Move/add COSTABLE/SINTABLE macros to dsputil to add extern definitions
[FFMpeg-mirror/lagarith.git] / tests / rotozoom.c
blob47da1b05262ef3493fe7fb05c47d0f10348f1302
1 /*
2 * Generates a synthetic YUV video sequence suitable for codec testing.
4 * copyright (c) Sebastien Bechet <s.bechet@av7.net>
6 * This file is part of FFmpeg.
8 * FFmpeg is free software; you can redistribute it and/or
9 * modify it under the terms of the GNU Lesser General Public
10 * License as published by the Free Software Foundation; either
11 * version 2.1 of the License, or (at your option) any later version.
13 * FFmpeg is distributed in the hope that it will be useful,
14 * but WITHOUT ANY WARRANTY; without even the implied warranty of
15 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
16 * Lesser General Public License for more details.
18 * You should have received a copy of the GNU Lesser General Public
19 * License along with FFmpeg; if not, write to the Free Software
20 * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
23 #include <stdlib.h>
24 #include <stdio.h>
25 #include <inttypes.h>
27 #define FIXP (1<<16)
28 #define MY_PI 205887 //(M_PI*FIX)
30 static int64_t int_pow(int64_t a, int p){
31 int64_t v= FIXP;
33 for(; p; p--){
34 v*= a;
35 v/= FIXP;
38 return v;
41 static int64_t int_sin(int64_t a){
42 if(a<0) a= MY_PI-a; // 0..inf
43 a %= 2*MY_PI; // 0..2PI
45 if(a>=MY_PI*3/2) a -= 2*MY_PI; // -PI/2 .. 3PI/2
46 if(a>=MY_PI/2 ) a = MY_PI - a; // -PI/2 .. PI/2
48 return a - int_pow(a, 3)/6 + int_pow(a, 5)/120 - int_pow(a, 7)/5040;
51 #define SCALEBITS 8
52 #define ONE_HALF (1 << (SCALEBITS - 1))
53 #define FIX(x) ((int) ((x) * (1L<<SCALEBITS) + 0.5))
54 typedef unsigned char UINT8;
56 static void rgb24_to_yuv420p(UINT8 *lum, UINT8 *cb, UINT8 *cr,
57 UINT8 *src, int width, int height)
59 int wrap, wrap3, x, y;
60 int r, g, b, r1, g1, b1;
61 UINT8 *p;
63 wrap = width;
64 wrap3 = width * 3;
65 p = src;
66 for(y=0;y<height;y+=2) {
67 for(x=0;x<width;x+=2) {
68 r = p[0];
69 g = p[1];
70 b = p[2];
71 r1 = r;
72 g1 = g;
73 b1 = b;
74 lum[0] = (FIX(0.29900) * r + FIX(0.58700) * g +
75 FIX(0.11400) * b + ONE_HALF) >> SCALEBITS;
76 r = p[3];
77 g = p[4];
78 b = p[5];
79 r1 += r;
80 g1 += g;
81 b1 += b;
82 lum[1] = (FIX(0.29900) * r + FIX(0.58700) * g +
83 FIX(0.11400) * b + ONE_HALF) >> SCALEBITS;
84 p += wrap3;
85 lum += wrap;
87 r = p[0];
88 g = p[1];
89 b = p[2];
90 r1 += r;
91 g1 += g;
92 b1 += b;
93 lum[0] = (FIX(0.29900) * r + FIX(0.58700) * g +
94 FIX(0.11400) * b + ONE_HALF) >> SCALEBITS;
95 r = p[3];
96 g = p[4];
97 b = p[5];
98 r1 += r;
99 g1 += g;
100 b1 += b;
101 lum[1] = (FIX(0.29900) * r + FIX(0.58700) * g +
102 FIX(0.11400) * b + ONE_HALF) >> SCALEBITS;
104 cb[0] = ((- FIX(0.16874) * r1 - FIX(0.33126) * g1 +
105 FIX(0.50000) * b1 + 4 * ONE_HALF - 1) >> (SCALEBITS + 2)) + 128;
106 cr[0] = ((FIX(0.50000) * r1 - FIX(0.41869) * g1 -
107 FIX(0.08131) * b1 + 4 * ONE_HALF - 1) >> (SCALEBITS + 2)) + 128;
109 cb++;
110 cr++;
111 p += -wrap3 + 2 * 3;
112 lum += -wrap + 2;
114 p += wrap3;
115 lum += wrap;
119 /* cif format */
120 #define DEFAULT_WIDTH 352
121 #define DEFAULT_HEIGHT 288
122 #define DEFAULT_NB_PICT 50
124 static void pgmyuv_save(const char *filename, int w, int h,
125 unsigned char *rgb_tab)
127 FILE *f;
128 int i, h2, w2;
129 unsigned char *cb, *cr;
130 unsigned char *lum_tab, *cb_tab, *cr_tab;
132 lum_tab = malloc(w * h);
133 cb_tab = malloc((w * h) / 4);
134 cr_tab = malloc((w * h) / 4);
136 rgb24_to_yuv420p(lum_tab, cb_tab, cr_tab, rgb_tab, w, h);
138 f = fopen(filename,"wb");
139 fprintf(f, "P5\n%d %d\n%d\n", w, (h * 3) / 2, 255);
140 fwrite(lum_tab, 1, w * h, f);
141 h2 = h / 2;
142 w2 = w / 2;
143 cb = cb_tab;
144 cr = cr_tab;
145 for(i=0;i<h2;i++) {
146 fwrite(cb, 1, w2, f);
147 fwrite(cr, 1, w2, f);
148 cb += w2;
149 cr += w2;
151 fclose(f);
153 free(lum_tab);
154 free(cb_tab);
155 free(cr_tab);
158 unsigned char *rgb_tab;
159 int width, height, wrap;
161 static void put_pixel(int x, int y, int r, int g, int b)
163 unsigned char *p;
165 if (x < 0 || x >= width ||
166 y < 0 || y >= height)
167 return;
169 p = rgb_tab + y * wrap + x * 3;
170 p[0] = r;
171 p[1] = g;
172 p[2] = b;
175 unsigned char tab_r[256*256];
176 unsigned char tab_g[256*256];
177 unsigned char tab_b[256*256];
179 int h_cos [360];
180 int h_sin [360];
182 static int ipol(uint8_t *src, int x, int y){
183 int int_x= x>>16;
184 int int_y= y>>16;
185 int frac_x= x&0xFFFF;
186 int frac_y= y&0xFFFF;
187 int s00= src[ ( int_x &255) + 256*( int_y &255) ];
188 int s01= src[ ((int_x+1)&255) + 256*( int_y &255) ];
189 int s10= src[ ( int_x &255) + 256*((int_y+1)&255) ];
190 int s11= src[ ((int_x+1)&255) + 256*((int_y+1)&255) ];
191 int s0= (((1<<16) - frac_x)*s00 + frac_x*s01)>>8;
192 int s1= (((1<<16) - frac_x)*s10 + frac_x*s11)>>8;
194 return (((1<<16) - frac_y)*s0 + frac_y*s1)>>24;
197 static void gen_image(int num, int w, int h)
199 const int c = h_cos [num % 360];
200 const int s = h_sin [num % 360];
202 const int xi = -(w/2) * c;
203 const int yi = (w/2) * s;
205 const int xj = -(h/2) * s;
206 const int yj = -(h/2) * c;
207 int i,j;
209 int x,y;
210 int xprime = xj;
211 int yprime = yj;
214 for (j=0;j<h;j++) {
216 x = xprime + xi + FIXP*w/2;
217 xprime += s;
219 y = yprime + yi + FIXP*h/2;
220 yprime += c;
222 for ( i=0 ; i<w ; i++ ) {
223 x += c;
224 y -= s;
225 #if 1
226 put_pixel(i, j, ipol(tab_r, x, y), ipol(tab_g, x, y), ipol(tab_b, x, y));
227 #else
229 unsigned dep;
230 dep = ((x>>16)&255) + (((y>>16)&255)<<8);
231 put_pixel(i, j, tab_r[dep], tab_g[dep], tab_b[dep]);
233 #endif
238 #define W 256
239 #define H 256
241 static void init_demo(const char *filename) {
242 int i,j;
243 int h;
244 int radian;
245 char line[3 * W];
247 FILE *fichier;
249 fichier = fopen(filename,"rb");
250 if (!fichier) {
251 perror(filename);
252 exit(1);
255 fread(line, 1, 15, fichier);
256 for (i=0;i<H;i++) {
257 fread(line,1,3*W,fichier);
258 for (j=0;j<W;j++) {
259 tab_r[W*i+j] = line[3*j ];
260 tab_g[W*i+j] = line[3*j + 1];
261 tab_b[W*i+j] = line[3*j + 2];
264 fclose(fichier);
266 /* tables sin/cos */
267 for (i=0;i<360;i++) {
268 radian = 2*i*MY_PI/360;
269 h = 2*FIXP + int_sin (radian);
270 h_cos[i] = ( h * int_sin (radian + MY_PI/2) )/2/FIXP;
271 h_sin[i] = ( h * int_sin (radian ) )/2/FIXP;
275 int main(int argc, char **argv)
277 int w, h, i;
278 char buf[1024];
280 if (argc != 3) {
281 printf("usage: %s directory/ image.pnm\n"
282 "generate a test video stream\n", argv[0]);
283 exit(1);
286 w = DEFAULT_WIDTH;
287 h = DEFAULT_HEIGHT;
289 rgb_tab = malloc(w * h * 3);
290 wrap = w * 3;
291 width = w;
292 height = h;
294 init_demo(argv[2]);
296 for(i=0;i<DEFAULT_NB_PICT;i++) {
297 snprintf(buf, sizeof(buf), "%s%02d.pgm", argv[1], i);
298 gen_image(i, w, h);
299 pgmyuv_save(buf, w, h, rgb_tab);
302 free(rgb_tab);
303 return 0;