Add Phase 1 Circle firmware
Greenfield bare-metal firmware for a Pi Zero that lights a WS2812B strip above an 88-key keybed. The Pi is a USB MIDI gadget; the PC is the host and owns the piano connection and everything else. No network stack, no filesystem, no shell. Circle is a submodule pinned to Step51. Builds kernel.img (RASPPI=1, Zero / Zero W) and kernel7.img (RASPPI=2, Zero 2 / Zero 2 W); both coexist on one card, so either model runs from the same SD. Resolves two open assumptions from the plan against the Circle sources rather than by guessing: - CWS28XXStripe clocks the waveform out over SPI at a fixed 6.4MHz, one SPI byte per LED bit. On device 0 that puts data on MOSI = GPIO10 = physical pin 19. The implied 5.28ms frame time matches the plan's arithmetic. - The USB gadget lifecycle follows sample/29-miniorgan, which already carries a USB_GADGET_MODE path. Three details the hardware forces: - The gadget destroys and recreates its CUSBMIDIDevice across a USB suspend, so the kernel re-fetches it and clears notes held at that moment. Otherwise a chord would stay lit forever when the PC sleeps. - Rendering blocks for ~5.3ms of SPI traffic, so the MIDI packet handler only records state and the main loop draws. - MAX_LIT_KEYS complements the global brightness ceiling. 176 LEDs at full white would draw ~10.5A against a 6A supply; together the two clamps make that unreachable rather than merely unlikely. Every Phase 0 product decision has a named slot in firmware/config.h, all overridable at build time via EXTRADEFINE. tests/run.sh compiles the real pianoleds.cpp against stubbed Circle headers and checks the mapping, note-off paths, range clamping and both power clamps across nine configuration variants. It verifies arithmetic, not wiring, and does not replace bench-testing on real hardware. Claude-Session: https://claude.ai/code/session_01TVCB25LBsmeteWvaSMz4Ne
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#ifndef _stub_ws28xx_h
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#define _stub_ws28xx_h
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#include <circle/types.h>
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#include <vector>
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#include <array>
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enum TWS28XXType { WS2801, WS2812, WS2812B, SK6812 = WS2812B };
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// Captures what the firmware pushed to the strip, so tests can inspect pixels.
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class CWS28XXStripe
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{
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public:
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std::vector<std::array<u8,3>> m_Pixels;
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unsigned m_nUpdates = 0;
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CWS28XXStripe (TWS28XXType, unsigned nLEDCount, unsigned = 4000000, unsigned = 0)
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: m_Pixels (nLEDCount, {0,0,0}) {}
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boolean Initialize (void) { return TRUE; }
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void SetLED (unsigned n, u8 r, u8 g, u8 b) { m_Pixels.at (n) = {r,g,b}; }
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boolean Update (void) { m_nUpdates++; return TRUE; }
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boolean Blackout (void)
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{
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for (auto &p : m_Pixels) p = {0,0,0};
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return TRUE;
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}
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};
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#endif
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