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ubb-la/ubb-la.c: new option -F freq_MHz to select "unsafe" frequencies
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@ -26,6 +26,10 @@ Note that - unlike ubb-patgen - there are no SI prefixes or rounding
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modes to select. ubb-la simply picks the frequency closest to the one
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specified.
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The option -F works like -f but also allows frequencies that may
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exceed the hardware's capabilities. As a consequence, the MMC
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controller may hang.
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A list of available frequencies can be obtained with
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# ubb-patgen -q
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@ -331,11 +331,12 @@ static void do_bufs(int n_bufs, int nibbles)
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* It'll save a few nanoseconds.
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*/
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static void frequency(struct mmcclk *clk, int hz)
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static void frequency(struct mmcclk *clk, int hz, int all)
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{
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struct mmcclk mmc;
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mmcclk_first(&mmc, 0, MMCCLK_FLAG_RD_ONLY);
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mmcclk_first(&mmc, 0,
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MMCCLK_FLAG_RD_ONLY | (all ? MMCCLK_FLAG_ALL : 0));
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*clk = mmc;
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while (mmcclk_next(&mmc))
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if (fabs(clk->bus_clk_hz-hz) > fabs(mmc.bus_clk_hz-hz) ||
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@ -361,9 +362,10 @@ static unsigned long xlat_pins(unsigned long pins)
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static void usage(const char *name)
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{
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fprintf(stderr,
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"usage: %s [-C] [-t pattern/mask] [-f frequency_MHz] [-n N]\n\n"
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"usage: %s [-C] [-t pattern/mask] [(-f|-F) frequency_MHz] [-n N]\n\n"
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" -C output the MMC clock on CLK/TRIG (for debugging)\n"
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" -f freq_MHz select the specified frequency (default; 1 MHz)\n"
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" -F freq_MHz like -f, but also allow \"overclocking\"\n"
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" -n N capture N buffers worth of samples without waiting for a\n"
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" trigger\n"
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" -t pattern/mask start capture at the specified pattern (DAT0 = 1, etc.,\n"
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@ -376,6 +378,7 @@ static void usage(const char *name)
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int main(int argc, char **argv)
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{
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double freq_mhz = 1;
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int all = 0;
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unsigned long trigger = 1, mask = 0;
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unsigned long multi = 0;
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int clkout = 0;
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@ -383,11 +386,14 @@ int main(int argc, char **argv)
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char *end;
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int c, res;
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while ((c = getopt(argc, argv, "Cf:n:t:")) != EOF)
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while ((c = getopt(argc, argv, "Cf:F:n:t:")) != EOF)
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switch (c) {
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case 'C':
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clkout = 1;
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break;
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case 'F':
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all = 1;
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/* fall through */
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case 'f':
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freq_mhz = strtod(optarg, &end);
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if (*end)
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@ -423,7 +429,7 @@ int main(int argc, char **argv)
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CLR(UBB_CMD);
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PDFUNC = UBB_CMD;
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frequency(&clk, 1e6*freq_mhz);
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frequency(&clk, 1e6*freq_mhz, all);
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fprintf(stderr, "bus %g MHz controller %g MHz\n", clk.bus_clk_hz/1e6,
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clk.sys_clk_hz/(clk.clkdiv+1.0)/1e6);
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mmcclk_start(&clk);
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