0
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1 /*
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2 * Copyright (c) 2004-2006 Kazunori "jagarl" Ueno
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3 * All rights reserved.
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4 *
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5 * Redistribution and use in source and binary forms, with or without
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6 * modification, are permitted provided that the following conditions
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7 * are met:
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8 * 1. Redistributions of source code must retain the above copyright
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9 * notice, this list of conditions and the following disclaimer.
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10 * 2. Redistributions in binary form must reproduce the above copyright
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11 * notice, this list of conditions and the following disclaimer in the
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12 * documentation and/or other materials provided with the distribution.
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13 * 3. The name of the author may not be used to endorse or promote products
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14 * derived from this software without specific prior written permission.
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15 *
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16 * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
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17 * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
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18 * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
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19 * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
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20 * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
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21 * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
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22 * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
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23 * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
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24 * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
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25 * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
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26 */
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27
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28 #include"font/font.h"
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29 #include"font/text.h"
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30 #include"rect.h"
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31 #include"SDL.h"
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32 #include"surface.h"
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33 #include<stdio.h>
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34
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35 Rect DSurfaceRenderText(TextGlyphStream::iterator start, TextGlyphStream::iterator end, const Rect& srcrect,
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36 Surface* dst, const Rect& dstrect); // 文字描画
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37 void DSurfaceFill(Surface* src, const Rect& rect, int r, int g, int b, int a); // クリア
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38 void DSurfaceFillA(Surface* src, const Rect& rect, int r, int g, int b, int a); // テキストウィンドウ背景の設定
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39 void DSurfaceMove(Surface* src_o, const Rect& srcrect, Surface* dst_o, const Rect& dstrect); // コピー
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40 void DSurfaceBlitAlpha(Surface* src_o, const Rect& srcrect_o, Surface* dst_o, const Rect& dstrect_o, const unsigned char* alpha, const Rect& alpharect);
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41 void DSurfaceBlitSaturate(Surface* src_o, const Rect& srcrect, Surface* dst_o, const Rect& dstrect, unsigned char alpha);
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42 void DSurfaceBlitMultiply(Surface* src_o, const Rect& srcrect_o, Surface* dst_o, const Rect& dstrect_o);
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43
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44 #ifndef ALPHA_MAX
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45 #define ALPHA_MAX 255
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46 #endif
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47
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48 Rect::Rect(const TextGlyph& letter) {
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49 lx = letter.x + letter.glyph->bitmap_left;
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50 rx = lx + letter.glyph->bitmap.width;
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51
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52 ty = letter.y - letter.glyph->bitmap_top;
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53 by = ty + letter.glyph->bitmap.rows;
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54 }
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55
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56 Rect::Rect(const class Surface& so) {
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57 SDL_Surface* s = (SDL_Surface*)(&so);
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58 lx = 0; ty = 0;
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59 rx = s->w; by = s->h;
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60 }
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61 inline Rect _Rect(const SDL_Rect& r) {
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62 return Rect(r.x, r.y, r.x+r.w, r.y+r.h);
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63 };
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64 inline SDL_Rect SDLed(const Rect& rect) {
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65 SDL_Rect r;
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66 r.x = rect.lx;
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67 r.y = rect.ty;
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68 r.w = rect.rx-rect.lx;
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69 r.h = rect.by-rect.ty;
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70 return r;
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71 }
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72
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73 Rect DSurfaceRenderText(TextGlyphStream::iterator start, TextGlyphStream::iterator end, const Rect& srcrect,
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74 Surface* dst_o, const Rect& dstrect) {
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75
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76 SDL_Surface* dst = (SDL_Surface*)dst_o;
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77 Rect confine_to(srcrect);
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78 Rect dst_clip(_Rect(dst->clip_rect));
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79 Rect drawn_rect(0,0,0,0);
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80
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81 int dif_x = dstrect.lx - srcrect.lx;
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82 int dif_y = dstrect.ty - srcrect.ty;
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83
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84 dst_clip.rmove(-dif_x, -dif_y);
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85 confine_to.intersect(dst_clip);
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86
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87 TextGlyphStream::iterator it;
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88 SDL_PixelFormat& fmt = *dst->format;
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89 int ashift = fmt.Ashift - fmt.Aloss; int amask = fmt.Amask;
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90 int dbpl = dst->pitch;
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91 int dbpp = fmt.BytesPerPixel;
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92
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93 SDL_LockSurface(dst);
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94 for (it=start; it!=end; it++) {
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95 Rect letter_r(*it);
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96 letter_r.intersect(confine_to);
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97 if (letter_r.empty()) continue;
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98 drawn_rect.join(letter_r);
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99
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100 int w = letter_r.width();
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101 int h = letter_r.height();
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102 int sbpl = it->glyph->bitmap.width;
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103
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104 unsigned char* smem = it->glyph->bitmap.buffer +
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105 (letter_r.ty - (it->y-it->glyph->bitmap_top)) * sbpl +
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106 (letter_r.lx - (it->x+it->glyph->bitmap_left));
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107 char* dmem = (char*)dst->pixels +
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108 (letter_r.ty + dif_y) * dbpl +
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109 (letter_r.lx + dif_x) * dbpp;
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110 Uint32 pixel = ((int(it->r)<<fmt.Rshift)&fmt.Rmask) |((int(it->g)<<fmt.Gshift)&fmt.Gmask) |((int(it->b)<<fmt.Bshift)&fmt.Bmask);
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111 int i,j;
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112 if (!it->is_rev) {
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113 if (dbpp == 4) {
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114 for (i=0; i<h; i++) {
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115 for (j=0; j<w; j++) {
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116 int alpha = smem[j];
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117 ((Uint32*)dmem)[j] = pixel | ((alpha << ashift)&amask);
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118 }
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119 smem += sbpl; dmem += dbpl;
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120 }
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121 } else if (dbpp == 2) {
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122 for (i=0; i<h; i++) {
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123 for (j=0; j<w; j++) {
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124 int alpha = smem[j];
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125 ((Uint16*)dmem)[j] = pixel | ((alpha << ashift)&amask);
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126 }
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127 smem += sbpl; dmem += dbpl;
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128 }
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129 } else abort();
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130 } else { /* reversed */
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131 if (dbpp == 4) {
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132 for (i=0; i<h; i++) {
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133 for (j=0; j<w; j++) {
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134 int alpha = 255 - smem[j];
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135 ((Uint32*)dmem)[j] = pixel | ((alpha << ashift)&amask);
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136 }
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137 smem += sbpl; dmem += dbpl;
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138 }
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139 } else if (dbpp == 2) {
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140 for (i=0; i<h; i++) {
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141 for (j=0; j<w; j++) {
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142 int alpha = 255 - smem[j];
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143 ((Uint16*)dmem)[j] = pixel | ((alpha << ashift)&amask);
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144 }
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145 smem += sbpl; dmem += dbpl;
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146 }
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147 } else abort();
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148 }
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149 }
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150 SDL_UnlockSurface(dst);
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151 drawn_rect.rmove(dif_x, dif_y);
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152 return drawn_rect;
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153 }
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154 void DSurfaceFill(Surface* src_o, const Rect& rect, int r, int g, int b, int a) {
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155 SDL_Rect sr = SDLed(rect);
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156 SDL_Surface* src = (SDL_Surface*)src_o;
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157 SDL_FillRect( src, &sr, SDL_MapRGBA(src->format, r, g, b, a));
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158 return;
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159 }
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160
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161 static void clip_rect(Rect& srcrect, Rect& dstrect, SDL_Surface* dstsurf) {
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162 Rect confine_to(srcrect);
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163 Rect dst_clip(_Rect(dstsurf->clip_rect));
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164
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165 int dif_x = dstrect.lx - srcrect.lx;
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166 int dif_y = dstrect.ty - srcrect.ty;
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167
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168 dst_clip.rmove(-dif_x, -dif_y);
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169 confine_to.intersect(dst_clip);
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170
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171 srcrect = confine_to;
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172 dstrect = confine_to;
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173 dstrect.rmove(dif_x, dif_y);
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174 }
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175
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176 void DSurfaceMove(Surface* src_o, const Rect& srcrect_o, Surface* dst_o, const Rect& dstrect_o) {
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177
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178 SDL_Surface* dst = (SDL_Surface*)dst_o;
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179 SDL_Surface* src = (SDL_Surface*)src_o;
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180
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181 if (dst->format->BytesPerPixel != src->format->BytesPerPixel) return; // RGB変換はできない
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182
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183 Rect srcrect(srcrect_o), dstrect(dstrect_o);
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184 clip_rect(srcrect, dstrect, dst);
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185
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186 SDL_LockSurface(dst); SDL_LockSurface(src);
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187 int sbpl = src->pitch;
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188 int dbpl = dst->pitch;
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189 int bpp = dst->format->BytesPerPixel;
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190 int width = bpp * srcrect.width();
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191 int height = srcrect.height();
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192 char* smem = src_o->mem(srcrect);
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193 char* dmem = dst_o->mem(dstrect);
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194 char* smem_end = src_o->mem_end(srcrect);
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195 char* dmem_end = dst_o->mem_end(dstrect);
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196
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197 // メモリに重なりがあり、src が上位側の場合、コピー方向を逆転する
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198 if (smem < dmem && dmem < smem_end) {
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199 int i,j;
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200 for (i=0; i<height; i++) {
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201 char* s = smem_end; char* d = dmem_end;
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202 for (j=0; j<width; j++)
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203 *--d = *--s;
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204 dmem_end -= dbpl; smem_end -= sbpl;
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205 }
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206 } else {
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207 int i;
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208 for (i=0; i<height; i++) {
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209 memcpy(dmem, smem, width);
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210 dmem += dbpl; smem += sbpl;
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211 }
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212 }
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213 SDL_UnlockSurface(dst);
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214 SDL_UnlockSurface(src);
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215 return;
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216 }
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217
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218 void DSurfaceFillA(Surface* dsto, const Rect& rect, int r, int g, int b, int a) {
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219 SDL_Surface* dst = (SDL_Surface*)dsto;
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220 SDL_LockSurface( dst);
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221 int dbpl = dst->pitch;
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222 int bpp = dst->format->BytesPerPixel;
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223 int width = rect.width();
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224 int height = rect.height();
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225 int amask = dst->format->Amask;
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226 int ashift = dst->format->Ashift - dst->format->Aloss;
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227
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228 char* dmem = (char*)(dst->pixels) + rect.ty*dbpl + rect.lx*bpp;
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229 unsigned int pixel = SDL_MapRGBA(dst->format, r, g, b, 0);
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230 unsigned int pixela = SDL_MapRGBA(dst->format, r, g, b, a);
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231 a += a>>7; /* 0-256 にする */
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232 int i,j;
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233 for (i=0; i<height; i++) {
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234 char* d = dmem;
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235 if (bpp == 4) {
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236 for (j=0; j<width; j++) {
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237 int alpha = (*(Uint32*)d)>>ashift;
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238 if (alpha == 0) (*(Uint32*)d) = pixel;
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239 else if (alpha == 255) *((Uint32*)d) = pixela;
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240 else { *((Uint32*)d) = pixel | ((((alpha*a)>>8)<<ashift)&amask); }
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241 d += bpp;
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242 }
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243 } else if (bpp == 2) {
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244 for (j=0; j<width; j++) {
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245 int alpha = (*(Uint16*)d)>>ashift;
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246 if (alpha == 0) *((Uint16*)d) = pixel;
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247 else if (alpha == 255) *((Uint16*)d) = pixela;
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248 else { *((Uint16*)d) = pixel | ((((alpha*a)>>8)<<ashift)&amask); }
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249 d += bpp;
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250 }
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251 }
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252 dmem += dbpl;
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253 }
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254 SDL_UnlockSurface( dst);
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255 return;
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256 }
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257
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258 #define ASHIFT 24
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259 #define CMASK1 0xff00ff
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260 #define CMASK2 0x00ff00
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261
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262 inline void blit_pixel(Uint32* dmem, Uint32* smem, const unsigned char* amem, bool use_srcalpha) {
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263 Uint32 d = *dmem;
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264 Uint32 s = *smem;
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265 Uint32 as = s>>ASHIFT;
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266 if (as == 255 || (!use_srcalpha) ) {
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267 as = *amem;
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268 } else {
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269 as += as>>7; /* 0-0xff -> 0-0x100 */
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270 as *= *amem;
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271 as >>= 8;
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272 }
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273 as += as>>7;
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274 Uint32 s1 = s & CMASK1;
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275 Uint32 d1 = d & CMASK1;
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276 d1 = (d1 + (((s1-d1) * as) >> 8)) & CMASK1;
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277 s &= CMASK2;
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278 d &= CMASK2;
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279 d = (d + (((s-d) * as) >> 8)) & CMASK2;
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280 *dmem = d1 | d | 0xff000000;
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281 }
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282 static void blit_line(Uint32* dmem, Uint32* smem, const unsigned char* amem,int ax0, int ax1, int awidth, int aj0, int aj1, bool use_srcalpha) {
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283 int j;
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284 int ax = ax0;
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285 const unsigned char* a = amem + ax0;
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286 Uint32* d = dmem;
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287 Uint32* s = smem;
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288 if (awidth == 1) { // わりとよくあるので最適化
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289 for (j=aj0; j < aj1; j++) {
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290 blit_pixel(d++, s++, amem, use_srcalpha);
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291 }
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292 } else {
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293 for (j=aj0; j < aj1; j++) {
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294 for (; ax<awidth; ax++)
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295 blit_pixel(d++, s++, a++, use_srcalpha);
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296 ax = 0;
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297 a = amem;
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298 }
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299 for (; ax < ax1; ax++) blit_pixel(d++, s++, a++, use_srcalpha);
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300 }
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301 }
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302
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303 void DSurfaceBlitAlpha(Surface* src_o, const Rect& srcrect_o, Surface* dst_o, const Rect& dstrect_o, const unsigned char* alpha, const Rect& alpharect) {
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304 SDL_Surface* dst = (SDL_Surface*)dst_o;
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305 SDL_Surface* src = (SDL_Surface*)src_o;
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306 SDL_PixelFormat& fmt = *dst->format;
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307
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308 Rect srcrect(srcrect_o), dstrect(dstrect_o);
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309 clip_rect(srcrect, dstrect, dst);
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310
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311 int awidth = alpharect.width();
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312 int aheight = alpharect.height();
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313 if (awidth == 0 || aheight == 0) return;
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314 int ax0 = srcrect.lx % awidth;
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315 int ay0 = srcrect.ty % aheight;
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316 int aj0 = srcrect.lx / awidth;
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317 int ai0 = srcrect.ty / aheight;
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318 int ax1 = srcrect.rx % awidth;
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319 int ay1 = srcrect.by % aheight;
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320 int aj1 = srcrect.rx / awidth;
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321 int ai1 = srcrect.by / aheight;
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322
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323 SDL_LockSurface(dst);
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324 SDL_LockSurface(src);
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325 int dbpl = dst->pitch;
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326 int sbpl = src->pitch;
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327 int bpp = dst->format->BytesPerPixel;
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328
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329 char* dmem = dst_o->mem(dstrect);
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330 char* smem = src_o->mem(srcrect);
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331
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332 const unsigned char* amem = alpha + ay0 * awidth;
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333 int i;
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334 int ay = ay0;
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335 for (i = ai0; i < ai1; i++) {
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336 for (; ay < aheight; ay++) {
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337 if (src->format->Amask == 0)
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338 blit_line( (Uint32*)dmem, (Uint32*)smem, amem,ax0, ax1, awidth, aj0, aj1, false);
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339 else
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340 blit_line( (Uint32*)dmem, (Uint32*)smem, amem,ax0, ax1, awidth, aj0, aj1, true);
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341 amem += awidth; dmem += dbpl; smem += sbpl;
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342 }
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343 ay = 0; amem = alpha;
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344 }
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345 for (; ay < ay1; ay++) {
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346 if (src->format->Amask == 0)
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347 blit_line( (Uint32*)dmem, (Uint32*)smem, amem,ax0, ax1, awidth, aj0, aj1, false);
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348 else
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349 blit_line( (Uint32*)dmem, (Uint32*)smem, amem,ax0, ax1, awidth, aj0, aj1, true);
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350 amem += awidth; dmem += dbpl; smem += sbpl;
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351 }
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352 SDL_UnlockSurface(src);
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353 SDL_UnlockSurface(dst);
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354 return;
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355 }
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356 void DSurfaceBlitSaturate(Surface* src_o, const Rect& srcrect_o, Surface* dst_o, const Rect& dstrect_o, unsigned char alpha) {
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357 SDL_Surface* dst = (SDL_Surface*)dst_o;
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358 SDL_Surface* src = (SDL_Surface*)src_o;
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359
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360 if (dst->format->BytesPerPixel != src->format->BytesPerPixel) return; // RGB変換はできない
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361
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362 Rect srcrect(srcrect_o), dstrect(dstrect_o);
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363 clip_rect(srcrect, dstrect, dst);
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364
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365 SDL_LockSurface(dst); SDL_LockSurface(src);
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366 int sbpl = src->pitch;
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367 int dbpl = dst->pitch;
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368 int bpp = dst->format->BytesPerPixel;
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369 int width = srcrect.width();
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370 int height = srcrect.height();
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371 char* smem = src_o->mem(srcrect);
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372 char* dmem = dst_o->mem(dstrect);
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373 char* smem_end = src_o->mem_end(srcrect);
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374 char* dmem_end = dst_o->mem_end(dstrect);
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375
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376 SDL_PixelFormat& fmt = *dst->format;
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377 int rshift = fmt.Rshift - fmt.Rloss; int rmask = fmt.Rmask;
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378 int gshift = fmt.Gshift - fmt.Gloss; int gmask = fmt.Gmask;
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379 int bshift = fmt.Bshift - fmt.Bloss; int bmask = fmt.Bmask;
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380 int allmask = rmask | gmask | bmask;
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381 int i;
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382 for (i=0; i<height; i++) {
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383 char* d = dmem; char* s = smem;
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384 int j; for (j=0; j<width; j++) {
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385 Uint32 sd = *(Uint32*)s;
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386 Uint32 dd = *(Uint32*)d;
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387 if (sd&allmask) {
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388 Uint32 sr = (sd&rmask)>>rshift;
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389 Uint32 sg = (sd&gmask)>>gshift;
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390 Uint32 sb = (sd&bmask)>>bshift;
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391 if (alpha != ALPHA_MAX) {
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392 sr = (sr*alpha)>>8;
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393 sg = (sg*alpha)>>8;
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394 sb = (sb*alpha)>>8;
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395 }
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396 Uint32 dr = sr + ((dd&rmask)>>rshift);
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397 Uint32 dg = sg + ((dd&gmask)>>gshift);
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398 Uint32 db = sb + ((dd&bmask)>>bshift);
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399 if (dr > 255) dr = 255;
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400 if (dg > 255) dg = 255;
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401 if (db > 255) db = 255;
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402 *(Uint32*)d = ((dr<<rshift)&rmask)| ((dg<<gshift)&gmask)| ((db<<bshift)&bmask);
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403 }
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404 s += bpp; d += bpp;
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405 }
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406 dmem += dbpl; smem += sbpl;
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407 }
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408 SDL_UnlockSurface(src);
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409 SDL_UnlockSurface(dst);
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410 return;
|
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411 }
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412 void DSurfaceBlitMultiply(Surface* src_o, const Rect& srcrect_o, Surface* dst_o, const Rect& dstrect_o) {
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413 SDL_Surface* dst = (SDL_Surface*)dst_o;
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414 SDL_Surface* src = (SDL_Surface*)src_o;
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415
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416 Rect srcrect(srcrect_o), dstrect(dstrect_o);
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417 clip_rect(srcrect, dstrect, dst);
|
|
418
|
|
419 SDL_LockSurface(dst);
|
|
420 SDL_LockSurface(src);
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|
421 int dbpl = dst->pitch;
|
|
422 int sbpl = src->pitch;
|
|
423 int bpp = dst->format->BytesPerPixel;
|
|
424 int width = srcrect.width();
|
|
425 int height = srcrect.height();
|
|
426 char* dmem = dst_o->mem(dstrect);
|
|
427 char* smem = src_o->mem(srcrect);
|
|
428
|
|
429 SDL_PixelFormat& fmt = *dst->format;
|
|
430 /* dst の 0-255 を 0-pixel に変換する(積算) */
|
|
431 int i;
|
|
432 int table1[256], table2[256], table3[256];
|
|
433 Uint32 src_pixel = *(Uint32*)smem;
|
|
434 src_pixel |= 0xff000000;
|
|
435 int c1=src_pixel&255, c2=(src_pixel>>8)&255, c3=(src_pixel>>16)&255;
|
|
436 for (i=0; i<256; i++) {
|
|
437 int n = i + (i>>7);
|
|
438 table1[i] = (c1*n)>>8;
|
|
439 table2[i] = (c2*n)&0xff00;
|
|
440 table3[i] = ((c3*n)<<8) & 0xff0000;
|
|
441 }
|
|
442 int err_count = 0;
|
|
443 for (i=0; i<height; i++) {
|
|
444 Uint32* d = (Uint32*)dmem;
|
|
445 Uint32* s = (Uint32*)smem;
|
|
446 int j; for (j=0; j<width; j++) {
|
|
447 Uint32 dd = *d;
|
|
448 Uint32 ss = *s;
|
|
449 if (ss == src_pixel) {
|
|
450 *(Uint32*)d = table1[ dd & 0xff] | table2[ (dd>>8) & 0xff] | table3[ (dd>>16) & 0xff];
|
|
451 } else if ( ((ss^src_pixel) & 0xffffff) == 0) { // r,g,b of ss == src_pixel
|
|
452 Uint32 as = ss>>ASHIFT;
|
|
453 as += as>>7;
|
|
454 ss = table1[ dd & 0xff] | table2[ (dd>>8) & 0xff] | table3[ (dd>>16) & 0xff];
|
|
455 Uint32 s1 = ss&CMASK1;
|
|
456 Uint32 d1 = dd&CMASK1;
|
|
457 d1 = (d1 + (((s1-d1) * as) >> 8)) & CMASK1;
|
|
458 ss &= CMASK2;
|
|
459 dd &= CMASK2;
|
|
460 dd = (dd + (((ss-dd) * as) >> 8)) & CMASK2;
|
|
461 *(Uint32*)d = d1 | dd | 0xff000000;
|
|
462 } else err_count++;
|
|
463 d++; s++;
|
|
464 }
|
|
465 dmem += dbpl; smem += sbpl;
|
|
466 }
|
|
467 if (err_count) {
|
|
468 fprintf(stderr,"multipy_blit : surface does not have unique color(%08x); %d pixels in width %d, height %d\n",
|
|
469 src_pixel, err_count, width, height);
|
|
470 }
|
|
471 SDL_UnlockSurface(dst);
|
|
472 SDL_UnlockSurface(src);
|
|
473 return;
|
|
474 }
|