src/video/SDL_pixels.c
author Sam Lantinga
Wed, 23 Dec 2009 06:39:18 +0000
changeset 3597 7dec3fe9b580
parent 3557 7184580ab756
child 3697 f7b03b6838cb
permissions -rw-r--r--
Fixed bug #912

SDL_MasksToPixelFormatEnum() wasn't correctly returning RGB24 formats
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/*
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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,
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    but WITHOUT ANY WARRANTY; without even the implied warranty of
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    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
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    License along with this library; if not, write to the Free Software
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    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 */
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#include "SDL_endian.h"
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#include "SDL_video.h"
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#include "SDL_sysvideo.h"
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#include "SDL_blit.h"
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#include "SDL_pixels_c.h"
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#include "SDL_RLEaccel_c.h"
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struct SDL_PaletteWatch
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{
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    SDL_PaletteChangedFunc callback;
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    void *userdata;
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    struct SDL_PaletteWatch *next;
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};
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/* Helper functions */
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SDL_bool
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SDL_PixelFormatEnumToMasks(Uint32 format, int *bpp, Uint32 * Rmask,
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                           Uint32 * Gmask, Uint32 * Bmask, Uint32 * Amask)
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{
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    Uint32 masks[4];
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    /* 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 {
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        *bpp = SDL_BYTESPERPIXEL(format) * 8;
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    }
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    *Rmask = *Gmask = *Bmask = *Amask = 0;
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    if (format == SDL_PIXELFORMAT_RGB24) {
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#if SDL_BYTEORDER == SDL_BIG_ENDIAN
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        *Rmask = 0x00FF0000;
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        *Gmask = 0x0000FF00;
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        *Bmask = 0x000000FF;
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#else
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        *Rmask = 0x000000FF;
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        *Gmask = 0x0000FF00;
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        *Bmask = 0x00FF0000;
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#endif
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        return SDL_TRUE;
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    }
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    if (format == SDL_PIXELFORMAT_BGR24) {
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#if SDL_BYTEORDER == SDL_BIG_ENDIAN
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        *Rmask = 0x000000FF;
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        *Gmask = 0x0000FF00;
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        *Bmask = 0x00FF0000;
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#else
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        *Rmask = 0x00FF0000;
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        *Gmask = 0x0000FF00;
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        *Bmask = 0x000000FF;
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#endif
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        return SDL_TRUE;
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    }
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    if (SDL_PIXELTYPE(format) != SDL_PIXELTYPE_PACKED8 &&
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        SDL_PIXELTYPE(format) != SDL_PIXELTYPE_PACKED16 &&
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        SDL_PIXELTYPE(format) != SDL_PIXELTYPE_PACKED32) {
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        /* Not a format that uses masks */
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        return SDL_TRUE;
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    }
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    switch (SDL_PIXELLAYOUT(format)) {
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    case SDL_PACKEDLAYOUT_332:
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        masks[0] = 0x00000000;
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        masks[1] = 0x000000E0;
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        masks[2] = 0x0000001C;
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        masks[3] = 0x00000003;
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        break;
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    case SDL_PACKEDLAYOUT_4444:
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        masks[0] = 0x0000F000;
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        masks[1] = 0x00000F00;
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        masks[2] = 0x000000F0;
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        masks[3] = 0x0000000F;
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        break;
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    case SDL_PACKEDLAYOUT_1555:
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        masks[0] = 0x00008000;
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        masks[1] = 0x00007C00;
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        masks[2] = 0x000003E0;
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        masks[3] = 0x0000001F;
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        break;
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    case SDL_PACKEDLAYOUT_5551:
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        masks[0] = 0x0000F800;
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        masks[1] = 0x000007C0;
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        masks[2] = 0x0000003E;
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        masks[3] = 0x00000001;
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        break;
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    case SDL_PACKEDLAYOUT_565:
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        masks[0] = 0x00000000;
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        masks[1] = 0x0000F800;
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        masks[2] = 0x000007E0;
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        masks[3] = 0x0000001F;
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        break;
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    case SDL_PACKEDLAYOUT_8888:
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        masks[0] = 0xFF000000;
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        masks[1] = 0x00FF0000;
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        masks[2] = 0x0000FF00;
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        masks[3] = 0x000000FF;
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        break;
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    case SDL_PACKEDLAYOUT_2101010:
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        masks[0] = 0xC0000000;
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        masks[1] = 0x3FF00000;
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        masks[2] = 0x000FFC00;
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        masks[3] = 0x000003FF;
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        break;
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    case SDL_PACKEDLAYOUT_1010102:
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        masks[0] = 0xFFC00000;
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        masks[1] = 0x003FF000;
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        masks[2] = 0x00000FFC;
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        masks[3] = 0x00000003;
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        break;
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    default:
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        SDL_SetError("Unknown pixel format");
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        return SDL_FALSE;
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    }
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    switch (SDL_PIXELORDER(format)) {
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    case SDL_PACKEDORDER_XRGB:
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        *Rmask = masks[1];
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        *Gmask = masks[2];
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        *Bmask = masks[3];
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        break;
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    case SDL_PACKEDORDER_RGBX:
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        *Rmask = masks[0];
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        *Gmask = masks[1];
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        *Bmask = masks[2];
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        break;
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    case SDL_PACKEDORDER_ARGB:
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        *Amask = masks[0];
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        *Rmask = masks[1];
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        *Gmask = masks[2];
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        *Bmask = masks[3];
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        break;
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    case SDL_PACKEDORDER_RGBA:
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        *Rmask = masks[0];
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        *Gmask = masks[1];
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        *Bmask = masks[2];
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        *Amask = masks[3];
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        break;
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    case SDL_PACKEDORDER_XBGR:
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        *Bmask = masks[1];
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        *Gmask = masks[2];
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        *Rmask = masks[3];
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        break;
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    case SDL_PACKEDORDER_BGRX:
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        *Bmask = masks[0];
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        *Gmask = masks[1];
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        *Rmask = masks[2];
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        break;
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    case SDL_PACKEDORDER_BGRA:
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        *Bmask = masks[0];
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        *Gmask = masks[1];
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        *Rmask = masks[2];
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        *Amask = masks[3];
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        break;
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    case SDL_PACKEDORDER_ABGR:
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        *Amask = masks[0];
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        *Bmask = masks[1];
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        *Gmask = masks[2];
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        *Rmask = masks[3];
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        break;
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    default:
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        SDL_SetError("Unknown pixel format");
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        return SDL_FALSE;
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    }
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    return SDL_TRUE;
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}
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Uint32
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SDL_MasksToPixelFormatEnum(int bpp, Uint32 Rmask, Uint32 Gmask, Uint32 Bmask,
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                           Uint32 Amask)
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{
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    switch (bpp) {
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    case 8:
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        switch (Rmask) {
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        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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        }
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        break;
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    case 12:
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        switch (Rmask) {
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        case 0x0F00:
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            return SDL_PIXELFORMAT_RGB444;
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        }
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        break;
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    case 15:
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        switch (Rmask) {
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        case 0x001F:
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            return SDL_PIXELFORMAT_BGR555;
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        case 0x7C00:
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            return SDL_PIXELFORMAT_RGB555;
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        }
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        break;
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    case 16:
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        switch (Rmask) {
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        case 0x000F:
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            return SDL_PIXELFORMAT_ABGR4444;
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        case 0x001F:
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            if (Gmask == 0x07E0) {
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                return SDL_PIXELFORMAT_BGR565;
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            }
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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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        }
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        break;
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    case 24:
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        switch (Rmask) {
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        case 0x00FF0000:
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#if SDL_BYTEORDER == SDL_BIG_ENDIAN
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            return SDL_PIXELFORMAT_RGB24;
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#else
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            return SDL_PIXELFORMAT_BGR24;
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#endif
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        case 0x000000FF:
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#if SDL_BYTEORDER == SDL_BIG_ENDIAN
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            return SDL_PIXELFORMAT_BGR24;
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#else
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            return SDL_PIXELFORMAT_RGB24;
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#endif
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        case 0x00000000:
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            /* FIXME: At this point we can't distinguish */
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            /* if this format is RGB24 or BGR24          */
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            return SDL_PIXELFORMAT_RGB24;
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        }
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    case 32:
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        switch (Rmask) {
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        case 0xFF000000:
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            if (Amask == 0x000000FF) {
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                return SDL_PIXELFORMAT_RGBA8888;
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            }
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            break;
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        case 0x00FF0000:
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            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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            }
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            break;
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        case 0x0000FF00:
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            if (Amask == 0x000000FF) {
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                return SDL_PIXELFORMAT_BGRA8888;
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            }
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            break;
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        case 0x000000FF:
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            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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            }
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            break;
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        case 0x3FF00000:
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            return SDL_PIXELFORMAT_ARGB2101010;
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        }
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    }
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    return SDL_PIXELFORMAT_UNKNOWN;
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}
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SDL_Palette *
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SDL_AllocPalette(int ncolors)
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{
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    SDL_Palette *palette;
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    palette = (SDL_Palette *) SDL_malloc(sizeof(*palette));
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    if (!palette) {
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        SDL_OutOfMemory();
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   300
        return NULL;
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   301
    }
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    palette->colors =
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        (SDL_Color *) SDL_malloc(ncolors * sizeof(*palette->colors));
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   304
    if (!palette->colors) {
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   305
        SDL_free(palette);
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   306
        return NULL;
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   307
    }
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    palette->ncolors = ncolors;
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   309
    palette->watch = NULL;
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    palette->refcount = 1;
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   311
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   312
    SDL_memset(palette->colors, 0xFF, ncolors * sizeof(*palette->colors));
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   313
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   314
    return palette;
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   315
}
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   316
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   317
int
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   318
SDL_AddPaletteWatch(SDL_Palette * palette, SDL_PaletteChangedFunc callback,
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   319
                    void *userdata)
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   320
{
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   321
    SDL_PaletteWatch *watch;
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   322
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   323
    if (!palette) {
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   324
        return -1;
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   325
    }
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   326
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   327
    watch = (SDL_PaletteWatch *) SDL_malloc(sizeof(*watch));
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   328
    if (!watch) {
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   329
        SDL_OutOfMemory();
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   330
        return -1;
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   331
    }
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   332
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   333
    watch->callback = callback;
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   334
    watch->userdata = userdata;
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   335
    watch->next = palette->watch;
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   336
    palette->watch = watch;
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   337
    ++palette->refcount;
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   338
    return 0;
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   339
}
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   340
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   341
void
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   342
SDL_DelPaletteWatch(SDL_Palette * palette, SDL_PaletteChangedFunc callback,
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   343
                    void *userdata)
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   344
{
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   345
    SDL_PaletteWatch *prev, *watch;
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   346
slouken@1895
   347
    if (!palette) {
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   348
        return;
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   349
    }
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   350
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   351
    for (prev = NULL, watch = palette->watch; watch;
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   352
         prev = watch, watch = watch->next) {
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   353
        if (watch->callback == callback && watch->userdata == userdata) {
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   354
            if (prev) {
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   355
                prev->next = watch->next;
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   356
            } else {
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   357
                palette->watch = watch->next;
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   358
            }
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   359
            SDL_free(watch);
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   360
            SDL_FreePalette(palette);
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   361
            return;
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   362
        }
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   363
    }
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   364
}
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   365
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   366
int
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   367
SDL_SetPaletteColors(SDL_Palette * palette, const SDL_Color * colors,
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   368
                     int firstcolor, int ncolors)
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   369
{
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   370
    SDL_PaletteWatch *watch;
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   371
    int status = 0;
slouken@1895
   372
slouken@1895
   373
    /* Verify the parameters */
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   374
    if (!palette) {
slouken@1895
   375
        return -1;
slouken@1895
   376
    }
slouken@1895
   377
    if (ncolors > (palette->ncolors - firstcolor)) {
slouken@1895
   378
        ncolors = (palette->ncolors - firstcolor);
slouken@1895
   379
        status = -1;
slouken@1895
   380
    }
slouken@1895
   381
slouken@1895
   382
    if (colors != (palette->colors + firstcolor)) {
slouken@1895
   383
        SDL_memcpy(palette->colors + firstcolor, colors,
slouken@1895
   384
                   ncolors * sizeof(*colors));
slouken@1895
   385
    }
slouken@1895
   386
slouken@1895
   387
    for (watch = palette->watch; watch; watch = watch->next) {
slouken@1895
   388
        if (watch->callback(watch->userdata, palette) < 0) {
slouken@1895
   389
            status = -1;
slouken@1895
   390
        }
slouken@1895
   391
    }
slouken@1895
   392
slouken@1895
   393
    return status;
slouken@1895
   394
}
slouken@1895
   395
slouken@1895
   396
void
slouken@1895
   397
SDL_FreePalette(SDL_Palette * palette)
slouken@1895
   398
{
slouken@1895
   399
    if (!palette) {
slouken@1895
   400
        return;
slouken@1895
   401
    }
slouken@1895
   402
    if (--palette->refcount > 0) {
slouken@1895
   403
        return;
slouken@1895
   404
    }
slouken@1895
   405
    if (palette->colors) {
slouken@1895
   406
        SDL_free(palette->colors);
slouken@1895
   407
    }
slouken@1895
   408
    SDL_free(palette);
slouken@1895
   409
}
slouken@1895
   410
slouken@0
   411
/*
slouken@0
   412
 * Allocate a pixel format structure and fill it according to the given info.
slouken@0
   413
 */
slouken@1895
   414
SDL_PixelFormat *
slouken@1895
   415
SDL_AllocFormat(int bpp,
slouken@1895
   416
                Uint32 Rmask, Uint32 Gmask, Uint32 Bmask, Uint32 Amask)
slouken@0
   417
{
slouken@1895
   418
    SDL_PixelFormat *format;
slouken@0
   419
slouken@1895
   420
    /* Allocate an empty pixel format structure */
slouken@2967
   421
    format = SDL_malloc(sizeof(*format));
slouken@1895
   422
    if (format == NULL) {
slouken@1895
   423
        SDL_OutOfMemory();
slouken@1895
   424
        return (NULL);
slouken@1895
   425
    }
slouken@0
   426
slouken@1895
   427
    /* Set up the format */
slouken@2967
   428
    return SDL_InitFormat(format, bpp, Rmask, Gmask, Bmask, Amask);
slouken@2967
   429
}
slouken@2967
   430
slouken@2967
   431
SDL_PixelFormat *
slouken@2990
   432
SDL_InitFormat(SDL_PixelFormat * format, int bpp, Uint32 Rmask, Uint32 Gmask,
slouken@2990
   433
               Uint32 Bmask, Uint32 Amask)
slouken@2967
   434
{
slouken@2967
   435
    Uint32 mask;
slouken@2967
   436
slouken@2967
   437
    /* Set up the format */
slouken@2967
   438
    SDL_zerop(format);
slouken@1895
   439
    format->BitsPerPixel = bpp;
slouken@1895
   440
    format->BytesPerPixel = (bpp + 7) / 8;
slouken@1895
   441
    if (Rmask || Bmask || Gmask) {      /* Packed pixels with custom mask */
slouken@1895
   442
        format->Rshift = 0;
slouken@1895
   443
        format->Rloss = 8;
slouken@1895
   444
        if (Rmask) {
slouken@1895
   445
            for (mask = Rmask; !(mask & 0x01); mask >>= 1)
slouken@1895
   446
                ++format->Rshift;
slouken@1895
   447
            for (; (mask & 0x01); mask >>= 1)
slouken@1895
   448
                --format->Rloss;
slouken@1895
   449
        }
slouken@1895
   450
        format->Gshift = 0;
slouken@1895
   451
        format->Gloss = 8;
slouken@1895
   452
        if (Gmask) {
slouken@1895
   453
            for (mask = Gmask; !(mask & 0x01); mask >>= 1)
slouken@1895
   454
                ++format->Gshift;
slouken@1895
   455
            for (; (mask & 0x01); mask >>= 1)
slouken@1895
   456
                --format->Gloss;
slouken@1895
   457
        }
slouken@1895
   458
        format->Bshift = 0;
slouken@1895
   459
        format->Bloss = 8;
slouken@1895
   460
        if (Bmask) {
slouken@1895
   461
            for (mask = Bmask; !(mask & 0x01); mask >>= 1)
slouken@1895
   462
                ++format->Bshift;
slouken@1895
   463
            for (; (mask & 0x01); mask >>= 1)
slouken@1895
   464
                --format->Bloss;
slouken@1895
   465
        }
slouken@1895
   466
        format->Ashift = 0;
slouken@1895
   467
        format->Aloss = 8;
slouken@1895
   468
        if (Amask) {
slouken@1895
   469
            for (mask = Amask; !(mask & 0x01); mask >>= 1)
slouken@1895
   470
                ++format->Ashift;
slouken@1895
   471
            for (; (mask & 0x01); mask >>= 1)
slouken@1895
   472
                --format->Aloss;
slouken@1895
   473
        }
slouken@1895
   474
        format->Rmask = Rmask;
slouken@1895
   475
        format->Gmask = Gmask;
slouken@1895
   476
        format->Bmask = Bmask;
slouken@1895
   477
        format->Amask = Amask;
slouken@1895
   478
    } else if (bpp > 8) {       /* Packed pixels with standard mask */
slouken@1895
   479
        /* R-G-B */
slouken@1895
   480
        if (bpp > 24)
slouken@1895
   481
            bpp = 24;
slouken@1895
   482
        format->Rloss = 8 - (bpp / 3);
slouken@1895
   483
        format->Gloss = 8 - (bpp / 3) - (bpp % 3);
slouken@1895
   484
        format->Bloss = 8 - (bpp / 3);
slouken@1895
   485
        format->Rshift = ((bpp / 3) + (bpp % 3)) + (bpp / 3);
slouken@1895
   486
        format->Gshift = (bpp / 3);
slouken@1895
   487
        format->Bshift = 0;
slouken@1895
   488
        format->Rmask = ((0xFF >> format->Rloss) << format->Rshift);
slouken@1895
   489
        format->Gmask = ((0xFF >> format->Gloss) << format->Gshift);
slouken@1895
   490
        format->Bmask = ((0xFF >> format->Bloss) << format->Bshift);
slouken@1895
   491
    } else {
slouken@1895
   492
        /* Palettized formats have no mask info */
slouken@1895
   493
        format->Rloss = 8;
slouken@1895
   494
        format->Gloss = 8;
slouken@1895
   495
        format->Bloss = 8;
slouken@1895
   496
        format->Aloss = 8;
slouken@1895
   497
        format->Rshift = 0;
slouken@1895
   498
        format->Gshift = 0;
slouken@1895
   499
        format->Bshift = 0;
slouken@1895
   500
        format->Ashift = 0;
slouken@1895
   501
        format->Rmask = 0;
slouken@1895
   502
        format->Gmask = 0;
slouken@1895
   503
        format->Bmask = 0;
slouken@1895
   504
        format->Amask = 0;
slouken@1895
   505
    }
slouken@1895
   506
    format->palette = NULL;
slouken@1057
   507
slouken@2967
   508
    return format;
slouken@0
   509
}
slouken@0
   510
slouken@0
   511
/*
slouken@0
   512
 * Change any previous mappings from/to the new surface format
slouken@0
   513
 */
slouken@1895
   514
void
slouken@1895
   515
SDL_FormatChanged(SDL_Surface * surface)
slouken@0
   516
{
slouken@1895
   517
    static int format_version = 0;
slouken@1895
   518
    ++format_version;
slouken@1895
   519
    if (format_version < 0) {   /* It wrapped... */
slouken@1895
   520
        format_version = 1;
slouken@1895
   521
    }
slouken@1895
   522
    surface->format_version = format_version;
slouken@1895
   523
    SDL_InvalidateMap(surface->map);
slouken@0
   524
}
slouken@1895
   525
slouken@0
   526
/*
slouken@0
   527
 * Free a previously allocated format structure
slouken@0
   528
 */
slouken@1895
   529
void
slouken@1895
   530
SDL_FreeFormat(SDL_PixelFormat * format)
slouken@0
   531
{
slouken@1895
   532
    if (!format) {
slouken@1895
   533
        return;
slouken@1895
   534
    }
slouken@1895
   535
    SDL_free(format);
slouken@0
   536
}
slouken@1895
   537
slouken@0
   538
/*
slouken@0
   539
 * Calculate an 8-bit (3 red, 3 green, 2 blue) dithered palette of colors
slouken@0
   540
 */
slouken@1895
   541
void
slouken@1895
   542
SDL_DitherColors(SDL_Color * colors, int bpp)
slouken@0
   543
{
slouken@1895
   544
    int i;
slouken@1895
   545
    if (bpp != 8)
slouken@1895
   546
        return;                 /* only 8bpp supported right now */
slouken@0
   547
slouken@1895
   548
    for (i = 0; i < 256; i++) {
slouken@1895
   549
        int r, g, b;
slouken@1895
   550
        /* map each bit field to the full [0, 255] interval,
slouken@1895
   551
           so 0 is mapped to (0, 0, 0) and 255 to (255, 255, 255) */
slouken@1895
   552
        r = i & 0xe0;
slouken@1895
   553
        r |= r >> 3 | r >> 6;
slouken@1895
   554
        colors[i].r = r;
slouken@1895
   555
        g = (i << 3) & 0xe0;
slouken@1895
   556
        g |= g >> 3 | g >> 6;
slouken@1895
   557
        colors[i].g = g;
slouken@1895
   558
        b = i & 0x3;
slouken@1895
   559
        b |= b << 2;
slouken@1895
   560
        b |= b << 4;
slouken@1895
   561
        colors[i].b = b;
slouken@1895
   562
        colors[i].unused = SDL_ALPHA_OPAQUE;
slouken@1895
   563
    }
slouken@0
   564
}
slouken@1895
   565
slouken@0
   566
/* 
slouken@0
   567
 * Calculate the pad-aligned scanline width of a surface
slouken@0
   568
 */
slouken@1895
   569
int
slouken@1895
   570
SDL_CalculatePitch(SDL_Surface * surface)
slouken@0
   571
{
slouken@1895
   572
    int pitch;
slouken@0
   573
slouken@1895
   574
    /* Surface should be 4-byte aligned for speed */
slouken@1895
   575
    pitch = surface->w * surface->format->BytesPerPixel;
slouken@1895
   576
    switch (surface->format->BitsPerPixel) {
slouken@1895
   577
    case 1:
slouken@1895
   578
        pitch = (pitch + 7) / 8;
slouken@1895
   579
        break;
slouken@1895
   580
    case 4:
slouken@1895
   581
        pitch = (pitch + 1) / 2;
slouken@1895
   582
        break;
slouken@1895
   583
    default:
slouken@1895
   584
        break;
slouken@1895
   585
    }
slouken@1895
   586
    pitch = (pitch + 3) & ~3;   /* 4-byte aligning */
slouken@1895
   587
    return (pitch);
slouken@0
   588
}
slouken@1895
   589
slouken@0
   590
/*
slouken@0
   591
 * Match an RGB value to a particular palette index
slouken@0
   592
 */
slouken@1895
   593
Uint8
slouken@1895
   594
SDL_FindColor(SDL_Palette * pal, Uint8 r, Uint8 g, Uint8 b)
slouken@0
   595
{
slouken@1895
   596
    /* Do colorspace distance matching */
slouken@1895
   597
    unsigned int smallest;
slouken@1895
   598
    unsigned int distance;
slouken@1895
   599
    int rd, gd, bd;
slouken@1895
   600
    int i;
slouken@1895
   601
    Uint8 pixel = 0;
slouken@1895
   602
slouken@1895
   603
    smallest = ~0;
slouken@1895
   604
    for (i = 0; i < pal->ncolors; ++i) {
slouken@1895
   605
        rd = pal->colors[i].r - r;
slouken@1895
   606
        gd = pal->colors[i].g - g;
slouken@1895
   607
        bd = pal->colors[i].b - b;
slouken@1895
   608
        distance = (rd * rd) + (gd * gd) + (bd * bd);
slouken@1895
   609
        if (distance < smallest) {
slouken@1895
   610
            pixel = i;
slouken@1895
   611
            if (distance == 0) {        /* Perfect match! */
slouken@1895
   612
                break;
slouken@1895
   613
            }
slouken@1895
   614
            smallest = distance;
slouken@1895
   615
        }
slouken@1895
   616
    }
slouken@1895
   617
    return (pixel);
slouken@0
   618
}
slouken@0
   619
slouken@0
   620
/* Find the opaque pixel value corresponding to an RGB triple */
slouken@1895
   621
Uint32
slouken@2275
   622
SDL_MapRGB(const SDL_PixelFormat * format, Uint8 r, Uint8 g, Uint8 b)
slouken@0
   623
{
slouken@1895
   624
    if (format->palette == NULL) {
slouken@1895
   625
        return (r >> format->Rloss) << format->Rshift
slouken@1895
   626
            | (g >> format->Gloss) << format->Gshift
slouken@1895
   627
            | (b >> format->Bloss) << format->Bshift | format->Amask;
slouken@1895
   628
    } else {
slouken@1895
   629
        return SDL_FindColor(format->palette, r, g, b);
slouken@1895
   630
    }
slouken@0
   631
}
slouken@0
   632
slouken@0
   633
/* Find the pixel value corresponding to an RGBA quadruple */
slouken@1895
   634
Uint32
slouken@2275
   635
SDL_MapRGBA(const SDL_PixelFormat * format, Uint8 r, Uint8 g, Uint8 b,
slouken@2275
   636
            Uint8 a)
slouken@0
   637
{
slouken@1895
   638
    if (format->palette == NULL) {
slouken@1895
   639
        return (r >> format->Rloss) << format->Rshift
slouken@1895
   640
            | (g >> format->Gloss) << format->Gshift
slouken@1895
   641
            | (b >> format->Bloss) << format->Bshift
slouken@1895
   642
            | ((a >> format->Aloss) << format->Ashift & format->Amask);
slouken@1895
   643
    } else {
slouken@1895
   644
        return SDL_FindColor(format->palette, r, g, b);
slouken@1895
   645
    }
slouken@0
   646
}
slouken@0
   647
slouken@1895
   648
void
slouken@2275
   649
SDL_GetRGB(Uint32 pixel, const SDL_PixelFormat * format, Uint8 * r, Uint8 * g,
slouken@2275
   650
           Uint8 * b)
slouken@2275
   651
{
slouken@2275
   652
    if (format->palette == NULL) {
slouken@2275
   653
        /*
slouken@2275
   654
         * This makes sure that the result is mapped to the
slouken@2275
   655
         * interval [0..255], and the maximum value for each
slouken@2275
   656
         * component is 255. This is important to make sure
slouken@2275
   657
         * that white is indeed reported as (255, 255, 255).
slouken@2275
   658
         * This only works for RGB bit fields at least 4 bit
slouken@2275
   659
         * wide, which is almost always the case.
slouken@2275
   660
         */
slouken@2275
   661
        unsigned v;
slouken@2275
   662
        v = (pixel & format->Rmask) >> format->Rshift;
slouken@2275
   663
        *r = (v << format->Rloss) + (v >> (8 - (format->Rloss << 1)));
slouken@2275
   664
        v = (pixel & format->Gmask) >> format->Gshift;
slouken@2275
   665
        *g = (v << format->Gloss) + (v >> (8 - (format->Gloss << 1)));
slouken@2275
   666
        v = (pixel & format->Bmask) >> format->Bshift;
slouken@2275
   667
        *b = (v << format->Bloss) + (v >> (8 - (format->Bloss << 1)));
slouken@2275
   668
    } else {
slouken@2275
   669
        *r = format->palette->colors[pixel].r;
slouken@2275
   670
        *g = format->palette->colors[pixel].g;
slouken@2275
   671
        *b = format->palette->colors[pixel].b;
slouken@2275
   672
    }
slouken@2275
   673
}
slouken@2275
   674
slouken@2275
   675
void
slouken@2275
   676
SDL_GetRGBA(Uint32 pixel, const SDL_PixelFormat * format,
slouken@1895
   677
            Uint8 * r, Uint8 * g, Uint8 * b, Uint8 * a)
slouken@0
   678
{
slouken@2275
   679
    if (format->palette == NULL) {
slouken@1895
   680
        /*
slouken@1895
   681
         * This makes sure that the result is mapped to the
slouken@1895
   682
         * interval [0..255], and the maximum value for each
slouken@1895
   683
         * component is 255. This is important to make sure
slouken@1895
   684
         * that white is indeed reported as (255, 255, 255),
slouken@1895
   685
         * and that opaque alpha is 255.
slouken@1895
   686
         * This only works for RGB bit fields at least 4 bit
slouken@1895
   687
         * wide, which is almost always the case.
slouken@1895
   688
         */
slouken@1895
   689
        unsigned v;
slouken@2275
   690
        v = (pixel & format->Rmask) >> format->Rshift;
slouken@2275
   691
        *r = (v << format->Rloss) + (v >> (8 - (format->Rloss << 1)));
slouken@2275
   692
        v = (pixel & format->Gmask) >> format->Gshift;
slouken@2275
   693
        *g = (v << format->Gloss) + (v >> (8 - (format->Gloss << 1)));
slouken@2275
   694
        v = (pixel & format->Bmask) >> format->Bshift;
slouken@2275
   695
        *b = (v << format->Bloss) + (v >> (8 - (format->Bloss << 1)));
slouken@2275
   696
        if (format->Amask) {
slouken@2275
   697
            v = (pixel & format->Amask) >> format->Ashift;
slouken@2275
   698
            *a = (v << format->Aloss) + (v >> (8 - (format->Aloss << 1)));
slouken@1895
   699
        } else {
slouken@1895
   700
            *a = SDL_ALPHA_OPAQUE;
slouken@1895
   701
        }
slouken@1895
   702
    } else {
slouken@2275
   703
        *r = format->palette->colors[pixel].r;
slouken@2275
   704
        *g = format->palette->colors[pixel].g;
slouken@2275
   705
        *b = format->palette->colors[pixel].b;
slouken@1895
   706
        *a = SDL_ALPHA_OPAQUE;
slouken@1895
   707
    }
slouken@0
   708
}
slouken@0
   709
slouken@0
   710
/* Apply gamma to a set of colors - this is easy. :) */
slouken@1895
   711
void
slouken@1895
   712
SDL_ApplyGamma(Uint16 * gamma, SDL_Color * colors, SDL_Color * output,
slouken@1895
   713
               int ncolors)
slouken@0
   714
{
slouken@1895
   715
    int i;
slouken@0
   716
slouken@1895
   717
    for (i = 0; i < ncolors; ++i) {
slouken@1895
   718
        output[i].r = gamma[0 * 256 + colors[i].r] >> 8;
slouken@1895
   719
        output[i].g = gamma[1 * 256 + colors[i].g] >> 8;
slouken@1895
   720
        output[i].b = gamma[2 * 256 + colors[i].b] >> 8;
slouken@1895
   721
    }
slouken@0
   722
}
slouken@0
   723
slouken@0
   724
/* Map from Palette to Palette */
slouken@1895
   725
static Uint8 *
slouken@1895
   726
Map1to1(SDL_Palette * src, SDL_Palette * dst, int *identical)
slouken@0
   727
{
slouken@1895
   728
    Uint8 *map;
slouken@1895
   729
    int i;
slouken@0
   730
slouken@1895
   731
    if (identical) {
slouken@1895
   732
        if (src->ncolors <= dst->ncolors) {
slouken@1895
   733
            /* If an identical palette, no need to map */
slouken@1895
   734
            if (src == dst
slouken@1895
   735
                ||
slouken@1895
   736
                (SDL_memcmp
slouken@1895
   737
                 (src->colors, dst->colors,
slouken@1895
   738
                  src->ncolors * sizeof(SDL_Color)) == 0)) {
slouken@1895
   739
                *identical = 1;
slouken@1895
   740
                return (NULL);
slouken@1895
   741
            }
slouken@1895
   742
        }
slouken@1895
   743
        *identical = 0;
slouken@1895
   744
    }
slouken@1895
   745
    map = (Uint8 *) SDL_malloc(src->ncolors);
slouken@1895
   746
    if (map == NULL) {
slouken@1895
   747
        SDL_OutOfMemory();
slouken@1895
   748
        return (NULL);
slouken@1895
   749
    }
slouken@1895
   750
    for (i = 0; i < src->ncolors; ++i) {
slouken@1895
   751
        map[i] = SDL_FindColor(dst,
slouken@1895
   752
                               src->colors[i].r, src->colors[i].g,
slouken@1895
   753
                               src->colors[i].b);
slouken@1895
   754
    }
slouken@1895
   755
    return (map);
slouken@0
   756
}
slouken@1895
   757
slouken@0
   758
/* Map from Palette to BitField */
slouken@1895
   759
static Uint8 *
slouken@2267
   760
Map1toN(SDL_PixelFormat * src, Uint8 Rmod, Uint8 Gmod, Uint8 Bmod, Uint8 Amod,
slouken@2267
   761
        SDL_PixelFormat * dst)
slouken@0
   762
{
slouken@1895
   763
    Uint8 *map;
slouken@1895
   764
    int i;
slouken@1895
   765
    int bpp;
slouken@1895
   766
    SDL_Palette *pal = src->palette;
slouken@0
   767
slouken@1895
   768
    bpp = ((dst->BytesPerPixel == 3) ? 4 : dst->BytesPerPixel);
slouken@1895
   769
    map = (Uint8 *) SDL_malloc(pal->ncolors * bpp);
slouken@1895
   770
    if (map == NULL) {
slouken@1895
   771
        SDL_OutOfMemory();
slouken@1895
   772
        return (NULL);
slouken@1895
   773
    }
slouken@0
   774
slouken@1895
   775
    /* We memory copy to the pixel map so the endianness is preserved */
slouken@1895
   776
    for (i = 0; i < pal->ncolors; ++i) {
slouken@2257
   777
        Uint8 A = Amod;
slouken@2267
   778
        Uint8 R = (Uint8) ((pal->colors[i].r * Rmod) / 255);
slouken@2267
   779
        Uint8 G = (Uint8) ((pal->colors[i].g * Gmod) / 255);
slouken@2267
   780
        Uint8 B = (Uint8) ((pal->colors[i].b * Bmod) / 255);
slouken@2257
   781
        ASSEMBLE_RGBA(&map[i * bpp], dst->BytesPerPixel, dst, R, G, B, A);
slouken@1895
   782
    }
slouken@1895
   783
    return (map);
slouken@0
   784
}
slouken@1895
   785
slouken@0
   786
/* Map from BitField to Dithered-Palette to Palette */
slouken@1895
   787
static Uint8 *
slouken@1895
   788
MapNto1(SDL_PixelFormat * src, SDL_PixelFormat * dst, int *identical)
slouken@0
   789
{
slouken@1895
   790
    /* Generate a 256 color dither palette */
slouken@1895
   791
    SDL_Palette dithered;
slouken@1895
   792
    SDL_Color colors[256];
slouken@1895
   793
    SDL_Palette *pal = dst->palette;
slouken@0
   794
slouken@1895
   795
    dithered.ncolors = 256;
slouken@1895
   796
    SDL_DitherColors(colors, 8);
slouken@1895
   797
    dithered.colors = colors;
slouken@1895
   798
    return (Map1to1(&dithered, pal, identical));
slouken@0
   799
}
slouken@0
   800
slouken@1895
   801
SDL_BlitMap *
slouken@1895
   802
SDL_AllocBlitMap(void)
slouken@0
   803
{
slouken@1895
   804
    SDL_BlitMap *map;
slouken@0
   805
slouken@1895
   806
    /* Allocate the empty map */
slouken@1920
   807
    map = (SDL_BlitMap *) SDL_calloc(1, sizeof(*map));
slouken@1895
   808
    if (map == NULL) {
slouken@1895
   809
        SDL_OutOfMemory();
slouken@1895
   810
        return (NULL);
slouken@1895
   811
    }
slouken@2267
   812
    map->info.r = 0xFF;
slouken@2267
   813
    map->info.g = 0xFF;
slouken@2267
   814
    map->info.b = 0xFF;
slouken@2267
   815
    map->info.a = 0xFF;
slouken@0
   816
slouken@1895
   817
    /* It's ready to go */
slouken@1895
   818
    return (map);
slouken@0
   819
}
slouken@1895
   820
slouken@1895
   821
void
slouken@1895
   822
SDL_InvalidateMap(SDL_BlitMap * map)
slouken@0
   823
{
slouken@1895
   824
    if (!map) {
slouken@1895
   825
        return;
slouken@1895
   826
    }
slouken@1895
   827
    map->dst = NULL;
slouken@1895
   828
    map->format_version = (unsigned int) -1;
slouken@2267
   829
    if (map->info.table) {
slouken@2267
   830
        SDL_free(map->info.table);
slouken@2267
   831
        map->info.table = NULL;
slouken@1895
   832
    }
slouken@0
   833
}
slouken@2735
   834
slouken@1895
   835
int
slouken@1895
   836
SDL_MapSurface(SDL_Surface * src, SDL_Surface * dst)
slouken@0
   837
{
slouken@1895
   838
    SDL_PixelFormat *srcfmt;
slouken@1895
   839
    SDL_PixelFormat *dstfmt;
slouken@1895
   840
    SDL_BlitMap *map;
slouken@0
   841
slouken@1895
   842
    /* Clear out any previous mapping */
slouken@1895
   843
    map = src->map;
slouken@1895
   844
    if ((src->flags & SDL_RLEACCEL) == SDL_RLEACCEL) {
slouken@1895
   845
        SDL_UnRLESurface(src, 1);
slouken@1895
   846
    }
slouken@1895
   847
    SDL_InvalidateMap(map);
slouken@0
   848
slouken@1895
   849
    /* Figure out what kind of mapping we're doing */
slouken@1895
   850
    map->identity = 0;
slouken@1895
   851
    srcfmt = src->format;
slouken@1895
   852
    dstfmt = dst->format;
slouken@1895
   853
    switch (srcfmt->BytesPerPixel) {
slouken@1895
   854
    case 1:
slouken@1895
   855
        switch (dstfmt->BytesPerPixel) {
slouken@1895
   856
        case 1:
slouken@1895
   857
            /* Palette --> Palette */
slouken@2267
   858
            map->info.table =
slouken@1895
   859
                Map1to1(srcfmt->palette, dstfmt->palette, &map->identity);
slouken@1895
   860
            if (!map->identity) {
slouken@2267
   861
                if (map->info.table == NULL) {
slouken@1895
   862
                    return (-1);
slouken@1895
   863
                }
slouken@1895
   864
            }
slouken@1895
   865
            if (srcfmt->BitsPerPixel != dstfmt->BitsPerPixel)
slouken@1895
   866
                map->identity = 0;
slouken@1895
   867
            break;
slouken@0
   868
slouken@1895
   869
        default:
slouken@1895
   870
            /* Palette --> BitField */
slouken@2267
   871
            map->info.table =
slouken@2267
   872
                Map1toN(srcfmt, src->map->info.r, src->map->info.g,
slouken@2267
   873
                        src->map->info.b, src->map->info.a, dstfmt);
slouken@2267
   874
            if (map->info.table == NULL) {
slouken@1895
   875
                return (-1);
slouken@1895
   876
            }
slouken@1895
   877
            break;
slouken@1895
   878
        }
slouken@1895
   879
        break;
slouken@1895
   880
    default:
slouken@1895
   881
        switch (dstfmt->BytesPerPixel) {
slouken@1895
   882
        case 1:
slouken@1895
   883
            /* BitField --> Palette */
slouken@2267
   884
            map->info.table = MapNto1(srcfmt, dstfmt, &map->identity);
slouken@1895
   885
            if (!map->identity) {
slouken@2267
   886
                if (map->info.table == NULL) {
slouken@1895
   887
                    return (-1);
slouken@1895
   888
                }
slouken@1895
   889
            }
slouken@1895
   890
            map->identity = 0;  /* Don't optimize to copy */
slouken@1895
   891
            break;
slouken@1895
   892
        default:
slouken@1895
   893
            /* BitField --> BitField */
slouken@1895
   894
            if (FORMAT_EQUAL(srcfmt, dstfmt))
slouken@1895
   895
                map->identity = 1;
slouken@1895
   896
            break;
slouken@1895
   897
        }
slouken@1895
   898
        break;
slouken@1895
   899
    }
slouken@0
   900
slouken@1895
   901
    map->dst = dst;
slouken@1895
   902
    map->format_version = dst->format_version;
slouken@0
   903
slouken@1895
   904
    /* Choose your blitters wisely */
slouken@1895
   905
    return (SDL_CalculateBlit(src));
slouken@0
   906
}
slouken@1895
   907
slouken@1895
   908
void
slouken@1895
   909
SDL_FreeBlitMap(SDL_BlitMap * map)
slouken@0
   910
{
slouken@1895
   911
    if (map) {
slouken@1895
   912
        SDL_InvalidateMap(map);
slouken@1895
   913
        SDL_free(map);
slouken@1895
   914
    }
slouken@0
   915
}
slouken@1895
   916
slouken@1895
   917
/* vi: set ts=4 sw=4 expandtab: */