250 lines
7.6 KiB
Go
250 lines
7.6 KiB
Go
package i2c
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import (
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"fmt"
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"time"
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"github.com/hybridgroup/gobot"
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)
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const (
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REG_RED = 0x04
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REG_GREEN = 0x03
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REG_BLUE = 0x02
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LCD_CLEARDISPLAY = 0x01
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LCD_RETURNHOME = 0x02
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LCD_ENTRYMODESET = 0x04
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LCD_DISPLAYCONTROL = 0x08
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LCD_CURSORSHIFT = 0x10
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LCD_FUNCTIONSET = 0x20
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LCD_SETCGRAMADDR = 0x40
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LCD_SETDDRAMADDR = 0x80
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LCD_ENTRYRIGHT = 0x00
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LCD_ENTRYLEFT = 0x02
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LCD_ENTRYSHIFTINCREMENT = 0x01
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LCD_ENTRYSHIFTDECREMENT = 0x00
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LCD_DISPLAYON = 0x04
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LCD_DISPLAYOFF = 0x00
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LCD_CURSORON = 0x02
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LCD_CURSOROFF = 0x00
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LCD_BLINKON = 0x01
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LCD_BLINKOFF = 0x00
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LCD_DISPLAYMOVE = 0x08
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LCD_CURSORMOVE = 0x00
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LCD_MOVERIGHT = 0x04
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LCD_MOVELEFT = 0x00
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LCD_2LINE = 0x08
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LCD_CMD = 0x80
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LCD_DATA = 0x40
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LCD_2NDLINEOFFSET = 0x40
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)
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var _ gobot.Driver = (*JHD1313M1Driver)(nil)
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// CustomLCDChars is a map of CGRAM characters that can be loaded
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// into a LCD screen to display custom characters. Some LCD screens such
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// as the Grove screen (jhd1313m1) isn't loaded with latin 1 characters.
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// It's up to the developer to load the set up to 8 custom characters and
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// update the input text so the character is swapped by a byte reflecting
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// the position of the custom character to use.
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// See SetCustomChar
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var CustomLCDChars = map[string][8]byte{
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"é": [8]byte{130, 132, 142, 145, 159, 144, 142, 128},
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"è": [8]byte{136, 132, 142, 145, 159, 144, 142, 128},
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"ê": [8]byte{132, 138, 142, 145, 159, 144, 142, 128},
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"à": [8]byte{136, 134, 128, 142, 145, 147, 141, 128},
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"â": [8]byte{132, 138, 128, 142, 145, 147, 141, 128},
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"á": [8]byte{2, 4, 14, 1, 15, 17, 15, 0},
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"î": [8]byte{132, 138, 128, 140, 132, 132, 142, 128},
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"í": [8]byte{2, 4, 12, 4, 4, 4, 14, 0},
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"û": [8]byte{132, 138, 128, 145, 145, 147, 141, 128},
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"ù": [8]byte{136, 134, 128, 145, 145, 147, 141, 128},
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"ñ": [8]byte{14, 0, 22, 25, 17, 17, 17, 0},
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"ó": [8]byte{2, 4, 14, 17, 17, 17, 14, 0},
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"heart": [8]byte{0, 10, 31, 31, 31, 14, 4, 0},
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"smiley": [8]byte{0, 0, 10, 0, 0, 17, 14, 0},
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"frowney": [8]byte{0, 0, 10, 0, 0, 0, 14, 17},
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}
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// JHD1313M1Driver is a driver for the Jhd1313m1 LCD display which has two i2c addreses,
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// one belongs to a controller and the other controls solely the backlight.
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// This module was tested with the Seed Grove LCD RGB Backlight v2.0 display which requires 5V to operate.
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// http://www.seeedstudio.com/wiki/Grove_-_LCD_RGB_Backlight
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type JHD1313M1Driver struct {
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name string
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connection I2c
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lcdAddress int
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rgbAddress int
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}
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// NewJHD1313M1Driver creates a new driver with specified i2c interface.
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func NewJHD1313M1Driver(a I2c) *JHD1313M1Driver {
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return &JHD1313M1Driver{
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name: "JHD1313M1",
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connection: a,
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lcdAddress: 0x3E,
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rgbAddress: 0x62,
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}
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}
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// Name returns the name the JHD1313M1 Driver was given when created.
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func (h *JHD1313M1Driver) Name() string { return h.name }
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// SetName sets the name for the JHD1313M1 Driver.
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func (h *JHD1313M1Driver) SetName(n string) { h.name = n }
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// Connection returns the driver connection to the device.
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func (h *JHD1313M1Driver) Connection() gobot.Connection {
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return h.connection.(gobot.Connection)
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}
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// Start starts the backlit and the screen and initializes the states.
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func (h *JHD1313M1Driver) Start() error {
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if err := h.connection.I2cStart(h.lcdAddress); err != nil {
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return err
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}
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if err := h.connection.I2cStart(h.rgbAddress); err != nil {
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return err
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}
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time.Sleep(50000 * time.Microsecond)
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payload := []byte{LCD_CMD, LCD_FUNCTIONSET | LCD_2LINE}
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if err := h.connection.I2cWrite(h.lcdAddress, payload); err != nil {
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if err := h.connection.I2cWrite(h.lcdAddress, payload); err != nil {
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return err
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}
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}
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time.Sleep(100 * time.Microsecond)
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if err := h.connection.I2cWrite(h.lcdAddress, []byte{LCD_CMD, LCD_DISPLAYCONTROL | LCD_DISPLAYON}); err != nil {
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return err
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}
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time.Sleep(100 * time.Microsecond)
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if err := h.Clear(); err != nil {
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return err
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}
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if err := h.connection.I2cWrite(h.lcdAddress, []byte{LCD_CMD, LCD_ENTRYMODESET | LCD_ENTRYLEFT | LCD_ENTRYSHIFTDECREMENT}); err != nil {
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return err
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}
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if err := h.setReg(0, 0); err != nil {
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return err
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}
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if err := h.setReg(1, 0); err != nil {
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return err
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}
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if err := h.setReg(0x08, 0xAA); err != nil {
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return err
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}
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if err := h.SetRGB(255, 255, 255); err != nil {
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return err
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}
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return nil
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}
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// SetRGB sets the Red Green Blue value of backlit.
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func (h *JHD1313M1Driver) SetRGB(r, g, b int) error {
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if err := h.setReg(REG_RED, r); err != nil {
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return err
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}
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if err := h.setReg(REG_GREEN, g); err != nil {
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return err
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}
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return h.setReg(REG_BLUE, b)
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}
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// Clear clears the text on the lCD display.
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func (h *JHD1313M1Driver) Clear() error {
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err := h.command([]byte{LCD_CLEARDISPLAY})
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return err
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}
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// Home sets the cursor to the origin position on the display.
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func (h *JHD1313M1Driver) Home() error {
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err := h.command([]byte{LCD_RETURNHOME})
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// This wait fixes a race condition when calling home and clear back to back.
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time.Sleep(2 * time.Millisecond)
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return err
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}
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// Write displays the passed message on the screen.
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func (h *JHD1313M1Driver) Write(message string) error {
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// This wait fixes an odd bug where the clear function doesn't always work properly.
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time.Sleep(1 * time.Millisecond)
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for _, val := range message {
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if val == '\n' {
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if err := h.SetPosition(16); err != nil {
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return err
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}
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continue
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}
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if err := h.connection.I2cWrite(h.lcdAddress, []byte{LCD_DATA, byte(val)}); err != nil {
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return err
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}
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}
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return nil
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}
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// SetPosition sets the cursor and the data display to pos.
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// 0..15 are the positions in the first display line.
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// 16..32 are the positions in the second display line.
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func (h *JHD1313M1Driver) SetPosition(pos int) (err error) {
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if pos < 0 || pos > 31 {
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err = ErrInvalidPosition
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return
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}
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offset := byte(pos)
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if pos >= 16 {
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offset -= 16
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offset |= LCD_2NDLINEOFFSET
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}
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err = h.command([]byte{LCD_SETDDRAMADDR | offset})
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return
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}
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func (h *JHD1313M1Driver) Scroll(leftToRight bool) error {
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if leftToRight {
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return h.connection.I2cWrite(h.lcdAddress, []byte{LCD_CMD, LCD_CURSORSHIFT | LCD_DISPLAYMOVE | LCD_MOVELEFT})
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}
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return h.connection.I2cWrite(h.lcdAddress, []byte{LCD_CMD, LCD_CURSORSHIFT | LCD_DISPLAYMOVE | LCD_MOVERIGHT})
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}
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// Halt is a noop function.
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func (h *JHD1313M1Driver) Halt() error { return nil }
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func (h *JHD1313M1Driver) setReg(command int, data int) error {
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return h.connection.I2cWrite(h.rgbAddress, []byte{byte(command), byte(data)})
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}
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func (h *JHD1313M1Driver) command(buf []byte) error {
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return h.connection.I2cWrite(h.lcdAddress, append([]byte{LCD_CMD}, buf...))
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}
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// SetCustomChar sets one of the 8 CGRAM locations with a custom character.
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// The custom character can be used by writing a byte of value 0 to 7.
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// When you are using LCD as 5x8 dots in function set then you can define a total of 8 user defined patterns
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// (1 Byte for each row and 8 rows for each pattern).
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// Use http://www.8051projects.net/lcd-interfacing/lcd-custom-character.php to create your own
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// characters.
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// To use a custom character, write byte value of the custom character position as a string after
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// having setup the custom character.
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func (h *JHD1313M1Driver) SetCustomChar(pos int, charMap [8]byte) error {
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if pos > 7 {
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return fmt.Errorf("can't set a custom character at a position greater than 7")
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}
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location := uint8(pos)
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if err := h.command([]byte{LCD_SETCGRAMADDR | (location << 3)}); err != nil {
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return err
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}
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return h.connection.I2cWrite(h.lcdAddress, append([]byte{LCD_DATA}, charMap[:]...))
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}
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