Fix for timing, timeout, and device switching issues
This commit is contained in:
@@ -43,24 +43,26 @@
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__attribute__((aligned(4))) static uint8_t USBFS_RX_Buf[USBFS_RX_BUF_LEN];
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__attribute__((aligned(4))) static uint8_t USBFS_TX_Buf[USBFS_TX_BUF_LEN];
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#define USB_XFER_TIMEOUT_MILLIS 500
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#define USB_XFER_TIMEOUT_MILLIS 100
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#define USB_INTERRUPT_XFER_TIMEOUT_MILLIS 1
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#define PANIC(...) do { printf("\r\nPANIC: " __VA_ARGS__); while (true) { } } while (false)
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#define LOG_CH32_USBFSH(...) TU_LOG3(__VA_ARGS__)
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// Busywait for delay microseconds/nanoseconds
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// static void loopdelay(uint32_t count)
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// {
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// volatile uint32_t c = count / 3;
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// // while (c-- != 0);
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// asm volatile(
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// "1: \n" // loop label
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// " addi %0, %0, -1 \n" // c--
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// " bne %0, zero, 1b \n" // if (c != 0) goto loop
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// : "+r"(c) // c is input/output operand
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// );
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// }
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static void loopdelay(uint32_t count)
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{
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volatile uint32_t c = count / 3;
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if (c == 0) { return; }
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// while (c-- != 0);
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asm volatile(
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"1: \n" // loop label
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" addi %0, %0, -1 \n" // c--
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" bne %0, zero, 1b \n" // if (c != 0) goto loop
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: "+r"(c) // c is input/output operand
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);
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}
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// Endpoint status
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@@ -71,21 +73,30 @@ typedef struct usb_edpt
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uint8_t dev_addr;
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uint8_t ep_addr;
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uint16_t max_packet_size;
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uint8_t max_packet_size;
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uint8_t xfer_type;
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// Data toggle (0 or not 0) for DATA0/1
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uint8_t data_toggle;
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} usb_edpt_t;
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static usb_edpt_t usb_edpt_list[CFG_TUH_DEVICE_MAX * 6] = {};
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typedef struct usb_current_xfer_st {
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bool is_busy;
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uint8_t dev_addr;
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uint8_t ep_addr;
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// Xfer started time in millis for timeout
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uint32_t current_xfer_packet_start_millis;
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uint8_t* current_xfer_buffer;
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uint16_t current_xfer_bufferlen;
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uint16_t current_xfer_xferred_len;
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} usb_current_xfer_t;
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} usb_edpt_t;
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static usb_edpt_t usb_edpt_list[8] = { };
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static volatile usb_current_xfer_t usb_current_xfer_info = {};
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static usb_edpt_t* get_edpt_record(uint8_t dev_addr, uint8_t ep_addr)
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@@ -113,26 +124,26 @@ static usb_edpt_t* get_empty_record_slot(void)
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return NULL;
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}
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static usb_edpt_t* add_edpt_record(uint8_t dev_addr, uint8_t ep_addr, uint16_t max_packet_size)
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static usb_edpt_t* add_edpt_record(uint8_t dev_addr, uint8_t ep_addr, uint16_t max_packet_size, uint8_t xfer_type)
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{
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usb_edpt_t* slot = get_empty_record_slot();
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if (slot == NULL) {
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PANIC("add_edpt_record(0x%02x, 0x%02x, ...) no slot for new record\r\n", dev_addr, ep_addr);
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}
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TU_ASSERT(slot != NULL, NULL);
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slot->dev_addr = dev_addr;
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slot->ep_addr = ep_addr;
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slot->max_packet_size = max_packet_size;
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slot->xfer_type = xfer_type;
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slot->data_toggle = 0;
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slot->current_xfer_packet_start_millis = 0;
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slot->current_xfer_buffer = NULL;
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slot->current_xfer_bufferlen = 0;
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slot->current_xfer_xferred_len = 0;
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slot->configured = true;
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return slot;
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}
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static usb_edpt_t* get_or_add_edpt_record(uint8_t dev_addr, uint8_t ep_addr, uint16_t max_packet_size)
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static usb_edpt_t* get_or_add_edpt_record(uint8_t dev_addr, uint8_t ep_addr, uint16_t max_packet_size, uint8_t xfer_type)
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{
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usb_edpt_t* ret = get_edpt_record(dev_addr, ep_addr);
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if (ret != NULL)
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@@ -141,7 +152,7 @@ static usb_edpt_t* get_or_add_edpt_record(uint8_t dev_addr, uint8_t ep_addr, uin
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}
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else
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{
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return add_edpt_record(dev_addr, ep_addr, max_packet_size);
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return add_edpt_record(dev_addr, ep_addr, max_packet_size, xfer_type);
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}
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}
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@@ -157,6 +168,17 @@ static void remove_edpt_record_for_device(uint8_t dev_addr)
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}
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}
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// static void dump_edpt_record_list() {
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// for (size_t i = 0; i < TU_ARRAY_SIZE(usb_edpt_list); i++) {
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// usb_edpt_t* cur = &usb_edpt_list[i];
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// if (cur->configured) {
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// printf("[%2d] Device 0x%02x Endpoint 0x%02x\r\n", i, cur->dev_addr, cur->ep_addr);
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// } else {
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// printf("[%2d] not configured\r\n", i);
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// }
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// }
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// }
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/** Enable or disable USBFS Host function */
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static void hardware_init_host(bool enabled)
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@@ -180,7 +202,8 @@ static void hardware_init_host(bool enabled)
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USBOTG_H_FS->HOST_EP_MOD = USBFS_UH_EP_TX_EN | USBFS_UH_EP_RX_EN;
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USBOTG_H_FS->HOST_RX_DMA = (uint32_t)USBFS_RX_Buf;
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USBOTG_H_FS->HOST_TX_DMA = (uint32_t)USBFS_TX_Buf;
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USBOTG_H_FS->INT_EN = USBFS_UIE_TRANSFER | USBFS_UIE_DETECT;
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// USBOTG_H_FS->INT_EN = USBFS_UIE_TRANSFER | USBFS_UIE_DETECT;
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USBOTG_H_FS->INT_EN = USBFS_UIE_DETECT;
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}
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}
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@@ -199,6 +222,7 @@ static bool hardware_start_xfer(uint8_t pid, uint8_t ep_addr, uint8_t data_toggl
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USBOTG_H_FS->HOST_TX_CTRL = (data_toggle != 0) ? USBFS_UH_T_TOG : 0;
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USBOTG_H_FS->HOST_RX_CTRL = (data_toggle != 0) ? USBFS_UH_R_TOG : 0;
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USBOTG_H_FS->HOST_EP_PID = pid_edpt;
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USBOTG_H_FS->INT_EN |= USBFS_UIE_TRANSFER;
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USBOTG_H_FS->INT_FG = USBFS_UIF_TRANSFER;
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return true;
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}
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@@ -371,19 +395,21 @@ void hcd_int_handler(uint8_t rhport, bool in_isr)
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if (USBOTG_H_FS->INT_FG & USBFS_UIF_TRANSFER)
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{
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// Disable transfer interrupt
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USBOTG_H_FS->INT_EN &= ~USBFS_UIE_TRANSFER;
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// Clear the flag
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// USBOTG_H_FS->INT_FG = USBFS_UIF_TRANSFER;
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// Copy PID and Endpoint
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uint8_t pid_edpt = USBOTG_H_FS->HOST_EP_PID;
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uint8_t status = USBOTG_H_FS->INT_ST;
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uint8_t dev_addr = USBOTG_H_FS->DEV_ADDR & USBFS_USB_ADDR_MASK;
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// Clear register to stop transfer
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USBOTG_H_FS->HOST_EP_PID = 0;
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// Clear the flag
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USBOTG_H_FS->INT_FG = USBFS_UIF_TRANSFER;
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// USBOTG_H_FS->HOST_EP_PID = 0x00;
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LOG_CH32_USBFSH("hcd_int_handler() pid_edpt=0x%02x\r\n", pid_edpt);
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uint8_t request_pid = pid_edpt >> 4;
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uint8_t response_pid = USBOTG_H_FS->INT_ST & USBFS_UIS_H_RES_MASK;
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uint8_t dev_addr = USBOTG_H_FS->DEV_ADDR;
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uint8_t response_pid = status & USBFS_UIS_H_RES_MASK;
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uint8_t ep_addr = pid_edpt & 0x0f;
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if (request_pid == USB_PID_IN)
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{
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@@ -393,7 +419,7 @@ void hcd_int_handler(uint8_t rhport, bool in_isr)
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usb_edpt_t* edpt_info = get_edpt_record(dev_addr, ep_addr);
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if (edpt_info == NULL)
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{
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PANIC("\r\nget_edpt_record() returned NULL in USBHD_IRQHandler\r\n");
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PANIC("\r\nget_edpt_record(0x%02x, 0x%02x) returned NULL in USBHD_IRQHandler\r\n", dev_addr, ep_addr);
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}
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if (status & USBFS_UIS_TOG_OK)
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@@ -406,24 +432,25 @@ void hcd_int_handler(uint8_t rhport, bool in_isr)
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case USB_PID_OUT:
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{
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uint16_t tx_len = USBOTG_H_FS->HOST_TX_LEN;
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edpt_info->current_xfer_bufferlen -= tx_len;
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edpt_info->current_xfer_xferred_len += tx_len;
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if (edpt_info->current_xfer_bufferlen == 0)
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usb_current_xfer_info.current_xfer_bufferlen -= tx_len;
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usb_current_xfer_info.current_xfer_xferred_len += tx_len;
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if (usb_current_xfer_info.current_xfer_bufferlen == 0)
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{
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LOG_CH32_USBFSH("USB_PID_OUT completed %d bytes\r\n", edpt_info->current_xfer_xferred_len);
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hcd_event_xfer_complete(dev_addr, ep_addr, edpt_info->current_xfer_xferred_len, XFER_RESULT_SUCCESS, true);
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LOG_CH32_USBFSH("USB_PID_%s completed %d bytes\r\n", request_pid == USB_PID_OUT ? "OUT" : "SETUP", usb_current_xfer_info.current_xfer_xferred_len);
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usb_current_xfer_info.is_busy = false;
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hcd_event_xfer_complete(dev_addr, ep_addr, usb_current_xfer_info.current_xfer_xferred_len, XFER_RESULT_SUCCESS, true);
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return;
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}
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else
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{
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LOG_CH32_USBFSH("USB_PID_OUT continue...\r\n");
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edpt_info->current_xfer_buffer += tx_len;
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usb_current_xfer_info.current_xfer_buffer += tx_len;
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uint16_t copylen = USBFS_TX_BUF_LEN;
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if (copylen > edpt_info->current_xfer_bufferlen)
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if (copylen > usb_current_xfer_info.current_xfer_bufferlen)
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{
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copylen = edpt_info->current_xfer_bufferlen;
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copylen = usb_current_xfer_info.current_xfer_bufferlen;
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}
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memcpy(USBFS_TX_Buf, edpt_info->current_xfer_buffer, copylen);
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memcpy(USBFS_TX_Buf, usb_current_xfer_info.current_xfer_buffer, copylen);
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hardware_start_xfer(USB_PID_OUT, ep_addr, edpt_info->data_toggle);
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return;
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}
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@@ -431,18 +458,19 @@ void hcd_int_handler(uint8_t rhport, bool in_isr)
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case USB_PID_IN:
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{
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uint16_t received_len = USBOTG_H_FS->RX_LEN;
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edpt_info->current_xfer_xferred_len += received_len;
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uint16_t xferred_len = edpt_info->current_xfer_xferred_len;
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usb_current_xfer_info.current_xfer_xferred_len += received_len;
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uint16_t xferred_len = usb_current_xfer_info.current_xfer_xferred_len;
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LOG_CH32_USBFSH("Read %d bytes\r\n", received_len);
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// if (received_len > 0 && (edpt_info->current_xfer_buffer == NULL || edpt_info->current_xfer_bufferlen == 0)) {
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// if (received_len > 0 && (usb_current_xfer_info.current_xfer_buffer == NULL || usb_current_xfer_info.current_xfer_bufferlen == 0)) {
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// PANIC("Data received but buffer not set\r\n");
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// }
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memcpy(edpt_info->current_xfer_buffer, USBFS_RX_Buf, received_len);
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edpt_info->current_xfer_buffer += received_len;
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if ((received_len < edpt_info->max_packet_size) || (xferred_len == edpt_info->current_xfer_bufferlen))
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memcpy(usb_current_xfer_info.current_xfer_buffer, USBFS_RX_Buf, received_len);
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usb_current_xfer_info.current_xfer_buffer += received_len;
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if ((received_len < edpt_info->max_packet_size) || (xferred_len == usb_current_xfer_info.current_xfer_bufferlen))
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{
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// USB device sent all data.
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LOG_CH32_USBFSH("USB_PID_IN completed\r\n");
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usb_current_xfer_info.is_busy = false;
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hcd_event_xfer_complete(dev_addr, ep_addr, xferred_len, XFER_RESULT_SUCCESS, true);
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return;
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}
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@@ -464,7 +492,7 @@ void hcd_int_handler(uint8_t rhport, bool in_isr)
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{
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if (response_pid == USB_PID_STALL)
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{
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LOG_CH32_USBFSH("Data toggle mismatched and STALL\r\n");
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LOG_CH32_USBFSH("STALL response\r\n");
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hcd_edpt_clear_stall(0, dev_addr, ep_addr);
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edpt_info->data_toggle = 0;
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hardware_start_xfer(request_pid, ep_addr, 0);
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@@ -472,10 +500,16 @@ void hcd_int_handler(uint8_t rhport, bool in_isr)
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}
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else if (response_pid == USB_PID_NAK)
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{
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LOG_CH32_USBFSH("Data toggle mismatched and NAK\r\n");
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uint32_t elapsed_time = board_millis() - edpt_info->current_xfer_packet_start_millis;
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if (elapsed_time > USB_XFER_TIMEOUT_MILLIS)
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LOG_CH32_USBFSH("NAK reposense\r\n");
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uint32_t elapsed_time = board_millis() - usb_current_xfer_info.current_xfer_packet_start_millis;
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if (edpt_info->xfer_type == TUSB_XFER_INTERRUPT && (elapsed_time > USB_INTERRUPT_XFER_TIMEOUT_MILLIS))
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{
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usb_current_xfer_info.is_busy = false;
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hcd_event_xfer_complete(dev_addr, ep_addr, 0, XFER_RESULT_SUCCESS, true);
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}
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else if (elapsed_time > USB_XFER_TIMEOUT_MILLIS)
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{
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usb_current_xfer_info.is_busy = false;
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hcd_event_xfer_complete(dev_addr, ep_addr, 0, XFER_RESULT_FAILED, true);
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}
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else
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@@ -487,12 +521,14 @@ void hcd_int_handler(uint8_t rhport, bool in_isr)
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else if (response_pid == USB_PID_DATA0 || response_pid == USB_PID_DATA1)
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{
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LOG_CH32_USBFSH("Data toggle mismatched and DATA0/1 (not STALL). RX_LEN=%d\r\n", USBOTG_H_FS->RX_LEN);
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usb_current_xfer_info.is_busy = false;
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hcd_event_xfer_complete(dev_addr, ep_addr, 0, XFER_RESULT_FAILED, true);
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return;
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}
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else
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{
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LOG_CH32_USBFSH("In USBHD_IRQHandler, unexpected response PID: 0x%02x\r\n", response_pid);
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usb_current_xfer_info.is_busy = false;
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hcd_event_xfer_complete(dev_addr, ep_addr, 0, XFER_RESULT_FAILED, true);
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return;
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}
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@@ -510,16 +546,17 @@ bool hcd_edpt_open(uint8_t rhport, uint8_t dev_addr, tusb_desc_endpoint_t const
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uint8_t ep_addr = ep_desc->bEndpointAddress;
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uint8_t ep_num = tu_edpt_number(ep_addr);
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uint16_t max_packet_size = ep_desc->wMaxPacketSize;
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LOG_CH32_USBFSH("hcd_edpt_open(rhport=%d, dev_addr=0x%02x, %p) EndpointAdderss=0x%02x,maxPacketSize=%d\r\n", rhport, dev_addr, ep_desc, ep_addr, max_packet_size);
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uint8_t xfer_type = ep_desc->bmAttributes.xfer;
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LOG_CH32_USBFSH("hcd_edpt_open(rhport=%d, dev_addr=0x%02x, %p) EndpointAdderss=0x%02x,maxPacketSize=%d,xfer_type=%d\r\n", rhport, dev_addr, ep_desc, ep_addr, max_packet_size, xfer_type);
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if (ep_num == 0x00)
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{
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TU_ASSERT(get_or_add_edpt_record(dev_addr, 0x00, max_packet_size) != NULL, false);
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TU_ASSERT(get_or_add_edpt_record(dev_addr, 0x80, max_packet_size) != NULL, false);
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TU_ASSERT(get_or_add_edpt_record(dev_addr, 0x00, max_packet_size, xfer_type) != NULL, false);
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TU_ASSERT(get_or_add_edpt_record(dev_addr, 0x80, max_packet_size, xfer_type) != NULL, false);
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}
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else
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{
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TU_ASSERT(get_or_add_edpt_record(dev_addr, ep_addr, max_packet_size) != NULL, false);
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TU_ASSERT(get_or_add_edpt_record(dev_addr, ep_addr, max_packet_size, xfer_type) != NULL, false);
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}
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update_device_address(dev_addr);
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@@ -540,26 +577,36 @@ bool hcd_edpt_xfer(uint8_t rhport, uint8_t dev_addr, uint8_t ep_addr, uint8_t *
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{
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(void)rhport;
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while (usb_current_xfer_info.is_busy) {
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osal_task_delay(1);
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}
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usb_current_xfer_info.is_busy = true;
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usb_edpt_t* edpt_info = get_edpt_record(dev_addr, ep_addr);
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if (edpt_info == NULL)
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{
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PANIC("get_edpt_record() returned NULL in hcd_edpt_xfer()\r\n");
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}
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update_device_address(dev_addr);
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tusb_speed_t device_speed = hcd_port_speed_get(rhport);
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update_port_speed(device_speed);
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edpt_info->current_xfer_buffer = buffer;
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edpt_info->current_xfer_bufferlen = buflen;
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edpt_info->current_xfer_packet_start_millis = board_millis();
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edpt_info->current_xfer_xferred_len = 0;
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usb_current_xfer_info.dev_addr = dev_addr;
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usb_current_xfer_info.ep_addr = ep_addr;
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usb_current_xfer_info.current_xfer_buffer = buffer;
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usb_current_xfer_info.current_xfer_bufferlen = buflen;
|
||||
usb_current_xfer_info.current_xfer_packet_start_millis = board_millis();
|
||||
usb_current_xfer_info.current_xfer_xferred_len = 0;
|
||||
|
||||
if (tu_edpt_dir(ep_addr) == TUSB_DIR_IN)
|
||||
{
|
||||
LOG_CH32_USBFSH("hcd_edpt_xfer(): READ, ep_addr=0x%02x, len=%d\r\n", ep_addr, buflen);
|
||||
LOG_CH32_USBFSH("hcd_edpt_xfer(): READ, dev_addr=0x%02x, ep_addr=0x%02x, len=%d\r\n", dev_addr, ep_addr, buflen);
|
||||
return hardware_start_xfer(USB_PID_IN, ep_addr, edpt_info->data_toggle);
|
||||
}
|
||||
else
|
||||
{
|
||||
LOG_CH32_USBFSH("hcd_edpt_xfer(): WRITE, ep_addr=0x%02x, len=%d\r\n", ep_addr, buflen);
|
||||
LOG_CH32_USBFSH("hcd_edpt_xfer(): WRITE, dev_addr=0x%02x, ep_addr=0x%02x, len=%d\r\n", dev_addr, ep_addr, buflen);
|
||||
uint16_t copylen = USBFS_TX_BUF_LEN;
|
||||
if (copylen > buflen)
|
||||
{
|
||||
@@ -584,8 +631,20 @@ bool hcd_edpt_abort_xfer(uint8_t rhport, uint8_t dev_addr, uint8_t ep_addr)
|
||||
bool hcd_setup_send(uint8_t rhport, uint8_t dev_addr, uint8_t const setup_packet[8])
|
||||
{
|
||||
(void)rhport;
|
||||
|
||||
if (usb_current_xfer_info.is_busy) {
|
||||
osal_task_delay(1);
|
||||
}
|
||||
usb_current_xfer_info.is_busy = true;
|
||||
|
||||
LOG_CH32_USBFSH("hcd_setup_send(rhport=%d, dev_addr=0x%02x, %p)\r\n", rhport, dev_addr, setup_packet);
|
||||
|
||||
// loopdelay(SystemCoreClock / 1000000 * 100);
|
||||
loopdelay(1);
|
||||
|
||||
update_device_address(dev_addr);
|
||||
tusb_speed_t device_speed = hcd_port_speed_get(rhport);
|
||||
update_port_speed(device_speed);
|
||||
|
||||
usb_edpt_t* edpt_info_tx = get_edpt_record(dev_addr, 0x00);
|
||||
usb_edpt_t* edpt_info_rx = get_edpt_record(dev_addr, 0x80);
|
||||
@@ -600,11 +659,13 @@ bool hcd_setup_send(uint8_t rhport, uint8_t dev_addr, uint8_t const setup_packet
|
||||
const uint16_t setup_packet_datalen = 8;
|
||||
memcpy(USBFS_TX_Buf, setup_packet, setup_packet_datalen);
|
||||
USBOTG_H_FS->HOST_TX_LEN = setup_packet_datalen;
|
||||
|
||||
edpt_info_tx->current_xfer_packet_start_millis = board_millis();
|
||||
edpt_info_tx->current_xfer_buffer = USBFS_TX_Buf;
|
||||
edpt_info_tx->current_xfer_bufferlen = setup_packet_datalen;
|
||||
edpt_info_tx->current_xfer_xferred_len = 0;
|
||||
uint8_t ep_addr = (setup_packet[0] & 0x80) ? 0x80 : 0x00;
|
||||
usb_current_xfer_info.dev_addr = dev_addr;
|
||||
usb_current_xfer_info.ep_addr = ep_addr;
|
||||
usb_current_xfer_info.current_xfer_packet_start_millis = board_millis();
|
||||
usb_current_xfer_info.current_xfer_buffer = USBFS_TX_Buf;
|
||||
usb_current_xfer_info.current_xfer_bufferlen = setup_packet_datalen;
|
||||
usb_current_xfer_info.current_xfer_xferred_len = 0;
|
||||
|
||||
hardware_start_xfer(USB_PID_SETUP, 0, 0);
|
||||
|
||||
|
Reference in New Issue
Block a user