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https://github.com/hathach/tinyusb.git
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add dcd control pipe stall protocol
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@ -100,10 +100,29 @@ void tusbd_hid_keyboard_isr(uint8_t coreid, tusb_event_t event);
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/** \defgroup Mouse_Device Device
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* @{ */
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/** \brief Check if the interface is currently busy or not
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* \param[in] coreid USB Controller ID
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* \retval true if the interface is busy meaning the stack is still transferring/waiting data from/to host
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* \retval false if the interface is not busy meaning the stack successfully transferred data from/to host
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* \note This function is primarily used for polling/waiting result after \ref tusbd_hid_mouse_send.
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*/
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bool tusbd_hid_mouse_is_busy(uint8_t coreid);
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/** \brief Perform transfer queuing
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* \param[in] coreid USB Controller ID
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* \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)
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* \returns \ref tusb_error_t type to indicate success or error condition.
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* \retval TUSB_ERROR_NONE on success
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* \retval TUSB_ERROR_INTERFACE_IS_BUSY if the interface is already transferring data with device
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* \retval TUSB_ERROR_DEVICE_NOT_READY if device is not yet configured (by SET CONFIGURED request)
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* \retval TUSB_ERROR_INVALID_PARA if input parameters are not correct
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* \note This function is non-blocking and returns immediately. Data will be transferred when USB Host work with this interface.
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* The result of usb transfer will be reported by the interface's callback function
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*/
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tusb_error_t tusbd_hid_mouse_send(uint8_t coreid, hid_mouse_report_t const *p_report);
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void tusbd_hid_mouse_isr(uint8_t coreid, tusb_event_t event);
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/** @} */
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/** @} */
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@ -83,13 +83,14 @@ void dcd_controller_set_configuration(uint8_t coreid, uint8_t config_num);
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//------------- PIPE API -------------//
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tusb_error_t dcd_pipe_control_xfer(uint8_t coreid, tusb_direction_t dir, void * buffer, uint16_t length);
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void dcd_pipe_control_stall(uint8_t coreid);
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//tusb_error_t dcd_pipe_control_write(uint8_t coreid, void const * buffer, uint16_t length);
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//tusb_error_t dcd_pipe_control_read(uint8_t coreid, void * buffer, uint16_t length);
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//void dcd_pipe_control_write_zero_length(uint8_t coreid);
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endpoint_handle_t dcd_pipe_open(uint8_t coreid, tusb_descriptor_endpoint_t const * p_endpoint_desc) ATTR_WARN_UNUSED_RESULT;
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tusb_error_t dcd_pipe_xfer(endpoint_handle_t pipe_hdl, uint8_t buffer[], uint16_t total_bytes, bool int_on_complete) ATTR_WARN_UNUSED_RESULT;
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tusb_error_t dcd_pipe_xfer(endpoint_handle_t pipe_hdl, uint8_t buffer[], uint16_t total_bytes, bool int_on_complete) ATTR_WARN_UNUSED_RESULT;
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#ifdef __cplusplus
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}
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@ -72,7 +72,7 @@ typedef struct {
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volatile uint32_t halted : 1 ;
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volatile uint32_t active : 1 ;
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uint32_t : 2 ;
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uint32_t mult_override : 2 ; ///< This field can be used for transmit ISOs to override the MULT field in the dQH. This field must be zero for all packet types that are not transmit-ISO.
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uint32_t iso_mult_override : 2 ; ///< This field can be used for transmit ISOs to override the MULT field in the dQH. This field must be zero for all packet types that are not transmit-ISO.
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uint32_t : 3 ;
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uint32_t int_on_complete : 1 ;
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volatile uint32_t total_bytes : 15 ;
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@ -94,7 +94,7 @@ typedef struct {
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uint32_t max_package_size : 11 ; ///< This directly corresponds to the maximum packet size of the associated endpoint (wMaxPacketSize)
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uint32_t : 2 ;
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uint32_t zero_length_termination : 1 ; ///< This bit is used for non-isochronous endpoints to indicate when a zero-length packet is received to terminate transfers in case the total transfer length is “multiple”. 0 - Enable zero-length packet to terminate transfers equal to a multiple of Max_packet_length (default). 1 - Disable zero-length packet on transfers that are equal in length to a multiple Max_packet_length.
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uint32_t mult : 2 ; ///<
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uint32_t iso_mult : 2 ; ///<
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uint32_t : 0 ;
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// Word 1: Current qTD Pointer
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@ -291,6 +291,11 @@ static void qtd_init(dcd_qtd_t* p_qtd, void * data_ptr, uint16_t total_bytes)
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}
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}
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void dcd_pipe_control_stall(uint8_t coreid)
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{
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LPC_USB0->ENDPTCTRL0 |= (ENDPTCTRL_MASK_STALL << 16); // stall Control IN
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}
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tusb_error_t dcd_pipe_control_xfer(uint8_t coreid, tusb_direction_t dir, void * buffer, uint16_t length)
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{
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uint8_t const endpoint_data = (dir == TUSB_DIR_DEV_TO_HOST) ? 1 : 0; // IN xfer --> data phase on Control IN, other Control OUT
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