Files
drivers/ws2812/ws2812_cortexm.go
deadprogram f459992f3c ws2812: add support for 160MHz cortex-m processors
This adds hardware timing support for driving WS2812 LEDs on Cortex-M microcontrollers running at 160MHz (such as the STM32U585).

- Updated `go:generate` directive to include 160MHz.
- Generated the corresponding `ws2812_writeByte160` assembly routine.
- Added a switch case in `WriteByte` to handle generic 160MHz processors.

Signed-off-by: deadprogram <ron@hybridgroup.com>
2026-05-17 06:48:52 +01:00

50 lines
1.3 KiB
Go

//go:build cortexm
package ws2812
// This file implements the WS2812 protocol for various Cortex-M
// microcontrollers. It is intended to work with various variants: M0, M0+, M3,
// and M4. Because machine.CPUFrequency() is usually a constant, the value will
// usually be constant-propagated and the switch below will be a direct
// (inlinable function) - thus there is usually no code size penalty over build
// tags per CPU speed.
import (
"machine"
)
// Send a single byte using the WS2812 protocol.
func (d Device) WriteByte(c byte) error {
switch machine.CPUFrequency() {
case 16_000_000: // 16MHz
d.writeByte16(c)
return nil
case 48_000_000: // 48MHz
d.writeByte48(c)
return nil
case 64_000_000: // 64MHz
d.writeByte64(c)
return nil
case 120_000_000: // 120MHz
d.writeByte120(c)
return nil
case 125_000_000: // 125 MHz e.g. rp2040 originally
d.writeByte125(c)
return nil
case 150_000_000: // 150MHz, e.g. rp2350
d.writeByte150(c)
return nil
case 160_000_000: // 160MHz, e.g. stm32u585
d.writeByte160(c)
return nil
case 168_000_000: // 168MHz, e.g. stm32f405
d.writeByte168(c)
return nil
case 200_000_000: // 200MHz, e.g. rp2040 starting with TinyGo v0.37
d.writeByte200(c)
return nil
default:
return errUnknownClockSpeed
}
}