213 lines
5.8 KiB
C
213 lines
5.8 KiB
C
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/**
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****************************************************************************************
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*
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* @file usbd_hid.c
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*
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* @brief Function of USB Human Interface Device (HID)
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*
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****************************************************************************************
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*/
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#include "usbd.h"
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#include "usbd_hid.h"
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#include "drvs.h"
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/// HID global environment
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static usbd_hid_t usbd_hids[HID_INST_CNT];
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/// Interface number convert to hid instance
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static usbd_hid_t *find_hid_by_intf(uint8_t intf_num)
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{
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for (uint8_t i = 0; i < HID_INST_CNT; i++) {
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if (usbd_hids[i].hid_intf && (usbd_hids[i].hid_intf->intf_num == intf_num)) {
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return &usbd_hids[i];
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}
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}
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return NULL;
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}
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/// Endpoint address convert to hid instance
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static usbd_hid_t *find_hid_by_ep(uint8_t ep_addr)
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{
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for (uint8_t i = 0; i < HID_INST_CNT; i++) {
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if (usbd_hids[i].hid_intf && (usbd_hids[i].hid_intf->ep_in == ep_addr)) {
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return &usbd_hids[i];
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}
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}
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return NULL;
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}
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void usbd_hid_init(uint8_t idx, const hid_intf_t *intf)
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{
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if (idx < HID_INST_CNT) {
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usbd_hids[idx].hid_intf = intf;
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//memset(&usbd_hids[idx].hid_state, 0, 4);
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usbd_hids[idx].hid_info = 0;
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}
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}
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void usbd_hid_reset(void)
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{
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for (uint8_t idx = 0; idx < HID_INST_CNT; idx++) {
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//memset(&usbd_hids[idx].hid_state, 0, 4);
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usbd_hids[idx].hid_info = 0;
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//usbd_hids[idx].hid_state = HID_STATE_IDLE;
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}
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}
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__WEAK void usbd_hid_leds(uint8_t state)
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{
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/*!< here you can write the LED processing from the host */
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if (state & HID_KBD_LED_NUM_LOCK) {
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/*!< num lock */
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} else {
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}
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if (state & HID_KBD_LED_CAPS_LOCK) {
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/*!< caps lock */
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} else {
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}
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if (state & HID_KBD_LED_SCROLL_LOCK) {
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/*!< scroll lock */
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} else {
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}
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}
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uint8_t usbd_hid_send_report(uint8_t ep, uint8_t len, const uint8_t *data)
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{
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uint8_t status = USBD_FAIL;
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if (usbd_is_configured()) {
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usbd_hid_t *curr_hid = find_hid_by_ep(ep);
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if (curr_hid && (curr_hid->hid_state == HID_STATE_IDLE)) {
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curr_hid->hid_state = HID_STATE_BUSY; // Update before isr occure
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status = usbd_ep_write(ep, len, data, NULL);
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if (status != USBD_OK) {
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curr_hid->hid_state = HID_STATE_IDLE; // fail to recover
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}
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}
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}
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return status;
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}
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void usbd_hid_ep_in_handler(uint8_t ep)
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{
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usbd_hid_t *curr_hid = find_hid_by_ep(ep);
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GPIO_DAT_SET(GPIO18);
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if (curr_hid && (curr_hid->hid_state == HID_STATE_BUSY)) {
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/*!< transfer successfully, update the state */
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curr_hid->hid_state = HID_STATE_IDLE;
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}
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GPIO_DAT_CLR(GPIO18);
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}
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/**
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* @brief Handler called for Class requests.
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*
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* @param setup Information about the request to execute.
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* @param data Buffer containing the request result.
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* @param len Size of the buffer.
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*
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* @return 0 on success, errno code on fail.
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*/
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uint8_t usbd_hid_class_handler(struct usb_setup_packet *setup, uint8_t **data, uint16_t *len)
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{
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uint8_t intf_num;
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usbd_hid_t *curr_hid;
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if ((setup->bmRequestType & USB_REQUEST_RECIP_MASK) != USB_REQUEST_RECIP_INTERFACE) {
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return USBD_FAIL;
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}
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intf_num = (uint8_t)setup->wIndex;
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curr_hid = find_hid_by_intf(intf_num);
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if (!curr_hid) {
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return USBD_FAIL;
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}
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// Standard Request - Get Hid Report Descriptor
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if ((setup->bmRequestType & USB_REQUEST_TYPE_MASK) == USB_REQUEST_STANDARD) {
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if (setup->bRequest == USB_REQUEST_GET_DESCRIPTOR) {
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uint8_t desc_typ = (uint8_t)(setup->wValue >> 8);
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USB_LOG_DBG("HID Get_Desc(type:%d,intf:%d)\r\n", desc_typ, intf_num);
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if (desc_typ == HID_DESC_TYPE_HID_REPORT) {
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if (curr_hid) {
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*len = curr_hid->hid_intf->desc_size;
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*data = (uint8_t *)curr_hid->hid_intf->report_desc;
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}
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return USBD_OK;
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}
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}
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return USBD_FAIL;
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}
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// Class Request - HID Get/Set
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switch (setup->bRequest) {
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case HID_REQUEST_GET_REPORT:
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{
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USB_LOG_DBG("HID Get_Report(report_id:%d,report_type:%d)\r\n", LO_BYTE(setup->wValue), HI_BYTE(setup->wValue));
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*data = (uint8_t *)&curr_hid->report;
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*len = 1;
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} break;
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case HID_REQUEST_GET_IDLE:
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{
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USB_LOG_DBG("HID Get_Idle(report_id:%d)\r\n", LO_BYTE(setup->wValue));
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*data = (uint8_t *)&curr_hid->idle_state;
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*len = 1;
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} break;
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case HID_REQUEST_GET_PROTOCOL:
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{
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USB_LOG_DBG("HID Get_Protocol\r\n");
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*data = (uint8_t *)&curr_hid->protocol;
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*len = 1;
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} break;
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case HID_REQUEST_SET_REPORT:
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{
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USB_LOG_DBG("HID Set_Report(report_id:%d,report_type:%d,report_len:%d,report_data:%02X)\r\n",
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LO_BYTE(setup->wValue), HI_BYTE(setup->wValue), *len, (*data)[0]);
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if (*len == 1) {
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curr_hid->report = (*data)[0];
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usbd_hid_leds((*data)[0]);
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}
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} break;
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case HID_REQUEST_SET_IDLE:
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{
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USB_LOG_DBG("HID Set_Idle(report_id:%d,duration:%d)\r\n", LO_BYTE(setup->wValue), HI_BYTE(setup->wIndex));
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curr_hid->idle_state = HI_BYTE(setup->wIndex);
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} break;
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case HID_REQUEST_SET_PROTOCOL:
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{
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USB_LOG_DBG("HID Set_Protocol(%d)\r\n", LO_BYTE(setup->wValue)); /*protocol*/
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curr_hid->protocol = LO_BYTE(setup->wValue);
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} break;
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default:
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{
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USB_LOG_WRN("Unhandled HID Class bRequest 0x%02x\r\n", setup->bRequest);
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return USBD_FAIL;
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}
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}
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return USBD_OK;
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}
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