@ -176,27 +176,27 @@ transform_domain(void)
for ( int ch = 0 ; ch < 2 ; ch + + ) {
memcpy ( tmp , measured [ ch ] , sizeof ( measured [ 0 ] ) ) ;
if ( beta ! = 0.0 ) {
for ( int i = 0 ; i < 101 ; i + + ) {
float w = kaiser_window ( i + offset , window_size , beta ) ;
tmp [ i * 2 + 0 ] * = w ;
tmp [ i * 2 + 1 ] * = w ;
}
}
for ( int i = 1 01 ; i < 128 ; i + + ) {
tmp [ i * 2 + 0 ] = 0.0 ;
tmp [ i * 2 + 1 ] = 0.0 ;
// if (beta != 0.0) {
// for (int i = 0; i < 101; i++) {
// float w = kaiser_window(i+offset, window_size, beta);
// tmp[i*2+0] *= w;
// tmp[i*2+1] *= w;
// }
// }
for ( int i = 0; i < 128 ; i + = 2 ) {
tmp [ 256 - i + 0 ] = tmp [ i + 0 ] ;
tmp [ 256 - i + 1 ] = - tmp [ i + 1 ] ;
}
fft128_inverse ( ( float ( * ) [ 2 ] ) tmp ) ;
memcpy ( measured [ ch ] , tmp , sizeof ( measured [ 0 ] ) ) ;
for ( int i = 0 ; i < 101 ; i + + ) {
measured [ ch ] [ i ] [ 0 ] / = 128.0 ;
measured [ ch ] [ i ] [ 1 ] /= 128. 0;
measured [ ch ] [ i ] [ 1 ] = 0;
}
if ( ( domain_mode & TD_FUNC ) = = TD_FUNC_LOWPASS_STEP ) {
for ( int i = 1 ; i < 101 ; i + + ) {
measured [ ch ] [ i ] [ 0 ] + = measured [ ch ] [ i - 1 ] [ 0 ] ;
measured [ ch ] [ i ] [ 1 ] + = measured [ ch ] [ i - 1 ] [ 1 ] ;
// measured[ch][i][1] += measured[ch][i-1][1];
}
}
}
@ -1888,13 +1888,13 @@ static void cmd_stat(BaseSequentialStream *chp, int argc, char *argv[])
# define VERSION "unknown"
# endif
const char NANOVNA_VERSION [ ] = VERSION ;
const char NANOVNA_VERSION [ ] = " edy555 0.1.1 " ;
static void cmd_version ( BaseSequentialStream * chp , int argc , char * argv [ ] )
{
( void ) argc ;
( void ) argv ;
chprintf ( chp , " %s \r \n " , NANOVNA_VERSION ) ;
chprintf ( chp , " %s %s \r \n " , NANOVNA_VERSION , " extended with scan command " ) ;
}
static void cmd_vbat ( BaseSequentialStream * chp , int argc , char * argv [ ] )