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  1. ;******************************************************************************
  2. ;* Copyright (c) 2012 Michael Niedermayer
  3. ;*
  4. ;* This file is part of FFmpeg.
  5. ;*
  6. ;* FFmpeg is free software; you can redistribute it and/or
  7. ;* modify it under the terms of the GNU Lesser General Public
  8. ;* License as published by the Free Software Foundation; either
  9. ;* version 2.1 of the License, or (at your option) any later version.
  10. ;*
  11. ;* FFmpeg is distributed in the hope that it will be useful,
  12. ;* but WITHOUT ANY WARRANTY; without even the implied warranty of
  13. ;* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the GNU
  14. ;* Lesser General Public License for more details.
  15. ;*
  16. ;* You should have received a copy of the GNU Lesser General Public
  17. ;* License along with FFmpeg; if not, write to the Free Software
  18. ;* Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
  19. ;******************************************************************************
  20.  
  21. %include "libavutil/x86/x86util.asm"
  22.  
  23. SECTION_RODATA 32
  24. flt2pm31: times 8 dd 4.6566129e-10
  25. flt2p31 : times 8 dd 2147483648.0
  26. flt2p15 : times 8 dd 32768.0
  27.  
  28. word_unpack_shuf : db  0, 1, 4, 5, 8, 9,12,13, 2, 3, 6, 7,10,11,14,15
  29.  
  30. SECTION .text
  31.  
  32.  
  33. ;to, from, a/u, log2_outsize, log_intsize, const
  34. %macro PACK_2CH 5-7
  35. cglobal pack_2ch_%2_to_%1_%3, 3, 4, 6, dst, src, len, src2
  36.     mov src2q   , [srcq+gprsize]
  37.     mov srcq    , [srcq]
  38.     mov dstq    , [dstq]
  39. %ifidn %3, a
  40.     test dstq, mmsize-1
  41.         jne pack_2ch_%2_to_%1_u_int %+ SUFFIX
  42.     test srcq, mmsize-1
  43.         jne pack_2ch_%2_to_%1_u_int %+ SUFFIX
  44.     test src2q, mmsize-1
  45.         jne pack_2ch_%2_to_%1_u_int %+ SUFFIX
  46. %else
  47. pack_2ch_%2_to_%1_u_int %+ SUFFIX
  48. %endif
  49.     lea     srcq , [srcq  + (1<<%5)*lenq]
  50.     lea     src2q, [src2q + (1<<%5)*lenq]
  51.     lea     dstq , [dstq  + (2<<%4)*lenq]
  52.     neg     lenq
  53.     %7 m0,m1,m2,m3,m4,m5
  54. .next:
  55. %if %4 >= %5
  56.     mov%3     m0, [         srcq +(1<<%5)*lenq]
  57.     mova      m1, m0
  58.     mov%3     m2, [         src2q+(1<<%5)*lenq]
  59. %if %5 == 1
  60.     punpcklwd m0, m2
  61.     punpckhwd m1, m2
  62. %else
  63.     punpckldq m0, m2
  64.     punpckhdq m1, m2
  65. %endif
  66.     %6 m0,m1,m2,m3,m4,m5
  67. %else
  68.     mov%3     m0, [         srcq +(1<<%5)*lenq]
  69.     mov%3     m1, [mmsize + srcq +(1<<%5)*lenq]
  70.     mov%3     m2, [         src2q+(1<<%5)*lenq]
  71.     mov%3     m3, [mmsize + src2q+(1<<%5)*lenq]
  72.     %6 m0,m1,m2,m3,m4,m5
  73.     mova      m2, m0
  74.     punpcklwd m0, m1
  75.     punpckhwd m2, m1
  76.     SWAP 1,2
  77. %endif
  78.     mov%3 [           dstq+(2<<%4)*lenq], m0
  79.     mov%3 [  mmsize + dstq+(2<<%4)*lenq], m1
  80. %if %4 > %5
  81.     mov%3 [2*mmsize + dstq+(2<<%4)*lenq], m2
  82.     mov%3 [3*mmsize + dstq+(2<<%4)*lenq], m3
  83.     add lenq, 4*mmsize/(2<<%4)
  84. %else
  85.     add lenq, 2*mmsize/(2<<%4)
  86. %endif
  87.         jl .next
  88.     REP_RET
  89. %endmacro
  90.  
  91. %macro UNPACK_2CH 5-7
  92. cglobal unpack_2ch_%2_to_%1_%3, 3, 4, 7, dst, src, len, dst2
  93.     mov dst2q   , [dstq+gprsize]
  94.     mov srcq    , [srcq]
  95.     mov dstq    , [dstq]
  96. %ifidn %3, a
  97.     test dstq, mmsize-1
  98.         jne unpack_2ch_%2_to_%1_u_int %+ SUFFIX
  99.     test srcq, mmsize-1
  100.         jne unpack_2ch_%2_to_%1_u_int %+ SUFFIX
  101.     test dst2q, mmsize-1
  102.         jne unpack_2ch_%2_to_%1_u_int %+ SUFFIX
  103. %else
  104. unpack_2ch_%2_to_%1_u_int %+ SUFFIX
  105. %endif
  106.     lea     srcq , [srcq  + (2<<%5)*lenq]
  107.     lea     dstq , [dstq  + (1<<%4)*lenq]
  108.     lea     dst2q, [dst2q + (1<<%4)*lenq]
  109.     neg     lenq
  110.     %7 m0,m1,m2,m3,m4,m5
  111.     mova      m6, [word_unpack_shuf]
  112. .next:
  113.     mov%3     m0, [           srcq +(2<<%5)*lenq]
  114.     mov%3     m2, [  mmsize + srcq +(2<<%5)*lenq]
  115. %if %5 == 1
  116. %ifidn SUFFIX, _ssse3
  117.     pshufb    m0, m6
  118.     mova      m1, m0
  119.     pshufb    m2, m6
  120.     punpcklqdq m0,m2
  121.     punpckhqdq m1,m2
  122. %else
  123.     mova      m1, m0
  124.     punpcklwd m0,m2
  125.     punpckhwd m1,m2
  126.  
  127.     mova      m2, m0
  128.     punpcklwd m0,m1
  129.     punpckhwd m2,m1
  130.  
  131.     mova      m1, m0
  132.     punpcklwd m0,m2
  133.     punpckhwd m1,m2
  134. %endif
  135. %else
  136.     mova      m1, m0
  137.     shufps    m0, m2, 10001000b
  138.     shufps    m1, m2, 11011101b
  139. %endif
  140. %if %4 < %5
  141.     mov%3     m2, [2*mmsize + srcq +(2<<%5)*lenq]
  142.     mova      m3, m2
  143.     mov%3     m4, [3*mmsize + srcq +(2<<%5)*lenq]
  144.     shufps    m2, m4, 10001000b
  145.     shufps    m3, m4, 11011101b
  146.     SWAP 1,2
  147. %endif
  148.     %6 m0,m1,m2,m3,m4,m5
  149.     mov%3 [           dstq+(1<<%4)*lenq], m0
  150. %if %4 > %5
  151.     mov%3 [          dst2q+(1<<%4)*lenq], m2
  152.     mov%3 [ mmsize +  dstq+(1<<%4)*lenq], m1
  153.     mov%3 [ mmsize + dst2q+(1<<%4)*lenq], m3
  154.     add lenq, 2*mmsize/(1<<%4)
  155. %else
  156.     mov%3 [          dst2q+(1<<%4)*lenq], m1
  157.     add lenq, mmsize/(1<<%4)
  158. %endif
  159.         jl .next
  160.     REP_RET
  161. %endmacro
  162.  
  163. %macro CONV 5-7
  164. cglobal %2_to_%1_%3, 3, 3, 6, dst, src, len
  165.     mov srcq    , [srcq]
  166.     mov dstq    , [dstq]
  167. %ifidn %3, a
  168.     test dstq, mmsize-1
  169.         jne %2_to_%1_u_int %+ SUFFIX
  170.     test srcq, mmsize-1
  171.         jne %2_to_%1_u_int %+ SUFFIX
  172. %else
  173. %2_to_%1_u_int %+ SUFFIX
  174. %endif
  175.     lea     srcq , [srcq  + (1<<%5)*lenq]
  176.     lea     dstq , [dstq  + (1<<%4)*lenq]
  177.     neg     lenq
  178.     %7 m0,m1,m2,m3,m4,m5
  179. .next:
  180.     mov%3     m0, [           srcq +(1<<%5)*lenq]
  181.     mov%3     m1, [  mmsize + srcq +(1<<%5)*lenq]
  182. %if %4 < %5
  183.     mov%3     m2, [2*mmsize + srcq +(1<<%5)*lenq]
  184.     mov%3     m3, [3*mmsize + srcq +(1<<%5)*lenq]
  185. %endif
  186.     %6 m0,m1,m2,m3,m4,m5
  187.     mov%3 [           dstq+(1<<%4)*lenq], m0
  188.     mov%3 [  mmsize + dstq+(1<<%4)*lenq], m1
  189. %if %4 > %5
  190.     mov%3 [2*mmsize + dstq+(1<<%4)*lenq], m2
  191.     mov%3 [3*mmsize + dstq+(1<<%4)*lenq], m3
  192.     add lenq, 4*mmsize/(1<<%4)
  193. %else
  194.     add lenq, 2*mmsize/(1<<%4)
  195. %endif
  196.         jl .next
  197. %if mmsize == 8
  198.     emms
  199.     RET
  200. %else
  201.     REP_RET
  202. %endif
  203. %endmacro
  204.  
  205. %macro PACK_6CH 5-7
  206. cglobal pack_6ch_%2_to_%1_%3, 2,8,7, dst, src, src1, src2, src3, src4, src5, len
  207. %if ARCH_X86_64
  208.     mov     lend, r2d
  209. %else
  210.     %define lend dword r2m
  211. %endif
  212.     mov    src1q, [srcq+1*gprsize]
  213.     mov    src2q, [srcq+2*gprsize]
  214.     mov    src3q, [srcq+3*gprsize]
  215.     mov    src4q, [srcq+4*gprsize]
  216.     mov    src5q, [srcq+5*gprsize]
  217.     mov     srcq, [srcq]
  218.     mov     dstq, [dstq]
  219. %ifidn %3, a
  220.     test dstq, mmsize-1
  221.         jne pack_6ch_%2_to_%1_u_int %+ SUFFIX
  222.     test srcq, mmsize-1
  223.         jne pack_6ch_%2_to_%1_u_int %+ SUFFIX
  224.     test src2q, mmsize-1
  225.         jne pack_6ch_%2_to_%1_u_int %+ SUFFIX
  226.     test src3q, mmsize-1
  227.         jne pack_6ch_%2_to_%1_u_int %+ SUFFIX
  228.     test src4q, mmsize-1
  229.         jne pack_6ch_%2_to_%1_u_int %+ SUFFIX
  230.     test src5q, mmsize-1
  231.         jne pack_6ch_%2_to_%1_u_int %+ SUFFIX
  232. %else
  233. pack_6ch_%2_to_%1_u_int %+ SUFFIX
  234. %endif
  235.     sub    src1q, srcq
  236.     sub    src2q, srcq
  237.     sub    src3q, srcq
  238.     sub    src4q, srcq
  239.     sub    src5q, srcq
  240. .loop:
  241.     mov%3     m0, [srcq      ]
  242.     mov%3     m1, [srcq+src1q]
  243.     mov%3     m2, [srcq+src2q]
  244.     mov%3     m3, [srcq+src3q]
  245.     mov%3     m4, [srcq+src4q]
  246.     mov%3     m5, [srcq+src5q]
  247.     %7 x,x,x,x,m7,x
  248. %if cpuflag(sse4)
  249.     SBUTTERFLYPS 0, 1, 6
  250.     SBUTTERFLYPS 2, 3, 6
  251.     SBUTTERFLYPS 4, 5, 6
  252.  
  253.     blendps   m6, m4, m0, 1100b
  254.     movlhps   m0, m2
  255.     movhlps   m4, m2
  256.     blendps   m2, m5, m1, 1100b
  257.     movlhps   m1, m3
  258.     movhlps   m5, m3
  259.  
  260.     %6 m0,m6,x,x,m7,m3
  261.     %6 m4,m1,x,x,m7,m3
  262.     %6 m2,m5,x,x,m7,m3
  263.  
  264.     mov %+ %3 %+ ps [dstq   ], m0
  265.     mov %+ %3 %+ ps [dstq+16], m6
  266.     mov %+ %3 %+ ps [dstq+32], m4
  267.     mov %+ %3 %+ ps [dstq+48], m1
  268.     mov %+ %3 %+ ps [dstq+64], m2
  269.     mov %+ %3 %+ ps [dstq+80], m5
  270. %else ; mmx
  271.     SBUTTERFLY dq, 0, 1, 6
  272.     SBUTTERFLY dq, 2, 3, 6
  273.     SBUTTERFLY dq, 4, 5, 6
  274.  
  275.     movq   [dstq   ], m0
  276.     movq   [dstq+ 8], m2
  277.     movq   [dstq+16], m4
  278.     movq   [dstq+24], m1
  279.     movq   [dstq+32], m3
  280.     movq   [dstq+40], m5
  281. %endif
  282.     add      srcq, mmsize
  283.     add      dstq, mmsize*6
  284.     sub      lend, mmsize/4
  285.     jg .loop
  286. %if mmsize == 8
  287.     emms
  288.     RET
  289. %else
  290.     REP_RET
  291. %endif
  292. %endmacro
  293.  
  294. %macro INT16_TO_INT32_N 6
  295.     pxor      m2, m2
  296.     pxor      m3, m3
  297.     punpcklwd m2, m1
  298.     punpckhwd m3, m1
  299.     SWAP 4,0
  300.     pxor      m0, m0
  301.     pxor      m1, m1
  302.     punpcklwd m0, m4
  303.     punpckhwd m1, m4
  304. %endmacro
  305.  
  306. %macro INT32_TO_INT16_N 6
  307.     psrad     m0, 16
  308.     psrad     m1, 16
  309.     psrad     m2, 16
  310.     psrad     m3, 16
  311.     packssdw  m0, m1
  312.     packssdw  m2, m3
  313.     SWAP 1,2
  314. %endmacro
  315.  
  316. %macro INT32_TO_FLOAT_INIT 6
  317.     mova      %5, [flt2pm31]
  318. %endmacro
  319. %macro INT32_TO_FLOAT_N 6
  320.     cvtdq2ps  %1, %1
  321.     cvtdq2ps  %2, %2
  322.     mulps %1, %1, %5
  323.     mulps %2, %2, %5
  324. %endmacro
  325.  
  326. %macro FLOAT_TO_INT32_INIT 6
  327.     mova      %5, [flt2p31]
  328. %endmacro
  329. %macro FLOAT_TO_INT32_N 6
  330.     mulps %1, %5
  331.     mulps %2, %5
  332.     cvtps2dq  %6, %1
  333.     cmpnltps %1, %5
  334.     paddd %1, %6
  335.     cvtps2dq  %6, %2
  336.     cmpnltps %2, %5
  337.     paddd %2, %6
  338. %endmacro
  339.  
  340. %macro INT16_TO_FLOAT_INIT 6
  341.     mova      m5, [flt2pm31]
  342. %endmacro
  343. %macro INT16_TO_FLOAT_N 6
  344.     INT16_TO_INT32_N %1,%2,%3,%4,%5,%6
  345.     cvtdq2ps  m0, m0
  346.     cvtdq2ps  m1, m1
  347.     cvtdq2ps  m2, m2
  348.     cvtdq2ps  m3, m3
  349.     mulps m0, m0, m5
  350.     mulps m1, m1, m5
  351.     mulps m2, m2, m5
  352.     mulps m3, m3, m5
  353. %endmacro
  354.  
  355. %macro FLOAT_TO_INT16_INIT 6
  356.     mova      m5, [flt2p15]
  357. %endmacro
  358. %macro FLOAT_TO_INT16_N 6
  359.     mulps m0, m5
  360.     mulps m1, m5
  361.     mulps m2, m5
  362.     mulps m3, m5
  363.     cvtps2dq  m0, m0
  364.     cvtps2dq  m1, m1
  365.     packssdw  m0, m1
  366.     cvtps2dq  m1, m2
  367.     cvtps2dq  m3, m3
  368.     packssdw  m1, m3
  369. %endmacro
  370.  
  371. %macro NOP_N 0-6
  372. %endmacro
  373.  
  374. INIT_MMX mmx
  375. CONV int32, int16, u, 2, 1, INT16_TO_INT32_N, NOP_N
  376. CONV int32, int16, a, 2, 1, INT16_TO_INT32_N, NOP_N
  377. CONV int16, int32, u, 1, 2, INT32_TO_INT16_N, NOP_N
  378. CONV int16, int32, a, 1, 2, INT32_TO_INT16_N, NOP_N
  379.  
  380. PACK_6CH float, float, u, 2, 2, NOP_N, NOP_N
  381. PACK_6CH float, float, a, 2, 2, NOP_N, NOP_N
  382.  
  383. INIT_XMM sse2
  384. CONV int32, int16, u, 2, 1, INT16_TO_INT32_N, NOP_N
  385. CONV int32, int16, a, 2, 1, INT16_TO_INT32_N, NOP_N
  386. CONV int16, int32, u, 1, 2, INT32_TO_INT16_N, NOP_N
  387. CONV int16, int32, a, 1, 2, INT32_TO_INT16_N, NOP_N
  388.  
  389. PACK_2CH int16, int16, u, 1, 1, NOP_N, NOP_N
  390. PACK_2CH int16, int16, a, 1, 1, NOP_N, NOP_N
  391. PACK_2CH int32, int32, u, 2, 2, NOP_N, NOP_N
  392. PACK_2CH int32, int32, a, 2, 2, NOP_N, NOP_N
  393. PACK_2CH int32, int16, u, 2, 1, INT16_TO_INT32_N, NOP_N
  394. PACK_2CH int32, int16, a, 2, 1, INT16_TO_INT32_N, NOP_N
  395. PACK_2CH int16, int32, u, 1, 2, INT32_TO_INT16_N, NOP_N
  396. PACK_2CH int16, int32, a, 1, 2, INT32_TO_INT16_N, NOP_N
  397.  
  398. UNPACK_2CH int16, int16, u, 1, 1, NOP_N, NOP_N
  399. UNPACK_2CH int16, int16, a, 1, 1, NOP_N, NOP_N
  400. UNPACK_2CH int32, int32, u, 2, 2, NOP_N, NOP_N
  401. UNPACK_2CH int32, int32, a, 2, 2, NOP_N, NOP_N
  402. UNPACK_2CH int32, int16, u, 2, 1, INT16_TO_INT32_N, NOP_N
  403. UNPACK_2CH int32, int16, a, 2, 1, INT16_TO_INT32_N, NOP_N
  404. UNPACK_2CH int16, int32, u, 1, 2, INT32_TO_INT16_N, NOP_N
  405. UNPACK_2CH int16, int32, a, 1, 2, INT32_TO_INT16_N, NOP_N
  406.  
  407. CONV float, int32, u, 2, 2, INT32_TO_FLOAT_N, INT32_TO_FLOAT_INIT
  408. CONV float, int32, a, 2, 2, INT32_TO_FLOAT_N, INT32_TO_FLOAT_INIT
  409. CONV int32, float, u, 2, 2, FLOAT_TO_INT32_N, FLOAT_TO_INT32_INIT
  410. CONV int32, float, a, 2, 2, FLOAT_TO_INT32_N, FLOAT_TO_INT32_INIT
  411. CONV float, int16, u, 2, 1, INT16_TO_FLOAT_N, INT16_TO_FLOAT_INIT
  412. CONV float, int16, a, 2, 1, INT16_TO_FLOAT_N, INT16_TO_FLOAT_INIT
  413. CONV int16, float, u, 1, 2, FLOAT_TO_INT16_N, FLOAT_TO_INT16_INIT
  414. CONV int16, float, a, 1, 2, FLOAT_TO_INT16_N, FLOAT_TO_INT16_INIT
  415.  
  416. PACK_2CH float, int32, u, 2, 2, INT32_TO_FLOAT_N, INT32_TO_FLOAT_INIT
  417. PACK_2CH float, int32, a, 2, 2, INT32_TO_FLOAT_N, INT32_TO_FLOAT_INIT
  418. PACK_2CH int32, float, u, 2, 2, FLOAT_TO_INT32_N, FLOAT_TO_INT32_INIT
  419. PACK_2CH int32, float, a, 2, 2, FLOAT_TO_INT32_N, FLOAT_TO_INT32_INIT
  420. PACK_2CH float, int16, u, 2, 1, INT16_TO_FLOAT_N, INT16_TO_FLOAT_INIT
  421. PACK_2CH float, int16, a, 2, 1, INT16_TO_FLOAT_N, INT16_TO_FLOAT_INIT
  422. PACK_2CH int16, float, u, 1, 2, FLOAT_TO_INT16_N, FLOAT_TO_INT16_INIT
  423. PACK_2CH int16, float, a, 1, 2, FLOAT_TO_INT16_N, FLOAT_TO_INT16_INIT
  424.  
  425. UNPACK_2CH float, int32, u, 2, 2, INT32_TO_FLOAT_N, INT32_TO_FLOAT_INIT
  426. UNPACK_2CH float, int32, a, 2, 2, INT32_TO_FLOAT_N, INT32_TO_FLOAT_INIT
  427. UNPACK_2CH int32, float, u, 2, 2, FLOAT_TO_INT32_N, FLOAT_TO_INT32_INIT
  428. UNPACK_2CH int32, float, a, 2, 2, FLOAT_TO_INT32_N, FLOAT_TO_INT32_INIT
  429. UNPACK_2CH float, int16, u, 2, 1, INT16_TO_FLOAT_N, INT16_TO_FLOAT_INIT
  430. UNPACK_2CH float, int16, a, 2, 1, INT16_TO_FLOAT_N, INT16_TO_FLOAT_INIT
  431. UNPACK_2CH int16, float, u, 1, 2, FLOAT_TO_INT16_N, FLOAT_TO_INT16_INIT
  432. UNPACK_2CH int16, float, a, 1, 2, FLOAT_TO_INT16_N, FLOAT_TO_INT16_INIT
  433.  
  434.  
  435. INIT_XMM ssse3
  436. UNPACK_2CH int16, int16, u, 1, 1, NOP_N, NOP_N
  437. UNPACK_2CH int16, int16, a, 1, 1, NOP_N, NOP_N
  438. UNPACK_2CH int32, int16, u, 2, 1, INT16_TO_INT32_N, NOP_N
  439. UNPACK_2CH int32, int16, a, 2, 1, INT16_TO_INT32_N, NOP_N
  440. UNPACK_2CH float, int16, u, 2, 1, INT16_TO_FLOAT_N, INT16_TO_FLOAT_INIT
  441. UNPACK_2CH float, int16, a, 2, 1, INT16_TO_FLOAT_N, INT16_TO_FLOAT_INIT
  442.  
  443. INIT_XMM sse4
  444. PACK_6CH float, float, u, 2, 2, NOP_N, NOP_N
  445. PACK_6CH float, float, a, 2, 2, NOP_N, NOP_N
  446.  
  447. PACK_6CH float, int32, u, 2, 2, INT32_TO_FLOAT_N, INT32_TO_FLOAT_INIT
  448. PACK_6CH float, int32, a, 2, 2, INT32_TO_FLOAT_N, INT32_TO_FLOAT_INIT
  449. PACK_6CH int32, float, u, 2, 2, FLOAT_TO_INT32_N, FLOAT_TO_INT32_INIT
  450. PACK_6CH int32, float, a, 2, 2, FLOAT_TO_INT32_N, FLOAT_TO_INT32_INIT
  451.  
  452. %if HAVE_AVX_EXTERNAL
  453. INIT_XMM avx
  454. PACK_6CH float, float, u, 2, 2, NOP_N, NOP_N
  455. PACK_6CH float, float, a, 2, 2, NOP_N, NOP_N
  456.  
  457. PACK_6CH float, int32, u, 2, 2, INT32_TO_FLOAT_N, INT32_TO_FLOAT_INIT
  458. PACK_6CH float, int32, a, 2, 2, INT32_TO_FLOAT_N, INT32_TO_FLOAT_INIT
  459. PACK_6CH int32, float, u, 2, 2, FLOAT_TO_INT32_N, FLOAT_TO_INT32_INIT
  460. PACK_6CH int32, float, a, 2, 2, FLOAT_TO_INT32_N, FLOAT_TO_INT32_INIT
  461.  
  462. INIT_YMM avx
  463. CONV float, int32, u, 2, 2, INT32_TO_FLOAT_N, INT32_TO_FLOAT_INIT
  464. CONV float, int32, a, 2, 2, INT32_TO_FLOAT_N, INT32_TO_FLOAT_INIT
  465. %endif
  466.