X-Git-Url: https://git.pterodactylus.net/?a=blobdiff_plain;f=synfig-core%2Ftrunk%2Fsrc%2Fmodules%2Fmod_libavcodec%2Flibavcodec%2Ffft-test.c;fp=synfig-core%2Ftrunk%2Fsrc%2Fmodules%2Fmod_libavcodec%2Flibavcodec%2Ffft-test.c;h=4a3ac9f54025b00b2045e660595d58aa35eba18c;hb=16b3beced25134bef064705568ecb893a6be4e79;hp=0000000000000000000000000000000000000000;hpb=5a1d028f56182922addfed8f1f1c28fdde12756c;p=synfig.git diff --git a/synfig-core/trunk/src/modules/mod_libavcodec/libavcodec/fft-test.c b/synfig-core/trunk/src/modules/mod_libavcodec/libavcodec/fft-test.c new file mode 100644 index 0000000..4a3ac9f --- /dev/null +++ b/synfig-core/trunk/src/modules/mod_libavcodec/libavcodec/fft-test.c @@ -0,0 +1,277 @@ +/** + * @file fft-test.c + * FFT and MDCT tests. + */ + +#include "dsputil.h" +#include +#include +#include + +int mm_flags; + +/* reference fft */ + +#define MUL16(a,b) ((a) * (b)) + +#define CMAC(pre, pim, are, aim, bre, bim) \ +{\ + pre += (MUL16(are, bre) - MUL16(aim, bim));\ + pim += (MUL16(are, bim) + MUL16(bre, aim));\ +} + +FFTComplex *exptab; + +void fft_ref_init(int nbits, int inverse) +{ + int n, i; + float c1, s1, alpha; + + n = 1 << nbits; + exptab = av_malloc((n / 2) * sizeof(FFTComplex)); + + for(i=0;i<(n/2);i++) { + alpha = 2 * M_PI * (float)i / (float)n; + c1 = cos(alpha); + s1 = sin(alpha); + if (!inverse) + s1 = -s1; + exptab[i].re = c1; + exptab[i].im = s1; + } +} + +void fft_ref(FFTComplex *tabr, FFTComplex *tab, int nbits) +{ + int n, i, j, k, n2; + float tmp_re, tmp_im, s, c; + FFTComplex *q; + + n = 1 << nbits; + n2 = n >> 1; + for(i=0;i= n2) { + c = -exptab[k - n2].re; + s = -exptab[k - n2].im; + } else { + c = exptab[k].re; + s = exptab[k].im; + } + CMAC(tmp_re, tmp_im, c, s, q->re, q->im); + q++; + } + tabr[i].re = tmp_re; + tabr[i].im = tmp_im; + } +} + +void imdct_ref(float *out, float *in, int n) +{ + int k, i, a; + float sum, f; + + for(i=0;i= 1e-3) { + printf("ERROR %d: %f %f\n", + i, tab1[i], tab2[i]); + } + } +} + + +void help(void) +{ + printf("usage: fft-test [-h] [-s] [-i] [-n b]\n" + "-h print this help\n" + "-s speed test\n" + "-m (I)MDCT test\n" + "-i inverse transform test\n" + "-n b set the transform size to 2^b\n" + ); + exit(1); +} + + + +int main(int argc, char **argv) +{ + FFTComplex *tab, *tab1, *tab_ref; + FFTSample *tabtmp, *tab2; + int it, i, c; + int do_speed = 0; + int do_mdct = 0; + int do_inverse = 0; + FFTContext s1, *s = &s1; + MDCTContext m1, *m = &m1; + int fft_nbits, fft_size; + + mm_flags = 0; + fft_nbits = 9; + for(;;) { + c = getopt(argc, argv, "hsimn:"); + if (c == -1) + break; + switch(c) { + case 'h': + help(); + break; + case 's': + do_speed = 1; + break; + case 'i': + do_inverse = 1; + break; + case 'm': + do_mdct = 1; + break; + case 'n': + fft_nbits = atoi(optarg); + break; + } + } + + fft_size = 1 << fft_nbits; + tab = av_malloc(fft_size * sizeof(FFTComplex)); + tab1 = av_malloc(fft_size * sizeof(FFTComplex)); + tab_ref = av_malloc(fft_size * sizeof(FFTComplex)); + tabtmp = av_malloc(fft_size / 2 * sizeof(FFTSample)); + tab2 = av_malloc(fft_size * sizeof(FFTSample)); + + if (do_mdct) { + if (do_inverse) + printf("IMDCT"); + else + printf("MDCT"); + ff_mdct_init(m, fft_nbits, do_inverse); + } else { + if (do_inverse) + printf("IFFT"); + else + printf("FFT"); + fft_init(s, fft_nbits, do_inverse); + fft_ref_init(fft_nbits, do_inverse); + } + printf(" %d test\n", fft_size); + + /* generate random data */ + + for(i=0;i= 1000000) + break; + nb_its *= 2; + } + printf("time: %0.1f us/transform [total time=%0.2f s its=%d]\n", + (double)duration / nb_its, + (double)duration / 1000000.0, + nb_its); + } + + if (do_mdct) { + ff_mdct_end(m); + } else { + fft_end(s); + } + return 0; +}