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lib: check for validity of sample rates
Thanks to Joris van Rantwijk for finding what seems to be a hardware limitation/bug (bit 28 of the rsamp register being forced to the value of bit 27). Signed-off-by: Steve Markgraf <steve@steve-m.de>
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@ -337,8 +337,6 @@ static rtlsdr_dongle_t known_devices[] = {
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#define MIN_RTL_XTAL_FREQ (DEF_RTL_XTAL_FREQ - 1000)
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#define MAX_RTL_XTAL_FREQ (DEF_RTL_XTAL_FREQ + 1000)
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#define MAX_SAMP_RATE 3200000
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#define CTRL_IN (LIBUSB_REQUEST_TYPE_VENDOR | LIBUSB_ENDPOINT_IN)
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#define CTRL_OUT (LIBUSB_REQUEST_TYPE_VENDOR | LIBUSB_ENDPOINT_OUT)
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#define CTRL_TIMEOUT 300
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@ -1053,20 +1051,24 @@ int rtlsdr_set_sample_rate(rtlsdr_dev_t *dev, uint32_t samp_rate)
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{
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int r = 0;
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uint16_t tmp;
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uint32_t rsamp_ratio;
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uint32_t rsamp_ratio, real_rsamp_ratio;
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double real_rate;
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if (!dev)
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return -1;
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/* check for the maximum rate the resampler supports */
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if (samp_rate > MAX_SAMP_RATE)
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samp_rate = MAX_SAMP_RATE;
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/* check if the rate is supported by the resampler */
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if ((samp_rate <= 225000) || (samp_rate > 3200000) ||
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((samp_rate > 300000) && (samp_rate <= 900000))) {
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fprintf(stderr, "Invalid sample rate: %u Hz\n", samp_rate);
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return -EINVAL;
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}
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rsamp_ratio = (dev->rtl_xtal * TWO_POW(22)) / samp_rate;
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rsamp_ratio &= ~3;
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rsamp_ratio &= 0x0ffffffc;
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real_rate = (dev->rtl_xtal * TWO_POW(22)) / rsamp_ratio;
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real_rsamp_ratio = rsamp_ratio | ((rsamp_ratio & 0x08000000) << 1);
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real_rate = (dev->rtl_xtal * TWO_POW(22)) / real_rsamp_ratio;
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if ( ((double)samp_rate) != real_rate )
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fprintf(stderr, "Exact sample rate is: %f Hz\n", real_rate);
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