82 int *is_packed_rgba,
uint8_t rgba_map_ptr[4])
95 if (*is_packed_rgba) {
97 for (i = 0; i < 4; i++)
98 dst_color[rgba_map[i]] = rgba_color[i];
103 for (i = 0; i <
w; i++)
104 memcpy(line[0] + i * pixel_step[0], dst_color, pixel_step[0]);
106 memcpy(rgba_map_ptr, rgba_map,
sizeof(rgba_map[0]) * 4);
110 dst_color[0] =
RGB_TO_Y_CCIR(rgba_color[0], rgba_color[1], rgba_color[2]);
111 dst_color[1] =
RGB_TO_U_CCIR(rgba_color[0], rgba_color[1], rgba_color[2], 0);
112 dst_color[2] =
RGB_TO_V_CCIR(rgba_color[0], rgba_color[1], rgba_color[2], 0);
113 dst_color[3] = rgba_color[3];
115 for (plane = 0; plane < 4; plane++) {
117 int hsub1 = (plane == 1 || plane == 2) ? hsub : 0;
119 pixel_step[
plane] = 1;
123 while(plane && line[plane-1])
127 memset(line[plane], dst_color[plane], line_size);
136 int hsub,
int vsub,
int x,
int y,
int w,
int h)
141 for (plane = 0; plane < 4 && dst[
plane]; plane++) {
142 int hsub1 = plane == 1 || plane == 2 ? hsub : 0;
143 int vsub1 = plane == 1 || plane == 2 ? vsub : 0;
147 p = dst[
plane] + (y >> vsub1) * dst_linesize[plane];
148 for (i = 0; i <
height; i++) {
149 memcpy(p + (x >> hsub1) * pixelstep[plane],
150 src[plane], width * pixelstep[plane]);
151 p += dst_linesize[
plane];
157 uint8_t *
src[4],
int src_linesize[4],
int pixelstep[4],
158 int hsub,
int vsub,
int x,
int y,
int y2,
int w,
int h)
163 for (plane = 0; plane < 4 && dst[
plane]; plane++) {
164 int hsub1 = plane == 1 || plane == 2 ? hsub : 0;
165 int vsub1 = plane == 1 || plane == 2 ? vsub : 0;
169 p = dst[
plane] + (y >> vsub1) * dst_linesize[plane];
170 for (i = 0; i <
height; i++) {
171 memcpy(p + (x >> hsub1) * pixelstep[plane],
172 src[plane] + src_linesize[plane]*(i+(y2>>vsub1)), width * pixelstep[plane]);
173 p += dst_linesize[
plane];
182 unsigned i, nb_planes = 0;
185 if (!desc || !desc->
name)
201 if (pixelstep[c->
plane] != 0 &&
204 if (pixelstep[c->
plane] == 6 &&
208 if (pixelstep[c->
plane] >= 8)
212 memset(draw, 0,
sizeof(*draw));
231 if (rgba != color->
rgba)
232 memcpy(color->
rgba, rgba,
sizeof(color->
rgba));
236 for (i = 0; i < 4; i++) {
237 color->
comp[0].
u8[rgba_map[i]] = rgba[i];
239 color->
comp[0].
u16[rgba_map[i]] = color->
comp[0].
u8[rgba_map[i]] << 8;
243 for (i = 0; i < 4; i++) {
244 color->
comp[rgba_map[i]].
u8[0] = rgba[i];
255 color->
comp[3].
u8[0] = rgba[3];
256 #define EXPAND(compn) \ 257 if (desc->comp[compn].depth > 8) \ 258 color->comp[desc->comp[compn].plane].u16[desc->comp[compn].offset] = \ 259 color->comp[desc->comp[compn].plane].u8[desc->comp[compn].offset] << \ 260 (draw->desc->comp[compn].depth + draw->desc->comp[compn].shift - 8) 273 color->
comp[1].
u8[0] = rgba[3];
277 "Color conversion not implemented for %s\n", draw->
desc->
name);
278 memset(color, 128,
sizeof(*color));
283 int plane,
int x,
int y)
286 (y >> draw->
vsub[
plane]) * linesize[plane] +
291 uint8_t *dst[],
int dst_linesize[],
293 int dst_x,
int dst_y,
int src_x,
int src_y,
296 int plane, y, wp, hp;
299 for (plane = 0; plane < draw->
nb_planes; plane++) {
300 p =
pointer_at(draw, src, src_linesize, plane, src_x, src_y);
301 q =
pointer_at(draw, dst, dst_linesize, plane, dst_x, dst_y);
304 for (y = 0; y < hp; y++) {
306 p += src_linesize[
plane];
307 q += dst_linesize[
plane];
313 uint8_t *dst[],
int dst_linesize[],
314 int dst_x,
int dst_y,
int w,
int h)
316 int plane, x, y, wp, hp;
320 for (plane = 0; plane < draw->
nb_planes; plane++) {
321 p0 =
pointer_at(draw, dst, dst_linesize, plane, dst_x, dst_y);
334 for (x = 0; x < wp; x++) {
340 p = p0 + dst_linesize[
plane];
341 for (y = 1; y < hp; y++) {
343 p += dst_linesize[
plane];
374 int mask = (1 << sub) - 1;
376 *start = (-*x) & mask;
378 *start =
FFMIN(*start, *w);
386 return (draw->
comp_mask[plane] >> comp) & 1;
393 int dx,
int w,
unsigned hsub,
int left,
int right)
395 unsigned asrc = alpha *
src;
396 unsigned tau = 0x1010101 -
alpha;
400 unsigned suba = (left *
alpha) >> hsub;
401 *dst = (*dst * (0x1010101 - suba) + src * suba) >> 24;
404 for (x = 0; x <
w; x++) {
405 *dst = (*dst * tau + asrc) >> 24;
409 unsigned suba = (right *
alpha) >> hsub;
410 *dst = (*dst * (0x1010101 - suba) + src * suba) >> 24;
415 int dx,
int w,
unsigned hsub,
int left,
int right)
417 unsigned asrc = alpha *
src;
418 unsigned tau = 0x10001 -
alpha;
422 unsigned suba = (left *
alpha) >> hsub;
424 AV_WL16(dst, (value * (0x10001 - suba) + src * suba) >> 16);
427 for (x = 0; x <
w; x++) {
429 AV_WL16(dst, (value * tau + asrc) >> 16);
433 unsigned suba = (right *
alpha) >> hsub;
435 AV_WL16(dst, (value * (0x10001 - suba) + src * suba) >> 16);
440 uint8_t *dst[],
int dst_linesize[],
441 int dst_w,
int dst_h,
442 int x0,
int y0,
int w,
int h)
445 int w_sub, h_sub, x_sub, y_sub, left, right, top, bottom, y;
451 if (w <= 0 || h <= 0 || !color->rgba[3])
455 alpha = 0x10203 * color->
rgba[3] + 0x2;
458 alpha = 0x101 * color->
rgba[3] + 0x2;
461 nb_planes += !nb_planes;
462 for (plane = 0; plane < nb_planes; plane++) {
464 p0 =
pointer_at(draw, dst, dst_linesize, plane, x0, y0);
471 for (comp = 0; comp < nb_comp; comp++) {
481 draw->
hsub[plane], left, right);
485 draw->
hsub[plane], left, right);
487 p += dst_linesize[
plane];
490 for (y = 0; y < h_sub; y++) {
493 draw->
hsub[plane], left, right);
494 p += dst_linesize[
plane];
497 for (y = 0; y < h_sub; y++) {
500 draw->
hsub[plane], left, right);
501 p += dst_linesize[
plane];
508 draw->
hsub[plane], left, right);
512 draw->
hsub[plane], left, right);
520 const uint8_t *
mask,
int mask_linesize,
int l2depth,
521 unsigned w,
unsigned h,
unsigned shift,
unsigned xm0)
523 unsigned xm, x, y, t = 0;
524 unsigned xmshf = 3 - l2depth;
525 unsigned xmmod = 7 >> l2depth;
526 unsigned mbits = (1 << (1 << l2depth)) - 1;
527 unsigned mmult = 255 / mbits;
530 for (y = 0; y <
h; y++) {
532 for (x = 0; x <
w; x++) {
533 t += ((mask[xm >> xmshf] >> ((~xm & xmmod) << l2depth)) & mbits)
537 mask += mask_linesize;
539 alpha = (t >>
shift) * alpha;
540 AV_WL16(dst, ((0x10001 - alpha) * value + alpha * src) >> 16);
544 const uint8_t *
mask,
int mask_linesize,
int l2depth,
545 unsigned w,
unsigned h,
unsigned shift,
unsigned xm0)
547 unsigned xm, x, y, t = 0;
548 unsigned xmshf = 3 - l2depth;
549 unsigned xmmod = 7 >> l2depth;
550 unsigned mbits = (1 << (1 << l2depth)) - 1;
551 unsigned mmult = 255 / mbits;
553 for (y = 0; y <
h; y++) {
555 for (x = 0; x <
w; x++) {
556 t += ((mask[xm >> xmshf] >> ((~xm & xmmod) << l2depth)) & mbits)
560 mask += mask_linesize;
562 alpha = (t >>
shift) * alpha;
563 *dst = ((0x1010101 -
alpha) * *dst + alpha * src) >> 24;
568 const uint8_t *
mask,
int mask_linesize,
int l2depth,
int w,
569 unsigned hsub,
unsigned vsub,
570 int xm,
int left,
int right,
int hband)
576 left, hband, hsub + vsub, xm);
580 for (x = 0; x <
w; x++) {
582 1 << hsub, hband, hsub + vsub, xm);
588 right, hband, hsub + vsub, xm);
593 const uint8_t *
mask,
int mask_linesize,
int l2depth,
int w,
594 unsigned hsub,
unsigned vsub,
595 int xm,
int left,
int right,
int hband)
600 blend_pixel(dst, src, alpha, mask, mask_linesize, l2depth,
601 left, hband, hsub + vsub, xm);
605 for (x = 0; x <
w; x++) {
606 blend_pixel(dst, src, alpha, mask, mask_linesize, l2depth,
607 1 << hsub, hband, hsub + vsub, xm);
612 blend_pixel(dst, src, alpha, mask, mask_linesize, l2depth,
613 right, hband, hsub + vsub, xm);
617 uint8_t *dst[],
int dst_linesize[],
int dst_w,
int dst_h,
618 const uint8_t *
mask,
int mask_linesize,
int mask_w,
int mask_h,
619 int l2depth,
unsigned endianness,
int x0,
int y0)
622 int xm0, ym0, w_sub, h_sub, x_sub, y_sub, left, right, top, bottom, y;
628 mask += ym0 * mask_linesize;
629 if (mask_w <= 0 || mask_h <= 0 || !color->rgba[3])
634 alpha = (0x10307 * color->
rgba[3] + 0x3) >> 8;
636 alpha = (0x101 * color->
rgba[3] + 0x2) >> 8;
639 nb_planes += !nb_planes;
640 for (plane = 0; plane < nb_planes; plane++) {
642 p0 =
pointer_at(draw, dst, dst_linesize, plane, x0, y0);
649 for (comp = 0; comp < nb_comp; comp++) {
659 color->
comp[plane].
u8[comp], alpha,
660 m, mask_linesize, l2depth, w_sub,
661 draw->
hsub[plane], draw->
vsub[plane],
662 xm0, left, right, top);
665 color->
comp[plane].
u16[comp], alpha,
666 m, mask_linesize, l2depth, w_sub,
667 draw->
hsub[plane], draw->
vsub[plane],
668 xm0, left, right, top);
670 p += dst_linesize[
plane];
671 m += top * mask_linesize;
674 for (y = 0; y < h_sub; y++) {
676 color->
comp[plane].
u8[comp], alpha,
677 m, mask_linesize, l2depth, w_sub,
678 draw->
hsub[plane], draw->
vsub[plane],
679 xm0, left, right, 1 << draw->
vsub[plane]);
680 p += dst_linesize[
plane];
684 for (y = 0; y < h_sub; y++) {
686 color->
comp[plane].
u16[comp], alpha,
687 m, mask_linesize, l2depth, w_sub,
688 draw->
hsub[plane], draw->
vsub[plane],
689 xm0, left, right, 1 << draw->
vsub[plane]);
690 p += dst_linesize[
plane];
697 color->
comp[plane].
u8[comp], alpha,
698 m, mask_linesize, l2depth, w_sub,
699 draw->
hsub[plane], draw->
vsub[plane],
700 xm0, left, right, bottom);
703 color->
comp[plane].
u16[comp], alpha,
704 m, mask_linesize, l2depth, w_sub,
705 draw->
hsub[plane], draw->
vsub[plane],
706 xm0, left, right, bottom);
721 value += round_dir ? (1 <<
shift) - 1 : 1 << (shift - 1);
722 return (value >> shift) <<
shift;
AVFilterFormats * ff_draw_supported_pixel_formats(unsigned flags)
Return the list of pixel formats supported by the draw functions.
planar GBR 4:4:4:4 40bpp, little-endian
int plane
Which of the 4 planes contains the component.
static enum AVPixelFormat pix_fmt
static int shift(int a, int b)
static const char * format[]
static float alpha(float a)
const AVPixFmtDescriptor * av_pix_fmt_desc_get(enum AVPixelFormat pix_fmt)
void ff_copy_rectangle2(FFDrawContext *draw, uint8_t *dst[], int dst_linesize[], uint8_t *src[], int src_linesize[], int dst_x, int dst_y, int src_x, int src_y, int w, int h)
Copy a rectangle from an image to another.
packed RGBA 16:16:16:16, 64bpp, 16B, 16G, 16R, 16A, the 2-byte value for each R/G/B/A component is st...
#define AV_LOG_WARNING
Something somehow does not look correct.
packed RGB 8:8:8, 24bpp, RGBRGB...
Memory handling functions.
int av_get_bits_per_pixel(const AVPixFmtDescriptor *pixdesc)
Return the number of bits per pixel used by the pixel format described by pixdesc.
packed RGBA 16:16:16:16, 64bpp, 16B, 16G, 16R, 16A, the 2-byte value for each R/G/B/A component is st...
Various defines for YUV<->RGB conversion.
Convenience header that includes libavutil's core.
planar GBR 4:4:4 36bpp, little-endian
static void blend_line(uint8_t *dst, unsigned src, unsigned alpha, int dx, int w, unsigned hsub, int left, int right)
packed BGR 8:8:8, 32bpp, XBGRXBGR... X=unused/undefined
Y , 12bpp, little-endian.
planar GBR 4:4:4 36bpp, big-endian
uint8_t log2_chroma_w
Amount to shift the luma width right to find the chroma width.
static void clip_interval(int wmax, int *x, int *w, int *dx)
Clip interval [x; x+w[ within [0; wmax[.
int ff_draw_round_to_sub(FFDrawContext *draw, int sub_dir, int round_dir, int value)
Round a dimension according to subsampling.
#define av_assert0(cond)
assert() equivalent, that is always enabled.
planar GBRA 4:4:4:4 64bpp, big-endian
AVComponentDescriptor comp[4]
Parameters that describe how pixels are packed.
#define AV_PIX_FMT_FLAG_ALPHA
The pixel format has an alpha channel.
packed RGB 8:8:8, 32bpp, RGBXRGBX... X=unused/undefined
packed RGB 16:16:16, 48bpp, 16R, 16G, 16B, the 2-byte value for each R/G/B component is stored as lit...
static const uint32_t color[16+AV_CLASS_CATEGORY_NB]
static av_cold int end(AVCodecContext *avctx)
packed RGBA 16:16:16:16, 64bpp, 16R, 16G, 16B, 16A, the 2-byte value for each R/G/B/A component is st...
packed ABGR 8:8:8:8, 32bpp, ABGRABGR...
uint8_t comp_mask[MAX_PLANES]
planar GBR 4:4:4 48bpp, big-endian
Y , 10bpp, little-endian.
planar GBR 4:4:4 27bpp, big-endian
union FFDrawColor::@179 comp[MAX_PLANES]
uint8_t log2_chroma_h
Amount to shift the luma height right to find the chroma height.
static const uint16_t mask[17]
like NV12, with 16bpp per component, big-endian
#define AV_PIX_FMT_FLAG_RGB
The pixel format contains RGB-like data (as opposed to YUV/grayscale).
packed BGRA 8:8:8:8, 32bpp, BGRABGRA...
static void blend_line16(uint8_t *dst, unsigned src, unsigned alpha, int dx, int w, unsigned hsub, int left, int right)
void ff_draw_color(FFDrawContext *draw, FFDrawColor *color, const uint8_t rgba[4])
Prepare a color.
simple assert() macros that are a bit more flexible than ISO C assert().
static void blend_line_hv(uint8_t *dst, int dst_delta, unsigned src, unsigned alpha, const uint8_t *mask, int mask_linesize, int l2depth, int w, unsigned hsub, unsigned vsub, int xm, int left, int right, int hband)
like NV12, with 16bpp per component, little-endian
like NV12, with 10bpp per component, data in the high bits, zeros in the low bits, big-endian
packed ARGB 8:8:8:8, 32bpp, ARGBARGB...
packed RGB 16:16:16, 48bpp, 16B, 16G, 16R, the 2-byte value for each R/G/B component is stored as lit...
packed RGBA 8:8:8:8, 32bpp, RGBARGBA...
uint64_t flags
Combination of AV_PIX_FMT_FLAG_...
planar GBR 4:4:4:4 48bpp, big-endian
uint8_t nb_components
The number of components each pixel has, (1-4)
planar GBR 4:4:4:4 40bpp, big-endian
#define FF_DRAW_PROCESS_ALPHA
Process alpha pixel component.
static void blend_line_hv16(uint8_t *dst, int dst_delta, unsigned src, unsigned alpha, const uint8_t *mask, int mask_linesize, int l2depth, int w, unsigned hsub, unsigned vsub, int xm, int left, int right, int hband)
packed RGB 8:8:8, 24bpp, BGRBGR...
like NV12, with 10bpp per component, data in the high bits, zeros in the low bits, little-endian
packed RGB 16:16:16, 48bpp, 16B, 16G, 16R, the 2-byte value for each R/G/B component is stored as big...
static uint8_t * pointer_at(FFDrawContext *draw, uint8_t *data[], int linesize[], int plane, int x, int y)
int ff_fill_rgba_map(uint8_t *rgba_map, enum AVPixelFormat pix_fmt)
static void subsampling_bounds(int sub, int *x, int *w, int *start, int *end)
Decompose w pixels starting at x into start + (w starting at x) + end with x and w aligned on multipl...
static void comp(unsigned char *dst, ptrdiff_t dst_stride, unsigned char *src, ptrdiff_t src_stride, int add)
planar GBR 4:4:4:4 48bpp, little-endian
void ff_blend_mask(FFDrawContext *draw, FFDrawColor *color, uint8_t *dst[], int dst_linesize[], int dst_w, int dst_h, const uint8_t *mask, int mask_linesize, int mask_w, int mask_h, int l2depth, unsigned endianness, int x0, int y0)
Blend an alpha mask with an uniform color.
static void blend_pixel(uint8_t *dst, unsigned src, unsigned alpha, const uint8_t *mask, int mask_linesize, int l2depth, unsigned w, unsigned h, unsigned shift, unsigned xm0)
Descriptor that unambiguously describes how the bits of a pixel are stored in the up to 4 data planes...
planar GBR 4:4:4 30bpp, big-endian
planar GBR 4:4:4 42bpp, little-endian
void ff_blend_rectangle(FFDrawContext *draw, FFDrawColor *color, uint8_t *dst[], int dst_linesize[], int dst_w, int dst_h, int x0, int y0, int w, int h)
Blend a rectangle with an uniform color.
void ff_copy_rectangle(uint8_t *dst[4], int dst_linesize[4], uint8_t *src[4], int src_linesize[4], int pixelstep[4], int hsub, int vsub, int x, int y, int y2, int w, int h)
packed BGR 8:8:8, 32bpp, BGRXBGRX... X=unused/undefined
int ff_draw_init(FFDrawContext *draw, enum AVPixelFormat format, unsigned flags)
Init a draw context.
planar GBR 4:4:4 42bpp, big-endian
static int component_used(FFDrawContext *draw, int plane, int comp)
#define RGB_TO_U_CCIR(r1, g1, b1, shift)
int offset
Number of elements before the component of the first pixel.
#define RGB_TO_V_CCIR(r1, g1, b1, shift)
planar GBRA 4:4:4:4 32bpp
planar GBR 4:4:4 27bpp, little-endian
packed RGB 16:16:16, 48bpp, 16R, 16G, 16B, the 2-byte value for each R/G/B component is stored as big...
static void blend_pixel16(uint8_t *dst, unsigned src, unsigned alpha, const uint8_t *mask, int mask_linesize, int l2depth, unsigned w, unsigned h, unsigned shift, unsigned xm0)
#define AV_PIX_FMT_FLAG_BE
Pixel format is big-endian.
#define RGB_TO_Y_CCIR(r, g, b)
int ff_fill_line_with_color(uint8_t *line[4], int pixel_step[4], int w, uint8_t dst_color[4], enum AVPixelFormat pix_fmt, uint8_t rgba_color[4], int *is_packed_rgba, uint8_t rgba_map_ptr[4])
Y , 16bpp, little-endian.
int pixelstep[MAX_PLANES]
16 bits gray, 16 bits alpha (little-endian)
const struct AVPixFmtDescriptor * desc
void ff_fill_rectangle(FFDrawContext *draw, FFDrawColor *color, uint8_t *dst[], int dst_linesize[], int dst_x, int dst_y, int w, int h)
Fill a rectangle with an uniform color.
planar GBR 4:4:4 48bpp, little-endian
#define av_malloc_array(a, b)
void ff_draw_rectangle(uint8_t *dst[4], int dst_linesize[4], uint8_t *src[4], int pixelstep[4], int hsub, int vsub, int x, int y, int w, int h)
int depth
Number of bits in the component.
planar GBRA 4:4:4:4 64bpp, little-endian
packed RGB 8:8:8, 32bpp, XRGBXRGB... X=unused/undefined
AVPixelFormat
Pixel format.
#define AV_PIX_FMT_FLAG_PLANAR
At least one pixel component is not in the first data plane.
enum AVPixelFormat format
planar GBR 4:4:4 30bpp, little-endian
packed RGBA 16:16:16:16, 64bpp, 16R, 16G, 16B, 16A, the 2-byte value for each R/G/B/A component is st...
int step
Number of elements between 2 horizontally consecutive pixels.
#define AV_CEIL_RSHIFT(a, b)