25 int factors[2*MAXFACTORS];
41 # define SAMPPROD int64_t 42 #define SAMP_MAX 2147483647 45 # define SAMPPROD int32_t 46 #define SAMP_MAX 32767 49 #define SAMP_MIN -SAMP_MAX 51 #if defined(CHECK_OVERFLOW) 52 # define CHECK_OVERFLOW_OP(a,op,b) \ 53 if ( (SAMPPROD)(a) op (SAMPPROD)(b) > SAMP_MAX || (SAMPPROD)(a) op (SAMPPROD)(b) < SAMP_MIN ) { \ 54 fprintf(stderr,"WARNING:overflow @ " __FILE__ "(%d): (%d " #op" %d) = %ld\n",__LINE__,(a),(b),(SAMPPROD)(a) op (SAMPPROD)(b) ); } 58 # define smul(a,b) ( (SAMPPROD)(a)*(b) ) 59 # define sround( x ) (kiss_fft_scalar)( ( (x) + (1<<(FRACBITS-1)) ) >> FRACBITS ) 61 # define S_MUL(a,b) sround( smul(a,b) ) 63 # define C_MUL(m,a,b) \ 64 do{ (m).r = sround( smul((a).r,(b).r) - smul((a).i,(b).i) ); \ 65 (m).i = sround( smul((a).r,(b).i) + smul((a).i,(b).r) ); }while(0) 67 # define DIVSCALAR(x,k) \ 68 (x) = sround( smul( x, SAMP_MAX/k ) ) 70 # define C_FIXDIV(c,div) \ 71 do { DIVSCALAR( (c).r , div); \ 72 DIVSCALAR( (c).i , div); }while (0) 74 # define C_MULBYSCALAR( c, s ) \ 75 do{ (c).r = sround( smul( (c).r , s ) ) ;\ 76 (c).i = sround( smul( (c).i , s ) ) ; }while(0) 80 # define S_MUL(a,b) ( (a)*(b) ) 81 #define C_MUL(m,a,b) \ 82 do{ (m).r = (a).r*(b).r - (a).i*(b).i;\ 83 (m).i = (a).r*(b).i + (a).i*(b).r; }while(0) 84 # define C_FIXDIV(c,div) 85 # define C_MULBYSCALAR( c, s ) \ 87 (c).i *= (s); }while(0) 90 #ifndef CHECK_OVERFLOW_OP 91 # define CHECK_OVERFLOW_OP(a,op,b) 94 #define C_ADD( res, a,b)\ 96 CHECK_OVERFLOW_OP((a).r,+,(b).r)\ 97 CHECK_OVERFLOW_OP((a).i,+,(b).i)\ 98 (res).r=(a).r+(b).r; (res).i=(a).i+(b).i; \ 100 #define C_SUB( res, a,b)\ 102 CHECK_OVERFLOW_OP((a).r,-,(b).r)\ 103 CHECK_OVERFLOW_OP((a).i,-,(b).i)\ 104 (res).r=(a).r-(b).r; (res).i=(a).i-(b).i; \ 106 #define C_ADDTO( res , a)\ 108 CHECK_OVERFLOW_OP((res).r,+,(a).r)\ 109 CHECK_OVERFLOW_OP((res).i,+,(a).i)\ 110 (res).r += (a).r; (res).i += (a).i;\ 113 #define C_SUBFROM( res , a)\ 115 CHECK_OVERFLOW_OP((res).r,-,(a).r)\ 116 CHECK_OVERFLOW_OP((res).i,-,(a).i)\ 117 (res).r -= (a).r; (res).i -= (a).i; \ 122 # define KISS_FFT_COS(phase) floor(.5+SAMP_MAX * cos (phase)) 123 # define KISS_FFT_SIN(phase) floor(.5+SAMP_MAX * sin (phase)) 124 # define HALF_OF(x) ((x)>>1) 125 #elif defined(USE_SIMD) 126 # define KISS_FFT_COS(phase) _mm_set1_ps( cos(phase) ) 127 # define KISS_FFT_SIN(phase) _mm_set1_ps( sin(phase) ) 128 # define HALF_OF(x) ((x)*_mm_set1_ps(.5)) 130 # define KISS_FFT_COS(phase) (kiss_fft_scalar) cos(phase) 131 # define KISS_FFT_SIN(phase) (kiss_fft_scalar) sin(phase) 132 # define HALF_OF(x) ((x)*.5f) 135 #define kf_cexp(x,phase) \ 137 (x)->r = KISS_FFT_COS(phase);\ 138 (x)->i = KISS_FFT_SIN(phase);\ 144 fprintf(stderr,"%g + %gi\n",(double)((c)->r),(double)((c)->i) ) 147 #ifdef KISS_FFT_USE_ALLOCA 153 #define KISS_FFT_TMP_ALLOC(nbytes) alloca(nbytes) 154 #define KISS_FFT_TMP_FREE(ptr) 156 #define KISS_FFT_TMP_ALLOC(nbytes) KISS_FFT_MALLOC(nbytes) 157 #define KISS_FFT_TMP_FREE(ptr) KISS_FFT_FREE(ptr) Definition: _kiss_fft_guts.h:22
Definition: kiss_fft.h:59