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https://github.com/nothings/stb
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Merge branch 'stbiw_update_jpeg' of https://github.com/DanielGibson/stb into work2
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commit
454da539a2
@ -1271,26 +1271,30 @@ static void stbiw__jpg_calcBits(int val, unsigned short bits[2]) {
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bits[0] = val & ((1<<bits[1])-1);
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}
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static int stbiw__jpg_processDU(stbi__write_context *s, int *bitBuf, int *bitCnt, float *CDU, float *fdtbl, int DC, const unsigned short HTDC[256][2], const unsigned short HTAC[256][2]) {
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static int stbiw__jpg_processDU(stbi__write_context *s, int *bitBuf, int *bitCnt, float *CDU, int du_stride, float *fdtbl, int DC, const unsigned short HTDC[256][2], const unsigned short HTAC[256][2]) {
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const unsigned short EOB[2] = { HTAC[0x00][0], HTAC[0x00][1] };
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const unsigned short M16zeroes[2] = { HTAC[0xF0][0], HTAC[0xF0][1] };
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int dataOff, i, diff, end0pos;
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int dataOff, i, j, n, diff, end0pos, x, y;
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int DU[64];
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// DCT rows
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for(dataOff=0; dataOff<64; dataOff+=8) {
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for(dataOff=0, n=du_stride*8; dataOff<n; dataOff+=du_stride) {
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stbiw__jpg_DCT(&CDU[dataOff], &CDU[dataOff+1], &CDU[dataOff+2], &CDU[dataOff+3], &CDU[dataOff+4], &CDU[dataOff+5], &CDU[dataOff+6], &CDU[dataOff+7]);
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}
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// DCT columns
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for(dataOff=0; dataOff<8; ++dataOff) {
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stbiw__jpg_DCT(&CDU[dataOff], &CDU[dataOff+8], &CDU[dataOff+16], &CDU[dataOff+24], &CDU[dataOff+32], &CDU[dataOff+40], &CDU[dataOff+48], &CDU[dataOff+56]);
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stbiw__jpg_DCT(&CDU[dataOff], &CDU[dataOff+du_stride], &CDU[dataOff+du_stride*2], &CDU[dataOff+du_stride*3], &CDU[dataOff+du_stride*4],
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&CDU[dataOff+du_stride*5], &CDU[dataOff+du_stride*6], &CDU[dataOff+du_stride*7]);
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}
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// Quantize/descale/zigzag the coefficients
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for(i=0; i<64; ++i) {
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float v = CDU[i]*fdtbl[i];
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// DU[stbiw__jpg_ZigZag[i]] = (int)(v < 0 ? ceilf(v - 0.5f) : floorf(v + 0.5f));
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// ceilf() and floorf() are C99, not C89, but I /think/ they're not needed here anyway?
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DU[stbiw__jpg_ZigZag[i]] = (int)(v < 0 ? v - 0.5f : v + 0.5f);
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for(y = 0, j=0; y < 8; ++y) {
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for(x = 0; x < 8; ++x,++j) {
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i = y*du_stride+x;
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float v = CDU[i]*fdtbl[j];
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// DU[stbiw__jpg_ZigZag[j]] = (int)(v < 0 ? ceilf(v - 0.5f) : floorf(v + 0.5f));
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// ceilf() and floorf() are C99, not C89, but I /think/ they're not needed here anyway?
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DU[stbiw__jpg_ZigZag[j]] = (int)(v < 0 ? v - 0.5f : v + 0.5f);
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}
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}
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// Encode DC
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@ -1408,7 +1412,7 @@ static int stbi_write_jpg_core(stbi__write_context *s, int width, int height, in
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static const float aasf[] = { 1.0f * 2.828427125f, 1.387039845f * 2.828427125f, 1.306562965f * 2.828427125f, 1.175875602f * 2.828427125f,
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1.0f * 2.828427125f, 0.785694958f * 2.828427125f, 0.541196100f * 2.828427125f, 0.275899379f * 2.828427125f };
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int row, col, i, k;
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int row, col, i, k, subsample;
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float fdtbl_Y[64], fdtbl_UV[64];
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unsigned char YTable[64], UVTable[64];
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@ -1417,6 +1421,7 @@ static int stbi_write_jpg_core(stbi__write_context *s, int width, int height, in
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}
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quality = quality ? quality : 90;
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subsample = quality <= 90 ? 1 : 0;
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quality = quality < 1 ? 1 : quality > 100 ? 100 : quality;
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quality = quality < 50 ? 5000 / quality : 200 - quality * 2;
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@ -1439,7 +1444,7 @@ static int stbi_write_jpg_core(stbi__write_context *s, int width, int height, in
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static const unsigned char head0[] = { 0xFF,0xD8,0xFF,0xE0,0,0x10,'J','F','I','F',0,1,1,0,0,1,0,1,0,0,0xFF,0xDB,0,0x84,0 };
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static const unsigned char head2[] = { 0xFF,0xDA,0,0xC,3,1,0,2,0x11,3,0x11,0,0x3F,0 };
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const unsigned char head1[] = { 0xFF,0xC0,0,0x11,8,(unsigned char)(height>>8),STBIW_UCHAR(height),(unsigned char)(width>>8),STBIW_UCHAR(width),
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3,1,0x11,0,2,0x11,1,3,0x11,1,0xFF,0xC4,0x01,0xA2,0 };
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3,1,(unsigned char)(subsample?0x22:0x11),0,2,0x11,1,3,0x11,1,0xFF,0xC4,0x01,0xA2,0 };
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s->func(s->context, (void*)head0, sizeof(head0));
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s->func(s->context, (void*)YTable, sizeof(YTable));
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stbiw__putc(s, 1);
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@ -1462,36 +1467,74 @@ static int stbi_write_jpg_core(stbi__write_context *s, int width, int height, in
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// Encode 8x8 macroblocks
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{
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static const unsigned short fillBits[] = {0x7F, 7};
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const unsigned char *imageData = (const unsigned char *)data;
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int DCY=0, DCU=0, DCV=0;
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int bitBuf=0, bitCnt=0;
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// comp == 2 is grey+alpha (alpha is ignored)
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int ofsG = comp > 2 ? 1 : 0, ofsB = comp > 2 ? 2 : 0;
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const unsigned char *dataR = (const unsigned char *)data;
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const unsigned char *dataG = dataR + ofsG;
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const unsigned char *dataB = dataR + ofsB;
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int x, y, pos;
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for(y = 0; y < height; y += 8) {
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for(x = 0; x < width; x += 8) {
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float YDU[64], UDU[64], VDU[64];
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for(row = y, pos = 0; row < y+8; ++row) {
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// row >= height => use last input row
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int clamped_row = (row < height) ? row : height - 1;
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int base_p = (stbi__flip_vertically_on_write ? (height-1-clamped_row) : clamped_row)*width*comp;
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for(col = x; col < x+8; ++col, ++pos) {
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float r, g, b;
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// if col >= width => use pixel from last input column
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int p = base_p + ((col < width) ? col : (width-1))*comp;
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if(subsample) {
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for(y = 0; y < height; y += 16) {
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for(x = 0; x < width; x += 16) {
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float Y[256], U[256], V[256];
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for(row = y, pos = 0; row < y+16; ++row) {
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// row >= height => use last input row
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int clamped_row = (row < height) ? row : height - 1;
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int base_p = (stbi__flip_vertically_on_write ? (height-1-clamped_row) : clamped_row)*width*comp;
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for(col = x; col < x+16; ++col, ++pos) {
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// if col >= width => use pixel from last input column
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int p = base_p + ((col < width) ? col : (width-1))*comp;
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float r = dataR[p], g = dataG[p], b = dataB[p];
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Y[pos]= +0.29900f*r + 0.58700f*g + 0.11400f*b - 128;
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U[pos]= -0.16874f*r - 0.33126f*g + 0.50000f*b;
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V[pos]= +0.50000f*r - 0.41869f*g - 0.08131f*b;
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}
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}
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DCY = stbiw__jpg_processDU(s, &bitBuf, &bitCnt, Y+0, 16, fdtbl_Y, DCY, YDC_HT, YAC_HT);
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DCY = stbiw__jpg_processDU(s, &bitBuf, &bitCnt, Y+8, 16, fdtbl_Y, DCY, YDC_HT, YAC_HT);
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DCY = stbiw__jpg_processDU(s, &bitBuf, &bitCnt, Y+128, 16, fdtbl_Y, DCY, YDC_HT, YAC_HT);
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DCY = stbiw__jpg_processDU(s, &bitBuf, &bitCnt, Y+136, 16, fdtbl_Y, DCY, YDC_HT, YAC_HT);
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r = imageData[p+0];
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g = imageData[p+ofsG];
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b = imageData[p+ofsB];
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YDU[pos]=+0.29900f*r+0.58700f*g+0.11400f*b-128;
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UDU[pos]=-0.16874f*r-0.33126f*g+0.50000f*b;
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VDU[pos]=+0.50000f*r-0.41869f*g-0.08131f*b;
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// subsample U,V
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{
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float subU[64], subV[64];
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int yy, xx;
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for(yy = 0, pos = 0; yy < 8; ++yy) {
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for(xx = 0; xx < 8; ++xx, ++pos) {
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int j = yy*32+xx*2;
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subU[pos] = (U[j+0] + U[j+1] + U[j+16] + U[j+17]) * 0.25f;
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subV[pos] = (V[j+0] + V[j+1] + V[j+16] + V[j+17]) * 0.25f;
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}
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}
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DCU = stbiw__jpg_processDU(s, &bitBuf, &bitCnt, subU, 8, fdtbl_UV, DCU, UVDC_HT, UVAC_HT);
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DCV = stbiw__jpg_processDU(s, &bitBuf, &bitCnt, subV, 8, fdtbl_UV, DCV, UVDC_HT, UVAC_HT);
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}
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}
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}
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} else {
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for(y = 0; y < height; y += 8) {
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for(x = 0; x < width; x += 8) {
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float Y[64], U[64], V[64];
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for(row = y, pos = 0; row < y+8; ++row) {
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// row >= height => use last input row
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int clamped_row = (row < height) ? row : height - 1;
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int base_p = (stbi__flip_vertically_on_write ? (height-1-clamped_row) : clamped_row)*width*comp;
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for(col = x; col < x+8; ++col, ++pos) {
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// if col >= width => use pixel from last input column
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int p = base_p + ((col < width) ? col : (width-1))*comp;
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float r = dataR[p], g = dataG[p], b = dataB[p];
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Y[pos]= +0.29900f*r + 0.58700f*g + 0.11400f*b - 128;
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U[pos]= -0.16874f*r - 0.33126f*g + 0.50000f*b;
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V[pos]= +0.50000f*r - 0.41869f*g - 0.08131f*b;
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}
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}
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DCY = stbiw__jpg_processDU(s, &bitBuf, &bitCnt, YDU, fdtbl_Y, DCY, YDC_HT, YAC_HT);
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DCU = stbiw__jpg_processDU(s, &bitBuf, &bitCnt, UDU, fdtbl_UV, DCU, UVDC_HT, UVAC_HT);
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DCV = stbiw__jpg_processDU(s, &bitBuf, &bitCnt, VDU, fdtbl_UV, DCV, UVDC_HT, UVAC_HT);
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DCY = stbiw__jpg_processDU(s, &bitBuf, &bitCnt, Y, 8, fdtbl_Y, DCY, YDC_HT, YAC_HT);
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DCU = stbiw__jpg_processDU(s, &bitBuf, &bitCnt, U, 8, fdtbl_UV, DCU, UVDC_HT, UVAC_HT);
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DCV = stbiw__jpg_processDU(s, &bitBuf, &bitCnt, V, 8, fdtbl_UV, DCV, UVDC_HT, UVAC_HT);
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}
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}
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}
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