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ubb-la/ubb-la.c: option -n N to enter experimental multi-buffer mode (WIP)
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parent
96ae3319c5
commit
37a219b0b9
105
ubb-la/ubb-la.c
105
ubb-la/ubb-la.c
@ -99,6 +99,7 @@ static void dma_setup(unsigned long buf, int nibbles)
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{
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assert(!(nibbles & 63));
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/* need to reset DSA, DTA, DTC when done. uncertain about DCS */
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DCS(DMA) = DCS_NDES; /* no-descriptor transfer */
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DSA(DMA) = REG_PADDR(MSC_RXFIFO); /* source */
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DTA(DMA) = buf; /* destination */
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@ -166,6 +167,61 @@ quit:
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}
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static void xfers(unsigned long *bufs, int n_bufs, int nibbles)
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{
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int i = 0;
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dma_init();
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MSC_STRPCL = MSC_STRPCRL_START_CLOCK; /* start the bus clock */
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MSC_RESTO = MSC_RESTO_MASK; /* maximum response time-out */
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MSC_RDTO = MSC_RDTO_MASK;
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MSC_BLKLEN = nibbles >> 1;
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MSC_CMDAT =
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MSC_CMDAT_BUS_WIDTH_4 << MSC_CMDAT_BUS_WIDTH_SHIFT |
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MSC_CMDAT_DMA_EN | /* DMA */
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MSC_CMDAT_DATA_EN | /* with data transfer */
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MSC_CMDAT_RESPONSE_FORMAT_NONE; /* no response required */
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disable_interrupts();
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OUT(UBB_CMD);
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dma_setup(bufs[0], nibbles);
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while (1) {
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MSC_STRPCL = MSC_STRPCRL_START_OP;
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while (MSC_STAT & MSC_STAT_DATA_FIFO_EMPTY);
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IN(UBB_CMD);
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DCS(DMA) =
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DCS_NDES | /* no descriptor */
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DCS_CTE; /* enable channel */
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/*
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* @@@ We could enable interrupts while waiting, particularly
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* at low sample rates, as long as the probability of missing
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* the end of the DMA transfer is acceptably low.
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*/
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wait_dma_done();
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if (++i == n_bufs)
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break;
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OUT(UBB_CMD);
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dma_setup(bufs[i], nibbles);
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while (!(MSC_STAT & MSC_STAT_DATA_TRAN_DONE));
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}
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enable_interrupts();
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dma_cleanup();
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}
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static void print_samples(FILE *file, uint8_t *buf, int skip, int nibbles)
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{
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uint8_t v, last = 0xff;
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@ -225,6 +281,38 @@ static int do_buf(int nibbles, uint32_t trigger, uint32_t mask)
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}
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static void do_bufs(int n_bufs, int nibbles)
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{
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uint8_t *bufs[n_bufs];
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struct physmem_vec vecs[n_bufs];
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unsigned long addrs[n_bufs];
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int i,n;
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if (mlockall(MCL_CURRENT | MCL_FUTURE)) {
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perror("mlockall");
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exit(1);
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}
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for (i = 0; i != n_bufs; i++) {
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bufs[i] = physmem_malloc(4096);
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memset(bufs[i], 0, 4096);
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physmem_flush(bufs[i], 4096);
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n = physmem_xlat(bufs[i], nibbles >> 1, vecs+i, 1);
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if (n != 1) {
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fprintf(stderr,
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"physmem_xlat_vec: expected 1, got %d\n", n);
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exit(1);
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}
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addrs[i] = vecs[i].addr;
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}
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xfers(addrs, n_bufs, nibbles);
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for (i = 0; i != n_bufs; i++)
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print_samples(stdout, bufs[i], INITIAL_SKIP, nibbles);
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}
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/* ----- Command-line processing ------------------------------------------- */
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@ -263,9 +351,11 @@ 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"
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"usage: %s [-C] [-t pattern/mask] [-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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" -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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" CLK = 16). Default: any change on TRIG.\n"
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, name);
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@ -277,12 +367,13 @@ int main(int argc, char **argv)
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{
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double freq_mhz = 1;
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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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struct mmcclk clk;
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char *end;
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int c, res;
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while ((c = getopt(argc, argv, "Cf:t:")) != EOF)
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while ((c = getopt(argc, argv, "Cf: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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@ -292,6 +383,11 @@ int main(int argc, char **argv)
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if (*end)
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usage(*argv);
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break;
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case 'n':
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multi = strtoul(optarg, &end, 0);
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if (*end)
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usage(*argv);
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break;
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case 't':
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trigger = strtoul(optarg, &end, 0);
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if (*end != '/')
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@ -327,7 +423,12 @@ int main(int argc, char **argv)
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mask = UBB_CLK;
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}
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if (!multi) {
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res = !do_buf(8128, trigger, mask);
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} else {
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do_bufs(multi, 8128);
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res = 0;
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}
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mmcclk_stop();
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ubb_close(UBB_ALL);
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