forked from Minki/linux
[media] vivid-tpg: add helper functions to simplify common calculations
Add helper functions to handle horizontal downscaling and horizontal scaling. Signed-off-by: Hans Verkuil <hans.verkuil@cisco.com> Signed-off-by: Mauro Carvalho Chehab <mchehab@osg.samsung.com>
This commit is contained in:
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51f3096835
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9991deff1a
@ -183,6 +183,9 @@ bool tpg_s_fourcc(struct tpg_data *tpg, u32 fourcc)
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tpg->recalc_colors = true;
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tpg->vdownsampling[0] = 1;
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tpg->hdownsampling[0] = 1;
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tpg->hmask[0] = ~0;
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tpg->hmask[1] = ~0;
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tpg->hmask[2] = ~0;
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switch (fourcc) {
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case V4L2_PIX_FMT_RGB565:
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@ -231,6 +234,7 @@ bool tpg_s_fourcc(struct tpg_data *tpg, u32 fourcc)
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case V4L2_PIX_FMT_NV61:
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tpg->vdownsampling[1] = 1;
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tpg->hdownsampling[1] = 1;
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tpg->hmask[1] = ~1;
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tpg->planes = 2;
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tpg->is_yuv = true;
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break;
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@ -242,6 +246,7 @@ bool tpg_s_fourcc(struct tpg_data *tpg, u32 fourcc)
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case V4L2_PIX_FMT_NV21:
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tpg->vdownsampling[1] = 2;
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tpg->hdownsampling[1] = 1;
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tpg->hmask[1] = ~1;
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tpg->planes = 2;
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tpg->is_yuv = true;
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break;
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@ -249,6 +254,7 @@ bool tpg_s_fourcc(struct tpg_data *tpg, u32 fourcc)
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case V4L2_PIX_FMT_UYVY:
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case V4L2_PIX_FMT_YVYU:
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case V4L2_PIX_FMT_VYUY:
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tpg->hmask[0] = ~1;
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tpg->is_yuv = true;
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break;
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default:
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@ -1116,6 +1122,7 @@ static void tpg_calculate_square_border(struct tpg_data *tpg)
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static void tpg_precalculate_line(struct tpg_data *tpg)
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{
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enum tpg_color contrast;
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u8 pix[TPG_MAX_PLANES][8];
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unsigned pat;
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unsigned p;
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unsigned x;
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@ -1142,7 +1149,6 @@ static void tpg_precalculate_line(struct tpg_data *tpg)
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for (x = 0; x < tpg->scaled_width * 2; x += 2) {
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unsigned real_x = src_x;
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enum tpg_color color1, color2;
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u8 pix[TPG_MAX_PLANES][8];
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real_x = tpg->hflip ? tpg->src_width * 2 - real_x - 2 : real_x;
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color1 = tpg_get_color(tpg, pat, real_x);
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@ -1170,8 +1176,7 @@ static void tpg_precalculate_line(struct tpg_data *tpg)
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for (p = 0; p < tpg->planes; p++) {
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unsigned twopixsize = tpg->twopixelsize[p];
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unsigned hdiv = tpg->hdownsampling[p];
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u8 *pos = tpg->lines[pat][p] +
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(x / hdiv) * twopixsize / 2;
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u8 *pos = tpg->lines[pat][p] + tpg_hdiv(tpg, p, x);
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memcpy(pos, pix[p], twopixsize / hdiv);
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}
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@ -1185,50 +1190,38 @@ static void tpg_precalculate_line(struct tpg_data *tpg)
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unsigned next_pat = (pat + 1) % pat_lines;
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for (p = 1; p < tpg->planes; p++) {
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unsigned twopixsize = tpg->twopixelsize[p];
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unsigned hdiv = tpg->hdownsampling[p];
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unsigned w = tpg_hdiv(tpg, p, tpg->scaled_width * 2);
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u8 *pos1 = tpg->lines[pat][p];
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u8 *pos2 = tpg->lines[next_pat][p];
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u8 *dest = tpg->downsampled_lines[pat][p];
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for (x = 0; x < tpg->scaled_width * 2; x += 2) {
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unsigned offset = (x / hdiv) * twopixsize / 2;
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u8 *pos1 = tpg->lines[pat][p] + offset;
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u8 *pos2 = tpg->lines[next_pat][p] + offset;
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u8 *dest = tpg->downsampled_lines[pat][p] + offset;
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unsigned i;
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for (i = 0; i < twopixsize / hdiv; i++, dest++, pos1++, pos2++)
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*dest = ((u16)*pos1 + (u16)*pos2) / 2;
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}
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for (x = 0; x < w; x++, pos1++, pos2++, dest++)
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*dest = ((u16)*pos1 + (u16)*pos2) / 2;
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}
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}
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}
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for (x = 0; x < tpg->scaled_width; x += 2) {
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u8 pix[TPG_MAX_PLANES][8];
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gen_twopix(tpg, pix, contrast, 0);
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gen_twopix(tpg, pix, contrast, 1);
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for (p = 0; p < tpg->planes; p++) {
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unsigned twopixsize = tpg->twopixelsize[p];
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u8 *pos = tpg->contrast_line[p] + x * twopixsize / 2;
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gen_twopix(tpg, pix, contrast, 0);
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gen_twopix(tpg, pix, contrast, 1);
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for (p = 0; p < tpg->planes; p++) {
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unsigned twopixsize = tpg->twopixelsize[p];
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u8 *pos = tpg->contrast_line[p];
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for (x = 0; x < tpg->scaled_width; x += 2, pos += twopixsize)
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memcpy(pos, pix[p], twopixsize);
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}
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}
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for (x = 0; x < tpg->scaled_width; x += 2) {
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u8 pix[TPG_MAX_PLANES][8];
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gen_twopix(tpg, pix, TPG_COLOR_100_BLACK, 0);
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gen_twopix(tpg, pix, TPG_COLOR_100_BLACK, 1);
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for (p = 0; p < tpg->planes; p++) {
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unsigned twopixsize = tpg->twopixelsize[p];
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u8 *pos = tpg->black_line[p] + x * twopixsize / 2;
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gen_twopix(tpg, pix, TPG_COLOR_100_BLACK, 0);
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gen_twopix(tpg, pix, TPG_COLOR_100_BLACK, 1);
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for (p = 0; p < tpg->planes; p++) {
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unsigned twopixsize = tpg->twopixelsize[p];
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u8 *pos = tpg->black_line[p];
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for (x = 0; x < tpg->scaled_width; x += 2, pos += twopixsize)
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memcpy(pos, pix[p], twopixsize);
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}
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}
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for (x = 0; x < tpg->scaled_width * 2; x += 2) {
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u8 pix[TPG_MAX_PLANES][8];
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gen_twopix(tpg, pix, TPG_COLOR_RANDOM, 0);
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gen_twopix(tpg, pix, TPG_COLOR_RANDOM, 1);
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for (p = 0; p < tpg->planes; p++) {
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@ -1238,6 +1231,7 @@ static void tpg_precalculate_line(struct tpg_data *tpg)
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memcpy(pos, pix[p], twopixsize);
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}
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}
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gen_twopix(tpg, tpg->textbg, TPG_COLOR_TEXTBG, 0);
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gen_twopix(tpg, tpg->textbg, TPG_COLOR_TEXTBG, 1);
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gen_twopix(tpg, tpg->textfg, TPG_COLOR_TEXTFG, 0);
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@ -1533,9 +1527,8 @@ void tpg_fill_plane_buffer(struct tpg_data *tpg, v4l2_std_id std, unsigned p, u8
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int hmax = (tpg->compose.height * tpg->perc_fill) / 100;
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int h;
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unsigned twopixsize = tpg->twopixelsize[p];
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unsigned hdiv = tpg->hdownsampling[p];
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unsigned vdiv = tpg->vdownsampling[p];
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unsigned img_width = (tpg->compose.width / hdiv) * twopixsize / 2;
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unsigned img_width = tpg_hdiv(tpg, p, tpg->compose.width);
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unsigned line_offset;
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unsigned left_pillar_width = 0;
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unsigned right_pillar_start = img_width;
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@ -1551,28 +1544,25 @@ void tpg_fill_plane_buffer(struct tpg_data *tpg, v4l2_std_id std, unsigned p, u8
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tpg_recalc(tpg);
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mv_hor_old = (mv_hor_old * tpg->scaled_width / tpg->src_width) & ~1;
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mv_hor_new = (mv_hor_new * tpg->scaled_width / tpg->src_width) & ~1;
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mv_hor_old = tpg_hscale_div(tpg, p, mv_hor_old);
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mv_hor_new = tpg_hscale_div(tpg, p, mv_hor_new);
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wss_width = tpg->crop.left < tpg->src_width / 2 ?
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tpg->src_width / 2 - tpg->crop.left : 0;
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if (wss_width > tpg->crop.width)
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wss_width = tpg->crop.width;
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wss_width = wss_width * tpg->scaled_width / tpg->src_width;
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wss_width = tpg_hscale_div(tpg, p, wss_width);
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vbuf += tpg->compose.left * twopixsize / 2;
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line_offset = tpg->crop.left * tpg->scaled_width / tpg->src_width;
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line_offset = ((line_offset & ~1) / hdiv) * twopixsize / 2;
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vbuf += tpg_hdiv(tpg, p, tpg->compose.left);
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line_offset = tpg_hscale_div(tpg, p, tpg->crop.left);
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if (tpg->crop.left < tpg->border.left) {
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left_pillar_width = tpg->border.left - tpg->crop.left;
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if (left_pillar_width > tpg->crop.width)
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left_pillar_width = tpg->crop.width;
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left_pillar_width = (left_pillar_width * tpg->scaled_width) / tpg->src_width;
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left_pillar_width = ((left_pillar_width & ~1) / hdiv) * twopixsize / 2;
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left_pillar_width = tpg_hscale_div(tpg, p, left_pillar_width);
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}
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if (tpg->crop.left + tpg->crop.width > tpg->border.left + tpg->border.width) {
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right_pillar_start = tpg->border.left + tpg->border.width - tpg->crop.left;
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right_pillar_start = (right_pillar_start * tpg->scaled_width) / tpg->src_width;
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right_pillar_start = ((right_pillar_start & ~1) / hdiv) * twopixsize / 2;
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right_pillar_start = tpg_hscale_div(tpg, p, right_pillar_start);
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if (right_pillar_start > img_width)
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right_pillar_start = img_width;
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}
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@ -1655,10 +1645,8 @@ void tpg_fill_plane_buffer(struct tpg_data *tpg, v4l2_std_id std, unsigned p, u8
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pat_line_old = tpg_get_pat_line(tpg, frame_line_old);
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pat_line_new = tpg_get_pat_line(tpg, frame_line_new);
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linestart_older = tpg->lines[pat_line_old][p] +
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(mv_hor_old / hdiv) * twopixsize / 2;
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linestart_newer = tpg->lines[pat_line_new][p] +
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(mv_hor_new / hdiv) * twopixsize / 2;
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linestart_older = tpg->lines[pat_line_old][p] + mv_hor_old;
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linestart_newer = tpg->lines[pat_line_new][p] + mv_hor_new;
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if (vdiv > 1) {
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unsigned frame_line_next;
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@ -1683,8 +1671,7 @@ void tpg_fill_plane_buffer(struct tpg_data *tpg, v4l2_std_id std, unsigned p, u8
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avg_pat = tpg_pattern_avg(tpg, pat_line_old, pat_line_new);
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if (avg_pat < 0)
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break;
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linestart_older = tpg->downsampled_lines[avg_pat][p] +
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(mv_hor_old / hdiv) * twopixsize / 2;
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linestart_older = tpg->downsampled_lines[avg_pat][p] + mv_hor_old;
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linestart_newer = linestart_older;
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break;
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case V4L2_FIELD_NONE:
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@ -1695,11 +1682,11 @@ void tpg_fill_plane_buffer(struct tpg_data *tpg, v4l2_std_id std, unsigned p, u8
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avg_pat = tpg_pattern_avg(tpg, pat_line_old, pat_line_next_old);
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if (avg_pat >= 0)
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linestart_older = tpg->downsampled_lines[avg_pat][p] +
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(mv_hor_old / hdiv) * twopixsize / 2;
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mv_hor_old;
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avg_pat = tpg_pattern_avg(tpg, pat_line_new, pat_line_next_new);
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if (avg_pat >= 0)
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linestart_newer = tpg->downsampled_lines[avg_pat][p] +
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(mv_hor_new / hdiv) * twopixsize / 2;
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mv_hor_new;
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break;
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}
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}
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@ -1743,22 +1730,10 @@ void tpg_fill_plane_buffer(struct tpg_data *tpg, v4l2_std_id std, unsigned p, u8
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memcpy(vbuf + buf_line * stride, linestart_older, img_width);
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break;
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}
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if (is_tv && !is_60hz && frame_line == 0 && wss_width) {
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/*
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* Replace the first half of the top line of a 50 Hz frame
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* with random data to simulate a WSS signal.
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*/
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u8 *wss = tpg->random_line[p] +
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twopixsize * prandom_u32_max(tpg->src_width / 2);
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memcpy(vbuf + buf_line * stride, wss,
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(wss_width / hdiv) * twopixsize / 2);
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}
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}
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vbuf = orig_vbuf;
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vbuf += (tpg->compose.left / hdiv) * twopixsize / 2;
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vbuf += tpg_hdiv(tpg, p, tpg->compose.left);
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src_y = 0;
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error = 0;
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for (h = 0; h < tpg->compose.height; h++) {
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@ -1781,6 +1756,17 @@ void tpg_fill_plane_buffer(struct tpg_data *tpg, v4l2_std_id std, unsigned p, u8
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buf_line /= vdiv;
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}
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if (is_tv && !is_60hz && frame_line == 0 && wss_width) {
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/*
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* Replace the first half of the top line of a 50 Hz frame
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* with random data to simulate a WSS signal.
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*/
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u8 *wss = tpg->random_line[p] +
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twopixsize * prandom_u32_max(tpg->src_width / 2);
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memcpy(vbuf + buf_line * stride, wss, wss_width);
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}
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if (tpg->show_border && frame_line >= b->top &&
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frame_line < b->top + b->height) {
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unsigned bottom = b->top + b->height - 1;
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@ -1822,14 +1808,12 @@ void tpg_fill_plane_buffer(struct tpg_data *tpg, v4l2_std_id std, unsigned p, u8
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if (c->left + c->width < left + width)
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width -= left + width - c->left - c->width;
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left -= c->left;
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left = (left * tpg->scaled_width) / tpg->src_width;
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left = ((left & ~1) / hdiv) * twopixsize / 2;
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width = (width * tpg->scaled_width) / tpg->src_width;
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width = ((width & ~1) / hdiv) * twopixsize / 2;
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left = tpg_hscale_div(tpg, p, left);
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width = tpg_hscale_div(tpg, p, width);
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memcpy(vbuf + buf_line * stride + left, tpg->contrast_line[p], width);
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}
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if (tpg->insert_sav) {
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unsigned offset = (tpg->compose.width / (6 * hdiv)) * twopixsize;
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unsigned offset = tpg_hdiv(tpg, p, tpg->compose.width / 3);
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u8 *p = vbuf + buf_line * stride + offset;
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unsigned vact = 0, hact = 0;
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@ -1843,7 +1827,7 @@ void tpg_fill_plane_buffer(struct tpg_data *tpg, v4l2_std_id std, unsigned p, u8
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(hact ^ vact ^ f);
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}
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if (tpg->insert_eav) {
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unsigned offset = (tpg->compose.width / (6 * hdiv)) * 2 * twopixsize;
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unsigned offset = tpg_hdiv(tpg, p, tpg->compose.width * 2 / 3);
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u8 *p = vbuf + buf_line * stride + offset;
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unsigned vact = 0, hact = 1;
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@ -142,6 +142,11 @@ struct tpg_data {
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unsigned planes;
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u8 vdownsampling[TPG_MAX_PLANES];
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u8 hdownsampling[TPG_MAX_PLANES];
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/*
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* horizontal positions must be ANDed with this value to enforce
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* correct boundaries for packed YUYV values.
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*/
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unsigned hmask[TPG_MAX_PLANES];
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/* Used to store the colors in native format, either RGB or YUV */
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u8 colors[TPG_COLOR_MAX][3];
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u8 textfg[TPG_MAX_PLANES][8], textbg[TPG_MAX_PLANES][8];
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@ -347,6 +352,24 @@ static inline unsigned tpg_g_twopixelsize(const struct tpg_data *tpg, unsigned p
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return tpg->twopixelsize[plane];
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}
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static inline unsigned tpg_hdiv(const struct tpg_data *tpg,
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unsigned plane, unsigned x)
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{
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return ((x / tpg->hdownsampling[plane]) & tpg->hmask[plane]) *
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tpg->twopixelsize[plane] / 2;
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}
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static inline unsigned tpg_hscale(const struct tpg_data *tpg, unsigned x)
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{
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return (x * tpg->scaled_width) / tpg->src_width;
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}
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static inline unsigned tpg_hscale_div(const struct tpg_data *tpg,
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unsigned plane, unsigned x)
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{
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return tpg_hdiv(tpg, plane, tpg_hscale(tpg, x));
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}
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static inline unsigned tpg_g_bytesperline(const struct tpg_data *tpg, unsigned plane)
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{
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return tpg->bytesperline[plane];
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