431 lines
12 KiB
C
431 lines
12 KiB
C
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/*
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* Copyright 2012 Jared Boone
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*
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* This file is part of HackRF.
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*
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* This program is free software; you can redistribute it and/or modify
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* it under the terms of the GNU General Public License as published by
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* the Free Software Foundation; either version 2, or (at your option)
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* any later version.
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*
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* This program is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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* GNU General Public License for more details.
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*
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* You should have received a copy of the GNU General Public License
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* along with this program; see the file COPYING. If not, write to
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* the Free Software Foundation, Inc., 51 Franklin Street,
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* Boston, MA 02110-1301, USA.
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*/
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#include <stdint.h>
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#include <stddef.h>
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#include "usb_standard_request.h"
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#include "usb.h"
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#include "usb_type.h"
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#include "usb_queue.h"
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const uint8_t* usb_endpoint_descriptor(
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const usb_endpoint_t* const endpoint
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) {
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const usb_configuration_t* const configuration = endpoint->device->configuration;
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if( configuration ) {
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const uint8_t* descriptor = configuration->descriptor;
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while( descriptor[0] != 0 ) {
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if( descriptor[1] == USB_DESCRIPTOR_TYPE_ENDPOINT ) {
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if( descriptor[2] == endpoint->address ) {
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return descriptor;
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}
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}
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descriptor += descriptor[0];
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}
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}
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return 0;
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}
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uint_fast16_t usb_endpoint_descriptor_max_packet_size(
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const uint8_t* const endpoint_descriptor
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) {
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return (endpoint_descriptor[5] << 8) | endpoint_descriptor[4];
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}
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usb_transfer_type_t usb_endpoint_descriptor_transfer_type(
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const uint8_t* const endpoint_descriptor
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) {
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return (endpoint_descriptor[3] & 0x3);
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}
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void (*usb_configuration_changed_cb)(usb_device_t* const) = NULL;
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void usb_set_configuration_changed_cb(
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void (*callback)(usb_device_t* const)
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) {
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usb_configuration_changed_cb = callback;
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}
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bool usb_set_configuration(
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usb_device_t* const device,
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const uint_fast8_t configuration_number
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) {
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const usb_configuration_t* new_configuration = 0;
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if( configuration_number != 0 ) {
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// Locate requested configuration.
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if( device->configurations ) {
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usb_configuration_t** configurations = *(device->configurations);
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uint32_t i = 0;
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const usb_speed_t usb_speed_current = usb_speed(device);
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while( configurations[i] ) {
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if( (configurations[i]->speed == usb_speed_current) &&
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(configurations[i]->number == configuration_number) ) {
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new_configuration = configurations[i];
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break;
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}
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i++;
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}
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}
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// Requested configuration not found: request error.
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if( new_configuration == 0 ) {
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return false;
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}
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}
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if( new_configuration != device->configuration ) {
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// Configuration changed.
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device->configuration = new_configuration;
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}
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if (usb_configuration_changed_cb)
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usb_configuration_changed_cb(device);
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return true;
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}
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static usb_request_status_t usb_send_descriptor(
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usb_endpoint_t* const endpoint,
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const uint8_t* const descriptor_data
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) {
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const uint32_t setup_length = endpoint->setup.length;
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uint32_t descriptor_length = descriptor_data[0];
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if( descriptor_data[1] == USB_DESCRIPTOR_TYPE_CONFIGURATION ) {
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descriptor_length = (descriptor_data[3] << 8) | descriptor_data[2];
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}
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// We cast the const away but this shouldn't be a problem as this is a write transfer
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usb_transfer_schedule_block(
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endpoint->in,
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(uint8_t* const) descriptor_data,
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(setup_length > descriptor_length) ? descriptor_length : setup_length,
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NULL, NULL
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);
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usb_transfer_schedule_ack(endpoint->out);
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return USB_REQUEST_STATUS_OK;
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}
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static usb_request_status_t usb_send_descriptor_string(
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usb_endpoint_t* const endpoint
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) {
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if ((endpoint->setup.value_l == 0xee) &&
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(endpoint->device->wcid_string_descriptor != NULL)) { /* MS WCID string */
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return usb_send_descriptor(endpoint, endpoint->device->wcid_string_descriptor);
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} else {
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uint_fast8_t index = endpoint->setup.value_l;
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for( uint_fast8_t i=0; endpoint->device->descriptor_strings[i] != 0; i++ ) {
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if( i == index ) {
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return usb_send_descriptor(endpoint, endpoint->device->descriptor_strings[i]);
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}
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}
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}
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return USB_REQUEST_STATUS_STALL;
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}
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static usb_request_status_t usb_send_descriptor_config(
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usb_endpoint_t* const endpoint,
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usb_speed_t speed,
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const uint8_t config_num
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) {
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usb_configuration_t** config = *(endpoint->device->configurations);
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unsigned int i = 0;
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for( ; *config != NULL; config++ ) {
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if( (*config)->speed == speed) {
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if (i == config_num) {
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return usb_send_descriptor(endpoint, (*config)->descriptor);
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} else {
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i++;
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}
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}
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}
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return USB_REQUEST_STATUS_STALL;
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}
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static usb_request_status_t usb_standard_request_get_descriptor_setup(
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usb_endpoint_t* const endpoint
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) {
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switch( endpoint->setup.value_h ) {
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case USB_DESCRIPTOR_TYPE_DEVICE:
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return usb_send_descriptor(endpoint, endpoint->device->descriptor);
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case USB_DESCRIPTOR_TYPE_CONFIGURATION:
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// TODO: Duplicated code. Refactor.
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if( usb_speed(endpoint->device) == USB_SPEED_HIGH ) {
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return usb_send_descriptor_config(endpoint, USB_SPEED_HIGH, endpoint->setup.value_l);
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} else {
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return usb_send_descriptor_config(endpoint, USB_SPEED_FULL, endpoint->setup.value_l);
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}
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case USB_DESCRIPTOR_TYPE_DEVICE_QUALIFIER:
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return usb_send_descriptor(endpoint, endpoint->device->qualifier_descriptor);
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case USB_DESCRIPTOR_TYPE_OTHER_SPEED_CONFIGURATION:
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// TODO: Duplicated code. Refactor.
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if( usb_speed(endpoint->device) == USB_SPEED_HIGH ) {
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return usb_send_descriptor_config(endpoint, USB_SPEED_FULL, endpoint->setup.value_l);
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} else {
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return usb_send_descriptor_config(endpoint, USB_SPEED_HIGH, endpoint->setup.value_l);
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}
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case USB_DESCRIPTOR_TYPE_STRING:
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return usb_send_descriptor_string(endpoint);
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case USB_DESCRIPTOR_TYPE_INTERFACE:
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case USB_DESCRIPTOR_TYPE_ENDPOINT:
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default:
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return USB_REQUEST_STATUS_STALL;
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}
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}
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static usb_request_status_t usb_standard_request_get_descriptor(
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usb_endpoint_t* const endpoint,
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const usb_transfer_stage_t stage
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) {
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switch( stage ) {
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case USB_TRANSFER_STAGE_SETUP:
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return usb_standard_request_get_descriptor_setup(endpoint);
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case USB_TRANSFER_STAGE_DATA:
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case USB_TRANSFER_STAGE_STATUS:
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return USB_REQUEST_STATUS_OK;
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default:
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return USB_REQUEST_STATUS_STALL;
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}
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}
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usb_request_status_t usb_vendor_request_read_wcid(
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usb_endpoint_t* const endpoint,
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const usb_transfer_stage_t stage
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) {
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if( stage == USB_TRANSFER_STAGE_SETUP ) {
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if ((endpoint->setup.index == 0x04) &&
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(endpoint->device->wcid_feature_descriptor != NULL)) {
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usb_send_descriptor(endpoint, endpoint->device->wcid_feature_descriptor);
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return USB_REQUEST_STATUS_OK;
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}
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if ((endpoint->setup.index == 0x05) &&
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(endpoint->device->wcid_extended_properties_descriptor != NULL)) {
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usb_send_descriptor(endpoint, endpoint->device->wcid_extended_properties_descriptor);
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return USB_REQUEST_STATUS_OK;
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}
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return USB_REQUEST_STATUS_STALL;
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}
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return USB_REQUEST_STATUS_OK;
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}
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/*********************************************************************/
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static usb_request_status_t usb_standard_request_set_address_setup(
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usb_endpoint_t* const endpoint
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) {
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usb_set_address_deferred(endpoint->device, endpoint->setup.value_l);
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usb_transfer_schedule_ack(endpoint->in);
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return USB_REQUEST_STATUS_OK;
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}
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static usb_request_status_t usb_standard_request_set_address(
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usb_endpoint_t* const endpoint,
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const usb_transfer_stage_t stage
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) {
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switch( stage ) {
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case USB_TRANSFER_STAGE_SETUP:
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return usb_standard_request_set_address_setup(endpoint);
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case USB_TRANSFER_STAGE_DATA:
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case USB_TRANSFER_STAGE_STATUS:
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/* NOTE: Not necessary to set address here, as DEVICEADR.USBADRA bit
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* will cause controller to automatically perform set address
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* operation on IN ACK.
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*/
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return USB_REQUEST_STATUS_OK;
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default:
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return USB_REQUEST_STATUS_STALL;
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}
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}
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/*********************************************************************/
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static usb_request_status_t usb_standard_request_set_configuration_setup(
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usb_endpoint_t* const endpoint
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) {
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const uint8_t usb_configuration = endpoint->setup.value_l;
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if( usb_set_configuration(endpoint->device, usb_configuration) ) {
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usb_transfer_schedule_ack(endpoint->in);
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return USB_REQUEST_STATUS_OK;
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} else {
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return USB_REQUEST_STATUS_STALL;
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}
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}
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static usb_request_status_t usb_standard_request_set_configuration(
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usb_endpoint_t* const endpoint,
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const usb_transfer_stage_t stage
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) {
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switch( stage ) {
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case USB_TRANSFER_STAGE_SETUP:
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return usb_standard_request_set_configuration_setup(endpoint);
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case USB_TRANSFER_STAGE_DATA:
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case USB_TRANSFER_STAGE_STATUS:
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return USB_REQUEST_STATUS_OK;
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default:
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return USB_REQUEST_STATUS_STALL;
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}
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}
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/*********************************************************************/
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static usb_request_status_t usb_standard_request_get_configuration_setup(
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usb_endpoint_t* const endpoint
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) {
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if( endpoint->setup.length == 1 ) {
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endpoint->buffer[0] = 0;
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if( endpoint->device->configuration ) {
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endpoint->buffer[0] = endpoint->device->configuration->number;
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}
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usb_transfer_schedule_block(endpoint->in, &endpoint->buffer, 1, NULL, NULL);
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usb_transfer_schedule_ack(endpoint->out);
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return USB_REQUEST_STATUS_OK;
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} else {
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return USB_REQUEST_STATUS_STALL;
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}
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}
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static usb_request_status_t usb_standard_request_get_configuration(
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usb_endpoint_t* const endpoint,
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const usb_transfer_stage_t stage
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) {
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switch( stage ) {
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case USB_TRANSFER_STAGE_SETUP:
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return usb_standard_request_get_configuration_setup(endpoint);
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case USB_TRANSFER_STAGE_DATA:
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case USB_TRANSFER_STAGE_STATUS:
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return USB_REQUEST_STATUS_OK;
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default:
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return USB_REQUEST_STATUS_STALL;
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}
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}
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static usb_request_status_t usb_standard_request_get_status_setup(
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usb_endpoint_t* const endpoint
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) {
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if( endpoint->setup.length == 2 ) {
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endpoint->buffer[0] = 0;
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endpoint->buffer[1] = 0;
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usb_transfer_schedule_block(endpoint->in, &endpoint->buffer, 2, NULL, NULL);
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usb_transfer_schedule_ack(endpoint->out);
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return USB_REQUEST_STATUS_OK;
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} else {
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return USB_REQUEST_STATUS_STALL;
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}
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}
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static usb_request_status_t usb_standard_request_get_status(
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usb_endpoint_t* const endpoint,
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const usb_transfer_stage_t stage
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) {
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switch( stage ) {
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case USB_TRANSFER_STAGE_SETUP:
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return usb_standard_request_get_status_setup(endpoint);
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case USB_TRANSFER_STAGE_DATA:
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case USB_TRANSFER_STAGE_STATUS:
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return USB_REQUEST_STATUS_OK;
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default:
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return USB_REQUEST_STATUS_STALL;
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}
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}
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static usb_request_status_t usb_standard_request_clear_feature_setup(
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usb_endpoint_t* const endpoint)
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{
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switch (endpoint->setup.value) {
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case USB_FEATURE_SELECTOR_ENDPOINT_HALT:
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usb_endpoint_reset_data_toggle(
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usb_endpoint_from_address(endpoint->setup.index)
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);
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usb_transfer_schedule_ack(endpoint->in);
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return USB_REQUEST_STATUS_OK;
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default:
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return USB_REQUEST_STATUS_STALL;
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}
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}
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static usb_request_status_t usb_standard_request_clear_feature(
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usb_endpoint_t* const endpoint,
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const usb_transfer_stage_t stage)
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{
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switch (stage) {
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case USB_TRANSFER_STAGE_SETUP:
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return usb_standard_request_clear_feature_setup(endpoint);
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case USB_TRANSFER_STAGE_DATA:
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case USB_TRANSFER_STAGE_STATUS:
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return USB_REQUEST_STATUS_OK;
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default:
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return USB_REQUEST_STATUS_STALL;
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}
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}
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/*********************************************************************/
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usb_request_status_t usb_standard_request(
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usb_endpoint_t* const endpoint,
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const usb_transfer_stage_t stage
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) {
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switch( endpoint->setup.request ) {
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case USB_STANDARD_REQUEST_GET_STATUS:
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return usb_standard_request_get_status(endpoint, stage);
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case USB_STANDARD_REQUEST_GET_DESCRIPTOR:
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return usb_standard_request_get_descriptor(endpoint, stage);
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case USB_STANDARD_REQUEST_SET_ADDRESS:
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return usb_standard_request_set_address(endpoint, stage);
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case USB_STANDARD_REQUEST_SET_CONFIGURATION:
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return usb_standard_request_set_configuration(endpoint, stage);
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case USB_STANDARD_REQUEST_GET_CONFIGURATION:
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return usb_standard_request_get_configuration(endpoint, stage);
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case USB_STANDARD_REQUEST_CLEAR_FEATURE:
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return usb_standard_request_clear_feature(endpoint, stage);
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default:
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return USB_REQUEST_STATUS_STALL;
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}
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}
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