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153 Commits
Author SHA1 Message Date
Earle F. Philhower, III 6d115cdcec Update version 2024-07-22 12:51:07 -07:00
Earle F. Philhower, III 9f66e834d4 Split variant build, combine spell + style checks (#2291)
Variant builds were taking longer than the actual individual CI jobs, so
split it up.

Combine the spelling and style checks, they ran very fast and spent more
time in checking out than in running.
2024-07-22 12:46:47 -07:00
Earle F. Philhower, III 096990123d Fix timeout in WebServer::_uploadReadByte and handleClient() (#2290)
Upstream patch https://github.com/espressif/arduino-esp32/pull/9991
2024-07-22 12:21:42 -07:00
Earle F. Philhower, III ea2de469a2 FreeRTOS/Arduino header include fix (#2288)
Fixes #2287
2024-07-21 05:13:43 -07:00
deltaford 80196d570b Add Pintronix PinMax board (#2286) 2024-07-20 13:08:05 -07:00
Amken USAandH.Keni 1f71135a2b Add 4 Amken boards (#2283)
Added 4 new boards from Amken LLC.
* Amken Bunny
* Amken Revelop
* Amken Revelop Plus
* Amken Revelop eS

Co-authored-by: H.Keni <151807089+hrken1@users.noreply.github.com>
2024-07-19 14:17:53 -07:00
Earle F. Philhower, III c4e713247e Make CI use current JSON, not upstream (#2277) 2024-07-18 16:33:23 -07:00
Earle F. Philhower, III bd902a93f5 Add true 10- and 16-bit joystick modes (#2276)
Fixes #2275

Adds `Joystick.use10bit` and `Joystick.use16bit` methods.  10-bit is
unsigned from 0...1023 while 16-bit is signed -32767..32767.
Defines a new HID descriptor to support the increased resolution.
2024-07-18 16:07:29 -07:00
Heng Teng YiandHTY2003 372fef06e1 Add board EVN Alpha (#2263)
Co-authored-by: HTY2003 <randumbperson@gmail.com>
2024-07-13 11:21:04 -07:00
Earle F. Philhower, III 41ce4b2f8b Ensure makeboards.py writes UNIX newlines (#2264)
The repo and development use only '\n' (UNIX) EOLs.  When a user runs
makeboards on a Windows system they end up changing every line in boards.txt
and the JSON files to Windows '\r\n' format.

Explicitly set the newline character when opening the output files to
avoid this.
2024-07-12 17:53:34 -07:00
Earle F. Philhower, III e8a2654296 Add a build of all variants to CI (#2262)
* Add a build of all variants to CI using P.IO
* Split out into separate job, use BOOTSEL sketch
* Fix Breadstick variant
* Fix Bridgetech boards with illegal define names
  Dash(-) to underscore(_) in define and variant for the -7 and -43.
* Bridgetech JSON updates
* Temporarily remove Bridgetech boards from CI
  Needs an update to the P.IO external repo to work since the names
  of the boards have changed.
2024-07-12 15:50:03 -07:00
AcThPaU a584d10321 Fix D pin mapping on Adafruit IB/Feather RP2040 (#2259)
* Fix D pins on Adafruit IB RP2040
* Fix Adafruit Feather D pins mapping as well
* Change common.h to accept D pin def per board
2024-07-12 14:41:06 -07:00
Earle F. Philhower, III 5cdd58dfb8 Add FreeRTOS functionality tests (#2257)
FreeRTOS often seems to have interesting corner cases.  Add two simple
tests that have been useful while debugging issues found from users or
from FreeRTOS updates.
2024-07-08 18:07:28 -07:00
Earle F. Philhower, III 96a2e925cf Fix leak in HTTPSClient (#2256)
Fixes #2254

The faked certificate was allocated but not deleted in certain cases.  Make sure
to clean up in the destructor.
2024-07-08 09:21:46 -07:00
Maximilian Gerhardt 8cb8807573 Fix assembler flags (#2255)
An oversight in the order of updating the ASFLAGS with a copy of the CCFLAGS (see line 110) and then updating the CCFLAGS (without resyncing the ASFLAGS) leads to a fatal compilation error in the Adafruit PicoDVI library, in which `tmds_encode.S` fails to find the `pico/config.h` include file. This fix updates the ASFLAGS manually after changing the CCFLAGS so that they're equal again, and the library can be compiled.
2024-07-08 09:02:15 -07:00
Earle F. Philhower, III 2cde8bd789 Avoid deadlock BT/LE HID send when disconnected (#2252)
Fixes #2251

The 2-phase send could get out of whack if transmission was attempted when
no device was connected. Clear things up so if things aren't connected,
then no data gets set as pending.
2024-07-04 13:58:33 -07:00
Earle F. Philhower, III 99b32b8436 Update to latest FreeRTOS main, not SMP branch (#2250)
FreeRTOS has merged the SMP branch into its main, so move to that and
adjust the core accordingly.  V11.1.0 + several minor edits.
2024-07-03 17:31:22 -07:00
Pontus OldbergandPontus Oldberg 91240567ce Fixed incorrect AVR compatibility macros. (#2249)
* Fixed incorrect AVR compatibility macros.

---------

Co-authored-by: Pontus Oldberg <pontus.oldberg@non.se.com>
2024-07-03 08:01:20 -07:00
chungsoftvn-tuannguyenandTuan Nguyen 247e48fa85 Add board BridgeTek IDM2040-43A (#2246)
- Board information brtchip.com/product/idm2040-43a

Signed-off-by: Tuan Nguyen <tuan.nguyen@brtchip.com>
Co-authored-by: Tuan Nguyen <tuan.nguyen@brtchip.com>
2024-06-27 11:30:53 -07:00
Earle F. Philhower, III 268d0aa1c5 On Timer::once execution, delete the alarm_id (#2245)
A Timer is not active after the alarm fires once, so clear the
alarm ID so we know we're not running.
2024-06-24 16:07:19 -07:00
Earle F. Philhower, III 553f7604ea Add ESP32-compatible Ticker library (#2244)
Uses the Pico SDK alarms and repeated-timers to provide for IRQ-level
periodic tasks to be scheduled.
2024-06-24 14:47:46 -07:00
Earle F. Philhower, III 1357e4a37b Receive GATT characteristic updates in BTStackLib (#2241)
Fixes #2231
2024-06-24 08:48:07 -07:00
Earle F. Philhower, III fdc361aff9 Remove old ESP8266 files from AsyncUDP (#2238) 2024-06-19 15:51:34 -07:00
Earle F. Philhower, III 7df8c35e81 Use built-in LWIP call to determine NetBIOS IP (#2235)
Instead of manually iterating over netifs to find the one a packet came
in over for NetBIOS name lookup, use a built-in LWIP macro that's
available for udp_recv callbacks.  Shrinks and simplifies NetBIOS code.
2024-06-18 13:42:23 -07:00
Earle F. Philhower, III 2297d61d92 Update version 2024-06-18 09:44:58 -07:00
Limor "Ladyada" Friedandhathach 6d601250d6 Add Adafruit Adalogger Feather (#2229)
Co-authored-by: hathach <thach@tinyusb.org>
2024-06-17 21:00:45 -07:00
Earle F. Philhower, III c99614c1f5 Add AsyncUDP and simple NetBIOS name lookup server (#2234)
Thanks to @me-no-dev's code.  Lets Windows look up the PicoW by name
using NBNS and needs much less memory and code than mDNS.

AsyncUDP ported from the old ESP8266 version, only minimal changes.  Will
probably only be valid in IPv4 environments and may not match current
ESP32 AsyncUDP interfaces.
2024-06-17 17:46:53 -07:00
Mete K. Atay 352d363463 Add METE HOCA Akana R1 (#2230) 2024-06-17 09:53:02 -07:00
Ayush Sharma 1775fedf44 Webserver: Add support for filters and removable routes (#2225)
This PR implements filters and removable routes in RP2040 arduino core, making it API compatible with recent changes to ESP32 & ESP8266 WebServer API.
2024-06-13 15:32:17 -07:00
Earle F. Philhower, III 4ab0ba6133 Fix crash on SD.end() without initial SD.begin() (#2222)
Fixes #2220
2024-06-11 13:40:27 -07:00
Earle F. Philhower, III eb0badd817 Avoid malloc/free while in HCI callbacks (#2219)
Bluetooth operates at IRQ level, so using std::list (which needs to
new and delete objects) is not legal.  Use a fixed, preallocated
vector instead.
2024-06-10 16:38:50 -07:00
Earle F. Philhower, III f272995536 For consistency, BTHID Joypad->Joystick (#2218)
Matches existing library names and nomenclature
2024-06-10 13:34:59 -07:00
Earle F. Philhower, III db13d3c1f8 Add basic A2DP BluetoothAudio documentation (#2217) 2024-06-09 17:47:13 -07:00
Earle F. Philhower, III f8c1ec100f Add BluetoothHIDMaster documentation (#2216)
Also link in FatFSUSB docs, d'oh!
2024-06-09 16:51:35 -07:00
Earle F. Philhower, III 1fd66bf9c2 Add joypad HID master support (#2214)
Play games on your Pico using Bluetooth gamepads!
2024-06-09 11:47:13 -07:00
Earle F. Philhower, III 151c52c1a0 Remove leftover LWIP debug/redefines (#2213)
Fixes #2211
2024-06-09 10:10:20 -07:00
Earle F. Philhower, III bde21e5ae1 Add BLE support to BluetoothHIDMaster (#2208)
Support Bluetooth BLE keyboard and mice using the same HID master
infrastructure as the BT Classic.
2024-06-07 14:52:52 -07:00
Earle F. Philhower, III c104c6717c Upgrade to Adafruit TinyUSB 3.1.5 (#2206) 2024-06-05 22:36:30 -07:00
Michael Rangen b0ffd89dbb Added Raspberry Breadstick (#2205)
https://shop.breadstick.ca/products/raspberry-breadstick-rp2040
I think I did the pin definitions correctly... other boards used generic pin numbers based on the GPIO pins but I've mapped GPIO to the silkscreen pin labels on our board.
2024-06-05 22:15:05 -07:00
Earle F. Philhower, III 0f05ad1cc2 Use block writes for BT audio consumers (#2204)
Around 2x the performance, and every bit is needed w/BT SBC compression
and decompression.
2024-06-05 16:03:35 -07:00
Zillion 0ec12aa49f Add GroundStudio Marble Pico board (#2203) 2024-06-05 15:18:21 -07:00
Earle F. Philhower, III f997a9c3bd Update README.md 2024-06-05 13:51:03 -07:00
Earle F. Philhower, III 9039089067 Fix PWMAudio::write(buffer, len) (#2202)
PWMAudio was only ever writing one half the buffer passed in because
of an off-by-2 error.  Fixes the sine output in KeyboardPiano.
2024-06-05 13:08:08 -07:00
Earle F. Philhower, III 8bc8c824d3 Update version 2024-06-05 12:03:10 -07:00
Earle F. Philhower, III f08ba6bd42 Rebuild OTA bootloader for newer LittleFS version (#2199)
The LittleFS folks changed the on-flash format in 2.6.0, making
it unmountable with earlier precompiled code.

Rebuild the OTA bootloader using the 2.9.3 LittleFS release,
matching the core version.

Fixes #2198
2024-06-05 11:48:16 -07:00
Earle F. Philhower, III 1ef61d725b Clean up OTA example references to ESP8266 (#2200) 2024-06-05 11:40:37 -07:00
Earle F. Philhower, III b42083f20a Add "Needs Bluetooth" compile warning (#2197) 2024-06-05 11:08:20 -07:00
Earle F. Philhower, III f820dc134a Update version 2024-06-04 14:46:13 -07:00
Earle F. Philhower, III f6d13d2b70 Bluetooth Master HID and musical keyboard example (#2195)
Adds BluetoothHIDMaster and HIDKeyStream which let the PicoW connect to
and use Bluetooth Classic HID devices like keyboards and mice.

An example that lets the PicoW use a BT keyboard as a piano is
included and shows the use of the new classes.
2024-06-04 14:09:28 -07:00
Earle F. Philhower, III f786583986 Split out BluetoothHCI for shared usage (#2194) 2024-06-03 15:09:55 -07:00
Earle F. Philhower, III 5f6fb75505 Move to LittleFS 2.9.3. (#2193)
On-flash format changed after 2.5.1, but this can read prior versions
and will upgrade on-device to the later version.
2024-06-03 09:32:52 -07:00
Christian Halter 962dedad21 Fix folder name for Archi board (#2191)
* fix: Changed folder name to match build.variant property
* Added GPIO definitions for Archi board
Co-authored-by: Christian Halter <christian.halter@newsan.com.ar>
2024-06-03 09:20:59 -07:00
Earle F. Philhower, III ce45c65568 Make LittleFS filenames support full size (#2192)
Support 255 character names, not just 32, in LittleFS filesystems.
2024-06-03 09:11:01 -07:00
Earle F. Philhower, III 6d6433f256 Add track info support for BT audio sink (#2190) 2024-05-31 13:08:41 -07:00
Earle F. Philhower, III bf385490d3 Fix crash on audio end from IRQ, refactor A2DP (#2189)
Fixes #2188

We get a call to stop the audio channel from a timer/IRQ context, so can't
safely remove the IRQ handler for the AudioBufferManager.  The SDK will panic.

Because the IRQ handler will be a noop if it's not uninstalled, we will
instead just leave our shared handler in place and let it do nothing.

Use a common BluetoothLock RAII in BluetoothAudio to clen up the code and
automatically lock BT for the AVRCP button methods.
2024-05-31 12:14:57 -07:00
Earle F. Philhower, III 919a754ef8 Add double-mem LWIP option (#2187)
Add a "-32K" option to all the IP stack options that doubles the PCB and memory
pools from default.  For most use cases this is not necessary, but it could be
helpful in cases where large numbers of TCP clients are connected or high
bandwidth applications.

Fixes #2050
2024-05-30 18:30:50 -07:00
Earle F. Philhower, III 0a2b616c8a Add Cookies to HTTPClient (#2186)
From:
https://github.com/espressif/arduino-esp32/pull/6216
https://github.com/espressif/arduino-esp32/pull/6280
https://github.com/espressif/arduino-esp32/pull/7112
2024-05-30 13:27:43 -07:00
Earle F. Philhower, III 56bd539528 Webserver Ignore extra headers in multipart forms (#2184)
From https://github.com/espressif/arduino-esp32/pull/9253
2024-05-30 13:16:15 -07:00
Earle F. Philhower, III 3839f07afe HTTPClient - Fix case sensitivity for header keys (#2185)
From https://github.com/espressif/arduino-esp32/pull/8713
2024-05-30 13:05:49 -07:00
Earle F. Philhower, III 2043623ce6 Fix POST form parser edge cases (#2182)
From https://github.com/espressif/arduino-esp32/pull/9167
2024-05-30 12:19:44 -07:00
Earle F. Philhower, III a3dba8be5d Fix AdvancedWebServer.ino uptime conversion (#2183)
From https://github.com/espressif/arduino-esp32/pull/9224
2024-05-30 12:07:28 -07:00
Earle F. Philhower, III 1f9350dc2a Allow setting SerialBT advertised name (#2181)
Trivial fix #2179
2024-05-30 11:40:40 -07:00
Earle F. Philhower, III 361b4e0862 Allow uploading huge files to WebServer (#2180)
From https://github.com/espressif/arduino-esp32/pull/9440
2024-05-30 11:24:18 -07:00
Earle F. Philhower, III fa2bfdc2ba Small RAM savings (128b) in WebServer (#2178)
From https://github.com/espressif/arduino-esp32/pull/9594
2024-05-30 10:38:50 -07:00
Earle F. Philhower, III 679be8520f Update version 2024-05-29 14:54:32 -07:00
Earle F. Philhower, III 01e9dc99f2 Add A2DP sink (speaker) support (#2177)
Provide direct connection from BT audio to I2S and PWM audio outputs.
Example included showing play/pause operation.
2024-05-29 14:53:06 -07:00
Earle F. Philhower, III ec5e62e533 Add Bluetooth audio out (A2DP) on the PicoW (#2174)
Adds a library to run classic Bluetooth A2DP source (output) audio from
the PicoW.  Simple example showing operation and callbacks.

Factor out multiple BT lock/unlock and place in the PicoW variant files.
2024-05-26 14:30:40 -07:00
Earle F. Philhower, III 367200a2c8 Use custom LWIP checksum for ~13% faster checksums (#2172)
Use -O2 only on the LWIP checksum routine, resulting in a speedup of
around 13% (checksumming only, not entire LWIP stack) for 72 add'l bytes
of flash.
2024-05-22 10:37:30 -07:00
Earle F. Philhower, III 11814823ed Add asynchronous I2C read and write operations (#2167)
Fixes #1730

Uses DMA operations to avoid the need to bit-bang or busy wait for I2C operations
that might be very slow.  Optional, adds new API calls to enable.  Simple example
included.
2024-05-21 14:32:12 -07:00
Earle F. Philhower, III e6c7ee7813 Add asynchronous SPI transactions (#2168)
Fixes #1192

Uses DMA operations to avoid the need to bit-bang or busy wait for SPI
operations that might be very slow. Optional, adds new API calls to enable.
Simple example included.
2024-05-21 14:08:36 -07:00
Earle F. Philhower, III dc856dbb1c Update README.md 2024-05-21 09:51:27 -07:00
Christian HalterandChristian Halter c4b1ab81c1 Add Newsan Archi board (#2169)
Co-authored-by: Christian Halter <christian.halter@newsan.com.ar>
2024-05-21 09:51:08 -07:00
Earle F. Philhower, III f33df254f1 Add SPI::setMOSI/setMISO, better match pin names (#2166) 2024-05-20 14:43:55 -07:00
Earle F. Philhower, III 83a6aaca1c Update SDFat to use array transfers (#2164)
Fixes #2163
2024-05-17 13:52:47 -07:00
Earle F. Philhower, III 182af71492 Update StaticMulticore-FreeRTOS.ino (#2161) 2024-05-15 07:57:46 -07:00
Earle F. Philhower, III d4cdb3ea69 Fix LWIP crash on unexpected ping packets (#2159)
When a ping is sent from the Pico, a raw_recv callback is added which
sees all raw incoming packets to detect the response from the ping target.
If while waiting for the target response an external ping packet arrives
this incoming ping request packet will be processed by the
LwipIntfDev<>::_pingCB which will return "0" not processed and which
*should* not change the payload unless it handles the actual packet.

Unfortunately, the 20 byte header was unconditionally stripped off of
the packet before checking if this was our response, changing the
payload address and causing an assertion in LWIP.

Fix by using absolute offsets inside the raw packet for the ping
response checks.

Fixes #2156
Fixes #2149
2024-05-14 17:37:54 -07:00
Earle F. Philhower, III 016bf80e3b Protect againt calling LWIP_Ethernet::begin twice (#2158)
As seen in debug of #2149, if the LwipIntfDev is already _started,
return false for a ::begin() call.

Also, protect netif_add/_remove on the very small possibilty of being
called by LwipIntfDev devices while the CYW43 driver is doing work.
2024-05-13 19:08:38 -07:00
Earle F. Philhower, III d850de15fa Update version 2024-05-13 12:07:12 -07:00
Daniel Egnor 819a73ba5a Fix PID specification for arduino-cli (#2157) 2024-05-13 12:06:31 -07:00
Earle F. Philhower, III 8d4ef5ef8c FreeRTOS: Disable IRQs when task switching disabled (#2155)
Avoids crash seen in #2132
2024-05-10 18:53:45 -07:00
Juraj Andrássy 8673da2505 Ethernet legacy API compatibility layer (#2147)
With example from the Arduino Ethernet library
2024-05-06 10:06:51 -07:00
Earle F. Philhower, III fa58b6987a CI can use custom defines, add ESPHost/WINC tests (#2142)
If a file called `.ci.defines` is present in a directory, apply those
while building the specified sketch.

* Add an lwip_ESPHost test, like the wired Ethernet ones
* Add WINC1500 test and CI hook
* Remove 1 minor warning in WINC build
2024-05-02 13:37:50 -07:00
Earle F. Philhower, III 0b4afab56c Update README.md (#2141)
Add missing boards and WiFi types
2024-05-02 12:42:27 -07:00
Juraj Andrássy 597251d6b5 Add lwIP_WINC1500 - new WiFi driver for ATWINC1500 (#2140) 2024-05-02 12:13:21 -07:00
Earle F. Philhower, III 56e5559357 Minor keyword addition for syntax hilighting (#2139) 2024-05-01 12:27:03 -07:00
Earle F. Philhower, III 0b4394468b Update to latest Joystick upstream (#2138)
Fixes #2136
2024-04-30 12:46:28 -07:00
Dominic PearmanandDominic Pearman 315bfdace1 BTstack: remove superfluous call during setup. (#2137)
Co-authored-by: Dominic Pearman <dominic@phymorous.de>
2024-04-30 10:23:35 -07:00
Calvin Huang 783bee5c49 Add functions to set PDM pins, remove unused pwrPin (#2133)
* functions to set PDM pins

* change pin set method to better match existing libs
2024-04-29 09:32:22 -07:00
Dominic PearmanandDominic Pearman a439028087 BTstack: added function to set scan respone data. (#2134)
Co-authored-by: Dominic Pearman <dominic@phymorous.de>
2024-04-29 08:06:50 -07:00
Earle F. Philhower, III a49bcd4a95 Remove "EXAMPLE" from LWIP header (#2128)
The lwipopts.h file started with the PicoW example one, but no longer
tracks it, so remove the EXAMPLE define guard.
2024-04-26 11:00:11 -07:00
Earle F. Philhower, III 6279b60179 Add missing JSON files for new boards (#2125) 2024-04-25 15:39:09 -07:00
Earle F. Philhower, III a8e6634776 Avoid swapping L/R channels on I2S input (#2124)
Fixes #2123
2024-04-25 11:22:07 -07:00
Earle F. Philhower, III bd8eb9bca2 Shift I2S input data by 1 bit (#2121)
Fixes #2037
2024-04-24 11:20:22 -07:00
Earle F. Philhower, III d53d0033fe Update version 2024-04-22 07:58:48 -07:00
Earle F. Philhower, III d554df7670 Protect W5500/ENC28J60 isLinked() call from IRQ (#2115)
Fixes #2105

W5100 doesn't support isLinked, so no change needed there.
2024-04-19 13:59:11 -07:00
Earle F. Philhower, III 3aaa132e2e Add Waveshare RP2050-PiZero
Fixes #1870
2024-04-19 12:24:46 -07:00
Earle F. Philhower, III c2812e187b Add more verbosity to multicore docs (#2114) 2024-04-19 12:16:25 -07:00
Earle F. Philhower, III 683b62eda7 Add Waveshare RP2040 Matrix (#2113)
Fixes #2033
2024-04-19 12:13:07 -07:00
Earle F. Philhower, III ebbedb3e26 Add Olimex RP2040-Pico30 (#2112)
Same pinout as the plain Pico, just different flash and # of GPIOs

Fixes #2054
2024-04-19 11:49:01 -07:00
Earle F. Philhower, III 72148ffefc Add Sparkfun RP2040 MicroMod (#2111)
Fix #2094
2024-04-19 11:08:08 -07:00
Earle F. Philhower, III 074b952314 Add FatFS and FatFSUSB - Wear-Leveled FTL based FAT filesystem for onboard flash (#2028)
* Add FatFS for onboard flash use/sharing of FAT

* Move all to "fatfs" namespace

The FatFS library defines commonly used names like WORD which could conflict
with user code otherwise.

* Restyle

* FTL-based, wear-leveling FatFS with USB export

Allow using FAT filesystem with onboard flash in a safer, wear-leveled
way and to export the onboard flash to the host as a USB drive for easy
data transfer.

* Update documentation

* Fix submodule reference

* Don't spellehcek ChaN FatFS files

* Disable FTL debugging

* More codespell skips

* Move to latest SPIFTL library

* Allow using raw flash instead of FTL

* Remove unneeded static FIL 4k allocation

* Expose FAT FS format configuration options

* Update documentation

* Remove USB partial flash rewrites

* Remove unneeded dups of FatFS sources

Leave the LICENSE.md and README.md to point to upstream.

* Clean up comments
2024-04-19 10:52:02 -07:00
Kevin Witteveen (MartiniMarter) 11dfb2c913 Add WiFi::beginNoBlock() (#2063) 2024-04-19 10:16:03 -07:00
Earle F. Philhower, III 55ea2b515c Add some missing keywords.txt entries (#2109) 2024-04-19 04:17:35 -07:00
Earle F. Philhower, III 6c22ea3be1 Set creation time on LittleFS directory creation (#2108) 2024-04-18 15:58:06 -07:00
Earle F. Philhower, III 1be28b55e4 Update to Adafruit TinyUSB 3.1.3 (#2043) 2024-04-18 15:49:20 -07:00
Earle F. Philhower, III 48a52e61ce Update to SDFat 2.2.2 release (#2079) 2024-04-18 15:05:36 -07:00
Ha Thach f737be3320 Add native text to TinyUSB Host menu option (#2098) 2024-04-15 09:19:37 -07:00
Juraj Andrássy 2a256f9c25 LwipIntfDev - linkStatus added (#2081) 2024-03-29 09:14:05 -07:00
Jean-Luc Béchennec c62215663f Add 128MHz frequency (#2069) 2024-03-22 08:22:22 -07:00
Dominic Pearman fd6941479d Fixed code block in piouart.rst (#2064) 2024-03-20 03:48:09 -07:00
Aaron Tulino 175cbcdcdf Minor typo (IQR instead of IRQ) (#2060) 2024-03-19 05:25:07 -07:00
Juraj Andrássy 71edeb8d1a lwIP_enc28j60 - add missing end() method (#2055) 2024-03-16 14:10:12 -07:00
Dominic Pearman c90248dc10 Minor corrections to ota.rst (#2053)
Hi,

Just a typo and a couple of wording corrections.
2024-03-13 07:02:29 -07:00
Earle F. Philhower, III a8d1067125 Unswap CTS/RTS enable on SeriaUART (#2052)
Fixes #2047
2024-03-10 13:23:33 -07:00
Juraj Andrássy 22139df33c Enable interrupt-mode for lwIP_ESPHost (#2036) 2024-03-06 12:38:29 -08:00
Juraj Andrássy 9c94bab290 Add RawDev::interruptMode (#2042) 2024-03-06 11:58:37 -08:00
Earle F. Philhower, III ea8874037c Use passed-in SPI on SD.end(true) (#2040)
Fixes #2034
2024-03-05 12:22:01 -08:00
Earle F. Philhower, III 77209a12cc Update SPISlave.cpp (#2021)
Fixes #2019
2024-02-23 09:46:42 -08:00
Earle F. Philhower, III c670f66140 Update version 2024-02-16 13:11:02 -08:00
Earle F. Philhower, III a09ce0d8d0 Update Windows Picotool blob pointers (#2009)
Fixes #2008
2024-02-16 11:38:39 -08:00
Earle F. Philhower, III 795968a8e0 Clean up WIFI local variable MAC size (#2006)
MACs are 6-bytes long, not 8.
2024-02-14 12:17:09 -08:00
Earle F. Philhower, III 01ab02d02a Fix ESPHost WiFi connect without a specified BSSID (#2007)
See https://github.com/earlephilhower/arduino-pico/pull/2001#issuecomment-1944461469
2024-02-14 12:00:06 -08:00
Earle F. Philhower, III 7e73e0b5b4 Can't call get_rand_64 under FreeRTOS (#2004)
Remove the HW random generator call while initting LWIP to avoid the SDK
looping forver due to FreeRTOS exception/timer interrupts.
2024-02-13 12:08:33 -08:00
Earle F. Philhower, III 91c007eb8f Update version 2024-02-12 10:38:24 -08:00
ardnew b29f6b922f Update README.md (#1999)
The `Picoprobe` example showing how to upload to Ubuntu is invalid because Ubuntu does not create or assign users to a `users` group (for many major releases, now). 

The reason the example worked is because the permissions were applied globally, rendering the `GROUP=users` assignment in the rule irrelevant. Hence, this assignment has been dropped.  

The `pico-debug` example has been updated similarly, but it uses a proper group-level rule, and Ubuntu does still use group `plugdev`. 

The reader thus has two good examples of creating `udev` rules.
2024-02-12 10:27:52 -08:00
Earle F. Philhower, III 40e52f84b8 Fix WiFiMulti and ESPhost STA connection w/BSSID (#2001)
WiFiMulti specifies a specific BSSID, in addition to the AP name and
password.  In the WiFi core the BSSID is stored as the raw 6-byte MAC
address, but the ESPHostedFG firmware expects a formatted C-String
(i.e. "ab:cd:ef:01:02:03" instead of {0xab, 0xcd, 0xef, 1, 2, 3})

Convert the raw bytes to the string format expected in the ESP FW.
2024-02-12 10:17:36 -08:00
Earle F. Philhower, III 972b7f53be Fix warning in lwip_ESPHost, add to styler (#1998) 2024-02-11 11:51:16 -08:00
Kevin Witteveen fc894fba0e PWMAudio low bitrate whine fix (DMA pacing timer) (#1996) 2024-02-10 09:17:37 -08:00
Earle F. Philhower, III 929ee98a6c Make W5100 example run on Wiznet w/no changes (#1994)
Use the #define board name to identify when building for the
WIZnet W5100s-EVB-Pico and assign the proper pins and IRQs.
2024-02-09 14:06:28 -08:00
Earle F. Philhower, III 88ccf0c256 Undo FreeRTOS idleOtherCore changes (#1992)
Fixes #1991
2024-02-09 09:46:30 -08:00
Terry Phillips 874b41f549 Update wire.rst (#1990)
Correct buffer size to match Wire.h
2024-02-06 16:27:08 -08:00
LinusHeu fcd47fe170 Update ide.rst (#1989)
Remove outdated(?) info
2024-02-06 15:43:14 -08:00
Earle F. Philhower, III 842ec245ac Add W5100, W5500, and ECN28J60 interrupt-driven mode (#1986)
No polling needed and massively reduces latency by using the GPIO interrupt to
signal the Pico to read a received packet.  Also drops CPU load when no packets
are incoming.
2024-02-06 14:15:37 -08:00
Earle F. Philhower, III a41618fa87 Make Python3 re.split() use a r-string (#1985)
Fixes #1983
2024-02-06 09:49:45 -08:00
Earle F. Philhower, III c095fce5b2 More GH action updates (#1980) 2024-02-02 09:24:22 -08:00
Earle F. Philhower, III 6715e5e6b7 Update version 2024-02-02 09:10:28 -08:00
Earle F. Philhower, III 12702717e3 Undo #1864, fix LWIP offline error (#1979)
Fixes #1973

The periodic LWIP pump/Ethernet packet reader async_context stopped
firing occasionally under high packet loads, causing the LWIP stack
to become unresponsive to any incoming data.

Re-implement the 2-step process for polling (like the CYW43 driver
from the RPI folks does) and undoes #1864 change.
2024-02-01 19:09:09 -08:00
Earle F. Philhower, III 9c66d9737b Update all GitHub actions, remove deprecation warn (#1978) 2024-02-01 11:51:28 -08:00
Earle F. Philhower, III 7f5756c464 Make OpenOCD and Picotool M1 native, too (#1977)
All binaries should now be native on Apple silicon.
2024-02-01 11:43:41 -08:00
Earle F. Philhower, III 1a30113f0d Use ARM Python3 on M1 (#1976) 2024-01-31 09:38:47 -08:00
Earle F. Philhower, III f1170e9d54 Fix Apple M1 installation, add to CI (#1975) 2024-01-31 08:45:10 -08:00
Earle F. Philhower, III 1bf41bcc60 Add native Apple ARM silicon support (#1959)
* Add native Apple ARM silicon M1/M2/M3 support

* Identify Mac ARM in download get.py script

Thanks to the ESP32 `get.py` sources!

* Rebuild M1 w/o using strip
2024-01-30 15:06:52 -08:00
Juraj Andrássy 7180ca3b0c Add ESP32-based WiFi support via lwIP_ESPHost library (#1950) 2024-01-30 14:57:04 -08:00
Earle F. Philhower, III c64a4a58d7 Fix initial SPI startup (#1970)
Clocks were not being set at all after #1934.  Ensure they are by initting
to an impossible 0hz clock on creation and ::end

Fixes #1969
2024-01-28 16:21:48 -08:00
Nerradia 02c272b091 Skip SPI re-init if clock frequency doesn't change (#1934) 2024-01-28 10:27:12 -08:00
Juraj Andrássy 2a74250a51 lwIP_nodriver - end() compilation error fix (#1966) 2024-01-28 06:49:31 -08:00
Pontus Oldberg adb23c1cac Fixed incorrect pinout for SPI interface. (#1951) 2024-01-22 06:16:16 -08:00
Earle F. Philhower, III a99a572bda Add TZ.h database, borrowed from ESP8266 core (#1947) 2024-01-20 15:57:15 -08:00
Earle F. Philhower, III 7ce7dde06a Update README.md (#1946) 2024-01-20 12:51:53 -08:00
Juraj Andrássy fef8d2c384 WiFi - prepare for alternative drivers (#1935) 2024-01-20 12:35:13 -08:00
Pontus Oldberg 916c31d934 Adds iLabs RP2040 Connectivity (LTE/WIFI/BLE) board. (#1936) 2024-01-12 07:32:27 -08:00
Arnoz 403c147fa3 Adding Dude's Cab board (#1933)
Adding Dude's Cab board (rp2040 based board for virtual pinball use)
2024-01-10 14:02:07 -08:00
noqman 915e093564 Change Maker UNO RP2040 to Maker Uno RP2040 and board name in README.md (#1924) 2024-01-05 07:12:24 -08:00
313 changed files with 132636 additions and 1715 deletions
+82 -33
View File
@@ -13,28 +13,21 @@ env:
jobs:
# Me no spell so good
code-spell:
name: Check spelling
# Consistent style, spelling
astyle:
name: Spelling, Style, Boards, Package
runs-on: ubuntu-latest
steps:
- uses: actions/checkout@v3
- uses: actions/checkout@v4
with:
submodules: true
submodules: false
- name: Run codespell
uses: codespell-project/actions-codespell@master
with:
skip: ./ArduinoCore-API,./libraries/ESP8266SdFat,./libraries/Adafruit_TinyUSB_Arduino,./libraries/LittleFS/lib,./tools/pyserial,./pico-sdk,./.github,./docs/i2s.rst,./cores/rp2040/api,./libraries/FreeRTOS,./tools/libbearssl/bearssl,./include,./libraries/WiFi/examples/BearSSL_Server,./ota/uzlib,./libraries/http-parser/lib,./libraries/WebServer/examples/HelloServerBearSSL/HelloServerBearSSL.ino,./libraries/HTTPUpdateServer/examples/SecureBearSSLUpdater/SecureBearSSLUpdater.ino,./.git
ignore_words_list: ser,dout
# Consistent style
astyle:
name: Style, Boards, Package
runs-on: ubuntu-latest
steps:
- uses: actions/checkout@v3
with:
submodules: false
skip: ./ArduinoCore-API,./libraries/ESP8266SdFat,./libraries/Adafruit_TinyUSB_Arduino,./libraries/LittleFS/lib,./tools/pyserial,./pico-sdk,./.github,./docs/i2s.rst,./cores/rp2040/api,./libraries/FreeRTOS,./tools/libbearssl/bearssl,./include,./libraries/WiFi/examples/BearSSL_Server,./ota/uzlib,./libraries/http-parser/lib,./libraries/WebServer/examples/HelloServerBearSSL/HelloServerBearSSL.ino,./libraries/HTTPUpdateServer/examples/SecureBearSSLUpdater/SecureBearSSLUpdater.ino,./.git,./libraries/FatFS/lib/fatfs,./libraries/FatFS/src/diskio.h,./libraries/FatFS/src/ff.cpp,./libraries/FatFS/src/ffconf.h,./libraries/FatFS/src/ffsystem.cpp,./libraries/FatFS/src/ff.h,./libraries/lwIP_WINC1500/src/driver,./libraries/lwIP_WINC1500/src/common,./libraries/lwIP_WINC1500/src/bus_wrapper,./libraries/lwIP_WINC1500/src/spi_flash
ignore_words_list: ser,dout,shiftIn,acount
- name: Get submodules for following tests
run: git submodule update --init
- name: Check package references
run: |
./tests/ci/pkgrefs_test.sh
@@ -59,15 +52,15 @@ jobs:
matrix:
chunk: [0, 1, 2, 3, 4, 5]
steps:
- uses: actions/checkout@v3
- uses: actions/checkout@v4
with:
submodules: true
- uses: actions/setup-python@v4
- uses: actions/setup-python@v5
with:
python-version: '3.x'
- name: Cache Linux toolchain
id: cache-linux
uses: actions/cache@v3
uses: actions/cache@v4
with:
path: ./tools/dist
key: ${{ runner.os }}-${{ hashFiles('package/package_pico_index.template.json', 'tests/common.sh') }}
@@ -87,15 +80,15 @@ jobs:
name: Build TinyUSB Examples
runs-on: ubuntu-latest
steps:
- uses: actions/checkout@v3
- uses: actions/checkout@v4
with:
submodules: true
- uses: actions/setup-python@v4
- uses: actions/setup-python@v5
with:
python-version: '3.x'
- name: Cache Linux toolchain
id: cache-linux
uses: actions/cache@v3
uses: actions/cache@v4
with:
path: ./tools/dist
key: ${{ runner.os }}-${{ hashFiles('package/package_pico_index.template.json', 'tests/common.sh') }}
@@ -113,15 +106,15 @@ jobs:
name: Windows
runs-on: windows-latest
steps:
- uses: actions/checkout@v3
- uses: actions/checkout@v4
with:
submodules: true
- uses: actions/setup-python@v4
- uses: actions/setup-python@v5
with:
python-version: '3.x'
- name: Cache Windows toolchain
id: cache-windows
uses: actions/cache@v3
uses: actions/cache@v4
with:
path: ./tools/dist
key: ${{ runner.os }}-${{ hashFiles('package/package_pico_index.template.json', 'tests/common.sh') }}
@@ -144,17 +137,20 @@ jobs:
# Single build under macOS to ensure the Mac toolchain is good.
build-mac:
name: Mac
runs-on: macOS-12
strategy:
matrix:
os: [macOS-12, macOS-14]
runs-on: ${{ matrix.os }}
steps:
- uses: actions/checkout@v3
- uses: actions/checkout@v4
with:
submodules: true
- uses: actions/setup-python@v4
- uses: actions/setup-python@v5
with:
python-version: '3.x'
- name: Cache Mac toolchain
id: cache-mac
uses: actions/cache@v3
uses: actions/cache@v4
with:
path: ./tools/dist
key: ${{ runner.os }}-${{ hashFiles('package/package_pico_index.template.json', 'tests/common.sh') }}
@@ -165,6 +161,7 @@ jobs:
mod: 500
rem: 1
run: |
uname -a
cd pico-sdk
git submodule update --init
cd ..
@@ -175,7 +172,7 @@ jobs:
name: Build PlatformIO Examples
runs-on: ubuntu-latest
steps:
- uses: actions/checkout@v3
- uses: actions/checkout@v4
with:
submodules: 'true'
- name: Initialize needed submodules
@@ -186,19 +183,19 @@ jobs:
git submodule update --init
cd ../..
- name: Cache pip
uses: actions/cache@v3
uses: actions/cache@v4
with:
path: ~/.cache/pip
key: ${{ runner.os }}-pip-${{ hashFiles('**/requirements.txt') }}
restore-keys: |
${{ runner.os }}-pip-
- name: Cache PlatformIO
uses: actions/cache@v3
uses: actions/cache@v4
with:
path: ~/.platformio
key: ${{ runner.os }}-${{ hashFiles('**/lockfiles') }}
- name: Set up Python
uses: actions/setup-python@v4
uses: actions/setup-python@v5
with:
python-version: '3.x'
- name: Install PlatformIO
@@ -219,3 +216,55 @@ jobs:
run: pio ci --board=rpipicow -O "platform_packages=framework-arduinopico@symlink:///home/runner/work/arduino-pico/arduino-pico" libraries/ArduinoOTA/examples/SignedOTA/SignedOTA.ino
- name: Build Bluetooth Example
run: pio ci --board=rpipicow -O "platform_packages=framework-arduinopico@symlink:///home/runner/work/arduino-pico/arduino-pico" -O "build_flags=-DPIO_FRAMEWORK_ARDUINO_ENABLE_BLUETOOTH" libraries/MouseBLE/examples/BLECircle/BLECircle.ino
# Build every variant using PIO for simplicity
build-variants:
name: Build Every Variant ${{ matrix.chunk }}
runs-on: ubuntu-latest
strategy:
matrix:
chunk: [0, 1]
steps:
- uses: actions/checkout@v4
with:
submodules: 'true'
- name: Initialize needed submodules
run: |
cd pico-sdk
git submodule update --init
cd ../libraries/Adafruit_TinyUSB_Arduino
git submodule update --init
cd ../..
- name: Cache pip
uses: actions/cache@v4
with:
path: ~/.cache/pip
key: ${{ runner.os }}-pip-${{ hashFiles('**/requirements.txt') }}
restore-keys: |
${{ runner.os }}-pip-
- name: Cache PlatformIO
uses: actions/cache@v4
with:
path: ~/.platformio
key: ${{ runner.os }}-${{ hashFiles('**/lockfiles') }}
- name: Set up Python
uses: actions/setup-python@v5
with:
python-version: '3.x'
- name: Install PlatformIO
run: |
python -m pip install --upgrade pip
pip install --upgrade platformio
pio pkg install --global --platform https://github.com/maxgerhardt/platform-raspberrypi.git
pio pkg install --global --tool symlink://.
cp -f /home/runner/work/arduino-pico/arduino-pico/tools/json/*.json /home/runner/.platformio/platforms/raspberrypi/boards/.
- name: Build Every Variant
run: |
cnt=0
for b in $(cut -f1 -d. /home/runner/work/arduino-pico/arduino-pico/boards.txt | sed 's/#.*//' | sed 's/^menu$//' | sort -u); do
cnt=$((cnt + 1))
rem=$((cnt % 2))
if [ $rem == ${{ matrix.chunk }} ]; then
pio ci --board=$b -O "platform_packages=framework-arduinopico@symlink:///home/runner/work/arduino-pico/arduino-pico" libraries/rp2040/examples/Bootsel/Bootsel.ino
fi
done
+4 -4
View File
@@ -9,21 +9,21 @@ jobs:
name: Update master JSON file
runs-on: ubuntu-latest
steps:
- uses: actions/checkout@v3
- uses: actions/checkout@v4
with:
submodules: true
- name: Cache pip
uses: actions/cache@v3
uses: actions/cache@v4
with:
path: ~/.cache/pip
key: ${{ runner.os }}-pip-${{ hashFiles('**/requirements.txt') }}
restore-keys: |
${{ runner.os }}-pip-
- uses: actions/setup-python@v4
- uses: actions/setup-python@v5
with:
python-version: '3.x'
# - name: Cache PlatformIO
# uses: actions/cache@v3
# uses: actions/cache@v4
# with:
# path: ~/.platformio
# key: ${{ runner.os }}-${{ hashFiles('**/lockfiles') }}
+2 -2
View File
@@ -15,11 +15,11 @@ jobs:
name: Package
runs-on: ubuntu-latest
steps:
- uses: actions/checkout@v3
- uses: actions/checkout@v4
with:
submodules: true
fetch-depth: 0
- uses: actions/setup-python@v4
- uses: actions/setup-python@v5
with:
python-version: '3.x'
- name: Build package JSON
+6
View File
@@ -37,3 +37,9 @@
[submodule "libraries/http_parser/lib/http-parser"]
path = libraries/http-parser/lib/http-parser
url = https://github.com/nodejs/http-parser.git
[submodule "libraries/FatFS/lib/SPIFTL"]
path = libraries/FatFS/lib/SPIFTL
url = https://github.com/earlephilhower/SPIFTL.git
[submodule "libraries/AsyncUDP"]
path = libraries/AsyncUDP
url = https://github.com/earlephilhower/AsyncUDP.git
+58 -46
View File
@@ -25,17 +25,26 @@ Read the [Contributing Guide](https://github.com/earlephilhower/arduino-pico/blo
* Adafruit QTPy RP2040
* Adafruit STEMMA Friend RP2040
* Adafruit Trinkey RP2040 QT
* Amken Bunny
* Amken Revelop
* Amken Revelop Plus
* Amken Revelop eS
* Arduino Nano RP2040 Connect
* ArtronShop RP2 Nano
* Breadstick Raspberry
* BridgeTek IDM2040-7A
* BridgeTek IDM2040-43A
* Cytron Maker Pi RP2040
* Cytron Maker Nano RP2040
* Cytron Maker Uno RP2040
* DatanoiseTV PicoADK+
* Degz Suibo RP2040
* DeRuiLab FlyBoard2040 Core
* DFRobot Beetle RP2040
* ElectronicCats Hunter Cat NFC
* EVN Alpha
* ExtremeElectronics RC2040
* GroundStudio Marble Pico
* Invector Labs Challenger RP2040 WiFi
* Invector Labs Challenger RP2040 WiFi/BLE
* Invector Labs Challenger RP2040 WiFi6/BLE
@@ -48,11 +57,15 @@ Read the [Contributing Guide](https://github.com/earlephilhower/arduino-pico/blo
* Invector Labs RPICO32
* Melopero Cookie RP2040
* Melopero Shake RP2040
* METE HOCA Akana R1
* Neko Systems BL2040 Mini
* Olimex RP2040-Pico30
* Newsan Archi
* nullbits Bit-C PRO
* Pimoroni PGA2040
* Pimoroni Plasma2040
* Pimoroni Tiny2040
* Pintronix PinMax
* RAKwireless RAK11300
* Redscorp RP2040-Eins
* Redscorp RP2040-ProMini
@@ -61,6 +74,7 @@ Read the [Contributing Guide](https://github.com/earlephilhower/arduino-pico/blo
* Seeed XIAO RP2040
* Silicognition RP2040-Shim
* Solder Party RP2040 Stamp
* SparkFun MicroMod RP2040
* SparkFun ProMicro RP2040
* SparkFun Thing Plus RP2040
* uPesy RP2040 DevKit
@@ -71,11 +85,43 @@ Read the [Contributing Guide](https://github.com/earlephilhower/arduino-pico/blo
* Waveshare RP2040 Plus
* Waveshare RP2040 LCD 0.96
* Waveshare RP2040 LCD 1.28
* Waveshare RP2040 Matrix
* Waveshare RP2040 PiZero
* WIZnet W5100S-EVB-Pico
* WIZnet W5500-EVB-Pico
* WIZnet WizFi360-EVB-Pico
* Generic (configurable flash, I/O pins)
# Features
* Adafruit TinyUSB Arduino (USB mouse, keyboard, flash drive, generic HID, CDC Serial, MIDI, WebUSB, others)
* Bluetooth on the PicoW (Classic and BLE) with Keyboard, Mouse, Joystick, and Virtual Serial
* Bluetooth Classic and BLE HID master mode (connect to BT keyboard, mouse, or joystick)
* Generic Arduino USB Serial, Keyboard, Joystick, and Mouse emulation
* WiFi (Pico W, ESP32-based ESPHost, Atmel WINC1500)
* Ethernet (Wired W5500, W5100, ENC28J60)
* HTTP client and server (WebServer)
* SSL/TLS/HTTPS
* Over-the-Air (OTA) upgrades
* Filesystems (LittleFS and SD/SDFS)
* Multicore support (setup1() and loop1())
* FreeRTOS SMP support
* Overclocking and underclocking from the menus
* digitalWrite/Read, shiftIn/Out, tone, analogWrite(PWM)/Read, temperature
* Analog stereo audio in using DMA and the built-in ADC
* Analog stereo audio out using PWM hardware
* Bluetooth A2DP audio source (output) and sink (input) on the PicoW
* USB drive mode for data loggers (SingleFileDrive, FatFSUSB)
* Peripherals: SPI master/slave, Wire(I2C) master/slave, dual UART, emulated EEPROM, I2S audio input/output, Servo
* printf (i.e. debug) output over USB serial
The RP2040 PIO state machines (SMs) are used to generate jitter-free:
* Servos
* Tones
* I2S Input
* I2S Output
* Software UARTs (Serial ports)
# Installing via Arduino Boards Manager
## Windows-specific Notes
Please do not use the Windows Store version of the actual Arduino application
@@ -173,11 +219,14 @@ Under Windows a local admin user should be able to access the Picoprobe port aut
To set up user-level access to Picoprobes on Ubuntu (and other OSes which use `udev`):
````
echo 'SUBSYSTEMS=="usb", ATTRS{idVendor}=="2e8a", ATTRS{idProduct}=="0004", GROUP="users", MODE="0666"' | sudo tee -a /etc/udev/rules.d/98-PicoProbe.rules
echo 'SUBSYSTEMS=="usb", ATTRS{idVendor}=="2e8a", ATTRS{idProduct}=="0004", MODE="0666"' | sudo tee -a /etc/udev/rules.d/98-PicoProbe.rules
sudo udevadm control --reload
sudo udevadm trigger -w -s usb
````
The first line creates a file with the USB vendor and ID of the Picoprobe and tells UDEV to give users full access to it. The second causes `udev` to load this new rule. Note that you will need to unplug and re-plug in your device the first time you create this file, to allow udev to make the device node properly.
The first line creates a device file in `/dev` matching the USB vendor and product ID of the Picoprobe, and it enables global read+write permissions. The second line causes `udev` to load this new rule. The third line requests the kernel generate "device change" events that will cause our new `udev` rule to run.
If for some reason the device file does not appear, manually unplug and re-plug the USB connection and check again. The output from `dmesg` can reveal useful diagnostics if the device file remains absent.
Once Picoprobe permissions are set up properly, then select the board "Raspberry Pi Pico (Picoprobe)" in the Tools menu and upload as normal.
@@ -186,13 +235,16 @@ Once Picoprobe permissions are set up properly, then select the board "Raspberry
Under Windows and macOS, any user should be able to access pico-debug automatically, but under Linux `udev` must be told about the device and to allow normal users access.
To set up user-level access to all CMSIS-DAP adapters on Ubuntu (and other OSes which use `udev`):
To set up group-level access to all CMSIS-DAP adapters on Ubuntu (and other OSes which use `udev`):
````
echo 'ATTRS{product}=="*CMSIS-DAP*", MODE="664", GROUP="plugdev"' | sudo tee -a /etc/udev/rules.d/98-CMSIS-DAP.rules
sudo udevadm control --reload
sudo udevadm trigger -w -s usb
````
The first line creates a file that recognizes all CMSIS-DAP adapters and tells UDEV to give users full access to it. The second causes `udev` to load this new rule. Note that you will need to unplug and re-plug in your device the first time you create this file, to allow udev to make the device node properly.
The first line creates a device file in `/dev` that matches all CMSIS-DAP adapters, and it enables read+write permissions for members of the `plugdev` group. The second line causes `udev` to load this new rule. The third line requests the kernel generate "device change" events that will cause our new `udev` rule to run.
If for some reason the device file does not appear, manually unplug and re-plug the USB connection and check again. The output from `dmesg` can reveal useful diagnostics if the device file remains absent.
Once CMSIS-DAP permissions are set up properly, then select the board "Raspberry Pi Pico (pico-debug)" in the Tools menu.
@@ -201,48 +253,6 @@ When first connecting the USB port to your PC, you must copy [pico-debug-gimmeca
# Debugging with Picoprobe/pico-debug, OpenOCD, and GDB
The installed tools include a version of OpenOCD (in the pqt-openocd directory) and GDB (in the pqt-gcc directory). These may be used to run GDB in an interactive window as documented in the Pico Getting Started manuals from the Raspberry Pi Foundation. For [pico-debug](https://github.com/majbthrd/pico-debug/), replace the raspberrypi-swd and picoprobe example OpenOCD arguments of "-f interface/raspberrypi-swd.cfg -f target/rp2040.cfg" or "-f interface/picoprobe.cfg -f target/rp2040.cfg" respectively in the Pico Getting Started manual with "-f board/pico-debug.cfg".
# Features
* Adafruit TinyUSB Arduino (USB mouse, keyboard, flash drive, generic HID, CDC Serial, MIDI, WebUSB, others)
* Bluetooth on the PicoW (Classic and BLE) with Keyboard, Mouse, Joystick, and Virtual Serial
* Generic Arduino USB Serial, Keyboard, Joystick, and Mouse emulation
* WiFi (Pico W)
* Ethernet (Wired W5500, W5100, ENC28J60)
* HTTP client and server (WebServer)
* SSL/TLS/HTTPS
* Over-the-Air (OTA) upgrades
* Filesystems (LittleFS and SD/SDFS)
* Multicore support (setup1() and loop1())
* FreeRTOS SMP support
* Overclocking and underclocking from the menus
* digitalWrite/Read, shiftIn/Out, tone, analogWrite(PWM)/Read, temperature
* Analog stereo audio in using DMA and the built-in ADC
* Analog stereo audio out using PWM hardware
* USB drive mode for data loggers (SingleFileDrive)
* Peripherals: SPI master/slave, Wire(I2C) master/slave, dual UART, emulated EEPROM, I2S audio input/output, Servo
* printf (i.e. debug) output over USB serial
The RP2040 PIO state machines (SMs) are used to generate jitter-free:
* Servos
* Tones
* I2S Input
* I2S Output
* Software UARTs (Serial ports)
# Tutorials from Across the Web
Here are some links to coverage and additional tutorials for using `arduino-pico`
* The File:: class is taken from the ESP8266. See https://arduino-esp8266.readthedocs.io/en/latest/filesystem.html
* Arduino Support for the Pi Pico available! And how fast is the Pico? - https://youtu.be/-XHh17cuH5E
* Pre-release Adafruit QT Py RP2040 - https://www.youtube.com/watch?v=sfC1msqXX0I
* Adafruit Feather RP2040 running LCD + TMP117 - https://www.youtube.com/watch?v=fKDeqZiIwHg
* Demonstration of Servos and I2C in Korean - https://cafe.naver.com/arduinoshield/1201
* Home Assistant Pico W integration starter project using Arduino - https://github.com/daniloc/PicoW_HomeAssistant_Starter
* Tutorials for the Raspberry Pi Pico / uPesy RP2040 DevKit board
- English version: https://www.upesy.com/blogs/tutorials/best-tutorials-for-rpi-pi-pico-with-arduino-code
- French version: https://www.upesy.fr/blogs/tutorials/best-tutorials-for-rpi-pi-pico-with-arduino-code
# Contributing
If you want to contribute or have bugfixes, drop me a note at <earlephilhower@yahoo.com> or open an issue/PR here.
# Licensing and Credits
* The [Arduino IDE and ArduinoCore-API](https://arduino.cc) are developed and maintained by the Arduino team. The IDE is licensed under GPL.
* The [RP2040 GCC-based toolchain](https://github.com/earlephilhower/pico-quick-toolchain) is licensed under under the GPL.
@@ -260,6 +270,8 @@ If you want to contribute or have bugfixes, drop me a note at <earlephilhower@ya
* [http-parser](https://github.com/nodejs/http-parser) is copyright Joyent, Inc. and other Node contributors.
* WebServer code modified from the [ESP32 WebServer](https://github.com/espressif/arduino-esp32/tree/master/libraries/WebServer) and is copyright (c) 2015 Ivan Grokhotkov and others.
* [Xoshiro-cpp](https://github.com/Reputeless/Xoshiro-cpp) is copyright (c) 2020 Ryo Suzuki and distributed under the MIT license.
* [FatFS low-level filesystem](http://elm-chan.org/fsw/ff/) code is Copyright (C) 2024, ChaN, all rights reserved.
-Earle F. Philhower, III
earlephilhower@yahoo.com
+8513 -623
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File diff suppressed because it is too large Load Diff
@@ -0,0 +1,23 @@
// Padded and checksummed version of: generated\Winbond\W25Q32JVxQ\boot2.bin
.cpu cortex-m0plus
.thumb
.section .boot2, "ax"
.byte 0xf7, 0xb5, 0x73, 0x46, 0x21, 0x22, 0x02, 0x25, 0x01, 0x93, 0x29, 0x4b, 0xc0, 0x24, 0x5a, 0x60
.byte 0x9a, 0x68, 0x01, 0x26, 0xaa, 0x43, 0xda, 0x60, 0x9a, 0x60, 0x1a, 0x61, 0x5a, 0x61, 0x00, 0x23
.byte 0x64, 0x05, 0xa3, 0x60, 0x04, 0x33, 0x63, 0x61, 0x22, 0x4b, 0x28, 0x00, 0x1e, 0x60, 0xe0, 0x23
.byte 0xdb, 0x02, 0x23, 0x60, 0x35, 0x23, 0xa6, 0x60, 0x23, 0x66, 0x23, 0x66, 0x00, 0xf0, 0x4a, 0xf8
.byte 0xc0, 0xb2, 0xa8, 0x42, 0x12, 0xd0, 0x06, 0x23, 0x30, 0x00, 0x23, 0x66, 0x00, 0xf0, 0x42, 0xf8
.byte 0x31, 0x23, 0x28, 0x00, 0x23, 0x66, 0x25, 0x66, 0x00, 0xf0, 0x3c, 0xf8, 0x03, 0x35, 0x25, 0x66
.byte 0x02, 0x20, 0x25, 0x66, 0x00, 0xf0, 0x36, 0xf8, 0x30, 0x42, 0xf8, 0xd1, 0x00, 0x25, 0x12, 0x4b
.byte 0xa5, 0x60, 0x12, 0x4f, 0x23, 0x60, 0x12, 0x4b, 0x65, 0x60, 0x01, 0x26, 0x3b, 0x60, 0xeb, 0x23
.byte 0xa6, 0x60, 0x23, 0x66, 0x4b, 0x3b, 0x23, 0x66, 0x02, 0x20, 0x00, 0xf0, 0x23, 0xf8, 0x0d, 0x4b
.byte 0xa5, 0x60, 0x3b, 0x60, 0xa6, 0x60, 0x01, 0x9b, 0xab, 0x42, 0x08, 0xd1, 0x0a, 0x4b, 0x0b, 0x4a
.byte 0x13, 0x60, 0x1b, 0x68, 0x83, 0xf3, 0x08, 0x88, 0x09, 0x4b, 0x1b, 0x68, 0x18, 0x47, 0xf7, 0xbd
.byte 0x00, 0x00, 0x02, 0x40, 0xf0, 0x00, 0x00, 0x18, 0x00, 0x03, 0x5f, 0x00, 0xf4, 0x00, 0x00, 0x18
.byte 0x21, 0x22, 0x00, 0x00, 0x22, 0x20, 0x00, 0xa0, 0x00, 0x01, 0x00, 0x10, 0x08, 0xed, 0x00, 0xe0
.byte 0x04, 0x01, 0x00, 0x10, 0xc0, 0x23, 0x02, 0x00, 0x04, 0x21, 0x5b, 0x05, 0x98, 0x6a, 0x08, 0x42
.byte 0xfc, 0xd0, 0x01, 0x21, 0x98, 0x6a, 0x08, 0x42, 0xfc, 0xd1, 0x18, 0x6e, 0x01, 0x2a, 0x00, 0xd0
.byte 0x18, 0x6e, 0x70, 0x47, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x66, 0x2d, 0x68, 0xca
+3 -3
View File
@@ -65,9 +65,9 @@ void noInterrupts();
#define digitalPinToTimer(pin) (0)
#define digitalPinToInterrupt(pin) (pin)
#define NOT_AN_INTERRUPT (-1)
#define portOutputRegister(port) ((volatile uint32_t*) sio_hw->gpio_out)
#define portInputRegister(port) ((volatile uint32_t*) sio_hw->gpio_in)
#define portModeRegister(port) ((volatile uint32_t*) sio_hw->gpio_oe)
#define portOutputRegister(port) ((volatile uint32_t *)&(sio_hw->gpio_out))
#define portInputRegister(port) ((volatile uint32_t *)&(sio_hw->gpio_in))
#define portModeRegister(port) ((volatile uint32_t *)&(sio_hw->gpio_oe))
#define digitalWriteFast(pin, val) (val ? sio_hw->gpio_set = (1 << pin) : sio_hw->gpio_clr = (1 << pin))
#define digitalReadFast(pin) ((1 << pin) & sio_hw->gpio_in)
#define sei() interrupts()
+43 -2
View File
@@ -155,11 +155,52 @@ static uint8_t *GetDescHIDReport(int *len) {
return __hid_report;
}
#define TUD_HID_REPORT_DESC_GAMEPAD16(...) \
HID_USAGE_PAGE ( HID_USAGE_PAGE_DESKTOP ) ,\
HID_USAGE ( HID_USAGE_DESKTOP_GAMEPAD ) ,\
HID_COLLECTION ( HID_COLLECTION_APPLICATION ) ,\
/* Report ID if any */\
__VA_ARGS__ \
/* 16 bit X, Y, Z, Rz, Rx, Ry (min -32767, max 32767 ) */ \
HID_USAGE_PAGE ( HID_USAGE_PAGE_DESKTOP ) ,\
HID_USAGE ( HID_USAGE_DESKTOP_X ) ,\
HID_USAGE ( HID_USAGE_DESKTOP_Y ) ,\
HID_USAGE ( HID_USAGE_DESKTOP_Z ) ,\
HID_USAGE ( HID_USAGE_DESKTOP_RZ ) ,\
HID_USAGE ( HID_USAGE_DESKTOP_RX ) ,\
HID_USAGE ( HID_USAGE_DESKTOP_RY ) ,\
HID_LOGICAL_MIN_N ( -32767, 2 ) ,\
HID_LOGICAL_MAX_N ( 32767, 2 ) ,\
HID_REPORT_COUNT ( 6 ) ,\
HID_REPORT_SIZE ( 16 ) ,\
HID_INPUT ( HID_DATA | HID_VARIABLE | HID_ABSOLUTE ) ,\
/* 8 bit DPad/Hat Button Map */ \
HID_USAGE_PAGE ( HID_USAGE_PAGE_DESKTOP ) ,\
HID_USAGE ( HID_USAGE_DESKTOP_HAT_SWITCH ) ,\
HID_LOGICAL_MIN ( 1 ) ,\
HID_LOGICAL_MAX ( 8 ) ,\
HID_PHYSICAL_MIN ( 0 ) ,\
HID_PHYSICAL_MAX_N ( 315, 2 ) ,\
HID_REPORT_COUNT ( 1 ) ,\
HID_REPORT_SIZE ( 8 ) ,\
HID_INPUT ( HID_DATA | HID_VARIABLE | HID_ABSOLUTE ) ,\
/* 32 bit Button Map */ \
HID_USAGE_PAGE ( HID_USAGE_PAGE_BUTTON ) ,\
HID_USAGE_MIN ( 1 ) ,\
HID_USAGE_MAX ( 32 ) ,\
HID_LOGICAL_MIN ( 0 ) ,\
HID_LOGICAL_MAX ( 1 ) ,\
HID_REPORT_COUNT ( 32 ) ,\
HID_REPORT_SIZE ( 1 ) ,\
HID_INPUT ( HID_DATA | HID_VARIABLE | HID_ABSOLUTE ) ,\
HID_COLLECTION_END \
void __SetupDescHIDReport() {
//allocate memory for the HID report descriptors. We don't use them, but need the size here.
uint8_t desc_hid_report_mouse[] = { TUD_HID_REPORT_DESC_MOUSE(HID_REPORT_ID(1)) };
uint8_t desc_hid_report_absmouse[] = { TUD_HID_REPORT_DESC_ABSMOUSE(HID_REPORT_ID(1)) };
uint8_t desc_hid_report_joystick[] = { TUD_HID_REPORT_DESC_GAMEPAD(HID_REPORT_ID(1)) };
uint8_t desc_hid_report_joystick[] = { TUD_HID_REPORT_DESC_GAMEPAD16(HID_REPORT_ID(1)) };
uint8_t desc_hid_report_keyboard[] = { TUD_HID_REPORT_DESC_KEYBOARD(HID_REPORT_ID(1)), TUD_HID_REPORT_DESC_CONSUMER(HID_REPORT_ID(2)) };
int size = 0;
@@ -229,7 +270,7 @@ void __SetupDescHIDReport() {
reportid++;
offset += sizeof(desc_hid_report_absmouse);
}
uint8_t desc_local[] = { TUD_HID_REPORT_DESC_GAMEPAD(HID_REPORT_ID(reportid)) };
uint8_t desc_local[] = { TUD_HID_REPORT_DESC_GAMEPAD16(HID_REPORT_ID(reportid)) };
memcpy(__hid_report + offset, desc_local, sizeof(desc_local));
}
}
+3 -3
View File
@@ -1,5 +1,5 @@
#pragma once
#define ARDUINO_PICO_MAJOR 3
#define ARDUINO_PICO_MINOR 6
#define ARDUINO_PICO_REVISION 3
#define ARDUINO_PICO_VERSION_STR "3.6.3"
#define ARDUINO_PICO_MINOR 9
#define ARDUINO_PICO_REVISION 4
#define ARDUINO_PICO_VERSION_STR "3.9.4"
+1 -1
View File
@@ -53,7 +53,7 @@ public:
using Print::write;
operator bool() override;
// Not to be called by users, only from the IRQ handler. In public so that the C-language IQR callback can access it
// Not to be called by users, only from the IRQ handler. In public so that the C-language IRQ callback can access it
void _handleIRQ();
protected:
+1 -1
View File
@@ -201,7 +201,7 @@ void SerialUART::begin(unsigned long baud, uint16_t config) {
break;
}
uart_set_format(_uart, bits, stop, parity);
uart_set_hw_flow(_uart, _rts != UART_PIN_NOT_DEFINED, _cts != UART_PIN_NOT_DEFINED);
uart_set_hw_flow(_uart, _cts != UART_PIN_NOT_DEFINED, _rts != UART_PIN_NOT_DEFINED);
_writer = 0;
_reader = 0;
+474
View File
@@ -0,0 +1,474 @@
// autogenerated from https://raw.githubusercontent.com/nayarsystems/posix_tz_db/master/zones.csv
// by script <rp2040 arduino core>/tools/tzupdate.sh
// Sat 20 Jan 2024 08:54:45 PM UTC
//
// This database is autogenerated from IANA timezone database
// https://raw.githubusercontent.com/nayarsystems/posix_tz_db/master/zones.csv
// (using https://www.iana.org/time-zones)
// and can be updated on demand in this repository
// or by yourself using the above script
#pragma once
#define TZ_Africa_Abidjan ("GMT0")
#define TZ_Africa_Accra ("GMT0")
#define TZ_Africa_Addis_Ababa ("EAT-3")
#define TZ_Africa_Algiers ("CET-1")
#define TZ_Africa_Asmara ("EAT-3")
#define TZ_Africa_Bamako ("GMT0")
#define TZ_Africa_Bangui ("WAT-1")
#define TZ_Africa_Banjul ("GMT0")
#define TZ_Africa_Bissau ("GMT0")
#define TZ_Africa_Blantyre ("CAT-2")
#define TZ_Africa_Brazzaville ("WAT-1")
#define TZ_Africa_Bujumbura ("CAT-2")
#define TZ_Africa_Cairo ("EET-2EEST,M4.5.5/0,M10.5.4/24")
#define TZ_Africa_Casablanca ("<+01>-1")
#define TZ_Africa_Ceuta ("CET-1CEST,M3.5.0,M10.5.0/3")
#define TZ_Africa_Conakry ("GMT0")
#define TZ_Africa_Dakar ("GMT0")
#define TZ_Africa_Dar_es_Salaam ("EAT-3")
#define TZ_Africa_Djibouti ("EAT-3")
#define TZ_Africa_Douala ("WAT-1")
#define TZ_Africa_El_Aaiun ("<+01>-1")
#define TZ_Africa_Freetown ("GMT0")
#define TZ_Africa_Gaborone ("CAT-2")
#define TZ_Africa_Harare ("CAT-2")
#define TZ_Africa_Johannesburg ("SAST-2")
#define TZ_Africa_Juba ("CAT-2")
#define TZ_Africa_Kampala ("EAT-3")
#define TZ_Africa_Khartoum ("CAT-2")
#define TZ_Africa_Kigali ("CAT-2")
#define TZ_Africa_Kinshasa ("WAT-1")
#define TZ_Africa_Lagos ("WAT-1")
#define TZ_Africa_Libreville ("WAT-1")
#define TZ_Africa_Lome ("GMT0")
#define TZ_Africa_Luanda ("WAT-1")
#define TZ_Africa_Lubumbashi ("CAT-2")
#define TZ_Africa_Lusaka ("CAT-2")
#define TZ_Africa_Malabo ("WAT-1")
#define TZ_Africa_Maputo ("CAT-2")
#define TZ_Africa_Maseru ("SAST-2")
#define TZ_Africa_Mbabane ("SAST-2")
#define TZ_Africa_Mogadishu ("EAT-3")
#define TZ_Africa_Monrovia ("GMT0")
#define TZ_Africa_Nairobi ("EAT-3")
#define TZ_Africa_Ndjamena ("WAT-1")
#define TZ_Africa_Niamey ("WAT-1")
#define TZ_Africa_Nouakchott ("GMT0")
#define TZ_Africa_Ouagadougou ("GMT0")
#define TZ_Africa_PortomNovo ("WAT-1")
#define TZ_Africa_Sao_Tome ("GMT0")
#define TZ_Africa_Tripoli ("EET-2")
#define TZ_Africa_Tunis ("CET-1")
#define TZ_Africa_Windhoek ("CAT-2")
#define TZ_America_Adak ("HST10HDT,M3.2.0,M11.1.0")
#define TZ_America_Anchorage ("AKST9AKDT,M3.2.0,M11.1.0")
#define TZ_America_Anguilla ("AST4")
#define TZ_America_Antigua ("AST4")
#define TZ_America_Araguaina ("<-03>3")
#define TZ_America_Argentina_Buenos_Aires ("<-03>3")
#define TZ_America_Argentina_Catamarca ("<-03>3")
#define TZ_America_Argentina_Cordoba ("<-03>3")
#define TZ_America_Argentina_Jujuy ("<-03>3")
#define TZ_America_Argentina_La_Rioja ("<-03>3")
#define TZ_America_Argentina_Mendoza ("<-03>3")
#define TZ_America_Argentina_Rio_Gallegos ("<-03>3")
#define TZ_America_Argentina_Salta ("<-03>3")
#define TZ_America_Argentina_San_Juan ("<-03>3")
#define TZ_America_Argentina_San_Luis ("<-03>3")
#define TZ_America_Argentina_Tucuman ("<-03>3")
#define TZ_America_Argentina_Ushuaia ("<-03>3")
#define TZ_America_Aruba ("AST4")
#define TZ_America_Asuncion ("<-04>4<-03>,M10.1.0/0,M3.4.0/0")
#define TZ_America_Atikokan ("EST5")
#define TZ_America_Bahia ("<-03>3")
#define TZ_America_Bahia_Banderas ("CST6")
#define TZ_America_Barbados ("AST4")
#define TZ_America_Belem ("<-03>3")
#define TZ_America_Belize ("CST6")
#define TZ_America_BlancmSablon ("AST4")
#define TZ_America_Boa_Vista ("<-04>4")
#define TZ_America_Bogota ("<-05>5")
#define TZ_America_Boise ("MST7MDT,M3.2.0,M11.1.0")
#define TZ_America_Cambridge_Bay ("MST7MDT,M3.2.0,M11.1.0")
#define TZ_America_Campo_Grande ("<-04>4")
#define TZ_America_Cancun ("EST5")
#define TZ_America_Caracas ("<-04>4")
#define TZ_America_Cayenne ("<-03>3")
#define TZ_America_Cayman ("EST5")
#define TZ_America_Chicago ("CST6CDT,M3.2.0,M11.1.0")
#define TZ_America_Chihuahua ("CST6")
#define TZ_America_Costa_Rica ("CST6")
#define TZ_America_Creston ("MST7")
#define TZ_America_Cuiaba ("<-04>4")
#define TZ_America_Curacao ("AST4")
#define TZ_America_Danmarkshavn ("GMT0")
#define TZ_America_Dawson ("MST7")
#define TZ_America_Dawson_Creek ("MST7")
#define TZ_America_Denver ("MST7MDT,M3.2.0,M11.1.0")
#define TZ_America_Detroit ("EST5EDT,M3.2.0,M11.1.0")
#define TZ_America_Dominica ("AST4")
#define TZ_America_Edmonton ("MST7MDT,M3.2.0,M11.1.0")
#define TZ_America_Eirunepe ("<-05>5")
#define TZ_America_El_Salvador ("CST6")
#define TZ_America_Fortaleza ("<-03>3")
#define TZ_America_Fort_Nelson ("MST7")
#define TZ_America_Glace_Bay ("AST4ADT,M3.2.0,M11.1.0")
#define TZ_America_Godthab ("<-02>2<-01>,M3.5.0/-1,M10.5.0/0")
#define TZ_America_Goose_Bay ("AST4ADT,M3.2.0,M11.1.0")
#define TZ_America_Grand_Turk ("EST5EDT,M3.2.0,M11.1.0")
#define TZ_America_Grenada ("AST4")
#define TZ_America_Guadeloupe ("AST4")
#define TZ_America_Guatemala ("CST6")
#define TZ_America_Guayaquil ("<-05>5")
#define TZ_America_Guyana ("<-04>4")
#define TZ_America_Halifax ("AST4ADT,M3.2.0,M11.1.0")
#define TZ_America_Havana ("CST5CDT,M3.2.0/0,M11.1.0/1")
#define TZ_America_Hermosillo ("MST7")
#define TZ_America_Indiana_Indianapolis ("EST5EDT,M3.2.0,M11.1.0")
#define TZ_America_Indiana_Knox ("CST6CDT,M3.2.0,M11.1.0")
#define TZ_America_Indiana_Marengo ("EST5EDT,M3.2.0,M11.1.0")
#define TZ_America_Indiana_Petersburg ("EST5EDT,M3.2.0,M11.1.0")
#define TZ_America_Indiana_Tell_City ("CST6CDT,M3.2.0,M11.1.0")
#define TZ_America_Indiana_Vevay ("EST5EDT,M3.2.0,M11.1.0")
#define TZ_America_Indiana_Vincennes ("EST5EDT,M3.2.0,M11.1.0")
#define TZ_America_Indiana_Winamac ("EST5EDT,M3.2.0,M11.1.0")
#define TZ_America_Inuvik ("MST7MDT,M3.2.0,M11.1.0")
#define TZ_America_Iqaluit ("EST5EDT,M3.2.0,M11.1.0")
#define TZ_America_Jamaica ("EST5")
#define TZ_America_Juneau ("AKST9AKDT,M3.2.0,M11.1.0")
#define TZ_America_Kentucky_Louisville ("EST5EDT,M3.2.0,M11.1.0")
#define TZ_America_Kentucky_Monticello ("EST5EDT,M3.2.0,M11.1.0")
#define TZ_America_Kralendijk ("AST4")
#define TZ_America_La_Paz ("<-04>4")
#define TZ_America_Lima ("<-05>5")
#define TZ_America_Los_Angeles ("PST8PDT,M3.2.0,M11.1.0")
#define TZ_America_Lower_Princes ("AST4")
#define TZ_America_Maceio ("<-03>3")
#define TZ_America_Managua ("CST6")
#define TZ_America_Manaus ("<-04>4")
#define TZ_America_Marigot ("AST4")
#define TZ_America_Martinique ("AST4")
#define TZ_America_Matamoros ("CST6CDT,M3.2.0,M11.1.0")
#define TZ_America_Mazatlan ("MST7")
#define TZ_America_Menominee ("CST6CDT,M3.2.0,M11.1.0")
#define TZ_America_Merida ("CST6")
#define TZ_America_Metlakatla ("AKST9AKDT,M3.2.0,M11.1.0")
#define TZ_America_Mexico_City ("CST6")
#define TZ_America_Miquelon ("<-03>3<-02>,M3.2.0,M11.1.0")
#define TZ_America_Moncton ("AST4ADT,M3.2.0,M11.1.0")
#define TZ_America_Monterrey ("CST6")
#define TZ_America_Montevideo ("<-03>3")
#define TZ_America_Montreal ("EST5EDT,M3.2.0,M11.1.0")
#define TZ_America_Montserrat ("AST4")
#define TZ_America_Nassau ("EST5EDT,M3.2.0,M11.1.0")
#define TZ_America_New_York ("EST5EDT,M3.2.0,M11.1.0")
#define TZ_America_Nipigon ("EST5EDT,M3.2.0,M11.1.0")
#define TZ_America_Nome ("AKST9AKDT,M3.2.0,M11.1.0")
#define TZ_America_Noronha ("<-02>2")
#define TZ_America_North_Dakota_Beulah ("CST6CDT,M3.2.0,M11.1.0")
#define TZ_America_North_Dakota_Center ("CST6CDT,M3.2.0,M11.1.0")
#define TZ_America_North_Dakota_New_Salem ("CST6CDT,M3.2.0,M11.1.0")
#define TZ_America_Nuuk ("<-02>2<-01>,M3.5.0/-1,M10.5.0/0")
#define TZ_America_Ojinaga ("CST6CDT,M3.2.0,M11.1.0")
#define TZ_America_Panama ("EST5")
#define TZ_America_Pangnirtung ("EST5EDT,M3.2.0,M11.1.0")
#define TZ_America_Paramaribo ("<-03>3")
#define TZ_America_Phoenix ("MST7")
#define TZ_America_PortmaumPrince ("EST5EDT,M3.2.0,M11.1.0")
#define TZ_America_Port_of_Spain ("AST4")
#define TZ_America_Porto_Velho ("<-04>4")
#define TZ_America_Puerto_Rico ("AST4")
#define TZ_America_Punta_Arenas ("<-03>3")
#define TZ_America_Rainy_River ("CST6CDT,M3.2.0,M11.1.0")
#define TZ_America_Rankin_Inlet ("CST6CDT,M3.2.0,M11.1.0")
#define TZ_America_Recife ("<-03>3")
#define TZ_America_Regina ("CST6")
#define TZ_America_Resolute ("CST6CDT,M3.2.0,M11.1.0")
#define TZ_America_Rio_Branco ("<-05>5")
#define TZ_America_Santarem ("<-03>3")
#define TZ_America_Santiago ("<-04>4<-03>,M9.1.6/24,M4.1.6/24")
#define TZ_America_Santo_Domingo ("AST4")
#define TZ_America_Sao_Paulo ("<-03>3")
#define TZ_America_Scoresbysund ("<-01>1<+00>,M3.5.0/0,M10.5.0/1")
#define TZ_America_Sitka ("AKST9AKDT,M3.2.0,M11.1.0")
#define TZ_America_St_Barthelemy ("AST4")
#define TZ_America_St_Johns ("NST3:30NDT,M3.2.0,M11.1.0")
#define TZ_America_St_Kitts ("AST4")
#define TZ_America_St_Lucia ("AST4")
#define TZ_America_St_Thomas ("AST4")
#define TZ_America_St_Vincent ("AST4")
#define TZ_America_Swift_Current ("CST6")
#define TZ_America_Tegucigalpa ("CST6")
#define TZ_America_Thule ("AST4ADT,M3.2.0,M11.1.0")
#define TZ_America_Thunder_Bay ("EST5EDT,M3.2.0,M11.1.0")
#define TZ_America_Tijuana ("PST8PDT,M3.2.0,M11.1.0")
#define TZ_America_Toronto ("EST5EDT,M3.2.0,M11.1.0")
#define TZ_America_Tortola ("AST4")
#define TZ_America_Vancouver ("PST8PDT,M3.2.0,M11.1.0")
#define TZ_America_Whitehorse ("MST7")
#define TZ_America_Winnipeg ("CST6CDT,M3.2.0,M11.1.0")
#define TZ_America_Yakutat ("AKST9AKDT,M3.2.0,M11.1.0")
#define TZ_America_Yellowknife ("MST7MDT,M3.2.0,M11.1.0")
#define TZ_Antarctica_Casey ("<+11>-11")
#define TZ_Antarctica_Davis ("<+07>-7")
#define TZ_Antarctica_DumontDUrville ("<+10>-10")
#define TZ_Antarctica_Macquarie ("AEST-10AEDT,M10.1.0,M4.1.0/3")
#define TZ_Antarctica_Mawson ("<+05>-5")
#define TZ_Antarctica_McMurdo ("NZST-12NZDT,M9.5.0,M4.1.0/3")
#define TZ_Antarctica_Palmer ("<-03>3")
#define TZ_Antarctica_Rothera ("<-03>3")
#define TZ_Antarctica_Syowa ("<+03>-3")
#define TZ_Antarctica_Troll ("<+00>0<+02>-2,M3.5.0/1,M10.5.0/3")
#define TZ_Antarctica_Vostok ("<+06>-6")
#define TZ_Arctic_Longyearbyen ("CET-1CEST,M3.5.0,M10.5.0/3")
#define TZ_Asia_Aden ("<+03>-3")
#define TZ_Asia_Almaty ("<+06>-6")
#define TZ_Asia_Amman ("<+03>-3")
#define TZ_Asia_Anadyr ("<+12>-12")
#define TZ_Asia_Aqtau ("<+05>-5")
#define TZ_Asia_Aqtobe ("<+05>-5")
#define TZ_Asia_Ashgabat ("<+05>-5")
#define TZ_Asia_Atyrau ("<+05>-5")
#define TZ_Asia_Baghdad ("<+03>-3")
#define TZ_Asia_Bahrain ("<+03>-3")
#define TZ_Asia_Baku ("<+04>-4")
#define TZ_Asia_Bangkok ("<+07>-7")
#define TZ_Asia_Barnaul ("<+07>-7")
#define TZ_Asia_Beirut ("EET-2EEST,M3.5.0/0,M10.5.0/0")
#define TZ_Asia_Bishkek ("<+06>-6")
#define TZ_Asia_Brunei ("<+08>-8")
#define TZ_Asia_Chita ("<+09>-9")
#define TZ_Asia_Choibalsan ("<+08>-8")
#define TZ_Asia_Colombo ("<+0530>-5:30")
#define TZ_Asia_Damascus ("<+03>-3")
#define TZ_Asia_Dhaka ("<+06>-6")
#define TZ_Asia_Dili ("<+09>-9")
#define TZ_Asia_Dubai ("<+04>-4")
#define TZ_Asia_Dushanbe ("<+05>-5")
#define TZ_Asia_Famagusta ("EET-2EEST,M3.5.0/3,M10.5.0/4")
#define TZ_Asia_Gaza ("EET-2EEST,M3.4.4/50,M10.4.4/50")
#define TZ_Asia_Hebron ("EET-2EEST,M3.4.4/50,M10.4.4/50")
#define TZ_Asia_Ho_Chi_Minh ("<+07>-7")
#define TZ_Asia_Hong_Kong ("HKT-8")
#define TZ_Asia_Hovd ("<+07>-7")
#define TZ_Asia_Irkutsk ("<+08>-8")
#define TZ_Asia_Jakarta ("WIB-7")
#define TZ_Asia_Jayapura ("WIT-9")
#define TZ_Asia_Jerusalem ("IST-2IDT,M3.4.4/26,M10.5.0")
#define TZ_Asia_Kabul ("<+0430>-4:30")
#define TZ_Asia_Kamchatka ("<+12>-12")
#define TZ_Asia_Karachi ("PKT-5")
#define TZ_Asia_Kathmandu ("<+0545>-5:45")
#define TZ_Asia_Khandyga ("<+09>-9")
#define TZ_Asia_Kolkata ("IST-5:30")
#define TZ_Asia_Krasnoyarsk ("<+07>-7")
#define TZ_Asia_Kuala_Lumpur ("<+08>-8")
#define TZ_Asia_Kuching ("<+08>-8")
#define TZ_Asia_Kuwait ("<+03>-3")
#define TZ_Asia_Macau ("CST-8")
#define TZ_Asia_Magadan ("<+11>-11")
#define TZ_Asia_Makassar ("WITA-8")
#define TZ_Asia_Manila ("PST-8")
#define TZ_Asia_Muscat ("<+04>-4")
#define TZ_Asia_Nicosia ("EET-2EEST,M3.5.0/3,M10.5.0/4")
#define TZ_Asia_Novokuznetsk ("<+07>-7")
#define TZ_Asia_Novosibirsk ("<+07>-7")
#define TZ_Asia_Omsk ("<+06>-6")
#define TZ_Asia_Oral ("<+05>-5")
#define TZ_Asia_Phnom_Penh ("<+07>-7")
#define TZ_Asia_Pontianak ("WIB-7")
#define TZ_Asia_Pyongyang ("KST-9")
#define TZ_Asia_Qatar ("<+03>-3")
#define TZ_Asia_Qyzylorda ("<+05>-5")
#define TZ_Asia_Riyadh ("<+03>-3")
#define TZ_Asia_Sakhalin ("<+11>-11")
#define TZ_Asia_Samarkand ("<+05>-5")
#define TZ_Asia_Seoul ("KST-9")
#define TZ_Asia_Shanghai ("CST-8")
#define TZ_Asia_Singapore ("<+08>-8")
#define TZ_Asia_Srednekolymsk ("<+11>-11")
#define TZ_Asia_Taipei ("CST-8")
#define TZ_Asia_Tashkent ("<+05>-5")
#define TZ_Asia_Tbilisi ("<+04>-4")
#define TZ_Asia_Tehran ("<+0330>-3:30")
#define TZ_Asia_Thimphu ("<+06>-6")
#define TZ_Asia_Tokyo ("JST-9")
#define TZ_Asia_Tomsk ("<+07>-7")
#define TZ_Asia_Ulaanbaatar ("<+08>-8")
#define TZ_Asia_Urumqi ("<+06>-6")
#define TZ_Asia_UstmNera ("<+10>-10")
#define TZ_Asia_Vientiane ("<+07>-7")
#define TZ_Asia_Vladivostok ("<+10>-10")
#define TZ_Asia_Yakutsk ("<+09>-9")
#define TZ_Asia_Yangon ("<+0630>-6:30")
#define TZ_Asia_Yekaterinburg ("<+05>-5")
#define TZ_Asia_Yerevan ("<+04>-4")
#define TZ_Atlantic_Azores ("<-01>1<+00>,M3.5.0/0,M10.5.0/1")
#define TZ_Atlantic_Bermuda ("AST4ADT,M3.2.0,M11.1.0")
#define TZ_Atlantic_Canary ("WET0WEST,M3.5.0/1,M10.5.0")
#define TZ_Atlantic_Cape_Verde ("<-01>1")
#define TZ_Atlantic_Faroe ("WET0WEST,M3.5.0/1,M10.5.0")
#define TZ_Atlantic_Madeira ("WET0WEST,M3.5.0/1,M10.5.0")
#define TZ_Atlantic_Reykjavik ("GMT0")
#define TZ_Atlantic_South_Georgia ("<-02>2")
#define TZ_Atlantic_Stanley ("<-03>3")
#define TZ_Atlantic_St_Helena ("GMT0")
#define TZ_Australia_Adelaide ("ACST-9:30ACDT,M10.1.0,M4.1.0/3")
#define TZ_Australia_Brisbane ("AEST-10")
#define TZ_Australia_Broken_Hill ("ACST-9:30ACDT,M10.1.0,M4.1.0/3")
#define TZ_Australia_Currie ("AEST-10AEDT,M10.1.0,M4.1.0/3")
#define TZ_Australia_Darwin ("ACST-9:30")
#define TZ_Australia_Eucla ("<+0845>-8:45")
#define TZ_Australia_Hobart ("AEST-10AEDT,M10.1.0,M4.1.0/3")
#define TZ_Australia_Lindeman ("AEST-10")
#define TZ_Australia_Lord_Howe ("<+1030>-10:30<+11>-11,M10.1.0,M4.1.0")
#define TZ_Australia_Melbourne ("AEST-10AEDT,M10.1.0,M4.1.0/3")
#define TZ_Australia_Perth ("AWST-8")
#define TZ_Australia_Sydney ("AEST-10AEDT,M10.1.0,M4.1.0/3")
#define TZ_Europe_Amsterdam ("CET-1CEST,M3.5.0,M10.5.0/3")
#define TZ_Europe_Andorra ("CET-1CEST,M3.5.0,M10.5.0/3")
#define TZ_Europe_Astrakhan ("<+04>-4")
#define TZ_Europe_Athens ("EET-2EEST,M3.5.0/3,M10.5.0/4")
#define TZ_Europe_Belgrade ("CET-1CEST,M3.5.0,M10.5.0/3")
#define TZ_Europe_Berlin ("CET-1CEST,M3.5.0,M10.5.0/3")
#define TZ_Europe_Bratislava ("CET-1CEST,M3.5.0,M10.5.0/3")
#define TZ_Europe_Brussels ("CET-1CEST,M3.5.0,M10.5.0/3")
#define TZ_Europe_Bucharest ("EET-2EEST,M3.5.0/3,M10.5.0/4")
#define TZ_Europe_Budapest ("CET-1CEST,M3.5.0,M10.5.0/3")
#define TZ_Europe_Busingen ("CET-1CEST,M3.5.0,M10.5.0/3")
#define TZ_Europe_Chisinau ("EET-2EEST,M3.5.0,M10.5.0/3")
#define TZ_Europe_Copenhagen ("CET-1CEST,M3.5.0,M10.5.0/3")
#define TZ_Europe_Dublin ("IST-1GMT0,M10.5.0,M3.5.0/1")
#define TZ_Europe_Gibraltar ("CET-1CEST,M3.5.0,M10.5.0/3")
#define TZ_Europe_Guernsey ("GMT0BST,M3.5.0/1,M10.5.0")
#define TZ_Europe_Helsinki ("EET-2EEST,M3.5.0/3,M10.5.0/4")
#define TZ_Europe_Isle_of_Man ("GMT0BST,M3.5.0/1,M10.5.0")
#define TZ_Europe_Istanbul ("<+03>-3")
#define TZ_Europe_Jersey ("GMT0BST,M3.5.0/1,M10.5.0")
#define TZ_Europe_Kaliningrad ("EET-2")
#define TZ_Europe_Kiev ("EET-2EEST,M3.5.0/3,M10.5.0/4")
#define TZ_Europe_Kirov ("MSK-3")
#define TZ_Europe_Lisbon ("WET0WEST,M3.5.0/1,M10.5.0")
#define TZ_Europe_Ljubljana ("CET-1CEST,M3.5.0,M10.5.0/3")
#define TZ_Europe_London ("GMT0BST,M3.5.0/1,M10.5.0")
#define TZ_Europe_Luxembourg ("CET-1CEST,M3.5.0,M10.5.0/3")
#define TZ_Europe_Madrid ("CET-1CEST,M3.5.0,M10.5.0/3")
#define TZ_Europe_Malta ("CET-1CEST,M3.5.0,M10.5.0/3")
#define TZ_Europe_Mariehamn ("EET-2EEST,M3.5.0/3,M10.5.0/4")
#define TZ_Europe_Minsk ("<+03>-3")
#define TZ_Europe_Monaco ("CET-1CEST,M3.5.0,M10.5.0/3")
#define TZ_Europe_Moscow ("MSK-3")
#define TZ_Europe_Oslo ("CET-1CEST,M3.5.0,M10.5.0/3")
#define TZ_Europe_Paris ("CET-1CEST,M3.5.0,M10.5.0/3")
#define TZ_Europe_Podgorica ("CET-1CEST,M3.5.0,M10.5.0/3")
#define TZ_Europe_Prague ("CET-1CEST,M3.5.0,M10.5.0/3")
#define TZ_Europe_Riga ("EET-2EEST,M3.5.0/3,M10.5.0/4")
#define TZ_Europe_Rome ("CET-1CEST,M3.5.0,M10.5.0/3")
#define TZ_Europe_Samara ("<+04>-4")
#define TZ_Europe_San_Marino ("CET-1CEST,M3.5.0,M10.5.0/3")
#define TZ_Europe_Sarajevo ("CET-1CEST,M3.5.0,M10.5.0/3")
#define TZ_Europe_Saratov ("<+04>-4")
#define TZ_Europe_Simferopol ("MSK-3")
#define TZ_Europe_Skopje ("CET-1CEST,M3.5.0,M10.5.0/3")
#define TZ_Europe_Sofia ("EET-2EEST,M3.5.0/3,M10.5.0/4")
#define TZ_Europe_Stockholm ("CET-1CEST,M3.5.0,M10.5.0/3")
#define TZ_Europe_Tallinn ("EET-2EEST,M3.5.0/3,M10.5.0/4")
#define TZ_Europe_Tirane ("CET-1CEST,M3.5.0,M10.5.0/3")
#define TZ_Europe_Ulyanovsk ("<+04>-4")
#define TZ_Europe_Uzhgorod ("EET-2EEST,M3.5.0/3,M10.5.0/4")
#define TZ_Europe_Vaduz ("CET-1CEST,M3.5.0,M10.5.0/3")
#define TZ_Europe_Vatican ("CET-1CEST,M3.5.0,M10.5.0/3")
#define TZ_Europe_Vienna ("CET-1CEST,M3.5.0,M10.5.0/3")
#define TZ_Europe_Vilnius ("EET-2EEST,M3.5.0/3,M10.5.0/4")
#define TZ_Europe_Volgograd ("MSK-3")
#define TZ_Europe_Warsaw ("CET-1CEST,M3.5.0,M10.5.0/3")
#define TZ_Europe_Zagreb ("CET-1CEST,M3.5.0,M10.5.0/3")
#define TZ_Europe_Zaporozhye ("EET-2EEST,M3.5.0/3,M10.5.0/4")
#define TZ_Europe_Zurich ("CET-1CEST,M3.5.0,M10.5.0/3")
#define TZ_Indian_Antananarivo ("EAT-3")
#define TZ_Indian_Chagos ("<+06>-6")
#define TZ_Indian_Christmas ("<+07>-7")
#define TZ_Indian_Cocos ("<+0630>-6:30")
#define TZ_Indian_Comoro ("EAT-3")
#define TZ_Indian_Kerguelen ("<+05>-5")
#define TZ_Indian_Mahe ("<+04>-4")
#define TZ_Indian_Maldives ("<+05>-5")
#define TZ_Indian_Mauritius ("<+04>-4")
#define TZ_Indian_Mayotte ("EAT-3")
#define TZ_Indian_Reunion ("<+04>-4")
#define TZ_Pacific_Apia ("<+13>-13")
#define TZ_Pacific_Auckland ("NZST-12NZDT,M9.5.0,M4.1.0/3")
#define TZ_Pacific_Bougainville ("<+11>-11")
#define TZ_Pacific_Chatham ("<+1245>-12:45<+1345>,M9.5.0/2:45,M4.1.0/3:45")
#define TZ_Pacific_Chuuk ("<+10>-10")
#define TZ_Pacific_Easter ("<-06>6<-05>,M9.1.6/22,M4.1.6/22")
#define TZ_Pacific_Efate ("<+11>-11")
#define TZ_Pacific_Enderbury ("<+13>-13")
#define TZ_Pacific_Fakaofo ("<+13>-13")
#define TZ_Pacific_Fiji ("<+12>-12")
#define TZ_Pacific_Funafuti ("<+12>-12")
#define TZ_Pacific_Galapagos ("<-06>6")
#define TZ_Pacific_Gambier ("<-09>9")
#define TZ_Pacific_Guadalcanal ("<+11>-11")
#define TZ_Pacific_Guam ("ChST-10")
#define TZ_Pacific_Honolulu ("HST10")
#define TZ_Pacific_Kiritimati ("<+14>-14")
#define TZ_Pacific_Kosrae ("<+11>-11")
#define TZ_Pacific_Kwajalein ("<+12>-12")
#define TZ_Pacific_Majuro ("<+12>-12")
#define TZ_Pacific_Marquesas ("<-0930>9:30")
#define TZ_Pacific_Midway ("SST11")
#define TZ_Pacific_Nauru ("<+12>-12")
#define TZ_Pacific_Niue ("<-11>11")
#define TZ_Pacific_Norfolk ("<+11>-11<+12>,M10.1.0,M4.1.0/3")
#define TZ_Pacific_Noumea ("<+11>-11")
#define TZ_Pacific_Pago_Pago ("SST11")
#define TZ_Pacific_Palau ("<+09>-9")
#define TZ_Pacific_Pitcairn ("<-08>8")
#define TZ_Pacific_Pohnpei ("<+11>-11")
#define TZ_Pacific_Port_Moresby ("<+10>-10")
#define TZ_Pacific_Rarotonga ("<-10>10")
#define TZ_Pacific_Saipan ("ChST-10")
#define TZ_Pacific_Tahiti ("<-10>10")
#define TZ_Pacific_Tarawa ("<+12>-12")
#define TZ_Pacific_Tongatapu ("<+13>-13")
#define TZ_Pacific_Wake ("<+12>-12")
#define TZ_Pacific_Wallis ("<+12>-12")
#define TZ_Etc_GMT ("GMT0")
#define TZ_Etc_GMTm0 ("GMT0")
#define TZ_Etc_GMTm1 ("<+01>-1")
#define TZ_Etc_GMTm2 ("<+02>-2")
#define TZ_Etc_GMTm3 ("<+03>-3")
#define TZ_Etc_GMTm4 ("<+04>-4")
#define TZ_Etc_GMTm5 ("<+05>-5")
#define TZ_Etc_GMTm6 ("<+06>-6")
#define TZ_Etc_GMTm7 ("<+07>-7")
#define TZ_Etc_GMTm8 ("<+08>-8")
#define TZ_Etc_GMTm9 ("<+09>-9")
#define TZ_Etc_GMTm10 ("<+10>-10")
#define TZ_Etc_GMTm11 ("<+11>-11")
#define TZ_Etc_GMTm12 ("<+12>-12")
#define TZ_Etc_GMTm13 ("<+13>-13")
#define TZ_Etc_GMTm14 ("<+14>-14")
#define TZ_Etc_GMT0 ("GMT0")
#define TZ_Etc_GMTp0 ("GMT0")
#define TZ_Etc_GMTp1 ("<-01>1")
#define TZ_Etc_GMTp2 ("<-02>2")
#define TZ_Etc_GMTp3 ("<-03>3")
#define TZ_Etc_GMTp4 ("<-04>4")
#define TZ_Etc_GMTp5 ("<-05>5")
#define TZ_Etc_GMTp6 ("<-06>6")
#define TZ_Etc_GMTp7 ("<-07>7")
#define TZ_Etc_GMTp8 ("<-08>8")
#define TZ_Etc_GMTp9 ("<-09>9")
#define TZ_Etc_GMTp10 ("<-10>10")
#define TZ_Etc_GMTp11 ("<-11>11")
#define TZ_Etc_GMTp12 ("<-12>12")
#define TZ_Etc_UCT ("UTC0")
#define TZ_Etc_UTC ("UTC0")
#define TZ_Etc_Greenwich ("GMT0")
#define TZ_Etc_Universal ("UTC0")
#define TZ_Etc_Zulu ("UTC0")
-2
View File
@@ -31,12 +31,10 @@ extern bool __isFreeRTOS;
extern volatile bool __freeRTOSinitted;
extern "C" {
#ifndef INC_FREERTOS_H
struct QueueDefinition; /* Using old naming convention so as not to break kernel aware debuggers. */
typedef struct QueueDefinition * QueueHandle_t;
typedef QueueHandle_t SemaphoreHandle_t;
typedef int32_t BaseType_t;
#endif
extern bool __freertos_check_if_in_isr() __attribute__((weak));
+32
View File
@@ -0,0 +1,32 @@
// Use to create a callback thunk from C to C++
// #define CCALLBACKNAME to a unique per-file name and #include this file
// To make a CB use a define of the form:
/*
#define PACKETHANDLERCB(class, cbFcn) \
(CCALLBACKNAME<void(uint8_t, uint16_t, uint8_t*, uint16_t), __COUNTER__>::func = std::bind(&class::cbFcn, this, std::placeholders::_1, std::placeholders::_2, std::placeholders::_3, std::placeholders::_4), \
static_cast<btstack_packet_handler_t>(<CCALLBACKNAMEvoid(uint8_t, uint16_t, uint8_t*, uint16_t), __COUNTER__ - 1>::callback))
*/
#include <functional>
// Thank you to https://stackoverflow.com/questions/66474621/multiple-non-static-callbacks-of-c-member-functions for the following beautiful hack
#ifndef CCALLBACKNAME
#define CCALLBACKNAME _CCallback
#endif
template <typename T, int tag>
struct CCALLBACKNAME;
template <typename Ret, typename... Params, int tag>
struct CCALLBACKNAME<Ret(Params...), tag> {
template <typename... Args>
static Ret callback(Args... args) {
return func(args...);
}
int _tag = tag;
static std::function<Ret(Params...)> func;
};
template <typename Ret, typename... Params, int tag>
std::function<Ret(Params...)> CCALLBACKNAME<Ret(Params...), tag>::func;
+28 -6
View File
@@ -33,12 +33,17 @@
extern void ethernet_arch_lwip_begin() __attribute__((weak));
extern void ethernet_arch_lwip_end() __attribute__((weak));
extern void ethernet_arch_lwip_gpio_mask() __attribute__((weak));
extern void ethernet_arch_lwip_gpio_unmask() __attribute__((weak));
auto_init_recursive_mutex(__lwipMutex); // Only for case with no Ethernet or PicoW, but still doing LWIP (PPP?)
class LWIPMutex {
public:
LWIPMutex() {
if (ethernet_arch_lwip_gpio_mask) {
ethernet_arch_lwip_gpio_mask();
}
#if defined(ARDUINO_RASPBERRY_PI_PICO_W)
if (rp2040.isPicoW()) {
cyw43_arch_lwip_begin();
@@ -56,13 +61,18 @@ public:
#if defined(ARDUINO_RASPBERRY_PI_PICO_W)
if (rp2040.isPicoW()) {
cyw43_arch_lwip_end();
return;
} else {
#endif
if (ethernet_arch_lwip_end) {
ethernet_arch_lwip_end();
} else {
recursive_mutex_exit(&__lwipMutex);
}
#if defined(ARDUINO_RASPBERRY_PI_PICO_W)
}
#endif
if (ethernet_arch_lwip_end) {
ethernet_arch_lwip_end();
} else {
recursive_mutex_exit(&__lwipMutex);
if (ethernet_arch_lwip_gpio_unmask) {
ethernet_arch_lwip_gpio_unmask();
}
}
};
@@ -79,7 +89,7 @@ extern "C" {
extern void __real_lwip_init();
void __wrap_lwip_init() {
if (!_lwip_rng) {
_lwip_rng = new XoshiroCpp::Xoshiro256PlusPlus(get_rand_64());
_lwip_rng = new XoshiroCpp::Xoshiro256PlusPlus(micros() * rp2040.getCycleCount());
__real_lwip_init();
}
}
@@ -348,4 +358,16 @@ extern "C" {
__real_raw_remove(pcb);
}
extern struct netif *__real_netif_add(struct netif *netif, const ip4_addr_t *ipaddr, const ip4_addr_t *netmask, const ip4_addr_t *gw, void *state, netif_init_fn init, netif_input_fn input);
struct netif *__wrap_netif_add(struct netif *netif, const ip4_addr_t *ipaddr, const ip4_addr_t *netmask, const ip4_addr_t *gw, void *state, netif_init_fn init, netif_input_fn input) {
LWIPMutex m;
return __real_netif_add(netif, ipaddr, netmask, gw, state, init, input);
}
extern void __real_netif_remove(struct netif *netif);
void __wrap_netif_remove(struct netif *netif) {
LWIPMutex m;
__real_netif_remove(netif);
}
}; // extern "C"
+1 -1
View File
@@ -1212,7 +1212,7 @@ static uint16_t handle_prepare_write_request(att_connection_t * att_connection,
}
/*
@brief transcation queue of prepared writes, e.g., after disconnect
@brief transaction queue of prepared writes, e.g., after disconnect
*/
void att_clear_transaction_queue(att_connection_t * att_connection) {
(*att_write_callback)(att_connection->con_handle, 0, ATT_TRANSACTION_MODE_CANCEL, 0, NULL, 0);
+1 -1
View File
@@ -257,7 +257,7 @@ extern "C" {
uint8_t * response_buffer);
/**
@brief transcation queue of prepared writes, e.g., after disconnect
@brief transaction queue of prepared writes, e.g., after disconnect
@return att_connection
*/
void att_clear_transaction_queue(att_connection_t * att_connection);
+121
View File
@@ -0,0 +1,121 @@
// Taken from LWIP's inet_chksum.c just to set the -O2 flag
/*
Copyright (c) 2001-2004 Swedish Institute of Computer Science.
All rights reserved.
Redistribution and use in source and binary forms, with or without modification,
are permitted provided that the following conditions are met:
1. Redistributions of source code must retain the above copyright notice,
this list of conditions and the following disclaimer.
2. Redistributions in binary form must reproduce the above copyright notice,
this list of conditions and the following disclaimer in the documentation
and/or other materials provided with the distribution.
3. The name of the author may not be used to endorse or promote products
derived from this software without specific prior written permission.
THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR IMPLIED
WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF
MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT
SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL,
EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT
OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING
IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY
OF SUCH DAMAGE.
This file is part of the lwIP TCP/IP stack.
Author: Adam Dunkels <adam@sics.se>
*/
#include "lwip/opt.h"
#include "lwip/inet_chksum.h"
#include "lwip/def.h"
#include "lwip/ip_addr.h"
#pragma GCC optimize ("O2")
/**
An optimized checksum routine. Basically, it uses loop-unrolling on
the checksum loop, treating the head and tail bytes specially, whereas
the inner loop acts on 8 bytes at a time.
@arg start of buffer to be checksummed. May be an odd byte address.
@len number of bytes in the buffer to be checksummed.
@return host order (!) lwip checksum (non-inverted Internet sum)
by Curt McDowell, Broadcom Corp. December 8th, 2005
*/
extern "C" u16_t lwip_standard_chksum(const void *dataptr, int len) {
const u8_t *pb = (const u8_t *)dataptr;
const u16_t *ps;
u16_t t = 0;
const u32_t *pl;
u32_t sum = 0, tmp;
/* starts at odd byte address? */
int odd = ((mem_ptr_t)pb & 1);
if (odd && len > 0) {
((u8_t *)&t)[1] = *pb++;
len--;
}
ps = (const u16_t *)(const void *)pb;
if (((mem_ptr_t)ps & 3) && len > 1) {
sum += *ps++;
len -= 2;
}
pl = (const u32_t *)(const void *)ps;
while (len > 7) {
tmp = sum + *pl++; /* ping */
if (tmp < sum) {
tmp++; /* add back carry */
}
sum = tmp + *pl++; /* pong */
if (sum < tmp) {
sum++; /* add back carry */
}
len -= 8;
}
/* make room in upper bits */
sum = FOLD_U32T(sum);
ps = (const u16_t *)pl;
/* 16-bit aligned word remaining? */
while (len > 1) {
sum += *ps++;
len -= 2;
}
/* dangling tail byte remaining? */
if (len > 0) { /* include odd byte */
((u8_t *)&t)[0] = *(const u8_t *)ps;
}
sum += t; /* add end bytes */
/* Fold 32-bit sum to 16 bits
calling this twice is probably faster than if statements... */
sum = FOLD_U32T(sum);
sum = FOLD_U32T(sum);
if (odd) {
sum = SWAP_BYTES_IN_WORD(sum);
}
return (u16_t)sum;
}
+39
View File
@@ -0,0 +1,39 @@
Bluetooth Audio (A2DP Source and Sink)
======================================
The PicoW can be used as a Bluetooth Audio sink or source with the ``BluetoothAudio`` class.
Operation is generally handled "automatically" in the background so while the audio is
playing or streaming the main application can perform other operations (like displaying
playback info, polling buttons for controls, etc.)
.. code :: cpp
#include <BluetoothAudio.h>
...
**Note about CPU usage:** Bluetooth SBC audio is a compressed format. That means
that it takes non-trivial amounts of CPU to compress on send, or decompress on receive.
Transmitting precompressed audio from, say, MP3 or AAC, requires first decompressing
the source file into raw PCM and then re-compressing them in the SBC format. You may
want to consider overclocking in this case to avoid underflow.
A2DPSink
--------
This class implements slave sink-mode operation with player control (play, pause, etc.) and
can play the received and decoded SBC audio to ``PWMAudio``, ``I2S``, or a user-created
`BluetoothAudioConsumer`` class.
The ``A2DPSink.ino`` example demonstrates turning a PicoW into a Bluetooth headset with
``PWMAudio``.
A2DPSource
-----------
This class implements a master source-mode SBC Bluetooth A2DP audio connection which
transmits audio using the standard ``Stream`` interface (like ``I2S`` or ``PWMAudio``.
The main application connects to a Bluetooth speaker and then writes samples into a buffer
that's automatically transmitted behind the scenes.
The ``A2DPSource.ino`` example shows how to connect to a Bluetooth speaker, transmit
data, and respond to commands from the speaker.
+7 -5
View File
@@ -2,9 +2,6 @@ Bluetooth on PicoW Support
==========================
As of the Pico-SDK version 1.5.0, the PicoW has **BETA** Bluetooth support.
So, since this core builds off the SDK the best that can be suggested it
that we have **ALPHA** Bluetooth support. As such, bug reports are welcome,
but Pull Requests fixing problems you find are seriously appreciated.
Enabling Bluetooth
------------------
@@ -24,6 +21,11 @@ Bluetooth Low Energy (BLE) HID device using the same API as their USB versions.
The ``SerialBT`` library implements a very simple SPP (Serial Port Profile)
Serial-compatible port.
Connect and use Bluetooth peripherals with the PicoW using the
``BluetoothHIDMaster`` library.
``BluetoothAudio`` (A2DP) is also supported, both sink and source.
Writing Custom Bluetooth Applications
-------------------------------------
You may also write full applications using the ``BTStack`` standard callback
@@ -40,8 +42,8 @@ For many BTStack examples, you simply need call the included
called afterwards to start processing (in the background).
You will also need to acquire the BT ``async_context`` system lock before
calling any BTStack APIs. See the ``libraries/PicoBluetoothHID`` helper
class for an example of how to do this.
calling any BTStack APIs. ``__lockBluetooth`` and ``unlockBluetooth`` are
provided in the PicoW variant code.
Note that if you need to modify the system ``btstack_config.h`` file, do so
in the ``tools/libpico`` directory and rebuild the Pico SDK static library.
+2 -2
View File
@@ -54,9 +54,9 @@ author = u'Earle F. Philhower, III'
# built documents.
#
# The short X.Y version.
version = u'3.6.3'
version = u'3.9.4'
# The full version, including alpha/beta/rc tags.
release = u'3.6.3'
release = u'3.9.4'
# The language for content autogenerated by Sphinx. Refer to documentation
# for a list of supported languages.
+15 -2
View File
@@ -86,6 +86,19 @@ Pico may not have enough time to service the Ethernet port before the timer fire
leading to a lock up and hang.
Using Interrupt-Driven Handling
-------------------------------
The WizNet and ENC28J60 devices support generating an interrupt when a packet is received,
removing the need for polling and decreasing latency. Simply specify the SPI object to use and the
interrupt pin when instantiating the Ethernet object:
.. code:: cpp
#include <W5100lwIP.h>
Wiznet5100lwIP eth(SS /* Chip Select*/, SPI /* SPI interface */, 17 /* Interrupt GPIO */ );
Adjusting SPI Speed
-------------------
@@ -114,12 +127,12 @@ For example, to set the W5500 to use a 30MHZ clock:
Using the WIZnet W5100S-EVB-Pico
--------------------------------
You can use the onboard Ethernet chip with these drivers by utilizing the following options:
You can use the onboard Ethernet chip with these drivers, in interrupt mode, by utilizing the following options:
.. code:: cpp
#include <W5100lwIP.h>
Wiznet5100lwIP eth(17); // Note chip select is **17**
Wiznet5100lwIP eth(17, SPI, 21); // Note chip select is **17**
void setup() {
// Set SPI to the onboard Wiznet chip
+42
View File
@@ -0,0 +1,42 @@
FatFSUSB
========
When the onboard flash memory is used as a ``FatFS`` filesystem, the
``FatFSUSB`` can be used to allow exporting it to a PC as a standard
memory stick. The PC can then access, add, and remove files as if the
Pico was a USB memory stick, and upon ejection the Pico can access
any new files just as if it made them itself.
(Note, if you are using LittleFS then you need to use ``SingleFileDrive``
to export a single file, not this class, because the PC does not
understand the LittleFS disk format.)
Callbacks, Interrupt Safety, and File Operations
------------------------------------------------
The ``FatFSUSB`` library allows your application to get a callback
when a PC attempts to mount or unmount the Pico as a FAT drive.
When the drive is being used by the Pico (i.e. any ``File`` is open for
read or write, the ``FatFS`` is not ``end()`` -ed and still mounted,
etc.) the host may not access it. Conversely, while the host PC is
connected to the drive no ``FatFS`` access by the Pico is allowed.
Your ``driveReady`` callback will be called when the PC attempts to mount
the drive. If you have any files open, then this callback can report back
that the drive is not yet ready. When you complete file processing, the PC
can re-attempt to mount the drive and your callback can return ``true`` .
The ``onPlug`` callback will generally ``FatFS.end()`` and set a
global flag letting your application know not to touch the filesystem until
the flag is cleared by the ``onUnplug`` callback (which will also do a
``FatFS.begin()`` call).
Failing to close all files **and** ``FatFS.end()`` before granting the
PC access to flash memory will result in corruption. FAT does not allow multiple
writers to access the same drive. Even mounting and only reading files from
the PC may cause hidden writes (things like access time, etc.) which would
also cause corruption.
See the included ``Listfiles-USB`` sketch for an example of working with
these limitations.
+53 -9
View File
@@ -33,6 +33,7 @@ following include to the sketch:
#include "LittleFS.h" // LittleFS is declared
// #include <SDFS.h>
// #include <SD.h>
// #include <FatFS.h>
Compatible Filesystem APIs
@@ -48,10 +49,45 @@ SD card reader.
SD is the Arduino-supported, somewhat old and limited SD card filesystem.
It is recommended to use SDFS for new applications instead of SD.
All three of these filesystems can open and manipulate ``File`` and ``Dir``
FatFS implements a wear-leveled, FTL-backed FAT filesystem in the onboard
flash which can be easily accessed over USB as a standard memory stick
via FatFSUSB.
All of these filesystems can open and manipulate ``File`` and ``Dir``
objects with the same code because the implement a common end-user
filesystem API.
FatFS File System Caveats and Warnings
--------------------------------------
The FAT filesystem is ubiquitous, but it is also around 50 years old and ill
suited to SPI flash memory due to having "hot spots" like the FAT copies that
are rewritten many times over. SPI flash allows a high, but limited, number
of writes before losing the ability to write safely. Applications like
data loggers where many writes occur could end up wearing out the SPI flash
sector that holds the FAT **years** before coming close to the write limits of
the data sectors.
To circumvent this issue, the FatFS implementation here uses a flash translation
layer (FTL) developed for SPI flash on embedded systems. This allows for the
same LBA to be written over and over by the FAT filesystem, but use different
flash locations. For more information see
[SPIFTL](https://github.com/earlephilhower/SPIFTL). In this mode the Pico
flash appears as a normal, 512-byte sector drive to the FAT.
What this means, practically, is that about 5KB of RAM per megabyte of flash
is required for housekeeping. Writes can also become very slow if most of the
flash LBA range is used (i.e. if the FAT drive is 99% full) due to the need
for garbage collection processes to move data around and preserve the flash
lifetime.
Alternatively, if an FTL is not desired or memory is tight, FatFS can use the
raw flash directly. In this mode sectors are 4K in size and flash is mapped
1:1 to sectors, so things like the FAT table updates will all use the same
physical flash bits. For low-utilization operations this may be fine, but if
significant writes are done (from the Pico or the PC host) this may wear out
portions of flash very quickly , rendering it unusable.
LittleFS File System Limitations
--------------------------------
@@ -115,8 +151,8 @@ second SPI port, ``SPI1``. Just use the following call in place of
SD.begin(cspin, SPI1);
File system object (LittleFS/SD/SDFS)
-------------------------------------
File system object (LittleFS/SD/SDFS/FatFS)
-------------------------------------------
setConfig
~~~~~~~~~
@@ -131,14 +167,22 @@ setConfig
c2.setCSPin(12);
SDFS.setConfig(c2);
FatFSConfig c3;
c3.setUseFTL(false); // Directly access flash memory
c3.setDirEntries(256); // We need 256 root directory entries on a format()
c3.setFATCopies(1); // Only 1 FAT to save 4K of space and extra writes
FatFS.setConfig(c3);
FatFS.format(); // Format using these settings, erasing everything
This method allows you to configure the parameters of a filesystem
before mounting. All filesystems have their own ``*Config`` (i.e.
``SDFSConfig`` or ``LittleFSConfig`` with their custom set of options.
All filesystems allow explicitly enabling/disabling formatting when
mounts fail. If you do not call this ``setConfig`` method before
perforing ``begin()``, you will get the filesystem's default
behavior and configuration. By default, LittleFS will autoformat the
filesystem if it cannot mount it, while SDFS will not.
behavior and configuration. By default, LittleFS and FatFS will autoformat the
filesystem if it cannot mount it, while SDFS will not. FatFS will also use
the built-in FTL to support 512 byte sectors and higher write lifetime.
begin
~~~~~
@@ -553,8 +597,8 @@ close
Close the file. No other operations should be performed on *File* object
after ``close`` function was called.
openNextFile (compatibiity method, not recommended for new code)
~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
openNextFile (compatibility method, not recommended for new code)
~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
.. code:: cpp
@@ -565,8 +609,8 @@ openNextFile (compatibiity method, not recommended for new code)
Opens the next file in the directory pointed to by the File. Only valid
when ``File.isDirectory() == true``.
rewindDirectory (compatibiity method, not recommended for new code)
~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
rewindDirectory (compatibility method, not recommended for new code)
~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
.. code:: cpp
+208
View File
@@ -0,0 +1,208 @@
Bluetooth HID Master
====================
The PicoW can connect to a Bluetooth Classic or Bluetooth BLE keyboard,
mouse, or joystick and receive input events from it. As opposed to
the ``Keyboard``, ``Mouse``, and ``Joystick`` libraries, which make
the PicoW into a peripheral others can use, this lets the PicoW use the
same kinds of peripherals in a master rols.
BTDeviceInfo Class
------------------
The ``BluetoothHCI`` class implements a scanning function for classic
and BLE devices and can return a ``std::vector`` of discovered devices to an application.
Iterate over the list using any of the STL iteration methods (i.e. ``for (auto e : list)``).
The elements of this list are ``BTDeviceInfo`` objects which have the following
member functions:
``BTDeviceInfo::deviceClass()`` returns the Bluetooth BLE UUID or the Blustooth device
class for the device. This specifies the general class of the device (keyboard, mouse,
etc.).
``BTDeviceInfo::address()`` and ``BTDeviceInfo::addressString()`` return the
Bluetooth address as a binary array or a string that can be used to ``print``.
``BTDeviceInfo::addressType()`` returns whether the BLE address is random or not, and
is not generally needed by a user application.
``BTDeviceInfo::rssi()`` returns an approximate dB level for the device. Less
negative is stronger signal.
``BTDeviceInfo::name()`` returns the advertised name of the device, if present. Some
devices or scans do not return names for valid devices.
BluetoothHCI Class
------------------
The ``BluetoothHCI`` class is responsible for scanning for devices and the lower-level
housekeeping for a master-mode Bluetooth application. Most applications will not need
to access it directly, but it can be used to discover nearby BT devices. As
part of the application Bluetooth setup, call ``BluetoothHCI::install()`` and then
``BluetoothHCI::begin()`` to start BT processing. Your application is still responsible
for all the non-default HCI initialization and customization. See the ``BluetoothScanner.ino``
example for more info.
BluetoothHIDMaster Operation
----------------------------
Most applications will use the ``BluetoothHIDMaster`` class and, after connecting, receive
callbacks from the Bluetooth stack when input events (key presses, mouse moves, button
mashes) occur.
Application flow will generally be:
1. Install the appropriate callbacks using the ``BluetoothHIDMaster::onXXX`` methods
2. Start the Bluetooth processing with ``BluetoothHIDMaster::begin()`` or ``BluetoothHIDMaster::beginBLE()``
3. Connect to the first device found with ``BluetoothHIDMaster::connectXXX()`` and start receiving callbacks.
4. Callbacks will come at interrupt time and set global state variables, which the main ``loop()`` will process
Callback Event Handlers
-----------------------
The main application is informed of new inputs via a standard callback mechanism. These callbacks run at
interrupt time and should not do significant work, ``delay()``, or allocate or free memory. The most common
way of handling this is setting global ``volatile`` flags and variables that the main ``loop()`` will poll
and process.
Mouse Callbacks
~~~~~~~~~~~~~~~
The ``BluetoothHIDMaster::onMouseMove`` callback gets the delta X, Y, and wheel reported by the device.
The ``BluetoothHIDMaster::onMouseButton`` gets a button number and state (up or down) and will be called
each time an individual button is reported changed by the mouse.
.. code :: cpp
void mouseMoveCB(void *cbdata, int dx, int dy, int dw) {
// Process the deltas, adjust global mouse state
}
void mouseButtonCB(void *cbdata, int butt, bool down) {
// Set the global button array with this new info
}
Meyboard Callbacks
~~~~~~~~~~~~~~~~~~
The `BluetoothHIDMaster::onKeyDown`` callback receives the raw HID key (**NOT ASCII**) sent by the device on a key press
while `BluetoothHIDMaster::onKeyUp`` gets the same when a key is released. Note that up to 6 keys can be pressed at any
one time. For media keys ("consumer keys" in the USB HID documentation) the ``BluetoothHIDMaster::onConsumerKeyDown`` and
``BluetoothHIDMaster::onConsumerKeyUp`` perform the same function (and receive the consumer key IDs defined by the
USB HID spec and not ASCII).
To convert the key press and release (including SHIFT handling), use a ``HIDKeyStream`` object. Simply write the raw
HID key and the up/down state to the stream and read back the ASCII for use in an application.
.. code :: cpp
HIDKeyStream keystream;
void keyDownCB(void *cbdata, int key) {
keystream.write((uint8_t )key);
keystream.write((uint8_t) true); // Keystream now has 1 ASCII character to read out and use
char ascii = keystream.read();
// ....
}
void keyUpCB(void *cbdata, int key) {
// Normally don't do anything on this, the character was read in the keyDownCB
}
void consumerKeyDownCB(void *cbdata, int key) {
// switch(key) and use cases from the USB Consumer Key page
}
void consumerKeyUpCB(void *cbdata, int key) {
// switch(key) and use cases from the USB Consumer Key page
}
Joystick Callbacks
~~~~~~~~~~~~~~~~~~
A single ``BluetoothHIDMaster::onJoystick`` callback gets activated every time a report from a joystick is processed.
It receives (potentially, if supported by the device) 4 analog axes, one 8-way digital hat switch position, and up
to 32 button states at a time.
.. code :: cpp
void joystickCB(void *cbdata, int x, int y, int z, int rz, uint8_t hat, uint32_t buttons) {
// HAT 0 = UP and continues clockwise. If no hat direction it is set to 0x0f.
// Use "buttons & (1 << buttonNumber)" to look at the individual button states
// ...
}
PianoKeyboard Example
~~~~~~~~~~~~~~~~~~~~~
See the ``PianoKeyboard.ino`` and ``PianoKeyboardBLE.ino`` examples for more information on callback operation.
BluetoothHIDMaster::onXXX Callback Installers
~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
.. code :: cpp
void BluetoothHIDMaster::onMouseMove(void (*)(void *, int, int, int), void *cbData = nullptr);
void BluetoothHIDMaster::onMouseButton(void (*)(void *, int, bool), void *cbData = nullptr);
void BluetoothHIDMaster::onKeyDown(void (*)(void *, int), void *cbData = nullptr);
void BluetoothHIDMaster::onKeyUp(void (*)(void *, int), void *cbData = nullptr);
void BluetoothHIDMaster::onConsumerKeyDown(void (*)(void *, int), void *cbData = nullptr);
void BluetoothHIDMaster::onConsumerKeyUp(void (*)(void *, int), void *cbData = nullptr);
void BluetoothHIDMaster::onJoystick(void (*)(void *, int, int, int, int, uint8_t, uint32_t), void *cbData = nullptr);
BluetoothHIDMaster Class
------------------------
bool BluetoothHIDMaster::begin()
~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
Installs and configures the Bluetooth Classic stack and starts processing events. No connections are made at this point.
When running in Classic mode, no BLE devices can be detected or used.
bool BluetoothHIDMaster::begin(const char *BLEName)
~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
Installs and configures the Bluetooth BLE stack and starts processing events. No connections are made at this point.
When running in BLE mode, no Classic devices can be detected or used.
bool BluetoothHIDMaster::connected()
~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
Returns if the Bluetooth stack is up and running and a connection to a device is currently active.
void BluetoothHIDMaster::end()
~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
Disables the Bluetooth stack. Note that with the current Bluetooth implementation restarting the stack (i.e. calling ``begin()`` after ``end()``) is not stable and will not work. Consider storing state and rebooting completely if this is necessary.
bool BluetoothHIDMaster::running()
~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
Returns if the Bluetooth stack is running at all. Does not indicate if there is an active connection or not.
bool BluetoothHIDMaster::hciRunning()
~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
Returns if the Bluetooth stack has passed the initial HCI start up phase. Until this returns ``true`` no Bluetooth operations can be performed.
std::vector<BTDeviceInfo> BluetoothHIDMaster::scan(uint32_t mask, int scanTimeSec, bool async)
~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
Passes through the ``BluetoothHCI::scan()`` function to manually scan for a list of nearby devices. If you want to connect to the first found device, this is not needed.
bool BluetoothHIDMaster::connect(const uint8_t *addr)
~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
Start the connection process to the Bluetooth Classic device with the given MAC. Note that this returns immediately, but it may take several seconds until ``connected()`` reports that the connection has been established.
bool BluetoothHIDMaster::connectKeyboard(), connectMouse(), connectJoystick(), connectAny()
~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
Connect to the first found specified Bluetooth Classic device type (or any HID device) in pairing mode. No need to call ``scan()`` or have an address.
bool BluetoothHIDMaster::connectBLE(const uint8_t *addr, int addrType)
~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
Start the connection process to the Bluetooth BLE device with the given MAC. Note that this returns immediately, but it may take several seconds until ``connected()`` reports that the connection has been established.
bool BluetoothHIDMaster::connectBLE()
~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
Connect to the first found BLE device that has a HID service UUID (keyboard, mouse, or joystick)
bool BluetoothHIDMaster::disconnect()
~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
Shuts down the connection to the currently connected device.
void BluetoothHIDMaster::clearPairing()
~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
Erases all Bluetooth keys from memory. This effectively "forgets" all pairing between devices and can help avoid issues with the beta Bluetooth stack in the SDK.
+3 -7
View File
@@ -1,15 +1,11 @@
IDE Menus
=========
Model
Board
-----
Use the boards menu to select your model of RP2040 board. There will be two
options: `Boardname` and `Boardname (Picoprobe)`. If you want to use a
Picoprobe to upload your sketches and not the default automatic UF2 upload,
use the `(Picoprobe)` option, otherwise use the normal name. No functional
or code changes are done because of this.
Use the boards menu to select your model of RP2040 board.
There is also a `Generic` board which allows you to individually select
There is also a `Generic RP2040` board which allows you to individually select
things such as flash size or boot2 flash type. Use this if your board isn't
yet fully supported and isn't working with the normal `Raspberry Pi Pico`
option.
+4 -1
View File
@@ -44,9 +44,12 @@ For the latest version, always check https://github.com/earlephilhower/arduino-p
USB (Arduino and Adafruit_TinyUSB) <usb>
Multicore Processing <multicore>
Bluetooth (Alpha/Beta) <bluetooth>
Bluetooth <bluetooth>
Bluetooth HID Master <hidmaster>
Bluetooth Audio (A2DP) <a2dp>
Single File USB Drive <singlefile>
FatFSUSB - full FS access over USB <fatfsusb>
FreeRTOS SMP (multicore) <freertos>
+12 -2
View File
@@ -37,6 +37,11 @@ Pausing Cores
Sometimes an application needs to pause the other core on chip (i.e. it is
writing to flash or needs to stop processing while some other event occurs).
In most cases, however, these calls are **SHOULD NOT BE USED**. To synchronize
cross-core operations use normal multiprocessor methods such as circular buffers,
global ``volatile`` flags, mutexes, and the like. Stopping a core has massive
implications and can kill networking and USB communications if done too long or
too frequently.
void rp2040.idleOtherCore()
~~~~~~~~~~~~~~~~~~~~~~~~~~~
@@ -69,7 +74,12 @@ Communicating Between Cores
The RP2040 provides a hardware FIFO for communicating between cores, but it
is used exclusively for the idle/resume calls described above. Instead, please
use the following functions to access a software-managed, multicore safe
FIFO.
FIFO. There are two FIFOs, one written to by core 0 and read by core 1, and
the other written to by core 1 and read by core 0.
You can (and probably should) use shared memory (such as ``volatile`` globals)
or other normal multiprocessor communication algorithms to transfer data or
work between cores, but for simple tasks these FIFO routines can suffice.
void rp2040.fifo.push(uint32_t)
~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
@@ -96,4 +106,4 @@ Reads a value from this core's FIFO and places it in dest. Will return
int rp2040.fifo.available()
~~~~~~~~~~~~~~~~~~~~~~~~~~~
Returns the number of values available in this core's FIFO.
Returns the number of values available to read in this core's FIFO.
+4 -4
View File
@@ -12,7 +12,7 @@ OTA may be done using:
- `Arduino IDE <#arduino-ide>`__
- `Web Browser <#web-browser>`__
- `HTTP Server <#http-server>`__
- Any other method (ZModen receive over a UART port, etc.) by using the ``Updater`` object in your sketch
- Any other method (ZModem receive over a UART port, etc.) by using the ``Updater`` object in your sketch
The Arduino IDE option is intended primarily for the software development phase. The other two options would be more useful after deployment, to provide the module with application updates either manually with a web browser, or automatically using an HTTP server.
@@ -189,7 +189,7 @@ Uploading modules wirelessly from Arduino IDE is intended for the following typi
To upload wirelessly from the IDE:
1. Build a sketch starts ``WiFi`` and includes the appropriate calls to ``ArduinoOTA`` (see the examples for reference). These include the ``ArduinoOTA.begin()`` call in ``setup()`` and periodically calling ``ArduinoOTA.handle();`` from the ``loop()``
1. Build a sketch that starts ``WiFi`` and includes the appropriate calls to ``ArduinoOTA`` (see the examples for reference). These include the ``ArduinoOTA.begin()`` call in ``setup()`` and periodically calling ``ArduinoOTA.handle();`` from the ``loop()``
2. Upload using standard USB connection the first time.
@@ -212,9 +212,9 @@ Before implementing it in your sketch, it is a good idea to check how it works u
Enter the password and upload should be initiated as usual with the only difference being ``Authenticating...OK`` message visible in the upload log.
You will not be prompted for a reentering the same password next time. Arduino IDE will remember it for you. You will see a prompt for password only after reopening IDE, or if you change it in your sketch, upload the sketch and then try to upload it again.
You will not be prompted for a reentering the same password next time. Arduino IDE will remember it for you. You will see a prompt for password only after reopening the IDE, or if you change it in your sketch, upload the sketch and then try to upload it again.
Please note, it is possible to reveal password entered previously in Arduino IDE, if IDE has not been closed since last upload. This can be done by enabling *Show verbose output during: upload* in *File > Preferences* and attempting to upload the module.
Please note, it is possible to reveal password entered previously in Arduino IDE, if the IDE has not been closed since last upload. This can be done by enabling *Show verbose output during: upload* in *File > Preferences* and attempting to upload the module.
+1
View File
@@ -15,6 +15,7 @@ To instantiate only a serial transmit or receive unit, pass in
``SerialPIO::NOPIN`` as the ``txpin`` or ``rxpin``.
For example, to make a transmit-only port on GP16
.. code:: cpp
SerialPIO transmitter( 16, SerialPIO::NOPIN );
+37 -5
View File
@@ -8,10 +8,10 @@ SPI pinouts can be set **before SPI.begin()** using the following calls:
.. code:: cpp
bool setRX(pin_size_t pin);
bool setRX(pin_size_t pin); // or setMISO()
bool setCS(pin_size_t pin);
bool setSCK(pin_size_t pin);
bool setTX(pin_size_t pin);
bool setTX(pin_size_t pin); // or setMOSI()
Note that the ``CS`` pin can be hardware or software controlled by the sketch.
When software controlled, the ``setCS()`` call is ignored.
@@ -39,7 +39,39 @@ in order to consunme the received data and provide data to transmit.
* The callbacks operate at IRQ time and may be called very frequently at high SPI frequencies. So, make then small, fast, and with no memory allocations or locking.
Examples
~~~~~~~~
Asynchronous Operation
======================
See the SPItoMyself example for a complete Master and Slave application.
Applications can use asynchronous SPI calls to allow for processing while long-running SPI transfers are
being performed. For example, a game could send a full screen update out over SPI and immediately start
processing the next frame without waiting for the first one to be sent. DMA is used to handle
the transfer to/from the hardware freeing the CPU from bit-banging or busy waiting.
Note that asynchronous operations can not be intersped with normal, synchronous ones. ``transferAsync``
should still occur after a ``beginTransaction()`` and when ``finishedAsync()`` returns ``true`` then
``endTransaction()`` should also be called.
All buffers need to be valid throughout the entire operation. Read data cannot be accessed until
the transaction is completed and can't be "peeked" at while the operation is ongoing.
bool transferAsync(const void \*send, void \*recv, size_t bytes)
~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
Begins an SPI asynchronous transaction. Either ``send`` or ``recv`` can be ``nullptr`` if data only needs
to be transferred in one direction.
Check ``finishedAsync()`` to determine when the operation completes and conclude the transaction.
This operation needs to allocate a buffer from heap equal to ``bytes`` in size if ``LSBMODE`` is used.
bool finishedAsync()
~~~~~~~~~~~~~~~~~~~~
Call to check if the asynchronous operations is completed and the buffer passed in can be either read or
reused. Frees the allocated memory and completes the asynchronous transaction.
void abortAsync()
~~~~~~~~~~~~~~~~~
Cancels the outstanding asynchronous transaction and frees any allocated memory.
Examples
========
See the SPItoMyself and SPItoMyselfAsync examples for a complete Master and Slave application.
+39 -1
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@@ -20,7 +20,45 @@ diagram for your board, or it won't work.
Other than that, the API is compatible with the Arduino standard.
Both master and slave operation are supported.
Master transmissions are buffered (up to 128 bytes) and only performed
Master transmissions are buffered (up to 256 bytes) and only performed
on ``endTransmission``, as is standard with modern Arduino Wire implementations.
For more detailed information, check the `Arduino Wire documentation <https://www.arduino.cc/en/reference/wire>`_ .
Asynchronous Operation
----------------------
Applications can use asynchronous I2C calls to allow for processing while long-running I2C operations are
being performed. For example, a game could send a full screen update out over I2C and immediately start
processing the next frame without waiting for the first one to be sent over I2C. DMA is used to handle
the transfer to/from the I2C hardware freeing the CPU from bit-banging or busy waiting.
Note that asynchronous operations can not be intersped with normal, synchronous ones. Fully complete an
asynchronous operation before attempting to do a normal ``Wire.beginTransaction()`` or ``Wire.requestFrom``.
Also, all buffers need to be valid throughout the entire operation. Read data cannot be accessed until
the transaction is completed and can't be "peeked" at while the operation is ongoing.
bool writeAsync(uint8_t address, const void \*buffer, size_t bytes, bool sendStop)
~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
Begins an I2C asynchronous write transaction. Writes to ``address`` of ``bytes`` from ``buffer`` and
at the end will send an I2C stop if ``sendStop`` is ``true``.
Check ``finishedAsync()`` to determine when the operation completes and conclude the transaction.
This operation needs to allocate a buffer from heap equal to 2x ``bytes`` in size.
bool readAsync(uint8_t address, void \*buffer, size_t bytes, bool sendStop)
~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
Begins an I2C asynchronous read transaction. Reads from ``address`` for ``bytes`` into ``buffer`` and
at the end will send an I2C stop if ``sendStop`` is ``true``.
Check ``finishedAsync()`` to determine when the operation completes and conclude the transaction.
This operation needs to allocate a buffer from heap equal to 4x ``bytes`` in size.
bool finishedAsync()
~~~~~~~~~~~~~~~~~~~~
Call to check if the asynchronous operations is completed and the buffer passed in can be either read or
reused. Frees the allocated memory and completes the asynchronous transaction.
void abortAsync()
~~~~~~~~~~~~~~~~~
Cancels the outstanding asynchronous transaction and frees any allocated memory.
+15 -19
View File
@@ -1,11 +1,9 @@
#ifndef _LWIPOPTS_EXAMPLE_COMMONH_H
#define _LWIPOPTS_EXAMPLE_COMMONH_H
#pragma once
#ifdef __cplusplus
extern "C" {
#endif // __cplusplus
// Critical section protection
extern void noInterrupts();
extern void interrupts();
@@ -16,6 +14,10 @@ extern void interrupts();
extern unsigned long __lwip_rand(void);
#define LWIP_RAND() __lwip_rand()
#ifndef __LWIP_MEMMULT
#define __LWIP_MEMMULT 1
#endif
// Common settings used in most of the pico_w examples
// (see https://www.nongnu.org/lwip/2_1_x/group__lwip__opts.html for details)
@@ -24,10 +26,10 @@ extern unsigned long __lwip_rand(void);
#define MEM_LIBC_MALLOC 0
#define MEM_ALIGNMENT 4
#define MEM_SIZE 16384
#define MEMP_NUM_TCP_SEG 32
#define MEMP_NUM_ARP_QUEUE 10
#define PBUF_POOL_SIZE 24
#define MEM_SIZE (__LWIP_MEMMULT * 16384)
#define MEMP_NUM_TCP_SEG (32)
#define MEMP_NUM_ARP_QUEUE (10)
#define PBUF_POOL_SIZE (__LWIP_MEMMULT > 1 ? 32 : 24)
#define LWIP_ARP 2
#define LWIP_ETHERNET 1
#define LWIP_ICMP 1
@@ -40,12 +42,13 @@ extern unsigned long __lwip_rand(void);
#define LWIP_NETIF_LINK_CALLBACK 1
#define LWIP_NETIF_HOSTNAME 1
#define LWIP_NETCONN 0
#define LWIP_STATS 0
#define LWIP_STATS_DISPLAY 0
#define MEM_STATS 0
#define SYS_STATS 0
#define MEMP_STATS 0
#define LINK_STATS 0
// #define ETH_PAD_SIZE 2
#define LWIP_CHKSUM_ALGORITHM 3
#define LWIP_CHKSUM_ALGORITHM 0
#define LWIP_DHCP 1
#define LWIP_IPV4 1
#define LWIP_TCP 1
@@ -57,7 +60,8 @@ extern unsigned long __lwip_rand(void);
#define LWIP_DHCP_DOES_ACD_CHECK 0
// See #1285
#define MEMP_NUM_UDP_PCB 6
#define MEMP_NUM_UDP_PCB (__LWIP_MEMMULT * 6)
#define MEMP_NUM_TCP_PCB (__LWIP_MEMMULT * 5)
#if LWIP_IPV6
#define LWIP_IPV6_DHCP6 1
@@ -70,12 +74,7 @@ extern void __setSystemTime(unsigned long long sec, unsigned long us);
//#define SNTP_SERVER_ADDRESS "pool.ntp.org"
#define SNTP_SERVER_DNS 1
#ifndef NDEBUG
#define LWIP_DEBUG 1
#define LWIP_STATS 1
#define LWIP_STATS_DISPLAY 1
#endif
#define LWIP_DEBUG 0
#define ETHARP_DEBUG LWIP_DBG_OFF
#define NETIF_DEBUG LWIP_DBG_OFF
#define PBUF_DEBUG LWIP_DBG_OFF
@@ -108,6 +107,3 @@ extern void __setSystemTime(unsigned long long sec, unsigned long us);
#ifdef __cplusplus
}
#endif // __cplusplus
#endif /* __LWIPOPTS_H__ */
+27
View File
@@ -3,15 +3,25 @@
#######################################
Arduino KEYWORD3 RESERVED_WORD
defined KEYWORD3 RESERVED_WORD
#######################################
# Datatypes (KEYWORD1)
#######################################
Dir KEYWORD1
File KEYWORD1
timeval KEYWORD1
time_t KEYWORD1
#######################################
# Methods and Functions (KEYWORD2)
#######################################
openDir KEYWORD2
setConfig KEYWORD2
fileCreationTime KEYWORD2
setup1 KEYWORD2
loop1 KEYWORD2
@@ -61,7 +71,24 @@ digitalReadFast KEYWORD2
enableDoubleResetBootloader KEYWORD2
openDir KEYWORD2
next KEYWORD2
getLastWrite KEYWORD2
getCreationTime KEYWORD2
fileTime KEYWORD2
fileCreationTime KEYWORD2
check KEYWORD2
setTimeCallback KEYWORD2
settimeofday KEYWORD2
sprintf_P KEYWORD2
strcpy_P KEYWORD2
snprintf_P KEYWORD2
strncpy_P KEYWORD2
OUTPUT_2MA LITERAL1
OUTPUT_4MA LITERAL1
OUTPUT_8MA LITERAL1
OUTPUT_12MA LITERAL1
ARDUINO_ARCH_RP2040 LITERAL1
BIN
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+3
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@@ -203,6 +203,9 @@
-Wl,--wrap=raw_sendto
-Wl,--wrap=raw_remove
-Wl,--wrap=netif_add
-Wl,--wrap=netif_remove
-Wl,--wrap=cyw43_cb_process_ethernet
-Wl,--wrap=cyw43_cb_tcpip_set_link_up
-Wl,--wrap=cyw43_cb_tcpip_set_link_down
@@ -1,5 +1,5 @@
#include <ESP8266WiFi.h>
#include <ESP8266mDNS.h>
#include <WiFi.h>
#include <LEAmDNS.h>
#include <WiFiUdp.h>
#include <ArduinoOTA.h>
@@ -22,11 +22,11 @@ void setup() {
rp2040.restart();
}
// Port defaults to 8266
// ArduinoOTA.setPort(8266);
// Port defaults to 2040
// ArduinoOTA.setPort(2040);
// Hostname defaults to esp8266-[ChipID]
// ArduinoOTA.setHostname("myesp8266");
// Hostname defaults to pico-[ChipID]
// ArduinoOTA.setHostname("mypico");
// No authentication by default
// ArduinoOTA.setPassword("admin");
@@ -1,5 +1,5 @@
#include <ESP8266WiFi.h>
#include <ESP8266mDNS.h>
#include <WiFi.h>
#include <LEAmDNS.h>
#include <WiFiUdp.h>
#include <ArduinoOTA.h>
Submodule libraries/AsyncUDP added at 9a718fb3dc
@@ -24,8 +24,9 @@
#include <hardware/irq.h>
#include "AudioBufferManager.h"
static int __channelCount = 0; // # of channels left. When we hit 0, then remove our handler
static AudioBufferManager* __channelMap[12]; // Lets the IRQ handler figure out where to dispatch to
static int __channelCount = 0; // # of channels left. When we hit 0, then remove our handler
static AudioBufferManager* __channelMap[12]; // Lets the IRQ handler figure out where to dispatch to
static bool __irqInstalled = false; // Have we put in our IRQ handler yet?
AudioBufferManager::AudioBufferManager(size_t bufferCount, size_t bufferWords, int32_t silenceSample, PinMode direction, enum dma_channel_transfer_size dmaSize) {
_running = false;
@@ -78,11 +79,6 @@ AudioBufferManager::~AudioBufferManager() {
dma_channel_unclaim(_channelDMA[i]);
__channelCount--;
}
if (!__channelCount) {
irq_set_enabled(DMA_IRQ_0, false);
// TODO - how can we know if there are no other parts of the core using DMA0 IRQ??
irq_remove_handler(DMA_IRQ_0, _irq);
}
}
interrupts();
for (int i = 0; i < 2; i++) {
@@ -120,7 +116,7 @@ bool AudioBufferManager::begin(int dreq, volatile void *pioFIFOAddr) {
return false;
}
}
bool needSetIRQ = __channelCount == 0;
// Need to know both channels to set up ping-pong, so do in 2 stages
for (auto i = 0; i < 2; i++) {
dma_channel_config c = dma_channel_get_default_config(_channelDMA[i]);
@@ -146,9 +142,10 @@ bool AudioBufferManager::begin(int dreq, volatile void *pioFIFOAddr) {
__channelMap[_channelDMA[i]] = this;
__channelCount++;
}
if (needSetIRQ) {
if (!__irqInstalled) {
irq_add_shared_handler(DMA_IRQ_0, _irq, PICO_SHARED_IRQ_HANDLER_DEFAULT_ORDER_PRIORITY);
irq_set_enabled(DMA_IRQ_0, true);
__irqInstalled = true;
}
dma_channel_start(_channelDMA[0]);
+9 -3
View File
@@ -526,6 +526,10 @@ const gatt_client_characteristic_t * BLECharacteristic::getCharacteristic(void)
return &characteristic;
}
gatt_client_notification_t *BLECharacteristic::getNotifier() {
return &notify;
}
BLEService::BLEService(void) {
}
@@ -703,6 +707,7 @@ int BTstackManager::writeCharacteristicWithoutResponse(BLEDevice * device, BLEC
}
int BTstackManager::subscribeForNotifications(BLEDevice * device, BLECharacteristic * characteristic) {
gattAction = gattActionSubscribe;
gatt_client_listen_for_characteristic_value_updates(characteristic->getNotifier(), gatt_client_callback, device->getHandle(), (gatt_client_characteristic_t*) characteristic->getCharacteristic());
return gatt_client_write_client_characteristic_configuration(gatt_client_callback, device->getHandle(), (gatt_client_characteristic_t*) characteristic->getCharacteristic(),
GATT_CLIENT_CHARACTERISTICS_CONFIGURATION_NOTIFICATION);
}
@@ -713,6 +718,7 @@ int BTstackManager::subscribeForIndications(BLEDevice * device, BLECharacteristi
}
int BTstackManager::unsubscribeFromNotifications(BLEDevice * device, BLECharacteristic * characteristic) {
gattAction = gattActionUnsubscribe;
gatt_client_stop_listening_for_characteristic_value_updates(characteristic->getNotifier());
return gatt_client_write_client_characteristic_configuration(gatt_client_callback, device->getHandle(), (gatt_client_characteristic_t*) characteristic->getCharacteristic(),
GATT_CLIENT_CHARACTERISTICS_CONFIGURATION_NONE);
}
@@ -808,9 +814,6 @@ void BTstackManager::setup(const char * name) {
hci_add_event_handler(&hci_event_callback_registration);
l2cap_init();
// setup central device db
le_device_db_init();
sm_init();
att_server_init(att_db_util_get_address(), att_read_callback, att_write_callback);
@@ -889,6 +892,9 @@ uint16_t BTstackManager::addGATTCharacteristicDynamic(UUID * uuid, uint16_t flag
void BTstackManager::setAdvData(uint16_t adv_data_len, const uint8_t * adv_data) {
gap_advertisements_set_data(adv_data_len, (uint8_t*) adv_data);
}
void BTstackManager::setScanData(uint16_t scan_data_len, const uint8_t * scan_data) {
gap_scan_response_set_data(scan_data_len, (uint8_t*) scan_data);
}
void BTstackManager::startAdvertising() {
gap_advertisements_enable(1);
}
+3
View File
@@ -84,6 +84,7 @@ extern "C" {
class BLECharacteristic {
private:
gatt_client_notification_t notify;
gatt_client_characteristic_t characteristic;
UUID uuid;
public:
@@ -93,6 +94,7 @@ extern "C" {
bool matches(UUID * uuid);
bool isValueHandle(uint16_t value_handle);
const gatt_client_characteristic_t * getCharacteristic();
gatt_client_notification_t *getNotifier();
};
class BLEService {
@@ -143,6 +145,7 @@ extern "C" {
void enableDebugLogger();
void setAdvData(uint16_t size, const uint8_t * data);
void setScanData(uint16_t size, const uint8_t * data);
void iBeaconConfigure(UUID * uuid, uint16_t major_id, uint16_t minor_id, uint8_t measured_power = 0xc6);
void startAdvertising();
void stopAdvertising();
@@ -0,0 +1,64 @@
// A2DPSink example - Released to the public domain in 2024 by Earle F. Philhower, III
// Hook up a phono plug to GP0 and GP1 (and GND of course...the 1st 3 pins on the PCB)
// Connect wired earbuds up and connect over BT from your phone and play some music.
#include <BluetoothAudio.h>
#include <PWMAudio.h>
PWMAudio pwm;
A2DPSink a2dp;
volatile A2DPSink::PlaybackStatus status = A2DPSink::STOPPED;
void volumeCB(void *param, int pct) {
(void) param;
Serial.printf("Speaker volume changed to %d%%\n", pct);
}
void connectCB(void *param, bool connected) {
(void) param;
if (connected) {
Serial.printf("A2DP connection started to %s\n", bd_addr_to_str(a2dp.getSourceAddress()));
} else {
Serial.printf("A2DP connection stopped\n");
}
}
void playbackCB(void *param, A2DPSink::PlaybackStatus state) {
(void) param;
status = state;
}
void setup() {
Serial.begin(115200);
delay(3000);
Serial.printf("Starting, connect to the PicoW and start playing music\n");
Serial.printf("Use BOOTSEL to pause/resume playback\n");
a2dp.setName("PicoW Boom 00:00:00:00:00:00");
a2dp.setConsumer(new BluetoothAudioConsumerPWM(pwm));
a2dp.onVolume(volumeCB);
a2dp.onConnect(connectCB);
a2dp.onPlaybackStatus(playbackCB);
a2dp.begin();
}
char *nowPlaying = nullptr;
void loop() {
if (BOOTSEL) {
if (status == A2DPSink::PAUSED) {
a2dp.play();
Serial.printf("Resuming\n");
} else if (status == A2DPSink::PLAYING) {
a2dp.pause();
Serial.printf("Pausing\n");
}
while (BOOTSEL);
}
if (!nowPlaying || strcmp(nowPlaying, a2dp.trackTitle())) {
free(nowPlaying);
nowPlaying = strdup(a2dp.trackTitle());
Serial.printf("NOW PLAYING: %s\n", nowPlaying);
}
}
@@ -0,0 +1,100 @@
// Plays tones and Au Claire De La Lune over an A2DP connection
// Released to the public domain by Earle Philhower <earlephilhowwer@yahoo.com>
#include <BluetoothAudio.h>
#include "raw.h"
A2DPSource a2dp;
int16_t pcm[64 * 2];
uint32_t phase = 0;
volatile uint32_t fr = 32;
volatile uint32_t fl = 16;
volatile bool paused = false;
volatile bool playwav = false;
void avrcpCB(void *param, avrcp_operation_id_t op, int pressed) {
(void) param;
if (pressed && op == AVRCP_OPERATION_ID_FORWARD) {
// Change the sound when they hit play
fr = random(8, 64);
fl = random(8, 64);
Serial.printf("Now generating %lu, %lu\n", fr, fl);
} else if (pressed && op == AVRCP_OPERATION_ID_PLAY) {
paused = !paused;
if (paused) {
Serial.printf("Pausing\n");
} else {
Serial.printf("Resuming\n");
}
} else if (pressed && op == AVRCP_OPERATION_ID_BACKWARD) {
playwav = !playwav;
Serial.println(playwav ? "Playing 'Au Claire De La Lune'" : "Playing tones");
}
}
void volumeCB(void *param, int pct) {
(void) param;
Serial.printf("Speaker volume changed to %d%%\n", pct);
}
void connectCB(void *param, bool connected) {
(void) param;
if (connected) {
Serial.printf("A2DP connection started to %s\n", bd_addr_to_str(a2dp.getSinkAddress()));
} else {
Serial.printf("A2DP connection stopped\n");
}
}
void fillPCM() {
if (paused) {
bzero(pcm, sizeof(pcm));
return;
}
if (playwav) {
for (int i = 0; i < 64; i++) {
// Audio in flash is 8-bit signed mono, so shift left to make 16-bit and then play over both channels
pcm[i * 2] = auclairedelalune_raw[(i + phase) % sizeof(auclairedelalune_raw)] << 8;
pcm[i * 2 + 1] = auclairedelalune_raw[(i + phase) % sizeof(auclairedelalune_raw)] << 8;
}
} else {
for (int i = 0; i < 64; i++) {
pcm[i * 2] = ((i + phase) / fr) & 1 ? 3000 : -3000;
pcm[i * 2 + 1] = ((i + phase) / fl) & 1 ? 1000 : -1000;
}
}
phase += 64;
}
void setup() {
delay(2000);
a2dp.onAVRCP(avrcpCB);
a2dp.onVolume(volumeCB);
a2dp.onConnect(connectCB);
a2dp.begin();
Serial.printf("Starting, press BOOTSEL to pair to first found speaker\n");
Serial.printf("Use the forward button on speaker to change tones\n");
Serial.printf("Use the reverse button on speaker to alternate between tones and Au Claire De La Lune\n");
Serial.printf("Use the play button on speaker to pause/unpause the tone\n");
}
void loop() {
while ((size_t)a2dp.availableForWrite() > sizeof(pcm)) {
fillPCM();
a2dp.write((const uint8_t *)pcm, sizeof(pcm));
}
if (BOOTSEL) {
while (BOOTSEL) {
delay(1);
}
a2dp.disconnect();
a2dp.clearPairing();
Serial.printf("Connecting...");
if (a2dp.connect()) {
Serial.printf("Connected!\n");
} else {
Serial.printf("Failed! :(\n");
}
}
}
File diff suppressed because it is too large Load Diff
+59
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@@ -0,0 +1,59 @@
#######################################
# Syntax Coloring Map
#######################################
#######################################
# Datatypes (KEYWORD1)
#######################################
BluetoothAudio KEYWORD1
A2DPSource KEYWORD1
BluetoothAudioConsumer KEYWORD1
BluetoothAudioConsumerI2S KEYWORD1
BluetoothAudioConsumerPWM KEYWORD1
A2DPSink KEYWORD1
#######################################
# Methods and Functions (KEYWORD2)
#######################################
scan KEYWORD2
begin KEYWORD2
end KEYWORD2
setConsumer KEYWORD2
setFrequency KEYWORD2
setName KEYWORD2
setsetBufferSize KEYWORD2
getUnderflow KEYWORD2
getSinkAddress KEYWORD2
scan KEYWORD2
connect KEYWORD2
connected KEYWORD2
disconnect KEYWORD2
clearPairing KEYWORD2
connect KEYWORD2
play KEYWORD2
stop KEYWORD2
pause KEYWORD2
fastForward KEYWORD2
rewind KEYWORD2
forward KEYWORD2
backward KEYWORD2
volumeUp KEYWORD2
volumeDown KEYWORD2
mute KEYWORD2
onTransmit KEYWORD2
onAVRCP KEYWORD2
onBattery KEYWORD2
onVolume KEYWORD2
onConnect KEYWORD2
onPlaybackStatus KEYWORD2
#######################################
# Constants (LITERAL1)
#######################################
STOPPED LITERAL
PLAYING LITERAL
PAUSED LITERAL
@@ -0,0 +1,11 @@
name=BluetoothAudio
version=1.0
author=Earle F. Philhower, III <earlephilhower@yahoo.com>
maintainer=Earle F. Philhower, III <earlephilhower@yahoo.com>
sentence=Plays and receives audio over Bluetooth A2DP
paragraph=Plays and receives audio over Bluetooth A2DP
category=Communication
url=http://github.com/earlephilhower/arduino-pico
architectures=rp2040
dot_a_linkage=true
depends=BluetoothHCI
+818
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@@ -0,0 +1,818 @@
/*
A2DP Sink (Bluetooth audio receiver)
Copyright (c) 2024 Earle F. Philhower, III <earlephilhower@yahoo.com>
This library is free software; you can redistribute it and/or
modify it under the terms of the GNU Lesser General Public
License as published by the Free Software Foundation; either
version 2.1 of the License, or (at your option) any later version.
This library is distributed in the hope that it will be useful,
but WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
Lesser General Public License for more details.
You should have received a copy of the GNU Lesser General Public
License along with this library; if not, write to the Free Software
Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA
*/
#include "A2DPSink.h"
#include <functional>
#define CCALLBACKNAME _A2DPSINKCB
#include <ctocppcallback.h>
#define PACKETHANDLERCB(class, cbFcn) \
(CCALLBACKNAME<void(uint8_t, uint16_t, uint8_t*, uint16_t), __COUNTER__>::func = std::bind(&class::cbFcn, this, std::placeholders::_1, std::placeholders::_2, std::placeholders::_3, std::placeholders::_4), \
static_cast<btstack_packet_handler_t>(CCALLBACKNAME<void(uint8_t, uint16_t, uint8_t*, uint16_t), __COUNTER__ - 1>::callback))
#define L2CAPPACKETHANDLERCB(class, cbFcn) \
(CCALLBACKNAME<void(uint8_t, uint8_t*, uint16_t), __COUNTER__>::func = std::bind(&class::cbFcn, this, std::placeholders::_1, std::placeholders::_2, std::placeholders::_3), \
static_cast<void (*)(uint8_t, uint8_t *, uint16_t)>(CCALLBACKNAME<void(uint8_t, uint8_t*, uint16_t), __COUNTER__ - 1>::callback))
#define PCMDECODERCB(class, cbFcn) \
(CCALLBACKNAME<void(int16_t*, int, int, int, void*), __COUNTER__>::func = std::bind(&class::cbFcn, this, std::placeholders::_1, std::placeholders::_2, std::placeholders::_3, std::placeholders::_4, std::placeholders::_5), \
static_cast<void (*)(int16_t *, int, int, int, void *)>(CCALLBACKNAME<void(int16_t *, int, int, int, void *), __COUNTER__ - 1>::callback))
// Based off of the BlueKitchen A2DP sink demo
/*
Copyright (C) 2023 BlueKitchen GmbH
Redistribution and use in source and binary forms, with or without
modification, are permitted provided that the following conditions
are met:
1. Redistributions of source code must retain the above copyright
notice, this list of conditions and the following disclaimer.
2. Redistributions in binary form must reproduce the above copyright
notice, this list of conditions and the following disclaimer in the
documentation and/or other materials provided with the distribution.
3. Neither the name of the copyright holders nor the names of
contributors may be used to endorse or promote products derived
from this software without specific prior written permission.
4. Any redistribution, use, or modification is done solely for
personal benefit and not for any commercial purpose or for
monetary gain.
THIS SOFTWARE IS PROVIDED BY BLUEKITCHEN GMBH AND CONTRIBUTORS
``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS
FOR A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL BLUEKITCHEN
GMBH OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT,
INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING,
BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS
OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED
AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY,
OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF
THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
SUCH DAMAGE.
Please inquire about commercial licensing options at
contact@bluekitchen-gmbh.com
*/
#include <inttypes.h>
#include <stdint.h>
#include <stdio.h>
#include <string.h>
#include "btstack.h"
#include "btstack_resample.h"
#include "btstack_ring_buffer.h"
bool A2DPSink::begin() {
if (_running || !_consumer) {
return false;
}
// init protocols
l2cap_init();
sdp_init();
#ifdef ENABLE_BLE
// Initialize LE Security Manager. Needed for cross-transport key derivation
sm_init();
#endif
// Init profiles
a2dp_sink_init();
avrcp_init();
avrcp_controller_init();
avrcp_target_init();
// Configure A2DP Sink
a2dp_sink_register_packet_handler(PACKETHANDLERCB(A2DPSink, a2dp_sink_packet_handler));
a2dp_sink_register_media_handler(L2CAPPACKETHANDLERCB(A2DPSink, handle_l2cap_media_data_packet));
a2dp_sink_stream_endpoint_t * stream_endpoint = &a2dp_sink_stream_endpoint;
avdtp_stream_endpoint_t * local_stream_endpoint = a2dp_sink_create_stream_endpoint(AVDTP_AUDIO,
AVDTP_CODEC_SBC, media_sbc_codec_capabilities, sizeof(media_sbc_codec_capabilities),
stream_endpoint->media_sbc_codec_configuration, sizeof(stream_endpoint->media_sbc_codec_configuration));
if (!local_stream_endpoint) {
DEBUGV("A2DP Source: not enough memory to create local stream endpoint\n");
return false;
}
// - Store stream enpoint's SEP ID, as it is used by A2DP API to identify the stream endpoint
stream_endpoint->a2dp_local_seid = avdtp_local_seid(local_stream_endpoint);
// Configure AVRCP Controller + Target
avrcp_register_packet_handler(PACKETHANDLERCB(A2DPSink, avrcp_packet_handler));
avrcp_controller_register_packet_handler(PACKETHANDLERCB(A2DPSink, avrcp_controller_packet_handler));
avrcp_target_register_packet_handler(PACKETHANDLERCB(A2DPSink, avrcp_target_packet_handler));
// Configure SDP
// - Create and register A2DP Sink service record
memset(sdp_avdtp_sink_service_buffer, 0, sizeof(sdp_avdtp_sink_service_buffer));
a2dp_sink_create_sdp_record(sdp_avdtp_sink_service_buffer, sdp_create_service_record_handle(),
AVDTP_SINK_FEATURE_MASK_HEADPHONE, NULL, NULL);
sdp_register_service(sdp_avdtp_sink_service_buffer);
// - Create AVRCP Controller service record and register it with SDP. We send Category 1 commands to the media player, e.g. play/pause
memset(sdp_avrcp_controller_service_buffer, 0, sizeof(sdp_avrcp_controller_service_buffer));
uint16_t controller_supported_features = 1 << AVRCP_CONTROLLER_SUPPORTED_FEATURE_CATEGORY_PLAYER_OR_RECORDER;
avrcp_controller_create_sdp_record(sdp_avrcp_controller_service_buffer, sdp_create_service_record_handle(),
controller_supported_features, NULL, NULL);
sdp_register_service(sdp_avrcp_controller_service_buffer);
// - Create and register A2DP Sink service record
// - We receive Category 2 commands from the media player, e.g. volume up/down
memset(sdp_avrcp_target_service_buffer, 0, sizeof(sdp_avrcp_target_service_buffer));
uint16_t target_supported_features = 1 << AVRCP_TARGET_SUPPORTED_FEATURE_CATEGORY_MONITOR_OR_AMPLIFIER;
avrcp_target_create_sdp_record(sdp_avrcp_target_service_buffer,
sdp_create_service_record_handle(), target_supported_features, NULL, NULL);
sdp_register_service(sdp_avrcp_target_service_buffer);
// - Create and register Device ID (PnP) service record
memset(device_id_sdp_service_buffer, 0, sizeof(device_id_sdp_service_buffer));
device_id_create_sdp_record(device_id_sdp_service_buffer,
sdp_create_service_record_handle(), DEVICE_ID_VENDOR_ID_SOURCE_BLUETOOTH, BLUETOOTH_COMPANY_ID_BLUEKITCHEN_GMBH, 1, 1);
sdp_register_service(device_id_sdp_service_buffer);
// Configure GAP - discovery / connection
// - Set local name with a template Bluetooth address, that will be automatically
// replaced with an actual address once it is available, i.e. when BTstack boots
// up and starts talking to a Bluetooth module.
if (!_name) {
setName("PicoW A2DP 00:00:00:00:00:00");
}
gap_set_local_name(_name);
// - Allow to show up in Bluetooth inquiry
gap_discoverable_control(1);
// - Set Class of Device - Service Class: Audio, Major Device Class: Audio, Minor: Loudspeaker
gap_set_class_of_device(0x200414);
// - Allow for role switch in general and sniff mode
gap_set_default_link_policy_settings(LM_LINK_POLICY_ENABLE_ROLE_SWITCH | LM_LINK_POLICY_ENABLE_SNIFF_MODE);
// - Allow for role switch on outgoing connections
// - This allows A2DP Source, e.g. smartphone, to become master when we re-connect to it.
gap_set_allow_role_switch(true);
// Register for HCI events
// hci_event_callback_registration.callback = &hci_packet_handler;
// hci_add_event_handler(&hci_event_callback_registration);
_hci.install();
_running = true;
_hci.begin();
return true;
}
bool A2DPSink::disconnect() {
BluetoothLock b;
if (_connected) {
a2dp_sink_disconnect(a2dp_sink_a2dp_connection.a2dp_cid);
}
if (!_running || !_connected) {
return false;
}
_connected = false;
return true;
}
void A2DPSink::clearPairing() {
BluetoothLock b;
if (_connected) {
a2dp_sink_disconnect(a2dp_sink_a2dp_connection.a2dp_cid);
}
gap_delete_all_link_keys();
}
void A2DPSink::playback_handler(int16_t * buffer, uint16_t num_audio_frames) {
// called from lower-layer but guaranteed to be on main thread
if (sbc_frame_size == 0) {
memset(buffer, 0, num_audio_frames * BYTES_PER_FRAME);
return;
}
// first fill from resampled audio
uint32_t bytes_read;
btstack_ring_buffer_read(&decoded_audio_ring_buffer, (uint8_t *) buffer, num_audio_frames * BYTES_PER_FRAME, &bytes_read);
buffer += bytes_read / NUM_CHANNELS;
num_audio_frames -= bytes_read / BYTES_PER_FRAME;
// then start decoding sbc frames using request_* globals
request_buffer = buffer;
request_frames = num_audio_frames;
while (request_frames && btstack_ring_buffer_bytes_available(&sbc_frame_ring_buffer) >= sbc_frame_size) {
// decode frame
uint8_t sbc_frame[MAX_SBC_FRAME_SIZE];
btstack_ring_buffer_read(&sbc_frame_ring_buffer, sbc_frame, sbc_frame_size, &bytes_read);
btstack_sbc_decoder_process_data(&state, 0, sbc_frame, sbc_frame_size);
}
while (request_frames) {
*(request_buffer++) = 0;
*(request_buffer++) = 0;
request_frames--;
}
}
void A2DPSink::handle_pcm_data(int16_t * data, int num_audio_frames, int num_channels, int sample_rate, void * context) {
UNUSED(sample_rate);
UNUSED(context);
UNUSED(num_channels); // must be stereo == 2
// resample into request buffer - add some additional space for resampling
uint32_t resampled_frames = btstack_resample_block(&resample_instance, data, num_audio_frames, output_buffer);
// store data in btstack_audio buffer first
int frames_to_copy = btstack_min(resampled_frames, request_frames);
memcpy(request_buffer, output_buffer, frames_to_copy * BYTES_PER_FRAME);
request_frames -= frames_to_copy;
request_buffer += frames_to_copy * NUM_CHANNELS;
// and rest in ring buffer
int frames_to_store = resampled_frames - frames_to_copy;
if (frames_to_store) {
int status = btstack_ring_buffer_write(&decoded_audio_ring_buffer, (uint8_t *)&output_buffer[frames_to_copy * NUM_CHANNELS], frames_to_store * BYTES_PER_FRAME);
if (status) {
DEBUGV("Error storing samples in PCM ring buffer!!!\n");
}
}
}
int A2DPSink::media_processing_init(BluetoothMediaCodecConfigurationSBC * configuration) {
if (media_initialized) {
return 0;
}
btstack_sbc_decoder_init(&state, mode, PCMDECODERCB(A2DPSink, handle_pcm_data), NULL);
btstack_ring_buffer_init(&sbc_frame_ring_buffer, sbc_frame_storage, sizeof(sbc_frame_storage));
btstack_ring_buffer_init(&decoded_audio_ring_buffer, decoded_audio_storage, sizeof(decoded_audio_storage));
btstack_resample_init(&resample_instance, configuration->num_channels);
// setup audio playback
_consumer->init(NUM_CHANNELS, configuration->sampling_frequency, this);
audio_stream_started = 0;
media_initialized = 1;
return 0;
}
void A2DPSink::media_processing_start(void) {
if (!media_initialized) {
return;
}
// setup audio playback
_consumer->startStream();
audio_stream_started = 1;
}
void A2DPSink::media_processing_pause(void) {
if (!media_initialized) {
return;
}
// stop audio playback
audio_stream_started = 0;
_consumer->stopStream();
// discard pending data
btstack_ring_buffer_reset(&decoded_audio_ring_buffer);
btstack_ring_buffer_reset(&sbc_frame_ring_buffer);
}
void A2DPSink::media_processing_close(void) {
if (!media_initialized) {
return;
}
media_initialized = 0;
audio_stream_started = 0;
sbc_frame_size = 0;
// stop audio playback
_consumer->close();
}
/* @section Handle Media Data Packet
@text Here the audio data, are received through the handle_l2cap_media_data_packet callback.
Currently, only the SBC media codec is supported. Hence, the media data consists of the media packet header and the SBC packet.
The SBC frame will be stored in a ring buffer for later processing (instead of decoding it to PCM right away which would require a much larger buffer).
If the audio stream wasn't started already and there are enough SBC frames in the ring buffer, start playback.
*/
void A2DPSink::handle_l2cap_media_data_packet(uint8_t seid, uint8_t *packet, uint16_t size) {
UNUSED(seid);
int pos = 0;
avdtp_media_packet_header_t media_header;
if (!read_media_data_header(packet, size, &pos, &media_header)) {
return;
}
avdtp_sbc_codec_header_t sbc_header;
if (!read_sbc_header(packet, size, &pos, &sbc_header)) {
return;
}
int packet_length = size - pos;
uint8_t *packet_begin = packet + pos;
// store sbc frame size for buffer management
sbc_frame_size = packet_length / sbc_header.num_frames;
int status = btstack_ring_buffer_write(&sbc_frame_ring_buffer, packet_begin, packet_length);
if (status != ERROR_CODE_SUCCESS) {
DEBUGV("Error storing samples in SBC ring buffer!!!\n");
}
// decide on audio sync drift based on number of sbc frames in queue
int sbc_frames_in_buffer = btstack_ring_buffer_bytes_available(&sbc_frame_ring_buffer) / sbc_frame_size;
uint32_t resampling_factor;
// nominal factor (fixed-point 2^16) and compensation offset
uint32_t nominal_factor = 0x10000;
uint32_t compensation = 0x00100;
if (sbc_frames_in_buffer < OPTIMAL_FRAMES_MIN) {
resampling_factor = nominal_factor - compensation; // stretch samples
} else if (sbc_frames_in_buffer <= OPTIMAL_FRAMES_MAX) {
resampling_factor = nominal_factor; // nothing to do
} else {
resampling_factor = nominal_factor + compensation; // compress samples
}
btstack_resample_set_factor(&resample_instance, resampling_factor);
// start stream if enough frames buffered
if (!audio_stream_started && sbc_frames_in_buffer >= OPTIMAL_FRAMES_MIN) {
media_processing_start();
}
}
int A2DPSink::read_sbc_header(uint8_t * packet, int size, int * offset, avdtp_sbc_codec_header_t * sbc_header) {
int sbc_header_len = 12; // without crc
int pos = *offset;
if (size - pos < sbc_header_len) {
DEBUGV("Not enough data to read SBC header, expected %d, received %d\n", sbc_header_len, size - pos);
return 0;
}
sbc_header->fragmentation = get_bit16(packet[pos], 7);
sbc_header->starting_packet = get_bit16(packet[pos], 6);
sbc_header->last_packet = get_bit16(packet[pos], 5);
sbc_header->num_frames = packet[pos] & 0x0f;
pos++;
*offset = pos;
return 1;
}
int A2DPSink::read_media_data_header(uint8_t *packet, int size, int *offset, avdtp_media_packet_header_t *media_header) {
int media_header_len = 12; // without crc
int pos = *offset;
if (size - pos < media_header_len) {
DEBUGV("Not enough data to read media packet header, expected %d, received %d\n", media_header_len, size - pos);
return 0;
}
media_header->version = packet[pos] & 0x03;
media_header->padding = get_bit16(packet[pos], 2);
media_header->extension = get_bit16(packet[pos], 3);
media_header->csrc_count = (packet[pos] >> 4) & 0x0F;
pos++;
media_header->marker = get_bit16(packet[pos], 0);
media_header->payload_type = (packet[pos] >> 1) & 0x7F;
pos++;
media_header->sequence_number = big_endian_read_16(packet, pos);
pos += 2;
media_header->timestamp = big_endian_read_32(packet, pos);
pos += 4;
media_header->synchronization_source = big_endian_read_32(packet, pos);
pos += 4;
*offset = pos;
return 1;
}
void A2DPSink::avrcp_packet_handler(uint8_t packet_type, uint16_t channel, uint8_t *packet, uint16_t size) {
UNUSED(channel);
UNUSED(size);
uint16_t local_cid;
uint8_t status;
bd_addr_t address;
a2dp_sink_avrcp_connection_t * connection = &a2dp_sink_avrcp_connection;
if (packet_type != HCI_EVENT_PACKET) {
return;
}
if (hci_event_packet_get_type(packet) != HCI_EVENT_AVRCP_META) {
return;
}
switch (packet[2]) {
case AVRCP_SUBEVENT_CONNECTION_ESTABLISHED: {
local_cid = avrcp_subevent_connection_established_get_avrcp_cid(packet);
status = avrcp_subevent_connection_established_get_status(packet);
if (status != ERROR_CODE_SUCCESS) {
DEBUGV("AVRCP: Connection failed, status 0x%02x\n", status);
connection->avrcp_cid = 0;
return;
}
connection->avrcp_cid = local_cid;
avrcp_subevent_connection_established_get_bd_addr(packet, address);
DEBUGV("AVRCP: Connected to %s, cid 0x%02x\n", bd_addr_to_str(address), connection->avrcp_cid);
avrcp_target_support_event(connection->avrcp_cid, AVRCP_NOTIFICATION_EVENT_VOLUME_CHANGED);
avrcp_target_support_event(connection->avrcp_cid, AVRCP_NOTIFICATION_EVENT_BATT_STATUS_CHANGED);
avrcp_target_battery_status_changed(connection->avrcp_cid, battery_status);
// query supported events:
avrcp_controller_get_supported_events(connection->avrcp_cid);
return;
}
case AVRCP_SUBEVENT_CONNECTION_RELEASED:
DEBUGV("AVRCP: Channel released: cid 0x%02x\n", avrcp_subevent_connection_released_get_avrcp_cid(packet));
connection->avrcp_cid = 0;
connection->notifications_supported_by_target = 0;
return;
default:
break;
}
}
void A2DPSink::avrcp_controller_packet_handler(uint8_t packet_type, uint16_t channel, uint8_t *packet, uint16_t size) {
UNUSED(channel);
UNUSED(size);
// helper to print c strings
uint8_t avrcp_subevent_value[256];
uint8_t play_status;
uint8_t event_id;
a2dp_sink_avrcp_connection_t * avrcp_connection = &a2dp_sink_avrcp_connection;
if (packet_type != HCI_EVENT_PACKET) {
return;
}
if (hci_event_packet_get_type(packet) != HCI_EVENT_AVRCP_META) {
return;
}
if (avrcp_connection->avrcp_cid == 0) {
return;
}
memset(avrcp_subevent_value, 0, sizeof(avrcp_subevent_value));
switch (packet[2]) {
case AVRCP_SUBEVENT_GET_CAPABILITY_EVENT_ID:
avrcp_connection->notifications_supported_by_target |= (1 << avrcp_subevent_get_capability_event_id_get_event_id(packet));
break;
case AVRCP_SUBEVENT_GET_CAPABILITY_EVENT_ID_DONE:
DEBUGV("AVRCP Controller: supported notifications by target:\n");
for (event_id = (uint8_t) AVRCP_NOTIFICATION_EVENT_FIRST_INDEX; event_id < (uint8_t) AVRCP_NOTIFICATION_EVENT_LAST_INDEX; event_id++) {
DEBUGV(" - [%s] %s\n",
(avrcp_connection->notifications_supported_by_target & (1 << event_id)) != 0 ? "X" : " ",
avrcp_notification2str((avrcp_notification_event_id_t)event_id));
}
DEBUGV("\n\n");
// automatically enable notifications
avrcp_controller_enable_notification(avrcp_connection->avrcp_cid, AVRCP_NOTIFICATION_EVENT_PLAYBACK_STATUS_CHANGED);
avrcp_controller_enable_notification(avrcp_connection->avrcp_cid, AVRCP_NOTIFICATION_EVENT_NOW_PLAYING_CONTENT_CHANGED);
avrcp_controller_enable_notification(avrcp_connection->avrcp_cid, AVRCP_NOTIFICATION_EVENT_TRACK_CHANGED);
break;
case AVRCP_SUBEVENT_NOTIFICATION_STATE:
event_id = (avrcp_notification_event_id_t)avrcp_subevent_notification_state_get_event_id(packet);
DEBUGV("AVRCP Controller: %s notification registered\n", avrcp_notification2str((avrcp_notification_event_id_t)event_id));
break;
case AVRCP_SUBEVENT_NOTIFICATION_PLAYBACK_POS_CHANGED:
DEBUGV("AVRCP Controller: Playback position changed, position %d ms\n", (unsigned int) avrcp_subevent_notification_playback_pos_changed_get_playback_position_ms(packet));
break;
case AVRCP_SUBEVENT_NOTIFICATION_PLAYBACK_STATUS_CHANGED:
DEBUGV("AVRCP Controller: Playback status changed %s\n", avrcp_play_status2str(avrcp_subevent_notification_playback_status_changed_get_play_status(packet)));
play_status = avrcp_subevent_notification_playback_status_changed_get_play_status(packet);
switch (play_status) {
case AVRCP_PLAYBACK_STATUS_PLAYING:
avrcp_connection->playing = true;
break;
default:
avrcp_connection->playing = false;
break;
}
if (_playbackStatusCB) {
PlaybackStatus status;
switch (play_status) {
case AVRCP_PLAYBACK_STATUS_PLAYING:
status = PLAYING;
break;
case AVRCP_PLAYBACK_STATUS_PAUSED:
status = PAUSED;
break;
default:
status = STOPPED;
break;
}
_playbackStatusCB(_playbackStatusData, status);
}
break;
case AVRCP_SUBEVENT_NOTIFICATION_NOW_PLAYING_CONTENT_CHANGED:
DEBUGV("AVRCP Controller: Playing content changed\n");
break;
case AVRCP_SUBEVENT_NOTIFICATION_TRACK_CHANGED:
_title[0] = 0;
_artist[0] = 0;
_album[0] = 0;
_genre[0] = 0;
avrcp_controller_get_now_playing_info(avrcp_connection->avrcp_cid);
if (_trackChangedCB) {
_trackChangedCB(_trackChangedData);
}
DEBUGV("AVRCP Controller: Track changed\n");
break;
case AVRCP_SUBEVENT_NOTIFICATION_AVAILABLE_PLAYERS_CHANGED:
DEBUGV("AVRCP Controller: Available Players Changed\n");
break;
case AVRCP_SUBEVENT_SHUFFLE_AND_REPEAT_MODE: {
uint8_t shuffle_mode = avrcp_subevent_shuffle_and_repeat_mode_get_shuffle_mode(packet);
uint8_t repeat_mode = avrcp_subevent_shuffle_and_repeat_mode_get_repeat_mode(packet);
(void) shuffle_mode;
(void) repeat_mode;
DEBUGV("AVRCP Controller: %s, %s\n", avrcp_shuffle2str(shuffle_mode), avrcp_repeat2str(repeat_mode));
break;
}
case AVRCP_SUBEVENT_NOW_PLAYING_TRACK_INFO:
DEBUGV("AVRCP Controller: Track %d\n", avrcp_subevent_now_playing_track_info_get_track(packet));
break;
case AVRCP_SUBEVENT_NOW_PLAYING_TOTAL_TRACKS_INFO:
DEBUGV("AVRCP Controller: Total Tracks %d\n", avrcp_subevent_now_playing_total_tracks_info_get_total_tracks(packet));
break;
case AVRCP_SUBEVENT_NOW_PLAYING_TITLE_INFO:
if (avrcp_subevent_now_playing_title_info_get_value_len(packet) > 0) {
memcpy(avrcp_subevent_value, avrcp_subevent_now_playing_title_info_get_value(packet), avrcp_subevent_now_playing_title_info_get_value_len(packet));
strncpy(_title, (char *)avrcp_subevent_value, sizeof(_title));
_title[sizeof(_title) - 1] = 0;
DEBUGV("AVRCP Controller: Title %s\n", avrcp_subevent_value);
}
break;
case AVRCP_SUBEVENT_NOW_PLAYING_ARTIST_INFO:
if (avrcp_subevent_now_playing_artist_info_get_value_len(packet) > 0) {
memcpy(avrcp_subevent_value, avrcp_subevent_now_playing_artist_info_get_value(packet), avrcp_subevent_now_playing_artist_info_get_value_len(packet));
strncpy(_artist, (char *)avrcp_subevent_value, sizeof(_artist));
_artist[sizeof(_artist) - 1] = 0;
DEBUGV("AVRCP Controller: Artist %s\n", avrcp_subevent_value);
}
break;
case AVRCP_SUBEVENT_NOW_PLAYING_ALBUM_INFO:
if (avrcp_subevent_now_playing_album_info_get_value_len(packet) > 0) {
memcpy(avrcp_subevent_value, avrcp_subevent_now_playing_album_info_get_value(packet), avrcp_subevent_now_playing_album_info_get_value_len(packet));
strncpy(_album, (char *)avrcp_subevent_value, sizeof(_album));
_album[sizeof(_album) - 1] = 0;
DEBUGV("AVRCP Controller: Album %s\n", avrcp_subevent_value);
}
break;
case AVRCP_SUBEVENT_NOW_PLAYING_GENRE_INFO:
if (avrcp_subevent_now_playing_genre_info_get_value_len(packet) > 0) {
memcpy(avrcp_subevent_value, avrcp_subevent_now_playing_genre_info_get_value(packet), avrcp_subevent_now_playing_genre_info_get_value_len(packet));
strncpy(_genre, (char *)avrcp_subevent_value, sizeof(_genre));
_genre[sizeof(_genre) - 1] = 0;
DEBUGV("AVRCP Controller: Genre %s\n", avrcp_subevent_value);
}
break;
case AVRCP_SUBEVENT_PLAY_STATUS:
DEBUGV("AVRCP Controller: Song length %" PRIu32 " ms, Song position %" PRIu32 " ms, Play status %s\n",
avrcp_subevent_play_status_get_song_length(packet),
avrcp_subevent_play_status_get_song_position(packet),
avrcp_play_status2str(avrcp_subevent_play_status_get_play_status(packet)));
break;
case AVRCP_SUBEVENT_OPERATION_COMPLETE:
DEBUGV("AVRCP Controller: %s complete\n", avrcp_operation2str(avrcp_subevent_operation_complete_get_operation_id(packet)));
break;
case AVRCP_SUBEVENT_OPERATION_START:
DEBUGV("AVRCP Controller: %s start\n", avrcp_operation2str(avrcp_subevent_operation_start_get_operation_id(packet)));
break;
case AVRCP_SUBEVENT_NOTIFICATION_EVENT_TRACK_REACHED_END:
DEBUGV("AVRCP Controller: Track reached end\n");
break;
case AVRCP_SUBEVENT_PLAYER_APPLICATION_VALUE_RESPONSE:
DEBUGV("AVRCP Controller: Set Player App Value %s\n", avrcp_ctype2str(avrcp_subevent_player_application_value_response_get_command_type(packet)));
break;
default:
break;
}
}
void A2DPSink::avrcp_target_packet_handler(uint8_t packet_type, uint16_t channel, uint8_t *packet, uint16_t size) {
UNUSED(channel);
UNUSED(size);
if (packet_type != HCI_EVENT_PACKET) {
return;
}
if (hci_event_packet_get_type(packet) != HCI_EVENT_AVRCP_META) {
return;
}
uint8_t volume;
char const * button_state;
(void) button_state;
avrcp_operation_id_t operation_id;
switch (packet[2]) {
case AVRCP_SUBEVENT_NOTIFICATION_VOLUME_CHANGED:
volume = avrcp_subevent_notification_volume_changed_get_absolute_volume(packet);
volume_percentage = volume * 100 / 127;
DEBUGV("AVRCP Target : Volume set to %d%% (%d)\n", volume_percentage, volume);
_consumer->setVolume(volume);
break;
case AVRCP_SUBEVENT_OPERATION:
operation_id = (avrcp_operation_id_t)avrcp_subevent_operation_get_operation_id(packet);
button_state = avrcp_subevent_operation_get_button_pressed(packet) > 0 ? "PRESS" : "RELEASE";
DEBUGV("AVRCP Target: operation %s (%s)\n", avrcp_operation2str(operation_id), button_state);
if (_avrcpCB) {
_avrcpCB(_avrcpData, operation_id, avrcp_subevent_operation_get_button_pressed(packet) > 0);
}
switch (operation_id) {
case AVRCP_OPERATION_ID_VOLUME_UP:
DEBUGV("AVRCP Target : VOLUME UP (%s)\n", button_state);
break;
case AVRCP_OPERATION_ID_VOLUME_DOWN:
DEBUGV("AVRCP Target : VOLUME DOWN (%s)\n", button_state);
break;
default:
return;
}
break;
default:
DEBUGV("AVRCP Target : Event 0x%02x is not parsed\n", packet[2]);
break;
}
}
void A2DPSink::a2dp_sink_packet_handler(uint8_t packet_type, uint16_t channel, uint8_t *packet, uint16_t size) {
UNUSED(channel);
UNUSED(size);
uint8_t status;
uint8_t allocation_method;
if (packet_type != HCI_EVENT_PACKET) {
return;
}
if (hci_event_packet_get_type(packet) != HCI_EVENT_A2DP_META) {
return;
}
a2dp_sink_a2dp_connection_t * a2dp_conn = &a2dp_sink_a2dp_connection;
switch (packet[2]) {
case A2DP_SUBEVENT_SIGNALING_MEDIA_CODEC_OTHER_CONFIGURATION:
DEBUGV("A2DP Sink : Received non SBC codec - not implemented\n");
break;
case A2DP_SUBEVENT_SIGNALING_MEDIA_CODEC_SBC_CONFIGURATION: {
DEBUGV("A2DP Sink : Received SBC codec configuration\n");
a2dp_conn->sbc_configuration.reconfigure = a2dp_subevent_signaling_media_codec_sbc_configuration_get_reconfigure(packet);
a2dp_conn->sbc_configuration.num_channels = a2dp_subevent_signaling_media_codec_sbc_configuration_get_num_channels(packet);
a2dp_conn->sbc_configuration.sampling_frequency = a2dp_subevent_signaling_media_codec_sbc_configuration_get_sampling_frequency(packet);
a2dp_conn->sbc_configuration.block_length = a2dp_subevent_signaling_media_codec_sbc_configuration_get_block_length(packet);
a2dp_conn->sbc_configuration.subbands = a2dp_subevent_signaling_media_codec_sbc_configuration_get_subbands(packet);
a2dp_conn->sbc_configuration.min_bitpool_value = a2dp_subevent_signaling_media_codec_sbc_configuration_get_min_bitpool_value(packet);
a2dp_conn->sbc_configuration.max_bitpool_value = a2dp_subevent_signaling_media_codec_sbc_configuration_get_max_bitpool_value(packet);
allocation_method = a2dp_subevent_signaling_media_codec_sbc_configuration_get_allocation_method(packet);
// Adapt Bluetooth spec definition to SBC Encoder expected input
a2dp_conn->sbc_configuration.allocation_method = (btstack_sbc_allocation_method_t)(allocation_method - 1);
switch (a2dp_subevent_signaling_media_codec_sbc_configuration_get_channel_mode(packet)) {
case AVDTP_CHANNEL_MODE_JOINT_STEREO:
a2dp_conn->sbc_configuration.channel_mode = SBC_CHANNEL_MODE_JOINT_STEREO;
break;
case AVDTP_CHANNEL_MODE_STEREO:
a2dp_conn->sbc_configuration.channel_mode = SBC_CHANNEL_MODE_STEREO;
break;
case AVDTP_CHANNEL_MODE_DUAL_CHANNEL:
a2dp_conn->sbc_configuration.channel_mode = SBC_CHANNEL_MODE_DUAL_CHANNEL;
break;
case AVDTP_CHANNEL_MODE_MONO:
a2dp_conn->sbc_configuration.channel_mode = SBC_CHANNEL_MODE_MONO;
break;
default:
btstack_assert(false);
break;
}
a2dp_conn->sbc_configuration.dump();
break;
}
case A2DP_SUBEVENT_STREAM_ESTABLISHED:
status = a2dp_subevent_stream_established_get_status(packet);
if (status != ERROR_CODE_SUCCESS) {
DEBUGV("A2DP Sink : Streaming connection failed, status 0x%02x\n", status);
break;
}
a2dp_subevent_stream_established_get_bd_addr(packet, a2dp_conn->addr);
a2dp_conn->a2dp_cid = a2dp_subevent_stream_established_get_a2dp_cid(packet);
a2dp_conn->a2dp_local_seid = a2dp_subevent_stream_established_get_local_seid(packet);
a2dp_conn->stream_state = STREAM_STATE_OPEN;
DEBUGV("A2DP Sink : Streaming connection is established, address %s, cid 0x%02x, local seid %d\n",
bd_addr_to_str(a2dp_conn->addr), a2dp_conn->a2dp_cid, a2dp_conn->a2dp_local_seid);
memcpy(_sourceAddress, a2dp_conn->addr, sizeof(_sourceAddress));
break;
case A2DP_SUBEVENT_STREAM_STARTED:
DEBUGV("A2DP Sink : Stream started\n");
a2dp_conn->stream_state = STREAM_STATE_PLAYING;
if (a2dp_conn->sbc_configuration.reconfigure) {
media_processing_close();
}
// prepare media processing
media_processing_init(&a2dp_conn->sbc_configuration);
// audio stream is started when buffer reaches minimal level
_connected = true;
if (_connectCB) {
_connectCB(_connectData, true);
}
break;
case A2DP_SUBEVENT_STREAM_SUSPENDED:
DEBUGV("A2DP Sink : Stream paused\n");
a2dp_conn->stream_state = STREAM_STATE_PAUSED;
media_processing_pause();
break;
case A2DP_SUBEVENT_STREAM_RELEASED:
DEBUGV("A2DP Sink : Stream released\n");
a2dp_conn->stream_state = STREAM_STATE_CLOSED;
media_processing_close();
break;
case A2DP_SUBEVENT_SIGNALING_CONNECTION_RELEASED:
DEBUGV("A2DP Sink : Signaling connection released\n");
a2dp_conn->a2dp_cid = 0;
media_processing_close();
_connected = false;
if (_connectCB) {
_connectCB(_connectData, false);
}
break;
default:
break;
}
}
+337
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/*
A2DP Sink (Bluetooth audio receiver)
Copyright (c) 2024 Earle F. Philhower, III <earlephilhower@yahoo.com>
This library is free software; you can redistribute it and/or
modify it under the terms of the GNU Lesser General Public
License as published by the Free Software Foundation; either
version 2.1 of the License, or (at your option) any later version.
This library is distributed in the hope that it will be useful,
but WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
Lesser General Public License for more details.
You should have received a copy of the GNU Lesser General Public
License along with this library; if not, write to the Free Software
Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA
*/
#pragma once
#include <Arduino.h>
#include <BluetoothHCI.h>
#include <BluetoothLock.h>
#include "BluetoothAudioConsumer.h"
#include "BluetoothMediaConfigurationSBC.h"
#include "btstack.h"
#include "btstack_resample.h"
#include "btstack_ring_buffer.h"
class A2DPSink : public Stream {
public:
A2DPSink() {
_title[0] = 0;
_artist[0] = 0;
_album[0] = 0;
_genre[0] = 0;
}
virtual int available() override {
return 0; // Unreadable, this is output only
}
virtual int read() override {
return 0;
}
virtual int peek() override {
return 0;
}
virtual void flush() override {
}
virtual size_t write(const uint8_t *buffer, size_t size) override {
(void) buffer;
(void) size;
return 0;
}
virtual int availableForWrite() override {
return 0;
}
virtual size_t write(uint8_t s) override {
(void) s;
return 0;
}
bool setName(const char *name) {
if (_running) {
return false;
}
free(_name);
_name = strdup(name);
return true;
}
void onTransmit(void (*cb)(void *), void *cbData = nullptr) {
_transmitCB = cb;
_transmitData = cbData;
}
void onAVRCP(void (*cb)(void *, avrcp_operation_id_t, int), void *cbData = nullptr) {
_avrcpCB = cb;
_avrcpData = cbData;
}
void onBattery(void (*cb)(void *, avrcp_battery_status_t), void *cbData = nullptr) {
_batteryCB = cb;
_batteryData = cbData;
}
void onVolume(void (*cb)(void *, int), void *cbData = nullptr) {
_volumeCB = cb;
_volumeData = cbData;
}
void onConnect(void (*cb)(void *, bool), void *cbData = nullptr) {
_connectCB = cb;
_connectData = cbData;
}
void onTrackChanged(void (*cb)(void *), void *cbData = nullptr) {
_trackChangedCB = cb;
_trackChangedData = cbData;
}
typedef enum { STOPPED, PLAYING, PAUSED } PlaybackStatus;
void onPlaybackStatus(void (*cb)(void *, PlaybackStatus), void *cbData = nullptr) {
_playbackStatusCB = cb;
_playbackStatusData = cbData;
}
const uint8_t *getSourceAddress() {
if (!_connected) {
return nullptr;
} else {
return _sourceAddress;
}
}
void setConsumer(BluetoothAudioConsumer_ *c) {
_consumer = c;
}
bool begin();
bool disconnect();
void clearPairing();
void playback_handler(int16_t * buffer, uint16_t num_audio_frames);
void play() {
BluetoothLock b;
if (_connected) {
avrcp_controller_play(a2dp_sink_avrcp_connection.avrcp_cid);
}
}
void stop() {
BluetoothLock b;
if (_connected) {
avrcp_controller_stop(a2dp_sink_avrcp_connection.avrcp_cid);
}
}
void pause() {
BluetoothLock b;
if (_connected) {
avrcp_controller_pause(a2dp_sink_avrcp_connection.avrcp_cid);
}
}
void fastForward() {
BluetoothLock b;
if (_connected) {
avrcp_controller_fast_forward(a2dp_sink_avrcp_connection.avrcp_cid);
}
}
void rewind() {
BluetoothLock b;
if (_connected) {
avrcp_controller_rewind(a2dp_sink_avrcp_connection.avrcp_cid);
}
}
void forward() {
BluetoothLock b;
if (_connected) {
avrcp_controller_forward(a2dp_sink_avrcp_connection.avrcp_cid);
}
}
void backward() {
BluetoothLock b;
if (_connected) {
avrcp_controller_backward(a2dp_sink_avrcp_connection.avrcp_cid);
}
}
void volumeUp() {
BluetoothLock b;
if (_connected) {
avrcp_controller_volume_up(a2dp_sink_avrcp_connection.avrcp_cid);
}
}
void volumeDown() {
BluetoothLock b;
if (_connected) {
avrcp_controller_volume_down(a2dp_sink_avrcp_connection.avrcp_cid);
}
}
void mute() {
BluetoothLock b;
if (_connected) {
avrcp_controller_mute(a2dp_sink_avrcp_connection.avrcp_cid);
}
}
const char *trackTitle() {
return _title;
}
const char *trackArtist() {
return _artist;
}
const char *trackAlbum() {
return _album;
}
const char *trackGenre() {
return _genre;
}
private:
void handle_pcm_data(int16_t * data, int num_audio_frames, int num_channels, int sample_rate, void * context);
int media_processing_init(BluetoothMediaCodecConfigurationSBC * configuration);
void media_processing_start();
void media_processing_pause();
void media_processing_close();
void handle_l2cap_media_data_packet(uint8_t seid, uint8_t *packet, uint16_t size);
int read_sbc_header(uint8_t * packet, int size, int * offset, avdtp_sbc_codec_header_t * sbc_header);
int read_media_data_header(uint8_t *packet, int size, int *offset, avdtp_media_packet_header_t *media_header);
void avrcp_packet_handler(uint8_t packet_type, uint16_t channel, uint8_t *packet, uint16_t size);
void avrcp_controller_packet_handler(uint8_t packet_type, uint16_t channel, uint8_t *packet, uint16_t size);
void avrcp_target_packet_handler(uint8_t packet_type, uint16_t channel, uint8_t *packet, uint16_t size);
void a2dp_sink_packet_handler(uint8_t packet_type, uint16_t channel, uint8_t *packet, uint16_t size);
BluetoothHCI _hci;
BluetoothAudioConsumer_ *_consumer = nullptr;
bool _running = false;
bool _connected = false;
// Callbacks
void (*_transmitCB)(void *) = nullptr;
void *_transmitData;
void (*_avrcpCB)(void *, avrcp_operation_id_t, int) = nullptr;
void *_avrcpData;
void (*_batteryCB)(void *, avrcp_battery_status_t) = nullptr;
void *_batteryData;
void (*_volumeCB)(void *, int) = nullptr;
void *_volumeData;
void (*_connectCB)(void *, bool) = nullptr;
void *_connectData;
void (*_playbackStatusCB)(void *, PlaybackStatus) = nullptr;
void *_playbackStatusData;
void (*_trackChangedCB)(void *) = nullptr;
void *_trackChangedData;
char *_name = nullptr;
uint8_t _sourceAddress[6];
enum { NUM_CHANNELS = 2, BYTES_PER_FRAME = (2 * NUM_CHANNELS), MAX_SBC_FRAME_SIZE = 120 };
uint8_t sdp_avdtp_sink_service_buffer[150];
uint8_t sdp_avrcp_target_service_buffer[150];
uint8_t sdp_avrcp_controller_service_buffer[200];
uint8_t device_id_sdp_service_buffer[100];
// we support all configurations with bitpool 2-53
const uint8_t media_sbc_codec_capabilities[4] = {
0xFF,//(AVDTP_SBC_44100 << 4) | AVDTP_SBC_STEREO,
0xFF,//(AVDTP_SBC_BLOCK_LENGTH_16 << 4) | (AVDTP_SBC_SUBBANDS_8 << 2) | AVDTP_SBC_ALLOCATION_METHOD_LOUDNESS,
2, 53
};
// SBC Decoder for WAV file or live playback
btstack_sbc_decoder_state_t state;
btstack_sbc_mode_t mode = SBC_MODE_STANDARD;
// ring buffer for SBC Frames
// below 30: add samples, 30-40: fine, above 40: drop samples
enum { OPTIMAL_FRAMES_MIN = 60, OPTIMAL_FRAMES_MAX = 80, ADDITIONAL_FRAMES = 30 };
uint8_t sbc_frame_storage[(OPTIMAL_FRAMES_MAX + ADDITIONAL_FRAMES) * MAX_SBC_FRAME_SIZE];
btstack_ring_buffer_t sbc_frame_ring_buffer;
unsigned int sbc_frame_size;
// overflow buffer for not fully used sbc frames, with additional frames for resampling
uint8_t decoded_audio_storage[(128 + 16) * BYTES_PER_FRAME];
btstack_ring_buffer_t decoded_audio_ring_buffer;
int media_initialized = 0;
int audio_stream_started;
btstack_resample_t resample_instance;
// temp storage of lower-layer request for audio samples
int16_t * request_buffer;
int request_frames;
// sink state
int volume_percentage = 0;
avrcp_battery_status_t battery_status = AVRCP_BATTERY_STATUS_WARNING;
typedef enum {
STREAM_STATE_CLOSED,
STREAM_STATE_OPEN,
STREAM_STATE_PLAYING,
STREAM_STATE_PAUSED,
} stream_state_t;
typedef struct {
uint8_t a2dp_local_seid;
uint8_t media_sbc_codec_configuration[4];
} a2dp_sink_stream_endpoint_t;
a2dp_sink_stream_endpoint_t a2dp_sink_stream_endpoint;
typedef struct {
bd_addr_t addr;
uint16_t a2dp_cid;
uint8_t a2dp_local_seid;
stream_state_t stream_state;
BluetoothMediaCodecConfigurationSBC sbc_configuration;
} a2dp_sink_a2dp_connection_t;
a2dp_sink_a2dp_connection_t a2dp_sink_a2dp_connection;
typedef struct {
bd_addr_t addr;
uint16_t avrcp_cid;
bool playing;
uint16_t notifications_supported_by_target;
} a2dp_sink_avrcp_connection_t;
a2dp_sink_avrcp_connection_t a2dp_sink_avrcp_connection;
int16_t output_buffer[(128 + 16) * NUM_CHANNELS]; // 16 * 8 * 2
char _title[64];
char _artist[64];
char _album[64];
char _genre[32];
};
+723
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/*
A1DP Source (Bluetooth audio sender)
Copyright (c) 2024 Earle F. Philhower, III <earlephilhower@yahoo.com>
This library is free software; you can redistribute it and/or
modify it under the terms of the GNU Lesser General Public
License as published by the Free Software Foundation; either
version 2.1 of the License, or (at your option) any later version.
This library is distributed in the hope that it will be useful,
but WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
Lesser General Public License for more details.
You should have received a copy of the GNU Lesser General Public
License along with this library; if not, write to the Free Software
Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA
*/
// Based heavily off of the a2dp_source example from BlueKitchen BTStack
/*
Copyright (C) 2016 BlueKitchen GmbH
Redistribution and use in source and binary forms, with or without
modification, are permitted provided that the following conditions
are met:
1. Redistributions of source code must retain the above copyright
notice, this list of conditions and the following disclaimer.
2. Redistributions in binary form must reproduce the above copyright
notice, this list of conditions and the following disclaimer in the
documentation and/or other materials provided with the distribution.
3. Neither the name of the copyright holders nor the names of
contributors may be used to endorse or promote products derived
from this software without specific prior written permission.
4. Any redistribution, use, or modification is done solely for
personal benefit and not for any commercial purpose or for
monetary gain.
THIS SOFTWARE IS PROVIDED BY BLUEKITCHEN GMBH AND CONTRIBUTORS
``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS
FOR A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL BLUEKITCHEN
GMBH OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT,
INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING,
BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS
OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED
AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY,
OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF
THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
SUCH DAMAGE.
Please inquire about commercial licensing options at
contact@bluekitchen-gmbh.com
*/
#include <Arduino.h>
#include "A2DPSource.h"
#define CCALLBACKNAME _A2DPSOURCECB
#include <ctocppcallback.h>
#define PACKETHANDLERCB(class, cbFcn) \
(_A2DPSOURCECB<void(uint8_t, uint16_t, uint8_t*, uint16_t), __COUNTER__>::func = std::bind(&class::cbFcn, this, std::placeholders::_1, std::placeholders::_2, std::placeholders::_3, std::placeholders::_4), \
static_cast<btstack_packet_handler_t>(_A2DPSOURCECB<void(uint8_t, uint16_t, uint8_t*, uint16_t), __COUNTER__ - 1>::callback))
#define TIMEOUTHANDLERCB(class, cbFcn) \
(_A2DPSOURCECB<void(btstack_timer_source_t *), __COUNTER__>::func = std::bind(&class::cbFcn, this, std::placeholders::_1), \
static_cast<void(*)(btstack_timer_source_t*)>(_A2DPSOURCECB<void(btstack_timer_source_t*), __COUNTER__ - 1>::callback))
bool A2DPSource::begin() {
if (_running) {
return false;
}
_pcmBuffer = (int16_t *)malloc(_pcmBufferSize * sizeof(int16_t));
if (!_pcmBuffer) {
DEBUGV("A2DPSource: OOM for pcm buffer\n");
return false;
}
_pcmWriter = 0;
_pcmReader = 0;
// Request role change on reconnecting headset to always use them in slave mode
hci_set_master_slave_policy(0);
// enabled EIR
hci_set_inquiry_mode(INQUIRY_MODE_RSSI_AND_EIR);
l2cap_init();
#ifdef ENABLE_BLE
// Initialize LE Security Manager. Needed for cross-transport key derivation
sm_init();
#endif
// Initialize A2DP Source
a2dp_source_init();
a2dp_source_register_packet_handler(PACKETHANDLERCB(A2DPSource, a2dp_source_packet_handler));
// Create stream endpoint
avdtp_stream_endpoint_t * local_stream_endpoint = a2dp_source_create_stream_endpoint(AVDTP_AUDIO, AVDTP_CODEC_SBC, media_sbc_codec_capabilities, sizeof(media_sbc_codec_capabilities), media_sbc_codec_configuration, sizeof(media_sbc_codec_configuration));
if (!local_stream_endpoint) {
DEBUGV("A2DP Source: not enough memory to create local stream endpoint\n");
return false;
}
// Store stream endpoint's SEP ID, as it is used by A2DP API to identify the stream endpoint
media_tracker.local_seid = avdtp_local_seid(local_stream_endpoint);
avdtp_source_register_delay_reporting_category(media_tracker.local_seid);
// Initialize AVRCP Service
avrcp_init();
avrcp_register_packet_handler(PACKETHANDLERCB(A2DPSource, avrcp_packet_handler));
// Initialize AVRCP Target
avrcp_target_init();
avrcp_target_register_packet_handler(PACKETHANDLERCB(A2DPSource, avrcp_target_packet_handler));
// Initialize AVRCP Controller
avrcp_controller_init();
avrcp_controller_register_packet_handler(PACKETHANDLERCB(A2DPSource, avrcp_controller_packet_handler));
// Initialize SDP,
sdp_init();
// Create A2DP Source service record and register it with SDP
memset(sdp_a2dp_source_service_buffer, 0, sizeof(sdp_a2dp_source_service_buffer));
a2dp_source_create_sdp_record(sdp_a2dp_source_service_buffer, 0x10001, AVDTP_SOURCE_FEATURE_MASK_PLAYER, NULL, NULL);
sdp_register_service(sdp_a2dp_source_service_buffer);
// Create AVRCP Target service record and register it with SDP. We receive Category 1 commands from the headphone, e.g. play/pause
memset(sdp_avrcp_target_service_buffer, 0, sizeof(sdp_avrcp_target_service_buffer));
uint16_t supported_features = AVRCP_FEATURE_MASK_CATEGORY_PLAYER_OR_RECORDER;
#ifdef AVRCP_BROWSING_ENABLED
supported_features |= AVRCP_FEATURE_MASK_BROWSING;
#endif
avrcp_target_create_sdp_record(sdp_avrcp_target_service_buffer, 0x10002, supported_features, NULL, NULL);
sdp_register_service(sdp_avrcp_target_service_buffer);
// Create AVRCP Controller service record and register it with SDP. We send Category 2 commands to the headphone, e.g. volume up/down
memset(sdp_avrcp_controller_service_buffer, 0, sizeof(sdp_avrcp_controller_service_buffer));
uint16_t controller_supported_features = AVRCP_FEATURE_MASK_CATEGORY_MONITOR_OR_AMPLIFIER;
avrcp_controller_create_sdp_record(sdp_avrcp_controller_service_buffer, 0x10003, controller_supported_features, NULL, NULL);
sdp_register_service(sdp_avrcp_controller_service_buffer);
// Register Device ID (PnP) service SDP record
memset(device_id_sdp_service_buffer, 0, sizeof(device_id_sdp_service_buffer));
device_id_create_sdp_record(device_id_sdp_service_buffer, 0x10004, DEVICE_ID_VENDOR_ID_SOURCE_BLUETOOTH, BLUETOOTH_COMPANY_ID_BLUEKITCHEN_GMBH, 1, 1);
sdp_register_service(device_id_sdp_service_buffer);
// Set local name with a template Bluetooth address, that will be automatically
// replaced with a actual address once it is available, i.e. when BTstack boots
// up and starts talking to a Bluetooth module.
if (!_name) {
setName("PicoW A2DP 00:00:00:00:00:00");
}
gap_set_local_name(_name);
gap_discoverable_control(1);
gap_set_class_of_device(0x200408);
// Register for HCI events.
_hci.install();
_running = true;
_hci.begin();
return true;
}
bool A2DPSource::connect(const uint8_t *addr) {
if (!_running) {
return false;
}
while (!_hci.running()) {
delay(10);
}
uint8_t a[6];
if (addr) {
memcpy(a, addr, sizeof(a));
auto ret = !a2dp_source_establish_stream(a, &media_tracker.a2dp_cid);
return ret;
} else {
clearPairing();
auto l = scan();
for (auto e : l) {
DEBUGV("Scan connecting %s at %s ... ", e.name(), e.addressString());
memcpy(a, e.address(), sizeof(a));
if (!a2dp_source_establish_stream(a, &media_tracker.a2dp_cid)) {
DEBUGV("Connection established\n");
return true;
}
DEBUGV("Failed\n");
}
return false;
}
}
bool A2DPSource::disconnect() {
BluetoothLock b;
if (_connected) {
a2dp_source_disconnect(media_tracker.a2dp_cid);
}
if (!_running || !_connected) {
return false;
}
_connected = false;
return true;
}
void A2DPSource::clearPairing() {
BluetoothLock b;
if (_connected) {
a2dp_source_disconnect(media_tracker.a2dp_cid);
}
gap_delete_all_link_keys();
}
// from Print (see notes on write() methods below)
size_t A2DPSource::write(const uint8_t *buffer, size_t size) {
BluetoothLock b;
size_t count = 0;
size /= 2;
// First copy from writer to either end of
uint32_t start = _pcmWriter;
uint32_t end = _pcmReader > _pcmWriter ? _pcmReader : _pcmBufferSize;
if (end - start > size) {
end = start + size;
}
memcpy(_pcmBuffer + start, buffer, (end - start) * sizeof(int16_t));
count += (end - start) * sizeof(int16_t);
size -= end - start;
_pcmWriter += end - start;
_pcmWriter %= _pcmBufferSize;
// Possibly wraparound to 0 if still left
if (size) {
start = 0;
end = _pcmReader;
if (end - start > size) {
end = size;
}
memcpy(_pcmBuffer + start, buffer, (end - start) * sizeof(int16_t));
count += (end - start) * sizeof(int16_t);
size -= end - start;
_pcmWriter += end - start;
_pcmWriter %= _pcmBufferSize;
}
return count;
}
int A2DPSource::availableForWrite() {
BluetoothLock b;
int avail = 0;
if (_pcmWriter == _pcmReader) {
avail = _pcmBufferSize - 1;
} else if (_pcmReader > _pcmWriter) {
avail = _pcmReader - _pcmWriter - 1;
} else {
avail = _pcmBufferSize - _pcmWriter + _pcmReader - 1;
}
return avail;
}
void A2DPSource::a2dp_timer_start(a2dp_media_sending_context_t * context) {
context->max_media_payload_size = btstack_min(a2dp_max_media_payload_size(context->a2dp_cid, context->local_seid), SBC_STORAGE_SIZE);
context->sbc_storage_count = 0;
context->sbc_ready_to_send = 0;
context->streaming = 1;
btstack_run_loop_remove_timer(&context->audio_timer);
btstack_run_loop_set_timer_handler(&context->audio_timer, TIMEOUTHANDLERCB(A2DPSource, a2dp_audio_timeout_handler));
btstack_run_loop_set_timer_context(&context->audio_timer, context);
btstack_run_loop_set_timer(&context->audio_timer, AUDIO_TIMEOUT_MS);
btstack_run_loop_add_timer(&context->audio_timer);
}
void A2DPSource::a2dp_timer_stop(a2dp_media_sending_context_t * context) {
context->time_audio_data_sent = 0;
context->acc_num_missed_samples = 0;
context->samples_ready = 0;
context->streaming = 1;
context->sbc_storage_count = 0;
context->sbc_ready_to_send = 0;
btstack_run_loop_remove_timer(&context->audio_timer);
}
int A2DPSource::a2dp_fill_sbc_audio_buffer(a2dp_media_sending_context_t * context) {
// perform sbc encoding
int total_num_bytes_read = 0;
unsigned int num_audio_samples_per_sbc_buffer = btstack_sbc_encoder_num_audio_frames();
while (context->samples_ready >= num_audio_samples_per_sbc_buffer
&& (context->max_media_payload_size - context->sbc_storage_count) >= btstack_sbc_encoder_sbc_buffer_length()) {
if ((_pcmWriter / 256) != (_pcmReader / 256)) {
btstack_sbc_encoder_process_data(_pcmBuffer + _pcmReader);
asm volatile("" ::: "memory"); // Ensure the data is processed before advancing
auto next_reader = (_pcmReader + 256) % _pcmBufferSize;
asm volatile("" ::: "memory"); // Ensure the reader value is only written once, correctly
_pcmReader = next_reader;
} else {
_underflow = true;
// Just keep sending old data
btstack_sbc_encoder_process_data(_pcmBuffer + _pcmReader);
}
uint16_t sbc_frame_size = btstack_sbc_encoder_sbc_buffer_length();
uint8_t *sbc_frame = btstack_sbc_encoder_sbc_buffer();
total_num_bytes_read += num_audio_samples_per_sbc_buffer;
// first byte in sbc storage contains sbc media header
memcpy(&context->sbc_storage[1 + context->sbc_storage_count], sbc_frame, sbc_frame_size);
context->sbc_storage_count += sbc_frame_size;
context->samples_ready -= num_audio_samples_per_sbc_buffer;
}
return total_num_bytes_read;
}
void A2DPSource::a2dp_audio_timeout_handler(btstack_timer_source_t * timer) {
a2dp_media_sending_context_t * context = (a2dp_media_sending_context_t *) btstack_run_loop_get_timer_context(timer);
btstack_run_loop_set_timer(&context->audio_timer, AUDIO_TIMEOUT_MS);
btstack_run_loop_add_timer(&context->audio_timer);
uint32_t now = btstack_run_loop_get_time_ms();
uint32_t update_period_ms = AUDIO_TIMEOUT_MS;
if (context->time_audio_data_sent > 0) {
update_period_ms = now - context->time_audio_data_sent;
}
uint32_t num_samples = (update_period_ms * _frequency) / 1000;
context->acc_num_missed_samples += (update_period_ms * _frequency) % 1000;
while (context->acc_num_missed_samples >= 1000) {
num_samples++;
context->acc_num_missed_samples -= 1000;
}
context->time_audio_data_sent = now;
context->samples_ready += num_samples;
if (context->sbc_ready_to_send) {
return;
}
a2dp_fill_sbc_audio_buffer(context);
if ((context->sbc_storage_count + btstack_sbc_encoder_sbc_buffer_length()) > context->max_media_payload_size) {
// schedule sending
context->sbc_ready_to_send = 1;
a2dp_source_stream_endpoint_request_can_send_now(context->a2dp_cid, context->local_seid);
}
}
void A2DPSource::a2dp_send_media_packet() {
int num_bytes_in_frame = btstack_sbc_encoder_sbc_buffer_length();
int bytes_in_storage = media_tracker.sbc_storage_count;
uint8_t num_sbc_frames = bytes_in_storage / num_bytes_in_frame;
// Prepend SBC Header
media_tracker.sbc_storage[0] = num_sbc_frames; // (fragmentation << 7) | (starting_packet << 6) | (last_packet << 5) | num_frames;
a2dp_source_stream_send_media_payload_rtp(media_tracker.a2dp_cid, media_tracker.local_seid, 0,
media_tracker.rtp_timestamp,
media_tracker.sbc_storage, bytes_in_storage + 1);
// update rtp_timestamp
unsigned int num_audio_samples_per_sbc_buffer = btstack_sbc_encoder_num_audio_frames();
media_tracker.rtp_timestamp += num_sbc_frames * num_audio_samples_per_sbc_buffer;
media_tracker.sbc_storage_count = 0;
media_tracker.sbc_ready_to_send = 0;
if (_transmitCB) {
_transmitCB(_transmitData);
}
}
void A2DPSource::a2dp_source_packet_handler(uint8_t packet_type, uint16_t channel, uint8_t *packet, uint16_t size) {
UNUSED(channel);
UNUSED(size);
uint8_t status;
uint8_t local_seid;
bd_addr_t address;
uint16_t cid;
avdtp_channel_mode_t channel_mode;
uint8_t allocation_method;
if (packet_type != HCI_EVENT_PACKET) {
return;
}
if (hci_event_packet_get_type(packet) != HCI_EVENT_A2DP_META) {
return;
}
switch (hci_event_a2dp_meta_get_subevent_code(packet)) {
case A2DP_SUBEVENT_SIGNALING_CONNECTION_ESTABLISHED:
a2dp_subevent_signaling_connection_established_get_bd_addr(packet, address);
cid = a2dp_subevent_signaling_connection_established_get_a2dp_cid(packet);
status = a2dp_subevent_signaling_connection_established_get_status(packet);
if (status != ERROR_CODE_SUCCESS) {
DEBUGV("A2DP Source: Connection failed, status 0x%02x, cid 0x%02x, a2dp_cid 0x%02x \n", status, cid, media_tracker.a2dp_cid);
media_tracker.a2dp_cid = 0;
break;
}
media_tracker.a2dp_cid = cid;
media_tracker.volume = 32;
memcpy(_sinkAddress, address, sizeof(_sinkAddress));
DEBUGV("A2DP Source: Connected to address %s, a2dp cid 0x%02x, local seid 0x%02x.\n", bd_addr_to_str(address), media_tracker.a2dp_cid, media_tracker.local_seid);
break;
case A2DP_SUBEVENT_SIGNALING_MEDIA_CODEC_SBC_CONFIGURATION: {
cid = avdtp_subevent_signaling_media_codec_sbc_configuration_get_avdtp_cid(packet);
if (cid != media_tracker.a2dp_cid) {
return;
}
media_tracker.remote_seid = a2dp_subevent_signaling_media_codec_sbc_configuration_get_remote_seid(packet);
sbc_configuration.reconfigure = a2dp_subevent_signaling_media_codec_sbc_configuration_get_reconfigure(packet);
sbc_configuration.num_channels = a2dp_subevent_signaling_media_codec_sbc_configuration_get_num_channels(packet);
sbc_configuration.sampling_frequency = a2dp_subevent_signaling_media_codec_sbc_configuration_get_sampling_frequency(packet);
sbc_configuration.block_length = a2dp_subevent_signaling_media_codec_sbc_configuration_get_block_length(packet);
sbc_configuration.subbands = a2dp_subevent_signaling_media_codec_sbc_configuration_get_subbands(packet);
sbc_configuration.min_bitpool_value = a2dp_subevent_signaling_media_codec_sbc_configuration_get_min_bitpool_value(packet);
sbc_configuration.max_bitpool_value = a2dp_subevent_signaling_media_codec_sbc_configuration_get_max_bitpool_value(packet);
channel_mode = (avdtp_channel_mode_t) a2dp_subevent_signaling_media_codec_sbc_configuration_get_channel_mode(packet);
allocation_method = a2dp_subevent_signaling_media_codec_sbc_configuration_get_allocation_method(packet);
DEBUGV("A2DP Source: Received SBC codec configuration, sampling frequency %u, a2dp_cid 0x%02x, local seid 0x%02x, remote seid 0x%02x.\n",
sbc_configuration.sampling_frequency, cid,
a2dp_subevent_signaling_media_codec_sbc_configuration_get_local_seid(packet),
a2dp_subevent_signaling_media_codec_sbc_configuration_get_remote_seid(packet));
// Adapt Bluetooth spec definition to SBC Encoder expected input
sbc_configuration.allocation_method = (btstack_sbc_allocation_method_t)(allocation_method - 1);
switch (channel_mode) {
case AVDTP_CHANNEL_MODE_JOINT_STEREO:
sbc_configuration.channel_mode = SBC_CHANNEL_MODE_JOINT_STEREO;
break;
case AVDTP_CHANNEL_MODE_STEREO:
sbc_configuration.channel_mode = SBC_CHANNEL_MODE_STEREO;
break;
case AVDTP_CHANNEL_MODE_DUAL_CHANNEL:
sbc_configuration.channel_mode = SBC_CHANNEL_MODE_DUAL_CHANNEL;
break;
case AVDTP_CHANNEL_MODE_MONO:
sbc_configuration.channel_mode = SBC_CHANNEL_MODE_MONO;
break;
default:
btstack_assert(false);
break;
}
sbc_configuration.dump();
btstack_sbc_encoder_init(&sbc_encoder_state, SBC_MODE_STANDARD,
sbc_configuration.block_length, sbc_configuration.subbands,
sbc_configuration.allocation_method, sbc_configuration.sampling_frequency,
sbc_configuration.max_bitpool_value,
sbc_configuration.channel_mode);
break;
}
case A2DP_SUBEVENT_SIGNALING_DELAY_REPORTING_CAPABILITY:
DEBUGV("A2DP Source: remote supports delay report, remote seid %d\n",
avdtp_subevent_signaling_delay_reporting_capability_get_remote_seid(packet));
break;
case A2DP_SUBEVENT_SIGNALING_CAPABILITIES_DONE:
DEBUGV("A2DP Source: All capabilities reported, remote seid %d\n",
avdtp_subevent_signaling_capabilities_done_get_remote_seid(packet));
break;
case A2DP_SUBEVENT_SIGNALING_DELAY_REPORT:
DEBUGV("A2DP Source: Received delay report of %d.%0d ms, local seid %d\n",
avdtp_subevent_signaling_delay_report_get_delay_100us(packet) / 10, avdtp_subevent_signaling_delay_report_get_delay_100us(packet) % 10,
avdtp_subevent_signaling_delay_report_get_local_seid(packet));
break;
case A2DP_SUBEVENT_STREAM_ESTABLISHED:
a2dp_subevent_stream_established_get_bd_addr(packet, address);
status = a2dp_subevent_stream_established_get_status(packet);
if (status != ERROR_CODE_SUCCESS) {
DEBUGV("A2DP Source: Stream failed, status 0x%02x.\n", status);
break;
}
local_seid = a2dp_subevent_stream_established_get_local_seid(packet);
cid = a2dp_subevent_stream_established_get_a2dp_cid(packet);
(void) local_seid;
DEBUGV("A2DP Source: Stream established a2dp_cid 0x%02x, local_seid 0x%02x, remote_seid 0x%02x\n", cid, local_seid, a2dp_subevent_stream_established_get_remote_seid(packet));
media_tracker.stream_opened = 1;
status = a2dp_source_start_stream(media_tracker.a2dp_cid, media_tracker.local_seid);
break;
case A2DP_SUBEVENT_STREAM_RECONFIGURED:
status = a2dp_subevent_stream_reconfigured_get_status(packet);
local_seid = a2dp_subevent_stream_reconfigured_get_local_seid(packet);
cid = a2dp_subevent_stream_reconfigured_get_a2dp_cid(packet);
if (status != ERROR_CODE_SUCCESS) {
DEBUGV("A2DP Source: Stream reconfiguration failed, status 0x%02x\n", status);
break;
}
DEBUGV("A2DP Source: Stream reconfigured a2dp_cid 0x%02x, local_seid 0x%02x\n", cid, local_seid);
status = a2dp_source_start_stream(media_tracker.a2dp_cid, media_tracker.local_seid);
break;
case A2DP_SUBEVENT_STREAM_STARTED:
local_seid = a2dp_subevent_stream_started_get_local_seid(packet);
cid = a2dp_subevent_stream_started_get_a2dp_cid(packet);
play_info.status = AVRCP_PLAYBACK_STATUS_PLAYING;
if (media_tracker.avrcp_cid) {
avrcp_target_set_now_playing_info(media_tracker.avrcp_cid, &_currentTrack, _tracks);
avrcp_target_set_playback_status(media_tracker.avrcp_cid, AVRCP_PLAYBACK_STATUS_PLAYING);
}
a2dp_timer_start(&media_tracker);
DEBUGV("A2DP Source: Stream started, a2dp_cid 0x%02x, local_seid 0x%02x\n", cid, local_seid);
_connected = true;
if (_connectCB) {
_connectCB(_connectData, true);
}
break;
case A2DP_SUBEVENT_STREAMING_CAN_SEND_MEDIA_PACKET_NOW:
local_seid = a2dp_subevent_streaming_can_send_media_packet_now_get_local_seid(packet);
cid = a2dp_subevent_signaling_media_codec_sbc_configuration_get_a2dp_cid(packet);
a2dp_send_media_packet();
break;
case A2DP_SUBEVENT_STREAM_SUSPENDED:
local_seid = a2dp_subevent_stream_suspended_get_local_seid(packet);
cid = a2dp_subevent_stream_suspended_get_a2dp_cid(packet);
play_info.status = AVRCP_PLAYBACK_STATUS_PAUSED;
if (media_tracker.avrcp_cid) {
avrcp_target_set_playback_status(media_tracker.avrcp_cid, AVRCP_PLAYBACK_STATUS_PAUSED);
}
DEBUGV("A2DP Source: Stream paused, a2dp_cid 0x%02x, local_seid 0x%02x\n", cid, local_seid);
a2dp_timer_stop(&media_tracker);
break;
case A2DP_SUBEVENT_STREAM_RELEASED:
play_info.status = AVRCP_PLAYBACK_STATUS_STOPPED;
cid = a2dp_subevent_stream_released_get_a2dp_cid(packet);
local_seid = a2dp_subevent_stream_released_get_local_seid(packet);
DEBUGV("A2DP Source: Stream released, a2dp_cid 0x%02x, local_seid 0x%02x\n", cid, local_seid);
if (cid == media_tracker.a2dp_cid) {
media_tracker.stream_opened = 0;
DEBUGV("A2DP Source: Stream released.\n");
}
if (media_tracker.avrcp_cid) {
avrcp_target_set_now_playing_info(media_tracker.avrcp_cid, NULL, _tracks);
avrcp_target_set_playback_status(media_tracker.avrcp_cid, AVRCP_PLAYBACK_STATUS_STOPPED);
}
a2dp_timer_stop(&media_tracker);
break;
case A2DP_SUBEVENT_SIGNALING_CONNECTION_RELEASED:
cid = a2dp_subevent_signaling_connection_released_get_a2dp_cid(packet);
if (cid == media_tracker.a2dp_cid) {
media_tracker.avrcp_cid = 0;
media_tracker.a2dp_cid = 0;
DEBUGV("A2DP Source: Signaling released.\n\n");
_connected = false;
if (_connectCB) {
_connectCB(_connectData, false);
}
}
break;
default:
break;
}
}
void A2DPSource::avrcp_packet_handler(uint8_t packet_type, uint16_t channel, uint8_t *packet, uint16_t size) {
UNUSED(channel);
UNUSED(size);
bd_addr_t event_addr;
uint16_t local_cid;
uint8_t status = ERROR_CODE_SUCCESS;
if (packet_type != HCI_EVENT_PACKET) {
return;
}
if (hci_event_packet_get_type(packet) != HCI_EVENT_AVRCP_META) {
return;
}
switch (packet[2]) {
case AVRCP_SUBEVENT_CONNECTION_ESTABLISHED:
local_cid = avrcp_subevent_connection_established_get_avrcp_cid(packet);
status = avrcp_subevent_connection_established_get_status(packet);
if (status != ERROR_CODE_SUCCESS) {
DEBUGV("AVRCP: Connection failed, local cid 0x%02x, status 0x%02x\n", local_cid, status);
return;
}
media_tracker.avrcp_cid = local_cid;
avrcp_subevent_connection_established_get_bd_addr(packet, event_addr);
DEBUGV("AVRCP: Channel to %s successfully opened, avrcp_cid 0x%02x\n", bd_addr_to_str(event_addr), media_tracker.avrcp_cid);
avrcp_target_support_event(media_tracker.avrcp_cid, AVRCP_NOTIFICATION_EVENT_PLAYBACK_STATUS_CHANGED);
avrcp_target_support_event(media_tracker.avrcp_cid, AVRCP_NOTIFICATION_EVENT_TRACK_CHANGED);
avrcp_target_support_event(media_tracker.avrcp_cid, AVRCP_NOTIFICATION_EVENT_NOW_PLAYING_CONTENT_CHANGED);
avrcp_target_set_now_playing_info(media_tracker.avrcp_cid, NULL, _tracks);
DEBUGV("Enable Volume Change notification\n");
avrcp_controller_enable_notification(media_tracker.avrcp_cid, AVRCP_NOTIFICATION_EVENT_VOLUME_CHANGED);
DEBUGV("Enable Battery Status Change notification\n");
avrcp_controller_enable_notification(media_tracker.avrcp_cid, AVRCP_NOTIFICATION_EVENT_BATT_STATUS_CHANGED);
return;
case AVRCP_SUBEVENT_CONNECTION_RELEASED:
DEBUGV("AVRCP Target: Disconnected, avrcp_cid 0x%02x\n", avrcp_subevent_connection_released_get_avrcp_cid(packet));
media_tracker.avrcp_cid = 0;
return;
default:
break;
}
if (status != ERROR_CODE_SUCCESS) {
DEBUGV("Responding to event 0x%02x failed, status 0x%02x\n", packet[2], status);
}
}
void A2DPSource::avrcp_target_packet_handler(uint8_t packet_type, uint16_t channel, uint8_t *packet, uint16_t size) {
UNUSED(channel);
UNUSED(size);
uint8_t status = ERROR_CODE_SUCCESS;
if (packet_type != HCI_EVENT_PACKET) {
return;
}
if (hci_event_packet_get_type(packet) != HCI_EVENT_AVRCP_META) {
return;
}
bool button_pressed;
char const * button_state;
avrcp_operation_id_t operation_id;
switch (packet[2]) {
case AVRCP_SUBEVENT_PLAY_STATUS_QUERY:
status = avrcp_target_play_status(media_tracker.avrcp_cid, play_info.song_length_ms, play_info.song_position_ms, play_info.status);
break;
// case AVRCP_SUBEVENT_NOW_PLAYING_INFO_QUERY:
// status = avrcp_target_now_playing_info(avrcp_cid);
// break;
case AVRCP_SUBEVENT_OPERATION:
operation_id = (avrcp_operation_id_t)avrcp_subevent_operation_get_operation_id(packet);
button_pressed = avrcp_subevent_operation_get_button_pressed(packet) > 0;
button_state = button_pressed ? "PRESS" : "RELEASE";
(void) button_state;
DEBUGV("AVRCP Target: operation %s (%s)\n", avrcp_operation2str(operation_id), button_state);
if (_avrcpCB) {
_avrcpCB(_avrcpData, operation_id, button_pressed);
}
if (!button_pressed) {
break;
}
switch (operation_id) {
case AVRCP_OPERATION_ID_PLAY:
status = a2dp_source_start_stream(media_tracker.a2dp_cid, media_tracker.local_seid);
break;
case AVRCP_OPERATION_ID_PAUSE:
status = a2dp_source_pause_stream(media_tracker.a2dp_cid, media_tracker.local_seid);
break;
case AVRCP_OPERATION_ID_STOP:
status = a2dp_source_disconnect(media_tracker.a2dp_cid);
break;
default:
break;
}
break;
default:
break;
}
if (status != ERROR_CODE_SUCCESS) {
DEBUGV("Responding to event 0x%02x failed, status 0x%02x\n", packet[2], status);
}
}
void A2DPSource::avrcp_controller_packet_handler(uint8_t packet_type, uint16_t channel, uint8_t *packet, uint16_t size) {
UNUSED(channel);
UNUSED(size);
if (packet_type != HCI_EVENT_PACKET) {
return;
}
if (hci_event_packet_get_type(packet) != HCI_EVENT_AVRCP_META) {
return;
}
if (!media_tracker.avrcp_cid) {
return;
}
switch (packet[2]) {
case AVRCP_SUBEVENT_NOTIFICATION_VOLUME_CHANGED:
DEBUGV("AVRCP Controller: Notification Absolute Volume %d %%\n", avrcp_subevent_notification_volume_changed_get_absolute_volume(packet) * 100 / 127);
if (_volumeCB) {
_volumeCB(_volumeData, avrcp_subevent_notification_volume_changed_get_absolute_volume(packet) * 100 / 127);
}
break;
case AVRCP_SUBEVENT_NOTIFICATION_EVENT_BATT_STATUS_CHANGED:
// see avrcp_battery_status_t
DEBUGV("AVRCP Controller: Notification Battery Status 0x%02x\n", avrcp_subevent_notification_event_batt_status_changed_get_battery_status(packet));
if (_batteryCB) {
_batteryCB(_batteryData, (avrcp_battery_status_t)avrcp_subevent_notification_event_batt_status_changed_get_battery_status(packet));
}
break;
case AVRCP_SUBEVENT_NOTIFICATION_STATE:
DEBUGV("AVRCP Controller: Notification %s - %s\n",
avrcp_event2str(avrcp_subevent_notification_state_get_event_id(packet)),
avrcp_subevent_notification_state_get_enabled(packet) != 0 ? "enabled" : "disabled");
break;
default:
break;
}
}
+238
View File
@@ -0,0 +1,238 @@
/*
A1DP Source (Bluetooth audio sender)
Copyright (c) 2024 Earle F. Philhower, III <earlephilhower@yahoo.com>
This library is free software; you can redistribute it and/or
modify it under the terms of the GNU Lesser General Public
License as published by the Free Software Foundation; either
version 2.1 of the License, or (at your option) any later version.
This library is distributed in the hope that it will be useful,
but WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
Lesser General Public License for more details.
You should have received a copy of the GNU Lesser General Public
License along with this library; if not, write to the Free Software
Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA
*/
#pragma once
#include <Arduino.h>
#include <BluetoothHCI.h>
#include <BluetoothLock.h>
#include "BluetoothMediaConfigurationSBC.h"
#include <functional>
#include <list>
#include <memory>
class A2DPSource : public Stream {
public:
A2DPSource() {
}
bool setFrequency(uint32_t rate) {
if (_running || ((rate != 44100) && (rate != 48000))) {
return false;
}
_frequency = rate;
return true;
}
bool setName(const char *name) {
if (_running) {
return false;
}
free(_name);
_name = strdup(name);
return true;
}
void onTransmit(void (*cb)(void *), void *cbData = nullptr) {
_transmitCB = cb;
_transmitData = cbData;
}
void onAVRCP(void (*cb)(void *, avrcp_operation_id_t, int), void *cbData = nullptr) {
_avrcpCB = cb;
_avrcpData = cbData;
}
void onBattery(void (*cb)(void *, avrcp_battery_status_t), void *cbData = nullptr) {
_batteryCB = cb;
_batteryData = cbData;
}
void onVolume(void (*cb)(void *, int), void *cbData = nullptr) {
_volumeCB = cb;
_volumeData = cbData;
}
void onConnect(void (*cb)(void *, bool), void *cbData = nullptr) {
_connectCB = cb;
_connectData = cbData;
}
bool setBufferSize(size_t size) {
if (_running || (size & 127) || (size < 1024)) {
return false;
}
_pcmBufferSize = size;
return true;
}
bool getUnderflow() {
BluetoothLock b;
if (!_running) {
return false;
}
auto ret = _underflow;
_underflow = false;
return ret;
}
const uint8_t *getSinkAddress() {
if (!_connected) {
return nullptr;
} else {
return _sinkAddress;
}
}
bool begin();
std::vector<BTDeviceInfo> scan(uint32_t mask = BluetoothHCI::speaker_cod, int scanTimeSec = 5, bool async = false) {
return _hci.scan(mask, scanTimeSec, async);
}
bool connect(const uint8_t *addr = nullptr);
bool connected() {
return _connected;
}
bool disconnect();
void clearPairing();
// from Stream
virtual int available() override {
return 0; // Unreadable, this is output only
}
virtual int read() override {
return 0;
}
virtual int peek() override {
return 0;
}
virtual void flush() override {
}
// from Print (see notes on write() methods below)
virtual size_t write(const uint8_t *buffer, size_t size) override;
virtual int availableForWrite() override;
virtual size_t write(uint8_t s) override {
(void) s;
return 0; // Never any reason to write 8-bit data, make it always fail.
}
private:
BluetoothHCI _hci;
bool _running = false;
bool _connected = false;
char *_name = nullptr;
int _frequency = 44100;
// Callbacks
void (*_transmitCB)(void *) = nullptr;
void *_transmitData;
void (*_avrcpCB)(void *, avrcp_operation_id_t, int) = nullptr;
void *_avrcpData;
void (*_batteryCB)(void *, avrcp_battery_status_t) = nullptr;
void *_batteryData;
void (*_volumeCB)(void *, int) = nullptr;
void *_volumeData;
void (*_connectCB)(void *, bool) = nullptr;
void *_connectData;
const uint8_t media_sbc_codec_capabilities[4] = {
(AVDTP_SBC_44100 << 4) | AVDTP_SBC_STEREO,
0xFF,//(AVDTP_SBC_BLOCK_LENGTH_16 << 4) | (AVDTP_SBC_SUBBANDS_8 << 2) | AVDTP_SBC_ALLOCATION_METHOD_LOUDNESS,
2, 53
};
uint8_t media_sbc_codec_configuration[4];
enum {SBC_STORAGE_SIZE = 1030, AUDIO_TIMEOUT_MS = 5};
typedef struct {
uint16_t a2dp_cid;
uint8_t local_seid;
uint8_t remote_seid;
uint8_t stream_opened;
uint16_t avrcp_cid;
uint32_t time_audio_data_sent; // ms
uint32_t acc_num_missed_samples;
uint32_t samples_ready;
btstack_timer_source_t audio_timer;
uint8_t streaming;
int max_media_payload_size;
uint32_t rtp_timestamp;
uint8_t sbc_storage[SBC_STORAGE_SIZE];
uint16_t sbc_storage_count;
uint8_t sbc_ready_to_send;
uint8_t volume;
} a2dp_media_sending_context_t;
uint8_t sdp_a2dp_source_service_buffer[150];
uint8_t sdp_avrcp_target_service_buffer[200];
uint8_t sdp_avrcp_controller_service_buffer[200];
uint8_t device_id_sdp_service_buffer[100];
BluetoothMediaCodecConfigurationSBC sbc_configuration;
btstack_sbc_encoder_state_t sbc_encoder_state;
a2dp_media_sending_context_t media_tracker;
typedef struct {
uint8_t track_id[8];
uint32_t song_length_ms;
avrcp_playback_status_t status;
uint32_t song_position_ms; // 0xFFFFFFFF if not supported
} avrcp_play_status_info_t;
avrcp_play_status_info_t play_info;
void a2dp_timer_start(a2dp_media_sending_context_t * context);
void a2dp_timer_stop(a2dp_media_sending_context_t * context);
int16_t *_pcmBuffer = nullptr;
size_t _pcmBufferSize = 4096; // Multiple of 128 required
uint32_t _pcmWriter;
uint32_t _pcmReader;
bool _underflow;
int a2dp_fill_sbc_audio_buffer(a2dp_media_sending_context_t * context);
void a2dp_audio_timeout_handler(btstack_timer_source_t * timer);
void a2dp_send_media_packet();
int _tracks = 1;
avrcp_track_t _currentTrack;
uint8_t _sinkAddress[6];
void a2dp_source_packet_handler(uint8_t packet_type, uint16_t channel, uint8_t *packet, uint16_t size);
void avrcp_packet_handler(uint8_t packet_type, uint16_t channel, uint8_t *packet, uint16_t size);
void avrcp_target_packet_handler(uint8_t packet_type, uint16_t channel, uint8_t *packet, uint16_t size);
void avrcp_controller_packet_handler(uint8_t packet_type, uint16_t channel, uint8_t *packet, uint16_t size);
};
@@ -0,0 +1,10 @@
#include <_needsbt.h>
#include <BluetoothLock.h>
#include <BluetoothDevice.h>
#include <BluetoothHCI.h>
#include "BluetoothMediaConfigurationSBC.h"
#include "A2DPSource.h"
#include "A2DPSink.h"
#include "BluetoothAudioConsumer.h"
#include "BluetoothAudioConsumerPWM.h"
#include "BluetoothAudioConsumerI2S.h"
@@ -0,0 +1,45 @@
/*
Bluetooth A2DP audio stream consumer
Copyright (c) 2024 Earle F. Philhower, III <earlephilhower@yahoo.com>
This library is free software; you can redistribute it and/or
modify it under the terms of the GNU Lesser General Public
License as published by the Free Software Foundation; either
version 2.1 of the License, or (at your option) any later version.
This library is distributed in the hope that it will be useful,
but WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
Lesser General Public License for more details.
You should have received a copy of the GNU Lesser General Public
License along with this library; if not, write to the Free Software
Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA
*/
#pragma once
class A2DPSink;
class BluetoothAudioConsumer_ {
public:
BluetoothAudioConsumer_() {
_state = STATE_OFF;
}
virtual ~BluetoothAudioConsumer_() {
/* noop */
}
virtual bool init(uint8_t channels, uint32_t samplerate, A2DPSink *a2dpSink) = 0;
virtual void setVolume(uint8_t gain) = 0;
virtual void startStream() = 0;
virtual void stopStream() = 0;
virtual void close() = 0;
protected:
typedef enum { STATE_OFF = 0, STATE_INITIALIZED, STATE_STREAMING } State;
A2DPSink *_a2dpSink;
State _state;
uint8_t _gain;
int _channels;
int _samplerate;
};
@@ -0,0 +1,82 @@
/*
Bluetooth A2DP audio stream consumer - PWMAudio
Copyright (c) 2024 Earle F. Philhower, III <earlephilhower@yahoo.com>
This library is free software; you can redistribute it and/or
modify it under the terms of the GNU Lesser General Public
License as published by the Free Software Foundation; either
version 2.1 of the License, or (at your option) any later version.
This library is distributed in the hope that it will be useful,
but WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
Lesser General Public License for more details.
You should have received a copy of the GNU Lesser General Public
License along with this library; if not, write to the Free Software
Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA
*/
#include "BluetoothAudioConsumerI2S.h"
#include "A2DPSink.h"
#include <functional>
#define CCALLBACKNAME _BTA2DPI2S
#include <ctocppcallback.h>
#define NOPARAMCB(class, cbFcn) \
(CCALLBACKNAME<void(void), __COUNTER__>::func = std::bind(&class::cbFcn, this), \
static_cast<void (*)(void)>(CCALLBACKNAME<void(void), __COUNTER__ - 1>::callback))
bool BluetoothAudioConsumerI2S::init(uint8_t channels, uint32_t samplerate, A2DPSink *a2dpSink) {
_channels = channels;
_samplerate = samplerate;
_a2dpSink = a2dpSink;
_i2s->setBuffers(16, 64);
_i2s->onTransmit(NOPARAMCB(BluetoothAudioConsumerI2S, fill));
if (_i2s->begin(samplerate)) {
_state = STATE_INITIALIZED;
_gain = 64;
return true;
}
return false;
}
void BluetoothAudioConsumerI2S::setVolume(uint8_t gain) {
_gain = gain;
}
void BluetoothAudioConsumerI2S::startStream() {
if (_state != STATE_INITIALIZED) {
return;
}
_state = STATE_STREAMING;
}
void BluetoothAudioConsumerI2S::stopStream() {
if (_state != STATE_STREAMING) {
return;
}
_state = STATE_INITIALIZED;
}
void BluetoothAudioConsumerI2S::close() {
if (_state == STATE_STREAMING) {
stopStream();
}
_state = STATE_OFF;
_i2s->end();
}
void BluetoothAudioConsumerI2S::fill() {
int num_samples = _i2s->availableForWrite() / 2;
int16_t buff[32 * 2];
while (num_samples > 63) {
_a2dpSink->playback_handler((int16_t *) buff, 32);
num_samples -= 64;
for (int i = 0; i < 64; i++) {
buff[i] = (((int32_t)buff[i]) * _gain) >> 8;
}
_i2s->write((uint8_t *)buff, 64 * 2);
}
}
@@ -0,0 +1,41 @@
/*
Bluetooth A2DP audio stream consumer - I2S
Copyright (c) 2024 Earle F. Philhower, III <earlephilhower@yahoo.com>
This library is free software; you can redistribute it and/or
modify it under the terms of the GNU Lesser General Public
License as published by the Free Software Foundation; either
version 2.1 of the License, or (at your option) any later version.
This library is distributed in the hope that it will be useful,
but WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
Lesser General Public License for more details.
You should have received a copy of the GNU Lesser General Public
License along with this library; if not, write to the Free Software
Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA
*/
#pragma once
#include <I2S.h>
#include "BluetoothAudioConsumer.h"
class BluetoothAudioConsumerI2S : public BluetoothAudioConsumer_ {
public:
BluetoothAudioConsumerI2S(I2S &i2s) : BluetoothAudioConsumer_() {
_i2s = &i2s;
}
virtual bool init(uint8_t channels, uint32_t samplerate, A2DPSink *a2dpSink) override;
virtual void setVolume(uint8_t gain) override;
virtual void startStream() override;
virtual void stopStream() override;
virtual void close() override;
private:
I2S *_i2s;
void fill();
};
@@ -0,0 +1,83 @@
/*
Bluetooth A2DP audio stream consumer - PWMAudio
Copyright (c) 2024 Earle F. Philhower, III <earlephilhower@yahoo.com>
This library is free software; you can redistribute it and/or
modify it under the terms of the GNU Lesser General Public
License as published by the Free Software Foundation; either
version 2.1 of the License, or (at your option) any later version.
This library is distributed in the hope that it will be useful,
but WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
Lesser General Public License for more details.
You should have received a copy of the GNU Lesser General Public
License along with this library; if not, write to the Free Software
Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA
*/
#include "BluetoothAudioConsumerPWM.h"
#include "A2DPSink.h"
#include <functional>
#define CCALLBACKNAME _BTA2DPPWM
#include <ctocppcallback.h>
#define NOPARAMCB(class, cbFcn) \
(CCALLBACKNAME<void(void), __COUNTER__>::func = std::bind(&class::cbFcn, this), \
static_cast<void (*)(void)>(CCALLBACKNAME<void(void), __COUNTER__ - 1>::callback))
bool BluetoothAudioConsumerPWM::init(uint8_t channels, uint32_t samplerate, A2DPSink *a2dpSink) {
_channels = channels;
_samplerate = samplerate;
_a2dpSink = a2dpSink;
_pwm->setStereo(channels == 2);
_pwm->setBuffers(16, 64);
_pwm->onTransmit(NOPARAMCB(BluetoothAudioConsumerPWM, fill));
if (_pwm->begin(samplerate)) {
_state = STATE_INITIALIZED;
_gain = 64;
return true;
}
return false;
}
void BluetoothAudioConsumerPWM::setVolume(uint8_t gain) {
_gain = gain;
}
void BluetoothAudioConsumerPWM::startStream() {
if (_state != STATE_INITIALIZED) {
return;
}
_state = STATE_STREAMING;
}
void BluetoothAudioConsumerPWM::stopStream() {
if (_state != STATE_STREAMING) {
return;
}
_state = STATE_INITIALIZED;
}
void BluetoothAudioConsumerPWM::close() {
if (_state == STATE_STREAMING) {
stopStream();
}
_state = STATE_OFF;
_pwm->end();
}
void BluetoothAudioConsumerPWM::fill() {
int num_samples = _pwm->availableForWrite() / 2;
int16_t buff[32 * 2];
while (num_samples > 63) {
_a2dpSink->playback_handler((int16_t *) buff, 32);
num_samples -= 64;
for (int i = 0; i < 64; i++) {
buff[i] = (((int32_t)buff[i]) * _gain) >> 8;
}
_pwm->write((uint8_t *)buff, 64 * 2);
}
}
@@ -0,0 +1,41 @@
/*
Bluetooth A2DP audio stream consumer - PWMAudio
Copyright (c) 2024 Earle F. Philhower, III <earlephilhower@yahoo.com>
This library is free software; you can redistribute it and/or
modify it under the terms of the GNU Lesser General Public
License as published by the Free Software Foundation; either
version 2.1 of the License, or (at your option) any later version.
This library is distributed in the hope that it will be useful,
but WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
Lesser General Public License for more details.
You should have received a copy of the GNU Lesser General Public
License along with this library; if not, write to the Free Software
Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA
*/
#pragma once
#include <PWMAudio.h>
#include "BluetoothAudioConsumer.h"
class BluetoothAudioConsumerPWM : public BluetoothAudioConsumer_ {
public:
BluetoothAudioConsumerPWM(PWMAudio &pwm) : BluetoothAudioConsumer_() {
_pwm = &pwm;
}
virtual bool init(uint8_t channels, uint32_t samplerate, A2DPSink *a2dpSink) override;
virtual void setVolume(uint8_t gain) override;
virtual void startStream() override;
virtual void stopStream() override;
virtual void close() override;
private:
PWMAudio *_pwm;
void fill();
};
@@ -0,0 +1,47 @@
/*
A1DP Source (Bluetooth audio sender)
Copyright (c) 2024 Earle F. Philhower, III <earlephilhower@yahoo.com>
This library is free software; you can redistribute it and/or
modify it under the terms of the GNU Lesser General Public
License as published by the Free Software Foundation; either
version 2.1 of the License, or (at your option) any later version.
This library is distributed in the hope that it will be useful,
but WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
Lesser General Public License for more details.
You should have received a copy of the GNU Lesser General Public
License along with this library; if not, write to the Free Software
Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA
*/
#pragma once
#include <Arduino.h>
class BluetoothMediaCodecConfigurationSBC {
public:
uint8_t reconfigure;
uint8_t num_channels;
uint16_t sampling_frequency;
uint8_t block_length;
uint8_t subbands;
uint8_t min_bitpool_value;
uint8_t max_bitpool_value;
btstack_sbc_channel_mode_t channel_mode;
btstack_sbc_allocation_method_t allocation_method;
void dump() {
DEBUGV(" - num_channels: %d\n", num_channels);
DEBUGV(" - sampling_frequency: %d\n", sampling_frequency);
DEBUGV(" - channel_mode: %d\n", channel_mode);
DEBUGV(" - block_length: %d\n", block_length);
DEBUGV(" - subbands: %d\n", subbands);
DEBUGV(" - allocation_method: %d\n", allocation_method);
DEBUGV(" - bitpool_value [%d, %d] \n", min_bitpool_value, max_bitpool_value);
DEBUGV("\n");
}
};
@@ -0,0 +1,34 @@
#include <BluetoothHCI.h>
BluetoothHCI hci;
void BTBasicSetup() {
l2cap_init();
gatt_client_init();
sm_init();
sm_set_io_capabilities(IO_CAPABILITY_NO_INPUT_NO_OUTPUT);
gap_set_default_link_policy_settings(LM_LINK_POLICY_ENABLE_SNIFF_MODE | LM_LINK_POLICY_ENABLE_ROLE_SWITCH);
hci_set_master_slave_policy(HCI_ROLE_MASTER);
hci_set_inquiry_mode(INQUIRY_MODE_RSSI_AND_EIR);
hci.setBLEName("Pico BLE Scanner");
hci.install();
hci.begin();
}
void setup() {
delay(5000);
BTBasicSetup();
}
void loop() {
Serial.printf("BEGIN BLE SCAN @%lu ...", millis());
auto l = hci.scanBLE(BluetoothHCI::any_cod);
Serial.printf("END BLE SCAN @%lu\n\n", millis());
Serial.printf("%-8s | %-17s | %-4s | %s\n", "Class", "Address", "RSSI", "Name");
Serial.printf("%-8s | %-17s | %-4s | %s\n", "--------", "-----------------", "----", "----------------");
for (auto e : l) {
Serial.printf("%08lx | %17s | %4d | %s\n", e.deviceClass(), e.addressString(), e.rssi(), e.name());
}
Serial.printf("\n\n\n");
}
@@ -0,0 +1,31 @@
#include <BluetoothHCI.h>
BluetoothHCI hci;
void BTBasicSetup() {
l2cap_init();
sm_init();
gap_set_default_link_policy_settings(LM_LINK_POLICY_ENABLE_SNIFF_MODE | LM_LINK_POLICY_ENABLE_ROLE_SWITCH);
hci_set_master_slave_policy(HCI_ROLE_MASTER);
hci_set_inquiry_mode(INQUIRY_MODE_RSSI_AND_EIR);
hci.install();
hci.begin();
}
void setup() {
delay(5000);
BTBasicSetup();
}
void loop() {
Serial.printf("BEGIN SCAN @%lu ...", millis());
auto l = hci.scan(BluetoothHCI::any_cod);
Serial.printf("END SCAN @%lu\n\n", millis());
Serial.printf("%-8s | %-17s | %-4s | %s\n", "Class", "Address", "RSSI", "Name");
Serial.printf("%-8s | %-17s | %-4s | %s\n", "--------", "-----------------", "----", "----------------");
for (auto e : l) {
Serial.printf("%08lx | %17s | %4d | %s\n", e.deviceClass(), e.addressString(), e.rssi(), e.name());
}
Serial.printf("\n\n\n");
}
+36
View File
@@ -0,0 +1,36 @@
#######################################
# Syntax Coloring Map
#######################################
#######################################
# Datatypes (KEYWORD1)
#######################################
BluetoothHCI KEYWORD1
BTDeviceInfo KEYWORD1
BluetoothLock KEYWORD1
#######################################
# Methods and Functions (KEYWORD2)
#######################################
begin KEYWORD2
end KEYWORD2
scan KEYWORD2
scanAsyncDone KEYWORD2
scanAsyncResult KEYWORD2
setName KEYWORD2
scanBLE KEYWORD2
# BTDeviceInfo
deviceClass KEYWORD2
address KEYWORD2
addressType KEYWORD2
addressString KEYWORD2
rssi KEYWORD2
name KEYWORD2
#######################################
# Constants (LITERAL1)
#######################################
+10
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@@ -0,0 +1,10 @@
name=BluetoothHCI
version=1.0
author=Earle F. Philhower, III <earlephilhower@yahoo.com>
maintainer=Earle F. Philhower, III <earlephilhower@yahoo.com>
sentence=Classic Bluetooth HCI functionality
paragraph=Classic Bluetooth HCI functionality
category=Communication
url=http://github.com/earlephilhower/arduino-pico
architectures=rp2040
dot_a_linkage=true
@@ -0,0 +1,83 @@
/*
Bluetooth device helper class
Copyright (c) 2024 Earle F. Philhower, III <earlephilhower@yahoo.com>
This library is free software; you can redistribute it and/or
modify it under the terms of the GNU Lesser General Public
License as published by the Free Software Foundation; either
version 2.1 of the License, or (at your option) any later version.
This library is distributed in the hope that it will be useful,
but WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
Lesser General Public License for more details.
You should have received a copy of the GNU Lesser General Public
License along with this library; if not, write to the Free Software
Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA
*/
#pragma once
#include <Arduino.h>
class BTDeviceInfo {
public:
// Classic Bluetooth Device
BTDeviceInfo(uint32_t dc, const uint8_t addr[6], int rssi, const char *name) {
_deviceClass = dc;
memcpy(_address, addr, sizeof(_address));
_addressType = -1;
sprintf(_addressString, "%02x:%02x:%02x:%02x:%02x:%02x", addr[0], addr[1], addr[2], addr[3], addr[4], addr[5]);
_rssi = rssi;
strncpy(_name, name, sizeof(_name));
_name[sizeof(_name) - 1] = 0;
}
// Bluetooth BLE Device
BTDeviceInfo(uint32_t dc, const uint8_t addr[6], int addressType, int rssi, const char *name, size_t nameLen) {
_deviceClass = dc;
memcpy(_address, addr, sizeof(_address));
sprintf(_addressString, "%02x:%02x:%02x:%02x:%02x:%02x", addr[0], addr[1], addr[2], addr[3], addr[4], addr[5]);
_addressType = addressType;
_rssi = rssi;
memcpy(_name, name, std::min(nameLen, sizeof(_name)));
_name[std::min(nameLen, sizeof(_name) - 1)] = 0;
}
~BTDeviceInfo() {
}
uint32_t deviceClass() {
return _deviceClass;
}
const uint8_t *address() {
return _address;
}
const char *addressString() {
return _addressString;
}
int rssi() {
return _rssi;
}
const char *name() {
return _name;
}
int addressType() {
return _addressType;
}
private:
uint32_t _deviceClass;
uint8_t _address[6];
int _addressType;
char _addressString[18];
int8_t _rssi;
char _name[241];
};
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/*
Bluetooth HCI packet handler class
Copyright (c) 2024 Earle F. Philhower, III <earlephilhower@yahoo.com>
This library is free software; you can redistribute it and/or
modify it under the terms of the GNU Lesser General Public
License as published by the Free Software Foundation; either
version 2.1 of the License, or (at your option) any later version.
This library is distributed in the hope that it will be useful,
but WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
Lesser General Public License for more details.
You should have received a copy of the GNU Lesser General Public
License along with this library; if not, write to the Free Software
Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA
*/
#include <Arduino.h>
#include "btstack.h"
#include <list>
#include <memory>
#include "BluetoothHCI.h"
#include "BluetoothLock.h"
#define CCALLBACKNAME _BTHCICB
#include <ctocppcallback.h>
#define PACKETHANDLERCB(class, cbFcn) \
(_BTHCICB<void(uint8_t, uint16_t, uint8_t*, uint16_t), __COUNTER__>::func = std::bind(&class::cbFcn, this, std::placeholders::_1, std::placeholders::_2, std::placeholders::_3, std::placeholders::_4), \
static_cast<btstack_packet_handler_t>(_BTHCICB<void(uint8_t, uint16_t, uint8_t*, uint16_t), __COUNTER__ - 1>::callback))
void BluetoothHCI::setBLEName(const char *name) {
if (_att) {
free(_att);
_att = nullptr;
}
_att = (uint8_t *)malloc(1 + 0x0a + 0x0d + 0x08 + strlen(name) + 0x02);
uint8_t *ptr = _att;
const uint8_t head[] = {
// ATT DB Version
1,
// 0x0001 PRIMARY_SERVICE-GAP_SERVICE
0x0a, 0x00, 0x02, 0x00, 0x01, 0x00, 0x00, 0x28, 0x00, 0x18,
// 0x0002 CHARACTERISTIC-GAP_DEVICE_NAME - READ
0x0d, 0x00, 0x02, 0x00, 0x02, 0x00, 0x03, 0x28, 0x02, 0x03, 0x00, 0x00, 0x2a
};
memcpy(ptr, head, sizeof(head));
ptr += sizeof(head);
*ptr++ = 8 + strlen(name); // len of item
*ptr++ = 0x00;
*ptr++ = 0x02;
*ptr++ = 0x00;
*ptr++ = 0x03;
*ptr++ = 0x00;
*ptr++ = 0x00;
*ptr++ = 0x2a;
memcpy(ptr, name, strlen(name));
ptr += strlen(name);
// End it
*ptr++ = 0x00;
*ptr++ = 0x00;
DEBUGV("ATTDB: ");
for (size_t i = 0; i < 1 + 0x0a + 0x0d + 0x08 + strlen(name) + 0x02; i++) {
DEBUGV("%02X ", _att[i]);
}
DEBUGV("\n");
}
void BluetoothHCI::install() {
hci_set_inquiry_mode(INQUIRY_MODE_RSSI_AND_EIR);
// Register for HCI events.
hci_event_callback_registration.callback = PACKETHANDLERCB(BluetoothHCI, hci_packet_handler);
hci_add_event_handler(&hci_event_callback_registration);
// BLE set our visible name
if (_att) {
att_server_init(_att, nullptr, nullptr);
}
}
void BluetoothHCI::begin() {
_running = true;
hci_power_control(HCI_POWER_ON);
}
void BluetoothHCI::uninstall() {
BluetoothLock b;
hci_remove_event_handler(&hci_event_callback_registration);
_running = false;
free(_att);
_att = nullptr;
}
bool BluetoothHCI::running() {
return _hciRunning;
}
std::vector<BTDeviceInfo> BluetoothHCI::scan(uint32_t mask, int scanTimeSec, bool async) {
_scanMask = mask;
_btdList.reserve(MAX_DEVICES_TO_DISCOVER);
_btdList.clear();
if (!_running) {
return _btdList;
}
_scanning = true;
while (!_hciRunning) {
DEBUGV("HCI::scan(): Waiting for HCI to come up\n");
delay(10);
}
int inquiryTime = (scanTimeSec * 1000) / 1280; // divide by 1.280
if (!inquiryTime) {
inquiryTime = 1;
}
DEBUGV("HCI::scan(): inquiry start\n");
// Only need to lock around the inquiry start command, not the wait
{
BluetoothLock b;
gap_inquiry_start(inquiryTime);
}
if (async) {
return _btdList;
}
while (_scanning) {
delay(10);
}
DEBUGV("HCI::scan(): inquiry end\n");
return _btdList;
}
std::vector<BTDeviceInfo> BluetoothHCI::scanBLE(uint32_t uuid, int scanTimeSec) {
_scanMask = uuid;
_btdList.reserve(MAX_DEVICES_TO_DISCOVER);
_btdList.clear();
if (!_running) {
return _btdList;
}
_scanning = true;
while (!_hciRunning) {
DEBUGV("HCI::scanBLE(): Waiting for HCI to come up\n");
delay(10);
}
uint32_t inquiryTime = scanTimeSec * 1000;
if (!inquiryTime) {
inquiryTime = 1000;
}
DEBUGV("HCI::scan(): BLE advertise inquiry start\n");
// Only need to lock around the inquiry start command, not the wait
{
BluetoothLock b;
gap_set_scan_params(0, 75, 50, 0); // TODO - anything better for these params?
gap_start_scan();
}
uint32_t scanStart = millis();
while (_scanning && ((millis() - scanStart) < inquiryTime)) {
delay(10);
}
DEBUGV("HCI::scanBLE(): inquiry end\n");
gap_stop_scan();
return _btdList;
}
void BluetoothHCI::scanFree() {
_btdList.clear();
_btdList.shrink_to_fit();
}
void BluetoothHCI::parse_advertisement_data(uint8_t *packet) {
bd_addr_t address;
gap_event_advertising_report_get_address(packet, address);
//int event_type = gap_event_advertising_report_get_advertising_event_type(packet);
int address_type = gap_event_advertising_report_get_address_type(packet);
int8_t rssi = gap_event_advertising_report_get_rssi(packet);
uint8_t adv_size = gap_event_advertising_report_get_data_length(packet);
const uint8_t * adv_data = gap_event_advertising_report_get_data(packet);
uint16_t uuid = 0;
const char *nameptr = nullptr;
int namelen = 0;
ad_context_t context;
uint8_t uuid_128[16];
for (ad_iterator_init(&context, adv_size, (uint8_t *)adv_data) ; ad_iterator_has_more(&context) ; ad_iterator_next(&context)) {
uint8_t data_type = ad_iterator_get_data_type(&context);
uint8_t size = ad_iterator_get_data_len(&context);
const uint8_t * data = ad_iterator_get_data(&context);
// if (data_type > 0 && data_type < 0x1B){
// printf(" %s: ", ad_types[data_type]);
// }
int i;
// Assigned Numbers GAP
switch (data_type) {
case BLUETOOTH_DATA_TYPE_FLAGS:
// show only first octet, ignore rest
//for (i=0; i<8;i++){
// if (data[0] & (1<<i)){
// printf("%s; ", flags[i]);
// }
//}
break;
case BLUETOOTH_DATA_TYPE_INCOMPLETE_LIST_OF_16_BIT_SERVICE_CLASS_UUIDS:
case BLUETOOTH_DATA_TYPE_COMPLETE_LIST_OF_16_BIT_SERVICE_CLASS_UUIDS:
case BLUETOOTH_DATA_TYPE_LIST_OF_16_BIT_SERVICE_SOLICITATION_UUIDS:
for (i = 0; i < size; i += 2) {
uint16_t thisuuid = little_endian_read_16(data, i);
if (!_scanMask || (_scanMask == thisuuid)) {
uuid = thisuuid;
}
DEBUGV("uuid %02X ", thisuuid);
}
break;
case BLUETOOTH_DATA_TYPE_INCOMPLETE_LIST_OF_32_BIT_SERVICE_CLASS_UUIDS:
case BLUETOOTH_DATA_TYPE_COMPLETE_LIST_OF_32_BIT_SERVICE_CLASS_UUIDS:
case BLUETOOTH_DATA_TYPE_LIST_OF_32_BIT_SERVICE_SOLICITATION_UUIDS:
for (i = 0; i < size; i += 4) {
uint32_t thisuuid = little_endian_read_32(data, i);
if (!_scanMask || (_scanMask == thisuuid)) {
uuid = thisuuid;
}
DEBUGV("%04" PRIX32, thisuuid);
}
break;
case BLUETOOTH_DATA_TYPE_INCOMPLETE_LIST_OF_128_BIT_SERVICE_CLASS_UUIDS:
case BLUETOOTH_DATA_TYPE_COMPLETE_LIST_OF_128_BIT_SERVICE_CLASS_UUIDS:
case BLUETOOTH_DATA_TYPE_LIST_OF_128_BIT_SERVICE_SOLICITATION_UUIDS:
// Unhandled yet
reverse_128(data, uuid_128);
DEBUGV("%s", uuid128_to_str(uuid_128));
break;
case BLUETOOTH_DATA_TYPE_SHORTENED_LOCAL_NAME:
if (!nameptr) {
nameptr = (const char *)data;
namelen = size;
}
for (i = 0; i < size; i++) {
DEBUGV("%c", (char)(data[i]));
}
break;
case BLUETOOTH_DATA_TYPE_COMPLETE_LOCAL_NAME:
nameptr = (const char *)data;
namelen = size;
for (i = 0; i < size; i++) {
DEBUGV("%c", (char)(data[i]));
}
break;
case BLUETOOTH_DATA_TYPE_TX_POWER_LEVEL:
DEBUGV("%d dBm", *(int8_t*)data);
break;
case BLUETOOTH_DATA_TYPE_SLAVE_CONNECTION_INTERVAL_RANGE:
DEBUGV("Connection Interval Min = %u ms, Max = %u ms", little_endian_read_16(data, 0) * 5 / 4, little_endian_read_16(data, 2) * 5 / 4);
break;
case BLUETOOTH_DATA_TYPE_SERVICE_DATA:
//printf_hexdump(data, size);
break;
case BLUETOOTH_DATA_TYPE_PUBLIC_TARGET_ADDRESS:
case BLUETOOTH_DATA_TYPE_RANDOM_TARGET_ADDRESS:
reverse_bd_addr(data, address);
DEBUGV("%s", bd_addr_to_str(address));
break;
case BLUETOOTH_DATA_TYPE_APPEARANCE:
// https://developer.bluetooth.org/gatt/characteristics/Pages/CharacteristicViewer.aspx?u=org.bluetooth.characteristic.gap.appearance.xml
DEBUGV("%02X", little_endian_read_16(data, 0));
break;
case BLUETOOTH_DATA_TYPE_ADVERTISING_INTERVAL:
DEBUGV("%u ms", little_endian_read_16(data, 0) * 5 / 8);
break;
case BLUETOOTH_DATA_TYPE_3D_INFORMATION_DATA:
//printf_hexdump(data, size);
break;
case BLUETOOTH_DATA_TYPE_MANUFACTURER_SPECIFIC_DATA: // Manufacturer Specific Data
break;
case BLUETOOTH_DATA_TYPE_CLASS_OF_DEVICE:
case BLUETOOTH_DATA_TYPE_SIMPLE_PAIRING_HASH_C:
case BLUETOOTH_DATA_TYPE_SIMPLE_PAIRING_RANDOMIZER_R:
case BLUETOOTH_DATA_TYPE_DEVICE_ID:
case BLUETOOTH_DATA_TYPE_SECURITY_MANAGER_OUT_OF_BAND_FLAGS:
default:
DEBUGV("Advertising Data Type 0x%2x not handled yet", data_type);
break;
}
DEBUGV("\n");
}
DEBUGV("\n");
if (uuid) {
bool seen = false;
for (auto itr = _btdList.begin(); (itr != _btdList.end()) && !seen; itr++) {
if (!memcmp(itr->address(), address, sizeof(address))) {
seen = true;
}
}
if (!seen) {
BTDeviceInfo btd(uuid, address, address_type, rssi, nameptr ? nameptr : "", nameptr ? namelen : 0);
if (_btdList.size() < MAX_DEVICES_TO_DISCOVER) {
_btdList.push_back(btd);
}
}
}
}
static void handle_gatt_client_event(uint8_t packet_type, uint16_t channel, uint8_t *packet, uint16_t size) {
UNUSED(packet_type);
UNUSED(channel);
UNUSED(size);
gatt_client_service_t service;
gatt_client_characteristic_t characteristic;
switch (hci_event_packet_get_type(packet)) {
case GATT_EVENT_SERVICE_QUERY_RESULT:
gatt_event_service_query_result_get_service(packet, &service);
// dump_service(&service);
// services[service_count++] = service;
break;
case GATT_EVENT_CHARACTERISTIC_QUERY_RESULT:
gatt_event_characteristic_query_result_get_characteristic(packet, &characteristic);
// dump_characteristic(&characteristic);
break;
case GATT_EVENT_QUERY_COMPLETE:
// GATT_EVENT_QUERY_COMPLETE of search characteristics
// if (service_index < service_count) {
// service = services[service_index++];
// printf("\nGATT browser - CHARACTERISTIC for SERVICE %s, [0x%04x-0x%04x]\n",
// uuid128_to_str(service.uuid128), service.start_group_handle, service.end_group_handle);
// gatt_client_discover_characteristics_for_service(handle_gatt_client_event, connection_handle, &service);
// break;
// }
// service_index = 0;
break;
default:
break;
}
}
void BluetoothHCI::hci_packet_handler(uint8_t packet_type, uint16_t channel, uint8_t *packet, uint16_t size) {
(void)channel;
(void)size;
if (packet_type != HCI_EVENT_PACKET) {
return;
}
bd_addr_t address;
uint32_t cod;
int8_t rssi;
const char *name;
char name_buffer[241];
switch (hci_event_packet_get_type(packet)) {
case BTSTACK_EVENT_STATE:
_hciRunning = (btstack_event_state_get_state(packet) == HCI_STATE_WORKING);
break;
case HCI_EVENT_PIN_CODE_REQUEST:
hci_event_pin_code_request_get_bd_addr(packet, address);
gap_pin_code_response(address, "0000");
break;
case GAP_EVENT_INQUIRY_RESULT:
if (!_scanning) {
return;
}
gap_event_inquiry_result_get_bd_addr(packet, address);
cod = gap_event_inquiry_result_get_class_of_device(packet);
if (gap_event_inquiry_result_get_rssi_available(packet)) {
rssi = gap_event_inquiry_result_get_rssi(packet);
} else {
rssi = -128;
}
if (gap_event_inquiry_result_get_name_available(packet)) {
int name_len = gap_event_inquiry_result_get_name_len(packet);
memcpy(name_buffer, gap_event_inquiry_result_get_name(packet), name_len);
name_buffer[name_len] = 0;
name = name_buffer;
} else {
name = "";
}
DEBUGV("HCI: Scan found '%s', COD 0x%08X, RSSI %d, MAC %02X:%02X:%02X:%02X:%02X:%02X\n", name, (unsigned int)cod, rssi, address[0], address[1], address[2], address[3], address[4], address[5]);
if ((_scanMask & cod) == _scanMask) {
// Sometimes we get multiple reports for the same MAC, so remove any old reports since newer will have newer RSSI
bool updated = false;
for (auto itr = _btdList.begin(); (itr != _btdList.end()) && !updated; itr++) {
if (!memcmp(itr->address(), address, sizeof(address))) {
// Sometimes the name is missing on reports, so if we found it once preserve it
if (!name_buffer[0] && itr->name()[0]) {
strcpy(name_buffer, itr->name());
}
_btdList.erase(itr);
updated = true;
}
}
BTDeviceInfo btd(cod, address, rssi, name);
if (_btdList.size() < MAX_DEVICES_TO_DISCOVER) {
_btdList.push_back(btd);
}
}
break;
case GAP_EVENT_INQUIRY_COMPLETE:
_scanning = false;
break;
case GAP_EVENT_ADVERTISING_REPORT:
if (_scanning) {
parse_advertisement_data(packet);
}
break;
case HCI_EVENT_DISCONNECTION_COMPLETE:
_hciConn = HCI_CON_HANDLE_INVALID;
DEBUGV("HCI Disconnected\n");
break;
case HCI_EVENT_LE_META:
// wait for connection complete
if (hci_event_le_meta_get_subevent_code(packet) != HCI_SUBEVENT_LE_CONNECTION_COMPLETE) {
break;
}
DEBUGV("HCI Connected\n");
_hciConn = hci_subevent_le_connection_complete_get_connection_handle(packet);
if (_smPair) {
sm_request_pairing(_hciConn);
} else {
// query primary services - not used yet
gatt_client_discover_primary_services(handle_gatt_client_event, _hciConn);
}
break;
default:
break;
}
}
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@@ -0,0 +1,78 @@
/*
Bluetooth HCI packet handler class
Copyright (c) 2024 Earle F. Philhower, III <earlephilhower@yahoo.com>
This library is free software; you can redistribute it and/or
modify it under the terms of the GNU Lesser General Public
License as published by the Free Software Foundation; either
version 2.1 of the License, or (at your option) any later version.
This library is distributed in the hope that it will be useful,
but WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
Lesser General Public License for more details.
You should have received a copy of the GNU Lesser General Public
License along with this library; if not, write to the Free Software
Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA
*/
#pragma once
#include <_needsbt.h>
#include <Arduino.h>
#include <list>
#include <memory>
#include "BluetoothDevice.h"
#include <btstack.h>
class BluetoothHCI {
public:
void install();
void setBLEName(const char *bleMasterName);
void begin();
void uninstall();
bool running();
static const uint32_t speaker_cod = 0x200000 | 0x040000 | 0x000400; // Service Class: Rendering | Audio, Major Device Class: Audio
static const uint32_t any_cod = 0;
std::vector<BTDeviceInfo> scan(uint32_t mask, int scanTimeSec = 5, bool async = false);
bool scanAsyncDone();
std::vector<BTDeviceInfo> scanAsyncResult();
std::vector<BTDeviceInfo> scanBLE(uint32_t uuid, int scanTimeSec = 5);
void scanFree(); // Free allocated scan buffers
friend class BluetoothHIDMaster;
protected:
hci_con_handle_t getHCIConn() {
return _hciConn;
}
void setPairOnMeta(bool v) {
_smPair = v;
}
private:
void hci_packet_handler(uint8_t packet_type, uint16_t channel, uint8_t *packet, uint16_t size);
btstack_packet_callback_registration_t hci_event_callback_registration;
volatile bool _hciRunning = false;
uint32_t _scanMask;
// Use a .reserve()'d vector to avoid any memory allocations in the
// HCI callback, since the callback happens at IRQ time. Any more
// elements than MAX_DEVICES_TO_DISCOVER will be thrown out
enum { MAX_DEVICES_TO_DISCOVER = 32 };
std::vector<BTDeviceInfo> _btdList;
volatile bool _scanning = false;
bool _running = false;
// BLE specific
uint8_t *_att = nullptr;
void parse_advertisement_data(uint8_t *packet);
volatile hci_con_handle_t _hciConn = HCI_CON_HANDLE_INVALID;
bool _smPair = false;
};
@@ -0,0 +1,34 @@
/*
Bluetooth lock helper class
Copyright (c) 2024 Earle F. Philhower, III <earlephilhower@yahoo.com>
This library is free software; you can redistribute it and/or
modify it under the terms of the GNU Lesser General Public
License as published by the Free Software Foundation; either
version 2.1 of the License, or (at your option) any later version.
This library is distributed in the hope that it will be useful,
but WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
Lesser General Public License for more details.
You should have received a copy of the GNU Lesser General Public
License along with this library; if not, write to the Free Software
Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA
*/
#pragma once
#include <_needsbt.h>
#include <Arduino.h>
class BluetoothLock {
public:
BluetoothLock() {
__lockBluetooth();
}
~BluetoothLock() {
__unlockBluetooth();
}
};
@@ -0,0 +1,223 @@
// KeyboardPiano example - Released to the public domain in 2024 by Earle F. Philhower, III
//
// Demonstrates using the BluetoothHIDMaster class to use a Bluetooth keyboard as a
// piano keyboard on the PicoW
//
// Hook up a phono plug to GP0 and GP1 (and GND of course...the 1st 3 pins on the PCB)
// Connect wired earbuds up and connect over BT from your keyboard and play some music.
#include <BluetoothHIDMaster.h>
#include <PWMAudio.h>
// We need the inverse map, borrow from the Keyboard library
#include <HID_Keyboard.h>
extern const uint8_t KeyboardLayout_en_US[128];
BluetoothHIDMaster hid;
PWMAudio pwm;
HIDKeyStream keystream;
int16_t sine[1000]; // One complete precalculated sine wave for oscillator use
void precalculateSine() {
for (int i = 0; i < 1000; i++) {
sine[i] = (int16_t)(2000.0 * sin(i * 2 * 3.14159 / 1000.0)); // Only make amplitude ~1/16 max so we can sum up w/o clipping
}
}
// Simple variable frequency resampling oscillator state
typedef struct {
uint32_t key; // Identifier of which key started this tone
uint32_t pos; // Current sine offset
uint32_t step; // Delta in fixed point 16p16 format
} Oscillator;
Oscillator osc[6]; // Look, ma! 6-note polyphony!
// Quiet down, now!
void silenceOscillators() {
noInterrupts();
for (int i = 0; i < 6; i++) {
osc[i].pos = 0;
osc[i].step = 0;
}
interrupts();
}
// PWM callback, generates sum of online oscillators
void fill() {
int num_samples = pwm.availableForWrite() / 2;
int16_t buff[32 * 2];
while (num_samples > 63) {
// Run in 32 LR sample chunks for speed, less loop overhead
for (int o = 0; o < 32; o++) {
int32_t sum = 0;
for (int i = 0; i < 6; i++) {
if (osc[i].step) {
sum += sine[osc[i].pos >> 16];
osc[i].pos += osc[i].step;
while (osc[i].pos >= 1000 << 16) {
osc[i].pos -= 1000 << 16;
}
}
}
if (sum > 32767) {
sum = 32767;
} else if (sum < -32767) {
sum = -32767;
}
buff[o * 2] = (int16_t) sum;
buff[o * 2 + 1] = (int16_t) sum;
}
pwm.write((const uint8_t *)buff, sizeof(buff));
num_samples -= 64;
}
}
// Mouse callbacks. Could keep track of global mouse position, update a cursor, etc.
void mm(void *cbdata, int dx, int dy, int dw) {
(void) cbdata;
Serial.printf("Mouse: X:%d Y:%d Wheel:%d\n", dx, dy, dw);
}
// Buttons are sent separately from movement
void mb(void *cbdata, int butt, bool down) {
(void) cbdata;
Serial.printf("Mouse: Button %d %s\n", butt, down ? "DOWN" : "UP");
}
// Convert a hertz floating point into a step fixed point 16p16
inline uint32_t stepForHz(float hz) {
const float stepHz = 1000.0 / 44100.0;
const float step = hz * stepHz;
return (uint32_t)(step * 65536.0);
}
uint32_t keyStepMap[128]; // The frequency of any raw HID key
void setupKeyStepMap() {
for (int i = 0; i < 128; i++) {
keyStepMap[i] = 0;
}
// Implements the "standard" PC keyboard to piano setup
// https://ux.stackexchange.com/questions/46669/mapping-piano-keys-to-computer-keyboard
keyStepMap[KeyboardLayout_en_US['a']] = stepForHz(261.6256);
keyStepMap[KeyboardLayout_en_US['w']] = stepForHz(277.1826);
keyStepMap[KeyboardLayout_en_US['s']] = stepForHz(293.6648);
keyStepMap[KeyboardLayout_en_US['e']] = stepForHz(311.1270);
keyStepMap[KeyboardLayout_en_US['d']] = stepForHz(329.6276);
keyStepMap[KeyboardLayout_en_US['f']] = stepForHz(349.2282);
keyStepMap[KeyboardLayout_en_US['t']] = stepForHz(369.9944);
keyStepMap[KeyboardLayout_en_US['g']] = stepForHz(391.9954);
keyStepMap[KeyboardLayout_en_US['y']] = stepForHz(415.3047);
keyStepMap[KeyboardLayout_en_US['h']] = stepForHz(440.0000);
keyStepMap[KeyboardLayout_en_US['u']] = stepForHz(466.1638);
keyStepMap[KeyboardLayout_en_US['j']] = stepForHz(493.8833);
keyStepMap[KeyboardLayout_en_US['k']] = stepForHz(523.2511);
keyStepMap[KeyboardLayout_en_US['o']] = stepForHz(554.3653);
keyStepMap[KeyboardLayout_en_US['l']] = stepForHz(587.3295);
keyStepMap[KeyboardLayout_en_US['p']] = stepForHz(622.2540);
keyStepMap[KeyboardLayout_en_US[';']] = stepForHz(659.2551);
keyStepMap[KeyboardLayout_en_US['\'']] = stepForHz(698.4565);
}
// We get make/break for every key which lets us hold notes while a key is depressed
void kb(void *cbdata, int key) {
bool state = (bool)cbdata;
if (state && key < 128) {
// Starting a new note
for (int i = 0; i < 6; i++) {
if (osc[i].step == 0) {
// This one is free
osc[i].key = key;
osc[i].pos = 0;
osc[i].step = keyStepMap[key];
break;
}
}
} else {
for (int i = 0; i < 6; i++) {
if (osc[i].key == (uint32_t)key) {
osc[i].step = 0;
break;
}
}
}
// The HIDKeyStream object converts a key and state into ASCII. HID key IDs do not map 1:1 to ASCII!
// Write the key and make/break state, then read 1 ASCII char back out.
keystream.write((uint8_t)key);
keystream.write((uint8_t)state);
Serial.printf("Keyboard: %02x %s = '%c'\n", key, state ? "DOWN" : "UP", state ? keystream.read() : '-');
}
// Consumer keys are the special media keys on most modern keyboards (mute/etc.)
void ckb(void *cbdata, int key) {
bool state = (bool)cbdata;
Serial.printf("Consumer: %02x %s\n", key, state ? "DOWN" : "UP");
}
// Joystick can get reports of 4 analog axes, 1 d-pad bitfield, and up to 32 buttons
// Axes and hats that aren't reported by the joystick are read as 0
void joy(void *cbdata, int x, int y, int z, int rz, uint8_t hat, uint32_t buttons) {
(void) cbdata;
const char *hats[16] = { "U", "UR", "R", "DR", "D", "DL", "L", "UL", "", "", "", "", "", "", "", "." };
Serial.printf("Joystick: (%4d, %4d) (%4d, %4d), Hat: %-2s, Buttons:", x, y, z, rz, hats[hat & 15]);
for (int i = 0; i < 32; i++) {
Serial.printf(" %c", (buttons & 1 << i) ? '*' : '.');
}
Serial.println();
}
void setup() {
Serial.begin();
delay(3000);
Serial.printf("Starting HID master, put your device in pairing mode now.\n");
// Init the sound generator
precalculateSine();
silenceOscillators();
setupKeyStepMap();
// Setup the HID key to ASCII conversion
keystream.begin();
// Init the PWM audio output
pwm.setStereo(true);
pwm.setBuffers(16, 64);
pwm.onTransmit(fill);
pwm.begin(44100);
// Mouse buttons and movement reported separately
hid.onMouseMove(mm);
hid.onMouseButton(mb);
// We can use the cbData as a flag to see if we're making or breaking a key
hid.onKeyDown(kb, (void *)true);
hid.onKeyUp(kb, (void *)false);
// Consumer keys are the special function ones like "mute" or "home"
hid.onConsumerKeyDown(ckb, (void *)true);
hid.onConsumerKeyUp(ckb, (void *)false);
hid.onJoystick(joy);
hid.begin();
hid.connectAny();
// or hid.connectMouse();
}
void loop() {
if (BOOTSEL) {
while (BOOTSEL) {
delay(1);
}
hid.disconnect();
hid.clearPairing();
Serial.printf("Restarting HID master, put your device in pairing mode now.\n");
hid.connectAny();
}
}
@@ -0,0 +1,222 @@
// KeyboardPiano example - Released to the public domain in 2024 by Earle F. Philhower, III
//
// Demonstrates using the BluetoothHIDMaster class to use a Bluetooth keyboard as a
// piano keyboard on the PicoW
//
// Hook up a phono plug to GP0 and GP1 (and GND of course...the 1st 3 pins on the PCB)
// Connect wired earbuds up and connect over BT from your keyboard and play some music.
#include <BluetoothHIDMaster.h>
#include <PWMAudio.h>
// We need the inverse map, borrow from the Keyboard library
#include <HID_Keyboard.h>
extern const uint8_t KeyboardLayout_en_US[128];
BluetoothHIDMaster hid;
PWMAudio pwm;
HIDKeyStream keystream;
int16_t sine[1000]; // One complete precalculated sine wave for oscillator use
void precalculateSine() {
for (int i = 0; i < 1000; i++) {
sine[i] = (int16_t)(2000.0 * sin(i * 2 * 3.14159 / 1000.0)); // Only make amplitude ~1/16 max so we can sum up w/o clipping
}
}
// Simple variable frequency resampling oscillator state
typedef struct {
uint32_t key; // Identifier of which key started this tone
uint32_t pos; // Current sine offset
uint32_t step; // Delta in fixed point 16p16 format
} Oscillator;
Oscillator osc[6]; // Look, ma! 6-note polyphony!
// Quiet down, now!
void silenceOscillators() {
noInterrupts();
for (int i = 0; i < 6; i++) {
osc[i].pos = 0;
osc[i].step = 0;
}
interrupts();
}
// PWM callback, generates sum of online oscillators
void fill() {
int num_samples = pwm.availableForWrite() / 2;
int16_t buff[32 * 2];
while (num_samples > 63) {
// Run in 32 LR sample chunks for speed, less loop overhead
for (int o = 0; o < 32; o++) {
int32_t sum = 0;
for (int i = 0; i < 6; i++) {
if (osc[i].step) {
sum += sine[osc[i].pos >> 16];
osc[i].pos += osc[i].step;
while (osc[i].pos >= 1000 << 16) {
osc[i].pos -= 1000 << 16;
}
}
}
if (sum > 32767) {
sum = 32767;
} else if (sum < -32767) {
sum = -32767;
}
buff[o * 2] = (int16_t) sum;
buff[o * 2 + 1] = (int16_t) sum;
}
pwm.write((const uint8_t *)buff, sizeof(buff));
num_samples -= 64;
}
}
// Mouse callbacks. Could keep track of global mouse position, update a cursor, etc.
void mm(void *cbdata, int dx, int dy, int dw) {
(void) cbdata;
Serial.printf("Mouse: X:%d Y:%d Wheel:%d\n", dx, dy, dw);
}
// Buttons are sent separately from movement
void mb(void *cbdata, int butt, bool down) {
(void) cbdata;
Serial.printf("Mouse: Button %d %s\n", butt, down ? "DOWN" : "UP");
}
// Convert a hertz floating point into a step fixed point 16p16
inline uint32_t stepForHz(float hz) {
const float stepHz = 1000.0 / 44100.0;
const float step = hz * stepHz;
return (uint32_t)(step * 65536.0);
}
uint32_t keyStepMap[128]; // The frequency of any raw HID key
void setupKeyStepMap() {
for (int i = 0; i < 128; i++) {
keyStepMap[i] = 0;
}
// Implements the "standard" PC keyboard to piano setup
// https://ux.stackexchange.com/questions/46669/mapping-piano-keys-to-computer-keyboard
keyStepMap[KeyboardLayout_en_US['a']] = stepForHz(261.6256);
keyStepMap[KeyboardLayout_en_US['w']] = stepForHz(277.1826);
keyStepMap[KeyboardLayout_en_US['s']] = stepForHz(293.6648);
keyStepMap[KeyboardLayout_en_US['e']] = stepForHz(311.1270);
keyStepMap[KeyboardLayout_en_US['d']] = stepForHz(329.6276);
keyStepMap[KeyboardLayout_en_US['f']] = stepForHz(349.2282);
keyStepMap[KeyboardLayout_en_US['t']] = stepForHz(369.9944);
keyStepMap[KeyboardLayout_en_US['g']] = stepForHz(391.9954);
keyStepMap[KeyboardLayout_en_US['y']] = stepForHz(415.3047);
keyStepMap[KeyboardLayout_en_US['h']] = stepForHz(440.0000);
keyStepMap[KeyboardLayout_en_US['u']] = stepForHz(466.1638);
keyStepMap[KeyboardLayout_en_US['j']] = stepForHz(493.8833);
keyStepMap[KeyboardLayout_en_US['k']] = stepForHz(523.2511);
keyStepMap[KeyboardLayout_en_US['o']] = stepForHz(554.3653);
keyStepMap[KeyboardLayout_en_US['l']] = stepForHz(587.3295);
keyStepMap[KeyboardLayout_en_US['p']] = stepForHz(622.2540);
keyStepMap[KeyboardLayout_en_US[';']] = stepForHz(659.2551);
keyStepMap[KeyboardLayout_en_US['\'']] = stepForHz(698.4565);
}
// We get make/break for every key which lets us hold notes while a key is depressed
void kb(void *cbdata, int key) {
bool state = (bool)cbdata;
if (state && key < 128) {
// Starting a new note
for (int i = 0; i < 6; i++) {
if (osc[i].step == 0) {
// This one is free
osc[i].key = key;
osc[i].pos = 0;
osc[i].step = keyStepMap[key];
break;
}
}
} else {
for (int i = 0; i < 6; i++) {
if (osc[i].key == (uint32_t)key) {
osc[i].step = 0;
break;
}
}
}
// The HIDKeyStream object converts a key and state into ASCII. HID key IDs do not map 1:1 to ASCII!
// Write the key and make/break state, then read 1 ASCII char back out.
keystream.write((uint8_t)key);
keystream.write((uint8_t)state);
Serial.printf("Keyboard: %02x %s = '%c'\n", key, state ? "DOWN" : "UP", state ? keystream.read() : '-');
}
// Consumer keys are the special media keys on most modern keyboards (mute/etc.)
void ckb(void *cbdata, int key) {
bool state = (bool)cbdata;
Serial.printf("Consumer: %02x %s\n", key, state ? "DOWN" : "UP");
}
// Joystick can get reports of 4 analog axes, 1 d-pad bitfield, and up to 32 buttons
// Axes and hats that aren't reported by the joystick are read as 0
void joy(void *cbdata, int x, int y, int z, int rz, uint8_t hat, uint32_t buttons) {
(void) cbdata;
const char *hats[16] = { "U", "UR", "R", "DR", "D", "DL", "L", "UL", "", "", "", "", "", "", "", "." };
Serial.printf("Joystick: (%4d, %4d) (%4d, %4d), Hat: %-2s, Buttons:", x, y, z, rz, hats[hat & 15]);
for (int i = 0; i < 32; i++) {
Serial.printf(" %c", (buttons & 1 << i) ? '*' : '.');
}
Serial.println();
}
void setup() {
Serial.begin();
delay(3000);
Serial.printf("Starting HID master, put your device in pairing mode now.\n");
// Init the sound generator
precalculateSine();
silenceOscillators();
setupKeyStepMap();
// Setup the HID key to ASCII conversion
keystream.begin();
// Init the PWM audio output
pwm.setStereo(true);
pwm.setBuffers(16, 64);
pwm.onTransmit(fill);
pwm.begin(44100);
// Mouse buttons and movement reported separately
hid.onMouseMove(mm);
hid.onMouseButton(mb);
// We can use the cbData as a flag to see if we're making or breaking a key
hid.onKeyDown(kb, (void *)true);
hid.onKeyUp(kb, (void *)false);
// Consumer keys are the special function ones like "mute" or "home"
hid.onConsumerKeyDown(ckb, (void *)true);
hid.onConsumerKeyUp(ckb, (void *)false);
hid.onJoystick(joy);
hid.begin(true);
hid.connectBLE();
}
void loop() {
if (BOOTSEL) {
while (BOOTSEL) {
delay(1);
}
hid.disconnect();
hid.clearPairing();
Serial.printf("Restarting HID master, put your device in pairing mode now.\n");
hid.connectBLE();
}
}
+45
View File
@@ -0,0 +1,45 @@
#######################################
# Syntax Coloring Map
#######################################
#######################################
# Datatypes (KEYWORD1)
#######################################
BluetoothHIDMaster KEYWORD1
HIDKeyStream KEYWORD1
#######################################
# Methods and Functions (KEYWORD2)
#######################################
begin KEYWORD2
end KEYWORD2
scan KEYWORD2
scanAsyncDone KEYWORD2
scanAsyncResult KEYWORD2
connectKeyboard KEYWORD2
connectMouse KEYWORD2
connectJoypad KEYWORD2
connectAny KEYWORD2
hidConnected KEYWORD2
onMouseMove KEYWORD2
onMouseButton KEYWORD2
onKeyDown KEYWORD2
onKeyUp KEYWORD2
onConsumerKeyDown KEYWORD2
onConsumerKeyUp KEYWORD2
onJoypad KEYWORD2
# BTDeviceInfo
deviceClass KEYWORD2
address KEYWORD2
addressString KEYWORD2
rssi KEYWORD2
name KEYWORD2
#######################################
# Constants (LITERAL1)
#######################################
@@ -0,0 +1,11 @@
name=BluetoothHIDMaster
version=1.0
author=Earle F. Philhower, III <earlephilhower@yahoo.com>
maintainer=Earle F. Philhower, III <earlephilhower@yahoo.com>
sentence=Bluetooth Classic and BLE HID (Keyboard/Mouse/Joystick) master mode
paragraph=Bluetooth Classic and BLE HID (Keyboard/Mouse/Joystick) master mode
category=Communication
url=http://github.com/earlephilhower/arduino-pico
architectures=rp2040
dot_a_linkage=true
depends=BluetoothHCI
@@ -0,0 +1,825 @@
/*
Bluetooth HCI packet handler class
Copyright (c) 2024 Earle F. Philhower, III <earlephilhower@yahoo.com>
This library is free software; you can redistribute it and/or
modify it under the terms of the GNU Lesser General Public
License as published by the Free Software Foundation; either
version 2.1 of the License, or (at your option) any later version.
This library is distributed in the hope that it will be useful,
but WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
Lesser General Public License for more details.
You should have received a copy of the GNU Lesser General Public
License along with this library; if not, write to the Free Software
Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA
*/
// Based off of the BlueKitchen HID master demo
/*
Copyright (C) 2023 BlueKitchen GmbH
Redistribution and use in source and binary forms, with or without
modification, are permitted provided that the following conditions
are met:
1. Redistributions of source code must retain the above copyright
notice, this list of conditions and the following disclaimer.
2. Redistributions in binary form must reproduce the above copyright
notice, this list of conditions and the following disclaimer in the
documentation and/or other materials provided with the distribution.
3. Neither the name of the copyright holders nor the names of
contributors may be used to endorse or promote products derived
from this software without specific prior written permission.
4. Any redistribution, use, or modification is done solely for
personal benefit and not for any commercial purpose or for
monetary gain.
THIS SOFTWARE IS PROVIDED BY BLUEKITCHEN GMBH AND CONTRIBUTORS
``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS
FOR A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL BLUEKITCHEN
GMBH OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT,
INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING,
BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS
OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED
AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY,
OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF
THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
SUCH DAMAGE.
Please inquire about commercial licensing options at
contact@bluekitchen-gmbh.com
*/
#include <Arduino.h>
#include "btstack.h"
#include <list>
#include <memory>
#include <BluetoothLock.h>
#include "BluetoothHIDMaster.h"
#define CCALLBACKNAME _BTHIDCB
#include <ctocppcallback.h>
#define PACKETHANDLERCB(class, cbFcn) \
(CCALLBACKNAME<void(uint8_t, uint16_t, uint8_t*, uint16_t), __COUNTER__>::func = std::bind(&class::cbFcn, this, std::placeholders::_1, std::placeholders::_2, std::placeholders::_3, std::placeholders::_4), \
static_cast<btstack_packet_handler_t>(CCALLBACKNAME<void(uint8_t, uint16_t, uint8_t*, uint16_t), __COUNTER__ - 1>::callback))
void BluetoothHIDMaster::begin(bool ble, const char *bleName) {
_ble = ble;
if (!ble) {
// Initialize HID Host
hid_host_init(_hid_descriptor_storage, sizeof(_hid_descriptor_storage));
hid_host_register_packet_handler(PACKETHANDLERCB(BluetoothHIDMaster, hid_packet_handler));
} else {
if (bleName) {
_hci.setBLEName(bleName);
}
_hci.setPairOnMeta(true);
}
// Initialize L2CAP
l2cap_init();
// Initialize LE Security Manager. Needed for cross-transport key derivation
if (ble) {
// register for events from Security Manager
_sm_event_callback_registration.callback = PACKETHANDLERCB(BluetoothHIDMaster, sm_packet_handler);
sm_add_event_handler(&_sm_event_callback_registration);
}
sm_init();
if (ble) {
gatt_client_init();
hids_client_init(_hid_descriptor_storage, sizeof(_hid_descriptor_storage));
} else {
// Allow sniff mode requests by HID device and support role switch
gap_set_default_link_policy_settings(LM_LINK_POLICY_ENABLE_SNIFF_MODE | LM_LINK_POLICY_ENABLE_ROLE_SWITCH);
// try to become master on incoming connections
hci_set_master_slave_policy(HCI_ROLE_MASTER);
}
// enabled EIR
hci_set_inquiry_mode(INQUIRY_MODE_RSSI_AND_EIR);
_hci.install();
_running = true;
_hci.begin();
}
void BluetoothHIDMaster::end() {
BluetoothLock b;
_hci.uninstall();
_running = false;
}
bool BluetoothHIDMaster::running() {
return _hci.running() && _hidConnected;
}
bool BluetoothHIDMaster::hciRunning() {
return _hci.running();
}
void BluetoothHIDMaster::onMouseMove(void (*cb)(void *, int, int, int), void *cbData) {
_mouseMoveCB = cb;
_mouseMoveData = cbData;
}
void BluetoothHIDMaster::onMouseButton(void (*cb)(void *, int, bool), void *cbData) {
_mouseButtonCB = cb;
_mouseButtonData = cbData;
}
void BluetoothHIDMaster::onKeyDown(void (*cb)(void *, int), void *cbData) {
_keyDownCB = cb;
_keyDownData = cbData;
}
void BluetoothHIDMaster::onKeyUp(void (*cb)(void *, int), void *cbData) {
_keyUpCB = cb;
_keyUpData = cbData;
}
void BluetoothHIDMaster::onConsumerKeyDown(void (*cb)(void *, int), void *cbData) {
_consumerKeyDownCB = cb;
_consumerKeyDownData = cbData;
}
void BluetoothHIDMaster::onConsumerKeyUp(void (*cb)(void *, int), void *cbData) {
_consumerKeyUpCB = cb;
_consumerKeyUpData = cbData;
}
void BluetoothHIDMaster::onJoystick(void (*cb)(void *, int, int, int, int, uint8_t, uint32_t), void *cbData) {
_joystickCB = cb;
_joystickData = cbData;
}
std::vector<BTDeviceInfo> BluetoothHIDMaster::scan(uint32_t mask, int scanTimeSec, bool async) {
return _hci.scan(mask, scanTimeSec, async);
}
bool BluetoothHIDMaster::scanAsyncDone() {
return _hci.scanAsyncDone();
}
std::vector<BTDeviceInfo> BluetoothHIDMaster::scanAsyncResult() {
return _hci.scanAsyncResult();
}
bool BluetoothHIDMaster::connected() {
return _hidConnected && _hid_host_descriptor_available;
}
bool BluetoothHIDMaster::connect(const uint8_t *addr) {
if (!_running || _ble) {
return false;
}
while (!_hci.running()) {
delay(10);
}
uint8_t a[6];
memcpy(a, addr, sizeof(a));
return ERROR_CODE_SUCCESS == hid_host_connect(a, HID_PROTOCOL_MODE_REPORT, &_hid_host_cid);
}
bool BluetoothHIDMaster::connectCOD(uint32_t cod) {
if (!_running || _ble) {
return false;
}
while (!_hci.running()) {
delay(10);
}
uint8_t a[6];
clearPairing();
auto l = scan(cod);
for (auto e : l) {
DEBUGV("Scan connecting %s at %s ... ", e.name(), e.addressString());
memcpy(a, e.address(), sizeof(a));
if (ERROR_CODE_SUCCESS == hid_host_connect(a, HID_PROTOCOL_MODE_REPORT, &_hid_host_cid)) {
DEBUGV("Connection established\n");
return true;
}
DEBUGV("Failed\n");
}
return false;
}
bool BluetoothHIDMaster::connectBLE(const uint8_t *addr, int addrType) {
if (!_running || !_ble) {
return false;
}
while (!_hci.running()) {
delay(10);
}
uint8_t a[6];
memcpy(a, addr, sizeof(a));
return ERROR_CODE_SUCCESS == gap_connect(a, (bd_addr_type_t)addrType);
}
bool BluetoothHIDMaster::connectBLE() {
if (!_running || !_ble) {
return false;
}
while (!_hci.running()) {
delay(10);
}
clearPairing();
auto l = _hci.scanBLE(0x1812 /* HID */);
for (auto e : l) {
DEBUGV("Scan connecting %s at %s ... ", e.name(), e.addressString());
if (connectBLE(e.address(), e.addressType())) {
DEBUGV("Connection established\n");
return true;
}
DEBUGV("Failed\n");
}
return false;
}
bool BluetoothHIDMaster::connectKeyboard() {
return connectCOD(0x2540);
}
bool BluetoothHIDMaster::connectMouse() {
return connectCOD(0x2580);
}
bool BluetoothHIDMaster::connectJoystick() {
return connectCOD(0x2508);
}
bool BluetoothHIDMaster::connectAny() {
return connectCOD(0x2500);
}
bool BluetoothHIDMaster::disconnect() {
BluetoothLock b;
if (!_running || !connected()) {
return false;
}
if (!_ble && connected()) {
hid_host_disconnect(_hid_host_cid);
} else if (_ble && connected()) {
gap_disconnect(_hci.getHCIConn());
}
_hid_host_descriptor_available = false;
return true;
}
void BluetoothHIDMaster::clearPairing() {
BluetoothLock b;
if (connected()) {
if (_ble) {
gap_disconnect(_hci.getHCIConn());
} else {
hid_host_disconnect(_hid_host_cid);
}
}
gap_delete_all_link_keys();
_hid_host_descriptor_available = false;
}
void BluetoothHIDMaster::hid_host_handle_interrupt_report(btstack_hid_parser_t * parser) {
uint8_t new_keys[NUM_KEYS];
uint8_t tosend[NUM_KEYS];
int tosendcnt = 0;
memset(new_keys, 0, sizeof(new_keys));
int new_keys_count = 0;
uint16_t new_consumer_key = 0;
uint32_t newMB = 0;
bool noMB = false;
bool updCons = false;
bool updKey = false;
bool updMB = false;
bool updJoy = false;
bool updMouse = false;
int dx = 0;
int dy = 0;
int dz = 0;
int rz = 0;
int dwheel = 0;
uint8_t hat = 0;
while (btstack_hid_parser_has_more(parser)) {
uint16_t usage_page;
uint16_t usage;
int32_t value;
btstack_hid_parser_get_field(parser, &usage_page, &usage, &value);
if (usage_page == 0x01) {
updMouse = true;
updJoy = true;
if (usage == 0x30) {
dx = value;
} else if (usage == 0x31) {
dy = value;
} else if (usage == 0x32) {
dz = value;
} else if (usage == 0x35) {
rz = value;
} else if (usage == 0x38) {
dwheel = value;
} else if (usage == 0x39) {
hat = value & 0xff;
}
} else if (usage_page == 0x09) {
updMB = true;
if (usage == 0) {
noMB = true;
}
if (!noMB && value && (usage > 0)) {
newMB |= 1 << (usage - 1);
}
} else if (usage_page == 0x0c) {
updCons = true;
if (value) {
new_consumer_key = usage;
// check if usage was used last time (and ignore in that case)
if (usage == last_consumer_key) {
usage = 0;
}
if (usage == 0) {
continue;
}
if (last_consumer_key) {
if (_consumerKeyUpCB) {
_consumerKeyUpCB(_consumerKeyUpData, last_consumer_key);
}
}
if (_consumerKeyDownCB) {
_consumerKeyDownCB(_consumerKeyDownData, usage);
}
} else if (last_consumer_key == usage) {
if (_consumerKeyUpCB) {
_consumerKeyUpCB(_consumerKeyUpData, last_consumer_key);
}
}
} else if (usage_page == 0x07) {
updKey = true;
if (value) {
new_keys[new_keys_count++] = usage;
// check if usage was used last time (and ignore in that case)
int i;
for (i = 0; i < NUM_KEYS; i++) {
if (usage == last_keys[i]) {
usage = 0;
}
}
if (usage == 0) {
continue;
}
tosend[tosendcnt++] = usage;
}
}
}
if (updKey) {
bool found;
for (int i = 0; i < NUM_KEYS; i++) {
found = false;
for (int j = 0; j < NUM_KEYS; j++) {
if (last_keys[i] == new_keys[j]) {
found = true;
break;
}
}
if (!found && last_keys[i] && _keyUpCB) {
_keyUpCB(_keyUpData, last_keys[i]);
}
}
for (int i = 0; _keyDownCB && i < tosendcnt; i++) {
_keyDownCB(_keyDownData, tosend[i]);
}
memcpy(last_keys, new_keys, NUM_KEYS);
}
if (updCons) {
last_consumer_key = new_consumer_key;
}
if (updMB && _mouseButtonCB) {
if (lastMB != newMB) {
for (int i = 0; i < 8; i++) {
int mask = 1 << i;
if ((lastMB & mask) && !(newMB & mask)) {
_mouseButtonCB(_mouseButtonData, i, false);
} else if (!(lastMB & mask) && (newMB & mask)) {
_mouseButtonCB(_mouseButtonData, i, true);
}
}
lastMB = newMB;
}
}
if (updMouse && _mouseMoveCB) {
_mouseMoveCB(_mouseMoveData, dx, dy, dwheel);
}
if (updJoy && _joystickCB) {
_joystickCB(_joystickData, dx, dy, dz, rz, hat, newMB);
}
}
void BluetoothHIDMaster::hid_packet_handler(uint8_t packet_type, uint16_t channel, uint8_t *packet, uint16_t size) {
(void)channel;
(void)size;
if ((packet_type != HCI_EVENT_PACKET) || (hci_event_packet_get_type(packet) != HCI_EVENT_HID_META)) {
return;
}
uint8_t status;
switch (hci_event_hid_meta_get_subevent_code(packet)) {
case HID_SUBEVENT_INCOMING_CONNECTION:
// There is an incoming connection: we can accept it or decline it.
// The hid_host_report_mode in the hid_host_accept_connection function
// allows the application to request a protocol mode.
// For available protocol modes, see hid_protocol_mode_t in btstack_hid.h file.
hid_host_accept_connection(hid_subevent_incoming_connection_get_hid_cid(packet), HID_PROTOCOL_MODE_REPORT);
break;
case HID_SUBEVENT_CONNECTION_OPENED:
// The status field of this event indicates if the control and interrupt
// connections were opened successfully.
status = hid_subevent_connection_opened_get_status(packet);
if (status != ERROR_CODE_SUCCESS) {
DEBUGV("Connection failed, status 0x%02x\n", status);
_hidConnected = false;
_hid_host_cid = 0;
return;
}
_hidConnected = true;
_hid_host_descriptor_available = false;
_hid_host_cid = hid_subevent_connection_opened_get_hid_cid(packet);
DEBUGV("HID Host connected.\n");
break;
case HID_SUBEVENT_DESCRIPTOR_AVAILABLE:
// This event will follows HID_SUBEVENT_CONNECTION_OPENED event.
// For incoming connections, i.e. HID Device initiating the connection,
// the HID_SUBEVENT_DESCRIPTOR_AVAILABLE is delayed, and some HID
// reports may be received via HID_SUBEVENT_REPORT event. It is up to
// the application if these reports should be buffered or ignored until
// the HID descriptor is available.
status = hid_subevent_descriptor_available_get_status(packet);
if (status == ERROR_CODE_SUCCESS) {
_hid_host_descriptor_available = true;
} else {
DEBUGV("Cannot handle input report, HID Descriptor is not available, status 0x%02x\n", status);
}
break;
case HID_SUBEVENT_REPORT:
// Handle input report.
if (_hid_host_descriptor_available) {
uint16_t report_len = hid_subevent_report_get_report_len(packet);
const uint8_t *report = hid_subevent_report_get_report(packet);
// check if HID Input Report
if ((report_len < 1) || (*report != 0xa1)) {
break;
}
report++;
report_len--;;
btstack_hid_parser_t parser;
btstack_hid_parser_init(&parser, hid_descriptor_storage_get_descriptor_data(_hid_host_cid), hid_descriptor_storage_get_descriptor_len(_hid_host_cid), HID_REPORT_TYPE_INPUT, report, report_len);
hid_host_handle_interrupt_report(&parser);
}
break;
case HID_SUBEVENT_SET_PROTOCOL_RESPONSE:
// For incoming connections, the library will set the protocol mode of the
// HID Device as requested in the call to hid_host_accept_connection. The event
// reports the result. For connections initiated by calling hid_host_connect,
// this event will occur only if the established report mode is boot mode.
status = hid_subevent_set_protocol_response_get_handshake_status(packet);
if (status != HID_HANDSHAKE_PARAM_TYPE_SUCCESSFUL) {
DEBUGV("Error set protocol, status 0x%02x\n", status);
break;
}
switch ((hid_protocol_mode_t)hid_subevent_set_protocol_response_get_protocol_mode(packet)) {
case HID_PROTOCOL_MODE_BOOT:
DEBUGV("Protocol mode set: BOOT.\n");
break;
case HID_PROTOCOL_MODE_REPORT:
DEBUGV("Protocol mode set: REPORT.\n");
break;
default:
DEBUGV("Unknown protocol mode.\n");
break;
}
break;
case HID_SUBEVENT_CONNECTION_CLOSED:
// The connection was closed.
_hidConnected = false;
_hid_host_cid = 0;
_hid_host_descriptor_available = false;
DEBUGV("HID Host disconnected.\n");
break;
default:
break;
}
}
void BluetoothHIDMaster::sm_packet_handler(uint8_t packet_type, uint16_t channel, uint8_t *packet, uint16_t size) {
UNUSED(channel);
UNUSED(size);
if (packet_type != HCI_EVENT_PACKET) {
return;
}
switch (hci_event_packet_get_type(packet)) {
case SM_EVENT_JUST_WORKS_REQUEST:
DEBUGV("Just works requested\n");
sm_just_works_confirm(sm_event_just_works_request_get_handle(packet));
break;
case SM_EVENT_NUMERIC_COMPARISON_REQUEST:
DEBUGV("Confirming numeric comparison: %" PRIu32 "\n", sm_event_numeric_comparison_request_get_passkey(packet));
sm_numeric_comparison_confirm(sm_event_passkey_display_number_get_handle(packet));
break;
case SM_EVENT_PASSKEY_DISPLAY_NUMBER:
DEBUGV("Display Passkey: %" PRIu32 "\n", sm_event_passkey_display_number_get_passkey(packet));
break;
case SM_EVENT_PAIRING_COMPLETE:
switch (sm_event_pairing_complete_get_status(packet)) {
case ERROR_CODE_SUCCESS:
DEBUGV("Pairing complete, success\n");
// continue - query primary services
DEBUGV("Search for HID service.\n");
//app_state = W4_HID_CLIENT_CONNECTED;
hids_client_connect(_hci.getHCIConn(), PACKETHANDLERCB(BluetoothHIDMaster, handle_gatt_client_event), HID_PROTOCOL_MODE_REPORT, &_hid_host_cid);
break;
case ERROR_CODE_CONNECTION_TIMEOUT:
DEBUGV("Pairing failed, timeout\n");
break;
case ERROR_CODE_REMOTE_USER_TERMINATED_CONNECTION:
DEBUGV("Pairing failed, disconnected\n");
break;
case ERROR_CODE_AUTHENTICATION_FAILURE:
DEBUGV("Pairing failed, reason = %u\n", sm_event_pairing_complete_get_reason(packet));
break;
default:
break;
}
break;
default:
break;
}
}
void BluetoothHIDMaster::handle_gatt_client_event(uint8_t packet_type, uint16_t channel, uint8_t *packet, uint16_t size) {
UNUSED(packet_type);
UNUSED(channel);
UNUSED(size);
uint8_t status;
int idx;
if (hci_event_packet_get_type(packet) != HCI_EVENT_GATTSERVICE_META) {
return;
}
switch (hci_event_gattservice_meta_get_subevent_code(packet)) {
case GATTSERVICE_SUBEVENT_HID_SERVICE_CONNECTED:
status = gattservice_subevent_hid_service_connected_get_status(packet);
switch (status) {
case ERROR_CODE_SUCCESS:
DEBUGV("HID service client connected, found %d services\n", gattservice_subevent_hid_service_connected_get_num_instances(packet));
_hidConnected = true;
_hid_host_descriptor_available = true;
break;
default:
DEBUGV("HID service client connection failed, status 0x%02x.\n", status);
gap_disconnect(_hci.getHCIConn());
//handle_outgoing_connection_error();
break;
}
break;
case GATTSERVICE_SUBEVENT_HID_REPORT:
idx = gattservice_subevent_hid_report_get_service_index(packet);
btstack_hid_parser_t parser;
btstack_hid_parser_init(&parser, hids_client_descriptor_storage_get_descriptor_data(_hid_host_cid, idx), hids_client_descriptor_storage_get_descriptor_len(_hid_host_cid, idx), HID_REPORT_TYPE_INPUT, gattservice_subevent_hid_report_get_report(packet), gattservice_subevent_hid_report_get_report_len(packet));
hid_host_handle_interrupt_report(&parser);
//hid_handle_input_report(
// gattservice_subevent_hid_report_get_service_index(packet),
// gattservice_subevent_hid_report_get_report(packet),
// gattservice_subevent_hid_report_get_report_len(packet));
break;
default:
break;
}
}
// Simplified US Keyboard with Shift modifier
#define CHAR_ILLEGAL 0xff
#define CHAR_RETURN '\n'
#define CHAR_ESCAPE 27
#define CHAR_TAB '\t'
#define CHAR_BACKSPACE 0x7f
/**
English (US)
*/
static const uint8_t keytable_us_none [] = {
CHAR_ILLEGAL, CHAR_ILLEGAL, CHAR_ILLEGAL, CHAR_ILLEGAL, /* 0-3 */
'a', 'b', 'c', 'd', 'e', 'f', 'g', 'h', 'i', 'j', /* 4-13 */
'k', 'l', 'm', 'n', 'o', 'p', 'q', 'r', 's', 't', /* 14-23 */
'u', 'v', 'w', 'x', 'y', 'z', /* 24-29 */
'1', '2', '3', '4', '5', '6', '7', '8', '9', '0', /* 30-39 */
CHAR_RETURN, CHAR_ESCAPE, CHAR_BACKSPACE, CHAR_TAB, ' ', /* 40-44 */
'-', '=', '[', ']', '\\', CHAR_ILLEGAL, ';', '\'', 0x60, ',', /* 45-54 */
'.', '/', CHAR_ILLEGAL, CHAR_ILLEGAL, CHAR_ILLEGAL, CHAR_ILLEGAL, /* 55-60 */
CHAR_ILLEGAL, CHAR_ILLEGAL, CHAR_ILLEGAL, CHAR_ILLEGAL, /* 61-64 */
CHAR_ILLEGAL, CHAR_ILLEGAL, CHAR_ILLEGAL, CHAR_ILLEGAL, /* 65-68 */
CHAR_ILLEGAL, CHAR_ILLEGAL, CHAR_ILLEGAL, CHAR_ILLEGAL, /* 69-72 */
CHAR_ILLEGAL, CHAR_ILLEGAL, CHAR_ILLEGAL, CHAR_ILLEGAL, /* 73-76 */
CHAR_ILLEGAL, CHAR_ILLEGAL, CHAR_ILLEGAL, CHAR_ILLEGAL, /* 77-80 */
CHAR_ILLEGAL, CHAR_ILLEGAL, CHAR_ILLEGAL, CHAR_ILLEGAL, /* 81-84 */
'*', '-', '+', '\n', '1', '2', '3', '4', '5', /* 85-97 */
'6', '7', '8', '9', '0', '.', 0xa7, /* 97-100 */
};
static const uint8_t keytable_us_shift[] = {
CHAR_ILLEGAL, CHAR_ILLEGAL, CHAR_ILLEGAL, CHAR_ILLEGAL, /* 0-3 */
'A', 'B', 'C', 'D', 'E', 'F', 'G', 'H', 'I', 'J', /* 4-13 */
'K', 'L', 'M', 'N', 'O', 'P', 'Q', 'R', 'S', 'T', /* 14-23 */
'U', 'V', 'W', 'X', 'Y', 'Z', /* 24-29 */
'!', '@', '#', '$', '%', '^', '&', '*', '(', ')', /* 30-39 */
CHAR_RETURN, CHAR_ESCAPE, CHAR_BACKSPACE, CHAR_TAB, ' ', /* 40-44 */
'_', '+', '{', '}', '|', CHAR_ILLEGAL, ':', '"', 0x7E, '<', /* 45-54 */
'>', '?', CHAR_ILLEGAL, CHAR_ILLEGAL, CHAR_ILLEGAL, CHAR_ILLEGAL, /* 55-60 */
CHAR_ILLEGAL, CHAR_ILLEGAL, CHAR_ILLEGAL, CHAR_ILLEGAL, /* 61-64 */
CHAR_ILLEGAL, CHAR_ILLEGAL, CHAR_ILLEGAL, CHAR_ILLEGAL, /* 65-68 */
CHAR_ILLEGAL, CHAR_ILLEGAL, CHAR_ILLEGAL, CHAR_ILLEGAL, /* 69-72 */
CHAR_ILLEGAL, CHAR_ILLEGAL, CHAR_ILLEGAL, CHAR_ILLEGAL, /* 73-76 */
CHAR_ILLEGAL, CHAR_ILLEGAL, CHAR_ILLEGAL, CHAR_ILLEGAL, /* 77-80 */
CHAR_ILLEGAL, CHAR_ILLEGAL, CHAR_ILLEGAL, CHAR_ILLEGAL, /* 81-84 */
'*', '-', '+', '\n', '1', '2', '3', '4', '5', /* 85-97 */
'6', '7', '8', '9', '0', '.', 0xb1, /* 97-100 */
};
bool HIDKeyStream::setFIFOSize(size_t size) {
if (!size || _running) {
return false;
}
_fifoSize = size + 1; // Always 1 unused entry
return true;
}
HIDKeyStream::HIDKeyStream() {
}
HIDKeyStream::~HIDKeyStream() {
end();
}
void HIDKeyStream::begin() {
if (_running) {
end();
}
_queue = new uint8_t[_fifoSize];
_writer = 0;
_reader = 0;
_lshift = false;
_rshift = false;
_holding = false;
_running = true;
}
void HIDKeyStream::end() {
if (!_running) {
return;
}
_running = false;
delete[] _queue;
}
int HIDKeyStream::peek() {
if (!_running) {
return -1;
}
if (_writer != _reader) {
return _queue[_reader];
}
return -1;
}
int HIDKeyStream::read() {
if (!_running) {
return -1;
}
if (_writer != _reader) {
auto ret = _queue[_reader];
asm volatile("" ::: "memory"); // Ensure the value is read before advancing
auto next_reader = (_reader + 1) % _fifoSize;
asm volatile("" ::: "memory"); // Ensure the reader value is only written once, correctly
_reader = next_reader;
return ret;
}
return -1;
}
int HIDKeyStream::available() {
if (!_running) {
return 0;
}
return (_fifoSize + _writer - _reader) % _fifoSize;
}
int HIDKeyStream::availableForWrite() {
return 2 * _fifoSize - available() - 1; // Every 2 write = 1 read buffer insertion
}
void HIDKeyStream::flush() {
// We always send blocking
}
size_t HIDKeyStream::write(uint8_t c) {
if (!availableForWrite()) {
return 0;
}
if (_holding) {
_holding = false;
bool state = (bool)c;
if (_heldKey == 0xe1) {
_lshift = state;
return 1;
} else if (_heldKey == 0xe6) {
_rshift = state;
return 1;
} else if (state) {
auto ascii = (_lshift || _rshift) ? keytable_us_shift[_heldKey] : keytable_us_none[_heldKey];
if (ascii != CHAR_ILLEGAL) {
auto next_writer = _writer + 1;
if (next_writer == _fifoSize) {
next_writer = 0;
}
if (next_writer != _reader) {
_queue[_writer] = ascii;
asm volatile("" ::: "memory"); // Ensure the queue is written before the written count advances
_writer = next_writer;
}
}
return 1;
} else {
return 1;
}
} else {
if ((c < sizeof(keytable_us_shift)) || (c == 0xe1) || (c == 0xe6)) {
_holding = true;
_heldKey = c;
}
return 1;
}
}
size_t HIDKeyStream::write(const uint8_t *p, size_t len) {
if (!_running || !len) {
return 0;
}
size_t cnt = 0;
for (size_t i = 0; i < len; i++) {
if (!write(p[len])) {
return cnt;
}
cnt++;
}
return cnt;
}
HIDKeyStream::operator bool() {
return _running;
}
@@ -0,0 +1,145 @@
/*
Bluetooth HID Master class, can connect to keyboards, mice, and joysticks
Works with Bluetooth Classic and BLE devices
Copyright (c) 2024 Earle F. Philhower, III <earlephilhower@yahoo.com>
This library is free software; you can redistribute it and/or
modify it under the terms of the GNU Lesser General Public
License as published by the Free Software Foundation; either
version 2.1 of the License, or (at your option) any later version.
This library is distributed in the hope that it will be useful,
but WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
Lesser General Public License for more details.
You should have received a copy of the GNU Lesser General Public
License along with this library; if not, write to the Free Software
Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA
*/
#pragma once
#include <_needsbt.h>
#include <Arduino.h>
#include <list>
#include <memory>
#include <BluetoothHCI.h>
#include <btstack.h>
// Write raw key up/down events, read ASCII chars out
class HIDKeyStream : public Stream {
public:
HIDKeyStream();
~HIDKeyStream();
bool setFIFOSize(size_t size);
void begin();
void end();
virtual int peek() override;
virtual int read() override;
virtual int available() override;
virtual int availableForWrite() override;
virtual void flush() override;
virtual size_t write(uint8_t c) override;
virtual size_t write(const uint8_t *p, size_t len) override;
using Print::write;
operator bool();
private:
bool _lshift = false;
bool _rshift = false;
bool _running = false;
bool _holding = false;
uint8_t _heldKey;
// Lockless, IRQ-handled circular queue
uint32_t _writer;
uint32_t _reader;
size_t _fifoSize = 32;
uint8_t *_queue;
};
class BluetoothHIDMaster {
public:
void begin(const char *bleName) {
begin(true, bleName);
}
void begin(bool ble = false, const char *bleName = nullptr);
bool connected();
void end();
bool hciRunning();
bool running();
static const uint32_t keyboard_cod = 0x2540;
static const uint32_t mouse_cod = 0x2540;
static const uint32_t joystick_cod = 0x2508;
static const uint32_t any_cod = 0;
std::vector<BTDeviceInfo> scan(uint32_t mask, int scanTimeSec = 5, bool async = false);
bool scanAsyncDone();
std::vector<BTDeviceInfo> scanAsyncResult();
bool connect(const uint8_t *addr);
bool connectKeyboard();
bool connectMouse();
bool connectJoystick();
bool connectAny();
bool connectBLE(const uint8_t *addr, int addrType);
bool connectBLE();
bool disconnect();
void clearPairing();
void onMouseMove(void (*)(void *, int, int, int), void *cbData = nullptr);
void onMouseButton(void (*)(void *, int, bool), void *cbData = nullptr);
void onKeyDown(void (*)(void *, int), void *cbData = nullptr);
void onKeyUp(void (*)(void *, int), void *cbData = nullptr);
void onConsumerKeyDown(void (*)(void *, int), void *cbData = nullptr);
void onConsumerKeyUp(void (*)(void *, int), void *cbData = nullptr);
void onJoystick(void (*)(void *, int, int, int, int, uint8_t, uint32_t), void *cbData = nullptr);
private:
bool _ble = false;
bool connectCOD(uint32_t cod);
BluetoothHCI _hci;
void hid_packet_handler(uint8_t packet_type, uint16_t channel, uint8_t *packet, uint16_t size);
uint8_t lastMB = 0;
enum { NUM_KEYS = 6 };
uint8_t last_keys[NUM_KEYS] = { 0 };
uint16_t last_consumer_key = 0;
void hid_host_handle_interrupt_report(btstack_hid_parser_t * parser);
bool _running = false;
volatile bool _hidConnected = false;
uint16_t _hid_host_cid = 0;
bool _hid_host_descriptor_available = false;
uint8_t _hid_descriptor_storage[300];
void (*_mouseMoveCB)(void *, int, int, int) = nullptr;
void *_mouseMoveData;
void (*_mouseButtonCB)(void *, int, bool) = nullptr;
void *_mouseButtonData;
void (*_keyDownCB)(void *, int) = nullptr;
void *_keyDownData;
void (*_keyUpCB)(void *, int) = nullptr;
void *_keyUpData;
void (*_consumerKeyDownCB)(void *, int) = nullptr;
void *_consumerKeyDownData;
void (*_consumerKeyUpCB)(void *, int) = nullptr;
void *_consumerKeyUpData;
void (*_joystickCB)(void *, int, int, int, int, uint8_t, uint32_t) = nullptr;
void *_joystickData;
btstack_packet_callback_registration_t _sm_event_callback_registration;
void sm_packet_handler(uint8_t packet_type, uint16_t channel, uint8_t *packet, uint16_t size);
void handle_gatt_client_event(uint8_t packet_type, uint16_t channel, uint8_t *packet, uint16_t size);
};
@@ -29,7 +29,7 @@ const char *softAP_password = APPSK;
/* hostname for mDNS. Should work at least on windows. Try http://picow.local */
const char *myHostname = "picow";
/* Don't set this wifi credentials. They are configurated at runtime and stored on EEPROM */
/* Don't set this wifi credentials. They are configured at runtime and stored on EEPROM */
char ssid[33] = "";
char password[65] = "";
+24
View File
@@ -0,0 +1,24 @@
#######################################
# Syntax Coloring Map
#######################################
#######################################
# Datatypes (KEYWORD1)
#######################################
FatFS KEYWORD1
#######################################
# Methods and Functions (KEYWORD2)
#######################################
format KEYWORD2
FatFSConfig KEYWORD2
setUseFTL KEYWORD2
setDirEntries KEYWORD2
setFATCopies KEYWORD2
#######################################
# Constants (LITERAL1)
#######################################
+24
View File
@@ -0,0 +1,24 @@
FatFs License
FatFs has being developped as a personal project of the author, ChaN. It is free from the code anyone else wrote at current release. Following code block shows a copy of the FatFs license document that heading the source files.
/*----------------------------------------------------------------------------/
/ FatFs - Generic FAT Filesystem Module Rx.xx /
/-----------------------------------------------------------------------------/
/
/ Copyright (C) 20xx, ChaN, all right reserved.
/
/ FatFs module is an open source software. Redistribution and use of FatFs in
/ source and binary forms, with or without modification, are permitted provided
/ that the following condition is met:
/
/ 1. Redistributions of source code must retain the above copyright notice,
/ this condition and the following disclaimer.
/
/ This software is provided by the copyright holder and contributors "AS IS"
/ and any warranties related to this software are DISCLAIMED.
/ The copyright owner or contributors be NOT LIABLE for any damages caused
/ by use of this software.
/----------------------------------------------------------------------------*/
Therefore FatFs license is one of the BSD-style licenses, but there is a significant feature. FatFs is mainly intended for embedded systems. In order to extend the usability for commercial products, the redistributions of FatFs in binary form, such as embedded code, binary library and any forms without source code, do not need to include about FatFs in the documentations. This is equivalent to the 1-clause BSD license. Of course FatFs is compatible with the most of open source software licenses include GNU GPL. When you redistribute the FatFs source code with changes or create a fork, the license can also be changed to GNU GPL, BSD-style license or any open source software license that not conflict with FatFs license.
+1
View File
@@ -0,0 +1 @@
FatFS home at http://elm-chan.org/fsw/ff/
+10
View File
@@ -0,0 +1,10 @@
name=FatFS
version=0.15.0
author=Earle F. Philhower, III <earlephilhower@yahoo.com>
maintainer=Earle F. Philhower, III <earlephilhower@yahoo.com>
sentence=FS filesystem for use on flash using ChaN's FatFS code
paragraph=FS filesystem for use on flash using ChaN's FatFS code
category=Data Storage
url=https://github.com/earlephilhower/arduino-pico
architectures=rp2040
dot_a_linkage=true
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/*
FatFS.cpp - file system wrapper for FatFS
Copyright (c) 2024 Earle F. Philhower, III. All rights reserved.
Based on spiffs_api.cpp which is:
| Copyright (c) 2015 Ivan Grokhotkov. All rights reserved.
This code was influenced by NodeMCU and Sming libraries, and first version of
Arduino wrapper written by Hristo Gochkov.
This library is free software; you can redistribute it and/or
modify it under the terms of the GNU Lesser General Public
License as published by the Free Software Foundation; either
version 2.1 of the License, or (at your option) any later version.
This library is distributed in the hope that it will be useful,
but WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
Lesser General Public License for more details.
You should have received a copy of the GNU Lesser General Public
License along with this library; if not, write to the Free Software
Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA
*/
#include "FatFS.h"
#include <FS.h>
//#define FTL_DEBUG 1
#include "../lib/SPIFTL/FlashInterfaceRP2040.h"
#include "../lib/SPIFTL/SPIFTL.h"
using namespace fs;
#if !defined(NO_GLOBAL_INSTANCES) && !defined(NO_GLOBAL_FATFS)
extern uint8_t _FS_start;
extern uint8_t _FS_end;
FS FatFS = FS(FSImplPtr(new fatfs::FatFSImpl()));
static FlashInterfaceRP2040 *_fi = new FlashInterfaceRP2040(&_FS_start, &_FS_end);
static SPIFTL *_ftl = nullptr;
uint16_t _sectorSize = 512;
#endif
namespace fatfs {
bool FatFSImpl::begin() {
if (_mounted) {
return true;
}
if (_cfg._useFTL) {
if (!_ftl) {
_ftl = new SPIFTL(_fi);
}
_sectorSize = 512;
} else {
_sectorSize = 4096;
if (_ftl) {
delete _ftl;
_ftl = nullptr;
}
}
_mounted = (FR_OK == f_mount(&_fatfs, "", 1));
if (!_mounted && _cfg._autoFormat) {
format();
_mounted = (FR_OK == f_mount(&_fatfs, "", 1));
}
//FsDateTime::setCallback(dateTimeCB); TODO = callback
return _mounted;
}
void FatFSImpl::end() {
if (_mounted) {
f_unmount("");
}
sync();
_mounted = false;
}
// Required to be global because SDFAT doesn't allow a this pointer in it's own time call
time_t (*__fatfs_timeCallback)(void) = nullptr;
FileImplPtr FatFSImpl::open(const char* path, OpenMode openMode, AccessMode accessMode) {
if (!_mounted) {
DEBUGV("FatFSImpl::open() called on unmounted FS\n");
return FileImplPtr();
}
if (!path || !path[0]) {
DEBUGV("FatFSImpl::open() called with invalid filename\n");
return FileImplPtr();
}
BYTE flags = _getFlags(openMode, accessMode);
if ((openMode && OM_CREATE) && strchr(path, '/')) {
// For file creation, silently make subdirs as needed. If any fail,
// it will be caught by the real file open later on
char *pathStr = strdup(path);
if (pathStr) {
// Make dirs up to the final fnamepart
char *ptr = strrchr(pathStr, '/');
if (ptr && ptr != pathStr) { // Don't try to make root dir!
*ptr = 0;
f_mkdir(pathStr);
}
}
free(pathStr);
}
auto sharedFd = std::make_shared<FIL>();
if (FR_OK == f_open(sharedFd.get(), path, flags)) {
return std::make_shared<FatFSFileImpl>(this, sharedFd, path, FA_WRITE & flags ? true : false);
}
sharedFd = nullptr;
DEBUGV("FatFSImpl::openFile: path=`%s` openMode=%d accessMode=%d FAILED", path, openMode, accessMode);
return FileImplPtr();
}
DirImplPtr FatFSImpl::openDir(const char* path) {
if (!_mounted) {
return DirImplPtr();
}
char *pathStr = strdup(path); // Allow edits on our scratch copy
if (!pathStr) {
// OOM
return DirImplPtr();
}
// Get rid of any trailing slashes
while (strlen(pathStr) && (pathStr[strlen(pathStr) - 1] == '/')) {
pathStr[strlen(pathStr) - 1] = 0;
}
// At this point we have a name of "/blah/blah/blah" or "blah" or ""
// If that references a directory, just open it and we're done.
DIR dirFile;
FILINFO fno;
const char *filter = "";
if (!pathStr[0]) {
// openDir("") === openDir("/")
f_opendir(&dirFile, "/");
filter = "";
} else if (FR_OK == f_stat(pathStr, &fno)) {
if (fno.fattrib & AM_DIR) {
// Easy peasy, path specifies an existing dir!
f_opendir(&dirFile, pathStr);
filter = "";
} else {
// This is a file, so open the containing dir
char *ptr = strrchr(pathStr, '/');
if (!ptr) {
// No slashes, open the root dir
f_opendir(&dirFile, "/");
filter = pathStr;
} else {
// We've got slashes, open the dir one up
*ptr = 0; // Remove slash, truncare string
f_opendir(&dirFile, pathStr);
filter = ptr + 1;
}
}
} else {
// Name doesn't exist, so use the parent dir of whatever was sent in
// This is a file, so open the containing dir
char *ptr = strrchr(pathStr, '/');
if (!ptr) {
// No slashes, open the root dir
f_opendir(&dirFile, "/");
filter = pathStr;
} else {
// We've got slashes, open the dir one up
*ptr = 0; // Remove slash, truncare string
f_opendir(&dirFile, pathStr);
filter = ptr + 1;
}
}
// TODO -can this ever happen?
// if (!dirFile) {
// DEBUGV("FatFSImpl::openDir: path=`%s`\n", path);
// return DirImplPtr();
// }
auto sharedDir = std::make_shared<DIR>(dirFile);
auto ret = std::make_shared<FatFSDirImpl>(filter, this, sharedDir, pathStr);
free(pathStr);
return ret;
}
bool FatFSImpl::format() {
if (_mounted) {
return false;
}
BYTE *work = new BYTE[4096]; /* Work area (larger is better for processing time) */
MKFS_PARM opt = { FM_FAT | FM_SFD, _cfg._fatCopies, 1, _sectorSize, _cfg._dirEntries};
auto ret = f_mkfs("", &opt, work, 4096);
delete[] work;
return ret == FR_OK;
}
DSTATUS disk_status(BYTE p) {
(void) p;
return 0;
}
static bool started = false;
void disk_format() {
if (!started && _ftl) {
_ftl->format();
}
}
DSTATUS disk_initialize(BYTE p) {
(void) p;
if (!started) {
if (_ftl) {
_ftl->start();
}
started = true;
}
return 0;
}
DRESULT disk_read(BYTE p, BYTE *buff, LBA_t sect, UINT count) {
(void) p;
for (unsigned int i = 0; i < count; i++) {
if (_ftl) {
_ftl->read(sect + i, buff + i * _sectorSize);
} else {
_fi->read(sect + i, 0, buff, _sectorSize);
}
}
return RES_OK;
}
DRESULT disk_write(BYTE pdrv, const BYTE* buff, LBA_t sector, UINT count) {
(void) pdrv;
for (unsigned int i = 0; i < count; i++) {
if (_ftl) {
_ftl->write(sector + i, buff + i * _sectorSize);
} else {
_fi->eraseBlock(sector + i);
_fi->program(sector + i, 0, buff + i * _sectorSize, _sectorSize);
}
}
return RES_OK;
}
DRESULT disk_ioctl(BYTE pdrv, BYTE cmd, void* buff) {
(void) pdrv;
switch (cmd) {
case CTRL_SYNC:
if (_ftl) {
_ftl->persist();
}
return RES_OK;
case GET_SECTOR_COUNT: {
LBA_t *p = (LBA_t *)buff;
if (_ftl) {
*p = _ftl->lbaCount();
} else {
*p = _fi->size() / 4096;
}
return RES_OK;
}
case GET_SECTOR_SIZE: {
WORD *w = (WORD *)buff;
*w = _sectorSize;
return RES_OK;
}
case GET_BLOCK_SIZE: {
DWORD *dw = (DWORD *)buff;
*dw = _sectorSize;
return RES_OK;
}
case CTRL_TRIM: {
LBA_t *lba = (LBA_t *)buff;
for (unsigned int i = lba[0]; i < lba[1]; i++) {
if (_ftl) {
_ftl->trim(i);
} else {
_fi->eraseBlock(i);
}
}
return RES_OK;
}
default:
return RES_PARERR;
}
}
DWORD get_fattime() {
time_t now;
if (fatfs::__fatfs_timeCallback) {
now = fatfs::__fatfs_timeCallback();
} else {
now = time(nullptr);
}
struct tm *stm = localtime(&now);
if (stm->tm_year < 80) {
// FAT can't report years before 1980
stm->tm_year = 80;
}
return (DWORD)(stm->tm_year - 80) << 25 |
(DWORD)(stm->tm_mon + 1) << 21 |
(DWORD)stm->tm_mday << 16 |
(DWORD)stm->tm_hour << 11 |
(DWORD)stm->tm_min << 5 |
(DWORD)stm->tm_sec >> 1;
}
}
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/*
FatFS.h - File system wrapper for FatFS
Copyright (c) 2024 Earle F. Philhower, III. All rights reserved.
Based on spiffs_api.h, which is:
| Copyright (c) 2015 Ivan Grokhotkov. All rights reserved.
This code was influenced by NodeMCU and Sming libraries, and first version of
Arduino wrapper written by Hristo Gochkov.
This library is free software; you can redistribute it and/or
modify it under the terms of the GNU Lesser General Public
License as published by the Free Software Foundation; either
version 2.1 of the License, or (at your option) any later version.
This library is distributed in the hope that it will be useful,
but WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
Lesser General Public License for more details.
You should have received a copy of the GNU Lesser General Public
License along with this library; if not, write to the Free Software
Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA
*/
#pragma once
#include <limits>
#include <assert.h>
#include "FS.h"
#include "FSImpl.h"
#include "./ff.h"
#include "./diskio.h"
#include <FS.h>
using namespace fs;
namespace fatfs {
class FatFSFileImpl;
class FatFSDirImpl;
class FatFSConfig : public FSConfig {
public:
static constexpr uint32_t FSId = 0x46617446;
FatFSConfig(bool autoFormat = true, bool useFTL = true, int dirEntries = 128, int fatCopies = 1) : FSConfig(FSId, autoFormat), _useFTL(useFTL), _dirEntries(dirEntries), _fatCopies(fatCopies) { }
FatFSConfig setUseFTL(bool val = true) {
_useFTL = val;
return *this;
}
FatFSConfig setDirEntries(int entries) {
_dirEntries = entries;
return *this;
}
FatFSConfig setFATCopies(int copies) {
_fatCopies = copies;
return *this;
}
bool _useFTL;
uint16_t _dirEntries;
uint8_t _fatCopies;
};
class FatFSImpl : public FSImpl {
public:
FatFSImpl() : _mounted(false) {
}
FileImplPtr open(const char* path, OpenMode openMode, AccessMode accessMode) override;
bool exists(const char* path) override {
if (_mounted) {
FILINFO fi;
if (FR_OK == f_stat(path, &fi)) {
return true;
}
}
return false;
}
DirImplPtr openDir(const char* path) override;
bool rename(const char* pathFrom, const char* pathTo) override {
return _mounted ? (FR_OK == f_rename(pathFrom, pathTo)) : false;
}
bool info64(FSInfo64& info) override {
if (!_mounted) {
DEBUGV("FatFS::info: FS not mounted\n");
return false;
}
FATFS *fs = nullptr;
DWORD fre_clust = 0;
f_getfree("", &fre_clust, &fs);
info.maxOpenFiles = 999; // TODO - not valid
info.blockSize = 512 * fs->csize;
info.pageSize = 0; // TODO ?
info.maxPathLength = 255; // TODO ?
info.totalBytes = (uint64_t)(fs->n_fatent - 2) * (uint64_t)fs->csize * 512;
info.usedBytes = info.totalBytes - (uint64_t)fre_clust * fs->csize * 512;
return true;
}
bool info(FSInfo& info) override {
FSInfo64 i;
if (!info64(i)) {
return false;
}
info.blockSize = i.blockSize;
info.pageSize = i.pageSize;
info.maxOpenFiles = i.maxOpenFiles;
info.maxPathLength = i.maxPathLength;
info.totalBytes = (size_t)i.totalBytes;
info.usedBytes = (size_t)i.usedBytes;
return true;
}
bool remove(const char* path) override {
return _mounted ? (FR_OK == f_unlink(path)) : false;
}
bool mkdir(const char* path) override {
return _mounted ? (FR_OK == f_mkdir(path)) : false;
}
bool rmdir(const char* path) override {
return _mounted ? (FR_OK == f_unlink(path)) : false;
}
bool setConfig(const FSConfig &cfg) override {
if ((cfg._type != FatFSConfig::FSId) || _mounted) {
DEBUGV("FatFS::setConfig: invalid config or already mounted\n");
return false;
}
_cfg = *static_cast<const FatFSConfig *>(&cfg);
return true;
}
bool begin() override;
void end() override;
bool format() override;
// Helper function, takes FAT and makes standard time_t
static time_t FatToTimeT(uint16_t d, uint16_t t) {
struct tm tiempo;
memset(&tiempo, 0, sizeof(tiempo));
tiempo.tm_sec = (((int)t) << 1) & 0x3e;
tiempo.tm_min = (((int)t) >> 5) & 0x3f;
tiempo.tm_hour = (((int)t) >> 11) & 0x1f;
tiempo.tm_mday = (int)(d & 0x1f);
tiempo.tm_mon = ((int)(d >> 5) & 0x0f) - 1;
tiempo.tm_year = ((int)(d >> 9) & 0x7f) + 80;
tiempo.tm_isdst = -1;
return mktime(&tiempo);
}
virtual void setTimeCallback(time_t (*cb)(void)) override {
extern time_t (*__fatfs_timeCallback)(void);
__fatfs_timeCallback = cb;
}
void sync() {
disk_ioctl(0, CTRL_SYNC, nullptr);
}
protected:
friend class FatFileImpl;
friend class FatFSDirImpl;
FATFS* getFs() {
return &_fatfs;
}
static int _getFlags(OpenMode openMode, AccessMode accessMode) {
int mode = 0;
if (openMode & OM_CREATE) {
mode |= FA_CREATE_ALWAYS;
}
if (openMode & OM_APPEND) {
mode |= FA_OPEN_APPEND;
}
if (openMode & OM_TRUNCATE) {
mode |= 0; // TODO - no truncate?
}
if ((accessMode & (AM_READ | AM_WRITE)) == (AM_READ | AM_WRITE)) {
mode |= FA_READ | FA_WRITE;
} else if (accessMode & AM_READ) {
mode |= FA_READ;
} else if (accessMode & AM_WRITE) {
mode |= FA_WRITE;
}
return mode;
}
FATFS _fatfs;
FatFSConfig _cfg;
bool _mounted;
};
class FatFSFileImpl : public FileImpl {
public:
FatFSFileImpl(FatFSImpl *fs, std::shared_ptr<FIL> fd, const char *name, bool writable)
: _fs(fs), _fd(fd), _opened(true), _writable(writable) {
_name = std::shared_ptr<char>(new char[strlen(name) + 1], std::default_delete<char[]>());
strcpy(_name.get(), name);
}
~FatFSFileImpl() override {
flush();
close();
}
int availableForWrite() override {
return 1; // TODO - not implemented? _opened ? _fd->availableSpaceForWrite() : 0;
}
size_t write(const uint8_t *buf, size_t size) override {
if (_opened) {
UINT bw;
if (FR_OK == f_write(_fd.get(), buf, size, &bw)) {
return bw;
}
}
return -1; // some kind of error
}
int read(uint8_t* buf, size_t size) override {
if (_opened) {
UINT bw;
if (FR_OK == f_read(_fd.get(), buf, size, &bw)) {
return bw;
}
}
return -1;
}
void flush() override {
if (_opened) {
f_sync(_fd.get());
if (_writable) {
_fs->sync();
}
}
}
bool seek(uint32_t pos, SeekMode mode) override {
if (!_opened) {
return false;
}
switch (mode) {
case SeekSet:
return FR_OK == f_lseek(_fd.get(), pos);
case SeekEnd:
return FR_OK == f_lseek(_fd.get(), f_size(_fd.get()) - pos); // TODO again, odd from POSIX
case SeekCur:
return FR_OK == f_lseek(_fd.get(), f_tell(_fd.get()) + pos);
default:
// Should not be hit, we've got an invalid seek mode
DEBUGV("FatFSFileImpl::seek: invalid seek mode %d\n", mode);
assert((mode == SeekSet) || (mode == SeekEnd) || (mode == SeekCur)); // Will fail and give meaningful assert message
return false;
}
}
size_t position() const override {
return _opened ? f_tell(_fd.get()) : 0;
}
size_t size() const override {
return _opened ? f_size(_fd.get()) : 0;
}
bool truncate(uint32_t size) override {
if (!_opened) {
DEBUGV("FatFSFileImpl::truncate: file not opened\n");
return false;
}
if (FR_OK == f_lseek(_fd.get(), size)) {
return FR_OK == f_truncate(_fd.get());
}
return false;
}
void close() override {
if (_opened) {
f_close(_fd.get());
// f_close does a disk_sync
_opened = false;
}
}
const char* name() const override {
if (!_opened) {
DEBUGV("FatFSFileImpl::name: file not opened\n");
return nullptr;
} else {
const char *p = _name.get();
const char *slash = strrchr(p, '/');
// For names w/o any path elements, return directly
// If there are slashes, return name after the last slash
// (note that strrchr will return the address of the slash,
// so need to increment to ckip it)
return (slash && slash[1]) ? slash + 1 : p;
}
}
const char* fullName() const override {
return _opened ? _name.get() : nullptr;
}
bool isFile() const override {
if (_opened) {
FILINFO fno;
if (FR_OK == f_stat(_name.get(), &fno)) {
return (fno.fattrib & AM_DIR) ? false : true;
}
}
return false;
}
bool isDirectory() const override {
if (_opened) {
FILINFO fno;
if (FR_OK == f_stat(_name.get(), &fno)) {
return (fno.fattrib & AM_DIR) ? true : false;
}
}
return false;
}
time_t getLastWrite() override {
return getCreationTime(); // TODO - FatFS doesn't seem to report both filetimes
}
time_t getCreationTime() override {
time_t ftime = 0;
if (_opened && _fd) {
FILINFO fno;
if (FR_OK == f_stat(_name.get(), &fno)) {
ftime = FatFSImpl::FatToTimeT(fno.fdate, fno.ftime);
}
}
return ftime;
}
protected:
FatFSImpl* _fs;
std::shared_ptr<FIL> _fd;
std::shared_ptr<char> _name;
bool _opened;
bool _writable;
};
class FatFSDirImpl : public DirImpl {
public:
FatFSDirImpl(const String& pattern, FatFSImpl* fs, std::shared_ptr<DIR> dir, const char *dirPath = nullptr)
: _pattern(pattern), _fs(fs), _dir(dir), _valid(false), _dirPath(nullptr) {
if (dirPath) {
_dirPath = std::shared_ptr<char>(new char[strlen(dirPath) + 1], std::default_delete<char[]>());
strcpy(_dirPath.get(), dirPath);
}
f_opendir(dir.get(), dirPath);
}
~FatFSDirImpl() override {
if (_dir) {
f_closedir(_dir.get());
}
}
FileImplPtr openFile(OpenMode openMode, AccessMode accessMode) override {
if (!_valid) {
return FileImplPtr();
}
// MAX_PATH on FAT32 is potentially 260 bytes per most implementations
char tmpName[260];
snprintf(tmpName, sizeof(tmpName), "%s%s%s", _dirPath.get() ? _dirPath.get() : "", _dirPath.get() && _dirPath.get()[0] ? "/" : "", _lfn);
return _fs->open((const char *)tmpName, openMode, accessMode);
}
const char* fileName() override {
if (!_valid) {
DEBUGV("FatFSDirImpl::fileName: directory not valid\n");
return nullptr;
}
return (const char*) _lfn; //_dirent.name;
}
size_t fileSize() override {
if (!_valid) {
return 0;
}
return _size;
}
time_t fileTime() override {
if (!_valid) {
return 0;
}
return _time;
}
time_t fileCreationTime() override {
if (!_valid) {
return 0;
}
return _creation;
}
bool isFile() const override {
return _valid ? _isFile : false;
}
bool isDirectory() const override {
return _valid ? _isDirectory : false;
}
bool next() override {
const int n = _pattern.length();
do {
FILINFO fno;
if (FR_OK == f_readdir(_dir.get(), &fno) && fno.fname[0]) {
_valid = true;
_size = fno.fsize;
_isFile = fno.fattrib & AM_DIR ? false : true;
_isDirectory = !_isFile;
_time = FatFSImpl::FatToTimeT(fno.fdate, fno.ftime);
_creation = _time;
strncpy(_lfn, fno.fname, sizeof(_lfn));
} else {
_valid = false;
}
} while (_valid && strncmp((const char*) _lfn, _pattern.c_str(), n) != 0);
return _valid;
}
bool rewind() override {
_valid = false;
return FR_OK == f_rewinddir(_dir.get());
return false;
}
protected:
String _pattern;
FatFSImpl* _fs;
std::shared_ptr<DIR> _dir;
bool _valid;
char _lfn[64];
time_t _time;
time_t _creation;
std::shared_ptr<char> _dirPath;
uint32_t _size;
bool _isFile;
bool _isDirectory;
};
}; // namespace sdfs
#if !defined(NO_GLOBAL_INSTANCES) && !defined(NO_GLOBAL_FATFS)
extern FS FatFS;
using fatfs::FatFSConfig;
#endif
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/* -----------------------------------------------------------------------/
/ Low level disk interface modlue include file (C)ChaN, 2019 /
/-----------------------------------------------------------------------*/
#ifndef _DISKIO_DEFINED
#define _DISKIO_DEFINED
//#ifdef __cplusplus
//extern "C" {
//#endif
namespace fatfs {
/* Status of Disk Functions */
typedef BYTE DSTATUS;
/* Results of Disk Functions */
typedef enum {
RES_OK = 0, /* 0: Successful */
RES_ERROR, /* 1: R/W Error */
RES_WRPRT, /* 2: Write Protected */
RES_NOTRDY, /* 3: Not Ready */
RES_PARERR /* 4: Invalid Parameter */
} DRESULT;
/*---------------------------------------*/
/* Prototypes for disk control functions */
DSTATUS disk_initialize(BYTE pdrv);
DSTATUS disk_status(BYTE pdrv);
DRESULT disk_read(BYTE pdrv, BYTE* buff, LBA_t sector, UINT count);
DRESULT disk_write(BYTE pdrv, const BYTE* buff, LBA_t sector, UINT count);
DRESULT disk_ioctl(BYTE pdrv, BYTE cmd, void* buff);
/* Disk Status Bits (DSTATUS) */
#define STA_NOINIT 0x01 /* Drive not initialized */
#define STA_NODISK 0x02 /* No medium in the drive */
#define STA_PROTECT 0x04 /* Write protected */
/* Command code for disk_ioctrl fucntion */
/* Generic command (Used by FatFs) */
#define CTRL_SYNC 0 /* Complete pending write process (needed at FF_FS_READONLY == 0) */
#define GET_SECTOR_COUNT 1 /* Get media size (needed at FF_USE_MKFS == 1) */
#define GET_SECTOR_SIZE 2 /* Get sector size (needed at FF_MAX_SS != FF_MIN_SS) */
#define GET_BLOCK_SIZE 3 /* Get erase block size (needed at FF_USE_MKFS == 1) */
#define CTRL_TRIM 4 /* Inform device that the data on the block of sectors is no longer used (needed at FF_USE_TRIM == 1) */
/* Generic command (Not used by FatFs) */
#define CTRL_POWER 5 /* Get/Set power status */
#define CTRL_LOCK 6 /* Lock/Unlock media removal */
#define CTRL_EJECT 7 /* Eject media */
#define CTRL_FORMAT 8 /* Create physical format on the media */
/* MMC/SDC specific ioctl command */
#define MMC_GET_TYPE 10 /* Get card type */
#define MMC_GET_CSD 11 /* Get CSD */
#define MMC_GET_CID 12 /* Get CID */
#define MMC_GET_OCR 13 /* Get OCR */
#define MMC_GET_SDSTAT 14 /* Get SD status */
#define ISDIO_READ 55 /* Read data form SD iSDIO register */
#define ISDIO_WRITE 56 /* Write data to SD iSDIO register */
#define ISDIO_MRITE 57 /* Masked write data to SD iSDIO register */
/* ATA/CF specific ioctl command */
#define ATA_GET_REV 20 /* Get F/W revision */
#define ATA_GET_MODEL 21 /* Get model name */
#define ATA_GET_SN 22 /* Get serial number */
};
//#ifdef __cplusplus
//}
//#endif
#endif
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/* ----------------------------------------------------------------------------/
/ FatFs - Generic FAT Filesystem module R0.15 /
/-----------------------------------------------------------------------------/
/
/ Copyright (C) 2022, ChaN, all right reserved.
/
/ FatFs module is an open source software. Redistribution and use of FatFs in
/ source and binary forms, with or without modification, are permitted provided
/ that the following condition is met:
/ 1. Redistributions of source code must retain the above copyright notice,
/ this condition and the following disclaimer.
/
/ This software is provided by the copyright holder and contributors "AS IS"
/ and any warranties related to this software are DISCLAIMED.
/ The copyright owner or contributors be NOT LIABLE for any damages caused
/ by use of this software.
/
/----------------------------------------------------------------------------*/
#ifndef FF_DEFINED
#define FF_DEFINED 80286 /* Revision ID */
//#ifdef __cplusplus
//extern "C" {
//#endif
#include "ffconf.h" /* FatFs configuration options */
#if FF_DEFINED != FFCONF_DEF
#error Wrong configuration file (ffconf.h).
#endif
/* Integer types used for FatFs API */
#if defined(_WIN32) /* Windows VC++ (for development only) */
#define FF_INTDEF 2
#include <windows.h>
typedef unsigned __int64 QWORD;
#include <float.h>
#define isnan(v) _isnan(v)
#define isinf(v) (!_finite(v))
#elif (defined(__STDC_VERSION__) && __STDC_VERSION__ >= 199901L) || defined(__cplusplus) /* C99 or later */
#define FF_INTDEF 2
#include <stdint.h>
namespace fatfs {
typedef unsigned int UINT; /* int must be 16-bit or 32-bit */
typedef unsigned char BYTE; /* char must be 8-bit */
typedef uint16_t WORD; /* 16-bit unsigned integer */
typedef uint32_t DWORD; /* 32-bit unsigned integer */
typedef uint64_t QWORD; /* 64-bit unsigned integer */
typedef WORD WCHAR; /* UTF-16 character type */
};
#else /* Earlier than C99 */
#define FF_INTDEF 1
typedef unsigned int UINT; /* int must be 16-bit or 32-bit */
typedef unsigned char BYTE; /* char must be 8-bit */
typedef unsigned short WORD; /* 16-bit unsigned integer */
typedef unsigned long DWORD; /* 32-bit unsigned integer */
typedef WORD WCHAR; /* UTF-16 character type */
#endif
namespace fatfs {
/* Type of file size and LBA variables */
#if FF_FS_EXFAT
#if FF_INTDEF != 2
#error exFAT feature wants C99 or later
#endif
typedef QWORD FSIZE_t;
#if FF_LBA64
typedef QWORD LBA_t;
#else
typedef DWORD LBA_t;
#endif
#else
#if FF_LBA64
#error exFAT needs to be enabled when enable 64-bit LBA
#endif
typedef DWORD FSIZE_t;
typedef DWORD LBA_t;
#endif
/* Type of path name strings on FatFs API (TCHAR) */
#if FF_USE_LFN && FF_LFN_UNICODE == 1 /* Unicode in UTF-16 encoding */
typedef WCHAR TCHAR;
#define _T(x) L ## x
#define _TEXT(x) L ## x
#elif FF_USE_LFN && FF_LFN_UNICODE == 2 /* Unicode in UTF-8 encoding */
typedef char TCHAR;
#define _T(x) u8 ## x
#define _TEXT(x) u8 ## x
#elif FF_USE_LFN && FF_LFN_UNICODE == 3 /* Unicode in UTF-32 encoding */
typedef DWORD TCHAR;
#define _T(x) U ## x
#define _TEXT(x) U ## x
#elif FF_USE_LFN && (FF_LFN_UNICODE < 0 || FF_LFN_UNICODE > 3)
#error Wrong FF_LFN_UNICODE setting
#else /* ANSI/OEM code in SBCS/DBCS */
typedef char TCHAR;
#define _T(x) x
#define _TEXT(x) x
#endif
/* Definitions of volume management */
#if FF_MULTI_PARTITION /* Multiple partition configuration */
typedef struct {
BYTE pd; /* Physical drive number */
BYTE pt; /* Partition: 0:Auto detect, 1-4:Forced partition) */
} PARTITION;
extern PARTITION VolToPart[]; /* Volume - Partition mapping table */
#endif
#if FF_STR_VOLUME_ID
#ifndef FF_VOLUME_STRS
extern const char* VolumeStr[FF_VOLUMES]; /* User defied volume ID */
#endif
#endif
/* Filesystem object structure (FATFS) */
typedef struct {
BYTE fs_type; /* Filesystem type (0:not mounted) */
BYTE pdrv; /* Volume hosting physical drive */
BYTE ldrv; /* Logical drive number (used only when FF_FS_REENTRANT) */
BYTE n_fats; /* Number of FATs (1 or 2) */
BYTE wflag; /* win[] status (b0:dirty) */
BYTE fsi_flag; /* FSINFO status (b7:disabled, b0:dirty) */
WORD id; /* Volume mount ID */
WORD n_rootdir; /* Number of root directory entries (FAT12/16) */
WORD csize; /* Cluster size [sectors] */
#if FF_MAX_SS != FF_MIN_SS
WORD ssize; /* Sector size (512, 1024, 2048 or 4096) */
#endif
#if FF_USE_LFN
WCHAR* lfnbuf; /* LFN working buffer */
#endif
#if FF_FS_EXFAT
BYTE* dirbuf; /* Directory entry block scratchpad buffer for exFAT */
#endif
#if !FF_FS_READONLY
DWORD last_clst; /* Last allocated cluster */
DWORD free_clst; /* Number of free clusters */
#endif
#if FF_FS_RPATH
DWORD cdir; /* Current directory start cluster (0:root) */
#if FF_FS_EXFAT
DWORD cdc_scl; /* Containing directory start cluster (invalid when cdir is 0) */
DWORD cdc_size; /* b31-b8:Size of containing directory, b7-b0: Chain status */
DWORD cdc_ofs; /* Offset in the containing directory (invalid when cdir is 0) */
#endif
#endif
DWORD n_fatent; /* Number of FAT entries (number of clusters + 2) */
DWORD fsize; /* Number of sectors per FAT */
LBA_t volbase; /* Volume base sector */
LBA_t fatbase; /* FAT base sector */
LBA_t dirbase; /* Root directory base sector (FAT12/16) or cluster (FAT32/exFAT) */
LBA_t database; /* Data base sector */
#if FF_FS_EXFAT
LBA_t bitbase; /* Allocation bitmap base sector */
#endif
LBA_t winsect; /* Current sector appearing in the win[] */
BYTE win[FF_MAX_SS]; /* Disk access window for Directory, FAT (and file data at tiny cfg) */
} FATFS;
/* Object ID and allocation information (FFOBJID) */
typedef struct {
FATFS* fs; /* Pointer to the hosting volume of this object */
WORD id; /* Hosting volume's mount ID */
BYTE attr; /* Object attribute */
BYTE stat; /* Object chain status (b1-0: =0:not contiguous, =2:contiguous, =3:fragmented in this session, b2:sub-directory stretched) */
DWORD sclust; /* Object data start cluster (0:no cluster or root directory) */
FSIZE_t objsize; /* Object size (valid when sclust != 0) */
#if FF_FS_EXFAT
DWORD n_cont; /* Size of first fragment - 1 (valid when stat == 3) */
DWORD n_frag; /* Size of last fragment needs to be written to FAT (valid when not zero) */
DWORD c_scl; /* Containing directory start cluster (valid when sclust != 0) */
DWORD c_size; /* b31-b8:Size of containing directory, b7-b0: Chain status (valid when c_scl != 0) */
DWORD c_ofs; /* Offset in the containing directory (valid when file object and sclust != 0) */
#endif
#if FF_FS_LOCK
UINT lockid; /* File lock ID origin from 1 (index of file semaphore table Files[]) */
#endif
} FFOBJID;
/* File object structure (FIL) */
typedef struct {
FFOBJID obj; /* Object identifier (must be the 1st member to detect invalid object pointer) */
BYTE flag; /* File status flags */
BYTE err; /* Abort flag (error code) */
FSIZE_t fptr; /* File read/write pointer (Zeroed on file open) */
DWORD clust; /* Current cluster of fpter (invalid when fptr is 0) */
LBA_t sect; /* Sector number appearing in buf[] (0:invalid) */
#if !FF_FS_READONLY
LBA_t dir_sect; /* Sector number containing the directory entry (not used at exFAT) */
BYTE* dir_ptr; /* Pointer to the directory entry in the win[] (not used at exFAT) */
#endif
#if FF_USE_FASTSEEK
DWORD* cltbl; /* Pointer to the cluster link map table (nulled on open, set by application) */
#endif
#if !FF_FS_TINY
BYTE buf[FF_MAX_SS]; /* File private data read/write window */
#endif
} FIL;
/* Directory object structure (DIR) */
typedef struct {
FFOBJID obj; /* Object identifier */
DWORD dptr; /* Current read/write offset */
DWORD clust; /* Current cluster */
LBA_t sect; /* Current sector (0:Read operation has terminated) */
BYTE* dir; /* Pointer to the directory item in the win[] */
BYTE fn[12]; /* SFN (in/out) {body[8],ext[3],status[1]} */
#if FF_USE_LFN
DWORD blk_ofs; /* Offset of current entry block being processed (0xFFFFFFFF:Invalid) */
#endif
#if FF_USE_FIND
const TCHAR* pat; /* Pointer to the name matching pattern */
#endif
} DIR;
/* File information structure (FILINFO) */
typedef struct {
FSIZE_t fsize; /* File size */
WORD fdate; /* Modified date */
WORD ftime; /* Modified time */
BYTE fattrib; /* File attribute */
#if FF_USE_LFN
TCHAR altname[FF_SFN_BUF + 1];/* Alternative file name */
TCHAR fname[FF_LFN_BUF + 1]; /* Primary file name */
#else
TCHAR fname[12 + 1]; /* File name */
#endif
} FILINFO;
/* Format parameter structure (MKFS_PARM) */
typedef struct {
BYTE fmt; /* Format option (FM_FAT, FM_FAT32, FM_EXFAT and FM_SFD) */
BYTE n_fat; /* Number of FATs */
UINT align; /* Data area alignment (sector) */
UINT n_root; /* Number of root directory entries */
DWORD au_size; /* Cluster size (byte) */
} MKFS_PARM;
/* File function return code (FRESULT) */
typedef enum {
FR_OK = 0, /* (0) Succeeded */
FR_DISK_ERR, /* (1) A hard error occurred in the low level disk I/O layer */
FR_INT_ERR, /* (2) Assertion failed */
FR_NOT_READY, /* (3) The physical drive cannot work */
FR_NO_FILE, /* (4) Could not find the file */
FR_NO_PATH, /* (5) Could not find the path */
FR_INVALID_NAME, /* (6) The path name format is invalid */
FR_DENIED, /* (7) Access denied due to prohibited access or directory full */
FR_EXIST, /* (8) Access denied due to prohibited access */
FR_INVALID_OBJECT, /* (9) The file/directory object is invalid */
FR_WRITE_PROTECTED, /* (10) The physical drive is write protected */
FR_INVALID_DRIVE, /* (11) The logical drive number is invalid */
FR_NOT_ENABLED, /* (12) The volume has no work area */
FR_NO_FILESYSTEM, /* (13) There is no valid FAT volume */
FR_MKFS_ABORTED, /* (14) The f_mkfs() aborted due to any problem */
FR_TIMEOUT, /* (15) Could not get a grant to access the volume within defined period */
FR_LOCKED, /* (16) The operation is rejected according to the file sharing policy */
FR_NOT_ENOUGH_CORE, /* (17) LFN working buffer could not be allocated */
FR_TOO_MANY_OPEN_FILES, /* (18) Number of open files > FF_FS_LOCK */
FR_INVALID_PARAMETER /* (19) Given parameter is invalid */
} FRESULT;
/*--------------------------------------------------------------*/
/* FatFs Module Application Interface */
/*--------------------------------------------------------------*/
FRESULT f_open(FIL* fp, const TCHAR* path, BYTE mode); /* Open or create a file */
FRESULT f_close(FIL* fp); /* Close an open file object */
FRESULT f_read(FIL* fp, void* buff, UINT btr, UINT* br); /* Read data from the file */
FRESULT f_write(FIL* fp, const void* buff, UINT btw, UINT* bw); /* Write data to the file */
FRESULT f_lseek(FIL* fp, FSIZE_t ofs); /* Move file pointer of the file object */
FRESULT f_truncate(FIL* fp); /* Truncate the file */
FRESULT f_sync(FIL* fp); /* Flush cached data of the writing file */
FRESULT f_opendir(DIR* dp, const TCHAR* path); /* Open a directory */
FRESULT f_closedir(DIR* dp); /* Close an open directory */
FRESULT f_readdir(DIR* dp, FILINFO* fno); /* Read a directory item */
FRESULT f_findfirst(DIR* dp, FILINFO* fno, const TCHAR* path, const TCHAR* pattern); /* Find first file */
FRESULT f_findnext(DIR* dp, FILINFO* fno); /* Find next file */
FRESULT f_mkdir(const TCHAR* path); /* Create a sub directory */
FRESULT f_unlink(const TCHAR* path); /* Delete an existing file or directory */
FRESULT f_rename(const TCHAR* path_old, const TCHAR* path_new); /* Rename/Move a file or directory */
FRESULT f_stat(const TCHAR* path, FILINFO* fno); /* Get file status */
FRESULT f_chmod(const TCHAR* path, BYTE attr, BYTE mask); /* Change attribute of a file/dir */
FRESULT f_utime(const TCHAR* path, const FILINFO* fno); /* Change timestamp of a file/dir */
FRESULT f_chdir(const TCHAR* path); /* Change current directory */
FRESULT f_chdrive(const TCHAR* path); /* Change current drive */
FRESULT f_getcwd(TCHAR* buff, UINT len); /* Get current directory */
FRESULT f_getfree(const TCHAR* path, DWORD* nclst, FATFS** fatfs); /* Get number of free clusters on the drive */
FRESULT f_getlabel(const TCHAR* path, TCHAR* label, DWORD* vsn); /* Get volume label */
FRESULT f_setlabel(const TCHAR* label); /* Set volume label */
FRESULT f_forward(FIL* fp, UINT(*func)(const BYTE*, UINT), UINT btf, UINT* bf); /* Forward data to the stream */
FRESULT f_expand(FIL* fp, FSIZE_t fsz, BYTE opt); /* Allocate a contiguous block to the file */
FRESULT f_mount(FATFS* fs, const TCHAR* path, BYTE opt); /* Mount/Unmount a logical drive */
FRESULT f_mkfs(const TCHAR* path, const MKFS_PARM* opt, void* work, UINT len); /* Create a FAT volume */
FRESULT f_fdisk(BYTE pdrv, const LBA_t ptbl[], void* work); /* Divide a physical drive into some partitions */
FRESULT f_setcp(WORD cp); /* Set current code page */
int f_putc(TCHAR c, FIL* fp); /* Put a character to the file */
int f_puts(const TCHAR* str, FIL* cp); /* Put a string to the file */
int f_printf(FIL* fp, const TCHAR* str, ...); /* Put a formatted string to the file */
TCHAR* f_gets(TCHAR* buff, int len, FIL* fp); /* Get a string from the file */
/* Some API fucntions are implemented as macro */
#define f_eof(fp) ((int)((fp)->fptr == (fp)->obj.objsize))
#define f_error(fp) ((fp)->err)
#define f_tell(fp) ((fp)->fptr)
#define f_size(fp) ((fp)->obj.objsize)
#define f_rewind(fp) f_lseek((fp), 0)
#define f_rewinddir(dp) f_readdir((dp), 0)
#define f_rmdir(path) f_unlink(path)
#define f_unmount(path) f_mount(0, path, 0)
/*--------------------------------------------------------------*/
/* Additional Functions */
/*--------------------------------------------------------------*/
/* RTC function (provided by user) */
#if !FF_FS_READONLY && !FF_FS_NORTC
DWORD get_fattime(void); /* Get current time */
#endif
/* LFN support functions (defined in ffunicode.c) */
#if FF_USE_LFN >= 1
WCHAR ff_oem2uni(WCHAR oem, WORD cp); /* OEM code to Unicode conversion */
WCHAR ff_uni2oem(DWORD uni, WORD cp); /* Unicode to OEM code conversion */
DWORD ff_wtoupper(DWORD uni); /* Unicode upper-case conversion */
#endif
/* O/S dependent functions (samples available in ffsystem.c) */
#if FF_USE_LFN == 3 /* Dynamic memory allocation */
void* ff_memalloc(UINT msize); /* Allocate memory block */
void ff_memfree(void* mblock); /* Free memory block */
#endif
#if FF_FS_REENTRANT /* Sync functions */
int ff_mutex_create(int vol); /* Create a sync object */
void ff_mutex_delete(int vol); /* Delete a sync object */
int ff_mutex_take(int vol); /* Lock sync object */
void ff_mutex_give(int vol); /* Unlock sync object */
#endif
/*--------------------------------------------------------------*/
/* Flags and Offset Address */
/*--------------------------------------------------------------*/
/* File access mode and open method flags (3rd argument of f_open) */
#define FA_READ 0x01
#define FA_WRITE 0x02
#define FA_OPEN_EXISTING 0x00
#define FA_CREATE_NEW 0x04
#define FA_CREATE_ALWAYS 0x08
#define FA_OPEN_ALWAYS 0x10
#define FA_OPEN_APPEND 0x30
/* Fast seek controls (2nd argument of f_lseek) */
#define CREATE_LINKMAP ((FSIZE_t)0 - 1)
/* Format options (2nd argument of f_mkfs) */
#define FM_FAT 0x01
#define FM_FAT32 0x02
#define FM_EXFAT 0x04
#define FM_ANY 0x07
#define FM_SFD 0x08
/* Filesystem type (FATFS.fs_type) */
#define FS_FAT12 1
#define FS_FAT16 2
#define FS_FAT32 3
#define FS_EXFAT 4
/* File attribute bits for directory entry (FILINFO.fattrib) */
#define AM_RDO 0x01 /* Read only */
#define AM_HID 0x02 /* Hidden */
#define AM_SYS 0x04 /* System */
#define AM_DIR 0x10 /* Directory */
#define AM_ARC 0x20 /* Archive */
};
//#ifdef __cplusplus
//}
//#endif
#endif /* FF_DEFINED */
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/* ---------------------------------------------------------------------------/
/ Configurations of FatFs Module
/---------------------------------------------------------------------------*/
#define FFCONF_DEF 80286 /* Revision ID */
/* ---------------------------------------------------------------------------/
/ Function Configurations
/---------------------------------------------------------------------------*/
#define FF_FS_READONLY 0
/* This option switches read-only configuration. (0:Read/Write or 1:Read-only)
/ Read-only configuration removes writing API functions, f_write(), f_sync(),
/ f_unlink(), f_mkdir(), f_chmod(), f_rename(), f_truncate(), f_getfree()
/ and optional writing functions as well. */
#define FF_FS_MINIMIZE 0
/* This option defines minimization level to remove some basic API functions.
/
/ 0: Basic functions are fully enabled.
/ 1: f_stat(), f_getfree(), f_unlink(), f_mkdir(), f_truncate() and f_rename()
/ are removed.
/ 2: f_opendir(), f_readdir() and f_closedir() are removed in addition to 1.
/ 3: f_lseek() function is removed in addition to 2. */
#define FF_USE_FIND 1
/* This option switches filtered directory read functions, f_findfirst() and
/ f_findnext(). (0:Disable, 1:Enable 2:Enable with matching altname[] too) */
#define FF_USE_MKFS 1
/* This option switches f_mkfs() function. (0:Disable or 1:Enable) */
#define FF_USE_FASTSEEK 1
/* This option switches fast seek function. (0:Disable or 1:Enable) */
#define FF_USE_EXPAND 0
/* This option switches f_expand function. (0:Disable or 1:Enable) */
#define FF_USE_CHMOD 1
/* This option switches attribute manipulation functions, f_chmod() and f_utime().
/ (0:Disable or 1:Enable) Also FF_FS_READONLY needs to be 0 to enable this option. */
#define FF_USE_LABEL 1
/* This option switches volume label functions, f_getlabel() and f_setlabel().
/ (0:Disable or 1:Enable) */
#define FF_USE_FORWARD 0
/* This option switches f_forward() function. (0:Disable or 1:Enable) */
#define FF_USE_STRFUNC 0
#define FF_PRINT_LLI 1
#define FF_PRINT_FLOAT 1
#define FF_STRF_ENCODE 3
/* FF_USE_STRFUNC switches string functions, f_gets(), f_putc(), f_puts() and
/ f_printf().
/
/ 0: Disable. FF_PRINT_LLI, FF_PRINT_FLOAT and FF_STRF_ENCODE have no effect.
/ 1: Enable without LF-CRLF conversion.
/ 2: Enable with LF-CRLF conversion.
/
/ FF_PRINT_LLI = 1 makes f_printf() support long long argument and FF_PRINT_FLOAT = 1/2
/ makes f_printf() support floating point argument. These features want C99 or later.
/ When FF_LFN_UNICODE >= 1 with LFN enabled, string functions convert the character
/ encoding in it. FF_STRF_ENCODE selects assumption of character encoding ON THE FILE
/ to be read/written via those functions.
/
/ 0: ANSI/OEM in current CP
/ 1: Unicode in UTF-16LE
/ 2: Unicode in UTF-16BE
/ 3: Unicode in UTF-8
*/
/* ---------------------------------------------------------------------------/
/ Locale and Namespace Configurations
/---------------------------------------------------------------------------*/
#define FF_CODE_PAGE 437
/* This option specifies the OEM code page to be used on the target system.
/ Incorrect code page setting can cause a file open failure.
/
/ 437 - U.S.
/ 720 - Arabic
/ 737 - Greek
/ 771 - KBL
/ 775 - Baltic
/ 850 - Latin 1
/ 852 - Latin 2
/ 855 - Cyrillic
/ 857 - Turkish
/ 860 - Portuguese
/ 861 - Icelandic
/ 862 - Hebrew
/ 863 - Canadian French
/ 864 - Arabic
/ 865 - Nordic
/ 866 - Russian
/ 869 - Greek 2
/ 932 - Japanese (DBCS)
/ 936 - Simplified Chinese (DBCS)
/ 949 - Korean (DBCS)
/ 950 - Traditional Chinese (DBCS)
/ 0 - Include all code pages above and configured by f_setcp()
*/
#define FF_USE_LFN 1
#define FF_MAX_LFN 64
/* The FF_USE_LFN switches the support for LFN (long file name).
/
/ 0: Disable LFN. FF_MAX_LFN has no effect.
/ 1: Enable LFN with static working buffer on the BSS. Always NOT thread-safe.
/ 2: Enable LFN with dynamic working buffer on the STACK.
/ 3: Enable LFN with dynamic working buffer on the HEAP.
/
/ To enable the LFN, ffunicode.c needs to be added to the project. The LFN function
/ requiers certain internal working buffer occupies (FF_MAX_LFN + 1) * 2 bytes and
/ additional (FF_MAX_LFN + 44) / 15 * 32 bytes when exFAT is enabled.
/ The FF_MAX_LFN defines size of the working buffer in UTF-16 code unit and it can
/ be in range of 12 to 255. It is recommended to be set it 255 to fully support LFN
/ specification.
/ When use stack for the working buffer, take care on stack overflow. When use heap
/ memory for the working buffer, memory management functions, ff_memalloc() and
/ ff_memfree() exemplified in ffsystem.c, need to be added to the project. */
#define FF_LFN_UNICODE 0
/* This option switches the character encoding on the API when LFN is enabled.
/
/ 0: ANSI/OEM in current CP (TCHAR = char)
/ 1: Unicode in UTF-16 (TCHAR = WCHAR)
/ 2: Unicode in UTF-8 (TCHAR = char)
/ 3: Unicode in UTF-32 (TCHAR = DWORD)
/
/ Also behavior of string I/O functions will be affected by this option.
/ When LFN is not enabled, this option has no effect. */
#define FF_LFN_BUF 64
#define FF_SFN_BUF 12
/* This set of options defines size of file name members in the FILINFO structure
/ which is used to read out directory items. These values should be suffcient for
/ the file names to read. The maximum possible length of the read file name depends
/ on character encoding. When LFN is not enabled, these options have no effect. */
#define FF_FS_RPATH 0
/* This option configures support for relative path.
/
/ 0: Disable relative path and remove related functions.
/ 1: Enable relative path. f_chdir() and f_chdrive() are available.
/ 2: f_getcwd() function is available in addition to 1.
*/
/* ---------------------------------------------------------------------------/
/ Drive/Volume Configurations
/---------------------------------------------------------------------------*/
#define FF_VOLUMES 1
/* Number of volumes (logical drives) to be used. (1-10) */
#define FF_STR_VOLUME_ID 0
#define FF_VOLUME_STRS "FLASH"
/* FF_STR_VOLUME_ID switches support for volume ID in arbitrary strings.
/ When FF_STR_VOLUME_ID is set to 1 or 2, arbitrary strings can be used as drive
/ number in the path name. FF_VOLUME_STRS defines the volume ID strings for each
/ logical drives. Number of items must not be less than FF_VOLUMES. Valid
/ characters for the volume ID strings are A-Z, a-z and 0-9, however, they are
/ compared in case-insensitive. If FF_STR_VOLUME_ID >= 1 and FF_VOLUME_STRS is
/ not defined, a user defined volume string table is needed as:
/
/ const char* VolumeStr[FF_VOLUMES] = {"ram","flash","sd","usb",...
*/
#define FF_MULTI_PARTITION 0
/* This option switches support for multiple volumes on the physical drive.
/ By default (0), each logical drive number is bound to the same physical drive
/ number and only an FAT volume found on the physical drive will be mounted.
/ When this function is enabled (1), each logical drive number can be bound to
/ arbitrary physical drive and partition listed in the VolToPart[]. Also f_fdisk()
/ function will be available. */
#define FF_MIN_SS 512
#define FF_MAX_SS 4096
/* This set of options configures the range of sector size to be supported. (512,
/ 1024, 2048 or 4096) Always set both 512 for most systems, generic memory card and
/ harddisk, but a larger value may be required for on-board flash memory and some
/ type of optical media. When FF_MAX_SS is larger than FF_MIN_SS, FatFs is configured
/ for variable sector size mode and disk_ioctl() function needs to implement
/ GET_SECTOR_SIZE command. */
#define FF_LBA64 0
/* This option switches support for 64-bit LBA. (0:Disable or 1:Enable)
/ To enable the 64-bit LBA, also exFAT needs to be enabled. (FF_FS_EXFAT == 1) */
#define FF_MIN_GPT 0x10000000
/* Minimum number of sectors to switch GPT as partitioning format in f_mkfs and
/ f_fdisk function. 0x100000000 max. This option has no effect when FF_LBA64 == 0. */
#define FF_USE_TRIM 1
/* This option switches support for ATA-TRIM. (0:Disable or 1:Enable)
/ To enable Trim function, also CTRL_TRIM command should be implemented to the
/ disk_ioctl() function. */
/* ---------------------------------------------------------------------------/
/ System Configurations
/---------------------------------------------------------------------------*/
#define FF_FS_TINY 0
/* This option switches tiny buffer configuration. (0:Normal or 1:Tiny)
/ At the tiny configuration, size of file object (FIL) is shrinked FF_MAX_SS bytes.
/ Instead of private sector buffer eliminated from the file object, common sector
/ buffer in the filesystem object (FATFS) is used for the file data transfer. */
#define FF_FS_EXFAT 0
/* This option switches support for exFAT filesystem. (0:Disable or 1:Enable)
/ To enable exFAT, also LFN needs to be enabled. (FF_USE_LFN >= 1)
/ Note that enabling exFAT discards ANSI C (C89) compatibility. */
#define FF_FS_NORTC 0
#define FF_NORTC_MON 1
#define FF_NORTC_MDAY 1
#define FF_NORTC_YEAR 2022
/* The option FF_FS_NORTC switches timestamp feature. If the system does not have
/ an RTC or valid timestamp is not needed, set FF_FS_NORTC = 1 to disable the
/ timestamp feature. Every object modified by FatFs will have a fixed timestamp
/ defined by FF_NORTC_MON, FF_NORTC_MDAY and FF_NORTC_YEAR in local time.
/ To enable timestamp function (FF_FS_NORTC = 0), get_fattime() function need to be
/ added to the project to read current time form real-time clock. FF_NORTC_MON,
/ FF_NORTC_MDAY and FF_NORTC_YEAR have no effect.
/ These options have no effect in read-only configuration (FF_FS_READONLY = 1). */
#define FF_FS_NOFSINFO 0
/* If you need to know correct free space on the FAT32 volume, set bit 0 of this
/ option, and f_getfree() function at the first time after volume mount will force
/ a full FAT scan. Bit 1 controls the use of last allocated cluster number.
/
/ bit0=0: Use free cluster count in the FSINFO if available.
/ bit0=1: Do not trust free cluster count in the FSINFO.
/ bit1=0: Use last allocated cluster number in the FSINFO if available.
/ bit1=1: Do not trust last allocated cluster number in the FSINFO.
*/
#define FF_FS_LOCK 0
/* The option FF_FS_LOCK switches file lock function to control duplicated file open
/ and illegal operation to open objects. This option must be 0 when FF_FS_READONLY
/ is 1.
/
/ 0: Disable file lock function. To avoid volume corruption, application program
/ should avoid illegal open, remove and rename to the open objects.
/ >0: Enable file lock function. The value defines how many files/sub-directories
/ can be opened simultaneously under file lock control. Note that the file
/ lock control is independent of re-entrancy. */
#define FF_FS_REENTRANT 0
#define FF_FS_TIMEOUT 1000
/* The option FF_FS_REENTRANT switches the re-entrancy (thread safe) of the FatFs
/ module itself. Note that regardless of this option, file access to different
/ volume is always re-entrant and volume control functions, f_mount(), f_mkfs()
/ and f_fdisk() function, are always not re-entrant. Only file/directory access
/ to the same volume is under control of this featuer.
/
/ 0: Disable re-entrancy. FF_FS_TIMEOUT have no effect.
/ 1: Enable re-entrancy. Also user provided synchronization handlers,
/ ff_mutex_create(), ff_mutex_delete(), ff_mutex_take() and ff_mutex_give()
/ function, must be added to the project. Samples are available in ffsystem.c.
/
/ The FF_FS_TIMEOUT defines timeout period in unit of O/S time tick.
*/
/*--- End of configuration options ---*/
+202
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/*------------------------------------------------------------------------*/
/* A Sample Code of User Provided OS Dependent Functions for FatFs */
/*------------------------------------------------------------------------*/
#include "ff.h"
#if FF_USE_LFN == 3 /* Use dynamic memory allocation */
/*------------------------------------------------------------------------*/
/* Allocate/Free a Memory Block */
/*------------------------------------------------------------------------*/
#include <stdlib.h> /* with POSIX API */
void* ff_memalloc( /* Returns pointer to the allocated memory block (null if not enough core) */
UINT msize /* Number of bytes to allocate */
) {
return malloc((size_t)msize); /* Allocate a new memory block */
}
void ff_memfree(
void* mblock /* Pointer to the memory block to free (no effect if null) */
) {
free(mblock); /* Free the memory block */
}
#endif
#if FF_FS_REENTRANT /* Mutal exclusion */
/*------------------------------------------------------------------------*/
/* Definitions of Mutex */
/*------------------------------------------------------------------------*/
#define OS_TYPE 0 /* 0:Win32, 1:uITRON4.0, 2:uC/OS-II, 3:FreeRTOS, 4:CMSIS-RTOS */
#if OS_TYPE == 0 /* Win32 */
#include <windows.h>
static HANDLE Mutex[FF_VOLUMES + 1]; /* Table of mutex handle */
#elif OS_TYPE == 1 /* uITRON */
#include "itron.h"
#include "kernel.h"
static mtxid Mutex[FF_VOLUMES + 1]; /* Table of mutex ID */
#elif OS_TYPE == 2 /* uc/OS-II */
#include "includes.h"
static OS_EVENT *Mutex[FF_VOLUMES + 1]; /* Table of mutex pinter */
#elif OS_TYPE == 3 /* FreeRTOS */
#include "FreeRTOS.h"
#include "semphr.h"
static SemaphoreHandle_t Mutex[FF_VOLUMES + 1]; /* Table of mutex handle */
#elif OS_TYPE == 4 /* CMSIS-RTOS */
#include "cmsis_os.h"
static osMutexId Mutex[FF_VOLUMES + 1]; /* Table of mutex ID */
#endif
/*------------------------------------------------------------------------*/
/* Create a Mutex */
/*------------------------------------------------------------------------*/
/* This function is called in f_mount function to create a new mutex
/ or semaphore for the volume. When a 0 is returned, the f_mount function
/ fails with FR_INT_ERR.
*/
int ff_mutex_create( /* Returns 1:Function succeeded or 0:Could not create the mutex */
int vol /* Mutex ID: Volume mutex (0 to FF_VOLUMES - 1) or system mutex (FF_VOLUMES) */
) {
#if OS_TYPE == 0 /* Win32 */
Mutex[vol] = CreateMutex(NULL, FALSE, NULL);
return (int)(Mutex[vol] != INVALID_HANDLE_VALUE);
#elif OS_TYPE == 1 /* uITRON */
T_CMTX cmtx = {TA_TPRI, 1};
Mutex[vol] = acre_mtx(&cmtx);
return (int)(Mutex[vol] > 0);
#elif OS_TYPE == 2 /* uC/OS-II */
OS_ERR err;
Mutex[vol] = OSMutexCreate(0, &err);
return (int)(err == OS_NO_ERR);
#elif OS_TYPE == 3 /* FreeRTOS */
Mutex[vol] = xSemaphoreCreateMutex();
return (int)(Mutex[vol] != NULL);
#elif OS_TYPE == 4 /* CMSIS-RTOS */
osMutexDef(cmsis_os_mutex);
Mutex[vol] = osMutexCreate(osMutex(cmsis_os_mutex));
return (int)(Mutex[vol] != NULL);
#endif
}
/*------------------------------------------------------------------------*/
/* Delete a Mutex */
/*------------------------------------------------------------------------*/
/* This function is called in f_mount function to delete a mutex or
/ semaphore of the volume created with ff_mutex_create function.
*/
void ff_mutex_delete( /* Returns 1:Function succeeded or 0:Could not delete due to an error */
int vol /* Mutex ID: Volume mutex (0 to FF_VOLUMES - 1) or system mutex (FF_VOLUMES) */
) {
#if OS_TYPE == 0 /* Win32 */
CloseHandle(Mutex[vol]);
#elif OS_TYPE == 1 /* uITRON */
del_mtx(Mutex[vol]);
#elif OS_TYPE == 2 /* uC/OS-II */
OS_ERR err;
OSMutexDel(Mutex[vol], OS_DEL_ALWAYS, &err);
#elif OS_TYPE == 3 /* FreeRTOS */
vSemaphoreDelete(Mutex[vol]);
#elif OS_TYPE == 4 /* CMSIS-RTOS */
osMutexDelete(Mutex[vol]);
#endif
}
/*------------------------------------------------------------------------*/
/* Request a Grant to Access the Volume */
/*------------------------------------------------------------------------*/
/* This function is called on enter file functions to lock the volume.
/ When a 0 is returned, the file function fails with FR_TIMEOUT.
*/
int ff_mutex_take( /* Returns 1:Succeeded or 0:Timeout */
int vol /* Mutex ID: Volume mutex (0 to FF_VOLUMES - 1) or system mutex (FF_VOLUMES) */
) {
#if OS_TYPE == 0 /* Win32 */
return (int)(WaitForSingleObject(Mutex[vol], FF_FS_TIMEOUT) == WAIT_OBJECT_0);
#elif OS_TYPE == 1 /* uITRON */
return (int)(tloc_mtx(Mutex[vol], FF_FS_TIMEOUT) == E_OK);
#elif OS_TYPE == 2 /* uC/OS-II */
OS_ERR err;
OSMutexPend(Mutex[vol], FF_FS_TIMEOUT, &err));
return (int)(err == OS_NO_ERR);
#elif OS_TYPE == 3 /* FreeRTOS */
return (int)(xSemaphoreTake(Mutex[vol], FF_FS_TIMEOUT) == pdTRUE);
#elif OS_TYPE == 4 /* CMSIS-RTOS */
return (int)(osMutexWait(Mutex[vol], FF_FS_TIMEOUT) == osOK);
#endif
}
/*------------------------------------------------------------------------*/
/* Release a Grant to Access the Volume */
/*------------------------------------------------------------------------*/
/* This function is called on leave file functions to unlock the volume.
*/
void ff_mutex_give(
int vol /* Mutex ID: Volume mutex (0 to FF_VOLUMES - 1) or system mutex (FF_VOLUMES) */
) {
#if OS_TYPE == 0 /* Win32 */
ReleaseMutex(Mutex[vol]);
#elif OS_TYPE == 1 /* uITRON */
unl_mtx(Mutex[vol]);
#elif OS_TYPE == 2 /* uC/OS-II */
OSMutexPost(Mutex[vol]);
#elif OS_TYPE == 3 /* FreeRTOS */
xSemaphoreGive(Mutex[vol]);
#elif OS_TYPE == 4 /* CMSIS-RTOS */
osMutexRelease(Mutex[vol]);
#endif
}
#endif /* FF_FS_REENTRANT */
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// FatFS + FatFSUSB listFiles example
#include <FatFS.h>
#include <FatFSUSB.h>
volatile bool updated = false;
volatile bool driveConnected = false;
volatile bool inPrinting = false;
// Called by FatFSUSB when the drive is released. We note this, restart FatFS, and tell the main loop to rescan.
void unplug(uint32_t i) {
(void) i;
driveConnected = false;
updated = true;
FatFS.begin();
}
// Called by FatFSUSB when the drive is mounted by the PC. Have to stop FatFS, since the drive data can change, note it, and continue.
void plug(uint32_t i) {
(void) i;
driveConnected = true;
FatFS.end();
}
// Called by FatFSUSB to determine if it is safe to let the PC mount the USB drive. If we're accessing the FS in any way, have any Files open, etc. then it's not safe to let the PC mount the drive.
bool mountable(uint32_t i) {
(void) i;
return !inPrinting;
}
void setup() {
Serial.begin(115200);
while (!Serial) {
delay(1);
}
delay(5000);
if (!FatFS.begin()) {
Serial.println("FatFS initialization failed!");
while (1) {
delay(1);
}
}
Serial.println("FatFS initialization done.");
inPrinting = true;
printDirectory("/", 0);
inPrinting = false;
// Set up callbacks
FatFSUSB.onUnplug(unplug);
FatFSUSB.onPlug(plug);
FatFSUSB.driveReady(mountable);
// Start FatFS USB drive mode
FatFSUSB.begin();
Serial.println("FatFSUSB started.");
Serial.println("Connect drive via USB to upload/erase files and re-display");
}
void loop() {
if (updated && !driveConnected) {
inPrinting = true;
Serial.println("\n\nDisconnected, new file listing:");
printDirectory("/", 0);
updated = false;
inPrinting = false;
}
}
void printDirectory(String dirName, int numTabs) {
Dir dir = FatFS.openDir(dirName);
while (true) {
if (!dir.next()) {
// no more files
break;
}
for (uint8_t i = 0; i < numTabs; i++) {
Serial.print('\t');
}
Serial.print(dir.fileName());
if (dir.isDirectory()) {
Serial.println("/");
printDirectory(dirName + "/" + dir.fileName(), numTabs + 1);
} else {
// files have sizes, directories do not
Serial.print("\t\t");
Serial.print(dir.fileSize(), DEC);
time_t cr = dir.fileCreationTime();
struct tm* tmstruct = localtime(&cr);
Serial.printf("\t%d-%02d-%02d %02d:%02d:%02d\n", (tmstruct->tm_year) + 1900, (tmstruct->tm_mon) + 1, tmstruct->tm_mday, tmstruct->tm_hour, tmstruct->tm_min, tmstruct->tm_sec);
}
}
}
+21
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#######################################
# Syntax Coloring Map
#######################################
#######################################
# Datatypes (KEYWORD1)
#######################################
FatFSUSB KEYWORD1
#######################################
# Methods and Functions (KEYWORD2)
#######################################
driveReady KEYWORD1
onPlug KEYWORD1
onUnplug KEYWORD1
#######################################
# Constants (LITERAL1)
#######################################

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