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mirror of https://github.com/hathach/tinyusb.git synced 2025-03-25 23:38:06 +00:00
Jerzy Kasenberg 759d530506 audio_device: Allow one FIFO for N channels
This allow to build with single FIFO for devices with multiple channels.
Having just one FIFO greatly reduces time needed to feed endpoint.

This change also allows to have one FIFO with 24 bit samples that
is not rounded up to 32 bit elements.
CFG_TUD_AUDIO_RX_ITEMSIZE and CFG_TUD_AUDIO_TX_ITEMSIZE can be manually
defined. This allows to use FIFO more efficiently when 24 bits samples
are already using 3 bytes, in this case there is no need to put them
into FIFO one by one.
For 8, 16, 32 bits samples size efficient FIFO access is always used
when single FIFO is selected.

This also changes FIFO element size to 1, FIFO usage was confusing
in some place it treated content as byte base in other it looked like
ITEM size is to be used. Also bufsize that in most (maybe all) cases
was really meaning item count.
bufsize now mean buffer size in bytes so there is no confusion.
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2019-03-21 19:26:53 +07:00
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TinyUSB

tinyUSB_240x100

Build Status License Coverity

TinyUSB is an open-source cross-platform USB Host/Device stack for embedded system, designed to be memory-safe with no dynamic allocation and thread-safe with all interrupt events are deferred then handled in the non-ISR task function.

tinyusb

.
├── docs            # Documentation
├── examples        # Sample with Makefile and Segger Embedded build support
├── hw
│   ├── bsp         # Supported boards source files
│   └── mcu         # Low level mcu core & peripheral drivers
├── lib             # Sources from 3rd party such as freeRTOS, fatfs ...
├── src             # All sources files for TinyUSB stack itself.
├── test            # Unit tests for the stack
└── tools           # Files used internally

Contributors

Special thanks to all the people who spent their precious time and effort to help this project so far. Check out the CONTRIBUTORS.md file for the list of all contributors and their awesome work for the stack.

Supported MCUs

The stack supports the following MCUs:

  • Espressif: ESP32-S2
  • Dialog: DA1469x
  • MicroChip: SAMD11, SAMD21, SAMD51, SAME5x, SAMG (device only)
  • NordicSemi: nRF52833, nRF52840
  • Nuvoton: NUC120, NUC121/NUC125, NUC126, NUC505
  • NXP:
    • LPC Series: 11Uxx, 13xx, 175x_6x, 177x_8x, 18xx, 40xx, 43xx, 51Uxx, 54xxx, 55xx
    • iMX RT Series: RT1011, RT1015, RT1021, RT1052, RT1062, RT1064
  • Sony: CXD56
  • ST: STM32 series: L0, F0, F1, F2, F3, F4, F7, H7 both FullSpeed and HighSpeed
  • TI: MSP430
  • ValentyUSB eptri

Here is the list of supported Boards that can be used with provided examples.

Device Stack

Supports multiple device configurations by dynamically changing usb descriptors. Low power functions such like suspend, resume, and remote wakeup. Following device classes are supported:

  • Communication Class (CDC)
  • Human Interface Device (HID): Generic (In & Out), Keyboard, Mouse, Gamepad etc ...
  • Mass Storage Class (MSC): with multiple LUNs
  • Musical Instrument Digital Interface (MIDI)
  • Network with RNDIS, CDC-ECM (work in progress)
  • USB Test and Measurement Class (USBTMC)
  • Vendor-specific class support with generic In & Out endpoints. Can be used with MS OS 2.0 compatible descriptor to load winUSB driver without INF file.
  • WebUSB with vendor-specific class

Host Stack

Most active development is on the Device stack. The Host stack is under rework and largely untested.

  • Human Interface Device (HID): Keyboard, Mouse, Generic
  • Mass Storage Class (MSC)
  • Hub currently only supports 1 level of hub (due to my laziness)

OS Abstraction layer

TinyUSB is completely thread-safe by pushing all ISR events into a central queue, then process it later in the non-ISR context task function. It also uses semaphore/mutex to access shared resources such as CDC FIFO. Therefore the stack needs to use some of OS's basic APIs. Following OSes are already supported out of the box.

  • No OS : Disabling USB IRQ is used as way to provide mutex
  • FreeRTOS
  • Mynewt Due to the newt package build system, Mynewt examples are better to be on its own repo

Getting Started

Here are the details for getting started with the stack.

Porting

Want to help add TinyUSB support for a new MCU? Read here for an explanation on the low-level API needed by TinyUSB.

License

MIT license for all TinyUSB sources src folder, Full license is here. However, each file is individually licensed especially those in lib and hw/mcu folder. Please make sure you understand all the license term for files you use in your project.

Uses

TinyUSB is currently used by these other projects:

Let me know if your project also uses TinyUSB and want to share.

Description
An open source cross-platform USB stack for embedded system
Readme MIT 86 MiB
Languages
C 94.1%
CMake 2.5%
Makefile 1.4%
Python 1%
C++ 0.5%
Other 0.5%