/* * The MIT License (MIT) * * Copyright (c) 2019 Ha Thach (tinyusb.org) * * Permission is hereby granted, free of charge, to any person obtaining a copy * of this software and associated documentation files (the "Software"), to deal * in the Software without restriction, including without limitation the rights * to use, copy, modify, merge, publish, distribute, sublicense, and/or sell * copies of the Software, and to permit persons to whom the Software is * furnished to do so, subject to the following conditions: * * The above copyright notice and this permission notice shall be included in * all copies or substantial portions of the Software. * * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE * AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, * OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN * THE SOFTWARE. * * This file is part of the TinyUSB stack. */ #include "tusb_option.h" #if (TUSB_OPT_HOST_ENABLED && HOST_CLASS_HID) #include "common/tusb_common.h" #include "hid_host.h" //--------------------------------------------------------------------+ // MACRO CONSTANT TYPEDEF //--------------------------------------------------------------------+ typedef struct { uint8_t itf_num; uint8_t ep_in; uint8_t ep_out; bool valid; uint16_t report_size; }hidh_interface_t; //--------------------------------------------------------------------+ // HID Interface common functions //--------------------------------------------------------------------+ static inline bool hidh_interface_open(uint8_t rhport, uint8_t dev_addr, uint8_t interface_number, tusb_desc_endpoint_t const *desc_ep, hidh_interface_t *p_hid) { TU_ASSERT( usbh_edpt_open(rhport, dev_addr, desc_ep) ); p_hid->ep_in = desc_ep->bEndpointAddress; p_hid->report_size = desc_ep->wMaxPacketSize.size; // TODO get size from report descriptor p_hid->itf_num = interface_number; p_hid->valid = true; return true; } static inline void hidh_interface_close(hidh_interface_t *p_hid) { tu_memclr(p_hid, sizeof(hidh_interface_t)); } // called from public API need to validate parameters tusb_error_t hidh_interface_get_report(uint8_t dev_addr, void * report, hidh_interface_t *p_hid) { //------------- parameters validation -------------// // TODO change to use is configured function TU_ASSERT(TUSB_DEVICE_STATE_CONFIGURED == tuh_device_get_state(dev_addr), TUSB_ERROR_DEVICE_NOT_READY); TU_VERIFY(report, TUSB_ERROR_INVALID_PARA); TU_ASSERT(!hcd_edpt_busy(dev_addr, p_hid->ep_in), TUSB_ERROR_INTERFACE_IS_BUSY); TU_ASSERT( usbh_edpt_xfer(dev_addr, p_hid->ep_in, report, p_hid->report_size) ) ; return TUSB_ERROR_NONE; } //--------------------------------------------------------------------+ // KEYBOARD //--------------------------------------------------------------------+ #if CFG_TUH_HID_KEYBOARD static hidh_interface_t keyboardh_data[CFG_TUSB_HOST_DEVICE_MAX]; // does not have addr0, index = dev_address-1 //------------- KEYBOARD PUBLIC API (parameter validation required) -------------// bool tuh_hid_keyboard_is_mounted(uint8_t dev_addr) { return tuh_device_is_configured(dev_addr) && (keyboardh_data[dev_addr-1].ep_in != 0); } tusb_error_t tuh_hid_keyboard_get_report(uint8_t dev_addr, void* p_report) { return hidh_interface_get_report(dev_addr, p_report, &keyboardh_data[dev_addr-1]); } bool tuh_hid_keyboard_is_busy(uint8_t dev_addr) { return tuh_hid_keyboard_is_mounted(dev_addr) && hcd_edpt_busy(dev_addr, keyboardh_data[dev_addr-1].ep_in); } #endif //--------------------------------------------------------------------+ // MOUSE //--------------------------------------------------------------------+ #if CFG_TUH_HID_MOUSE static hidh_interface_t mouseh_data[CFG_TUSB_HOST_DEVICE_MAX]; // does not have addr0, index = dev_address-1 //------------- Public API -------------// bool tuh_hid_mouse_is_mounted(uint8_t dev_addr) { return tuh_device_is_configured(dev_addr) && (mouseh_data[dev_addr-1].ep_in != 0); } bool tuh_hid_mouse_is_busy(uint8_t dev_addr) { return tuh_hid_mouse_is_mounted(dev_addr) && hcd_edpt_busy(dev_addr, mouseh_data[dev_addr-1].ep_in); } tusb_error_t tuh_hid_mouse_get_report(uint8_t dev_addr, void * report) { return hidh_interface_get_report(dev_addr, report, &mouseh_data[dev_addr-1]); } #endif //--------------------------------------------------------------------+ // GENERIC //--------------------------------------------------------------------+ #if CFG_TUSB_HOST_HID_GENERIC //STATIC_ struct { // hidh_interface_info_t //} generic_data[CFG_TUSB_HOST_DEVICE_MAX]; #endif //--------------------------------------------------------------------+ // CLASS-USBH API (don't require to verify parameters) //--------------------------------------------------------------------+ void hidh_init(void) { #if CFG_TUH_HID_KEYBOARD tu_memclr(&keyboardh_data, sizeof(hidh_interface_t)*CFG_TUSB_HOST_DEVICE_MAX); #endif #if CFG_TUH_HID_MOUSE tu_memclr(&mouseh_data, sizeof(hidh_interface_t)*CFG_TUSB_HOST_DEVICE_MAX); #endif #if CFG_TUSB_HOST_HID_GENERIC hidh_generic_init(); #endif } #if 0 CFG_TUSB_MEM_SECTION uint8_t report_descriptor[256]; #endif bool hidh_open(uint8_t rhport, uint8_t dev_addr, tusb_desc_interface_t const *desc_itf, uint16_t *p_length) { TU_VERIFY(TUSB_CLASS_HID == desc_itf->bInterfaceClass); uint8_t const *p_desc = (uint8_t const *) desc_itf; //------------- HID descriptor -------------// p_desc = tu_desc_next(p_desc); tusb_hid_descriptor_hid_t const *desc_hid = (tusb_hid_descriptor_hid_t const *) p_desc; TU_ASSERT(HID_DESC_TYPE_HID == desc_hid->bDescriptorType, TUSB_ERROR_INVALID_PARA); //------------- Endpoint Descriptor -------------// p_desc = tu_desc_next(p_desc); tusb_desc_endpoint_t const * desc_ep = (tusb_desc_endpoint_t const *) p_desc; TU_ASSERT(TUSB_DESC_ENDPOINT == desc_ep->bDescriptorType, TUSB_ERROR_INVALID_PARA); if ( HID_SUBCLASS_BOOT == desc_itf->bInterfaceSubClass ) { #if CFG_TUH_HID_KEYBOARD if ( HID_PROTOCOL_KEYBOARD == desc_itf->bInterfaceProtocol) { TU_ASSERT( hidh_interface_open(rhport, dev_addr, desc_itf->bInterfaceNumber, desc_ep, &keyboardh_data[dev_addr-1]) ); TU_LOG2_HEX(keyboardh_data[dev_addr-1].ep_in); } else #endif #if CFG_TUH_HID_MOUSE if ( HID_PROTOCOL_MOUSE == desc_itf->bInterfaceProtocol) { TU_ASSERT ( hidh_interface_open(rhport, dev_addr, desc_itf->bInterfaceNumber, desc_ep, &mouseh_data[dev_addr-1]) ); TU_LOG2_HEX(mouseh_data[dev_addr-1].ep_in); } else #endif { // Not supported protocol return false; } }else { // Not supported subclass return false; } *p_length = sizeof(tusb_desc_interface_t) + sizeof(tusb_hid_descriptor_hid_t) + sizeof(tusb_desc_endpoint_t); return true; } bool hidh_set_config(uint8_t dev_addr, uint8_t itf_num) { #if 0 //------------- Get Report Descriptor TODO HID parser -------------// if ( p_desc_hid->bNumDescriptors ) { STASK_INVOKE( usbh_control_xfer_subtask( dev_addr, bm_request_type(TUSB_DIR_IN, TUSB_REQ_TYPE_STANDARD, TUSB_REQ_RCPT_INTERFACE), TUSB_REQ_GET_DESCRIPTOR, (p_desc_hid->bReportType << 8), 0, p_desc_hid->wReportLength, report_descriptor ), error ); (void) error; // if error in getting report descriptor --> treating like there is none } #endif #if 0 // SET IDLE = 0 request // Device can stall if not support this request tusb_control_request_t const request = { .bmRequestType_bit = { .recipient = TUSB_REQ_RCPT_INTERFACE, .type = TUSB_REQ_TYPE_CLASS, .direction = TUSB_DIR_OUT }, .bRequest = HID_REQ_CONTROL_SET_IDLE, .wValue = 0, // idle_rate = 0 .wIndex = p_interface_desc->bInterfaceNumber, .wLength = 0 }; // stall is a valid response for SET_IDLE, therefore we could ignore result of this request tuh_control_xfer(dev_addr, &request, NULL, NULL); #endif usbh_driver_set_config_complete(dev_addr, itf_num); #if CFG_TUH_HID_KEYBOARD if (( keyboardh_data[dev_addr-1].itf_num == itf_num) && keyboardh_data[dev_addr-1].valid) { tuh_hid_keyboard_mounted_cb(dev_addr); } #endif #if CFG_TUH_HID_MOUSE if (( mouseh_data[dev_addr-1].ep_in == itf_num ) && mouseh_data[dev_addr-1].valid) { tuh_hid_mouse_mounted_cb(dev_addr); } #endif return true; } bool hidh_xfer_cb(uint8_t dev_addr, uint8_t ep_addr, xfer_result_t event, uint32_t xferred_bytes) { (void) xferred_bytes; // TODO may need to use this para later #if CFG_TUH_HID_KEYBOARD if ( ep_addr == keyboardh_data[dev_addr-1].ep_in ) { tuh_hid_keyboard_isr(dev_addr, event); return true; } #endif #if CFG_TUH_HID_MOUSE if ( ep_addr == mouseh_data[dev_addr-1].ep_in ) { tuh_hid_mouse_isr(dev_addr, event); return true; } #endif #if CFG_TUSB_HOST_HID_GENERIC #endif return true; } void hidh_close(uint8_t dev_addr) { #if CFG_TUH_HID_KEYBOARD if ( keyboardh_data[dev_addr-1].ep_in != 0 ) { hidh_interface_close(&keyboardh_data[dev_addr-1]); tuh_hid_keyboard_unmounted_cb(dev_addr); } #endif #if CFG_TUH_HID_MOUSE if( mouseh_data[dev_addr-1].ep_in != 0 ) { hidh_interface_close(&mouseh_data[dev_addr-1]); tuh_hid_mouse_unmounted_cb( dev_addr ); } #endif #if CFG_TUSB_HOST_HID_GENERIC hidh_generic_close(dev_addr); #endif } #endif