0)>>11)
  226. orr r8, r8, r9
  227. str r8, [r14, #0]
  228. add r8, r3, r5 @ R8=a2+b2
  229. add r9, r4, r7 @ R9=a3+b3
  230. and r9, r10, r9, lsl #ROW_SHIFT2MSHW @ R9=0xFFFF0000 & ((a3+b3)<<5)
  231. and r8, r11, r8, asr #ROW_SHIFT @ R8=0x0000FFFF & ((a2+b2)>>11)
  232. orr r8, r8, r9
  233. str r8, [r14, #4]
  234. sub r8, r4, r7 @ R8=a3-b3
  235. sub r9, r3, r5 @ R9=a2-b2
  236. and r9, r10, r9, lsl #ROW_SHIFT2MSHW @ R9=0xFFFF0000 & ((a2-b2)<<5)
  237. and r8, r11, r8, asr #ROW_SHIFT @ R8=0x0000FFFF & ((a3-b3)>>11)
  238. orr r8, r8, r9
  239. str r8, [r14, #8]
  240. sub r8, r2, r1 @ R8=a1-b1
  241. sub r9, r6, r0 @ R9=a0-b0
  242. and r9, r10, r9, lsl #ROW_SHIFT2MSHW @ R9=0xFFFF0000 & ((a0-b0)<<5)
  243. and r8, r11, r8, asr #ROW_SHIFT @ R8=0x0000FFFF & ((a1-b1)>>11)
  244. orr r8, r8, r9
  245. str r8, [r14, #12]
  246. bal __end_row_loop
  247. __almost_empty_row:
  248. @@ the row was empty, except ROWr16[0], now, management of this special case
  249. @@ at this point, R0=block, R14=&block[n], R12=__const_ptr_, R1=ROWr32[0], R2=ROWr32[1],
  250. @@ R3=ROWr32[2], R4=ROWr32[3], R5=(temp), R6=ROWr16[0], R7=ROWr16[1],
  251. @@ R8=0xFFFF (temp), R9-R11 free
  252. mov r8, #0x10000 @ R8=0xFFFF (2 steps needed!) it saves a ldr call (because of delay run).
  253. sub r8, r8, #1 @ R8 is now ready.
  254. and r5, r8, r6, lsl #3 @ R5=R8 & (R6<<3)= (ROWr16[0]<<3) & 0xFFFF
  255. orr r5, r5, r5, lsl #16 @ R5=R5 | (R5<<16)
  256. str r5, [r14, #0] @ R14[0]=ROWr32[0]=R5
  257. str r5, [r14, #4] @ R14[4]=ROWr32[1]=R5
  258. str r5, [r14, #8] @ R14[8]=ROWr32[2]=R5
  259. str r5, [r14, #12] @ R14[12]=ROWr32[3]=R5
  260. __end_row_loop:
  261. @@ at this point, R0-R11 (free)
  262. @@ R12=__const_ptr_, R14=&block[n]
  263. ldr r0, [sp, #0] @ R0=block
  264. teq r0, r14 @ compare current &block[8*n] to block, when block is reached, the loop is finished.
  265. sub r14, r14, #16
  266. bne __row_loop
  267. @@ at this point, R0=block, R1-R11 (free)
  268. @@ R12=__const_ptr_, R14=&block[n]
  269. add r14, r0, #14 @ R14=&block[7], better start from the last col, and decrease the value until col=0, i.e. R14=block.
  270. __col_loop:
  271. __b_evaluation2:
  272. @@ at this point, R0=block (temp), R1-R11 (free)
  273. @@ R12=__const_ptr_, R14=&block[n]
  274. @@ proceed with b0-b3 first, followed by a0-a3
  275. @@ MUL16(b0, W1, col[8x1]);
  276. @@ MUL16(b1, W3, col[8x1]);
  277. @@ MUL16(b2, W5, col[8x1]);
  278. @@ MUL16(b3, W7, col[8x1]);
  279. @@ MAC16(b0, W3, col[8x3]);
  280. @@ MAC16(b1, -W7, col[8x3]);
  281. @@ MAC16(b2, -W1, col[8x3]);
  282. @@ MAC16(b3, -W5, col[8x3]);
  283. ldr r8, [r12, #offW1] @ R8=W1
  284. ldrsh r7, [r14, #16]
  285. mul r0, r8, r7 @ R0=W1*ROWr16[1]=b0 (ROWr16[1] must be the second arg, to have the possibility to save 1 cycle)
  286. ldr r9, [r12, #offW3] @ R9=W3
  287. ldr r10, [r12, #offW5] @ R10=W5
  288. mul r1, r9, r7 @ R1=W3*ROWr16[1]=b1 (ROWr16[1] must be the second arg, to have the possibility to save 1 cycle)
  289. ldr r11, [r12, #offW7] @ R11=W7
  290. mul r5, r10, r7 @ R5=W5*ROWr16[1]=b2 (ROWr16[1] must be the second arg, to have the possibility to save 1 cycle)
  291. ldrsh r2, [r14, #48]
  292. mul r7, r11, r7 @ R7=W7*ROWr16[1]=b3 (ROWr16[1] must be the second arg, to have the possibility to save 1 cycle)
  293. teq r2, #0 @ if 0, then avoid muls
  294. mlane r0, r9, r2, r0 @ R0+=W3*ROWr16[3]=b0 (ROWr16[3] must be the second arg, to have the possibility to save 1 cycle)
  295. rsbne r2, r2, #0 @ R2=-ROWr16[3]
  296. mlane r1, r11, r2, r1 @ R1-=W7*ROWr16[3]=b1 (ROWr16[3] must be the second arg, to have the possibility to save 1 cycle)
  297. mlane r5, r8, r2, r5 @ R5-=W1*ROWr16[3]=b2 (ROWr16[3] must be the second arg, to have the possibility to save 1 cycle)
  298. mlane r7, r10, r2, r7 @ R7-=W5*ROWr16[3]=b3 (ROWr16[3] must be the second arg, to have the possibility to save 1 cycle)
  299. @@ at this point, R0=b0, R1=b1, R2 (free), R3 (free), R4 (free),
  300. @@ R5=b2, R6 (free), R7=b3, R8=W1, R9=W3, R10=W5, R11=W7,
  301. @@ R12=__const_ptr_, R14=&block[n]
  302. @@ MAC16(b0, W5, col[5x8]);
  303. @@ MAC16(b2, W7, col[5x8]);
  304. @@ MAC16(b3, W3, col[5x8]);
  305. @@ MAC16(b1, -W1, col[5x8]);
  306. @@ MAC16(b0, W7, col[7x8]);
  307. @@ MAC16(b2, W3, col[7x8]);
  308. @@ MAC16(b3, -W1, col[7x8]);
  309. @@ MAC16(b1, -W5, col[7x8]);
  310. ldrsh r3, [r14, #80] @ R3=COLr16[5x8]
  311. teq r3, #0 @ if 0 then avoid muls
  312. mlane r0, r10, r3, r0 @ R0+=W5*ROWr16[5x8]=b0
  313. mlane r5, r11, r3, r5 @ R5+=W7*ROWr16[5x8]=b2
  314. mlane r7, r9, r3, r7 @ R7+=W3*ROWr16[5x8]=b3
  315. rsbne r3, r3, #0 @ R3=-ROWr16[5x8]
  316. ldrsh r4, [r14, #112] @ R4=COLr16[7x8]
  317. mlane r1, r8, r3, r1 @ R7-=W1*ROWr16[5x8]=b1
  318. @@ R3 is free now
  319. teq r4, #0 @ if 0 then avoid muls
  320. mlane r0, r11, r4, r0 @ R0+=W7*ROWr16[7x8]=b0
  321. mlane r5, r9, r4, r5 @ R5+=W3*ROWr16[7x8]=b2
  322. rsbne r4, r4, #0 @ R4=-ROWr16[7x8]
  323. mlane r7, r8, r4, r7 @ R7-=W1*ROWr16[7x8]=b3
  324. mlane r1, r10, r4, r1 @ R1-=W5*ROWr16[7x8]=b1
  325. @@ R4 is free now
  326. __end_b_evaluation2:
  327. @@ at this point, R0=b0, R1=b1, R2 (free), R3 (free), R4 (free),
  328. @@ R5=b2, R6 (free), R7=b3, R8 (free), R9 (free), R10 (free), R11 (free),
  329. @@ R12=__const_ptr_, R14=&block[n]
  330. __a_evaluation2:
  331. @@ a0 = (W4 * col[8x0]) + (1 << (COL_SHIFT - 1));
  332. @@ a1 = a0 + W6 * row[2];
  333. @@ a2 = a0 - W6 * row[2];
  334. @@ a3 = a0 - W2 * row[2];
  335. @@ a0 = a0 + W2 * row[2];
  336. ldrsh r6, [r14, #0]
  337. ldr r9, [r12, #offW4] @ R9=W4
  338. mul r6, r9, r6 @ R6=W4*ROWr16[0]
  339. ldr r10, [r12, #offW6] @ R10=W6
  340. ldrsh r4, [r14, #32] @ R4=ROWr16[2] (a3 not defined yet)
  341. add r6, r6, #COL_SHIFTED_1 @ R6=W4*ROWr16[0] + 1<<(COL_SHIFT-1) (a0)
  342. mul r11, r10, r4 @ R11=W6*ROWr16[2]
  343. ldr r8, [r12, #offW2] @ R8=W2
  344. add r2, r6, r11 @ R2=a0+W6*ROWr16[2] (a1)
  345. sub r3, r6, r11 @ R3=a0-W6*ROWr16[2] (a2)
  346. mul r11, r8, r4 @ R11=W2*ROWr16[2]
  347. sub r4, r6, r11 @ R4=a0-W2*ROWr16[2] (a3)
  348. add r6, r6, r11 @ R6=a0+W2*ROWr16[2] (a0)
  349. @@ at this point, R0=b0, R1=b1, R2=a1, R3=a2, R4=a3,
  350. @@ R5=b2, R6=a0, R7=b3, R8=W2, R9=W4, R10=W6, R11 (free),
  351. @@ R12=__const_ptr_, R14=&block[n]
  352. @@ a0 += W4*row[4]
  353. @@ a1 -= W4*row[4]
  354. @@ a2 -= W4*row[4]
  355. @@ a3 += W4*row[4]
  356. ldrsh r11, [r14, #64] @ R11=ROWr16[4]
  357. teq r11, #0 @ if null avoid muls
  358. mulne r11, r9, r11 @ R11=W4*ROWr16[4]
  359. @@ R9 is free now
  360. addne r6, r6, r11 @ R6+=W4*ROWr16[4] (a0)
  361. subne r2, r2, r11 @ R2-=W4*ROWr16[4] (a1)
  362. subne r3, r3, r11 @ R3-=W4*ROWr16[4] (a2)
  363. ldrsh r9, [r14, #96] @ R9=ROWr16[6]
  364. addne r4, r4, r11 @ R4+=W4*ROWr16[4] (a3)
  365. @@ W6 alone is no more useful, save W2*ROWr16[6] in it instead
  366. teq r9, #0 @ if null avoid muls
  367. mulne r11, r10, r9 @ R11=W6*ROWr16[6]
  368. addne r6, r6, r11 @ R6+=W6*ROWr16[6] (a0)
  369. mulne r10, r8, r9 @ R10=W2*ROWr16[6]
  370. @@ a0 += W6*row[6];
  371. @@ a3 -= W6*row[6];
  372. @@ a1 -= W2*row[6];
  373. @@ a2 += W2*row[6];
  374. subne r4, r4, r11 @ R4-=W6*ROWr16[6] (a3)
  375. subne r2, r2, r10 @ R2-=W2*ROWr16[6] (a1)
  376. addne r3, r3, r10 @ R3+=W2*ROWr16[6] (a2)
  377. __end_a_evaluation2:
  378. @@ at this point, R0=b0, R1=b1, R2=a1, R3=a2, R4=a3,
  379. @@ R5=b2, R6=a0, R7=b3, R8 (free), R9 (free), R10 (free), R11 (free),
  380. @@ R12=__const_ptr_, R14=&block[n]
  381. @@ col[0 ] = ((a0 + b0) >> COL_SHIFT);
  382. @@ col[8 ] = ((a1 + b1) >> COL_SHIFT);
  383. @@ col[16] = ((a2 + b2) >> COL_SHIFT);
  384. @@ col[24] = ((a3 + b3) >> COL_SHIFT);
  385. @@ col[32] = ((a3 - b3) >> COL_SHIFT);
  386. @@ col[40] = ((a2 - b2) >> COL_SHIFT);
  387. @@ col[48] = ((a1 - b1) >> COL_SHIFT);
  388. @@ col[56] = ((a0 - b0) >> COL_SHIFT);
  389. @@@@@ no optimization here @@@@@
  390. add r8, r6, r0 @ R8=a0+b0
  391. add r9, r2, r1 @ R9=a1+b1
  392. mov r8, r8, asr #COL_SHIFT
  393. mov r9, r9, asr #COL_SHIFT
  394. strh r8, [r14, #0]
  395. strh r9, [r14, #16]
  396. add r8, r3, r5 @ R8=a2+b2
  397. add r9, r4, r7 @ R9=a3+b3
  398. mov r8, r8, asr #COL_SHIFT
  399. mov r9, r9, asr #COL_SHIFT
  400. strh r8, [r14, #32]
  401. strh r9, [r14, #48]
  402. sub r8, r4, r7 @ R8=a3-b3
  403. sub r9, r3, r5 @ R9=a2-b2
  404. mov r8, r8, asr #COL_SHIFT
  405. mov r9, r9, asr #COL_SHIFT
  406. strh r8, [r14, #64]
  407. strh r9, [r14, #80]
  408. sub r8, r2, r1 @ R8=a1-b1
  409. sub r9, r6, r0 @ R9=a0-b0
  410. mov r8, r8, asr #COL_SHIFT
  411. mov r9, r9, asr #COL_SHIFT
  412. strh r8, [r14, #96]
  413. strh r9, [r14, #112]
  414. __end_col_loop:
  415. @@ at this point, R0-R11 (free)
  416. @@ R12=__const_ptr_, R14=&block[n]
  417. ldr r0, [sp, #0] @ R0=block
  418. teq r0, r14 @ compare current &block[n] to block, when block is reached, the loop is finished.
  419. sub r14, r14, #2
  420. bne __col_loop
  421. __end_simple_idct_ARM:
  422. @@ restore registers to previous status!
  423. add sp, sp, #8 @@ the local variables!
  424. ldmfd sp!, {r4-r11, r15} @@ update PC with LR content.
  425. @@ kind of sub-function, here not to overload the common case.
  426. __end_bef_a_evaluation:
  427. add r2, r6, r11 @ R2=a0+W6*ROWr16[2] (a1)
  428. mul r11, r8, r4 @ R11=W2*ROWr16[2]
  429. sub r4, r6, r11 @ R4=a0-W2*ROWr16[2] (a3)
  430. add r6, r6, r11 @ R6=a0+W2*ROWr16[2] (a0)
  431. bal __end_a_evaluation
  432. __constant_ptr__: @@ see #defines at the beginning of the source code for values.
  433. .align
  434. .word W1
  435. .word W2
  436. .word W3
  437. .word W4
  438. .word W5
  439. .word W6
  440. .word W7
  441. .word MASK_MSHW