arduino-esp32/cores/esp32/esp32-hal-tinyusb.c
Me No Dev 6f7a1ca76a
ESP-IDF v5.1 (#7733)
* Initial changes to compile under ESP-IDF v5.1

* Initial import for ESP-IDF v5.1 libs

* Update toolchain

* Update esp32-hal-psram.c

* Add missing LDs

* Update platform.txt

* Stop some CI jobs, because they will always fail

* Fix examples

* Update app_httpd.cpp

* Update ResetReason.ino

* Warnings fixes

* Added the example guideline and template (#7665)

* Added the example guideline and template

* PR review changes with some typos and grammar fixes

* Changes according to the PR review

* Added ESP32-S3 link to the datasheet (#7738)

* Update HiFreq_ADC.ino

* Replace periph_ctrl.h use because of deprecation

* Replace esp_spi_flash.h use because of deprecation

* Add includes to male mDNS::enableWorkstation compile

* Fix ssl_client mbedtls_pk_parse_key callback

* Update temperature sensor driver

* Allow sketch_utils to compile with arduino-cli

* Run CI with arduino-cli

* Fix arduino-cli CI build on Windows

* Refactor platform.txt to not use components installed through the board manager when running from git

* Initial Peripheral Manager Implementation

* Update SigmaDelta driver to use the new ESP-IDF driver API

* Small improvements to peripheral manager and SigmaDelta

* Remove deleted function from SigmaDelta header

* Update DAC driver to use the new ESP-IDF driver API

* Adds softAp(String) to make it compatible with ESP8266 (#7801)

* Fix commentary (#7800)

Minor fix based on observation done in https://github.com/espressif/arduino-esp32/issues/7795#issuecomment-1416868611

* add adafruit new board feather esp32s2 reserve tft (#7794)

* bugfix: add <stdint.h> for uint8_t to avoid compilation failure (GCC 11.2.0) (#7744)

* Adding 3rd party boards for VALTRACK-V4-VTS-ESP32-C3 & VALTRACK-V4-MFW-ESP32-C3 (#7735)

* Added VALTRACK-V4-VTS-ESP32-C3 board definition

Created pins_arduino.h & made changes to boards.txt with necessary changes

* Modified the URL

* Renamed json

* renamed all auRL

* Adding VALTRACK-V4 series board definitions

Added VALTRACK-V4-VTS-ESP32C3 & VALTRACK-V4-MFW-ESP32-C3 board variants

* Adding VALTRACK-V4 series board definitions

Added VALTRACK-V4-VTS-ESP32C3 & VALTRACK-V4-MFW-ESP32-C3 board variants

* Reverted package_esp32_index.template.json

restored package_esp32_index.template.json from edits

* Reverted package_esp32_index.template.json

Added new line to package_esp32_index.template.json

* Update Platformio CI (#7725)

* WiFiClient example fix (#7711)

* Modified WiFiClient example to use thingspeak instead of non-functionig sparkfun

* Moved instructions to README

* Fixed spelling

* Added link to S3 datasheet

---------

Co-authored-by: Jan Procházka <90197375+P-R-O-C-H-Y@users.noreply.github.com>

* Mirror update from Heltec repository (#7709)

Heltec updated the I2C pins in b10f4bf85d

* Fixes BLE data printing (#7699)

* Fixes BLE data printing

BLE data has no '\0' terminator, therefore it can't be printed as a regular C string.
This fix just prints the BLE data based on its length.

* Simplify printing to a single call

* split menu options + lora_32_V3 fix (#7697)

* Change header gaurd name (#7696)

* Fix Name (#7691)

Wrong name in definitions.

* Fix error in WiFiClient.cpp where the connect function fails for timeouts below 1 second (#7686)

* Update WiFiClient.cpp

This change will allow specifying connect timeouts below 1 second. Without this change, if connect timeouts under 1 second are given, the connect defaults to 0ms and fails. 
This will also allow timeouts in fractions of seconds, e.g. 1500ms. Without this change, connect timeouts are truncated to full second increments.

* Make parameter timeout_ms clear

* Change connection timeout_ms name for clarity

---------

Co-authored-by: Rodrigo Garcia <rodrigo.garcia@espressif.com>

* fixed the function header (#7674)

* fixed the function header

* fixed function name and paramaters

---------

Co-authored-by: Jan Procházka <90197375+P-R-O-C-H-Y@users.noreply.github.com>

* Ticker fix solving #6155 (#7664)

* Wrapped Ticker functions with #pragma disabling -Wcast-function-type

* Revert "Wrapped Ticker functions with #pragma disabling -Wcast-function-type"

This reverts commit 160be7e67a10d01b6e44c4bf2521c0ccd6348976.

* Fixed Ticker example

* Modified Ticker example

* Fixed LED_BUILTIN err for ESP32

---------

Co-authored-by: Jan Procházka <90197375+P-R-O-C-H-Y@users.noreply.github.com>

* setPins fix ESP32 "specified pins are not supported by this chip." (#7646)

[ESP32: SDMMCFS::begin hardcodes the usage of slot 1, only check if the pins match slot 1 pins.]

setPins() was testing pins D1, D2 and D3 all against D1 ... fine in 1 pin mode when all are -1 not so much if you're trying to get 4 pin mode working.
I now see this function doesn't really do anything on the ESP32...accept now correctly checks that you are trying to use the slot 1 pins.

Co-authored-by: Jan Procházka <90197375+P-R-O-C-H-Y@users.noreply.github.com>

* Allow passing IP as connect method parameter in WiFiClientSecure and skip unnecessary host-ip conversions (#7643)

* Add LED_BUILTIN* definitions and initialization for LEDs to stop them floating. (#7636)

Co-authored-by: Rodrigo Garcia <rodrigo.garcia@espressif.com>

* Expand path to tinuf2 image when checking existence in platformio-build.py (#7631)

* Expand path to tinuf2 image when checking existence

* More isFiles fixed

* Remove (useless) trailing semicolon from Print.cpp (#7622)

* ADD: New variant Edgebox-ESP-100 (#7771)

* ADD: New variant Edgebox-ESP-100

* FIX: Edgebox-ESP-100 Board.txt usb mode option change back to default value as ESP32S3

* Add Crabik Slot ESP32-S3 board (#7790)

* Added Crabik Slot ESP32-S3

* Adding CPU frequency settings and removing excess from partition scheme settings

* new variant LilyGO T-Display-S3 (#7763)

* new variant LilyGO T-Display-S3

https://github.com/Xinyuan-LilyGO/T-Display-S3

* Add boards.txt definition

---------

Co-authored-by: Me No Dev <me-no-dev@users.noreply.github.com>

* Update get.py to support Apple ARM64

* Update package_esp32_index.template.json

* WString Return bool (#7774)

* Add Roboheart Hercules development board to the esp32-core (#7672)

* added Roboheart Hercules pin definitions and board.txt entries

* added package_roboheat.json for prototyping

* Roboheart Hercules pins

* Updated the pins

* Delete package_roboheart.json

* Requested changes

---------

Co-authored-by: renebohne <rene.bohne@gmail.com>

* Reword "ESP-IDF as Component" (#7812)

I think "Arduino as an ESP-IDF component" or just "As ESP-IDF component" instead of  "ESP-IDF as Component" is more correct way to name the link.

1. "ESP-IDF as Component" would imply that ESP-IDF is some sort of library for Arduino, which is (IMO) misleading, because it's true the other way around.
2. It's written as "Arduino as an ESP-IDF component" on the webpage it points to as well.

- Also I removed the capitalization from "Component" as I have not found a reason why is it capitalized.

* add new board Adafruit Feather ESP32-S3 Reverse TFT (#7811)

* Multi threading examples (tasks, queues, semaphores, mutexes) (#7660)

* Moved and renamed example ESP32/FreeRTOS to MultiThreading/BasicMultiThreading

* Added dummy files

* Modified original example

* Fixed BasicMultiThreading.ino

* Added Example demonstrating use of queues

* Extended info in BasicMultiThreading

* Renamed Queues to singular Queue

* Added Mutex example

* Added Semaphore example

* Moved info from example to README

* Moved doc from Mutex to README

* Added Queue README

* Removed unecesary text

* Fixed grammar

* Increased stack size for Sempahore example

* Added headers into .ino files

* Added word Example at the end of title in README

* removed unused line

* Added forgotten README

* Modified BasicMultiThreading example

* Added missing S3 entry in README

* moved location

* Update ESP-IDF libs

* Update CMakeLists.txt

* Update esptool to v4.4

* Add function timerAttachInterruptFlag (#7809)

* Update esptool to v4.5

* ADC refactoring (#7827)

* Adc refactored + periman implementation

Peripheral manager still needs to be checked if the implementation is right.

* switched to working solution for milivolts read

* Periman detachbus fix

* coding style

* fix CI warnings

* fix FreeRTOS example

* Update ETH.cpp

* Update FunctionalInterruptStruct.ino

* Update package_esp32_index.template.json

* Update package_esp32_index.template.json

* Fixes for the latest IDF v5.1

* update esp-idf libs and toolchain

* Turn OFF auto crystal frequency for ESP32 (needed by TWAI)

* Update examples

* Switch build to mostly use flags from files

Includes can not be done this way

* Reorganize flag files

* Optimize chip build flags further

* Revert defines from file. MBEDTLS_CONFIG_FILE does not properly expand

* Add support for includes and defines from file

* Replace old sdk path references in platform.txt

* use gcc-ar (#8013)

* Makes F_CPU generic for all SoC (#8007)

Based on CONFIG_ESP_DEFAULT_CPU_FREQ_MHZ that is correctly defined in the sdkconfig file for each SoC.

* TIMER refactoring (#7904)

* refactor using GPtimer

* Updated timer HW test

* fix examples

* Add v2.0.7 in issue template (#7871)

* refactor using GPtimer

* Updated timer HW test

* fix examples

* Revert "Add v2.0.7 in issue template (#7871)"

This reverts commit fcc3b17d62ff57861f8913ca1f142fd5163b7457.

* Update upload-artifact to v3 in HW CI

* Revert "Update upload-artifact to v3 in HW CI"

This reverts commit 1ba228071718ba37c4e26d98db22f77b2a7364a6.

* replace resolution with frequency

* remove count_down option

* countup removed from examples + header

* Refactored timer object

* code cleanup + examples and tests fixes

* TimerAlarm fix

---------

Co-authored-by: Vojtěch Bartoška <76958047+VojtechBartoska@users.noreply.github.com>

* [Docs] ADC and Timer API Update (+some docs fixes) (#7906)

* updated docs

* remove hall sensor docs

Removed Hall sensor documentation as its no longer supported in IDF-5

* Fixed ESPNow examples location in docs

* Last timer refactored API + gpio small fix

* AlarmWrite fix

* Fixes APLL/PLL with RTC Frequency (#8025)

log_d() was displaying APLL for any SoC, but S3 and C3 has not such option, causing compilation errors.

* Update IDF libs and fix OPI PSRAM on S3

* Add setMode function HardwareSerial.c to set the esp32 uart mode for use with RS485 auto RTS (#7935)

* Added setMode function to set the esp32 uart mode

Used to set the esp32 uart mode for use with RS485 Half Duplex and the auto RTS pin mode. This will set/clear the RTS pin output to control the RE/DE pin on most RS485 chips.

* Add Success (bool) return in some functions

* Add Success (bool) return code to some functions

* Add Success (bool) return to some functions

* Add Success (bool) return to some functions

* Fix uartSetRxTimeout return type

---------

Co-authored-by: Rodrigo Garcia <rodrigo.garcia@espressif.com>

* Add support for esp-elf-gdb

* WFG Crashfix (#8044)

* Update component libs

* IDF release/v5.1 (#8061)

* IDF release/v5.1 bb9200acec

* Update Esp.cpp

* IDF release/v5.1 420ebd208a

* Update esp32-hal-psram.c

* Switch SDK to be an external package

* fix path (#8096)

* Makes UART work at any APB Frequency (#8097)

Fixes HardwareSerial to work with IDF 5.1 on any CPU/APB Frequency (240MHz to 10MHZ), including user created low power modes.

* Add required callbacks for TinyUSB DFU

* Update version to 3.0.0

* Add ESP.getCoreVersion() and update ESP.getChipModel()

* Update timer hal for the latest 5.1

* Use separate RX and TX buffer sizes in HTTP client

optimizes download by allowing up to 4K packets to be received

* Rename clock tree enum name in latest 5.1

* ESP32-H4 support was removed in ESP-IDF v5.1

* IDF release/v5.1 2004bf4e11 (#8165)

* Deinit previous bus first (#8180)

* TIMER - add timer_started flag, fix timerEnd() + timer HW test (#8135)

* Add timer_started flag and stop before disable

* Fix timer HW test

* TOUCH - Peripheral manager implementation (#8129)

* Touch periman implemented

* Deinit previous bus first

* LEDC Refactoring - Peripheral manager implemented (#8126)

* LEDC periman implementation

* Fix examples

* Rework tone

* Update ledc docs

* fix missing bracket

* Update analog funtions esp32-hal.h

* Update CameraWebServer example

* Fix HiFreq_ADC example

* minor fixes - typos

* Avoid calling tone/notone when tone already runs on dif. pin

* Remove unused channels_resolution

* GPIO - Peripheral manager implementation (#8179)

* periman-implementation

* fix RGB_BUILTIN and remove space

* Enforces more consistency into Peripheral Manager (#8188)

* Avoid log_i() message the first time a bus is assigned

* Prevent operation with ESP32_BUS_TYPE_INIT

* keeps coding style

* do not print messages on INIT bus type

* [Arduino Core 3.0.0] RMT IDF5.1 Refactoring (#7994)

* RMT IDF5.1 refactoring

* Fixes initial value setting

* removed rmtRead() with user callback

* simplify/remove Read data structure

* Deep API simplification

* fixes the examples

* fix rmt.h

* adds support to APB different frequencies

* fixes CI and not defined RGB_BUILTIN

* new RMT API and examples

* fixing commentaties

* Update esp32-hal-rgb-led.c

* changes Filter API

* Fixes example with Filter API

* Update PlatformIO scripts for the upcoming 3.0 core (#8183)

* Update PlatformIO scripts for the upcoming 3.0 core

* Dynamically select proper framework-arduinoespressif32-libs package

With this change the dev-platform will be dynamically configured to
pull the latest .zip package with precompiled libraries from extracted from
package_esp32_index.template.json

* free memory on detach (#8264)

* SPI - Peripheral manager implementation  (#8255)

* spi periman implementation

* fix header file

* remove unused struct

* fix missing braces

* Update esp32-hal-rmt.c (#8216)

Optimizing Peripheral Manager Test

* I2C - Peripheral manager implementation (#8220)

* i2c-master periman initial commit

* i2c-master make detachbus static + comment remove

* i2c-slave periman implementation

* SetPinBus to INIT on i2cDeinits

* Fix slave pins deinit

* remove dbg logs

* set ret to ESP_FAIL instead of returning

* Fix warnings in hal-spi caused by pariman transition

* Update esptool.py to version 4.6

* Add platform support for ESP_SR

* Add USB Type and valid pin check to periman

* replace bus with spi->num+1 (#8279)

* Remove default pins from SPI HAL

* Add commented out handlers for esptool.js in TinyUSB CDC

For future use

* Add build defines for host os and fqbn (for debug purposes)

* Provide proper memory caps total size

* Update Esp.cpp

* SDMMC - Peripheral manager implementation (#8289)

* sdmmc periman implemented

* save pins when SOC_SDMMC_USE_IOMUX

* IDF release/v5.1 4bc762621d (#8292)

* Adds missing pinMode (#8312)

* Adds missing pinMode

The example code lacks a pinMode() to initialize the GPIO 0 (button). In Arduino Core 3.0.0, it prints an error message when trying to read a not initialized GPIO.

* Update KeyboardLogout.ino

Adds <buttonPin> to keep code standard

* Update KeyboardReprogram.ino

Adds <buttonPin> to keep code standard

* LEDC Fade implementation (#8338)

* fade API + pointer fixes

* Add fade api

* Add fade example

* update ledc docs

* remove unused variables

* fix path to example

* Adds USB to Peripheral Manager - Arduino Core 3.0.0 (#8335)

* ETHERNET - Peripheral manager implementation (#8297)

* Peripheral manager implemented

* remove unused variable

* Add all RMII pins

* fix typo

* Adds HardwareSerial to Peripheral Manager Arduino 3.0.0 (#8328)

* Do not limit ETHERNET in periman to only ESP32. SPI is also an option

* Initial support for ESP32-C6 (#8337)

* Add checks for SOC defines (#8351)

* Add checks for SOC defines

* Add SoC checks to BLE library

* fix i2c compilation error

* fix wrong placement of include

* add check to SPI library

* add check to USB library

* add checks to Wire library

* Feature/esp32h2 support (#8373)

* Initial support for ESP32H2

* Additional changes for ESP32H2

* Update libs for ESP32H2

* Fix flashing on ESP32-H2

* Fix GPIO Configs for ESP32-C6 and ESP32-H2

* Update Timer test sketch

* Fix upload flash parameters

* Use ets_write_char_uart instead of ets_printf in log_printfv

* Print full chip report when log level is sufficient (#8282)

* ESP32-C3 does not have ets_write_char_uart

* Fix BLE gap event name

* HW Testing - Pytest update (#8389)

* update tests requirements

* remove already handled components

* Update version of pytest

* Add missing ESP32-H2 to hil.yml

* Updated FreeRTOS names (#8418)

* HW Testing -  ESP32-C6 + ESP32-H2 fixes (#8404)

* add C6/H2 to tests cfg.json

* remove ,

* workflow runs-on runner by matrix

* Add need for arduino tag to select runner

* Add cryptography to requirements.txt

* Removed duplicate TX1 define for H2 (#8402)

* Fix broken examples

* Fixes RMT filter & idle timing and setup (#8359)

* Fixes Filter and Idle parameter to uint32

* Fixes Filter and Idle setup

* Fixes it to 5.1Libs branch

* fix RMT CLK source and Filter API

* fixes missing ;

* fixes missing ;

* fixes RMT example

* IDF release/v5.1 a7b62bbcaf (#8438)

* Add workflow to build executables from python scripts (#8290)

* Add workflow to build executables from python scripts

* Push binary to tools

* Enable executable signing on Windows

* Update get.py

* Push binary to tools

* Try with multiple files

* Try more actions

* Try powershell

* Restore tools so they do not get rebuilt

* Finalize scripts

* Push binary to tools

* App rollback should be after PSRAM is initialized

* Correcting RX1 to GPIO4 and TX1 to GPIO5 to be consistent with documentation. Previous pin use works but is inconsistent with C6 docs.

* Fixes Memory Leak (#8486)

* fixes preprocessor test (#8485)

* fixes preprocessor test

When using `#define USE_SOFT_AP` 
Change
`&& not USE_SOFT_AP` ==> `&& !defined(USE_SOFT_AP)`

* Adds any BLE capable device in WiFiProv.ino

Removing ESP32 restriction for BLE Provisioning.

* fix flash mode read out for C6

* Add option for custom partitions without restrictions

* SD_MMC update (#8298)

* Updated SD_MMC lib and examples

* Removed getter implementation and commented usage in examples

* squashed updates

* IDF release/v5.1 f0437b945f (#8599)

* Update package_esp32_index.template.json

* Fix printf format build error in BTAdvertisedDeviceSet.cpp

---------

Co-authored-by: Pedro Minatel <pedro.minatel@espressif.com>
Co-authored-by: Rodrigo Garcia <rodrigo.garcia@espressif.com>
Co-authored-by: Ha Thach <thach@tinyusb.org>
Co-authored-by: Martin Turski <quiret@vfemail.net>
Co-authored-by: raviypujar <raviypujar@gmail.com>
Co-authored-by: Jason2866 <24528715+Jason2866@users.noreply.github.com>
Co-authored-by: Tomáš Pilný <34927466+PilnyTomas@users.noreply.github.com>
Co-authored-by: Jan Procházka <90197375+P-R-O-C-H-Y@users.noreply.github.com>
Co-authored-by: Daniel Berlin <dberlin@dberlin.org>
Co-authored-by: Nima Askari (نیما عسکری) <nimaltd@yahoo.com>
Co-authored-by: rtpmsys <106180646+rtpmsys@users.noreply.github.com>
Co-authored-by: bytiful <55647551+bytiful@users.noreply.github.com>
Co-authored-by: tmfarrington <tmfarrington@users.noreply.github.com>
Co-authored-by: Krzysiek S <chris.streh@gmail.com>
Co-authored-by: surt <carl.olsson@gmail.com>
Co-authored-by: Max Scheffler <max.scheffler@pm.me>
Co-authored-by: Clemens Kirchgatterer <clemens@1541.org>
Co-authored-by: Peter Pan's Techland <twinkle-pirate@hotmail.com>
Co-authored-by: Roman <programmeofficemilkyway@gmail.com>
Co-authored-by: Eistee <Eistee82@users.noreply.github.com>
Co-authored-by: David McCurley <44048235+mrengineer7777@users.noreply.github.com>
Co-authored-by: Gaya3N25 <30388176+Gaya3N25@users.noreply.github.com>
Co-authored-by: renebohne <rene.bohne@gmail.com>
Co-authored-by: Olivér Remény <25034625+remenyo@users.noreply.github.com>
Co-authored-by: davidk88 <david.kotar@gmail.com>
Co-authored-by: Vojtěch Bartoška <76958047+VojtechBartoska@users.noreply.github.com>
Co-authored-by: James Armstrong <jamesarmstrong3@me.com>
Co-authored-by: Valerii Koval <valeros@users.noreply.github.com>
Co-authored-by: Peter G. Jensen <root@petergjoel.dk>
2023-10-05 14:54:25 +03:00

799 lines
27 KiB
C

#include "soc/soc_caps.h"
#if SOC_USB_OTG_SUPPORTED
#include "sdkconfig.h"
#if CONFIG_TINYUSB_ENABLED
#include <stdlib.h>
#include <stdbool.h>
#include "esp_log.h"
#include "soc/soc.h"
#include "soc/efuse_reg.h"
#include "soc/rtc_cntl_reg.h"
#include "soc/usb_struct.h"
#include "soc/usb_reg.h"
#include "soc/usb_wrap_reg.h"
#include "soc/usb_wrap_struct.h"
#include "soc/usb_periph.h"
#include "soc/periph_defs.h"
#include "soc/timer_group_struct.h"
#include "soc/system_reg.h"
#include "rom/gpio.h"
#include "hal/usb_hal.h"
#include "hal/gpio_ll.h"
#include "hal/clk_gate_ll.h"
#include "freertos/FreeRTOS.h"
#include "freertos/task.h"
#include "driver/gpio.h"
#include "esp_rom_gpio.h"
#include "esp32-hal.h"
#include "esp32-hal-periman.h"
#include "esp32-hal-tinyusb.h"
#if CONFIG_IDF_TARGET_ESP32S2
#include "esp32s2/rom/usb/usb_persist.h"
#include "esp32s2/rom/usb/usb_dc.h"
#include "esp32s2/rom/usb/chip_usb_dw_wrapper.h"
#elif CONFIG_IDF_TARGET_ESP32S3
#include "hal/usb_serial_jtag_ll.h"
#include "hal/usb_phy_ll.h"
#include "esp32s3/rom/usb/usb_persist.h"
#include "esp32s3/rom/usb/usb_dc.h"
#include "esp32s3/rom/usb/chip_usb_dw_wrapper.h"
#endif
typedef enum{
TINYUSB_USBDEV_0,
} tinyusb_usbdev_t;
typedef char *tusb_desc_strarray_device_t[USB_STRING_DESCRIPTOR_ARRAY_SIZE];
typedef struct {
bool external_phy;
} tinyusb_config_t;
static bool usb_otg_deinit(void * busptr) {
// Once USB OTG is initialized, its GPIOs are assigned and it shall never be deinited
return false;
}
static void configure_pins(usb_hal_context_t *usb)
{
for (const usb_iopin_dsc_t *iopin = usb_periph_iopins; iopin->pin != -1; ++iopin) {
if ((usb->use_external_phy) || (iopin->ext_phy_only == 0)) {
esp_rom_gpio_pad_select_gpio(iopin->pin);
if (iopin->is_output) {
esp_rom_gpio_connect_out_signal(iopin->pin, iopin->func, false, false);
} else {
esp_rom_gpio_connect_in_signal(iopin->pin, iopin->func, false);
if ((iopin->pin != GPIO_FUNC_IN_LOW) && (iopin->pin != GPIO_FUNC_IN_HIGH)) {
gpio_ll_input_enable(&GPIO, iopin->pin);
}
}
esp_rom_gpio_pad_unhold(iopin->pin);
}
}
if (!usb->use_external_phy) {
gpio_set_drive_capability(USBPHY_DM_NUM, GPIO_DRIVE_CAP_3);
gpio_set_drive_capability(USBPHY_DP_NUM, GPIO_DRIVE_CAP_3);
if (perimanSetBusDeinit(ESP32_BUS_TYPE_USB, usb_otg_deinit)) {
// Bus Pointer is not used anyway - once the USB GPIOs are assigned, they can't be detached
perimanSetPinBus(USBPHY_DM_NUM, ESP32_BUS_TYPE_USB, (void *) usb);
perimanSetPinBus(USBPHY_DP_NUM, ESP32_BUS_TYPE_USB, (void *) usb);
} else {
log_e("USB OTG Pins can't be set into Peripheral Manager.");
}
}
}
esp_err_t tinyusb_driver_install(const tinyusb_config_t *config)
{
usb_hal_context_t hal = {
.use_external_phy = config->external_phy
};
usb_hal_init(&hal);
configure_pins(&hal);
if (!tusb_init()) {
log_e("Can't initialize the TinyUSB stack.");
return ESP_FAIL;
}
return ESP_OK;
}
typedef char tusb_str_t[127];
static bool WEBUSB_ENABLED = false;
static tusb_str_t WEBUSB_URL = "";
static tusb_str_t USB_DEVICE_PRODUCT = "";
static tusb_str_t USB_DEVICE_MANUFACTURER = "";
static tusb_str_t USB_DEVICE_SERIAL = "";
static tusb_str_t USB_DEVICE_LANGUAGE = "\x09\x04";//English (0x0409)
static uint8_t USB_DEVICE_ATTRIBUTES = 0;
static uint16_t USB_DEVICE_POWER = 0;
/*
* Device Descriptor
* */
static tusb_desc_device_t tinyusb_device_descriptor = {
.bLength = sizeof(tusb_desc_device_t),
.bDescriptorType = TUSB_DESC_DEVICE,
.bcdUSB = 0,
.bDeviceClass = 0,
.bDeviceSubClass = 0,
.bDeviceProtocol = 0,
.bMaxPacketSize0 = CFG_TUD_ENDOINT0_SIZE,
.idVendor = 0,
.idProduct = 0,
.bcdDevice = 0,
.iManufacturer = 0x01,
.iProduct = 0x02,
.iSerialNumber = 0x03,
.bNumConfigurations = 0x01
};
/*
* String Descriptors
* */
#define MAX_STRING_DESCRIPTORS 20
static uint32_t tinyusb_string_descriptor_len = 4;
static char * tinyusb_string_descriptor[MAX_STRING_DESCRIPTORS] = {
// array of pointer to string descriptors
USB_DEVICE_LANGUAGE, // 0: is supported language
USB_DEVICE_MANUFACTURER,// 1: Manufacturer
USB_DEVICE_PRODUCT, // 2: Product
USB_DEVICE_SERIAL, // 3: Serials, should use chip ID
};
/* Microsoft OS 2.0 registry property descriptor
Per MS requirements https://msdn.microsoft.com/en-us/library/windows/hardware/hh450799(v=vs.85).aspx
device should create DeviceInterfaceGUIDs. It can be done by driver and
in case of real PnP solution device should expose MS "Microsoft OS 2.0
registry property descriptor". Such descriptor can insert any record
into Windows registry per device/configuration/interface. In our case it
will insert "DeviceInterfaceGUIDs" multistring property.
GUID is freshly generated and should be OK to use.
https://developers.google.com/web/fundamentals/native-hardware/build-for-webusb/
(Section Microsoft OS compatibility descriptors)
*/
#define MS_OS_20_DESC_LEN 0xB2
static uint8_t const tinyusb_ms_os_20_descriptor[] =
{
// Set header: length, type, windows version, total length
U16_TO_U8S_LE(0x000A), U16_TO_U8S_LE(MS_OS_20_SET_HEADER_DESCRIPTOR), U32_TO_U8S_LE(0x06030000), U16_TO_U8S_LE(MS_OS_20_DESC_LEN),
// Configuration subset header: length, type, configuration index, reserved, configuration total length
U16_TO_U8S_LE(0x0008), U16_TO_U8S_LE(MS_OS_20_SUBSET_HEADER_CONFIGURATION), 0, 0, U16_TO_U8S_LE(MS_OS_20_DESC_LEN-0x0A),
// Function Subset header: length, type, first interface, reserved, subset length
U16_TO_U8S_LE(0x0008), U16_TO_U8S_LE(MS_OS_20_SUBSET_HEADER_FUNCTION), 0, 0, U16_TO_U8S_LE(MS_OS_20_DESC_LEN-0x0A-0x08),
// MS OS 2.0 Compatible ID descriptor: length, type, compatible ID, sub compatible ID
U16_TO_U8S_LE(0x0014), U16_TO_U8S_LE(MS_OS_20_FEATURE_COMPATBLE_ID), 'W', 'I', 'N', 'U', 'S', 'B', 0x00, 0x00,
0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, // sub-compatible
// MS OS 2.0 Registry property descriptor: length, type
U16_TO_U8S_LE(MS_OS_20_DESC_LEN-0x0A-0x08-0x08-0x14), U16_TO_U8S_LE(MS_OS_20_FEATURE_REG_PROPERTY),
U16_TO_U8S_LE(0x0007), U16_TO_U8S_LE(0x002A), // wPropertyDataType, wPropertyNameLength and PropertyName "DeviceInterfaceGUIDs\0" in UTF-16
'D', 0x00, 'e', 0x00, 'v', 0x00, 'i', 0x00, 'c', 0x00, 'e', 0x00, 'I', 0x00, 'n', 0x00, 't', 0x00, 'e', 0x00,
'r', 0x00, 'f', 0x00, 'a', 0x00, 'c', 0x00, 'e', 0x00, 'G', 0x00, 'U', 0x00, 'I', 0x00, 'D', 0x00, 's', 0x00, 0x00, 0x00,
U16_TO_U8S_LE(0x0050), // wPropertyDataLength
//bPropertyData: “{975F44D9-0D08-43FD-8B3E-127CA8AFFF9D}”.
'{', 0x00, '9', 0x00, '7', 0x00, '5', 0x00, 'F', 0x00, '4', 0x00, '4', 0x00, 'D', 0x00, '9', 0x00, '-', 0x00,
'0', 0x00, 'D', 0x00, '0', 0x00, '8', 0x00, '-', 0x00, '4', 0x00, '3', 0x00, 'F', 0x00, 'D', 0x00, '-', 0x00,
'8', 0x00, 'B', 0x00, '3', 0x00, 'E', 0x00, '-', 0x00, '1', 0x00, '2', 0x00, '7', 0x00, 'C', 0x00, 'A', 0x00,
'8', 0x00, 'A', 0x00, 'F', 0x00, 'F', 0x00, 'F', 0x00, '9', 0x00, 'D', 0x00, '}', 0x00, 0x00, 0x00, 0x00, 0x00
};
TU_VERIFY_STATIC(sizeof(tinyusb_ms_os_20_descriptor) == MS_OS_20_DESC_LEN, "Incorrect size");
/*
* BOS Descriptor (required for webUSB)
* */
#define BOS_TOTAL_LEN (TUD_BOS_DESC_LEN + TUD_BOS_WEBUSB_DESC_LEN + TUD_BOS_MICROSOFT_OS_DESC_LEN)
enum {
VENDOR_REQUEST_WEBUSB = 1,
VENDOR_REQUEST_MICROSOFT = 2
};
static uint8_t const tinyusb_bos_descriptor[] = {
// total length, number of device caps
TUD_BOS_DESCRIPTOR(BOS_TOTAL_LEN, 2),
// Vendor Code, iLandingPage
TUD_BOS_WEBUSB_DESCRIPTOR(VENDOR_REQUEST_WEBUSB, 1),
// Microsoft OS 2.0 descriptor
TUD_BOS_MS_OS_20_DESCRIPTOR(MS_OS_20_DESC_LEN, VENDOR_REQUEST_MICROSOFT)
};
/*
* URL Descriptor (required for webUSB)
* */
typedef struct TU_ATTR_PACKED {
uint8_t bLength;
uint8_t bDescriptorType;
uint8_t bScheme;
char url[127];
} tinyusb_desc_webusb_url_t;
static tinyusb_desc_webusb_url_t tinyusb_url_descriptor = {
.bLength = 3,
.bDescriptorType = 3, // WEBUSB URL type
.bScheme = 255, // URL Scheme Prefix: 0: "http://", 1: "https://", 255: ""
.url = ""
};
/*
* Configuration Descriptor
* */
static tinyusb_descriptor_cb_t tinyusb_loaded_interfaces_callbacks[USB_INTERFACE_MAX];
static uint32_t tinyusb_loaded_interfaces_mask = 0;
static uint8_t tinyusb_loaded_interfaces_num = 0;
static uint16_t tinyusb_config_descriptor_len = 0;
static uint8_t * tinyusb_config_descriptor = NULL;
/*
* Endpoint Usage Tracking
* */
typedef union {
struct {
uint32_t in:16;
uint32_t out:16;
};
uint32_t val;
} tinyusb_endpoints_usage_t;
static tinyusb_endpoints_usage_t tinyusb_endpoints;
/*
* TinyUSB Callbacks
* */
/**
* @brief Invoked when received GET CONFIGURATION DESCRIPTOR.
*/
__attribute__ ((weak)) uint8_t const *tud_descriptor_configuration_cb(uint8_t index)
{
//log_d("%u", index);
return tinyusb_config_descriptor;
}
/**
* @brief Invoked when received GET DEVICE DESCRIPTOR.
*/
__attribute__ ((weak)) uint8_t const *tud_descriptor_device_cb(void)
{
//log_d("");
return (uint8_t const *)&tinyusb_device_descriptor;
}
/**
* @brief Invoked when received GET STRING DESCRIPTOR request.
*/
__attribute__ ((weak)) uint16_t const *tud_descriptor_string_cb(uint8_t index, uint16_t langid)
{
//log_d("%u (0x%x)", index, langid);
static uint16_t _desc_str[127];
uint8_t chr_count;
if (index == 0) {
memcpy(&_desc_str[1], tinyusb_string_descriptor[0], 2);
chr_count = 1;
} else {
// Convert ASCII string into UTF-16
if (index >= tinyusb_string_descriptor_len) {
return NULL;
}
const char *str = tinyusb_string_descriptor[index];
// Cap at max char
chr_count = strlen(str);
if (chr_count > 126) {
chr_count = 126;
}
for (uint8_t i = 0; i < chr_count; i++) {
_desc_str[1 + i] = str[i];
}
}
// first byte is len, second byte is string type
_desc_str[0] = (TUSB_DESC_STRING << 8 ) | (2*chr_count + 2);
return _desc_str;
}
/**
* @brief Invoked when received GET BOS DESCRIPTOR request.
*/
uint8_t const * tud_descriptor_bos_cb(void)
{
//log_v("");
return tinyusb_bos_descriptor;
}
__attribute__ ((weak)) bool tinyusb_vendor_control_request_cb(uint8_t rhport, uint8_t stage, tusb_control_request_t const * request){ return false; }
/**
* @brief Handle WebUSB and Vendor requests.
*/
bool tud_vendor_control_xfer_cb(uint8_t rhport, uint8_t stage, tusb_control_request_t const * request)
{
if(WEBUSB_ENABLED && (request->bRequest == VENDOR_REQUEST_WEBUSB
|| (request->bRequest == VENDOR_REQUEST_MICROSOFT && request->wIndex == 7))){
// we only care for SETUP stage
if (stage == CONTROL_STAGE_SETUP) {
if(request->bRequest == VENDOR_REQUEST_WEBUSB){
// match vendor request in BOS descriptor
// Get landing page url
tinyusb_url_descriptor.bLength = 3 + strlen(WEBUSB_URL);
snprintf(tinyusb_url_descriptor.url, 127, "%s", WEBUSB_URL);
return tud_control_xfer(rhport, request, (void*) &tinyusb_url_descriptor, tinyusb_url_descriptor.bLength);
}
// Get Microsoft OS 2.0 compatible descriptor
uint16_t total_len;
memcpy(&total_len, tinyusb_ms_os_20_descriptor + 8, 2);
return tud_control_xfer(rhport, request, (void*) tinyusb_ms_os_20_descriptor, total_len);
}
return true;
}
log_v("rhport: %u, stage: %u, type: 0x%x, request: 0x%x", rhport, stage, request->bmRequestType_bit.type, request->bRequest);
return tinyusb_vendor_control_request_cb(rhport, stage, request);
}
/*
* Required Callbacks
* */
#if CFG_TUD_DFU
__attribute__ ((weak)) uint32_t tud_dfu_get_timeout_cb(uint8_t alt, uint8_t state){return 0;}
__attribute__ ((weak)) void tud_dfu_download_cb (uint8_t alt, uint16_t block_num, uint8_t const *data, uint16_t length){}
__attribute__ ((weak)) void tud_dfu_manifest_cb(uint8_t alt){}
#endif
#if CFG_TUD_HID
__attribute__ ((weak)) const uint8_t * tud_hid_descriptor_report_cb(uint8_t itf){return NULL;}
__attribute__ ((weak)) uint16_t tud_hid_get_report_cb(uint8_t itf, uint8_t report_id, hid_report_type_t report_type, uint8_t* buffer, uint16_t reqlen){return 0;}
__attribute__ ((weak)) void tud_hid_set_report_cb(uint8_t itf, uint8_t report_id, hid_report_type_t report_type, const uint8_t * buffer, uint16_t bufsize){}
#endif
#if CFG_TUD_MSC
__attribute__ ((weak)) bool tud_msc_test_unit_ready_cb(uint8_t lun){return false;}
__attribute__ ((weak)) void tud_msc_inquiry_cb(uint8_t lun, uint8_t vendor_id[8], uint8_t product_id[16], uint8_t product_rev[4]){}
__attribute__ ((weak)) void tud_msc_capacity_cb(uint8_t lun, uint32_t* block_count, uint16_t* block_size){}
__attribute__ ((weak)) int32_t tud_msc_read10_cb(uint8_t lun, uint32_t lba, uint32_t offset, void* buffer, uint32_t bufsize){return -1;}
__attribute__ ((weak)) int32_t tud_msc_write10_cb(uint8_t lun, uint32_t lba, uint32_t offset, uint8_t* buffer, uint32_t bufsize){return -1;}
__attribute__ ((weak)) int32_t tud_msc_scsi_cb (uint8_t lun, uint8_t const scsi_cmd[16], void* buffer, uint16_t bufsize){return -1;}
#endif
/*
* Private API
* */
static bool usb_persist_enabled = false;
static restart_type_t usb_persist_mode = RESTART_NO_PERSIST;
#if CONFIG_IDF_TARGET_ESP32S3
static void hw_cdc_reset_handler(void *arg) {
portBASE_TYPE xTaskWoken = 0;
uint32_t usbjtag_intr_status = usb_serial_jtag_ll_get_intsts_mask();
usb_serial_jtag_ll_clr_intsts_mask(usbjtag_intr_status);
if (usbjtag_intr_status & USB_SERIAL_JTAG_INTR_BUS_RESET) {
xSemaphoreGiveFromISR((SemaphoreHandle_t)arg, &xTaskWoken);
}
if (xTaskWoken == pdTRUE) {
portYIELD_FROM_ISR();
}
}
static void usb_switch_to_cdc_jtag(){
// Disable USB-OTG
periph_ll_reset(PERIPH_USB_MODULE);
//periph_ll_enable_clk_clear_rst(PERIPH_USB_MODULE);
periph_ll_disable_clk_set_rst(PERIPH_USB_MODULE);
// Switch to hardware CDC+JTAG
CLEAR_PERI_REG_MASK(RTC_CNTL_USB_CONF_REG, (RTC_CNTL_SW_HW_USB_PHY_SEL|RTC_CNTL_SW_USB_PHY_SEL|RTC_CNTL_USB_PAD_ENABLE));
// Do not use external PHY
CLEAR_PERI_REG_MASK(USB_SERIAL_JTAG_CONF0_REG, USB_SERIAL_JTAG_PHY_SEL);
// Release GPIO pins from CDC+JTAG
CLEAR_PERI_REG_MASK(USB_SERIAL_JTAG_CONF0_REG, USB_SERIAL_JTAG_USB_PAD_ENABLE);
// Force the host to re-enumerate (BUS_RESET)
pinMode(USBPHY_DM_NUM, OUTPUT_OPEN_DRAIN);
pinMode(USBPHY_DP_NUM, OUTPUT_OPEN_DRAIN);
digitalWrite(USBPHY_DM_NUM, LOW);
digitalWrite(USBPHY_DP_NUM, LOW);
// Initialize CDC+JTAG ISR to listen for BUS_RESET
usb_phy_ll_int_jtag_enable(&USB_SERIAL_JTAG);
usb_serial_jtag_ll_disable_intr_mask(USB_SERIAL_JTAG_LL_INTR_MASK);
usb_serial_jtag_ll_clr_intsts_mask(USB_SERIAL_JTAG_LL_INTR_MASK);
usb_serial_jtag_ll_ena_intr_mask(USB_SERIAL_JTAG_INTR_BUS_RESET);
intr_handle_t intr_handle = NULL;
SemaphoreHandle_t reset_sem = xSemaphoreCreateBinary();
if(reset_sem){
if(esp_intr_alloc(ETS_USB_SERIAL_JTAG_INTR_SOURCE, 0, hw_cdc_reset_handler, reset_sem, &intr_handle) != ESP_OK){
vSemaphoreDelete(reset_sem);
reset_sem = NULL;
log_e("HW USB CDC failed to init interrupts");
}
} else {
log_e("reset_sem init failed");
}
// Connect GPIOs to integrated CDC+JTAG
SET_PERI_REG_MASK(USB_SERIAL_JTAG_CONF0_REG, USB_SERIAL_JTAG_USB_PAD_ENABLE);
// Wait for BUS_RESET to give us back the semaphore
if(reset_sem){
if(xSemaphoreTake(reset_sem, 1000 / portTICK_PERIOD_MS) != pdPASS){
log_e("reset_sem timeout");
}
usb_serial_jtag_ll_disable_intr_mask(USB_SERIAL_JTAG_LL_INTR_MASK);
esp_intr_free(intr_handle);
vSemaphoreDelete(reset_sem);
}
}
#endif
static void IRAM_ATTR usb_persist_shutdown_handler(void)
{
if(usb_persist_mode != RESTART_NO_PERSIST){
if (usb_persist_enabled) {
usb_dc_prepare_persist();
}
if (usb_persist_mode == RESTART_BOOTLOADER) {
//USB CDC Download
if (usb_persist_enabled) {
chip_usb_set_persist_flags(USBDC_PERSIST_ENA);
#if CONFIG_IDF_TARGET_ESP32S2
} else {
periph_ll_reset(PERIPH_USB_MODULE);
periph_ll_enable_clk_clear_rst(PERIPH_USB_MODULE);
#endif
}
REG_WRITE(RTC_CNTL_OPTION1_REG, RTC_CNTL_FORCE_DOWNLOAD_BOOT);
} else if (usb_persist_mode == RESTART_BOOTLOADER_DFU) {
//DFU Download
#if CONFIG_IDF_TARGET_ESP32S2
// Reset USB Core
USB0.grstctl |= USB_CSFTRST;
while ((USB0.grstctl & USB_CSFTRST) == USB_CSFTRST){}
#endif
chip_usb_set_persist_flags(USBDC_BOOT_DFU);
REG_WRITE(RTC_CNTL_OPTION1_REG, RTC_CNTL_FORCE_DOWNLOAD_BOOT);
} else if (usb_persist_enabled) {
//USB Persist reboot
chip_usb_set_persist_flags(USBDC_PERSIST_ENA);
}
}
}
void usb_persist_restart(restart_type_t mode)
{
if (mode < RESTART_TYPE_MAX && esp_register_shutdown_handler(usb_persist_shutdown_handler) == ESP_OK) {
usb_persist_mode = mode;
#if CONFIG_IDF_TARGET_ESP32S3
if (mode == RESTART_BOOTLOADER) {
usb_switch_to_cdc_jtag();
}
#endif
esp_restart();
}
}
static bool tinyusb_reserve_in_endpoint(uint8_t endpoint){
if(endpoint > 6 || (tinyusb_endpoints.in & BIT(endpoint)) != 0){
return false;
}
tinyusb_endpoints.in |= BIT(endpoint);
return true;
}
static bool tinyusb_reserve_out_endpoint(uint8_t endpoint){
if(endpoint > 6 || (tinyusb_endpoints.out & BIT(endpoint)) != 0){
return false;
}
tinyusb_endpoints.out |= BIT(endpoint);
return true;
}
static bool tinyusb_has_available_fifos(void){
uint8_t max_endpoints = 4, active_endpoints = 0;
if (tinyusb_loaded_interfaces_mask & BIT(USB_INTERFACE_CDC)) {
max_endpoints = 5; //CDC endpoint 0x85 is actually not linked to FIFO and not used
}
for(uint8_t i=1; i<7; i++){
if((tinyusb_endpoints.in & BIT(i)) != 0){
active_endpoints++;
}
}
return active_endpoints < max_endpoints;
}
static uint16_t tinyusb_load_descriptor(tinyusb_interface_t interface, uint8_t * dst, uint8_t * itf)
{
if(tinyusb_loaded_interfaces_callbacks[interface]){
return tinyusb_loaded_interfaces_callbacks[interface](dst, itf);
}
return 0;
}
static bool tinyusb_load_enabled_interfaces(){
tinyusb_config_descriptor_len += TUD_CONFIG_DESC_LEN;
tinyusb_config_descriptor = (uint8_t *)malloc(tinyusb_config_descriptor_len);
if (tinyusb_config_descriptor == NULL) {
log_e("Descriptor Malloc Failed");
return false;
}
uint8_t * dst = tinyusb_config_descriptor + TUD_CONFIG_DESC_LEN;
for(int i=0; i<USB_INTERFACE_MAX; i++){
if (tinyusb_loaded_interfaces_mask & (1U << i)) {
uint16_t len = tinyusb_load_descriptor((tinyusb_interface_t)i, dst, &tinyusb_loaded_interfaces_num);
if (!len) {
log_e("Descriptor Load Failed");
return false;
} else {
dst += len;
}
}
}
uint8_t str_index = tinyusb_add_string_descriptor("TinyUSB Device");
uint8_t descriptor[TUD_CONFIG_DESC_LEN] = {
//num configs, interface count, string index, total length, attribute, power in mA
TUD_CONFIG_DESCRIPTOR(1, tinyusb_loaded_interfaces_num, str_index, tinyusb_config_descriptor_len, USB_DEVICE_ATTRIBUTES, USB_DEVICE_POWER)
};
memcpy(tinyusb_config_descriptor, descriptor, TUD_CONFIG_DESC_LEN);
if ((tinyusb_loaded_interfaces_mask == (BIT(USB_INTERFACE_CDC) | BIT(USB_INTERFACE_DFU))) || (tinyusb_loaded_interfaces_mask == BIT(USB_INTERFACE_CDC))) {
//usb_persist_enabled = true;
//log_d("USB Persist enabled");
}
log_d("Load Done: if_num: %u, descr_len: %u, if_mask: 0x%x", tinyusb_loaded_interfaces_num, tinyusb_config_descriptor_len, tinyusb_loaded_interfaces_mask);
return true;
}
static inline char nibble_to_hex_char(uint8_t b)
{
if (b < 0xa) {
return '0' + b;
} else {
return 'a' + b - 0xa;
}
}
static void set_usb_serial_num(void)
{
/* Get the MAC address */
const uint32_t mac0 = REG_GET_FIELD(EFUSE_RD_MAC_SPI_SYS_0_REG, EFUSE_MAC_0);
const uint32_t mac1 = REG_GET_FIELD(EFUSE_RD_MAC_SPI_SYS_1_REG, EFUSE_MAC_1);
uint8_t mac_bytes[6];
memcpy(mac_bytes, &mac0, 4);
memcpy(mac_bytes + 4, &mac1, 2);
/* Convert to UTF16 string */
uint8_t* srl = (uint8_t*)USB_DEVICE_SERIAL;
for (int i = 0; i < 6; ++i) {
uint8_t b = mac_bytes[5 - i]; /* printing from the MSB */
if (i) {
*srl++ = ':';
}
*srl++ = nibble_to_hex_char(b >> 4);
*srl++ = nibble_to_hex_char(b & 0xf);
}
*srl++ = '\0';
}
static void tinyusb_apply_device_config(tinyusb_device_config_t *config){
if(config->product_name){
snprintf(USB_DEVICE_PRODUCT, 126, "%s", config->product_name);
}
if(config->manufacturer_name){
snprintf(USB_DEVICE_MANUFACTURER, 126, "%s", config->manufacturer_name);
}
if(config->serial_number && config->serial_number[0]){
snprintf(USB_DEVICE_SERIAL, 126, "%s", config->serial_number);
} else {
set_usb_serial_num();
}
if(config->webusb_url){
snprintf(WEBUSB_URL, 126, "%s", config->webusb_url);
}
// Windows 10 will not recognize the CDC device if WebUSB is enabled and USB Class is not 2 (CDC)
if(
(tinyusb_loaded_interfaces_mask & BIT(USB_INTERFACE_CDC))
&& config->webusb_enabled
&& (config->usb_class != TUSB_CLASS_CDC)
){
config->usb_class = TUSB_CLASS_CDC;
config->usb_protocol = 0x00;
}
WEBUSB_ENABLED = config->webusb_enabled;
USB_DEVICE_ATTRIBUTES = config->usb_attributes;
USB_DEVICE_POWER = config->usb_power_ma;
tinyusb_device_descriptor.bcdUSB = config->usb_version;
tinyusb_device_descriptor.idVendor = config->vid;
tinyusb_device_descriptor.idProduct = config->pid;
tinyusb_device_descriptor.bcdDevice = config->fw_version;
tinyusb_device_descriptor.bDeviceClass = config->usb_class;
tinyusb_device_descriptor.bDeviceSubClass = config->usb_subclass;
tinyusb_device_descriptor.bDeviceProtocol = config->usb_protocol;
}
// USB Device Driver task
// This top level thread processes all usb events and invokes callbacks
static void usb_device_task(void *param) {
(void)param;
while(1) tud_task(); // RTOS forever loop
}
/*
* PUBLIC API
* */
#if ARDUHAL_LOG_LEVEL >= ARDUHAL_LOG_LEVEL_ERROR
const char *tinyusb_interface_names[USB_INTERFACE_MAX] = {"MSC", "DFU", "HID", "VENDOR", "CDC", "MIDI", "CUSTOM"};
#endif
static bool tinyusb_is_initialized = false;
esp_err_t tinyusb_enable_interface(tinyusb_interface_t interface, uint16_t descriptor_len, tinyusb_descriptor_cb_t cb)
{
if(tinyusb_is_initialized){
log_e("TinyUSB has already started! Interface %s not enabled", (interface >= USB_INTERFACE_MAX)?"":tinyusb_interface_names[interface]);
return ESP_FAIL;
}
if((interface >= USB_INTERFACE_MAX) || (tinyusb_loaded_interfaces_mask & (1U << interface))){
log_e("Interface %s invalid or already enabled", (interface >= USB_INTERFACE_MAX)?"":tinyusb_interface_names[interface]);
return ESP_FAIL;
}
if(interface == USB_INTERFACE_CDC){
if(!tinyusb_reserve_out_endpoint(3) ||!tinyusb_reserve_in_endpoint(4) || !tinyusb_reserve_in_endpoint(5)){
log_e("CDC Reserve Endpoints Failed");
return ESP_FAIL;
}
}
tinyusb_loaded_interfaces_mask |= (1U << interface);
tinyusb_config_descriptor_len += descriptor_len;
tinyusb_loaded_interfaces_callbacks[interface] = cb;
log_d("Interface %s enabled", tinyusb_interface_names[interface]);
return ESP_OK;
}
esp_err_t tinyusb_init(tinyusb_device_config_t *config) {
if(tinyusb_is_initialized){
return ESP_OK;
}
tinyusb_is_initialized = true;
//tinyusb_endpoints.val = 0;
tinyusb_apply_device_config(config);
if (!tinyusb_load_enabled_interfaces()) {
tinyusb_is_initialized = false;
return ESP_FAIL;
}
bool usb_did_persist = (USB_WRAP.date.val == USBDC_PERSIST_ENA);
//if(usb_did_persist && usb_persist_enabled){
// Enable USB/IO_MUX peripheral reset, if coming from persistent reboot
REG_CLR_BIT(RTC_CNTL_USB_CONF_REG, RTC_CNTL_IO_MUX_RESET_DISABLE);
REG_CLR_BIT(RTC_CNTL_USB_CONF_REG, RTC_CNTL_USB_RESET_DISABLE);
//} else
if(!usb_did_persist || !usb_persist_enabled){
// Reset USB module
periph_ll_reset(PERIPH_USB_MODULE);
periph_ll_enable_clk_clear_rst(PERIPH_USB_MODULE);
}
tinyusb_config_t tusb_cfg = {
.external_phy = false // In the most cases you need to use a `false` value
};
esp_err_t err = tinyusb_driver_install(&tusb_cfg);
if (err != ESP_OK) {
tinyusb_is_initialized = false;
return err;
}
xTaskCreate(usb_device_task, "usbd", 4096, NULL, configMAX_PRIORITIES - 1, NULL);
return err;
}
uint8_t tinyusb_add_string_descriptor(const char * str){
if(str == NULL || tinyusb_string_descriptor_len >= MAX_STRING_DESCRIPTORS){
return 0;
}
uint8_t index = tinyusb_string_descriptor_len;
tinyusb_string_descriptor[tinyusb_string_descriptor_len++] = (char*)str;
return index;
}
uint8_t tinyusb_get_free_duplex_endpoint(void){
if(!tinyusb_has_available_fifos()){
log_e("No available IN endpoints");
return 0;
}
for(uint8_t i=1; i<7; i++){
if((tinyusb_endpoints.in & BIT(i)) == 0 && (tinyusb_endpoints.out & BIT(i)) == 0){
tinyusb_endpoints.in |= BIT(i);
tinyusb_endpoints.out |= BIT(i);
return i;
}
}
log_e("No available duplex endpoints");
return 0;
}
uint8_t tinyusb_get_free_in_endpoint(void){
if(!tinyusb_has_available_fifos()){
log_e("No available IN endpoints");
return 0;
}
for(uint8_t i=1; i<7; i++){
if((tinyusb_endpoints.in & BIT(i)) == 0 && (tinyusb_endpoints.out & BIT(i)) != 0){
tinyusb_endpoints.in |= BIT(i);
return i;
}
}
for(uint8_t i=1; i<7; i++){
if((tinyusb_endpoints.in & BIT(i)) == 0){
tinyusb_endpoints.in |= BIT(i);
return i;
}
}
return 0;
}
uint8_t tinyusb_get_free_out_endpoint(void){
for(uint8_t i=1; i<7; i++){
if((tinyusb_endpoints.out & BIT(i)) == 0 && (tinyusb_endpoints.in & BIT(i)) != 0){
tinyusb_endpoints.out |= BIT(i);
return i;
}
}
for(uint8_t i=1; i<7; i++){
if((tinyusb_endpoints.out & BIT(i)) == 0){
tinyusb_endpoints.out |= BIT(i);
return i;
}
}
return 0;
}
#endif /* CONFIG_TINYUSB_ENABLED */
#endif /* SOC_USB_OTG_SUPPORTED */