mirror of
https://github.com/hathach/tinyusb.git
synced 2025-02-11 09:40:06 +00:00
change edpt stream api to take hwid from API to reduce memory footprint
This commit is contained in:
parent
c0030810dd
commit
cc816dc9c0
@ -341,14 +341,14 @@ uint32_t tuh_cdc_write(uint8_t idx, void const* buffer, uint32_t bufsize) {
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cdch_interface_t* p_cdc = get_itf(idx);
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TU_VERIFY(p_cdc);
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return tu_edpt_stream_write(&p_cdc->stream.tx, buffer, bufsize);
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return tu_edpt_stream_write(p_cdc->daddr, &p_cdc->stream.tx, buffer, bufsize);
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}
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uint32_t tuh_cdc_write_flush(uint8_t idx) {
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cdch_interface_t* p_cdc = get_itf(idx);
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TU_VERIFY(p_cdc);
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return tu_edpt_stream_write_xfer(&p_cdc->stream.tx);
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return tu_edpt_stream_write_xfer(p_cdc->daddr, &p_cdc->stream.tx);
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}
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bool tuh_cdc_write_clear(uint8_t idx) {
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@ -362,7 +362,7 @@ uint32_t tuh_cdc_write_available(uint8_t idx) {
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cdch_interface_t* p_cdc = get_itf(idx);
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TU_VERIFY(p_cdc);
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return tu_edpt_stream_write_available(&p_cdc->stream.tx);
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return tu_edpt_stream_write_available(p_cdc->daddr, &p_cdc->stream.tx);
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}
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//--------------------------------------------------------------------+
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@ -373,7 +373,7 @@ uint32_t tuh_cdc_read (uint8_t idx, void* buffer, uint32_t bufsize) {
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cdch_interface_t* p_cdc = get_itf(idx);
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TU_VERIFY(p_cdc);
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return tu_edpt_stream_read(&p_cdc->stream.rx, buffer, bufsize);
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return tu_edpt_stream_read(p_cdc->daddr, &p_cdc->stream.rx, buffer, bufsize);
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}
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uint32_t tuh_cdc_read_available(uint8_t idx) {
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@ -395,7 +395,7 @@ bool tuh_cdc_read_clear (uint8_t idx) {
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TU_VERIFY(p_cdc);
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bool ret = tu_edpt_stream_clear(&p_cdc->stream.rx);
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tu_edpt_stream_read_xfer(&p_cdc->stream.rx);
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tu_edpt_stream_read_xfer(p_cdc->daddr, &p_cdc->stream.rx);
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return ret;
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}
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@ -677,10 +677,10 @@ bool cdch_xfer_cb(uint8_t daddr, uint8_t ep_addr, xfer_result_t event, uint32_t
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// invoke tx complete callback to possibly refill tx fifo
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if (tuh_cdc_tx_complete_cb) tuh_cdc_tx_complete_cb(idx);
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if ( 0 == tu_edpt_stream_write_xfer(&p_cdc->stream.tx) ) {
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if ( 0 == tu_edpt_stream_write_xfer(daddr, &p_cdc->stream.tx) ) {
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// If there is no data left, a ZLP should be sent if:
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// - xferred_bytes is multiple of EP Packet size and not zero
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tu_edpt_stream_write_zlp_if_needed(&p_cdc->stream.tx, xferred_bytes);
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tu_edpt_stream_write_zlp_if_needed(daddr, &p_cdc->stream.tx, xferred_bytes);
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}
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} else if ( ep_addr == p_cdc->stream.rx.ep_addr ) {
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#if CFG_TUH_CDC_FTDI
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@ -698,7 +698,7 @@ bool cdch_xfer_cb(uint8_t daddr, uint8_t ep_addr, xfer_result_t event, uint32_t
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if (tuh_cdc_rx_cb) tuh_cdc_rx_cb(idx);
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// prepare for next transfer if needed
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tu_edpt_stream_read_xfer(&p_cdc->stream.rx);
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tu_edpt_stream_read_xfer(daddr, &p_cdc->stream.rx);
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}else if ( ep_addr == p_cdc->ep_notif ) {
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// TODO handle notification endpoint
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}else {
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@ -719,9 +719,9 @@ static bool open_ep_stream_pair(cdch_interface_t* p_cdc, tusb_desc_endpoint_t co
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TU_ASSERT(tuh_edpt_open(p_cdc->daddr, desc_ep));
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if (tu_edpt_dir(desc_ep->bEndpointAddress) == TUSB_DIR_IN) {
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tu_edpt_stream_open(&p_cdc->stream.rx, p_cdc->daddr, desc_ep);
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tu_edpt_stream_open(&p_cdc->stream.rx, desc_ep);
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} else {
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tu_edpt_stream_open(&p_cdc->stream.tx, p_cdc->daddr, desc_ep);
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tu_edpt_stream_open(&p_cdc->stream.tx, desc_ep);
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}
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desc_ep = (tusb_desc_endpoint_t const*) tu_desc_next(desc_ep);
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@ -763,7 +763,7 @@ static void set_config_complete(cdch_interface_t * p_cdc, uint8_t idx, uint8_t i
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if (tuh_cdc_mount_cb) tuh_cdc_mount_cb(idx);
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// Prepare for incoming data
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tu_edpt_stream_read_xfer(&p_cdc->stream.rx);
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tu_edpt_stream_read_xfer(p_cdc->daddr, &p_cdc->stream.rx);
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// notify usbh that driver enumeration is complete
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usbh_driver_set_config_complete(p_cdc->daddr, itf_num);
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@ -42,14 +42,11 @@ typedef struct TU_ATTR_PACKED
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}tu_edpt_state_t;
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typedef struct {
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bool is_host; // host or device
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union {
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uint8_t daddr; // host mode
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uint8_t rhport; // device mode
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uint8_t hwid;
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struct {
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uint8_t is_host : 1; // host or device
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uint8_t is_highspeed: 1; // is highspeed
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};
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uint8_t ep_addr;
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uint8_t ep_speed;
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uint16_t ep_packetsize;
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uint16_t ep_bufsize;
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@ -97,16 +94,14 @@ bool tu_edpt_stream_deinit(tu_edpt_stream_t* s);
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// Open an stream for an endpoint
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// hwid is either device address (host mode) or rhport (device mode)
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TU_ATTR_ALWAYS_INLINE static inline
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void tu_edpt_stream_open(tu_edpt_stream_t* s, uint8_t hwid, tusb_desc_endpoint_t const *desc_ep) {
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void tu_edpt_stream_open(tu_edpt_stream_t* s, tusb_desc_endpoint_t const *desc_ep) {
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tu_fifo_clear(&s->ff);
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s->hwid = hwid;
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s->ep_addr = desc_ep->bEndpointAddress;
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s->ep_packetsize = tu_edpt_packet_size(desc_ep);
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}
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TU_ATTR_ALWAYS_INLINE static inline
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void tu_edpt_stream_close(tu_edpt_stream_t* s) {
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s->hwid = 0;
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s->ep_addr = 0;
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}
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@ -121,27 +116,27 @@ bool tu_edpt_stream_clear(tu_edpt_stream_t* s) {
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//--------------------------------------------------------------------+
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// Write to stream
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uint32_t tu_edpt_stream_write(tu_edpt_stream_t* s, void const *buffer, uint32_t bufsize);
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uint32_t tu_edpt_stream_write(uint8_t hwid, tu_edpt_stream_t* s, void const *buffer, uint32_t bufsize);
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// Start an usb transfer if endpoint is not busy
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uint32_t tu_edpt_stream_write_xfer(tu_edpt_stream_t* s);
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uint32_t tu_edpt_stream_write_xfer(uint8_t hwid, tu_edpt_stream_t* s);
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// Start an zero-length packet if needed
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bool tu_edpt_stream_write_zlp_if_needed(tu_edpt_stream_t* s, uint32_t last_xferred_bytes);
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bool tu_edpt_stream_write_zlp_if_needed(uint8_t hwid, tu_edpt_stream_t* s, uint32_t last_xferred_bytes);
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// Get the number of bytes available for writing to FIFO
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// Note: if no fifo, return endpoint size if not busy, 0 otherwise
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uint32_t tu_edpt_stream_write_available(tu_edpt_stream_t* s);
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uint32_t tu_edpt_stream_write_available(uint8_t hwid, tu_edpt_stream_t* s);
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//--------------------------------------------------------------------+
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// Stream Read
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//--------------------------------------------------------------------+
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// Read from stream
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uint32_t tu_edpt_stream_read(tu_edpt_stream_t* s, void* buffer, uint32_t bufsize);
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uint32_t tu_edpt_stream_read(uint8_t hwid, tu_edpt_stream_t* s, void* buffer, uint32_t bufsize);
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// Start an usb transfer if endpoint is not busy
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uint32_t tu_edpt_stream_read_xfer(tu_edpt_stream_t* s);
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uint32_t tu_edpt_stream_read_xfer(uint8_t hwid, tu_edpt_stream_t* s);
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// Must be called in the transfer complete callback
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TU_ATTR_ALWAYS_INLINE static inline
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src/tusb.c
62
src/tusb.c
@ -239,40 +239,40 @@ bool tu_edpt_stream_deinit(tu_edpt_stream_t* s) {
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return true;
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}
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TU_ATTR_ALWAYS_INLINE static inline bool stream_claim(tu_edpt_stream_t* s) {
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TU_ATTR_ALWAYS_INLINE static inline bool stream_claim(uint8_t hwid, tu_edpt_stream_t* s) {
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if (s->is_host) {
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#if CFG_TUH_ENABLED
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return usbh_edpt_claim(s->daddr, s->ep_addr);
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return usbh_edpt_claim(hwid, s->ep_addr);
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#endif
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} else {
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#if CFG_TUD_ENABLED
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return usbd_edpt_claim(s->rhport, s->ep_addr);
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return usbd_edpt_claim(hwid, s->ep_addr);
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#endif
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}
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return false;
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}
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TU_ATTR_ALWAYS_INLINE static inline bool stream_xfer(tu_edpt_stream_t* s, uint16_t count) {
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TU_ATTR_ALWAYS_INLINE static inline bool stream_xfer(uint8_t hwid, tu_edpt_stream_t* s, uint16_t count) {
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if (s->is_host) {
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#if CFG_TUH_ENABLED
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return usbh_edpt_xfer(s->daddr, s->ep_addr, count ? s->ep_buf : NULL, count);
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return usbh_edpt_xfer(hwid, s->ep_addr, count ? s->ep_buf : NULL, count);
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#endif
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} else {
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#if CFG_TUD_ENABLED
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return usbd_edpt_xfer(s->rhport, s->ep_addr, count ? s->ep_buf : NULL, count);
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return usbd_edpt_xfer(hwid, s->ep_addr, count ? s->ep_buf : NULL, count);
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#endif
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}
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return false;
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}
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TU_ATTR_ALWAYS_INLINE static inline bool stream_release(tu_edpt_stream_t* s) {
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TU_ATTR_ALWAYS_INLINE static inline bool stream_release(uint8_t hwid, tu_edpt_stream_t* s) {
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if (s->is_host) {
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#if CFG_TUH_ENABLED
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return usbh_edpt_release(s->daddr, s->ep_addr);
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return usbh_edpt_release(hwid, s->ep_addr);
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#endif
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} else {
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#if CFG_TUD_ENABLED
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return usbd_edpt_release(s->rhport, s->ep_addr);
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return usbd_edpt_release(hwid, s->ep_addr);
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#endif
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}
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return false;
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@ -281,43 +281,43 @@ TU_ATTR_ALWAYS_INLINE static inline bool stream_release(tu_edpt_stream_t* s) {
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//--------------------------------------------------------------------+
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// Stream Write
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//--------------------------------------------------------------------+
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bool tu_edpt_stream_write_zlp_if_needed(tu_edpt_stream_t* s, uint32_t last_xferred_bytes) {
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bool tu_edpt_stream_write_zlp_if_needed(uint8_t hwid, tu_edpt_stream_t* s, uint32_t last_xferred_bytes) {
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// ZLP condition: no pending data, last transferred bytes is multiple of packet size
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TU_VERIFY(!tu_fifo_count(&s->ff) && last_xferred_bytes && (0 == (last_xferred_bytes & (s->ep_packetsize - 1))));
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TU_VERIFY(stream_claim(s));
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TU_ASSERT(stream_xfer(s, 0));
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TU_VERIFY(stream_claim(hwid, s));
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TU_ASSERT(stream_xfer(hwid, s, 0));
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return true;
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}
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uint32_t tu_edpt_stream_write_xfer(tu_edpt_stream_t* s) {
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uint32_t tu_edpt_stream_write_xfer(uint8_t hwid, tu_edpt_stream_t* s) {
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// skip if no data
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TU_VERIFY(tu_fifo_count(&s->ff), 0);
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TU_VERIFY(stream_claim(s), 0);
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TU_VERIFY(stream_claim(hwid, s), 0);
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// Pull data from FIFO -> EP buf
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uint16_t const count = tu_fifo_read_n(&s->ff, s->ep_buf, s->ep_bufsize);
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if (count) {
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TU_ASSERT(stream_xfer(s, count), 0);
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TU_ASSERT(stream_xfer(hwid, s, count), 0);
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return count;
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} else {
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// Release endpoint since we don't make any transfer
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// Note: data is dropped if terminal is not connected
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stream_release(s);
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stream_release(hwid, s);
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return 0;
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}
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}
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uint32_t tu_edpt_stream_write(tu_edpt_stream_t* s, void const* buffer, uint32_t bufsize) {
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uint32_t tu_edpt_stream_write(uint8_t hwid, tu_edpt_stream_t* s, void const* buffer, uint32_t bufsize) {
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TU_VERIFY(bufsize); // TODO support ZLP
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if (0 == tu_fifo_depth(&s->ff)) {
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// no fifo for buffered
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TU_VERIFY(stream_claim(s), 0);
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TU_VERIFY(stream_claim(hwid, s), 0);
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const uint32_t xact_len = tu_min32(bufsize, s->ep_bufsize);
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memcpy(s->ep_buf, buffer, xact_len);
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TU_ASSERT(stream_xfer(s, xact_len), 0);
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TU_ASSERT(stream_xfer(hwid, s, xact_len), 0);
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return xact_len;
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} else {
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const uint16_t ret = tu_fifo_write_n(&s->ff, buffer, (uint16_t) bufsize);
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@ -325,24 +325,24 @@ uint32_t tu_edpt_stream_write(tu_edpt_stream_t* s, void const* buffer, uint32_t
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// flush if fifo has more than packet size or
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// in rare case: fifo depth is configured too small (which never reach packet size)
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if ((tu_fifo_count(&s->ff) >= s->ep_packetsize) || (tu_fifo_depth(&s->ff) < s->ep_packetsize)) {
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tu_edpt_stream_write_xfer(s);
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tu_edpt_stream_write_xfer(hwid, s);
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}
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return ret;
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}
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}
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uint32_t tu_edpt_stream_write_available(tu_edpt_stream_t* s) {
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uint32_t tu_edpt_stream_write_available(uint8_t hwid, tu_edpt_stream_t* s) {
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if (tu_fifo_depth(&s->ff)) {
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return (uint32_t) tu_fifo_remaining(&s->ff);
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} else {
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bool is_busy = true;
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if (s->is_host) {
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#if CFG_TUH_ENABLED
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is_busy = usbh_edpt_busy(s->daddr, s->ep_addr);
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is_busy = usbh_edpt_busy(hwid, s->ep_addr);
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#endif
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} else {
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#if CFG_TUD_ENABLED
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is_busy = usbd_edpt_busy(s->rhport, s->ep_addr);
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is_busy = usbd_edpt_busy(hwid, s->ep_addr);
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#endif
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}
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return is_busy ? 0 : s->ep_bufsize;
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@ -352,11 +352,11 @@ uint32_t tu_edpt_stream_write_available(tu_edpt_stream_t* s) {
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//--------------------------------------------------------------------+
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// Stream Read
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//--------------------------------------------------------------------+
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uint32_t tu_edpt_stream_read_xfer(tu_edpt_stream_t* s) {
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uint32_t tu_edpt_stream_read_xfer(uint8_t hwid, tu_edpt_stream_t* s) {
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if (0 == tu_fifo_depth(&s->ff)) {
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// no fifo for buffered
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TU_VERIFY(stream_claim(s), 0);
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TU_ASSERT(stream_xfer(s, s->ep_bufsize), 0);
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TU_VERIFY(stream_claim(hwid, s), 0);
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TU_ASSERT(stream_xfer(hwid, s, s->ep_bufsize), 0);
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return s->ep_bufsize;
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} else {
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uint16_t available = tu_fifo_remaining(&s->ff);
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@ -367,7 +367,7 @@ uint32_t tu_edpt_stream_read_xfer(tu_edpt_stream_t* s) {
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// This pre-check reduces endpoint claiming
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TU_VERIFY(available >= s->ep_packetsize);
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TU_VERIFY(stream_claim(s), 0);
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TU_VERIFY(stream_claim(hwid, s), 0);
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// get available again since fifo can be changed before endpoint is claimed
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available = tu_fifo_remaining(&s->ff);
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@ -376,19 +376,19 @@ uint32_t tu_edpt_stream_read_xfer(tu_edpt_stream_t* s) {
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// multiple of packet size limit by ep bufsize
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uint16_t count = (uint16_t) (available & ~(s->ep_packetsize - 1));
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count = tu_min16(count, s->ep_bufsize);
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TU_ASSERT(stream_xfer(s, count), 0);
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TU_ASSERT(stream_xfer(hwid, s, count), 0);
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return count;
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} else {
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// Release endpoint since we don't make any transfer
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stream_release(s);
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stream_release(hwid, s);
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return 0;
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}
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}
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}
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uint32_t tu_edpt_stream_read(tu_edpt_stream_t* s, void* buffer, uint32_t bufsize) {
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uint32_t tu_edpt_stream_read(uint8_t hwid, tu_edpt_stream_t* s, void* buffer, uint32_t bufsize) {
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uint32_t num_read = tu_fifo_read_n(&s->ff, buffer, (uint16_t) bufsize);
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tu_edpt_stream_read_xfer(s);
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tu_edpt_stream_read_xfer(hwid, s);
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return num_read;
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}
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