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authorhathach <[email protected]>2018-03-09 14:29:23 +0700
committerhathach <[email protected]>2018-03-09 14:29:23 +0700
commiteaaebc2b88c9eed073b95fa6550ddf03aaf3e6b5 (patch)
tree1c3cc81eff7093e225261c9dd6d829ad18736770 /tinyusb/class/hid/hid_device.h
parentb608f8895a30b01441a2c43feaf00148b6b6f1e3 (diff)
rename coreid to port
Diffstat (limited to 'tinyusb/class/hid/hid_device.h')
-rw-r--r--tinyusb/class/hid/hid_device.h46
1 files changed, 23 insertions, 23 deletions
diff --git a/tinyusb/class/hid/hid_device.h b/tinyusb/class/hid/hid_device.h
index 5808dc214..088462c79 100644
--- a/tinyusb/class/hid/hid_device.h
+++ b/tinyusb/class/hid/hid_device.h
@@ -57,15 +57,15 @@
* @{ */
/** \brief Check if the interface is currently busy or not
- * \param[in] coreid USB Controller ID
+ * \param[in] port USB Controller ID
* \retval true if the interface is busy meaning the stack is still transferring/waiting data from/to host
* \retval false if the interface is not busy meaning the stack successfully transferred data from/to host
* \note This function is primarily used for polling/waiting result after \ref tusbd_hid_keyboard_send.
*/
-bool tud_hid_keyboard_busy(uint8_t coreid);
+bool tud_hid_keyboard_busy(uint8_t port);
/** \brief Submit USB transfer
- * \param[in] coreid USB Controller ID
+ * \param[in] port USB Controller ID
* \param[in,out] p_report address that is used to store data from device. Must be accessible by usb controller (see \ref TUSB_CFG_ATTR_USBRAM)
* \returns \ref tusb_error_t type to indicate success or error condition.
* \retval TUSB_ERROR_NONE on success
@@ -75,7 +75,7 @@ bool tud_hid_keyboard_busy(uint8_t coreid);
* \note This function is non-blocking and returns immediately. Data will be transferred when USB Host work with this interface.
* The result of usb transfer will be reported by the interface's callback function
*/
-tusb_error_t tud_hid_keyboard_send(uint8_t coreid, hid_keyboard_report_t const *p_report);
+tusb_error_t tud_hid_keyboard_send(uint8_t port, hid_keyboard_report_t const *p_report);
//--------------------------------------------------------------------+
// APPLICATION CALLBACK API
@@ -83,18 +83,18 @@ tusb_error_t tud_hid_keyboard_send(uint8_t coreid, hid_keyboard_report_t const *
/** \brief Callback function that is invoked when an transferring event occurred
* after invoking \ref tusbd_hid_keyboard_send
- * \param[in] coreid USB Controller ID
+ * \param[in] port USB Controller ID
* \param[in] event an value from \ref tusb_event_t
* \note event can be one of following
* - TUSB_EVENT_XFER_COMPLETE : previously scheduled transfer completes successfully.
* - TUSB_EVENT_XFER_ERROR : previously scheduled transfer encountered a transaction error.
* - TUSB_EVENT_XFER_STALLED : previously scheduled transfer is stalled by device.
*/
-void tud_hid_keyboard_cb(uint8_t coreid, tusb_event_t event, uint32_t xferred_bytes);
+void tud_hid_keyboard_cb(uint8_t port, tusb_event_t event, uint32_t xferred_bytes);
/** \brief Callback function that is invoked when USB host request \ref HID_REQUEST_CONTROL_GET_REPORT
* via control endpoint.
- * \param[in] coreid USB Controller ID
+ * \param[in] port USB Controller ID
* \param[in] report_type specify which report (INPUT, OUTPUT, FEATURE) that host requests
* \param[out] pp_report pointer to buffer that application need to update, value must be accessible by USB controller (see \ref TUSB_CFG_ATTR_USBRAM)
* \param[in] requested_length number of bytes that host requested
@@ -105,18 +105,18 @@ void tud_hid_keyboard_cb(uint8_t coreid, tusb_event_t event, uint32_t xferred_by
* the completion of this control request will not be reported to application.
* For Keyboard, USB host often uses this to turn on/off the LED for CAPLOCKS, NUMLOCK (\ref hid_keyboard_led_bm_t)
*/
-uint16_t tud_hid_keyboard_get_report_cb(uint8_t coreid, hid_request_report_type_t report_type, void** pp_report, uint16_t requested_length);
+uint16_t tud_hid_keyboard_get_report_cb(uint8_t port, hid_request_report_type_t report_type, void** pp_report, uint16_t requested_length);
/** \brief Callback function that is invoked when USB host request \ref HID_REQUEST_CONTROL_SET_REPORT
* via control endpoint.
- * \param[in] coreid USB Controller ID
+ * \param[in] port USB Controller ID
* \param[in] report_type specify which report (INPUT, OUTPUT, FEATURE) that host requests
* \param[in] p_report_data buffer containing the report's data
* \param[in] length number of bytes in the \a p_report_data
* \note By the time this callback is invoked, the USB control transfer is already completed in the hardware side.
* Application are free to handle data at its own will.
*/
-void tud_hid_keyboard_set_report_cb(uint8_t coreid, hid_request_report_type_t report_type, uint8_t p_report_data[], uint16_t length);
+void tud_hid_keyboard_set_report_cb(uint8_t port, hid_request_report_type_t report_type, uint8_t p_report_data[], uint16_t length);
/** @} */
/** @} */
@@ -130,15 +130,15 @@ void tud_hid_keyboard_set_report_cb(uint8_t coreid, hid_request_report_type_t re
* @{ */
/** \brief Check if the interface is currently busy or not
- * \param[in] coreid USB Controller ID
+ * \param[in] port USB Controller ID
* \retval true if the interface is busy meaning the stack is still transferring/waiting data from/to host
* \retval false if the interface is not busy meaning the stack successfully transferred data from/to host
* \note This function is primarily used for polling/waiting result after \ref tusbd_hid_mouse_send.
*/
-bool tud_hid_mouse_is_busy(uint8_t coreid);
+bool tud_hid_mouse_is_busy(uint8_t port);
/** \brief Perform transfer queuing
- * \param[in] coreid USB Controller ID
+ * \param[in] port USB Controller ID
* \param[in,out] p_report address that is used to store data from device. Must be accessible by usb controller (see \ref TUSB_CFG_ATTR_USBRAM)
* \returns \ref tusb_error_t type to indicate success or error condition.
* \retval TUSB_ERROR_NONE on success
@@ -148,7 +148,7 @@ bool tud_hid_mouse_is_busy(uint8_t coreid);
* \note This function is non-blocking and returns immediately. Data will be transferred when USB Host work with this interface.
* The result of usb transfer will be reported by the interface's callback function
*/
-tusb_error_t tud_hid_mouse_send(uint8_t coreid, hid_mouse_report_t const *p_report);
+tusb_error_t tud_hid_mouse_send(uint8_t port, hid_mouse_report_t const *p_report);
//--------------------------------------------------------------------+
// APPLICATION CALLBACK API
@@ -156,18 +156,18 @@ tusb_error_t tud_hid_mouse_send(uint8_t coreid, hid_mouse_report_t const *p_repo
/** \brief Callback function that is invoked when an transferring event occurred
* after invoking \ref tusbd_hid_mouse_send
- * \param[in] coreid USB Controller ID
+ * \param[in] port USB Controller ID
* \param[in] event an value from \ref tusb_event_t
* \note event can be one of following
* - TUSB_EVENT_XFER_COMPLETE : previously scheduled transfer completes successfully.
* - TUSB_EVENT_XFER_ERROR : previously scheduled transfer encountered a transaction error.
* - TUSB_EVENT_XFER_STALLED : previously scheduled transfer is stalled by device.
*/
-void tud_hid_mouse_cb(uint8_t coreid, tusb_event_t event, uint32_t xferred_bytes);
+void tud_hid_mouse_cb(uint8_t port, tusb_event_t event, uint32_t xferred_bytes);
/** \brief Callback function that is invoked when USB host request \ref HID_REQUEST_CONTROL_GET_REPORT
* via control endpoint.
- * \param[in] coreid USB Controller ID
+ * \param[in] port USB Controller ID
* \param[in] report_type specify which report (INPUT, OUTPUT, FEATURE) that host requests
* \param[out] pp_report pointer to buffer that application need to update, value must be accessible by USB controller (see \ref TUSB_CFG_ATTR_USBRAM)
* \param[in] requested_length number of bytes that host requested
@@ -177,18 +177,18 @@ void tud_hid_mouse_cb(uint8_t coreid, tusb_event_t event, uint32_t xferred_bytes
* \note After this callback, the request is silently executed by the tinyusb stack, thus
* the completion of this control request will not be reported to application
*/
-uint16_t tud_hid_mouse_get_report_cb(uint8_t coreid, hid_request_report_type_t report_type, void** pp_report, uint16_t requested_length);
+uint16_t tud_hid_mouse_get_report_cb(uint8_t port, hid_request_report_type_t report_type, void** pp_report, uint16_t requested_length);
/** \brief Callback function that is invoked when USB host request \ref HID_REQUEST_CONTROL_SET_REPORT
* via control endpoint.
- * \param[in] coreid USB Controller ID
+ * \param[in] port USB Controller ID
* \param[in] report_type specify which report (INPUT, OUTPUT, FEATURE) that host requests
* \param[in] p_report_data buffer containing the report's data
* \param[in] length number of bytes in the \a p_report_data
* \note By the time this callback is invoked, the USB control transfer is already completed in the hardware side.
* Application are free to handle data at its own will.
*/
-void tud_hid_mouse_set_report_cb(uint8_t coreid, hid_request_report_type_t report_type, uint8_t p_report_data[], uint16_t length);
+void tud_hid_mouse_set_report_cb(uint8_t port, hid_request_report_type_t report_type, uint8_t p_report_data[], uint16_t length);
/** @} */
/** @} */
@@ -201,10 +201,10 @@ void tud_hid_mouse_set_report_cb(uint8_t coreid, hid_request_report_type_t repor
#ifdef _TINY_USB_SOURCE_FILE_
void hidd_init(void);
-tusb_error_t hidd_open(uint8_t coreid, tusb_descriptor_interface_t const * p_interface_desc, uint16_t *p_length);
-tusb_error_t hidd_control_request_subtask(uint8_t coreid, tusb_control_request_t const * p_request);
+tusb_error_t hidd_open(uint8_t port, tusb_descriptor_interface_t const * p_interface_desc, uint16_t *p_length);
+tusb_error_t hidd_control_request_subtask(uint8_t port, tusb_control_request_t const * p_request);
tusb_error_t hidd_xfer_cb(endpoint_handle_t edpt_hdl, tusb_event_t event, uint32_t xferred_bytes);
-void hidd_close(uint8_t coreid);
+void hidd_close(uint8_t port);
#endif