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https://github.com/FFmpeg/FFmpeg.git
synced 2025-01-24 13:56:33 +02:00
hevc: Change type of array stride parameters to ptrdiff_t
ptrdiff_t is the correct type for array strides and similar.
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@ -1437,11 +1437,11 @@ static int hls_pcm_sample(HEVCContext *s, int x0, int y0, int log2_cb_size)
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HEVCLocalContext *lc = &s->HEVClc;
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GetBitContext gb;
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int cb_size = 1 << log2_cb_size;
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int stride0 = s->frame->linesize[0];
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ptrdiff_t stride0 = s->frame->linesize[0];
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ptrdiff_t stride1 = s->frame->linesize[1];
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ptrdiff_t stride2 = s->frame->linesize[2];
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uint8_t *dst0 = &s->frame->data[0][y0 * stride0 + (x0 << s->ps.sps->pixel_shift)];
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int stride1 = s->frame->linesize[1];
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uint8_t *dst1 = &s->frame->data[1][(y0 >> s->ps.sps->vshift[1]) * stride1 + ((x0 >> s->ps.sps->hshift[1]) << s->ps.sps->pixel_shift)];
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int stride2 = s->frame->linesize[2];
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uint8_t *dst2 = &s->frame->data[2][(y0 >> s->ps.sps->vshift[2]) * stride2 + ((x0 >> s->ps.sps->hshift[2]) << s->ps.sps->pixel_shift)];
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int length = cb_size * cb_size * s->ps.sps->pcm.bit_depth + ((cb_size * cb_size) >> 1) * s->ps.sps->pcm.bit_depth_chroma;
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@ -1520,7 +1520,7 @@ static void luma_mc(HEVCContext *s, int16_t *dst, ptrdiff_t dststride,
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if (x_off < extra_left || y_off < extra_top ||
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x_off >= pic_width - block_w - ff_hevc_qpel_extra_after[mx] ||
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y_off >= pic_height - block_h - ff_hevc_qpel_extra_after[my]) {
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const int edge_emu_stride = EDGE_EMU_BUFFER_STRIDE << s->ps.sps->pixel_shift;
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const ptrdiff_t edge_emu_stride = EDGE_EMU_BUFFER_STRIDE << s->ps.sps->pixel_shift;
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int offset = extra_top * srcstride + (extra_left << s->ps.sps->pixel_shift);
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int buf_offset = extra_top *
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edge_emu_stride + (extra_left << s->ps.sps->pixel_shift);
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@ -1575,7 +1575,7 @@ static void chroma_mc(HEVCContext *s, int16_t *dst1, int16_t *dst2,
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if (x_off < EPEL_EXTRA_BEFORE || y_off < EPEL_EXTRA_AFTER ||
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x_off >= pic_width - block_w - EPEL_EXTRA_AFTER ||
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y_off >= pic_height - block_h - EPEL_EXTRA_AFTER) {
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const int edge_emu_stride = EDGE_EMU_BUFFER_STRIDE << s->ps.sps->pixel_shift;
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const ptrdiff_t edge_emu_stride = EDGE_EMU_BUFFER_STRIDE << s->ps.sps->pixel_shift;
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int offset1 = EPEL_EXTRA_BEFORE * (src1stride + (1 << s->ps.sps->pixel_shift));
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int buf_offset1 = EPEL_EXTRA_BEFORE *
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(edge_emu_stride + (1 << s->ps.sps->pixel_shift));
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@ -1687,7 +1687,7 @@ static void hls_prediction_unit(HEVCContext *s, int x0, int y0,
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RefPicList *refPicList = s->ref->refPicList;
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HEVCFrame *ref0, *ref1;
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int tmpstride = MAX_PB_SIZE * sizeof(int16_t);
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ptrdiff_t tmpstride = MAX_PB_SIZE * sizeof(int16_t);
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uint8_t *dst0 = POS(0, x0, y0);
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uint8_t *dst1 = POS(1, x0, y0);
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@ -172,7 +172,7 @@ static int get_qPy(HEVCContext *s, int xC, int yC)
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}
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static void copy_CTB(uint8_t *dst, uint8_t *src,
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int width, int height, int stride)
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int width, int height, ptrdiff_t stride)
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{
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int i;
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@ -273,7 +273,7 @@ static void sao_filter_CTB(HEVCContext *s, int x, int y)
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int chroma = c_idx ? 1 : 0;
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int x0 = x >> chroma;
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int y0 = y >> chroma;
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int stride = s->frame->linesize[c_idx];
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ptrdiff_t stride = s->frame->linesize[c_idx];
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int ctb_size = (1 << (s->ps.sps->log2_ctb_size)) >> s->ps.sps->hshift[c_idx];
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int width = FFMIN(ctb_size,
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(s->ps.sps->width >> s->ps.sps->hshift[c_idx]) - x0);
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@ -396,7 +396,7 @@ static void FUNC(sao_edge_filter_0)(uint8_t *_dst, uint8_t *_src,
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if (sao_eo_class != SAO_EO_VERT) {
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if (borders[0]) {
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int offset_val = sao_offset_val[0];
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int y_stride = 0;
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ptrdiff_t y_stride = 0;
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for (y = 0; y < height; y++) {
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dst[y_stride] = av_clip_pixel(src[y_stride] + offset_val);
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y_stride += stride;
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@ -405,7 +405,7 @@ static void FUNC(sao_edge_filter_0)(uint8_t *_dst, uint8_t *_src,
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}
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if (borders[2]) {
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int offset_val = sao_offset_val[0];
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int x_stride = width - 1;
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ptrdiff_t x_stride = width - 1;
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for (x = 0; x < height; x++) {
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dst[x_stride] = av_clip_pixel(src[x_stride] + offset_val);
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x_stride += stride;
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@ -422,21 +422,21 @@ static void FUNC(sao_edge_filter_0)(uint8_t *_dst, uint8_t *_src,
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}
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if (borders[3]) {
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int offset_val = sao_offset_val[0];
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int y_stride = stride * (height - 1);
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ptrdiff_t y_stride = stride * (height - 1);
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for (x = init_x; x < width; x++)
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dst[x + y_stride] = av_clip_pixel(src[x + y_stride] + offset_val);
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height--;
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}
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}
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{
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int y_stride = init_y * stride;
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ptrdiff_t y_stride = init_y * stride;
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int pos_0_0 = pos[sao_eo_class][0][0];
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int pos_0_1 = pos[sao_eo_class][0][1];
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int pos_1_0 = pos[sao_eo_class][1][0];
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int pos_1_1 = pos[sao_eo_class][1][1];
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int y_stride_0_1 = (init_y + pos_0_1) * stride;
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int y_stride_1_1 = (init_y + pos_1_1) * stride;
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ptrdiff_t y_stride_0_1 = (init_y + pos_0_1) * stride;
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ptrdiff_t y_stride_1_1 = (init_y + pos_1_1) * stride;
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for (y = init_y; y < height; y++) {
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for (x = init_x; x < width; x++) {
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int diff0 = CMP(src[x + y_stride], src[x + pos_0_0 + y_stride_0_1]);
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@ -503,7 +503,7 @@ static void FUNC(sao_edge_filter_1)(uint8_t *_dst, uint8_t *_src,
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if (sao_eo_class != SAO_EO_VERT) {
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if (borders[0]) {
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int offset_val = sao_offset_val[0];
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int y_stride = 0;
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ptrdiff_t y_stride = 0;
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for (y = 0; y < height; y++) {
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dst[y_stride] = av_clip_pixel(src[y_stride] + offset_val);
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y_stride += stride;
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@ -512,7 +512,7 @@ static void FUNC(sao_edge_filter_1)(uint8_t *_dst, uint8_t *_src,
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}
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if (borders[2]) {
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int offset_val = sao_offset_val[0];
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int x_stride = width - 1;
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ptrdiff_t x_stride = width - 1;
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for (x = 0; x < height; x++) {
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dst[x_stride] = av_clip_pixel(src[x_stride] + offset_val);
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x_stride += stride;
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@ -521,14 +521,14 @@ static void FUNC(sao_edge_filter_1)(uint8_t *_dst, uint8_t *_src,
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}
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}
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{
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int y_stride = init_y * stride;
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ptrdiff_t y_stride = init_y * stride;
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int pos_0_0 = pos[sao_eo_class][0][0];
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int pos_0_1 = pos[sao_eo_class][0][1];
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int pos_1_0 = pos[sao_eo_class][1][0];
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int pos_1_1 = pos[sao_eo_class][1][1];
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int y_stride_0_1 = (init_y + pos_0_1) * stride;
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int y_stride_1_1 = (init_y + pos_1_1) * stride;
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ptrdiff_t y_stride_0_1 = (init_y + pos_0_1) * stride;
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ptrdiff_t y_stride_1_1 = (init_y + pos_1_1) * stride;
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for (y = init_y; y < height; y++) {
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for (x = init_x; x < width; x++) {
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int diff0 = CMP(src[x + y_stride], src[x + pos_0_0 + y_stride_0_1]);
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@ -601,21 +601,21 @@ static void FUNC(sao_edge_filter_2)(uint8_t *_dst, uint8_t *_src,
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}
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if (borders[3]) {
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int offset_val = sao_offset_val[0];
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int y_stride = stride * (height - 1);
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ptrdiff_t y_stride = stride * (height - 1);
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for (x = init_x; x < width; x++)
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dst[x + y_stride] = av_clip_pixel(src[x + y_stride] + offset_val);
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height--;
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}
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}
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{
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int y_stride = init_y * stride;
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ptrdiff_t y_stride = init_y * stride;
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int pos_0_0 = pos[sao_eo_class][0][0];
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int pos_0_1 = pos[sao_eo_class][0][1];
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int pos_1_0 = pos[sao_eo_class][1][0];
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int pos_1_1 = pos[sao_eo_class][1][1];
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int y_stride_0_1 = (init_y + pos_0_1) * stride;
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int y_stride_1_1 = (init_y + pos_1_1) * stride;
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ptrdiff_t y_stride_0_1 = (init_y + pos_0_1) * stride;
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ptrdiff_t y_stride_1_1 = (init_y + pos_1_1) * stride;
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for (y = init_y; y < height; y++) {
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for (x = init_x; x < width; x++) {
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int diff0 = CMP(src[x + y_stride], src[x + pos_0_0 + y_stride_0_1]);
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@ -681,14 +681,14 @@ static void FUNC(sao_edge_filter_3)(uint8_t *_dst, uint8_t *_src,
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init_y = init_x = 0;
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{
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int y_stride = init_y * stride;
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ptrdiff_t y_stride = init_y * stride;
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int pos_0_0 = pos[sao_eo_class][0][0];
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int pos_0_1 = pos[sao_eo_class][0][1];
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int pos_1_0 = pos[sao_eo_class][1][0];
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int pos_1_1 = pos[sao_eo_class][1][1];
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int y_stride_0_1 = (init_y + pos_0_1) * stride;
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int y_stride_1_1 = (init_y + pos_1_1) * stride;
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ptrdiff_t y_stride_0_1 = (init_y + pos_0_1) * stride;
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ptrdiff_t y_stride_1_1 = (init_y + pos_1_1) * stride;
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for (y = init_y; y < height; y++) {
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for (x = init_x; x < width; x++) {
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@ -105,8 +105,8 @@ static void check_unweighted_pred(HEVCDSPContext *h, uint8_t *dst0, uint8_t *dst
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for (i = 0; i < FF_ARRAY_ELEMS(pred_widths); i++) {
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const int width = pred_widths[i];
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const int srcstride = FFALIGN(width, 16) * sizeof(*src0);
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const int dststride = FFALIGN(width, 16) * PIXEL_SIZE(bit_depth);
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const ptrdiff_t srcstride = FFALIGN(width, 16) * sizeof(*src0);
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const ptrdiff_t dststride = FFALIGN(width, 16) * PIXEL_SIZE(bit_depth);
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{
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declare_func(void, uint8_t *dst, ptrdiff_t dststride, int16_t *src, ptrdiff_t srcstride, int height);
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@ -177,8 +177,8 @@ static void check_weighted_pred(HEVCDSPContext *h, uint8_t *dst0, uint8_t *dst1,
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for (i = 0; i < FF_ARRAY_ELEMS(pred_widths); i++) {
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const int width = pred_widths[i];
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const int srcstride = FFALIGN(width, 16) * sizeof(*src0);
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const int dststride = FFALIGN(width, 16) * PIXEL_SIZE(bit_depth);
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const ptrdiff_t srcstride = FFALIGN(width, 16) * sizeof(*src0);
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const ptrdiff_t dststride = FFALIGN(width, 16) * PIXEL_SIZE(bit_depth);
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{
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declare_func(void, uint8_t denom, int16_t weight, int16_t offset,
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@ -216,8 +216,8 @@ static void check_epel(HEVCDSPContext *h, int16_t *dst0, int16_t *dst1,
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for (j = 0; j < 2; j++) {
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for (k = 0; k < FF_ARRAY_ELEMS(h->put_hevc_epel[i][j]); k++) {
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int width = pred_widths[k] / 2;
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int dststride = FFALIGN(width, 16) * sizeof(*dst0);
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int srcstride = FFALIGN(width + 3, 8) * PIXEL_SIZE(bit_depth);
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ptrdiff_t dststride = FFALIGN(width, 16) * sizeof(*dst0);
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ptrdiff_t srcstride = FFALIGN(width + 3, 8) * PIXEL_SIZE(bit_depth);
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if (!check_func(h->put_hevc_epel[i][j][k], "epel_%s_%d_%d", interp_names[i][j], width, bit_depth))
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continue;
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@ -261,8 +261,8 @@ static void check_qpel(HEVCDSPContext *h, int16_t *dst0, int16_t *dst1,
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for (j = 0; j < 2; j++) {
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for (k = 0; k < FF_ARRAY_ELEMS(h->put_hevc_qpel[i][j]); k++) {
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int width = pred_widths[k];
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int dststride = FFALIGN(width, 16) * sizeof(*dst0);
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int srcstride = FFALIGN(width + 7, 8) * PIXEL_SIZE(bit_depth);
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ptrdiff_t dststride = FFALIGN(width, 16) * sizeof(*dst0);
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ptrdiff_t srcstride = FFALIGN(width + 7, 8) * PIXEL_SIZE(bit_depth);
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if (!check_func(h->put_hevc_qpel[i][j][k], "qpel_%s_%d_%d", interp_names[i][j], width, bit_depth))
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continue;
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