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c710cc8236
* ssd1xxx: break dependency from machine package * fix ssd1289 example * simplify
203 lines
4.4 KiB
Go
203 lines
4.4 KiB
Go
// Package ssd1289 implements a driver for the SSD1289 led matrix controller as packaged on the TFT_320QVT board
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//
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// Datasheet: http://aitendo3.sakura.ne.jp/aitendo_data/product_img/lcd/tft2/M032C1289TP/3.2-SSD1289.pdf
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package ssd1289
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import (
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"image/color"
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"time"
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"tinygo.org/x/drivers/internal/legacy"
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"tinygo.org/x/drivers/internal/pin"
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)
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type Bus interface {
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Set(data uint16)
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}
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type Device struct {
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rs pin.OutputFunc
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wr pin.OutputFunc
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cs pin.OutputFunc
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rst pin.OutputFunc
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bus Bus
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}
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const width = int16(240)
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const height = int16(320)
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func New(rs, wr, cs, rst pin.Output, bus Bus) *Device {
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d := &Device{
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rs: rs.Set,
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wr: wr.Set,
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cs: cs.Set,
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rst: rst.Set,
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bus: bus,
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}
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// configure GPIO pins (only on baremetal targets, for backwards compatibility)
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legacy.ConfigurePinOut(rs)
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legacy.ConfigurePinOut(wr)
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legacy.ConfigurePinOut(cs)
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legacy.ConfigurePinOut(rst)
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d.cs.High()
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d.rst.High()
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d.wr.High()
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return d
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}
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func (d *Device) lcdWriteCom(cmd Command) {
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d.rs.Low()
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d.lcdWriteBusInt(uint16(cmd))
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}
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func (d *Device) lcdWriteDataInt(data uint16) {
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d.rs.High()
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d.lcdWriteBusInt(data)
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}
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func (d *Device) lcdWriteComData(cmd Command, data uint16) {
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d.lcdWriteCom(cmd)
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d.lcdWriteDataInt(data)
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}
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func (d *Device) tx() {
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d.wr.Low()
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d.wr.High()
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}
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func (d *Device) lcdWriteBusInt(data uint16) {
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d.bus.Set(data)
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d.tx()
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}
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func (d *Device) Configure() {
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d.rst.High()
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time.Sleep(time.Millisecond * 5)
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d.rst.Low()
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time.Sleep(time.Millisecond * 15)
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d.rst.High()
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time.Sleep(time.Millisecond * 15)
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d.cs.Low()
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//Power supply setting
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d.lcdWriteComData(POWERCONTROL1, 0xA8A4)
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d.lcdWriteComData(POWERCONTROL2, 0x0000)
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d.lcdWriteComData(POWERCONTROL3, 0x080C)
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d.lcdWriteComData(POWERCONTROL4, 0x2B00)
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d.lcdWriteComData(POWERCONTROL5, 0x00B7)
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//Set R07h at 0021h
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d.lcdWriteComData(DISPLAYCONTROL, 0x021)
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//Set R00h at 0001h
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d.lcdWriteComData(OSCILLATIONSTART, 0x0001)
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//Set R07h at 0021h
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d.lcdWriteComData(DISPLAYCONTROL, 0x023)
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//Set R10h at 0000h, Exit sleep mode
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d.lcdWriteComData(SLEEPMODE, 0x0000)
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//Wait 30ms
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time.Sleep(time.Millisecond * 30)
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//Set R07h at 0033h
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d.lcdWriteComData(DISPLAYCONTROL, 0x033)
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//Entry Mode setting (R11h)
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//DFM 11 --> 65k
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//TRANS 0
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//OEDEF 0
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//WMODE 0 --> Normal data bus
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//DMODE 00 --> Ram
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//TY 01 --> 262k Type A not used as we are in 65k mode.
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//ID 11 --> Horizontal & Vertical increment
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//AM 0 --> Horizontal
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//LG 000 --> No compare register usage
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d.lcdWriteComData(ENTRYMODE, 0x6030)
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//LCD Driver AC Setting
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//I couldn't make sense of the documentation fortunately 0 seems to
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//FLD 0 --> Normal driving
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//ENWS 0 --> POR mode
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//BC 1 --> Less flicker
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//EOR 1 --> Less stripey
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//WSMD 0 --> not used in POR mode
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//NW 0 --> Least flicker
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d.lcdWriteComData(LCDDRIVEACCONTROL, 0x0600)
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//End of documented init
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//RL 0 --> Output shift direction
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//REV 1 --> Reverse colors
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//CAD 0 --> Cs on common
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//BGR 0 --> use RGB color assignment
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//SM 0 --> standard gate scan sequence
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//TB 1 --> Display is mirrored with 0
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//MUX 319 --> Number of lines in display
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d.lcdWriteComData(DRIVEROUTPUTCONTROL, 0x233F)
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d.cs.High()
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}
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func (d *Device) setXY(x1 uint16, y1 uint16, x2 uint16, y2 uint16) {
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d.lcdWriteComData(HORIZONTALRAMADDRESSPOSITION, (x2<<8)+x1)
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d.lcdWriteComData(VERTICALRAMADDRESSSTARTPOSITION, y1)
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d.lcdWriteComData(VERTICALRAMADDRESSENDPOSITION, y2)
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d.lcdWriteComData(SETGDDRAMXADDRESSCOUNTER, x1)
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d.lcdWriteComData(SETGDDRAMYADDRESSCOUNTER, y1)
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d.lcdWriteCom(RAMDATAREADWRITE)
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}
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func (d *Device) ClearDisplay() {
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d.FillDisplay(color.RGBA{0, 0, 0, 255})
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}
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func (d *Device) FillDisplay(c color.RGBA) {
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d.FillRect(0, 0, width, height, c)
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}
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func encodeColor(c color.RGBA) uint16 {
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encoded := (uint16(c.B)&248)<<8 | (uint16(c.G)&252)<<3 | (uint16(c.R)&248)>>3
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return encoded
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}
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func (d *Device) SetPixel(x, y int16, c color.RGBA) {
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encoded := encodeColor(c)
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d.cs.Low()
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d.setXY(uint16(x), uint16(y), uint16(x), uint16(y))
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d.rs.High()
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d.lcdWriteBusInt(encoded)
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d.cs.High()
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}
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func (d *Device) FillRect(x, y, w, h int16, c color.RGBA) {
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encoded := encodeColor(c)
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d.cs.Low()
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d.setXY(uint16(x), uint16(y), uint16(x+(w-1)), uint16(y+(h-1)))
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d.rs.High()
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d.bus.Set(encoded)
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for i := int64(0); i < int64(w)*int64(h); i++ {
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d.tx()
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}
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d.cs.High()
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d.rs.Low()
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}
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func (d *Device) Display() error {
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//Not enough memory to store an entire screen on most microcontrollers
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return nil
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}
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func (d *Device) Size() (x, y int16) {
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return width, height
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}
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