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add host midi example
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6
examples/peripherals/usb/host/midi/CMakeLists.txt
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6
examples/peripherals/usb/host/midi/CMakeLists.txt
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# The following lines of boilerplate have to be in your project's
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# CMakeLists in this exact order for cmake to work correctly
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cmake_minimum_required(VERSION 3.5)
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include($ENV{IDF_PATH}/tools/cmake/project.cmake)
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project(app-template)
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136
examples/peripherals/usb/host/midi/README.md
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136
examples/peripherals/usb/host/midi/README.md
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@ -0,0 +1,136 @@
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| Supported Targets | ESP32-S2 | ESP32-S3 |
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| ----------------- | -------- | -------- |
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# USB MIDI Class Example
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This example provides basic USB Host Midi functionality by implementing a midi class driver and a Host Library task. The example does the following:
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1. Install Host Library and register a client
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2. Waits for a device connection
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3. Prints the device's information (such as device/configuration/string descriptors)
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4. Claims Interface with more that zero endpoints from device
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5. Prints received bytes, if midi-device sent new data
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The example heavily follows the usb_host_lib example (https://github.com/espressif/esp-idf/tree/master/examples/peripherals/usb/host/usb_host_lib).
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## How to use example
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### Hardware Required
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- Development board with USB capable ESP SoC (ESP32-S2/ESP32-S3)
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- USB cable for Power supply and programming
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- USB OTG Cable
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- MIDI-device (e.g. KORG NANOKONTROL2)
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### Build and Flash
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Build the project and flash it to the board, then run monitor tool to view serial output:
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```
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idf.py -p PORT flash monitor
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```
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(Replace PORT with the name of the serial port to use.)
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(To exit the serial monitor, type ``Ctrl-]``.)
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See the Getting Started Guide for full steps to configure and use ESP-IDF to build projects.
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## Example Output
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```
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I (314) app_start: Starting scheduler on CPU0
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I (319) app_start: Starting scheduler on CPU1
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I (319) main_task: Started on CPU0
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I (329) main_task: Calling app_main()
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I (329) DAEMON: Installing USB Host Library
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I (369) MIDI DRIVER: Registering Client
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I (2109) MIDI DRIVER: Opening device at address 1
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I (2109) MIDI DRIVER: Getting device information
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I (2109) MIDI DRIVER: Full speed
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I (2109) MIDI DRIVER: bConfigurationValue 1
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I (2119) MIDI DRIVER: Getting device descriptor
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*** Device descriptor ***
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bLength 18
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bDescriptorType 1
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bcdUSB 1.10
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bDeviceClass 0x0
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bDeviceSubClass 0x0
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bDeviceProtocol 0x0
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bMaxPacketSize0 8
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idVendor 0xfc02
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idProduct 0x101
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bcdDevice 2.50
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iManufacturer 0
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iProduct 2
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iSerialNumber 0
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bNumConfigurations 1
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I (2139) MIDI DRIVER: Getting config descriptor
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*** Configuration descriptor ***
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bLength 9
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bDescriptorType 2
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wTotalLength 101
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bNumInterfaces 2
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bConfigurationValue 1
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iConfiguration 0
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bmAttributes 0x80
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bMaxPower 100mA
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*** Interface descriptor ***
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bLength 9
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bDescriptorType 4
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bInterfaceNumber 0
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bAlternateSetting 0
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bNumEndpoints 0
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bInterfaceClass 0x1
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bInterfaceSubClass 0x1
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bInterfaceProtocol 0x0
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iInterface 0
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*** Interface descriptor ***
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bLength 9
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bDescriptorType 4
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bInterfaceNumber 1
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bAlternateSetting 0
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bNumEndpoints 2
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bInterfaceClass 0x1
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bInterfaceSubClass 0x3
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bInterfaceProtocol 0x0
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iInterface 0
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*** Endpoint descriptor ***
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bLength 9
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bDescriptorType 5
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bEndpointAddress 0x81 EP 1 IN
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bmAttributes 0x2 BULK
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wMaxPacketSize 8
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bInterval 0
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*** Endpoint descriptor ***
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bLength 9
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bDescriptorType 5
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bEndpointAddress 0x2 EP 2 OUT
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bmAttributes 0x2 BULK
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wMaxPacketSize 8
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bInterval 0
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I (2229) MIDI DRIVER: Getting interface config
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Interface Number: 1, Alternate Setting: 0
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endpoint address: 129 , mps: 8
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I (2239) MIDI DRIVER: Getting Product string descriptor
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USB MIDI Interface
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I (2249) MIDI DRIVER: Claiming Interface
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I (2249) MIDI DRIVER: Configuring usb-transfer object
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set transfer parameters
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I (4429) MIDI DRIVER: Received new data:
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15 248 0 0
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I (4429) MIDI DRIVER: Received new data:
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8 140 0 0
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I (6159) MIDI DRIVER: Received new data:
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11 176 14 60
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I (6199) MIDI DRIVER: Received new data:
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11 176 32 15
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I (6229) MIDI DRIVER: Received new data:
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11 176 2 32
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```
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5
examples/peripherals/usb/host/midi/main/CMakeLists.txt
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5
examples/peripherals/usb/host/midi/main/CMakeLists.txt
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idf_component_register(
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SRCS "midi_host_example_main.c"
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INCLUDE_DIRS "."
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PRIV_REQUIRES usb
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)
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## IDF Component Manager Manifest File
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dependencies:
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espressif/usb_host_hid: "==1.0.1"
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## Required IDF version
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idf:
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version: ">=4.1.0"
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313
examples/peripherals/usb/host/midi/main/midi_class_driver.c
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313
examples/peripherals/usb/host/midi/main/midi_class_driver.c
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@ -0,0 +1,313 @@
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/*
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* SPDX-FileCopyrightText: 2021-2023 Espressif Systems (Shanghai) CO LTD
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*
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* SPDX-License-Identifier: Unlicense OR CC0-1.0
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*/
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#include <stdlib.h>
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#include <string.h>
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#include "freertos/FreeRTOS.h"
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#include "freertos/semphr.h"
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#include "esp_log.h"
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#include "usb/usb_host.h"
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#define ACTION_OPEN_DEV 0x01
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#define ACTION_GET_DEV_INFO 0x02
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#define ACTION_GET_DEV_DESC 0x04
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#define ACTION_GET_CONFIG_DESC 0x08
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#define ACTION_GET_STR_DESC 0x10
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#define ACTION_CLAIM_INTERFACE 0x20
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#define ACTION_START_READING_DATA 0x40
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#define ACTION_CLOSE_DEV 0x80
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#define ACTION_EXIT 0xA0
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#define USB_CLIENT_NUM_EVENT_MSG 5
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#define MIDI_MESSAGE_LENGTH 4
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typedef struct {
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uint8_t interface_nmbr;
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uint8_t alternate_setting;
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uint8_t endpoint_address;
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uint8_t max_packet_size;
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} interface_config_t;
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typedef struct {
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usb_host_client_handle_t client_hdl;
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uint8_t dev_addr;
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usb_device_handle_t dev_hdl;
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uint32_t actions;
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interface_config_t interface_conf;
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} class_driver_t;
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static const char *DRIVER_TAG = "MIDI DRIVER";
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static void midi_usb_host_callback(usb_transfer_t *transfer) {
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int size = (int)transfer->actual_num_bytes;
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//one message contains 4 bytes of data
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int num_messages = size/MIDI_MESSAGE_LENGTH;
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int offset = 0;
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//print messages
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if(num_messages) {
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ESP_LOGI(DRIVER_TAG, "Received new data: \n");
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//print each message separately
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for(int i = 0; i < num_messages; i++) {
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for (int j = 0; j < MIDI_MESSAGE_LENGTH; j++) {
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printf("%d ", transfer->data_buffer[j+offset]);
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}
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printf("\n");
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offset += MIDI_MESSAGE_LENGTH;
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}
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}
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//submit new usb-message to continuously receive data
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ESP_ERROR_CHECK(usb_host_transfer_submit(transfer));
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}
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static void get_midi_interface_settings(const usb_config_desc_t *usb_conf, interface_config_t *interface_conf) {
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assert(usb_conf != NULL);
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assert(interface_conf != NULL);
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ESP_LOGI(DRIVER_TAG, "Getting interface config");
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int offset = 0;
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uint16_t wTotalLength = usb_conf->wTotalLength;
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const usb_standard_desc_t *next_desc = (const usb_standard_desc_t *)usb_conf;
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do {
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if(next_desc->bDescriptorType == USB_B_DESCRIPTOR_TYPE_INTERFACE) {
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usb_intf_desc_t *interface_desc = (usb_intf_desc_t *)next_desc;
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//check if there are >0 endpoints
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if(interface_desc->bNumEndpoints > 0) {
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//use interface
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interface_conf->interface_nmbr = interface_desc->bInterfaceNumber;
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interface_conf->alternate_setting = interface_desc->bAlternateSetting;
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printf("Interface Number: %d, Alternate Setting: %d \n", interface_conf->interface_nmbr, interface_conf->alternate_setting);
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}
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}
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if(next_desc->bDescriptorType == USB_B_DESCRIPTOR_TYPE_ENDPOINT) {
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usb_ep_desc_t *ep_desc = (usb_ep_desc_t *)next_desc;
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if(USB_EP_DESC_GET_EP_DIR(ep_desc)) {
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//endpoint is IN
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interface_conf->endpoint_address = ep_desc->bEndpointAddress;
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interface_conf->max_packet_size = ep_desc->wMaxPacketSize;
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printf("endpoint address: %d , mps: %d\n", interface_conf->endpoint_address, interface_conf->max_packet_size);
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}
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}
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next_desc = usb_parse_next_descriptor(next_desc, wTotalLength, &offset);
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} while (next_desc != NULL);
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}
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static void client_event_cb(const usb_host_client_event_msg_t *event_msg, void *arg)
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{
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class_driver_t *driver_obj = (class_driver_t *)arg;
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switch (event_msg->event) {
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case USB_HOST_CLIENT_EVENT_NEW_DEV:
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if (driver_obj->dev_addr == 0) {
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driver_obj->dev_addr = event_msg->new_dev.address;
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//Open the device next
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driver_obj->actions |= ACTION_OPEN_DEV;
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}
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break;
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case USB_HOST_CLIENT_EVENT_DEV_GONE:
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if (driver_obj->dev_hdl != NULL) {
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//Cancel any other actions and close the device next
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driver_obj->actions = ACTION_CLOSE_DEV;
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}
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break;
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default:
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//Should never occur
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abort();
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}
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}
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static void action_open_dev(class_driver_t *driver_obj)
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{
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assert(driver_obj->dev_addr != 0);
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ESP_LOGI(DRIVER_TAG, "Opening device at address %d", driver_obj->dev_addr);
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ESP_ERROR_CHECK(usb_host_device_open(driver_obj->client_hdl, driver_obj->dev_addr, &driver_obj->dev_hdl));
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//Get the device's information next
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driver_obj->actions &= ~ACTION_OPEN_DEV;
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driver_obj->actions |= ACTION_GET_DEV_INFO;
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}
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static void action_get_info(class_driver_t *driver_obj)
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{
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assert(driver_obj->dev_hdl != NULL);
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ESP_LOGI(DRIVER_TAG, "Getting device information");
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usb_device_info_t dev_info;
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ESP_ERROR_CHECK(usb_host_device_info(driver_obj->dev_hdl, &dev_info));
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ESP_LOGI(DRIVER_TAG, "\t%s speed", (dev_info.speed == USB_SPEED_LOW) ? "Low" : "Full");
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ESP_LOGI(DRIVER_TAG, "\tbConfigurationValue %d", dev_info.bConfigurationValue);
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//Todo: Print string descriptors
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//Get the device descriptor next
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driver_obj->actions &= ~ACTION_GET_DEV_INFO;
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driver_obj->actions |= ACTION_GET_DEV_DESC;
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}
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static void action_get_dev_desc(class_driver_t *driver_obj)
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{
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assert(driver_obj->dev_hdl != NULL);
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ESP_LOGI(DRIVER_TAG, "Getting device descriptor");
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const usb_device_desc_t *dev_desc;
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ESP_ERROR_CHECK(usb_host_get_device_descriptor(driver_obj->dev_hdl, &dev_desc));
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usb_print_device_descriptor(dev_desc);
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//Get the device's config descriptor next
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driver_obj->actions &= ~ACTION_GET_DEV_DESC;
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driver_obj->actions |= ACTION_GET_CONFIG_DESC;
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}
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static void action_get_config_desc(class_driver_t *driver_obj)
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{
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assert(driver_obj->dev_hdl != NULL);
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ESP_LOGI(DRIVER_TAG, "Getting config descriptor");
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const usb_config_desc_t *config_desc;
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ESP_ERROR_CHECK(usb_host_get_active_config_descriptor(driver_obj->dev_hdl, &config_desc));
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usb_print_config_descriptor(config_desc, NULL);
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//save interface number & alternative setting for later use
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interface_config_t interface_config = {0};
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ESP_ERROR_CHECK(usb_host_get_active_config_descriptor(driver_obj->dev_hdl, &config_desc));
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get_midi_interface_settings(config_desc, &interface_config);
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driver_obj->interface_conf = interface_config;
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//Get the device's string descriptors next
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driver_obj->actions &= ~ACTION_GET_CONFIG_DESC;
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driver_obj->actions |= ACTION_GET_STR_DESC;
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}
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static void action_get_str_desc(class_driver_t *driver_obj)
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{
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assert(driver_obj->dev_hdl != NULL);
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usb_device_info_t dev_info;
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ESP_ERROR_CHECK(usb_host_device_info(driver_obj->dev_hdl, &dev_info));
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if (dev_info.str_desc_manufacturer) {
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ESP_LOGI(DRIVER_TAG, "Getting Manufacturer string descriptor");
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usb_print_string_descriptor(dev_info.str_desc_manufacturer);
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}
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if (dev_info.str_desc_product) {
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ESP_LOGI(DRIVER_TAG, "Getting Product string descriptor");
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usb_print_string_descriptor(dev_info.str_desc_product);
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}
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if (dev_info.str_desc_serial_num) {
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ESP_LOGI(DRIVER_TAG, "Getting Serial Number string descriptor");
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usb_print_string_descriptor(dev_info.str_desc_serial_num);
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}
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//Claim interface next
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driver_obj->actions &= ~ACTION_GET_STR_DESC;
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driver_obj->actions |= ACTION_CLAIM_INTERFACE;
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}
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static void action_claim_interface(class_driver_t *driver_obj) {
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assert(driver_obj->dev_hdl != NULL);
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ESP_LOGI(DRIVER_TAG, "Claiming Interface");
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ESP_ERROR_CHECK(usb_host_interface_claim(
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driver_obj->client_hdl,
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driver_obj->dev_hdl,
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driver_obj->interface_conf.interface_nmbr,
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driver_obj->interface_conf.alternate_setting));
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driver_obj->actions &= ~ACTION_CLAIM_INTERFACE;
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driver_obj->actions |= ACTION_START_READING_DATA;
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}
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static void action_start_reading_data(class_driver_t *driver_obj) {
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assert(driver_obj->dev_hdl != NULL);
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ESP_LOGI(DRIVER_TAG, "Configuring usb-transfer object");
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//configure usb-transfer object
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usb_transfer_t *transfer_obj;
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usb_host_transfer_alloc(1024, 0, &transfer_obj);
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transfer_obj->num_bytes = driver_obj->interface_conf.max_packet_size;
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transfer_obj->callback = midi_usb_host_callback;
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transfer_obj->bEndpointAddress = driver_obj->interface_conf.endpoint_address;
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transfer_obj->device_handle = driver_obj->dev_hdl;
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printf("set transfer parameters\n");
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ESP_ERROR_CHECK(usb_host_transfer_submit(transfer_obj));
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//Nothing to do until the device disconnects
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driver_obj->actions &= ~ACTION_START_READING_DATA;
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}
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static void aciton_close_dev(class_driver_t *driver_obj)
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{
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ESP_LOGI(DRIVER_TAG, "Releasing interface");
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ESP_ERROR_CHECK(usb_host_interface_release(
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driver_obj->client_hdl,
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driver_obj->dev_hdl,
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driver_obj->interface_conf.interface_nmbr));
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ESP_LOGI(DRIVER_TAG, "Closing device");
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ESP_ERROR_CHECK(usb_host_device_close(driver_obj->client_hdl, driver_obj->dev_hdl));
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driver_obj->dev_hdl = NULL;
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driver_obj->dev_addr = 0;
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//We need to exit the event handler loop
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driver_obj->actions &= ~ACTION_CLOSE_DEV;
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driver_obj->actions |= ACTION_EXIT;
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}
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void class_driver_task(void *arg)
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{
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SemaphoreHandle_t signaling_sem = (SemaphoreHandle_t)arg;
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class_driver_t driver_obj = {0};
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//Wait until daemon task has installed USB Host Library
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xSemaphoreTake(signaling_sem, portMAX_DELAY);
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ESP_LOGI(DRIVER_TAG, "Registering Client");
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usb_host_client_config_t client_config = {
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.is_synchronous = false, //Synchronous clients currently not supported. Set this to false
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.max_num_event_msg = USB_CLIENT_NUM_EVENT_MSG,
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.async = {
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.client_event_callback = client_event_cb,
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.callback_arg = (void *) &driver_obj,
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},
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};
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ESP_ERROR_CHECK(usb_host_client_register(&client_config, &driver_obj.client_hdl));
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//classic state machine
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while (1) {
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if (driver_obj.actions == 0) {
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usb_host_client_handle_events(driver_obj.client_hdl, portMAX_DELAY);
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} else {
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if (driver_obj.actions & ACTION_OPEN_DEV) {
|
||||
action_open_dev(&driver_obj);
|
||||
}
|
||||
if (driver_obj.actions & ACTION_GET_DEV_INFO) {
|
||||
action_get_info(&driver_obj);
|
||||
}
|
||||
if (driver_obj.actions & ACTION_GET_DEV_DESC) {
|
||||
action_get_dev_desc(&driver_obj);
|
||||
}
|
||||
if (driver_obj.actions & ACTION_GET_CONFIG_DESC) {
|
||||
action_get_config_desc(&driver_obj);
|
||||
}
|
||||
if (driver_obj.actions & ACTION_GET_STR_DESC) {
|
||||
action_get_str_desc(&driver_obj);
|
||||
}
|
||||
if(driver_obj.actions & ACTION_CLAIM_INTERFACE) {
|
||||
action_claim_interface(&driver_obj);
|
||||
}
|
||||
if(driver_obj.actions & ACTION_START_READING_DATA) {
|
||||
action_start_reading_data(&driver_obj);
|
||||
}
|
||||
if (driver_obj.actions & ACTION_CLOSE_DEV) {
|
||||
aciton_close_dev(&driver_obj);
|
||||
}
|
||||
if (driver_obj.actions & ACTION_EXIT) {
|
||||
driver_obj.actions = 0;
|
||||
}
|
||||
}
|
||||
}
|
||||
}
|
||||
|
@ -0,0 +1,74 @@
|
||||
/*
|
||||
* SPDX-FileCopyrightText: 2021-2023 Espressif Systems (Shanghai) CO LTD
|
||||
*
|
||||
* SPDX-License-Identifier: Unlicense OR CC0-1.0
|
||||
*/
|
||||
|
||||
#include <stdio.h>
|
||||
#include <stdbool.h>
|
||||
#include <unistd.h>
|
||||
#include "freertos/FreeRTOS.h"
|
||||
#include "freertos/task.h"
|
||||
#include "freertos/semphr.h"
|
||||
#include "esp_log.h"
|
||||
#include "esp_intr_alloc.h"
|
||||
|
||||
#include "midi_class_driver.c"
|
||||
|
||||
static const char *TAG = "DAEMON";
|
||||
|
||||
#define DAEMON_TASK_PRIORITY 2
|
||||
#define CLASS_TASK_PRIORITY 3
|
||||
|
||||
static void host_lib_daemon_task(void *arg)
|
||||
{
|
||||
SemaphoreHandle_t signaling_sem = (SemaphoreHandle_t)arg;
|
||||
|
||||
ESP_LOGI(TAG, "Installing USB Host Library");
|
||||
usb_host_config_t host_config = {
|
||||
.skip_phy_setup = false,
|
||||
.intr_flags = ESP_INTR_FLAG_LEVEL1,
|
||||
};
|
||||
ESP_ERROR_CHECK(usb_host_install(&host_config));
|
||||
|
||||
//Signal to the class driver task that the host library is installed
|
||||
xSemaphoreGive(signaling_sem);
|
||||
vTaskDelay(10); //Short delay to let client task spin up
|
||||
|
||||
while (1) {
|
||||
uint32_t event_flags;
|
||||
ESP_ERROR_CHECK(usb_host_lib_handle_events(portMAX_DELAY, &event_flags));
|
||||
if (event_flags & USB_HOST_LIB_EVENT_FLAGS_NO_CLIENTS) {
|
||||
ESP_LOGI(TAG, "no clients available");
|
||||
}
|
||||
if (event_flags & USB_HOST_LIB_EVENT_FLAGS_ALL_FREE) {
|
||||
ESP_LOGI(TAG, "no devices connected");
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
void app_main(void)
|
||||
{
|
||||
SemaphoreHandle_t signaling_sem = xSemaphoreCreateBinary();
|
||||
|
||||
TaskHandle_t daemon_task_hdl;
|
||||
TaskHandle_t class_driver_task_hdl;
|
||||
//Create daemon task
|
||||
xTaskCreatePinnedToCore(host_lib_daemon_task,
|
||||
"daemon",
|
||||
4096,
|
||||
(void *)signaling_sem,
|
||||
DAEMON_TASK_PRIORITY,
|
||||
&daemon_task_hdl,
|
||||
0);
|
||||
//Create the class driver task
|
||||
xTaskCreatePinnedToCore(class_driver_task,
|
||||
"class",
|
||||
4096,
|
||||
(void *)signaling_sem,
|
||||
CLASS_TASK_PRIORITY,
|
||||
&class_driver_task_hdl,
|
||||
0);
|
||||
|
||||
vTaskDelay(10); //Add a short delay to let the tasks run
|
||||
}
|
Loading…
Reference in New Issue
Block a user