Files
PianoLED-Circle-Edition/firmware/kernel.cpp
T
prosolis 59bd3b4cea Add boot self-test and idle indicator; target the Waveshare RP2350-Plus
The board arriving is a Waveshare RP2350-Plus (4MB, USB-C), which is now the
default BOARD. Its pico-sdk header defines neither PICO_DEFAULT_LED_PIN nor
PICO_DEFAULT_WS2812_PIN - it has no onboard indicator at all - so a bare board
gives no sign of life. The status-LED support added for boards that do have one
(zero, one, tiny, usb_a on GPIO16; eth on GPIO25) is kept and compiles out here.

That makes feedback on the strip itself the useful path, and it turns out to be
the better one anyway:

- Boot self-test sweeps one pixel from index 0 to the far end once at startup.
  It answers in a single glance whether the firmware runs, PIO drives the line,
  the strip is the length LED_COUNT claims, the far end holds voltage, and -
  because you see which end it starts from - whether STRIP_REVERSED is right.
  It runs before USB, so the first test needs nothing but 5V.
- Idle indicator holds one dim pixel lit while no host is connected, separating
  "powered and waiting" from "no power" and from "crashed".

Both are platform-independent, so the Circle build gets them too.

Verified: tests pass across seventeen configurations, now including the
self-test and idle paths on and off. Both platforms build clean with no
warnings from project sources.

Note on the previous commit's verification: a filtered build log hid a real
compile error in the Pico target (sleep_ms takes uint32_t, which is unsigned
long here, and did not match the portable void(*)(unsigned) delay callback).
The build script now gets an explicit success check rather than a grep.

Claude-Session: https://claude.ai/code/session_01TVCB25LBsmeteWvaSMz4Ne
2026-08-27 23:22:56 -07:00

160 lines
3.8 KiB
C++

//
// kernel.cpp
//
// Piano LED Visualizer for Circle.
//
// The Pi is a USB MIDI *gadget*: the PC is the host, and this firmware appears
// on the PC as an ordinary ALSA MIDI output port. Circle has no OTG support, so
// the USB controller is gadget-only in this build and the piano can never be
// plugged in here directly - all MIDI arrives from the PC. See section 2 of
// PIANO-LED-CIRCLE-PLAN.md.
//
#include "kernel.h"
#include <circle/usb/gadget/usbmidigadget.h>
#include <circle/devicenameservice.h>
#include <assert.h>
static const char FromKernel[] = "kernel";
static void SelfTestDelay (unsigned nMilliSeconds)
{
CTimer::Get ()->MsDelay (nMilliSeconds);
}
void CKernel::MIDIPacketHandler (unsigned nCable, u8 *pPacket, unsigned nLength,
unsigned nDevice, void *pParam)
{
CKernel *pThis = static_cast<CKernel *> (pParam);
assert (pThis != 0);
pThis->m_PianoLEDs.OnMIDIPacket (pPacket, nLength);
}
CKernel::CKernel (void)
: m_Timer (&m_Interrupt),
m_Logger (m_Options.GetLogLevel (), &m_Timer),
m_pUSB (new CUSBMIDIGadget (&m_Interrupt)),
m_pMIDIDevice (0),
m_PianoLEDs (m_LEDStrip)
{
m_ActLED.Blink (5); // show we are alive
}
CKernel::~CKernel (void)
{
}
boolean CKernel::Initialize (void)
{
boolean bOK = TRUE;
if (bOK)
{
bOK = m_Serial.Initialize (115200);
}
if (bOK)
{
// Headless appliance: there is no screen, so the log goes to the
// serial port and nowhere else.
bOK = m_Logger.Initialize (&m_Serial);
}
if (bOK)
{
bOK = m_Interrupt.Initialize ();
}
if (bOK)
{
bOK = m_Timer.Initialize ();
}
if (bOK)
{
// Bring the strip up before USB, so the LEDs are known-dark by the
// time the host can start sending us notes.
bOK = m_PianoLEDs.Initialize ();
}
if (bOK)
{
assert (m_pUSB != 0);
bOK = m_pUSB->Initialize ();
}
return bOK;
}
void CKernel::UpdateMIDIDevice (void)
{
assert (m_pUSB != 0);
if (!m_pUSB->UpdatePlugAndPlay ())
{
return;
}
// The gadget deletes its CUSBMIDIDevice when the host suspends the bus
// and builds a new one on the next enumeration, so the pointer we hold
// is only valid until the next status change. Re-fetch it every time.
CUSBMIDIDevice *pMIDIDevice =
(CUSBMIDIDevice *) m_DeviceNameService.GetDevice ("umidi1", FALSE);
if (pMIDIDevice == m_pMIDIDevice)
{
return;
}
m_pMIDIDevice = pMIDIDevice;
if (m_pMIDIDevice != 0)
{
// The gadget builds a new device object on each enumeration, so
// clear anything held at the moment the host went away.
m_PianoLEDs.AllOff ();
m_PianoLEDs.SetHostConnected (true);
m_pMIDIDevice->RegisterPacketHandler (MIDIPacketHandler, this);
m_Logger.Write (FromKernel, LogNotice, "USB MIDI gadget connected");
}
else
{
// Host went away mid-chord. Do not leave keys lit.
m_PianoLEDs.AllOff ();
m_PianoLEDs.SetHostConnected (false);
m_Logger.Write (FromKernel, LogNotice, "USB MIDI gadget disconnected");
}
}
TShutdownMode CKernel::Run (void)
{
m_Logger.Write (FromKernel, LogNotice, "Compile time: " __DATE__ " " __TIME__);
m_Logger.Write (FromKernel, LogNotice,
"%u LEDs, %u keys, notes %u-%u, %s orientation",
(unsigned) LED_COUNT, (unsigned) KEY_COUNT,
(unsigned) MIDI_NOTE_MIN, (unsigned) MIDI_NOTE_MAX,
STRIP_REVERSED ? "reversed" : "normal");
m_Logger.Write (FromKernel, LogNotice,
"Brightness ceiling %u/255, at most %u keys lit at once",
(unsigned) GLOBAL_BRIGHTNESS, (unsigned) MAX_LIT_KEYS);
m_Logger.Write (FromKernel, LogNotice, "Waiting for USB host");
// Runs on power alone, before any host is present.
m_PianoLEDs.RunSelfTest (SelfTestDelay);
for (;;)
{
UpdateMIDIDevice ();
// Rendering blocks for ~5.3ms of SPI traffic, which is why it runs
// here and not in the MIDI packet handler's IRQ context. Update()
// returns immediately when nothing has changed.
m_PianoLEDs.Update ();
}
return ShutdownHalt;
}