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SDL_pixels.c

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883 lines (812 loc) · 23.6 KB
 
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/*
SDL - Simple DirectMedia Layer
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Copyright (C) 1997-2009 Sam Lantinga
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This library is free software; you can redistribute it and/or
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modify it under the terms of the GNU Lesser General Public
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License as published by the Free Software Foundation; either
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version 2.1 of the License, or (at your option) any later version.
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This library is distributed in the hope that it will be useful,
but WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
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Lesser General Public License for more details.
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You should have received a copy of the GNU Lesser General Public
License along with this library; if not, write to the Free Software
Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA
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Sam Lantinga
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slouken@libsdl.org
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*/
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#include "SDL_config.h"
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/* General (mostly internal) pixel/color manipulation routines for SDL */
#include "SDL_endian.h"
#include "SDL_video.h"
#include "SDL_sysvideo.h"
#include "SDL_blit.h"
#include "SDL_pixels_c.h"
#include "SDL_RLEaccel_c.h"
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struct SDL_PaletteWatch
{
SDL_PaletteChangedFunc callback;
void *userdata;
struct SDL_PaletteWatch *next;
};
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/* Helper functions */
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SDL_bool
SDL_PixelFormatEnumToMasks(Uint32 format, int *bpp, Uint32 * Rmask,
Uint32 * Gmask, Uint32 * Bmask, Uint32 * Amask)
{
Uint32 masks[4];
/* Initialize the values here */
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if (SDL_BYTESPERPIXEL(format) <= 2) {
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*bpp = SDL_BITSPERPIXEL(format);
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} else {
*bpp = SDL_BYTESPERPIXEL(format) * 8;
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}
*Rmask = *Gmask = *Bmask = *Amask = 0;
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if (SDL_PIXELTYPE(format) != SDL_PIXELTYPE_PACKED8 &&
SDL_PIXELTYPE(format) != SDL_PIXELTYPE_PACKED16 &&
SDL_PIXELTYPE(format) != SDL_PIXELTYPE_PACKED32) {
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/* Not a format that uses masks */
return SDL_TRUE;
}
switch (SDL_PIXELLAYOUT(format)) {
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case SDL_PACKEDLAYOUT_332:
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masks[0] = 0x00000000;
masks[1] = 0x000000E0;
masks[2] = 0x0000001C;
masks[3] = 0x00000003;
break;
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case SDL_PACKEDLAYOUT_4444:
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masks[0] = 0x0000F000;
masks[1] = 0x00000F00;
masks[2] = 0x000000F0;
masks[3] = 0x0000000F;
break;
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case SDL_PACKEDLAYOUT_1555:
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masks[0] = 0x00008000;
masks[1] = 0x00007C00;
masks[2] = 0x000003E0;
masks[3] = 0x0000001F;
break;
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case SDL_PACKEDLAYOUT_5551:
masks[0] = 0x0000F800;
masks[1] = 0x000007C0;
masks[2] = 0x0000003E;
masks[3] = 0x00000001;
break;
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case SDL_PACKEDLAYOUT_565:
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masks[0] = 0x00000000;
masks[1] = 0x0000F800;
masks[2] = 0x000007E0;
masks[3] = 0x0000001F;
break;
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case SDL_PACKEDLAYOUT_8888:
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masks[0] = 0xFF000000;
masks[1] = 0x00FF0000;
masks[2] = 0x0000FF00;
masks[3] = 0x000000FF;
break;
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case SDL_PACKEDLAYOUT_2101010:
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masks[0] = 0xC0000000;
masks[1] = 0x3FF00000;
masks[2] = 0x000FFC00;
masks[3] = 0x000003FF;
break;
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case SDL_PACKEDLAYOUT_1010102:
masks[0] = 0xFFC00000;
masks[1] = 0x003FF000;
masks[2] = 0x00000FFC;
masks[3] = 0x00000003;
break;
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default:
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SDL_SetError("Unknown pixel format");
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return SDL_FALSE;
}
switch (SDL_PIXELORDER(format)) {
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case SDL_PACKEDORDER_XRGB:
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*Rmask = masks[1];
*Gmask = masks[2];
*Bmask = masks[3];
break;
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case SDL_PACKEDORDER_RGBX:
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*Rmask = masks[0];
*Gmask = masks[1];
*Bmask = masks[2];
break;
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case SDL_PACKEDORDER_ARGB:
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*Amask = masks[0];
*Rmask = masks[1];
*Gmask = masks[2];
*Bmask = masks[3];
break;
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case SDL_PACKEDORDER_RGBA:
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*Rmask = masks[0];
*Gmask = masks[1];
*Bmask = masks[2];
*Amask = masks[3];
break;
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case SDL_PACKEDORDER_XBGR:
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*Bmask = masks[1];
*Gmask = masks[2];
*Rmask = masks[3];
break;
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case SDL_PACKEDORDER_BGRX:
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*Bmask = masks[0];
*Gmask = masks[1];
*Rmask = masks[2];
break;
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case SDL_PACKEDORDER_BGRA:
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*Bmask = masks[0];
*Gmask = masks[1];
*Rmask = masks[2];
*Amask = masks[3];
break;
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case SDL_PACKEDORDER_ABGR:
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*Amask = masks[0];
*Bmask = masks[1];
*Gmask = masks[2];
*Rmask = masks[3];
break;
default:
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SDL_SetError("Unknown pixel format");
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return SDL_FALSE;
}
return SDL_TRUE;
}
Uint32
SDL_MasksToPixelFormatEnum(int bpp, Uint32 Rmask, Uint32 Gmask, Uint32 Bmask,
Uint32 Amask)
{
switch (bpp) {
case 8:
switch (Rmask) {
case 0:
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return SDL_PIXELFORMAT_INDEX8;
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case 0xE0:
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return SDL_PIXELFORMAT_RGB332;
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}
break;
case 12:
switch (Rmask) {
case 0x0F00:
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return SDL_PIXELFORMAT_RGB444;
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}
break;
case 15:
switch (Rmask) {
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case 0x001F:
return SDL_PIXELFORMAT_BGR555;
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case 0x7C00:
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return SDL_PIXELFORMAT_RGB555;
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}
break;
case 16:
switch (Rmask) {
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case 0x000F:
return SDL_PIXELFORMAT_ABGR4444;
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case 0x001F:
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if (Gmask == 0x07E0) {
return SDL_PIXELFORMAT_BGR565;
}
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return SDL_PIXELFORMAT_ABGR1555;
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case 0x0F00:
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return SDL_PIXELFORMAT_ARGB4444;
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case 0x7C00:
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return SDL_PIXELFORMAT_ARGB1555;
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case 0xF800:
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return SDL_PIXELFORMAT_RGB565;
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}
break;
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case 24:
switch (Rmask) {
case 0x00FF0000:
return SDL_PIXELFORMAT_RGB888;
case 0x000000FF:
return SDL_PIXELFORMAT_BGR888;
case 0x00000000:
/* FIXME: At this point we can't distinguish */
/* if this format is RGB24 or BGR24 */
return SDL_PIXELFORMAT_RGB24;
}
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case 32:
switch (Rmask) {
case 0xFF000000:
if (Amask == 0x000000FF) {
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return SDL_PIXELFORMAT_RGBA8888;
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}
break;
case 0x00FF0000:
if (Amask == 0xFF000000) {
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return SDL_PIXELFORMAT_ARGB8888;
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} else {
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return SDL_PIXELFORMAT_RGB888;
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}
break;
case 0x0000FF00:
if (Amask == 0x000000FF) {
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return SDL_PIXELFORMAT_BGRA8888;
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}
break;
case 0x000000FF:
if (Amask == 0xFF000000) {
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return SDL_PIXELFORMAT_ABGR8888;
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} else {
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return SDL_PIXELFORMAT_BGR888;
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}
break;
case 0x3FF00000:
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return SDL_PIXELFORMAT_ARGB2101010;
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}
}
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return SDL_PIXELFORMAT_UNKNOWN;
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}
SDL_Palette *
SDL_AllocPalette(int ncolors)
{
SDL_Palette *palette;
palette = (SDL_Palette *) SDL_malloc(sizeof(*palette));
if (!palette) {
SDL_OutOfMemory();
return NULL;
}
palette->colors =
(SDL_Color *) SDL_malloc(ncolors * sizeof(*palette->colors));
if (!palette->colors) {
SDL_free(palette);
return NULL;
}
palette->ncolors = ncolors;
palette->watch = NULL;
palette->refcount = 1;
SDL_memset(palette->colors, 0xFF, ncolors * sizeof(*palette->colors));
return palette;
}
int
SDL_AddPaletteWatch(SDL_Palette * palette, SDL_PaletteChangedFunc callback,
void *userdata)
{
SDL_PaletteWatch *watch;
if (!palette) {
return -1;
}
watch = (SDL_PaletteWatch *) SDL_malloc(sizeof(*watch));
if (!watch) {
SDL_OutOfMemory();
return -1;
}
watch->callback = callback;
watch->userdata = userdata;
watch->next = palette->watch;
palette->watch = watch;
++palette->refcount;
return 0;
}
void
SDL_DelPaletteWatch(SDL_Palette * palette, SDL_PaletteChangedFunc callback,
void *userdata)
{
SDL_PaletteWatch *prev, *watch;
if (!palette) {
return;
}
for (prev = NULL, watch = palette->watch; watch;
prev = watch, watch = watch->next) {
if (watch->callback == callback && watch->userdata == userdata) {
if (prev) {
prev->next = watch->next;
} else {
palette->watch = watch->next;
}
SDL_free(watch);
SDL_FreePalette(palette);
return;
}
}
}
int
SDL_SetPaletteColors(SDL_Palette * palette, const SDL_Color * colors,
int firstcolor, int ncolors)
{
SDL_PaletteWatch *watch;
int status = 0;
/* Verify the parameters */
if (!palette) {
return -1;
}
if (ncolors > (palette->ncolors - firstcolor)) {
ncolors = (palette->ncolors - firstcolor);
status = -1;
}
if (colors != (palette->colors + firstcolor)) {
SDL_memcpy(palette->colors + firstcolor, colors,
ncolors * sizeof(*colors));
}
for (watch = palette->watch; watch; watch = watch->next) {
if (watch->callback(watch->userdata, palette) < 0) {
status = -1;
}
}
return status;
}
void
SDL_FreePalette(SDL_Palette * palette)
{
if (!palette) {
return;
}
if (--palette->refcount > 0) {
return;
}
if (palette->colors) {
SDL_free(palette->colors);
}
SDL_free(palette);
}
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/*
* Allocate a pixel format structure and fill it according to the given info.
*/
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SDL_PixelFormat *
SDL_AllocFormat(int bpp,
Uint32 Rmask, Uint32 Gmask, Uint32 Bmask, Uint32 Amask)
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{
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SDL_PixelFormat *format;
/* Allocate an empty pixel format structure */
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format = SDL_malloc(sizeof(*format));
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if (format == NULL) {
SDL_OutOfMemory();
return (NULL);
}
/* Set up the format */
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return SDL_InitFormat(format, bpp, Rmask, Gmask, Bmask, Amask);
}
SDL_PixelFormat *
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SDL_InitFormat(SDL_PixelFormat * format, int bpp, Uint32 Rmask, Uint32 Gmask,
Uint32 Bmask, Uint32 Amask)
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{
Uint32 mask;
/* Set up the format */
SDL_zerop(format);
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format->BitsPerPixel = bpp;
format->BytesPerPixel = (bpp + 7) / 8;
if (Rmask || Bmask || Gmask) { /* Packed pixels with custom mask */
format->Rshift = 0;
format->Rloss = 8;
if (Rmask) {
for (mask = Rmask; !(mask & 0x01); mask >>= 1)
++format->Rshift;
for (; (mask & 0x01); mask >>= 1)
--format->Rloss;
}
format->Gshift = 0;
format->Gloss = 8;
if (Gmask) {
for (mask = Gmask; !(mask & 0x01); mask >>= 1)
++format->Gshift;
for (; (mask & 0x01); mask >>= 1)
--format->Gloss;
}
format->Bshift = 0;
format->Bloss = 8;
if (Bmask) {
for (mask = Bmask; !(mask & 0x01); mask >>= 1)
++format->Bshift;
for (; (mask & 0x01); mask >>= 1)
--format->Bloss;
}
format->Ashift = 0;
format->Aloss = 8;
if (Amask) {
for (mask = Amask; !(mask & 0x01); mask >>= 1)
++format->Ashift;
for (; (mask & 0x01); mask >>= 1)
--format->Aloss;
}
format->Rmask = Rmask;
format->Gmask = Gmask;
format->Bmask = Bmask;
format->Amask = Amask;
} else if (bpp > 8) { /* Packed pixels with standard mask */
/* R-G-B */
if (bpp > 24)
bpp = 24;
format->Rloss = 8 - (bpp / 3);
format->Gloss = 8 - (bpp / 3) - (bpp % 3);
format->Bloss = 8 - (bpp / 3);
format->Rshift = ((bpp / 3) + (bpp % 3)) + (bpp / 3);
format->Gshift = (bpp / 3);
format->Bshift = 0;
format->Rmask = ((0xFF >> format->Rloss) << format->Rshift);
format->Gmask = ((0xFF >> format->Gloss) << format->Gshift);
format->Bmask = ((0xFF >> format->Bloss) << format->Bshift);
} else {
/* Palettized formats have no mask info */
format->Rloss = 8;
format->Gloss = 8;
format->Bloss = 8;
format->Aloss = 8;
format->Rshift = 0;
format->Gshift = 0;
format->Bshift = 0;
format->Ashift = 0;
format->Rmask = 0;
format->Gmask = 0;
format->Bmask = 0;
format->Amask = 0;
}
format->palette = NULL;
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return format;
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}
/*
* Change any previous mappings from/to the new surface format
*/
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void
SDL_FormatChanged(SDL_Surface * surface)
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{
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static int format_version = 0;
++format_version;
if (format_version < 0) { /* It wrapped... */
format_version = 1;
}
surface->format_version = format_version;
SDL_InvalidateMap(surface->map);
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}
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/*
* Free a previously allocated format structure
*/
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void
SDL_FreeFormat(SDL_PixelFormat * format)
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{
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if (!format) {
return;
}
SDL_free(format);
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}
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/*
* Calculate an 8-bit (3 red, 3 green, 2 blue) dithered palette of colors
*/
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void
SDL_DitherColors(SDL_Color * colors, int bpp)
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{
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int i;
if (bpp != 8)
return; /* only 8bpp supported right now */
for (i = 0; i < 256; i++) {
int r, g, b;
/* map each bit field to the full [0, 255] interval,
so 0 is mapped to (0, 0, 0) and 255 to (255, 255, 255) */
r = i & 0xe0;
r |= r >> 3 | r >> 6;
colors[i].r = r;
g = (i << 3) & 0xe0;
g |= g >> 3 | g >> 6;
colors[i].g = g;
b = i & 0x3;
b |= b << 2;
b |= b << 4;
colors[i].b = b;
colors[i].unused = SDL_ALPHA_OPAQUE;
}
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}
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/*
* Calculate the pad-aligned scanline width of a surface
*/
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int
SDL_CalculatePitch(SDL_Surface * surface)
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{
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int pitch;
/* Surface should be 4-byte aligned for speed */
pitch = surface->w * surface->format->BytesPerPixel;
switch (surface->format->BitsPerPixel) {
case 1:
pitch = (pitch + 7) / 8;
break;
case 4:
pitch = (pitch + 1) / 2;
break;
default:
break;
}
pitch = (pitch + 3) & ~3; /* 4-byte aligning */
return (pitch);
Apr 26, 2001
Apr 26, 2001
554
}
Jul 10, 2006
Jul 10, 2006
555
Apr 26, 2001
Apr 26, 2001
556
557
558
/*
* Match an RGB value to a particular palette index
*/
Jul 10, 2006
Jul 10, 2006
559
560
Uint8
SDL_FindColor(SDL_Palette * pal, Uint8 r, Uint8 g, Uint8 b)
Apr 26, 2001
Apr 26, 2001
561
{
Jul 10, 2006
Jul 10, 2006
562
563
564
565
566
567
568
569
570
571
572
573
574
575
576
577
578
579
580
581
582
583
/* Do colorspace distance matching */
unsigned int smallest;
unsigned int distance;
int rd, gd, bd;
int i;
Uint8 pixel = 0;
smallest = ~0;
for (i = 0; i < pal->ncolors; ++i) {
rd = pal->colors[i].r - r;
gd = pal->colors[i].g - g;
bd = pal->colors[i].b - b;
distance = (rd * rd) + (gd * gd) + (bd * bd);
if (distance < smallest) {
pixel = i;
if (distance == 0) { /* Perfect match! */
break;
}
smallest = distance;
}
}
return (pixel);
Apr 26, 2001
Apr 26, 2001
584
585
586
}
/* Find the opaque pixel value corresponding to an RGB triple */
Jul 10, 2006
Jul 10, 2006
587
Uint32
Sep 10, 2007
Sep 10, 2007
588
SDL_MapRGB(const SDL_PixelFormat * format, Uint8 r, Uint8 g, Uint8 b)
Apr 26, 2001
Apr 26, 2001
589
{
Jul 10, 2006
Jul 10, 2006
590
591
592
593
594
595
596
if (format->palette == NULL) {
return (r >> format->Rloss) << format->Rshift
| (g >> format->Gloss) << format->Gshift
| (b >> format->Bloss) << format->Bshift | format->Amask;
} else {
return SDL_FindColor(format->palette, r, g, b);
}
Apr 26, 2001
Apr 26, 2001
597
598
599
}
/* Find the pixel value corresponding to an RGBA quadruple */
Jul 10, 2006
Jul 10, 2006
600
Uint32
Sep 10, 2007
Sep 10, 2007
601
602
SDL_MapRGBA(const SDL_PixelFormat * format, Uint8 r, Uint8 g, Uint8 b,
Uint8 a)
Apr 26, 2001
Apr 26, 2001
603
{
Jul 10, 2006
Jul 10, 2006
604
605
606
607
608
609
610
611
if (format->palette == NULL) {
return (r >> format->Rloss) << format->Rshift
| (g >> format->Gloss) << format->Gshift
| (b >> format->Bloss) << format->Bshift
| ((a >> format->Aloss) << format->Ashift & format->Amask);
} else {
return SDL_FindColor(format->palette, r, g, b);
}
Apr 26, 2001
Apr 26, 2001
612
613
}
Jul 10, 2006
Jul 10, 2006
614
void
Sep 10, 2007
Sep 10, 2007
615
616
SDL_GetRGB(Uint32 pixel, const SDL_PixelFormat * format, Uint8 * r, Uint8 * g,
Uint8 * b)
Apr 26, 2001
Apr 26, 2001
617
{
Sep 10, 2007
Sep 10, 2007
618
if (format->palette == NULL) {
Jul 10, 2006
Jul 10, 2006
619
620
621
622
/*
* This makes sure that the result is mapped to the
* interval [0..255], and the maximum value for each
* component is 255. This is important to make sure
Sep 10, 2007
Sep 10, 2007
623
* that white is indeed reported as (255, 255, 255).
Jul 10, 2006
Jul 10, 2006
624
625
626
627
* This only works for RGB bit fields at least 4 bit
* wide, which is almost always the case.
*/
unsigned v;
Sep 10, 2007
Sep 10, 2007
628
629
630
631
632
633
v = (pixel & format->Rmask) >> format->Rshift;
*r = (v << format->Rloss) + (v >> (8 - (format->Rloss << 1)));
v = (pixel & format->Gmask) >> format->Gshift;
*g = (v << format->Gloss) + (v >> (8 - (format->Gloss << 1)));
v = (pixel & format->Bmask) >> format->Bshift;
*b = (v << format->Bloss) + (v >> (8 - (format->Bloss << 1)));
Jul 10, 2006
Jul 10, 2006
634
} else {
Sep 10, 2007
Sep 10, 2007
635
636
637
*r = format->palette->colors[pixel].r;
*g = format->palette->colors[pixel].g;
*b = format->palette->colors[pixel].b;
Jul 10, 2006
Jul 10, 2006
638
}
Apr 26, 2001
Apr 26, 2001
639
640
}
Jul 10, 2006
Jul 10, 2006
641
void
Sep 10, 2007
Sep 10, 2007
642
643
SDL_GetRGBA(Uint32 pixel, const SDL_PixelFormat * format,
Uint8 * r, Uint8 * g, Uint8 * b, Uint8 * a)
Apr 26, 2001
Apr 26, 2001
644
{
Sep 10, 2007
Sep 10, 2007
645
646
647
648
649
650
651
652
653
654
if (format->palette == NULL) {
/*
* This makes sure that the result is mapped to the
* interval [0..255], and the maximum value for each
* component is 255. This is important to make sure
* that white is indeed reported as (255, 255, 255),
* and that opaque alpha is 255.
* This only works for RGB bit fields at least 4 bit
* wide, which is almost always the case.
*/
Jul 10, 2006
Jul 10, 2006
655
unsigned v;
Sep 10, 2007
Sep 10, 2007
656
657
658
659
660
661
662
663
664
665
666
667
v = (pixel & format->Rmask) >> format->Rshift;
*r = (v << format->Rloss) + (v >> (8 - (format->Rloss << 1)));
v = (pixel & format->Gmask) >> format->Gshift;
*g = (v << format->Gloss) + (v >> (8 - (format->Gloss << 1)));
v = (pixel & format->Bmask) >> format->Bshift;
*b = (v << format->Bloss) + (v >> (8 - (format->Bloss << 1)));
if (format->Amask) {
v = (pixel & format->Amask) >> format->Ashift;
*a = (v << format->Aloss) + (v >> (8 - (format->Aloss << 1)));
} else {
*a = SDL_ALPHA_OPAQUE;
}
Jul 10, 2006
Jul 10, 2006
668
} else {
Sep 10, 2007
Sep 10, 2007
669
670
671
672
*r = format->palette->colors[pixel].r;
*g = format->palette->colors[pixel].g;
*b = format->palette->colors[pixel].b;
*a = SDL_ALPHA_OPAQUE;
Jul 10, 2006
Jul 10, 2006
673
}
Apr 26, 2001
Apr 26, 2001
674
675
676
}
/* Apply gamma to a set of colors - this is easy. :) */
Jul 10, 2006
Jul 10, 2006
677
678
679
void
SDL_ApplyGamma(Uint16 * gamma, SDL_Color * colors, SDL_Color * output,
int ncolors)
Apr 26, 2001
Apr 26, 2001
680
{
Jul 10, 2006
Jul 10, 2006
681
int i;
Apr 26, 2001
Apr 26, 2001
682
Jul 10, 2006
Jul 10, 2006
683
684
685
686
687
for (i = 0; i < ncolors; ++i) {
output[i].r = gamma[0 * 256 + colors[i].r] >> 8;
output[i].g = gamma[1 * 256 + colors[i].g] >> 8;
output[i].b = gamma[2 * 256 + colors[i].b] >> 8;
}
Apr 26, 2001
Apr 26, 2001
688
689
690
}
/* Map from Palette to Palette */
Jul 10, 2006
Jul 10, 2006
691
692
static Uint8 *
Map1to1(SDL_Palette * src, SDL_Palette * dst, int *identical)
Apr 26, 2001
Apr 26, 2001
693
{
Jul 10, 2006
Jul 10, 2006
694
695
696
697
698
699
700
701
702
703
704
705
706
707
708
709
710
711
712
713
714
715
716
717
718
719
720
721
Uint8 *map;
int i;
if (identical) {
if (src->ncolors <= dst->ncolors) {
/* If an identical palette, no need to map */
if (src == dst
||
(SDL_memcmp
(src->colors, dst->colors,
src->ncolors * sizeof(SDL_Color)) == 0)) {
*identical = 1;
return (NULL);
}
}
*identical = 0;
}
map = (Uint8 *) SDL_malloc(src->ncolors);
if (map == NULL) {
SDL_OutOfMemory();
return (NULL);
}
for (i = 0; i < src->ncolors; ++i) {
map[i] = SDL_FindColor(dst,
src->colors[i].r, src->colors[i].g,
src->colors[i].b);
}
return (map);
Apr 26, 2001
Apr 26, 2001
722
}
Jul 10, 2006
Jul 10, 2006
723
Apr 26, 2001
Apr 26, 2001
724
/* Map from Palette to BitField */
Jul 10, 2006
Jul 10, 2006
725
static Uint8 *
Aug 18, 2007
Aug 18, 2007
726
727
Map1toN(SDL_PixelFormat * src, Uint8 Rmod, Uint8 Gmod, Uint8 Bmod, Uint8 Amod,
SDL_PixelFormat * dst)
Apr 26, 2001
Apr 26, 2001
728
{
Jul 10, 2006
Jul 10, 2006
729
730
731
732
733
734
735
736
737
738
739
740
741
742
Uint8 *map;
int i;
int bpp;
SDL_Palette *pal = src->palette;
bpp = ((dst->BytesPerPixel == 3) ? 4 : dst->BytesPerPixel);
map = (Uint8 *) SDL_malloc(pal->ncolors * bpp);
if (map == NULL) {
SDL_OutOfMemory();
return (NULL);
}
/* We memory copy to the pixel map so the endianness is preserved */
for (i = 0; i < pal->ncolors; ++i) {
Aug 17, 2007
Aug 17, 2007
743
Uint8 A = Amod;
Aug 18, 2007
Aug 18, 2007
744
745
746
Uint8 R = (Uint8) ((pal->colors[i].r * Rmod) / 255);
Uint8 G = (Uint8) ((pal->colors[i].g * Gmod) / 255);
Uint8 B = (Uint8) ((pal->colors[i].b * Bmod) / 255);
Aug 17, 2007
Aug 17, 2007
747
ASSEMBLE_RGBA(&map[i * bpp], dst->BytesPerPixel, dst, R, G, B, A);
Jul 10, 2006
Jul 10, 2006
748
749
}
return (map);
Apr 26, 2001
Apr 26, 2001
750
}
Jul 10, 2006
Jul 10, 2006
751
Apr 26, 2001
Apr 26, 2001
752
/* Map from BitField to Dithered-Palette to Palette */
Jul 10, 2006
Jul 10, 2006
753
754
static Uint8 *
MapNto1(SDL_PixelFormat * src, SDL_PixelFormat * dst, int *identical)
Apr 26, 2001
Apr 26, 2001
755
{
Jul 10, 2006
Jul 10, 2006
756
757
758
759
760
761
762
763
764
/* Generate a 256 color dither palette */
SDL_Palette dithered;
SDL_Color colors[256];
SDL_Palette *pal = dst->palette;
dithered.ncolors = 256;
SDL_DitherColors(colors, 8);
dithered.colors = colors;
return (Map1to1(&dithered, pal, identical));
Apr 26, 2001
Apr 26, 2001
765
766
}
Jul 10, 2006
Jul 10, 2006
767
768
SDL_BlitMap *
SDL_AllocBlitMap(void)
Apr 26, 2001
Apr 26, 2001
769
{
Jul 10, 2006
Jul 10, 2006
770
771
772
SDL_BlitMap *map;
/* Allocate the empty map */
Jul 22, 2006
Jul 22, 2006
773
map = (SDL_BlitMap *) SDL_calloc(1, sizeof(*map));
Jul 10, 2006
Jul 10, 2006
774
775
776
777
if (map == NULL) {
SDL_OutOfMemory();
return (NULL);
}
Aug 18, 2007
Aug 18, 2007
778
779
780
781
map->info.r = 0xFF;
map->info.g = 0xFF;
map->info.b = 0xFF;
map->info.a = 0xFF;
Jul 10, 2006
Jul 10, 2006
782
783
784
/* It's ready to go */
return (map);
Apr 26, 2001
Apr 26, 2001
785
}
Jul 10, 2006
Jul 10, 2006
786
787
788
void
SDL_InvalidateMap(SDL_BlitMap * map)
Apr 26, 2001
Apr 26, 2001
789
{
Jul 10, 2006
Jul 10, 2006
790
791
792
793
794
if (!map) {
return;
}
map->dst = NULL;
map->format_version = (unsigned int) -1;
Aug 18, 2007
Aug 18, 2007
795
796
797
if (map->info.table) {
SDL_free(map->info.table);
map->info.table = NULL;
Jul 10, 2006
Jul 10, 2006
798
}
Apr 26, 2001
Apr 26, 2001
799
}
Aug 27, 2008
Aug 27, 2008
800
Jul 10, 2006
Jul 10, 2006
801
802
int
SDL_MapSurface(SDL_Surface * src, SDL_Surface * dst)
Apr 26, 2001
Apr 26, 2001
803
{
Jul 10, 2006
Jul 10, 2006
804
805
806
807
808
809
810
811
812
813
814
815
816
817
818
819
820
821
822
823
SDL_PixelFormat *srcfmt;
SDL_PixelFormat *dstfmt;
SDL_BlitMap *map;
/* Clear out any previous mapping */
map = src->map;
if ((src->flags & SDL_RLEACCEL) == SDL_RLEACCEL) {
SDL_UnRLESurface(src, 1);
}
SDL_InvalidateMap(map);
/* Figure out what kind of mapping we're doing */
map->identity = 0;
srcfmt = src->format;
dstfmt = dst->format;
switch (srcfmt->BytesPerPixel) {
case 1:
switch (dstfmt->BytesPerPixel) {
case 1:
/* Palette --> Palette */
Aug 18, 2007
Aug 18, 2007
824
map->info.table =
Jul 10, 2006
Jul 10, 2006
825
826
Map1to1(srcfmt->palette, dstfmt->palette, &map->identity);
if (!map->identity) {
Aug 18, 2007
Aug 18, 2007
827
if (map->info.table == NULL) {
Jul 10, 2006
Jul 10, 2006
828
829
830
831
832
833
834
835
836
return (-1);
}
}
if (srcfmt->BitsPerPixel != dstfmt->BitsPerPixel)
map->identity = 0;
break;
default:
/* Palette --> BitField */
Aug 18, 2007
Aug 18, 2007
837
838
839
840
map->info.table =
Map1toN(srcfmt, src->map->info.r, src->map->info.g,
src->map->info.b, src->map->info.a, dstfmt);
if (map->info.table == NULL) {
Jul 10, 2006
Jul 10, 2006
841
842
843
844
845
846
847
848
849
return (-1);
}
break;
}
break;
default:
switch (dstfmt->BytesPerPixel) {
case 1:
/* BitField --> Palette */
Aug 18, 2007
Aug 18, 2007
850
map->info.table = MapNto1(srcfmt, dstfmt, &map->identity);
Jul 10, 2006
Jul 10, 2006
851
if (!map->identity) {
Aug 18, 2007
Aug 18, 2007
852
if (map->info.table == NULL) {
Jul 10, 2006
Jul 10, 2006
853
854
855
856
857
858
859
860
861
862
863
864
865
866
867
868
869
870
871
return (-1);
}
}
map->identity = 0; /* Don't optimize to copy */
break;
default:
/* BitField --> BitField */
if (FORMAT_EQUAL(srcfmt, dstfmt))
map->identity = 1;
break;
}
break;
}
map->dst = dst;
map->format_version = dst->format_version;
/* Choose your blitters wisely */
return (SDL_CalculateBlit(src));
Apr 26, 2001
Apr 26, 2001
872
}
Jul 10, 2006
Jul 10, 2006
873
874
875
void
SDL_FreeBlitMap(SDL_BlitMap * map)
Apr 26, 2001
Apr 26, 2001
876
{
Jul 10, 2006
Jul 10, 2006
877
878
879
880
if (map) {
SDL_InvalidateMap(map);
SDL_free(map);
}
Apr 26, 2001
Apr 26, 2001
881
}
Jul 10, 2006
Jul 10, 2006
882
883
/* vi: set ts=4 sw=4 expandtab: */