Mercurial > sdl-ios-xcode
annotate src/video/SDL_RLEaccel.c @ 838:f9a5fbcdf868
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author | Sam Lantinga <slouken@libsdl.org> |
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date | Tue, 17 Feb 2004 18:01:39 +0000 |
parents | b8d311d90021 |
children | 2bacec7930b1 |
rev | line source |
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0 | 1 /* |
2 SDL - Simple DirectMedia Layer | |
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3 Copyright (C) 1997-2004 Sam Lantinga |
0 | 4 |
5 This library is free software; you can redistribute it and/or | |
6 modify it under the terms of the GNU Library General Public | |
7 License as published by the Free Software Foundation; either | |
8 version 2 of the License, or (at your option) any later version. | |
9 | |
10 This library is distributed in the hope that it will be useful, | |
11 but WITHOUT ANY WARRANTY; without even the implied warranty of | |
12 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU | |
13 Library General Public License for more details. | |
14 | |
15 You should have received a copy of the GNU Library General Public | |
16 License along with this library; if not, write to the Free | |
17 Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA | |
18 | |
19 Sam Lantinga | |
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20 slouken@libsdl.org |
0 | 21 */ |
22 | |
23 #ifdef SAVE_RCSID | |
24 static char rcsid = | |
25 "@(#) $Id$"; | |
26 #endif | |
27 | |
28 /* | |
29 * RLE encoding for software colorkey and alpha-channel acceleration | |
30 * | |
31 * Original version by Sam Lantinga | |
32 * | |
33 * Mattias Engdegård (Yorick): Rewrite. New encoding format, encoder and | |
34 * decoder. Added per-surface alpha blitter. Added per-pixel alpha | |
35 * format, encoder and blitter. | |
36 * | |
37 * Many thanks to Xark and johns for hints, benchmarks and useful comments | |
38 * leading to this code. | |
39 * | |
40 * Welcome to Macro Mayhem. | |
41 */ | |
42 | |
43 /* | |
44 * The encoding translates the image data to a stream of segments of the form | |
45 * | |
46 * <skip> <run> <data> | |
47 * | |
48 * where <skip> is the number of transparent pixels to skip, | |
49 * <run> is the number of opaque pixels to blit, | |
50 * and <data> are the pixels themselves. | |
51 * | |
52 * This basic structure is used both for colorkeyed surfaces, used for simple | |
53 * binary transparency and for per-surface alpha blending, and for surfaces | |
54 * with per-pixel alpha. The details differ, however: | |
55 * | |
56 * Encoding of colorkeyed surfaces: | |
57 * | |
58 * Encoded pixels always have the same format as the target surface. | |
59 * <skip> and <run> are unsigned 8 bit integers, except for 32 bit depth | |
60 * where they are 16 bit. This makes the pixel data aligned at all times. | |
61 * Segments never wrap around from one scan line to the next. | |
62 * | |
63 * The end of the sequence is marked by a zero <skip>,<run> pair at the * | |
64 * beginning of a line. | |
65 * | |
66 * Encoding of surfaces with per-pixel alpha: | |
67 * | |
68 * The sequence begins with a struct RLEDestFormat describing the target | |
69 * pixel format, to provide reliable un-encoding. | |
70 * | |
71 * Each scan line is encoded twice: First all completely opaque pixels, | |
72 * encoded in the target format as described above, and then all | |
73 * partially transparent (translucent) pixels (where 1 <= alpha <= 254), | |
74 * in the following 32-bit format: | |
75 * | |
76 * For 32-bit targets, each pixel has the target RGB format but with | |
77 * the alpha value occupying the highest 8 bits. The <skip> and <run> | |
78 * counts are 16 bit. | |
79 * | |
80 * For 16-bit targets, each pixel has the target RGB format, but with | |
81 * the middle component (usually green) shifted 16 steps to the left, | |
82 * and the hole filled with the 5 most significant bits of the alpha value. | |
83 * i.e. if the target has the format rrrrrggggggbbbbb, | |
84 * the encoded pixel will be 00000gggggg00000rrrrr0aaaaabbbbb. | |
85 * The <skip> and <run> counts are 8 bit for the opaque lines, 16 bit | |
86 * for the translucent lines. Two padding bytes may be inserted | |
87 * before each translucent line to keep them 32-bit aligned. | |
88 * | |
89 * The end of the sequence is marked by a zero <skip>,<run> pair at the | |
90 * beginning of an opaque line. | |
91 */ | |
92 | |
93 #include <stdio.h> | |
94 #include <stdlib.h> | |
95 #include <string.h> | |
96 | |
97 #include "SDL_types.h" | |
98 #include "SDL_video.h" | |
99 #include "SDL_error.h" | |
100 #include "SDL_sysvideo.h" | |
101 #include "SDL_blit.h" | |
102 #include "SDL_memops.h" | |
103 #include "SDL_RLEaccel_c.h" | |
104 | |
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105 #if defined(i386) && defined(__GNUC__) && defined(USE_ASMBLIT) |
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106 #include "mmx.h" |
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107 #include "SDL_cpuinfo.h" |
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108 #endif |
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109 |
0 | 110 #ifndef MAX |
111 #define MAX(a, b) ((a) > (b) ? (a) : (b)) | |
112 #endif | |
113 #ifndef MIN | |
114 #define MIN(a, b) ((a) < (b) ? (a) : (b)) | |
115 #endif | |
116 | |
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117 #define PIXEL_COPY(to, from, len, bpp) \ |
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118 do { \ |
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119 if(bpp == 4) { \ |
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120 SDL_memcpy4(to, from, (unsigned)(len)); \ |
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121 } else { \ |
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122 SDL_memcpy(to, from, (unsigned)(len) * (bpp)); \ |
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123 } \ |
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124 } while(0) |
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125 |
0 | 126 /* |
127 * Various colorkey blit methods, for opaque and per-surface alpha | |
128 */ | |
129 | |
130 #define OPAQUE_BLIT(to, from, length, bpp, alpha) \ | |
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131 PIXEL_COPY(to, from, length, bpp) |
0 | 132 |
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133 #if defined(i386) && defined(__GNUC__) && defined(USE_ASMBLIT) |
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134 |
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135 #define ALPHA_BLIT32_888MMX(to, from, length, bpp, alpha) \ |
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136 do { \ |
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137 Uint32 *srcp = (Uint32 *)(from); \ |
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138 Uint32 *dstp = (Uint32 *)(to); \ |
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139 int i = 0x00FF00FF; \ |
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140 movd_m2r(*(&i), mm3); \ |
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141 punpckldq_r2r(mm3, mm3); \ |
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142 i = 0xFF000000; \ |
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143 movd_m2r(*(&i), mm7); \ |
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144 punpckldq_r2r(mm7, mm7); \ |
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145 i = alpha | alpha << 16; \ |
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146 movd_m2r(*(&i), mm4); \ |
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147 punpckldq_r2r(mm4, mm4); \ |
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148 pcmpeqd_r2r(mm5,mm5); /* set mm5 to "1" */ \ |
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149 pxor_r2r(mm7, mm5); /* make clear alpha mask */ \ |
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150 i = length; \ |
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151 if(i & 1) { \ |
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152 movd_m2r((*srcp), mm1); /* src -> mm1 */ \ |
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153 punpcklbw_r2r(mm1, mm1); \ |
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154 pand_r2r(mm3, mm1); \ |
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155 movd_m2r((*dstp), mm2); /* dst -> mm2 */ \ |
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156 punpcklbw_r2r(mm2, mm2); \ |
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157 pand_r2r(mm3, mm2); \ |
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158 psubw_r2r(mm2, mm1); \ |
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159 pmullw_r2r(mm4, mm1); \ |
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160 psrlw_i2r(8, mm1); \ |
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161 paddw_r2r(mm1, mm2); \ |
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162 pand_r2r(mm3, mm2); \ |
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163 packuswb_r2r(mm2, mm2); \ |
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164 pand_r2r(mm5, mm2); /* 00000RGB -> mm2 */ \ |
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165 movd_r2m(mm2, *dstp); \ |
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166 ++srcp; \ |
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167 ++dstp; \ |
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168 i--; \ |
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169 } \ |
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170 for(; i > 0; --i) { \ |
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171 movq_m2r((*srcp), mm0); \ |
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172 movq_r2r(mm0, mm1); \ |
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173 punpcklbw_r2r(mm0, mm0); \ |
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174 movq_m2r((*dstp), mm2); \ |
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175 punpckhbw_r2r(mm1, mm1); \ |
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176 movq_r2r(mm2, mm6); \ |
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177 pand_r2r(mm3, mm0); \ |
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178 punpcklbw_r2r(mm2, mm2); \ |
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179 pand_r2r(mm3, mm1); \ |
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180 punpckhbw_r2r(mm6, mm6); \ |
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181 pand_r2r(mm3, mm2); \ |
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182 psubw_r2r(mm2, mm0); \ |
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183 pmullw_r2r(mm4, mm0); \ |
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184 pand_r2r(mm3, mm6); \ |
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185 psubw_r2r(mm6, mm1); \ |
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186 pmullw_r2r(mm4, mm1); \ |
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187 psrlw_i2r(8, mm0); \ |
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188 paddw_r2r(mm0, mm2); \ |
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189 psrlw_i2r(8, mm1); \ |
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190 paddw_r2r(mm1, mm6); \ |
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191 pand_r2r(mm3, mm2); \ |
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192 pand_r2r(mm3, mm6); \ |
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193 packuswb_r2r(mm2, mm2); \ |
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194 packuswb_r2r(mm6, mm6); \ |
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195 psrlq_i2r(32, mm2); \ |
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196 psllq_i2r(32, mm6); \ |
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197 por_r2r(mm6, mm2); \ |
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198 pand_r2r(mm5, mm2); /* 00000RGB -> mm2 */ \ |
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199 movq_r2m(mm2, *dstp); \ |
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200 srcp += 2; \ |
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201 dstp += 2; \ |
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202 i--; \ |
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203 } \ |
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204 emms(); \ |
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205 } while(0) |
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206 |
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207 #define ALPHA_BLIT16_565MMX(to, from, length, bpp, alpha) \ |
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208 do { \ |
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209 int i, n = 0; \ |
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210 Uint16 *srcp = (Uint16 *)(from); \ |
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211 Uint16 *dstp = (Uint16 *)(to); \ |
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212 Uint32 ALPHA = 0xF800; \ |
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213 movd_m2r(*(&ALPHA), mm1); \ |
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214 punpcklwd_r2r(mm1, mm1); \ |
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215 punpcklwd_r2r(mm1, mm1); \ |
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216 ALPHA = 0x07E0; \ |
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217 movd_m2r(*(&ALPHA), mm4); \ |
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218 punpcklwd_r2r(mm4, mm4); \ |
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219 punpcklwd_r2r(mm4, mm4); \ |
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220 ALPHA = 0x001F; \ |
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221 movd_m2r(*(&ALPHA), mm7); \ |
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222 punpcklwd_r2r(mm7, mm7); \ |
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223 punpcklwd_r2r(mm7, mm7); \ |
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224 alpha &= ~(1+2+4); \ |
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225 i = (Uint32)alpha | (Uint32)alpha << 16; \ |
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226 movd_m2r(*(&i), mm0); \ |
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227 punpckldq_r2r(mm0, mm0); \ |
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228 ALPHA = alpha >> 3; \ |
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229 i = ((int)(length) & 3); \ |
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230 for(; i > 0; --i) { \ |
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231 Uint32 s = *srcp++; \ |
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232 Uint32 d = *dstp; \ |
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233 s = (s | s << 16) & 0x07e0f81f; \ |
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234 d = (d | d << 16) & 0x07e0f81f; \ |
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235 d += (s - d) * ALPHA >> 5; \ |
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236 d &= 0x07e0f81f; \ |
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237 *dstp++ = d | d >> 16; \ |
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238 n++; \ |
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239 } \ |
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240 i = (int)(length) - n; \ |
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241 for(; i > 0; --i) { \ |
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242 movq_m2r((*dstp), mm3); \ |
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243 movq_m2r((*srcp), mm2); \ |
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244 movq_r2r(mm2, mm5); \ |
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245 pand_r2r(mm1 , mm5); \ |
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246 psrlq_i2r(11, mm5); \ |
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247 movq_r2r(mm3, mm6); \ |
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248 pand_r2r(mm1 , mm6); \ |
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249 psrlq_i2r(11, mm6); \ |
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250 psubw_r2r(mm6, mm5); \ |
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251 pmullw_r2r(mm0, mm5); \ |
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252 psrlw_i2r(8, mm5); \ |
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253 paddw_r2r(mm5, mm6); \ |
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254 psllq_i2r(11, mm6); \ |
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255 pand_r2r(mm1, mm6); \ |
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256 movq_r2r(mm4, mm5); \ |
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257 por_r2r(mm7, mm5); \ |
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258 pand_r2r(mm5, mm3); \ |
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259 por_r2r(mm6, mm3); \ |
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260 movq_r2r(mm2, mm5); \ |
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261 pand_r2r(mm4 , mm5); \ |
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262 psrlq_i2r(5, mm5); \ |
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263 movq_r2r(mm3, mm6); \ |
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264 pand_r2r(mm4 , mm6); \ |
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265 psrlq_i2r(5, mm6); \ |
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266 psubw_r2r(mm6, mm5); \ |
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267 pmullw_r2r(mm0, mm5); \ |
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268 psrlw_i2r(8, mm5); \ |
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269 paddw_r2r(mm5, mm6); \ |
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270 psllq_i2r(5, mm6); \ |
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271 pand_r2r(mm4, mm6); \ |
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272 movq_r2r(mm1, mm5); \ |
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273 por_r2r(mm7, mm5); \ |
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274 pand_r2r(mm5, mm3); \ |
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275 por_r2r(mm6, mm3); \ |
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276 movq_r2r(mm2, mm5); \ |
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277 pand_r2r(mm7 , mm5); \ |
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278 movq_r2r(mm3, mm6); \ |
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279 pand_r2r(mm7 , mm6); \ |
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280 psubw_r2r(mm6, mm5); \ |
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281 pmullw_r2r(mm0, mm5); \ |
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282 psrlw_i2r(8, mm5); \ |
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283 paddw_r2r(mm5, mm6); \ |
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284 pand_r2r(mm7, mm6); \ |
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285 movq_r2r(mm1, mm5); \ |
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286 por_r2r(mm4, mm5); \ |
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287 pand_r2r(mm5, mm3); \ |
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288 por_r2r(mm6, mm3); \ |
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289 movq_r2m(mm3, *dstp); \ |
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290 srcp += 4; \ |
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291 dstp += 4; \ |
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292 i -= 3; \ |
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293 } \ |
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294 emms(); \ |
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295 } while(0) |
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296 |
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297 #define ALPHA_BLIT16_555MMX(to, from, length, bpp, alpha) \ |
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298 do { \ |
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299 int i, n = 0; \ |
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300 Uint16 *srcp = (Uint16 *)(from); \ |
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301 Uint16 *dstp = (Uint16 *)(to); \ |
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302 Uint32 ALPHA = 0x7C00; \ |
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303 movd_m2r(*(&ALPHA), mm1); \ |
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304 punpcklwd_r2r(mm1, mm1); \ |
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305 punpcklwd_r2r(mm1, mm1); \ |
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306 ALPHA = 0x03E0; \ |
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307 movd_m2r(*(&ALPHA), mm4); \ |
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308 punpcklwd_r2r(mm4, mm4); \ |
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309 punpcklwd_r2r(mm4, mm4); \ |
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310 ALPHA = 0x001F; \ |
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311 movd_m2r(*(&ALPHA), mm7); \ |
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312 punpcklwd_r2r(mm7, mm7); \ |
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313 punpcklwd_r2r(mm7, mm7); \ |
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314 alpha &= ~(1+2+4); \ |
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315 i = (Uint32)alpha | (Uint32)alpha << 16; \ |
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316 movd_m2r(*(&i), mm0); \ |
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317 punpckldq_r2r(mm0, mm0); \ |
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318 i = ((int)(length) & 3); \ |
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319 ALPHA = alpha >> 3; \ |
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320 for(; i > 0; --i) { \ |
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321 Uint32 s = *srcp++; \ |
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322 Uint32 d = *dstp; \ |
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323 s = (s | s << 16) & 0x03e07c1f; \ |
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324 d = (d | d << 16) & 0x03e07c1f; \ |
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325 d += (s - d) * ALPHA >> 5; \ |
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326 d &= 0x03e07c1f; \ |
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327 *dstp++ = d | d >> 16; \ |
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328 n++; \ |
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329 } \ |
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330 i = (int)(length) - n; \ |
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331 for(; i > 0; --i) { \ |
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332 movq_m2r((*dstp), mm3); \ |
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333 movq_m2r((*srcp), mm2); \ |
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334 movq_r2r(mm2, mm5); \ |
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335 pand_r2r(mm1 , mm5); \ |
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336 psrlq_i2r(10, mm5); \ |
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337 movq_r2r(mm3, mm6); \ |
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338 pand_r2r(mm1 , mm6); \ |
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339 psrlq_i2r(10, mm6); \ |
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340 psubw_r2r(mm6, mm5); \ |
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341 pmullw_r2r(mm0, mm5); \ |
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342 psrlw_i2r(8, mm5); \ |
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343 paddw_r2r(mm5, mm6); \ |
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344 psllq_i2r(10, mm6); \ |
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345 pand_r2r(mm1, mm6); \ |
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346 movq_r2r(mm4, mm5); \ |
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347 por_r2r(mm7, mm5); \ |
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348 pand_r2r(mm5, mm3); \ |
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349 por_r2r(mm6, mm3); \ |
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350 movq_r2r(mm2, mm5); \ |
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351 pand_r2r(mm4 , mm5); \ |
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352 psrlq_i2r(5, mm5); \ |
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353 movq_r2r(mm3, mm6); \ |
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354 pand_r2r(mm4 , mm6); \ |
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355 psrlq_i2r(5, mm6); \ |
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356 psubw_r2r(mm6, mm5); \ |
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357 pmullw_r2r(mm0, mm5); \ |
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358 psrlw_i2r(8, mm5); \ |
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359 paddw_r2r(mm5, mm6); \ |
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360 psllq_i2r(5, mm6); \ |
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361 pand_r2r(mm4, mm6); \ |
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362 movq_r2r(mm1, mm5); \ |
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363 por_r2r(mm7, mm5); \ |
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364 pand_r2r(mm5, mm3); \ |
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365 por_r2r(mm6, mm3); \ |
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366 movq_r2r(mm2, mm5); \ |
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367 pand_r2r(mm7 , mm5); \ |
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368 movq_r2r(mm3, mm6); \ |
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369 pand_r2r(mm7 , mm6); \ |
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370 psubw_r2r(mm6, mm5); \ |
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371 pmullw_r2r(mm0, mm5); \ |
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372 psrlw_i2r(8, mm5); \ |
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373 paddw_r2r(mm5, mm6); \ |
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374 pand_r2r(mm7, mm6); \ |
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375 movq_r2r(mm1, mm5); \ |
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376 por_r2r(mm4, mm5); \ |
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377 pand_r2r(mm5, mm3); \ |
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378 por_r2r(mm6, mm3); \ |
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379 movq_r2m(mm3, *dstp); \ |
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380 srcp += 4; \ |
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381 dstp += 4; \ |
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382 i -= 3; \ |
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383 } \ |
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384 emms(); \ |
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385 } while(0) |
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386 |
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387 #endif |
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388 |
0 | 389 /* |
390 * For 32bpp pixels on the form 0x00rrggbb: | |
391 * If we treat the middle component separately, we can process the two | |
392 * remaining in parallel. This is safe to do because of the gap to the left | |
393 * of each component, so the bits from the multiplication don't collide. | |
394 * This can be used for any RGB permutation of course. | |
395 */ | |
396 #define ALPHA_BLIT32_888(to, from, length, bpp, alpha) \ | |
397 do { \ | |
398 int i; \ | |
399 Uint32 *src = (Uint32 *)(from); \ | |
400 Uint32 *dst = (Uint32 *)(to); \ | |
401 for(i = 0; i < (int)(length); i++) { \ | |
402 Uint32 s = *src++; \ | |
403 Uint32 d = *dst; \ | |
404 Uint32 s1 = s & 0xff00ff; \ | |
405 Uint32 d1 = d & 0xff00ff; \ | |
406 d1 = (d1 + ((s1 - d1) * alpha >> 8)) & 0xff00ff; \ | |
407 s &= 0xff00; \ | |
408 d &= 0xff00; \ | |
409 d = (d + ((s - d) * alpha >> 8)) & 0xff00; \ | |
410 *dst++ = d1 | d; \ | |
411 } \ | |
412 } while(0) | |
413 | |
414 /* | |
415 * For 16bpp pixels we can go a step further: put the middle component | |
416 * in the high 16 bits of a 32 bit word, and process all three RGB | |
417 * components at the same time. Since the smallest gap is here just | |
418 * 5 bits, we have to scale alpha down to 5 bits as well. | |
419 */ | |
420 #define ALPHA_BLIT16_565(to, from, length, bpp, alpha) \ | |
421 do { \ | |
422 int i; \ | |
423 Uint16 *src = (Uint16 *)(from); \ | |
424 Uint16 *dst = (Uint16 *)(to); \ | |
689
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425 Uint32 ALPHA = alpha >> 3; \ |
0 | 426 for(i = 0; i < (int)(length); i++) { \ |
427 Uint32 s = *src++; \ | |
428 Uint32 d = *dst; \ | |
429 s = (s | s << 16) & 0x07e0f81f; \ | |
430 d = (d | d << 16) & 0x07e0f81f; \ | |
689
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431 d += (s - d) * ALPHA >> 5; \ |
0 | 432 d &= 0x07e0f81f; \ |
433 *dst++ = d | d >> 16; \ | |
434 } \ | |
435 } while(0) | |
436 | |
437 #define ALPHA_BLIT16_555(to, from, length, bpp, alpha) \ | |
438 do { \ | |
439 int i; \ | |
440 Uint16 *src = (Uint16 *)(from); \ | |
441 Uint16 *dst = (Uint16 *)(to); \ | |
689
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442 Uint32 ALPHA = alpha >> 3; \ |
0 | 443 for(i = 0; i < (int)(length); i++) { \ |
444 Uint32 s = *src++; \ | |
445 Uint32 d = *dst; \ | |
446 s = (s | s << 16) & 0x03e07c1f; \ | |
447 d = (d | d << 16) & 0x03e07c1f; \ | |
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448 d += (s - d) * ALPHA >> 5; \ |
0 | 449 d &= 0x03e07c1f; \ |
450 *dst++ = d | d >> 16; \ | |
451 } \ | |
452 } while(0) | |
453 | |
454 /* | |
455 * The general slow catch-all function, for remaining depths and formats | |
456 */ | |
457 #define ALPHA_BLIT_ANY(to, from, length, bpp, alpha) \ | |
458 do { \ | |
459 int i; \ | |
460 Uint8 *src = from; \ | |
461 Uint8 *dst = to; \ | |
462 for(i = 0; i < (int)(length); i++) { \ | |
463 Uint32 s, d; \ | |
464 unsigned rs, gs, bs, rd, gd, bd; \ | |
465 switch(bpp) { \ | |
466 case 2: \ | |
467 s = *(Uint16 *)src; \ | |
468 d = *(Uint16 *)dst; \ | |
469 break; \ | |
470 case 3: \ | |
471 if(SDL_BYTEORDER == SDL_BIG_ENDIAN) { \ | |
472 s = (src[0] << 16) | (src[1] << 8) | src[2]; \ | |
473 d = (dst[0] << 16) | (dst[1] << 8) | dst[2]; \ | |
474 } else { \ | |
475 s = (src[2] << 16) | (src[1] << 8) | src[0]; \ | |
476 d = (dst[2] << 16) | (dst[1] << 8) | dst[0]; \ | |
477 } \ | |
478 break; \ | |
479 case 4: \ | |
480 s = *(Uint32 *)src; \ | |
481 d = *(Uint32 *)dst; \ | |
482 break; \ | |
483 } \ | |
484 RGB_FROM_PIXEL(s, fmt, rs, gs, bs); \ | |
485 RGB_FROM_PIXEL(d, fmt, rd, gd, bd); \ | |
486 rd += (rs - rd) * alpha >> 8; \ | |
487 gd += (gs - gd) * alpha >> 8; \ | |
488 bd += (bs - bd) * alpha >> 8; \ | |
489 PIXEL_FROM_RGB(d, fmt, rd, gd, bd); \ | |
490 switch(bpp) { \ | |
491 case 2: \ | |
492 *(Uint16 *)dst = d; \ | |
493 break; \ | |
494 case 3: \ | |
495 if(SDL_BYTEORDER == SDL_BIG_ENDIAN) { \ | |
496 dst[0] = d >> 16; \ | |
497 dst[1] = d >> 8; \ | |
498 dst[2] = d; \ | |
499 } else { \ | |
500 dst[0] = d; \ | |
501 dst[1] = d >> 8; \ | |
502 dst[2] = d >> 16; \ | |
503 } \ | |
504 break; \ | |
505 case 4: \ | |
506 *(Uint32 *)dst = d; \ | |
507 break; \ | |
508 } \ | |
509 src += bpp; \ | |
510 dst += bpp; \ | |
511 } \ | |
512 } while(0) | |
513 | |
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514 #if defined(i386) && defined(__GNUC__) && defined(USE_ASMBLIT) |
0 | 515 |
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516 #define ALPHA_BLIT32_888_50MMX(to, from, length, bpp, alpha) \ |
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517 do { \ |
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518 Uint32 *srcp = (Uint32 *)(from); \ |
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519 Uint32 *dstp = (Uint32 *)(to); \ |
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520 int i = 0x00fefefe; \ |
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521 movd_m2r(*(&i), mm4); \ |
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522 punpckldq_r2r(mm4, mm4); \ |
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526
diff
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523 i = 0x00010101; \ |
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524 movd_m2r(*(&i), mm3); \ |
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Date: Tue, 19 Aug 2003 17:57:00 +0200
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526
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525 punpckldq_r2r(mm3, mm3); \ |
5bb080d35049
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diff
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526 i = (int)(length); \ |
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parents:
526
diff
changeset
|
527 if( i & 1 ) { \ |
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parents:
526
diff
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|
528 Uint32 s = *srcp++; \ |
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Sam Lantinga <slouken@libsdl.org>
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526
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529 Uint32 d = *dstp; \ |
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Date: Tue, 19 Aug 2003 17:57:00 +0200
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530 *dstp++ = (((s & 0x00fefefe) + (d & 0x00fefefe)) >> 1) \ |
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parents:
526
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531 + (s & d & 0x00010101); \ |
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Sam Lantinga <slouken@libsdl.org>
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532 i--; \ |
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Sam Lantinga <slouken@libsdl.org>
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533 } \ |
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Sam Lantinga <slouken@libsdl.org>
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534 for(; i > 0; --i) { \ |
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526
diff
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|
535 movq_m2r((*dstp), mm2); /* dst -> mm2 */ \ |
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parents:
526
diff
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536 movq_r2r(mm2, mm6); /* dst -> mm6 */ \ |
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537 movq_m2r((*srcp), mm1); /* src -> mm1 */ \ |
5bb080d35049
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|
538 movq_r2r(mm1, mm5); /* src -> mm5 */ \ |
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539 pand_r2r(mm4, mm6); /* dst & 0x00fefefe -> mm6 */ \ |
5bb080d35049
Date: Tue, 19 Aug 2003 17:57:00 +0200
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|
540 pand_r2r(mm4, mm5); /* src & 0x00fefefe -> mm5 */ \ |
5bb080d35049
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parents:
526
diff
changeset
|
541 paddd_r2r(mm6, mm5); /* (dst & 0x00fefefe) + (dst & 0x00fefefe) -> mm5 */ \ |
5bb080d35049
Date: Tue, 19 Aug 2003 17:57:00 +0200
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|
542 psrld_i2r(1, mm5); \ |
5bb080d35049
Date: Tue, 19 Aug 2003 17:57:00 +0200
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parents:
526
diff
changeset
|
543 pand_r2r(mm1, mm2); /* s & d -> mm2 */ \ |
5bb080d35049
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Sam Lantinga <slouken@libsdl.org>
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544 pand_r2r(mm3, mm2); /* s & d & 0x00010101 -> mm2 */ \ |
5bb080d35049
Date: Tue, 19 Aug 2003 17:57:00 +0200
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526
diff
changeset
|
545 paddd_r2r(mm5, mm2); \ |
5bb080d35049
Date: Tue, 19 Aug 2003 17:57:00 +0200
Sam Lantinga <slouken@libsdl.org>
parents:
526
diff
changeset
|
546 movq_r2m(mm2, (*dstp)); \ |
5bb080d35049
Date: Tue, 19 Aug 2003 17:57:00 +0200
Sam Lantinga <slouken@libsdl.org>
parents:
526
diff
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|
547 dstp += 2; \ |
5bb080d35049
Date: Tue, 19 Aug 2003 17:57:00 +0200
Sam Lantinga <slouken@libsdl.org>
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526
diff
changeset
|
548 srcp += 2; \ |
5bb080d35049
Date: Tue, 19 Aug 2003 17:57:00 +0200
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diff
changeset
|
549 i--; \ |
5bb080d35049
Date: Tue, 19 Aug 2003 17:57:00 +0200
Sam Lantinga <slouken@libsdl.org>
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526
diff
changeset
|
550 } \ |
5bb080d35049
Date: Tue, 19 Aug 2003 17:57:00 +0200
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526
diff
changeset
|
551 emms(); \ |
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526
diff
changeset
|
552 } while(0) |
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526
diff
changeset
|
553 |
5bb080d35049
Date: Tue, 19 Aug 2003 17:57:00 +0200
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parents:
526
diff
changeset
|
554 #endif |
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526
diff
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|
555 |
0 | 556 /* |
557 * Special case: 50% alpha (alpha=128) | |
558 * This is treated specially because it can be optimized very well, and | |
559 * since it is good for many cases of semi-translucency. | |
560 * The theory is to do all three components at the same time: | |
561 * First zero the lowest bit of each component, which gives us room to | |
562 * add them. Then shift right and add the sum of the lowest bits. | |
563 */ | |
564 #define ALPHA_BLIT32_888_50(to, from, length, bpp, alpha) \ | |
565 do { \ | |
566 int i; \ | |
567 Uint32 *src = (Uint32 *)(from); \ | |
568 Uint32 *dst = (Uint32 *)(to); \ | |
569 for(i = 0; i < (int)(length); i++) { \ | |
570 Uint32 s = *src++; \ | |
571 Uint32 d = *dst; \ | |
572 *dst++ = (((s & 0x00fefefe) + (d & 0x00fefefe)) >> 1) \ | |
573 + (s & d & 0x00010101); \ | |
574 } \ | |
575 } while(0) | |
576 | |
577 /* | |
578 * For 16bpp, we can actually blend two pixels in parallel, if we take | |
579 * care to shift before we add, not after. | |
580 */ | |
581 | |
582 /* helper: blend a single 16 bit pixel at 50% */ | |
583 #define BLEND16_50(dst, src, mask) \ | |
584 do { \ | |
585 Uint32 s = *src++; \ | |
586 Uint32 d = *dst; \ | |
587 *dst++ = (((s & mask) + (d & mask)) >> 1) \ | |
588 + (s & d & (~mask & 0xffff)); \ | |
589 } while(0) | |
590 | |
591 /* basic 16bpp blender. mask is the pixels to keep when adding. */ | |
592 #define ALPHA_BLIT16_50(to, from, length, bpp, alpha, mask) \ | |
593 do { \ | |
594 unsigned n = (length); \ | |
595 Uint16 *src = (Uint16 *)(from); \ | |
596 Uint16 *dst = (Uint16 *)(to); \ | |
597 if(((unsigned long)src ^ (unsigned long)dst) & 3) { \ | |
598 /* source and destination not in phase, blit one by one */ \ | |
599 while(n--) \ | |
600 BLEND16_50(dst, src, mask); \ | |
601 } else { \ | |
602 if((unsigned long)src & 3) { \ | |
603 /* first odd pixel */ \ | |
604 BLEND16_50(dst, src, mask); \ | |
605 n--; \ | |
606 } \ | |
607 for(; n > 1; n -= 2) { \ | |
608 Uint32 s = *(Uint32 *)src; \ | |
609 Uint32 d = *(Uint32 *)dst; \ | |
610 *(Uint32 *)dst = ((s & (mask | mask << 16)) >> 1) \ | |
611 + ((d & (mask | mask << 16)) >> 1) \ | |
612 + (s & d & (~(mask | mask << 16))); \ | |
613 src += 2; \ | |
614 dst += 2; \ | |
615 } \ | |
616 if(n) \ | |
617 BLEND16_50(dst, src, mask); /* last odd pixel */ \ | |
618 } \ | |
619 } while(0) | |
620 | |
621 #define ALPHA_BLIT16_565_50(to, from, length, bpp, alpha) \ | |
622 ALPHA_BLIT16_50(to, from, length, bpp, alpha, 0xf7de) | |
623 | |
624 #define ALPHA_BLIT16_555_50(to, from, length, bpp, alpha) \ | |
625 ALPHA_BLIT16_50(to, from, length, bpp, alpha, 0xfbde) | |
626 | |
689
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627 #if defined(i386) && defined(__GNUC__) && defined(USE_ASMBLIT) |
0 | 628 |
629 #define CHOOSE_BLIT(blitter, alpha, fmt) \ | |
630 do { \ | |
631 if(alpha == 255) { \ | |
632 switch(fmt->BytesPerPixel) { \ | |
633 case 1: blitter(1, Uint8, OPAQUE_BLIT); break; \ | |
634 case 2: blitter(2, Uint8, OPAQUE_BLIT); break; \ | |
635 case 3: blitter(3, Uint8, OPAQUE_BLIT); break; \ | |
636 case 4: blitter(4, Uint16, OPAQUE_BLIT); break; \ | |
637 } \ | |
638 } else { \ | |
639 switch(fmt->BytesPerPixel) { \ | |
640 case 1: \ | |
641 /* No 8bpp alpha blitting */ \ | |
642 break; \ | |
643 \ | |
644 case 2: \ | |
645 switch(fmt->Rmask | fmt->Gmask | fmt->Bmask) { \ | |
646 case 0xffff: \ | |
647 if(fmt->Gmask == 0x07e0 \ | |
648 || fmt->Rmask == 0x07e0 \ | |
649 || fmt->Bmask == 0x07e0) { \ | |
650 if(alpha == 128) \ | |
651 blitter(2, Uint8, ALPHA_BLIT16_565_50); \ | |
652 else { \ | |
739
22dbf364c017
Added SDL_HasMMX(), SDL_Has3DNow(), SDL_HasSSE() in SDL_cpuinfo.h
Sam Lantinga <slouken@libsdl.org>
parents:
689
diff
changeset
|
653 if(SDL_HasMMX()) \ |
689
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654 blitter(2, Uint8, ALPHA_BLIT16_565MMX); \ |
5bb080d35049
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526
diff
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|
655 else \ |
5bb080d35049
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diff
changeset
|
656 blitter(2, Uint8, ALPHA_BLIT16_565); \ |
5bb080d35049
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parents:
526
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|
657 } \ |
5bb080d35049
Date: Tue, 19 Aug 2003 17:57:00 +0200
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526
diff
changeset
|
658 } else \ |
5bb080d35049
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526
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changeset
|
659 goto general16; \ |
5bb080d35049
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parents:
526
diff
changeset
|
660 break; \ |
5bb080d35049
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parents:
526
diff
changeset
|
661 \ |
5bb080d35049
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526
diff
changeset
|
662 case 0x7fff: \ |
5bb080d35049
Date: Tue, 19 Aug 2003 17:57:00 +0200
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526
diff
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|
663 if(fmt->Gmask == 0x03e0 \ |
5bb080d35049
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diff
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|
664 || fmt->Rmask == 0x03e0 \ |
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526
diff
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|
665 || fmt->Bmask == 0x03e0) { \ |
5bb080d35049
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diff
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|
666 if(alpha == 128) \ |
5bb080d35049
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526
diff
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|
667 blitter(2, Uint8, ALPHA_BLIT16_555_50); \ |
5bb080d35049
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526
diff
changeset
|
668 else { \ |
739
22dbf364c017
Added SDL_HasMMX(), SDL_Has3DNow(), SDL_HasSSE() in SDL_cpuinfo.h
Sam Lantinga <slouken@libsdl.org>
parents:
689
diff
changeset
|
669 if(SDL_HasMMX()) \ |
689
5bb080d35049
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|
670 blitter(2, Uint8, ALPHA_BLIT16_555MMX); \ |
5bb080d35049
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changeset
|
671 else \ |
5bb080d35049
Date: Tue, 19 Aug 2003 17:57:00 +0200
Sam Lantinga <slouken@libsdl.org>
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526
diff
changeset
|
672 blitter(2, Uint8, ALPHA_BLIT16_555); \ |
5bb080d35049
Date: Tue, 19 Aug 2003 17:57:00 +0200
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526
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|
673 } \ |
5bb080d35049
Date: Tue, 19 Aug 2003 17:57:00 +0200
Sam Lantinga <slouken@libsdl.org>
parents:
526
diff
changeset
|
674 break; \ |
5bb080d35049
Date: Tue, 19 Aug 2003 17:57:00 +0200
Sam Lantinga <slouken@libsdl.org>
parents:
526
diff
changeset
|
675 } \ |
5bb080d35049
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Sam Lantinga <slouken@libsdl.org>
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526
diff
changeset
|
676 /* fallthrough */ \ |
5bb080d35049
Date: Tue, 19 Aug 2003 17:57:00 +0200
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526
diff
changeset
|
677 \ |
5bb080d35049
Date: Tue, 19 Aug 2003 17:57:00 +0200
Sam Lantinga <slouken@libsdl.org>
parents:
526
diff
changeset
|
678 default: \ |
5bb080d35049
Date: Tue, 19 Aug 2003 17:57:00 +0200
Sam Lantinga <slouken@libsdl.org>
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526
diff
changeset
|
679 general16: \ |
5bb080d35049
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526
diff
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|
680 blitter(2, Uint8, ALPHA_BLIT_ANY); \ |
5bb080d35049
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parents:
526
diff
changeset
|
681 } \ |
5bb080d35049
Date: Tue, 19 Aug 2003 17:57:00 +0200
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parents:
526
diff
changeset
|
682 break; \ |
5bb080d35049
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parents:
526
diff
changeset
|
683 \ |
5bb080d35049
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526
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changeset
|
684 case 3: \ |
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diff
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|
685 blitter(3, Uint8, ALPHA_BLIT_ANY); \ |
5bb080d35049
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parents:
526
diff
changeset
|
686 break; \ |
5bb080d35049
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Sam Lantinga <slouken@libsdl.org>
parents:
526
diff
changeset
|
687 \ |
5bb080d35049
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parents:
526
diff
changeset
|
688 case 4: \ |
5bb080d35049
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689 if((fmt->Rmask | fmt->Gmask | fmt->Bmask) == 0x00ffffff \ |
5bb080d35049
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526
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|
690 && (fmt->Gmask == 0xff00 || fmt->Rmask == 0xff00 \ |
5bb080d35049
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526
diff
changeset
|
691 || fmt->Bmask == 0xff00)) { \ |
5bb080d35049
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parents:
526
diff
changeset
|
692 if(alpha == 128) \ |
5bb080d35049
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parents:
526
diff
changeset
|
693 { \ |
739
22dbf364c017
Added SDL_HasMMX(), SDL_Has3DNow(), SDL_HasSSE() in SDL_cpuinfo.h
Sam Lantinga <slouken@libsdl.org>
parents:
689
diff
changeset
|
694 if(SDL_HasMMX()) \ |
689
5bb080d35049
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526
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changeset
|
695 blitter(4, Uint16, ALPHA_BLIT32_888_50MMX);\ |
5bb080d35049
Date: Tue, 19 Aug 2003 17:57:00 +0200
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parents:
526
diff
changeset
|
696 else \ |
5bb080d35049
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parents:
526
diff
changeset
|
697 blitter(4, Uint16, ALPHA_BLIT32_888_50);\ |
5bb080d35049
Date: Tue, 19 Aug 2003 17:57:00 +0200
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parents:
526
diff
changeset
|
698 } \ |
5bb080d35049
Date: Tue, 19 Aug 2003 17:57:00 +0200
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parents:
526
diff
changeset
|
699 else \ |
5bb080d35049
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parents:
526
diff
changeset
|
700 { \ |
739
22dbf364c017
Added SDL_HasMMX(), SDL_Has3DNow(), SDL_HasSSE() in SDL_cpuinfo.h
Sam Lantinga <slouken@libsdl.org>
parents:
689
diff
changeset
|
701 if(SDL_HasMMX()) \ |
689
5bb080d35049
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parents:
526
diff
changeset
|
702 blitter(4, Uint16, ALPHA_BLIT32_888MMX);\ |
5bb080d35049
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parents:
526
diff
changeset
|
703 else \ |
5bb080d35049
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parents:
526
diff
changeset
|
704 blitter(4, Uint16, ALPHA_BLIT32_888); \ |
5bb080d35049
Date: Tue, 19 Aug 2003 17:57:00 +0200
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parents:
526
diff
changeset
|
705 } \ |
5bb080d35049
Date: Tue, 19 Aug 2003 17:57:00 +0200
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parents:
526
diff
changeset
|
706 } else \ |
5bb080d35049
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parents:
526
diff
changeset
|
707 blitter(4, Uint16, ALPHA_BLIT_ANY); \ |
5bb080d35049
Date: Tue, 19 Aug 2003 17:57:00 +0200
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parents:
526
diff
changeset
|
708 break; \ |
5bb080d35049
Date: Tue, 19 Aug 2003 17:57:00 +0200
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parents:
526
diff
changeset
|
709 } \ |
5bb080d35049
Date: Tue, 19 Aug 2003 17:57:00 +0200
Sam Lantinga <slouken@libsdl.org>
parents:
526
diff
changeset
|
710 } \ |
5bb080d35049
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parents:
526
diff
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|
711 } while(0) |
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712 |
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713 #else |
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714 |
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715 #define CHOOSE_BLIT(blitter, alpha, fmt) \ |
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716 do { \ |
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717 if(alpha == 255) { \ |
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718 switch(fmt->BytesPerPixel) { \ |
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719 case 1: blitter(1, Uint8, OPAQUE_BLIT); break; \ |
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720 case 2: blitter(2, Uint8, OPAQUE_BLIT); break; \ |
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721 case 3: blitter(3, Uint8, OPAQUE_BLIT); break; \ |
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722 case 4: blitter(4, Uint16, OPAQUE_BLIT); break; \ |
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723 } \ |
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724 } else { \ |
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725 switch(fmt->BytesPerPixel) { \ |
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726 case 1: \ |
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727 /* No 8bpp alpha blitting */ \ |
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728 break; \ |
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729 \ |
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730 case 2: \ |
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731 switch(fmt->Rmask | fmt->Gmask | fmt->Bmask) { \ |
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732 case 0xffff: \ |
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733 if(fmt->Gmask == 0x07e0 \ |
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734 || fmt->Rmask == 0x07e0 \ |
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735 || fmt->Bmask == 0x07e0) { \ |
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736 if(alpha == 128) \ |
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737 blitter(2, Uint8, ALPHA_BLIT16_565_50); \ |
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738 else { \ |
0 | 739 blitter(2, Uint8, ALPHA_BLIT16_565); \ |
740 } \ | |
741 } else \ | |
742 goto general16; \ | |
743 break; \ | |
744 \ | |
745 case 0x7fff: \ | |
746 if(fmt->Gmask == 0x03e0 \ | |
747 || fmt->Rmask == 0x03e0 \ | |
748 || fmt->Bmask == 0x03e0) { \ | |
749 if(alpha == 128) \ | |
750 blitter(2, Uint8, ALPHA_BLIT16_555_50); \ | |
751 else { \ | |
752 blitter(2, Uint8, ALPHA_BLIT16_555); \ | |
753 } \ | |
754 break; \ | |
755 } \ | |
756 /* fallthrough */ \ | |
757 \ | |
758 default: \ | |
759 general16: \ | |
760 blitter(2, Uint8, ALPHA_BLIT_ANY); \ | |
761 } \ | |
762 break; \ | |
763 \ | |
764 case 3: \ | |
765 blitter(3, Uint8, ALPHA_BLIT_ANY); \ | |
766 break; \ | |
767 \ | |
768 case 4: \ | |
769 if((fmt->Rmask | fmt->Gmask | fmt->Bmask) == 0x00ffffff \ | |
770 && (fmt->Gmask == 0xff00 || fmt->Rmask == 0xff00 \ | |
771 || fmt->Bmask == 0xff00)) { \ | |
772 if(alpha == 128) \ | |
773 blitter(4, Uint16, ALPHA_BLIT32_888_50); \ | |
774 else \ | |
775 blitter(4, Uint16, ALPHA_BLIT32_888); \ | |
776 } else \ | |
777 blitter(4, Uint16, ALPHA_BLIT_ANY); \ | |
778 break; \ | |
779 } \ | |
780 } \ | |
781 } while(0) | |
782 | |
689
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783 #endif |
0 | 784 |
785 /* | |
786 * This takes care of the case when the surface is clipped on the left and/or | |
787 * right. Top clipping has already been taken care of. | |
788 */ | |
789 static void RLEClipBlit(int w, Uint8 *srcbuf, SDL_Surface *dst, | |
790 Uint8 *dstbuf, SDL_Rect *srcrect, unsigned alpha) | |
791 { | |
792 SDL_PixelFormat *fmt = dst->format; | |
793 | |
794 #define RLECLIPBLIT(bpp, Type, do_blit) \ | |
795 do { \ | |
796 int linecount = srcrect->h; \ | |
797 int ofs = 0; \ | |
798 int left = srcrect->x; \ | |
799 int right = left + srcrect->w; \ | |
800 dstbuf -= left * bpp; \ | |
801 for(;;) { \ | |
802 int run; \ | |
803 ofs += *(Type *)srcbuf; \ | |
804 run = ((Type *)srcbuf)[1]; \ | |
805 srcbuf += 2 * sizeof(Type); \ | |
806 if(run) { \ | |
807 /* clip to left and right borders */ \ | |
808 if(ofs < right) { \ | |
809 int start = 0; \ | |
810 int len = run; \ | |
811 int startcol; \ | |
812 if(left - ofs > 0) { \ | |
813 start = left - ofs; \ | |
814 len -= start; \ | |
815 if(len <= 0) \ | |
816 goto nocopy ## bpp ## do_blit; \ | |
817 } \ | |
818 startcol = ofs + start; \ | |
819 if(len > right - startcol) \ | |
820 len = right - startcol; \ | |
821 do_blit(dstbuf + startcol * bpp, srcbuf + start * bpp, \ | |
822 len, bpp, alpha); \ | |
823 } \ | |
824 nocopy ## bpp ## do_blit: \ | |
825 srcbuf += run * bpp; \ | |
826 ofs += run; \ | |
827 } else if(!ofs) \ | |
828 break; \ | |
829 if(ofs == w) { \ | |
830 ofs = 0; \ | |
831 dstbuf += dst->pitch; \ | |
832 if(!--linecount) \ | |
833 break; \ | |
834 } \ | |
835 } \ | |
836 } while(0) | |
837 | |
838 CHOOSE_BLIT(RLECLIPBLIT, alpha, fmt); | |
839 | |
840 #undef RLECLIPBLIT | |
841 | |
842 } | |
843 | |
844 | |
845 /* blit a colorkeyed RLE surface */ | |
846 int SDL_RLEBlit(SDL_Surface *src, SDL_Rect *srcrect, | |
847 SDL_Surface *dst, SDL_Rect *dstrect) | |
848 { | |
849 Uint8 *dstbuf; | |
850 Uint8 *srcbuf; | |
851 int x, y; | |
852 int w = src->w; | |
853 unsigned alpha; | |
854 | |
855 /* Lock the destination if necessary */ | |
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856 if ( SDL_MUSTLOCK(dst) ) { |
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857 if ( SDL_LockSurface(dst) < 0 ) { |
0 | 858 return(-1); |
859 } | |
860 } | |
861 | |
862 /* Set up the source and destination pointers */ | |
863 x = dstrect->x; | |
864 y = dstrect->y; | |
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865 dstbuf = (Uint8 *)dst->pixels |
0 | 866 + y * dst->pitch + x * src->format->BytesPerPixel; |
867 srcbuf = (Uint8 *)src->map->sw_data->aux_data; | |
868 | |
869 { | |
870 /* skip lines at the top if neccessary */ | |
871 int vskip = srcrect->y; | |
872 int ofs = 0; | |
873 if(vskip) { | |
874 | |
875 #define RLESKIP(bpp, Type) \ | |
876 for(;;) { \ | |
877 int run; \ | |
878 ofs += *(Type *)srcbuf; \ | |
879 run = ((Type *)srcbuf)[1]; \ | |
880 srcbuf += sizeof(Type) * 2; \ | |
881 if(run) { \ | |
882 srcbuf += run * bpp; \ | |
883 ofs += run; \ | |
884 } else if(!ofs) \ | |
885 goto done; \ | |
886 if(ofs == w) { \ | |
887 ofs = 0; \ | |
888 if(!--vskip) \ | |
889 break; \ | |
890 } \ | |
891 } | |
892 | |
893 switch(src->format->BytesPerPixel) { | |
894 case 1: RLESKIP(1, Uint8); break; | |
895 case 2: RLESKIP(2, Uint8); break; | |
896 case 3: RLESKIP(3, Uint8); break; | |
897 case 4: RLESKIP(4, Uint16); break; | |
898 } | |
899 | |
900 #undef RLESKIP | |
901 | |
902 } | |
903 } | |
904 | |
905 alpha = (src->flags & SDL_SRCALPHA) == SDL_SRCALPHA | |
906 ? src->format->alpha : 255; | |
907 /* if left or right edge clipping needed, call clip blit */ | |
908 if ( srcrect->x || srcrect->w != src->w ) { | |
909 RLEClipBlit(w, srcbuf, dst, dstbuf, srcrect, alpha); | |
910 } else { | |
911 SDL_PixelFormat *fmt = src->format; | |
912 | |
913 #define RLEBLIT(bpp, Type, do_blit) \ | |
914 do { \ | |
915 int linecount = srcrect->h; \ | |
916 int ofs = 0; \ | |
917 for(;;) { \ | |
918 unsigned run; \ | |
919 ofs += *(Type *)srcbuf; \ | |
920 run = ((Type *)srcbuf)[1]; \ | |
921 srcbuf += 2 * sizeof(Type); \ | |
922 if(run) { \ | |
923 do_blit(dstbuf + ofs * bpp, srcbuf, run, bpp, alpha); \ | |
924 srcbuf += run * bpp; \ | |
925 ofs += run; \ | |
926 } else if(!ofs) \ | |
927 break; \ | |
928 if(ofs == w) { \ | |
929 ofs = 0; \ | |
930 dstbuf += dst->pitch; \ | |
931 if(!--linecount) \ | |
932 break; \ | |
933 } \ | |
934 } \ | |
935 } while(0) | |
936 | |
937 CHOOSE_BLIT(RLEBLIT, alpha, fmt); | |
938 | |
939 #undef RLEBLIT | |
940 } | |
941 | |
942 done: | |
943 /* Unlock the destination if necessary */ | |
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944 if ( SDL_MUSTLOCK(dst) ) { |
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945 SDL_UnlockSurface(dst); |
0 | 946 } |
947 return(0); | |
948 } | |
949 | |
950 #undef OPAQUE_BLIT | |
951 | |
952 /* | |
953 * Per-pixel blitting macros for translucent pixels: | |
954 * These use the same techniques as the per-surface blitting macros | |
955 */ | |
956 | |
957 /* | |
958 * For 32bpp pixels, we have made sure the alpha is stored in the top | |
959 * 8 bits, so proceed as usual | |
960 */ | |
961 #define BLIT_TRANSL_888(src, dst) \ | |
962 do { \ | |
963 Uint32 s = src; \ | |
964 Uint32 d = dst; \ | |
965 unsigned alpha = s >> 24; \ | |
966 Uint32 s1 = s & 0xff00ff; \ | |
967 Uint32 d1 = d & 0xff00ff; \ | |
968 d1 = (d1 + ((s1 - d1) * alpha >> 8)) & 0xff00ff; \ | |
969 s &= 0xff00; \ | |
970 d &= 0xff00; \ | |
971 d = (d + ((s - d) * alpha >> 8)) & 0xff00; \ | |
972 dst = d1 | d; \ | |
973 } while(0) | |
974 | |
975 /* | |
976 * For 16bpp pixels, we have stored the 5 most significant alpha bits in | |
977 * bits 5-10. As before, we can process all 3 RGB components at the same time. | |
978 */ | |
979 #define BLIT_TRANSL_565(src, dst) \ | |
980 do { \ | |
981 Uint32 s = src; \ | |
982 Uint32 d = dst; \ | |
983 unsigned alpha = (s & 0x3e0) >> 5; \ | |
984 s &= 0x07e0f81f; \ | |
985 d = (d | d << 16) & 0x07e0f81f; \ | |
986 d += (s - d) * alpha >> 5; \ | |
987 d &= 0x07e0f81f; \ | |
988 dst = d | d >> 16; \ | |
989 } while(0) | |
990 | |
991 #define BLIT_TRANSL_555(src, dst) \ | |
992 do { \ | |
993 Uint32 s = src; \ | |
994 Uint32 d = dst; \ | |
995 unsigned alpha = (s & 0x3e0) >> 5; \ | |
996 s &= 0x03e07c1f; \ | |
997 d = (d | d << 16) & 0x03e07c1f; \ | |
998 d += (s - d) * alpha >> 5; \ | |
999 d &= 0x03e07c1f; \ | |
1000 dst = d | d >> 16; \ | |
1001 } while(0) | |
1002 | |
1003 /* used to save the destination format in the encoding. Designed to be | |
1004 macro-compatible with SDL_PixelFormat but without the unneeded fields */ | |
1005 typedef struct { | |
1006 Uint8 BytesPerPixel; | |
1007 Uint8 Rloss; | |
1008 Uint8 Gloss; | |
1009 Uint8 Bloss; | |
1010 Uint8 Rshift; | |
1011 Uint8 Gshift; | |
1012 Uint8 Bshift; | |
1013 Uint8 Ashift; | |
1014 Uint32 Rmask; | |
1015 Uint32 Gmask; | |
1016 Uint32 Bmask; | |
1017 Uint32 Amask; | |
1018 } RLEDestFormat; | |
1019 | |
1020 /* blit a pixel-alpha RLE surface clipped at the right and/or left edges */ | |
1021 static void RLEAlphaClipBlit(int w, Uint8 *srcbuf, SDL_Surface *dst, | |
1022 Uint8 *dstbuf, SDL_Rect *srcrect) | |
1023 { | |
1024 SDL_PixelFormat *df = dst->format; | |
1025 /* | |
1026 * clipped blitter: Ptype is the destination pixel type, | |
1027 * Ctype the translucent count type, and do_blend the macro | |
1028 * to blend one pixel. | |
1029 */ | |
1030 #define RLEALPHACLIPBLIT(Ptype, Ctype, do_blend) \ | |
1031 do { \ | |
1032 int linecount = srcrect->h; \ | |
1033 int left = srcrect->x; \ | |
1034 int right = left + srcrect->w; \ | |
1035 dstbuf -= left * sizeof(Ptype); \ | |
1036 do { \ | |
1037 int ofs = 0; \ | |
1038 /* blit opaque pixels on one line */ \ | |
1039 do { \ | |
1040 unsigned run; \ | |
1041 ofs += ((Ctype *)srcbuf)[0]; \ | |
1042 run = ((Ctype *)srcbuf)[1]; \ | |
1043 srcbuf += 2 * sizeof(Ctype); \ | |
1044 if(run) { \ | |
1045 /* clip to left and right borders */ \ | |
1046 int cofs = ofs; \ | |
1047 int crun = run; \ | |
1048 if(left - cofs > 0) { \ | |
1049 crun -= left - cofs; \ | |
1050 cofs = left; \ | |
1051 } \ | |
1052 if(crun > right - cofs) \ | |
1053 crun = right - cofs; \ | |
1054 if(crun > 0) \ | |
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|
1055 PIXEL_COPY(dstbuf + cofs * sizeof(Ptype), \ |
0 | 1056 srcbuf + (cofs - ofs) * sizeof(Ptype), \ |
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|
1057 (unsigned)crun, sizeof(Ptype)); \ |
0 | 1058 srcbuf += run * sizeof(Ptype); \ |
1059 ofs += run; \ | |
1060 } else if(!ofs) \ | |
1061 return; \ | |
1062 } while(ofs < w); \ | |
1063 /* skip padding if necessary */ \ | |
1064 if(sizeof(Ptype) == 2) \ | |
1065 srcbuf += (unsigned long)srcbuf & 2; \ | |
1066 /* blit translucent pixels on the same line */ \ | |
1067 ofs = 0; \ | |
1068 do { \ | |
1069 unsigned run; \ | |
1070 ofs += ((Uint16 *)srcbuf)[0]; \ | |
1071 run = ((Uint16 *)srcbuf)[1]; \ | |
1072 srcbuf += 4; \ | |
1073 if(run) { \ | |
1074 /* clip to left and right borders */ \ | |
1075 int cofs = ofs; \ | |
1076 int crun = run; \ | |
1077 if(left - cofs > 0) { \ | |
1078 crun -= left - cofs; \ | |
1079 cofs = left; \ | |
1080 } \ | |
1081 if(crun > right - cofs) \ | |
1082 crun = right - cofs; \ | |
1083 if(crun > 0) { \ | |
1084 Ptype *dst = (Ptype *)dstbuf + cofs; \ | |
1085 Uint32 *src = (Uint32 *)srcbuf + (cofs - ofs); \ | |
1086 int i; \ | |
1087 for(i = 0; i < crun; i++) \ | |
1088 do_blend(src[i], dst[i]); \ | |
1089 } \ | |
1090 srcbuf += run * 4; \ | |
1091 ofs += run; \ | |
1092 } \ | |
1093 } while(ofs < w); \ | |
1094 dstbuf += dst->pitch; \ | |
1095 } while(--linecount); \ | |
1096 } while(0) | |
1097 | |
1098 switch(df->BytesPerPixel) { | |
1099 case 2: | |
1100 if(df->Gmask == 0x07e0 || df->Rmask == 0x07e0 | |
1101 || df->Bmask == 0x07e0) | |
1102 RLEALPHACLIPBLIT(Uint16, Uint8, BLIT_TRANSL_565); | |
1103 else | |
1104 RLEALPHACLIPBLIT(Uint16, Uint8, BLIT_TRANSL_555); | |
1105 break; | |
1106 case 4: | |
1107 RLEALPHACLIPBLIT(Uint32, Uint16, BLIT_TRANSL_888); | |
1108 break; | |
1109 } | |
1110 } | |
1111 | |
1112 /* blit a pixel-alpha RLE surface */ | |
1113 int SDL_RLEAlphaBlit(SDL_Surface *src, SDL_Rect *srcrect, | |
1114 SDL_Surface *dst, SDL_Rect *dstrect) | |
1115 { | |
1116 int x, y; | |
1117 int w = src->w; | |
1118 Uint8 *srcbuf, *dstbuf; | |
1119 SDL_PixelFormat *df = dst->format; | |
1120 | |
1121 /* Lock the destination if necessary */ | |
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1122 if ( SDL_MUSTLOCK(dst) ) { |
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1123 if ( SDL_LockSurface(dst) < 0 ) { |
0 | 1124 return -1; |
1125 } | |
1126 } | |
1127 | |
1128 x = dstrect->x; | |
1129 y = dstrect->y; | |
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1130 dstbuf = (Uint8 *)dst->pixels |
0 | 1131 + y * dst->pitch + x * df->BytesPerPixel; |
1132 srcbuf = (Uint8 *)src->map->sw_data->aux_data + sizeof(RLEDestFormat); | |
1133 | |
1134 { | |
1135 /* skip lines at the top if necessary */ | |
1136 int vskip = srcrect->y; | |
1137 if(vskip) { | |
1138 int ofs; | |
1139 if(df->BytesPerPixel == 2) { | |
1140 /* the 16/32 interleaved format */ | |
1141 do { | |
1142 /* skip opaque line */ | |
1143 ofs = 0; | |
1144 do { | |
1145 int run; | |
1146 ofs += srcbuf[0]; | |
1147 run = srcbuf[1]; | |
1148 srcbuf += 2; | |
1149 if(run) { | |
1150 srcbuf += 2 * run; | |
1151 ofs += run; | |
1152 } else if(!ofs) | |
1153 goto done; | |
1154 } while(ofs < w); | |
1155 | |
1156 /* skip padding */ | |
1157 srcbuf += (unsigned long)srcbuf & 2; | |
1158 | |
1159 /* skip translucent line */ | |
1160 ofs = 0; | |
1161 do { | |
1162 int run; | |
1163 ofs += ((Uint16 *)srcbuf)[0]; | |
1164 run = ((Uint16 *)srcbuf)[1]; | |
1165 srcbuf += 4 * (run + 1); | |
1166 ofs += run; | |
1167 } while(ofs < w); | |
1168 } while(--vskip); | |
1169 } else { | |
1170 /* the 32/32 interleaved format */ | |
1171 vskip <<= 1; /* opaque and translucent have same format */ | |
1172 do { | |
1173 ofs = 0; | |
1174 do { | |
1175 int run; | |
1176 ofs += ((Uint16 *)srcbuf)[0]; | |
1177 run = ((Uint16 *)srcbuf)[1]; | |
1178 srcbuf += 4; | |
1179 if(run) { | |
1180 srcbuf += 4 * run; | |
1181 ofs += run; | |
1182 } else if(!ofs) | |
1183 goto done; | |
1184 } while(ofs < w); | |
1185 } while(--vskip); | |
1186 } | |
1187 } | |
1188 } | |
1189 | |
1190 /* if left or right edge clipping needed, call clip blit */ | |
1191 if(srcrect->x || srcrect->w != src->w) { | |
1192 RLEAlphaClipBlit(w, srcbuf, dst, dstbuf, srcrect); | |
1193 } else { | |
1194 | |
1195 /* | |
1196 * non-clipped blitter. Ptype is the destination pixel type, | |
1197 * Ctype the translucent count type, and do_blend the | |
1198 * macro to blend one pixel. | |
1199 */ | |
1200 #define RLEALPHABLIT(Ptype, Ctype, do_blend) \ | |
1201 do { \ | |
1202 int linecount = srcrect->h; \ | |
1203 do { \ | |
1204 int ofs = 0; \ | |
1205 /* blit opaque pixels on one line */ \ | |
1206 do { \ | |
1207 unsigned run; \ | |
1208 ofs += ((Ctype *)srcbuf)[0]; \ | |
1209 run = ((Ctype *)srcbuf)[1]; \ | |
1210 srcbuf += 2 * sizeof(Ctype); \ | |
1211 if(run) { \ | |
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diff
changeset
|
1212 PIXEL_COPY(dstbuf + ofs * sizeof(Ptype), srcbuf, \ |
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0
diff
changeset
|
1213 run, sizeof(Ptype)); \ |
0 | 1214 srcbuf += run * sizeof(Ptype); \ |
1215 ofs += run; \ | |
1216 } else if(!ofs) \ | |
1217 goto done; \ | |
1218 } while(ofs < w); \ | |
1219 /* skip padding if necessary */ \ | |
1220 if(sizeof(Ptype) == 2) \ | |
1221 srcbuf += (unsigned long)srcbuf & 2; \ | |
1222 /* blit translucent pixels on the same line */ \ | |
1223 ofs = 0; \ | |
1224 do { \ | |
1225 unsigned run; \ | |
1226 ofs += ((Uint16 *)srcbuf)[0]; \ | |
1227 run = ((Uint16 *)srcbuf)[1]; \ | |
1228 srcbuf += 4; \ | |
1229 if(run) { \ | |
1230 Ptype *dst = (Ptype *)dstbuf + ofs; \ | |
1231 unsigned i; \ | |
1232 for(i = 0; i < run; i++) { \ | |
1233 Uint32 src = *(Uint32 *)srcbuf; \ | |
1234 do_blend(src, *dst); \ | |
1235 srcbuf += 4; \ | |
1236 dst++; \ | |
1237 } \ | |
1238 ofs += run; \ | |
1239 } \ | |
1240 } while(ofs < w); \ | |
1241 dstbuf += dst->pitch; \ | |
1242 } while(--linecount); \ | |
1243 } while(0) | |
1244 | |
1245 switch(df->BytesPerPixel) { | |
1246 case 2: | |
1247 if(df->Gmask == 0x07e0 || df->Rmask == 0x07e0 | |
1248 || df->Bmask == 0x07e0) | |
1249 RLEALPHABLIT(Uint16, Uint8, BLIT_TRANSL_565); | |
1250 else | |
1251 RLEALPHABLIT(Uint16, Uint8, BLIT_TRANSL_555); | |
1252 break; | |
1253 case 4: | |
1254 RLEALPHABLIT(Uint32, Uint16, BLIT_TRANSL_888); | |
1255 break; | |
1256 } | |
1257 } | |
1258 | |
1259 done: | |
1260 /* Unlock the destination if necessary */ | |
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297
diff
changeset
|
1261 if ( SDL_MUSTLOCK(dst) ) { |
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297
diff
changeset
|
1262 SDL_UnlockSurface(dst); |
0 | 1263 } |
1264 return 0; | |
1265 } | |
1266 | |
1267 /* | |
1268 * Auxiliary functions: | |
1269 * The encoding functions take 32bpp rgb + a, and | |
1270 * return the number of bytes copied to the destination. | |
1271 * The decoding functions copy to 32bpp rgb + a, and | |
1272 * return the number of bytes copied from the source. | |
1273 * These are only used in the encoder and un-RLE code and are therefore not | |
1274 * highly optimised. | |
1275 */ | |
1276 | |
1277 /* encode 32bpp rgb + a into 16bpp rgb, losing alpha */ | |
1278 static int copy_opaque_16(void *dst, Uint32 *src, int n, | |
1279 SDL_PixelFormat *sfmt, SDL_PixelFormat *dfmt) | |
1280 { | |
1281 int i; | |
1282 Uint16 *d = dst; | |
1283 for(i = 0; i < n; i++) { | |
1284 unsigned r, g, b; | |
1285 RGB_FROM_PIXEL(*src, sfmt, r, g, b); | |
1286 PIXEL_FROM_RGB(*d, dfmt, r, g, b); | |
1287 src++; | |
1288 d++; | |
1289 } | |
1290 return n * 2; | |
1291 } | |
1292 | |
1293 /* decode opaque pixels from 16bpp to 32bpp rgb + a */ | |
1294 static int uncopy_opaque_16(Uint32 *dst, void *src, int n, | |
1295 RLEDestFormat *sfmt, SDL_PixelFormat *dfmt) | |
1296 { | |
1297 int i; | |
1298 Uint16 *s = src; | |
1299 unsigned alpha = dfmt->Amask ? 255 : 0; | |
1300 for(i = 0; i < n; i++) { | |
1301 unsigned r, g, b; | |
1302 RGB_FROM_PIXEL(*s, sfmt, r, g, b); | |
1303 PIXEL_FROM_RGBA(*dst, dfmt, r, g, b, alpha); | |
1304 s++; | |
1305 dst++; | |
1306 } | |
1307 return n * 2; | |
1308 } | |
1309 | |
1310 | |
1311 | |
1312 /* encode 32bpp rgb + a into 32bpp G0RAB format for blitting into 565 */ | |
1313 static int copy_transl_565(void *dst, Uint32 *src, int n, | |
1314 SDL_PixelFormat *sfmt, SDL_PixelFormat *dfmt) | |
1315 { | |
1316 int i; | |
1317 Uint32 *d = dst; | |
1318 for(i = 0; i < n; i++) { | |
1319 unsigned r, g, b, a; | |
1320 Uint16 pix; | |
1321 RGBA_FROM_8888(*src, sfmt, r, g, b, a); | |
1322 PIXEL_FROM_RGB(pix, dfmt, r, g, b); | |
1323 *d = ((pix & 0x7e0) << 16) | (pix & 0xf81f) | ((a << 2) & 0x7e0); | |
1324 src++; | |
1325 d++; | |
1326 } | |
1327 return n * 4; | |
1328 } | |
1329 | |
1330 /* encode 32bpp rgb + a into 32bpp G0RAB format for blitting into 555 */ | |
1331 static int copy_transl_555(void *dst, Uint32 *src, int n, | |
1332 SDL_PixelFormat *sfmt, SDL_PixelFormat *dfmt) | |
1333 { | |
1334 int i; | |
1335 Uint32 *d = dst; | |
1336 for(i = 0; i < n; i++) { | |
1337 unsigned r, g, b, a; | |
1338 Uint16 pix; | |
1339 RGBA_FROM_8888(*src, sfmt, r, g, b, a); | |
1340 PIXEL_FROM_RGB(pix, dfmt, r, g, b); | |
1341 *d = ((pix & 0x3e0) << 16) | (pix & 0xfc1f) | ((a << 2) & 0x3e0); | |
1342 src++; | |
1343 d++; | |
1344 } | |
1345 return n * 4; | |
1346 } | |
1347 | |
1348 /* decode translucent pixels from 32bpp GORAB to 32bpp rgb + a */ | |
1349 static int uncopy_transl_16(Uint32 *dst, void *src, int n, | |
1350 RLEDestFormat *sfmt, SDL_PixelFormat *dfmt) | |
1351 { | |
1352 int i; | |
1353 Uint32 *s = src; | |
1354 for(i = 0; i < n; i++) { | |
1355 unsigned r, g, b, a; | |
1356 Uint32 pix = *s++; | |
1357 a = (pix & 0x3e0) >> 2; | |
1358 pix = (pix & ~0x3e0) | pix >> 16; | |
1359 RGB_FROM_PIXEL(pix, sfmt, r, g, b); | |
1360 PIXEL_FROM_RGBA(*dst, dfmt, r, g, b, a); | |
1361 dst++; | |
1362 } | |
1363 return n * 4; | |
1364 } | |
1365 | |
1366 /* encode 32bpp rgba into 32bpp rgba, keeping alpha (dual purpose) */ | |
1367 static int copy_32(void *dst, Uint32 *src, int n, | |
1368 SDL_PixelFormat *sfmt, SDL_PixelFormat *dfmt) | |
1369 { | |
1370 int i; | |
1371 Uint32 *d = dst; | |
1372 for(i = 0; i < n; i++) { | |
1373 unsigned r, g, b, a; | |
1374 Uint32 pixel; | |
1375 RGBA_FROM_8888(*src, sfmt, r, g, b, a); | |
1376 PIXEL_FROM_RGB(pixel, dfmt, r, g, b); | |
1377 *d++ = pixel | a << 24; | |
1378 src++; | |
1379 } | |
1380 return n * 4; | |
1381 } | |
1382 | |
1383 /* decode 32bpp rgba into 32bpp rgba, keeping alpha (dual purpose) */ | |
1384 static int uncopy_32(Uint32 *dst, void *src, int n, | |
1385 RLEDestFormat *sfmt, SDL_PixelFormat *dfmt) | |
1386 { | |
1387 int i; | |
1388 Uint32 *s = src; | |
1389 for(i = 0; i < n; i++) { | |
1390 unsigned r, g, b, a; | |
1391 Uint32 pixel = *s++; | |
1392 RGB_FROM_PIXEL(pixel, sfmt, r, g, b); | |
1393 a = pixel >> 24; | |
1394 PIXEL_FROM_RGBA(*dst, dfmt, r, g, b, a); | |
1395 dst++; | |
1396 } | |
1397 return n * 4; | |
1398 } | |
1399 | |
1400 #define ISOPAQUE(pixel, fmt) ((((pixel) & fmt->Amask) >> fmt->Ashift) == 255) | |
1401 | |
1402 #define ISTRANSL(pixel, fmt) \ | |
1403 ((unsigned)((((pixel) & fmt->Amask) >> fmt->Ashift) - 1U) < 254U) | |
1404 | |
1405 /* convert surface to be quickly alpha-blittable onto dest, if possible */ | |
1406 static int RLEAlphaSurface(SDL_Surface *surface) | |
1407 { | |
1408 SDL_Surface *dest; | |
1409 SDL_PixelFormat *df; | |
1410 int maxsize = 0; | |
1411 int max_opaque_run; | |
1412 int max_transl_run = 65535; | |
1413 unsigned masksum; | |
1414 Uint8 *rlebuf, *dst; | |
1415 int (*copy_opaque)(void *, Uint32 *, int, | |
1416 SDL_PixelFormat *, SDL_PixelFormat *); | |
1417 int (*copy_transl)(void *, Uint32 *, int, | |
1418 SDL_PixelFormat *, SDL_PixelFormat *); | |
1419 | |
1420 dest = surface->map->dst; | |
1421 if(!dest) | |
1422 return -1; | |
1423 df = dest->format; | |
1424 if(surface->format->BitsPerPixel != 32) | |
1425 return -1; /* only 32bpp source supported */ | |
1426 | |
1427 /* find out whether the destination is one we support, | |
1428 and determine the max size of the encoded result */ | |
1429 masksum = df->Rmask | df->Gmask | df->Bmask; | |
1430 switch(df->BytesPerPixel) { | |
1431 case 2: | |
1432 /* 16bpp: only support 565 and 555 formats */ | |
1433 switch(masksum) { | |
1434 case 0xffff: | |
1435 if(df->Gmask == 0x07e0 | |
1436 || df->Rmask == 0x07e0 || df->Bmask == 0x07e0) { | |
1437 copy_opaque = copy_opaque_16; | |
1438 copy_transl = copy_transl_565; | |
1439 } else | |
1440 return -1; | |
1441 break; | |
1442 case 0x7fff: | |
1443 if(df->Gmask == 0x03e0 | |
1444 || df->Rmask == 0x03e0 || df->Bmask == 0x03e0) { | |
1445 copy_opaque = copy_opaque_16; | |
1446 copy_transl = copy_transl_555; | |
1447 } else | |
1448 return -1; | |
1449 break; | |
1450 default: | |
1451 return -1; | |
1452 } | |
1453 max_opaque_run = 255; /* runs stored as bytes */ | |
1454 | |
1455 /* worst case is alternating opaque and translucent pixels, | |
1456 with room for alignment padding between lines */ | |
1457 maxsize = surface->h * (2 + (4 + 2) * (surface->w + 1)) + 2; | |
1458 break; | |
1459 case 4: | |
1460 if(masksum != 0x00ffffff) | |
1461 return -1; /* requires unused high byte */ | |
1462 copy_opaque = copy_32; | |
1463 copy_transl = copy_32; | |
1464 max_opaque_run = 255; /* runs stored as short ints */ | |
1465 | |
1466 /* worst case is alternating opaque and translucent pixels */ | |
1467 maxsize = surface->h * 2 * 4 * (surface->w + 1) + 4; | |
1468 break; | |
1469 default: | |
1470 return -1; /* anything else unsupported right now */ | |
1471 } | |
1472 | |
1473 maxsize += sizeof(RLEDestFormat); | |
1474 rlebuf = (Uint8 *)malloc(maxsize); | |
1475 if(!rlebuf) { | |
1476 SDL_OutOfMemory(); | |
1477 return -1; | |
1478 } | |
1479 { | |
1480 /* save the destination format so we can undo the encoding later */ | |
1481 RLEDestFormat *r = (RLEDestFormat *)rlebuf; | |
1482 r->BytesPerPixel = df->BytesPerPixel; | |
1483 r->Rloss = df->Rloss; | |
1484 r->Gloss = df->Gloss; | |
1485 r->Bloss = df->Bloss; | |
1486 r->Rshift = df->Rshift; | |
1487 r->Gshift = df->Gshift; | |
1488 r->Bshift = df->Bshift; | |
1489 r->Ashift = df->Ashift; | |
1490 r->Rmask = df->Rmask; | |
1491 r->Gmask = df->Gmask; | |
1492 r->Bmask = df->Bmask; | |
1493 r->Amask = df->Amask; | |
1494 } | |
1495 dst = rlebuf + sizeof(RLEDestFormat); | |
1496 | |
1497 /* Do the actual encoding */ | |
1498 { | |
1499 int x, y; | |
1500 int h = surface->h, w = surface->w; | |
1501 SDL_PixelFormat *sf = surface->format; | |
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parents:
297
diff
changeset
|
1502 Uint32 *src = (Uint32 *)surface->pixels; |
0 | 1503 Uint8 *lastline = dst; /* end of last non-blank line */ |
1504 | |
1505 /* opaque counts are 8 or 16 bits, depending on target depth */ | |
1506 #define ADD_OPAQUE_COUNTS(n, m) \ | |
1507 if(df->BytesPerPixel == 4) { \ | |
1508 ((Uint16 *)dst)[0] = n; \ | |
1509 ((Uint16 *)dst)[1] = m; \ | |
1510 dst += 4; \ | |
1511 } else { \ | |
1512 dst[0] = n; \ | |
1513 dst[1] = m; \ | |
1514 dst += 2; \ | |
1515 } | |
1516 | |
1517 /* translucent counts are always 16 bit */ | |
1518 #define ADD_TRANSL_COUNTS(n, m) \ | |
1519 (((Uint16 *)dst)[0] = n, ((Uint16 *)dst)[1] = m, dst += 4) | |
1520 | |
1521 for(y = 0; y < h; y++) { | |
1522 int runstart, skipstart; | |
1523 int blankline = 0; | |
1524 /* First encode all opaque pixels of a scan line */ | |
1525 x = 0; | |
1526 do { | |
1527 int run, skip, len; | |
1528 skipstart = x; | |
1529 while(x < w && !ISOPAQUE(src[x], sf)) | |
1530 x++; | |
1531 runstart = x; | |
1532 while(x < w && ISOPAQUE(src[x], sf)) | |
1533 x++; | |
1534 skip = runstart - skipstart; | |
1535 if(skip == w) | |
1536 blankline = 1; | |
1537 run = x - runstart; | |
1538 while(skip > max_opaque_run) { | |
1539 ADD_OPAQUE_COUNTS(max_opaque_run, 0); | |
1540 skip -= max_opaque_run; | |
1541 } | |
1542 len = MIN(run, max_opaque_run); | |
1543 ADD_OPAQUE_COUNTS(skip, len); | |
1544 dst += copy_opaque(dst, src + runstart, len, sf, df); | |
1545 runstart += len; | |
1546 run -= len; | |
1547 while(run) { | |
1548 len = MIN(run, max_opaque_run); | |
1549 ADD_OPAQUE_COUNTS(0, len); | |
1550 dst += copy_opaque(dst, src + runstart, len, sf, df); | |
1551 runstart += len; | |
1552 run -= len; | |
1553 } | |
1554 } while(x < w); | |
1555 | |
1556 /* Make sure the next output address is 32-bit aligned */ | |
1557 dst += (unsigned long)dst & 2; | |
1558 | |
1559 /* Next, encode all translucent pixels of the same scan line */ | |
1560 x = 0; | |
1561 do { | |
1562 int run, skip, len; | |
1563 skipstart = x; | |
1564 while(x < w && !ISTRANSL(src[x], sf)) | |
1565 x++; | |
1566 runstart = x; | |
1567 while(x < w && ISTRANSL(src[x], sf)) | |
1568 x++; | |
1569 skip = runstart - skipstart; | |
1570 blankline &= (skip == w); | |
1571 run = x - runstart; | |
1572 while(skip > max_transl_run) { | |
1573 ADD_TRANSL_COUNTS(max_transl_run, 0); | |
1574 skip -= max_transl_run; | |
1575 } | |
1576 len = MIN(run, max_transl_run); | |
1577 ADD_TRANSL_COUNTS(skip, len); | |
1578 dst += copy_transl(dst, src + runstart, len, sf, df); | |
1579 runstart += len; | |
1580 run -= len; | |
1581 while(run) { | |
1582 len = MIN(run, max_transl_run); | |
1583 ADD_TRANSL_COUNTS(0, len); | |
1584 dst += copy_transl(dst, src + runstart, len, sf, df); | |
1585 runstart += len; | |
1586 run -= len; | |
1587 } | |
1588 if(!blankline) | |
1589 lastline = dst; | |
1590 } while(x < w); | |
1591 | |
1592 src += surface->pitch >> 2; | |
1593 } | |
1594 dst = lastline; /* back up past trailing blank lines */ | |
1595 ADD_OPAQUE_COUNTS(0, 0); | |
1596 } | |
1597 | |
1598 #undef ADD_OPAQUE_COUNTS | |
1599 #undef ADD_TRANSL_COUNTS | |
1600 | |
1601 /* Now that we have it encoded, release the original pixels */ | |
1602 if((surface->flags & SDL_PREALLOC) != SDL_PREALLOC | |
1603 && (surface->flags & SDL_HWSURFACE) != SDL_HWSURFACE) { | |
1604 free( surface->pixels ); | |
1605 surface->pixels = NULL; | |
1606 } | |
1607 | |
1608 /* realloc the buffer to release unused memory */ | |
1609 { | |
1610 Uint8 *p = realloc(rlebuf, dst - rlebuf); | |
1611 if(!p) | |
1612 p = rlebuf; | |
1613 surface->map->sw_data->aux_data = p; | |
1614 } | |
1615 | |
1616 return 0; | |
1617 } | |
1618 | |
1619 static Uint32 getpix_8(Uint8 *srcbuf) | |
1620 { | |
1621 return *srcbuf; | |
1622 } | |
1623 | |
1624 static Uint32 getpix_16(Uint8 *srcbuf) | |
1625 { | |
1626 return *(Uint16 *)srcbuf; | |
1627 } | |
1628 | |
1629 static Uint32 getpix_24(Uint8 *srcbuf) | |
1630 { | |
1631 if(SDL_BYTEORDER == SDL_LIL_ENDIAN) | |
1632 return srcbuf[0] + (srcbuf[1] << 8) + (srcbuf[2] << 16); | |
1633 else | |
1634 return (srcbuf[0] << 16) + (srcbuf[1] << 8) + srcbuf[2]; | |
1635 } | |
1636 | |
1637 static Uint32 getpix_32(Uint8 *srcbuf) | |
1638 { | |
1639 return *(Uint32 *)srcbuf; | |
1640 } | |
1641 | |
1642 typedef Uint32 (*getpix_func)(Uint8 *); | |
1643 | |
1644 static getpix_func getpixes[4] = { | |
1645 getpix_8, getpix_16, getpix_24, getpix_32 | |
1646 }; | |
1647 | |
1648 static int RLEColorkeySurface(SDL_Surface *surface) | |
1649 { | |
1650 Uint8 *rlebuf, *dst; | |
1651 int maxn; | |
1652 int y; | |
1653 Uint8 *srcbuf, *curbuf, *lastline; | |
1654 int maxsize = 0; | |
1655 int skip, run; | |
1656 int bpp = surface->format->BytesPerPixel; | |
1657 getpix_func getpix; | |
1658 Uint32 ckey, rgbmask; | |
1659 int w, h; | |
1660 | |
1661 /* calculate the worst case size for the compressed surface */ | |
1662 switch(bpp) { | |
1663 case 1: | |
1664 /* worst case is alternating opaque and transparent pixels, | |
1665 starting with an opaque pixel */ | |
1666 maxsize = surface->h * 3 * (surface->w / 2 + 1) + 2; | |
1667 break; | |
1668 case 2: | |
1669 case 3: | |
1670 /* worst case is solid runs, at most 255 pixels wide */ | |
1671 maxsize = surface->h * (2 * (surface->w / 255 + 1) | |
1672 + surface->w * bpp) + 2; | |
1673 break; | |
1674 case 4: | |
1675 /* worst case is solid runs, at most 65535 pixels wide */ | |
1676 maxsize = surface->h * (4 * (surface->w / 65535 + 1) | |
1677 + surface->w * 4) + 4; | |
1678 break; | |
1679 } | |
1680 | |
1681 rlebuf = (Uint8 *)malloc(maxsize); | |
1682 if ( rlebuf == NULL ) { | |
1683 SDL_OutOfMemory(); | |
1684 return(-1); | |
1685 } | |
1686 | |
1687 /* Set up the conversion */ | |
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Sam Lantinga <slouken@libsdl.org>
parents:
297
diff
changeset
|
1688 srcbuf = (Uint8 *)surface->pixels; |
0 | 1689 curbuf = srcbuf; |
1690 maxn = bpp == 4 ? 65535 : 255; | |
1691 skip = run = 0; | |
1692 dst = rlebuf; | |
1693 rgbmask = ~surface->format->Amask; | |
1694 ckey = surface->format->colorkey & rgbmask; | |
1695 lastline = dst; | |
1696 getpix = getpixes[bpp - 1]; | |
1697 w = surface->w; | |
1698 h = surface->h; | |
1699 | |
1700 #define ADD_COUNTS(n, m) \ | |
1701 if(bpp == 4) { \ | |
1702 ((Uint16 *)dst)[0] = n; \ | |
1703 ((Uint16 *)dst)[1] = m; \ | |
1704 dst += 4; \ | |
1705 } else { \ | |
1706 dst[0] = n; \ | |
1707 dst[1] = m; \ | |
1708 dst += 2; \ | |
1709 } | |
1710 | |
1711 for(y = 0; y < h; y++) { | |
1712 int x = 0; | |
1713 int blankline = 0; | |
1714 do { | |
1715 int run, skip, len; | |
1716 int runstart; | |
1717 int skipstart = x; | |
1718 | |
1719 /* find run of transparent, then opaque pixels */ | |
1720 while(x < w && (getpix(srcbuf + x * bpp) & rgbmask) == ckey) | |
1721 x++; | |
1722 runstart = x; | |
1723 while(x < w && (getpix(srcbuf + x * bpp) & rgbmask) != ckey) | |
1724 x++; | |
1725 skip = runstart - skipstart; | |
1726 if(skip == w) | |
1727 blankline = 1; | |
1728 run = x - runstart; | |
1729 | |
1730 /* encode segment */ | |
1731 while(skip > maxn) { | |
1732 ADD_COUNTS(maxn, 0); | |
1733 skip -= maxn; | |
1734 } | |
1735 len = MIN(run, maxn); | |
1736 ADD_COUNTS(skip, len); | |
1737 memcpy(dst, srcbuf + runstart * bpp, len * bpp); | |
1738 dst += len * bpp; | |
1739 run -= len; | |
1740 runstart += len; | |
1741 while(run) { | |
1742 len = MIN(run, maxn); | |
1743 ADD_COUNTS(0, len); | |
1744 memcpy(dst, srcbuf + runstart * bpp, len * bpp); | |
1745 dst += len * bpp; | |
1746 runstart += len; | |
1747 run -= len; | |
1748 } | |
1749 if(!blankline) | |
1750 lastline = dst; | |
1751 } while(x < w); | |
1752 | |
1753 srcbuf += surface->pitch; | |
1754 } | |
1755 dst = lastline; /* back up bast trailing blank lines */ | |
1756 ADD_COUNTS(0, 0); | |
1757 | |
1758 #undef ADD_COUNTS | |
1759 | |
1760 /* Now that we have it encoded, release the original pixels */ | |
1761 if((surface->flags & SDL_PREALLOC) != SDL_PREALLOC | |
1762 && (surface->flags & SDL_HWSURFACE) != SDL_HWSURFACE) { | |
1763 free( surface->pixels ); | |
1764 surface->pixels = NULL; | |
1765 } | |
1766 | |
1767 /* realloc the buffer to release unused memory */ | |
1768 { | |
1769 /* If realloc returns NULL, the original block is left intact */ | |
1770 Uint8 *p = realloc(rlebuf, dst - rlebuf); | |
1771 if(!p) | |
1772 p = rlebuf; | |
1773 surface->map->sw_data->aux_data = p; | |
1774 } | |
1775 | |
1776 return(0); | |
1777 } | |
1778 | |
1779 int SDL_RLESurface(SDL_Surface *surface) | |
1780 { | |
1781 int retcode; | |
1782 | |
1783 /* Clear any previous RLE conversion */ | |
1784 if ( (surface->flags & SDL_RLEACCEL) == SDL_RLEACCEL ) { | |
1785 SDL_UnRLESurface(surface, 1); | |
1786 } | |
1787 | |
1788 /* We don't support RLE encoding of bitmaps */ | |
1789 if ( surface->format->BitsPerPixel < 8 ) { | |
1790 return(-1); | |
1791 } | |
1792 | |
1793 /* Lock the surface if it's in hardware */ | |
526
4314a501d7be
Fixed a crash blitting RLE surfaces to RLE surfaces
Sam Lantinga <slouken@libsdl.org>
parents:
297
diff
changeset
|
1794 if ( SDL_MUSTLOCK(surface) ) { |
4314a501d7be
Fixed a crash blitting RLE surfaces to RLE surfaces
Sam Lantinga <slouken@libsdl.org>
parents:
297
diff
changeset
|
1795 if ( SDL_LockSurface(surface) < 0 ) { |
0 | 1796 return(-1); |
1797 } | |
1798 } | |
1799 | |
1800 /* Encode */ | |
1801 if((surface->flags & SDL_SRCCOLORKEY) == SDL_SRCCOLORKEY) { | |
1802 retcode = RLEColorkeySurface(surface); | |
1803 } else { | |
1804 if((surface->flags & SDL_SRCALPHA) == SDL_SRCALPHA | |
1805 && surface->format->Amask != 0) | |
1806 retcode = RLEAlphaSurface(surface); | |
1807 else | |
1808 retcode = -1; /* no RLE for per-surface alpha sans ckey */ | |
1809 } | |
1810 | |
1811 /* Unlock the surface if it's in hardware */ | |
526
4314a501d7be
Fixed a crash blitting RLE surfaces to RLE surfaces
Sam Lantinga <slouken@libsdl.org>
parents:
297
diff
changeset
|
1812 if ( SDL_MUSTLOCK(surface) ) { |
4314a501d7be
Fixed a crash blitting RLE surfaces to RLE surfaces
Sam Lantinga <slouken@libsdl.org>
parents:
297
diff
changeset
|
1813 SDL_UnlockSurface(surface); |
0 | 1814 } |
1815 | |
1816 if(retcode < 0) | |
1817 return -1; | |
1818 | |
1819 /* The surface is now accelerated */ | |
1820 surface->flags |= SDL_RLEACCEL; | |
1821 | |
1822 return(0); | |
1823 } | |
1824 | |
1825 /* | |
1826 * Un-RLE a surface with pixel alpha | |
1827 * This may not give back exactly the image before RLE-encoding; all | |
1828 * completely transparent pixels will be lost, and colour and alpha depth | |
1829 * may have been reduced (when encoding for 16bpp targets). | |
1830 */ | |
1831 static void UnRLEAlpha(SDL_Surface *surface) | |
1832 { | |
1833 Uint8 *srcbuf; | |
1834 Uint32 *dst; | |
1835 SDL_PixelFormat *sf = surface->format; | |
1836 RLEDestFormat *df = surface->map->sw_data->aux_data; | |
1837 int (*uncopy_opaque)(Uint32 *, void *, int, | |
1838 RLEDestFormat *, SDL_PixelFormat *); | |
1839 int (*uncopy_transl)(Uint32 *, void *, int, | |
1840 RLEDestFormat *, SDL_PixelFormat *); | |
1841 int w = surface->w; | |
1842 int bpp = df->BytesPerPixel; | |
1843 | |
1844 if(bpp == 2) { | |
1845 uncopy_opaque = uncopy_opaque_16; | |
1846 uncopy_transl = uncopy_transl_16; | |
1847 } else { | |
1848 uncopy_opaque = uncopy_transl = uncopy_32; | |
1849 } | |
1850 | |
1851 surface->pixels = malloc(surface->h * surface->pitch); | |
1852 /* fill background with transparent pixels */ | |
1853 memset(surface->pixels, 0, surface->h * surface->pitch); | |
1854 | |
1855 dst = surface->pixels; | |
1856 srcbuf = (Uint8 *)(df + 1); | |
1857 for(;;) { | |
1858 /* copy opaque pixels */ | |
1859 int ofs = 0; | |
1860 do { | |
1861 unsigned run; | |
1862 if(bpp == 2) { | |
1863 ofs += srcbuf[0]; | |
1864 run = srcbuf[1]; | |
1865 srcbuf += 2; | |
1866 } else { | |
1867 ofs += ((Uint16 *)srcbuf)[0]; | |
1868 run = ((Uint16 *)srcbuf)[1]; | |
1869 srcbuf += 4; | |
1870 } | |
1871 if(run) { | |
1872 srcbuf += uncopy_opaque(dst + ofs, srcbuf, run, df, sf); | |
1873 ofs += run; | |
1874 } else if(!ofs) | |
1875 return; | |
1876 } while(ofs < w); | |
1877 | |
1878 /* skip padding if needed */ | |
1879 if(bpp == 2) | |
1880 srcbuf += (unsigned long)srcbuf & 2; | |
1881 | |
1882 /* copy translucent pixels */ | |
1883 ofs = 0; | |
1884 do { | |
1885 unsigned run; | |
1886 ofs += ((Uint16 *)srcbuf)[0]; | |
1887 run = ((Uint16 *)srcbuf)[1]; | |
1888 srcbuf += 4; | |
1889 if(run) { | |
1890 srcbuf += uncopy_transl(dst + ofs, srcbuf, run, df, sf); | |
1891 ofs += run; | |
1892 } | |
1893 } while(ofs < w); | |
1894 dst += surface->pitch >> 2; | |
1895 } | |
1896 } | |
1897 | |
1898 void SDL_UnRLESurface(SDL_Surface *surface, int recode) | |
1899 { | |
1900 if ( (surface->flags & SDL_RLEACCEL) == SDL_RLEACCEL ) { | |
1901 surface->flags &= ~SDL_RLEACCEL; | |
1902 | |
1903 if(recode && (surface->flags & SDL_PREALLOC) != SDL_PREALLOC | |
1904 && (surface->flags & SDL_HWSURFACE) != SDL_HWSURFACE) { | |
1905 if((surface->flags & SDL_SRCCOLORKEY) == SDL_SRCCOLORKEY) { | |
1906 SDL_Rect full; | |
1907 unsigned alpha_flag; | |
1908 | |
1909 /* re-create the original surface */ | |
1910 surface->pixels = malloc(surface->h * surface->pitch); | |
1911 | |
1912 /* fill it with the background colour */ | |
1913 SDL_FillRect(surface, NULL, surface->format->colorkey); | |
1914 | |
1915 /* now render the encoded surface */ | |
1916 full.x = full.y = 0; | |
1917 full.w = surface->w; | |
1918 full.h = surface->h; | |
1919 alpha_flag = surface->flags & SDL_SRCALPHA; | |
1920 surface->flags &= ~SDL_SRCALPHA; /* opaque blit */ | |
1921 SDL_RLEBlit(surface, &full, surface, &full); | |
1922 surface->flags |= alpha_flag; | |
1923 } else | |
1924 UnRLEAlpha(surface); | |
1925 } | |
1926 | |
1927 if ( surface->map && surface->map->sw_data->aux_data ) { | |
1928 free(surface->map->sw_data->aux_data); | |
1929 surface->map->sw_data->aux_data = NULL; | |
1930 } | |
1931 } | |
1932 } | |
1933 | |
1934 |