stm32: Simplify usbotg packet reading and writing
Signed-off-by: Kevin O'Connor <kevin@koconnor.net>
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@ -57,40 +57,35 @@ fifo_configure(void)
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fpos += ep_size;
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}
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// Inspect the next packet on the rx queue
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static uint32_t
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peek_rx_queue(uint32_t ep)
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// Write a packet to a tx fifo
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static int_fast8_t
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fifo_write_packet(uint32_t ep, const uint8_t *src, uint32_t len)
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{
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for (;;) {
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USB_OTG_OUTEndpointTypeDef *epo = EPOUT(ep);
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uint32_t ctl = epo->DOEPCTL;
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if (!(ctl & USB_OTG_DOEPCTL_EPENA) || ctl & USB_OTG_DOEPCTL_NAKSTS) {
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// Reenable packet reception if it got disabled by controller
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epo->DOEPTSIZ = 64 | (1 << USB_OTG_DOEPTSIZ_PKTCNT_Pos);
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epo->DOEPCTL = ctl | USB_OTG_DOEPCTL_EPENA | USB_OTG_DOEPCTL_CNAK;
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void *fifo = EPFIFO(ep);
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USB_OTG_INEndpointTypeDef *epi = EPIN(ep);
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epi->DIEPTSIZ = len | (1 << USB_OTG_DIEPTSIZ_PKTCNT_Pos);
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epi->DIEPCTL |= USB_OTG_DIEPCTL_EPENA | USB_OTG_DIEPCTL_CNAK;
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int32_t count = len;
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while (count >= 4) {
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uint32_t data;
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memcpy(&data, src, 4);
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writel(fifo, data);
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count -= 4;
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src += 4;
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}
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uint32_t sts = OTG->GINTSTS;
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if (!(sts & USB_OTG_GINTSTS_RXFLVL))
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// No packet ready
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return 0;
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uint32_t grx = OTG->GRXSTSR;
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uint32_t pktsts = ((grx & USB_OTG_GRXSTSP_PKTSTS_Msk)
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>> USB_OTG_GRXSTSP_PKTSTS_Pos);
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if (pktsts != 1 && pktsts != 3 && pktsts != 4) {
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// A packet is ready
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if ((grx & USB_OTG_GRXSTSP_EPNUM_Msk) != ep)
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return 0;
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return grx;
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}
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// Discard informational entries from queue
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grx = OTG->GRXSTSP;
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if (count) {
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uint32_t data = 0;
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memcpy(&data, src, count);
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writel(fifo, data);
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}
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return len;
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}
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// Read a packet from the rx queue
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static int_fast8_t
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fifo_read_packet(uint8_t *dest, uint_fast8_t max_len)
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{
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// Transfer data
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void *fifo = EPFIFO(0);
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uint32_t grx = OTG->GRXSTSP;
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uint32_t bcnt = (grx & USB_OTG_GRXSTSP_BCNT) >> USB_OTG_GRXSTSP_BCNT_Pos;
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@ -108,24 +103,37 @@ fifo_read_packet(uint8_t *dest, uint_fast8_t max_len)
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uint32_t extra = DIV_ROUND_UP(bcnt, 4) - DIV_ROUND_UP(xfer, 4);
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while (extra--)
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readl(fifo);
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// Reenable packet reception if it got disabled by controller
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USB_OTG_OUTEndpointTypeDef *epo = EPOUT(grx & USB_OTG_GRXSTSP_EPNUM_Msk);
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uint32_t ctl = epo->DOEPCTL;
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if (!(ctl & USB_OTG_DOEPCTL_EPENA) || ctl & USB_OTG_DOEPCTL_NAKSTS) {
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epo->DOEPTSIZ = 64 | (1 << USB_OTG_DOEPTSIZ_PKTCNT_Pos);
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epo->DOEPCTL = ctl | USB_OTG_DOEPCTL_EPENA | USB_OTG_DOEPCTL_CNAK;
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}
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return xfer;
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}
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// Write a packet to a tx fifo
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static void
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fifo_write_packet(void *fifo, const uint8_t *src, uint32_t count)
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// Inspect the next packet on the rx queue
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static uint32_t
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peek_rx_queue(uint32_t ep)
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{
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while (count >= 4) {
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uint32_t data;
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memcpy(&data, src, 4);
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writel(fifo, data);
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count -= 4;
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src += 4;
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for (;;) {
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uint32_t sts = OTG->GINTSTS;
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if (!(sts & USB_OTG_GINTSTS_RXFLVL))
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// No packet ready
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return 0;
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uint32_t grx = OTG->GRXSTSR;
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uint32_t pktsts = ((grx & USB_OTG_GRXSTSP_PKTSTS_Msk)
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>> USB_OTG_GRXSTSP_PKTSTS_Pos);
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if (pktsts != 1 && pktsts != 3 && pktsts != 4) {
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// A packet is ready
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if ((grx & USB_OTG_GRXSTSP_EPNUM_Msk) != ep)
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return 0;
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return grx;
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}
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if (count) {
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uint32_t data = 0;
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memcpy(&data, src, count);
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writel(fifo, data);
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// Discard informational entries from queue
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fifo_read_packet(NULL, 0);
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}
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}
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@ -149,20 +157,16 @@ usb_read_bulk_out(void *data, uint_fast8_t max_len)
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int_fast8_t
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usb_send_bulk_in(void *data, uint_fast8_t len)
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{
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USB_OTG_INEndpointTypeDef *epi = EPIN(USB_CDC_EP_BULK_IN);
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uint32_t len_d4 = DIV_ROUND_UP(len, 4);
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uint32_t ctl = epi->DIEPCTL;
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uint32_t ctl = EPIN(USB_CDC_EP_BULK_IN)->DIEPCTL;
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if (!(ctl & USB_OTG_DIEPCTL_USBAEP))
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// Controller not enabled
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return -2;
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if (ctl & USB_OTG_DIEPCTL_EPENA || len_d4 > epi->DTXFSTS) {
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if (ctl & USB_OTG_DIEPCTL_EPENA) {
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// Wait for space to transmit
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OTGD->DIEPEMPMSK |= (1 << USB_CDC_EP_BULK_IN);
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return -1;
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}
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epi->DIEPTSIZ = len | (1 << USB_OTG_DIEPTSIZ_PKTCNT_Pos);
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epi->DIEPCTL |= USB_OTG_DIEPCTL_EPENA | USB_OTG_DIEPCTL_CNAK;
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fifo_write_packet(EPFIFO(USB_CDC_EP_BULK_IN), data, len);
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return len;
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return fifo_write_packet(USB_CDC_EP_BULK_IN, data, len);
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}
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int_fast8_t
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@ -221,20 +225,13 @@ usb_send_ep0(const void *data, uint_fast8_t len)
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// Transfer interrupted
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return -2;
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}
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USB_OTG_INEndpointTypeDef *epi = EPIN(0);
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uint32_t len_d4 = DIV_ROUND_UP(len, 4);
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uint32_t ctl = epi->DIEPCTL;
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if (ctl & USB_OTG_DIEPCTL_EPENA || len_d4 > epi->DTXFSTS) {
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if (EPIN(0)->DIEPCTL & USB_OTG_DIEPCTL_EPENA) {
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// Wait for space to transmit
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OTGD->DIEPEMPMSK |= (1 << 0);
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OTG->GINTMSK |= USB_OTG_GINTMSK_RXFLVLM;
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return -1;
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}
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epi->DIEPTSIZ = len | (1 << USB_OTG_DIEPTSIZ_PKTCNT_Pos);
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epi->DIEPCTL = ((ctl & ~USB_OTG_DIEPCTL_STALL) | USB_OTG_DIEPCTL_EPENA
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| USB_OTG_DIEPCTL_CNAK);
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fifo_write_packet(EPFIFO(0), data, len);
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return len;
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return fifo_write_packet(0, data, len);
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}
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void
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