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Display TFT ST7789 (OshonSoft Basic).

DogFlu66

Member
I leave the library to use ST7789 TFT display, I have translated one that is in C language. But unfortunately I have not been able to get it to work yet. I leave the files in case someone with more experience with these displays can review it.
 

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  • Main_ST7789.bas
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  • ST7789_240X240.bas
    15 KB · Views: 171
  • _SPI_Library.bas
    6 KB · Views: 185
  • _Pic18F26K22Library.bas
    46.4 KB · Views: 174
  • _SetUpAmicus18.bas
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Hello!

Here is a skeletal ili9341 diver it works quite wel. However I have it on a pic18f46k22 on breadboard so I cannot achieve max SPI speed, so its on FOSC/16 at the moment... Again SPI MODE3 works the best.

Code:
'Fuses definition.

#define CONFIG1L = 0x00
#define CONFIG1H = 0x38
#define CONFIG2L = 0x1E
#define CONFIG2H = 0x3C
#define CONFIG3L = 0x00
#define CONFIG3H = 0x3D
#define CONFIG4L = 0x80
#define CONFIG4H = 0x00
#define CONFIG5L = 0x0F
#define CONFIG5H = 0xC0
#define CONFIG6L = 0x0F
#define CONFIG6H = 0xE0
#define CONFIG7L = 0x0F
#define CONFIG7H = 0x40

#define CLOCK_FREQUENCY = 64  'Clock 64Mhz
#define STRING_MAX_LENGTH = 60

'#define SIMULATION_WAITMS_VALUE = 1
'************************************************


'*****************************************************
'lcd driver

Const ILI9341_NOP = 0x00
Const ILI9341_SWRESET = 0x01
Const ILI9341_RDDID = 0x04
Const ILI9341_RDDST = 0x09

Const ILI9341_SLPIN = 0x10
Const ILI9341_SLPOUT = 0x11
Const ILI9341_PTLON = 0x12
Const ILI9341_NORON = 0x13

Const ILI9341_INVOFF = 0x20
Const ILI9341_INVON = 0x21
Const ILI9341_DISPOFF = 0x28
Const ILI9341_DISPON = 0x29
Const ILI9341_CASET = 0x2a
Const ILI9341_RASET = 0x2b
Const ILI9341_RAMWR = 0x2c
Const ILI9341_RAMRD = 0x2e

Const ILI9341_PTLAR = 0x30
Const ILI9341_COLMOD = 0x3a
Const ILI9341_MADCTL = 0x36
Const ILI9341_DISP_FUNC = 0xB6


Const ILI9341_MADCTL_MY = 0x80
Const ILI9341_MADCTL_MX = 0x40
Const ILI9341_MADCTL_MV = 0x20
Const ILI9341_MADCTL_ML = 0x10
Const ILI9341_MADCTL_RGB = 0x00

Const ILI9341_RDID1 = 0xda
Const ILI9341_RDID2 = 0xdb
Const ILI9341_RDID3 = 0xdc
Const ILI9341_RDID4 = 0xdd


Const LCD_BLACK = 0x0000
Const LCD_RED = 0x001f
Const LCD_BLUE = 0xf800
Const LCD_GREEN = 0x07E0
Const LCD_YELLOW = 0x07ff
Const LCD_MAGENTA = 0xf81f
Const LCD_CYAN = 0xffe0
Const LCD_WHITE = 0xffff

Dim LCD_width As Word  ///< Display width as modified by current rotation
Dim LCD_height As Word  ///< Display height as modified by current rotation

Dim LCD_rotation As Byte  ///< Display rotation (0 thru 3)

Symbol TFT_RST = PORTC.0  'RST RESET pin
Symbol TFT_DC = PORTC.1  'DC (SS) Data/Command pin
Symbol TFT_CS = PORTC.2  'CS Chip Select pin
Symbol TFT_SCK = PORTC.3  'SCK as output
Symbol TFT_SDI = PORTC.4  'SDI as input -> SDO
Symbol TFT_SDO = PORTC.5  'SDO as output -> SDI
'*************************************************

Dim x As Byte
OSCCON = 0x70

OSCTUNE.PLLEN = 1
TRISA.1 = 0
TRISC = 0
ADCON1 = 15
Call SPI_init()
Call LCD_init()
Main:

    x = 1
    While x = 1
    WaitMs 300
    LATA.1 = 1
    Call fillScreen(LCD_RED)
    WaitMs 300
    LATA.1 = 0
    Call fillwindow(10,10,310,230, LCD_BLUE)
    WaitMs 300
    LATA.1 = 1
    Call fillwindow(10,10,310,230, LCD_GREEN)
    WaitMs 300
    LATA.1 = 0
    Call fillScreen(LCD_WHITE)
Wend
End

Proc SPI_init()

SSPSTAT = 0x40
SSPCON1 = 0x31


End Proc

Proc LCD_WRITE_COM(dat As Byte)
    TFT_CS = 0
    TFT_DC = 0
    SSPBUF = dat
    While SSPSTAT.BF = 0
    Wend
    TFT_DC = 1
    TFT_CS = 1

End Proc

Proc LCD_WRITE_DATA(dat As Byte)
    TFT_CS = 0
    TFT_DC = 1
    SSPBUF = dat
    While SSPSTAT.BF = 0
    Wend
    TFT_DC = 1
    TFT_CS = 1

End Proc

Proc LCD_init()

Dim idx As Byte
Dim cmd As Byte
    High TFT_RST
    'ConfigPin TFT_RST = Output
    WaitMs 100
    Low TFT_RST
    WaitMs 100
    High TFT_RST
    WaitMs 200

    Call LCD_WRITE_COM(ILI9341_SWRESET)
    WaitMs 150
    Call LCD_WRITE_COM(ILI9341_DISPOFF)
    Call LCD_WRITE_COM(0xCB)     //Power control a
    Call LCD_WRITE_DATA(0x39)
    Call LCD_WRITE_DATA(0x2C)
    Call LCD_WRITE_DATA(0x00)
    Call LCD_WRITE_DATA(0x34)
    Call LCD_WRITE_DATA(0x02)
    WaitMs 1
    Call LCD_WRITE_COM(0xCF)    //Power control b
    Call LCD_WRITE_DATA(0x00)
    Call LCD_WRITE_DATA(0XC1)
    Call LCD_WRITE_DATA(0X30)
    WaitMs 1
    Call LCD_WRITE_COM(0xE8)    //Timing control a
    Call LCD_WRITE_DATA(0x85)
    Call LCD_WRITE_DATA(0x10)
    Call LCD_WRITE_DATA(0x78)
    WaitMs 1
    Call LCD_WRITE_COM(0xEA)    //Timing control b
    Call LCD_WRITE_DATA(0x00)
    Call LCD_WRITE_DATA(0x00)
    WaitMs 1
    Call LCD_WRITE_COM(0xED)    //Power on seq control
    Call LCD_WRITE_DATA(0x64)
    Call LCD_WRITE_DATA(0x03)
    Call LCD_WRITE_DATA(0X12)
    Call LCD_WRITE_DATA(0X81)

    //WaitMs 1
    Call LCD_WRITE_COM(0xC0)    //Power control 1
    Call LCD_WRITE_DATA(0x26)  //VRH[5:0]
    //WaitMs 1
    Call LCD_WRITE_COM(0xC1)    //Power control 2
    Call LCD_WRITE_DATA(0x11)   //SAP[2:0];BT[3:0]
    //WaitMs 1
    Call LCD_WRITE_COM(0xC5)    //VCM control
    Call LCD_WRITE_DATA(0x3e)   //Contrast
    Call LCD_WRITE_DATA(0x28)
   // WaitMs 1
    Call LCD_WRITE_COM(0xF7)
    Call LCD_WRITE_DATA(0x20)
    //WaitMs 1
    Call LCD_WRITE_COM(ILI9341_MADCTL)
    Call LCD_WRITE_DATA(0x8)
    Call LCD_WRITE_COM(ILI9341_INVOFF)
    //WaitMs 1
    Call LCD_WRITE_COM(ILI9341_NORON)
    WaitMs 1
    Call LCD_WRITE_COM(ILI9341_COLMOD )
    Call LCD_WRITE_DATA(0x55)
    //WaitMs 1
    Call LCD_WRITE_COM(0xB7) //emtry mode
    Call LCD_WRITE_DATA(0x07)
    Call LCD_WRITE_COM(0x3A) //pixel format
    Call LCD_WRITE_DATA(0x55) //16bit
    Call LCD_WRITE_COM(ILI9341_DISP_FUNC)    // Display Function Control
    Call LCD_WRITE_DATA(0x08)
    Call LCD_WRITE_DATA(0x82)
    Call LCD_WRITE_DATA(0x27)
    WaitMs 1
    Call LCD_WRITE_COM(ILI9341_SLPOUT)
    WaitMs 120
    Call LCD_WRITE_COM(ILI9341_DISPON)
    WaitMs 1

    LCD_height = 240
    LCD_width = 320

End Proc

'/**************************************************************************/
'@brief  SPI displays set an address window rectangle For blitting pixels
'@param  x  Top left corner x coordinate
'@param  y  Top left corner x coordinate
'@param  W  Width of window
'@param  h  Height of window
'/**************************************************************************/
Proc setAddrWindow(x1 As Word, y1 As Word, x2 As Word, y2 As Word)

Call LCD_WRITE_COM(ILI9341_CASET)  //Column addr set
   Call LCD_WRITE_DATA(x1.HB)
   Call LCD_WRITE_DATA(x1.LB)
   Call LCD_WRITE_DATA(x2.HB)
   Call LCD_WRITE_DATA(x2.LB)
Call LCD_WRITE_COM(ILI9341_RASET)  //Row addr set
   Call LCD_WRITE_DATA(y1.HB)
   Call LCD_WRITE_DATA(y1.LB)
   Call LCD_WRITE_DATA(y2.HB)
Call LCD_WRITE_DATA(y2.LB)

Call LCD_WRITE_COM(ILI9341_RAMWR)  //write to RAM
End Proc



'/**************************************************************************/
Proc fillRect(x1 As Word, y1 As Word, x2 As Word, y2 As Word, color As Word)
Dim px As Long
Dim tmp As Word
If x2 > 0 And y2 > 0 Then      //Nonzero width and height?
    If x1 >= x2 Or y1 >= y2 Then Exit
    tmp = x1 + x2 - 1
    If tmp >= x2 Then x2 = x2 - x1
    tmp = y1 + y2 - 1
    If tmp >= y2 Then y2 = y2 - y1
    Call setAddrWindow(x1, y1, x2, y2)

    px = x2
    px = px * y2
    TFT_CS = 0
    TFT_DC = 1
    While px > 1
        SSPBUF = color.HB
        While SSPSTAT.BF = 0
        Wend
        SSPBUF = color.LB
        While SSPSTAT.BF = 0
        Wend
        px = px - 1
    Wend
    TFT_DC = 1
    TFT_CS = 1
    Endif
End Proc

'/**************************************************************************/
'@brief    Fill the screen completely with one color. Update in subclasses If desired!
'@param    color 16-Bit 5-6-5 Color To fill with
'/**************************************************************************/
Proc fillScreen(color As Word)
   Call fillRect(0, 0, LCD_width, LCD_height, color)
End Proc
Proc fillwindow(x1 As Word,y1 As Word,x2 As Word,y2 As Word,color As Word)
   Call fillRect(x1, y1, x2, y2, color)
End Proc
 
Since I found out that all ST drivers and ILI drivers have identical register sets.. The only difference in initializing is the power controls.

AND!! Since theses are small variations of a theme, well its become easier...

I will make a Library soon where the options will be a) processor ( if capable) and b) TFT size and orientation.

it should include most ILI9xxx and ST 77xx also the Hx83xx as well all the rest..

Setting the cursor is the main difference....
 
Hello!

Here is a skeletal ili9341 diver it works quite wel. However I have it on a pic18f46k22 on breadboard so I cannot achieve max SPI speed, so its on FOSC/16 at the moment... Again SPI MODE3 works the best.

Code:
'Fuses definition.

#define CONFIG1L = 0x00
#define CONFIG1H = 0x38
#define CONFIG2L = 0x1E
#define CONFIG2H = 0x3C
#define CONFIG3L = 0x00
#define CONFIG3H = 0x3D
#define CONFIG4L = 0x80
#define CONFIG4H = 0x00
#define CONFIG5L = 0x0F
#define CONFIG5H = 0xC0
#define CONFIG6L = 0x0F
#define CONFIG6H = 0xE0
#define CONFIG7L = 0x0F
#define CONFIG7H = 0x40

#define CLOCK_FREQUENCY = 64  'Clock 64Mhz
#define STRING_MAX_LENGTH = 60

'#define SIMULATION_WAITMS_VALUE = 1
'************************************************


'*****************************************************
'lcd driver

Const ILI9341_NOP = 0x00
Const ILI9341_SWRESET = 0x01
Const ILI9341_RDDID = 0x04
Const ILI9341_RDDST = 0x09

Const ILI9341_SLPIN = 0x10
Const ILI9341_SLPOUT = 0x11
Const ILI9341_PTLON = 0x12
Const ILI9341_NORON = 0x13

Const ILI9341_INVOFF = 0x20
Const ILI9341_INVON = 0x21
Const ILI9341_DISPOFF = 0x28
Const ILI9341_DISPON = 0x29
Const ILI9341_CASET = 0x2a
Const ILI9341_RASET = 0x2b
Const ILI9341_RAMWR = 0x2c
Const ILI9341_RAMRD = 0x2e

Const ILI9341_PTLAR = 0x30
Const ILI9341_COLMOD = 0x3a
Const ILI9341_MADCTL = 0x36
Const ILI9341_DISP_FUNC = 0xB6


Const ILI9341_MADCTL_MY = 0x80
Const ILI9341_MADCTL_MX = 0x40
Const ILI9341_MADCTL_MV = 0x20
Const ILI9341_MADCTL_ML = 0x10
Const ILI9341_MADCTL_RGB = 0x00

Const ILI9341_RDID1 = 0xda
Const ILI9341_RDID2 = 0xdb
Const ILI9341_RDID3 = 0xdc
Const ILI9341_RDID4 = 0xdd


Const LCD_BLACK = 0x0000
Const LCD_RED = 0x001f
Const LCD_BLUE = 0xf800
Const LCD_GREEN = 0x07E0
Const LCD_YELLOW = 0x07ff
Const LCD_MAGENTA = 0xf81f
Const LCD_CYAN = 0xffe0
Const LCD_WHITE = 0xffff

Dim LCD_width As Word  ///< Display width as modified by current rotation
Dim LCD_height As Word  ///< Display height as modified by current rotation

Dim LCD_rotation As Byte  ///< Display rotation (0 thru 3)

Symbol TFT_RST = PORTC.0  'RST RESET pin
Symbol TFT_DC = PORTC.1  'DC (SS) Data/Command pin
Symbol TFT_CS = PORTC.2  'CS Chip Select pin
Symbol TFT_SCK = PORTC.3  'SCK as output
Symbol TFT_SDI = PORTC.4  'SDI as input -> SDO
Symbol TFT_SDO = PORTC.5  'SDO as output -> SDI
'*************************************************

Dim x As Byte
OSCCON = 0x70

OSCTUNE.PLLEN = 1
TRISA.1 = 0
TRISC = 0
ADCON1 = 15
Call SPI_init()
Call LCD_init()
Main:

    x = 1
    While x = 1
    WaitMs 300
    LATA.1 = 1
    Call fillScreen(LCD_RED)
    WaitMs 300
    LATA.1 = 0
    Call fillwindow(10,10,310,230, LCD_BLUE)
    WaitMs 300
    LATA.1 = 1
    Call fillwindow(10,10,310,230, LCD_GREEN)
    WaitMs 300
    LATA.1 = 0
    Call fillScreen(LCD_WHITE)
Wend
End

Proc SPI_init()

SSPSTAT = 0x40
SSPCON1 = 0x31


End Proc

Proc LCD_WRITE_COM(dat As Byte)
    TFT_CS = 0
    TFT_DC = 0
    SSPBUF = dat
    While SSPSTAT.BF = 0
    Wend
    TFT_DC = 1
    TFT_CS = 1

End Proc

Proc LCD_WRITE_DATA(dat As Byte)
    TFT_CS = 0
    TFT_DC = 1
    SSPBUF = dat
    While SSPSTAT.BF = 0
    Wend
    TFT_DC = 1
    TFT_CS = 1

End Proc

Proc LCD_init()

Dim idx As Byte
Dim cmd As Byte
    High TFT_RST
    'ConfigPin TFT_RST = Output
    WaitMs 100
    Low TFT_RST
    WaitMs 100
    High TFT_RST
    WaitMs 200

    Call LCD_WRITE_COM(ILI9341_SWRESET)
    WaitMs 150
    Call LCD_WRITE_COM(ILI9341_DISPOFF)
    Call LCD_WRITE_COM(0xCB)     //Power control a
    Call LCD_WRITE_DATA(0x39)
    Call LCD_WRITE_DATA(0x2C)
    Call LCD_WRITE_DATA(0x00)
    Call LCD_WRITE_DATA(0x34)
    Call LCD_WRITE_DATA(0x02)
    WaitMs 1
    Call LCD_WRITE_COM(0xCF)    //Power control b
    Call LCD_WRITE_DATA(0x00)
    Call LCD_WRITE_DATA(0XC1)
    Call LCD_WRITE_DATA(0X30)
    WaitMs 1
    Call LCD_WRITE_COM(0xE8)    //Timing control a
    Call LCD_WRITE_DATA(0x85)
    Call LCD_WRITE_DATA(0x10)
    Call LCD_WRITE_DATA(0x78)
    WaitMs 1
    Call LCD_WRITE_COM(0xEA)    //Timing control b
    Call LCD_WRITE_DATA(0x00)
    Call LCD_WRITE_DATA(0x00)
    WaitMs 1
    Call LCD_WRITE_COM(0xED)    //Power on seq control
    Call LCD_WRITE_DATA(0x64)
    Call LCD_WRITE_DATA(0x03)
    Call LCD_WRITE_DATA(0X12)
    Call LCD_WRITE_DATA(0X81)

    //WaitMs 1
    Call LCD_WRITE_COM(0xC0)    //Power control 1
    Call LCD_WRITE_DATA(0x26)  //VRH[5:0]
    //WaitMs 1
    Call LCD_WRITE_COM(0xC1)    //Power control 2
    Call LCD_WRITE_DATA(0x11)   //SAP[2:0];BT[3:0]
    //WaitMs 1
    Call LCD_WRITE_COM(0xC5)    //VCM control
    Call LCD_WRITE_DATA(0x3e)   //Contrast
    Call LCD_WRITE_DATA(0x28)
   // WaitMs 1
    Call LCD_WRITE_COM(0xF7)
    Call LCD_WRITE_DATA(0x20)
    //WaitMs 1
    Call LCD_WRITE_COM(ILI9341_MADCTL)
    Call LCD_WRITE_DATA(0x8)
    Call LCD_WRITE_COM(ILI9341_INVOFF)
    //WaitMs 1
    Call LCD_WRITE_COM(ILI9341_NORON)
    WaitMs 1
    Call LCD_WRITE_COM(ILI9341_COLMOD )
    Call LCD_WRITE_DATA(0x55)
    //WaitMs 1
    Call LCD_WRITE_COM(0xB7) //emtry mode
    Call LCD_WRITE_DATA(0x07)
    Call LCD_WRITE_COM(0x3A) //pixel format
    Call LCD_WRITE_DATA(0x55) //16bit
    Call LCD_WRITE_COM(ILI9341_DISP_FUNC)    // Display Function Control
    Call LCD_WRITE_DATA(0x08)
    Call LCD_WRITE_DATA(0x82)
    Call LCD_WRITE_DATA(0x27)
    WaitMs 1
    Call LCD_WRITE_COM(ILI9341_SLPOUT)
    WaitMs 120
    Call LCD_WRITE_COM(ILI9341_DISPON)
    WaitMs 1

    LCD_height = 240
    LCD_width = 320

End Proc

'/**************************************************************************/
'@brief  SPI displays set an address window rectangle For blitting pixels
'@param  x  Top left corner x coordinate
'@param  y  Top left corner x coordinate
'@param  W  Width of window
'@param  h  Height of window
'/**************************************************************************/
Proc setAddrWindow(x1 As Word, y1 As Word, x2 As Word, y2 As Word)

Call LCD_WRITE_COM(ILI9341_CASET)  //Column addr set
   Call LCD_WRITE_DATA(x1.HB)
   Call LCD_WRITE_DATA(x1.LB)
   Call LCD_WRITE_DATA(x2.HB)
   Call LCD_WRITE_DATA(x2.LB)
Call LCD_WRITE_COM(ILI9341_RASET)  //Row addr set
   Call LCD_WRITE_DATA(y1.HB)
   Call LCD_WRITE_DATA(y1.LB)
   Call LCD_WRITE_DATA(y2.HB)
Call LCD_WRITE_DATA(y2.LB)

Call LCD_WRITE_COM(ILI9341_RAMWR)  //write to RAM
End Proc



'/**************************************************************************/
Proc fillRect(x1 As Word, y1 As Word, x2 As Word, y2 As Word, color As Word)
Dim px As Long
Dim tmp As Word
If x2 > 0 And y2 > 0 Then      //Nonzero width and height?
    If x1 >= x2 Or y1 >= y2 Then Exit
    tmp = x1 + x2 - 1
    If tmp >= x2 Then x2 = x2 - x1
    tmp = y1 + y2 - 1
    If tmp >= y2 Then y2 = y2 - y1
    Call setAddrWindow(x1, y1, x2, y2)

    px = x2
    px = px * y2
    TFT_CS = 0
    TFT_DC = 1
    While px > 1
        SSPBUF = color.HB
        While SSPSTAT.BF = 0
        Wend
        SSPBUF = color.LB
        While SSPSTAT.BF = 0
        Wend
        px = px - 1
    Wend
    TFT_DC = 1
    TFT_CS = 1
    Endif
End Proc

'/**************************************************************************/
'@brief    Fill the screen completely with one color. Update in subclasses If desired!
'@param    color 16-Bit 5-6-5 Color To fill with
'/**************************************************************************/
Proc fillScreen(color As Word)
   Call fillRect(0, 0, LCD_width, LCD_height, color)
End Proc
Proc fillwindow(x1 As Word,y1 As Word,x2 As Word,y2 As Word,color As Word)
   Call fillRect(x1, y1, x2, y2, color)
End Proc
Hi I,
Just found this in my junk folder.
I need to change a few things, to get it to work on my PCB.
Thanks.
C.
 
I have a line , rectangle and circle function done.. Next is character / image
Code:
Proc LCD_DrawLine(x1 As Word, y1 As Word, x2 As Word, y2 As Word, color As Word)

    Dim t As Word
    Dim xerr, yerr, delta_x, delta_y, distance As Integer
    Dim incx, incy, xPix, yPix As Integer
    xerr = 0
    yerr = 0

    delta_x = x2 - x1
    delta_y = y2 - y1
    xPix = x1
    yPix = y1

    If delta_x > 0 Then    incx = 1
    If delta_x = 0 Then incx = 0
    If delta_x < 0 Then
        incx = -1
        delta_x = -delta_x
    Endif

    If delta_y > 0 Then    incy = 1
    If delta_y = 0 Then incy = 0
    If delta_y < 0 Then
        incy = -1
        delta_y = -delta_y
    Endif


    If delta_x > delta_y Then
        distance = delta_x
    Else
        distance = delta_y
    Endif

    For t = 0 To distance + 1 Step 1
         Call LCD_DrawPoint(xPix, yPix, color)
        xerr = xerr + delta_x
        yerr = yerr + delta_y
        If xerr > distance Then
            xerr = xerr - distance
            xPix = xPix + incx
        Endif
        If  yerr > distance Then
            yerr = yerr - distance
            yPix = yPix + incy
        Endif
    Next t
End Proc
// Rectangle

Proc LCD_DrawRectangle( x1 As Integer, y1 As Integer, x2 As Integer, y2 As Integer, color As Word)

    Call LCD_DrawLine(x1, y1, x2, y1, color)
    Call LCD_DrawLine(x1, y1, x1, y2, color)
    Call LCD_DrawLine(x1, y2, x2, y2, color)
    Call LCD_DrawLine(x2, y1, x2, y2, color)

End Proc
//   Circle routine

Proc LCD_Circle(x1 As Word, y1 As Word, rad As Word, color As Word)
Dim xPix, yPix, di As Integer
xPix = 0
yPix = rad
di = 3 - ShiftLeft(rad,1)
    While xPix <= yPix

    Call LCD_DrawPoint(x1+xPix, y1-yPix, color)
    Call LCD_DrawPoint(x1+yPix, y1-xPix, color)
    Call LCD_DrawPoint(x1+yPix, y1+xPix, color)
    Call LCD_DrawPoint(x1+xPix, y1+yPix, color)
    Call LCD_DrawPoint(x1-xPix, y1+yPix, color)
    Call LCD_DrawPoint(x1-yPix, y1+xPix, color)
    Call LCD_DrawPoint(x1-xPix, y1-yPix, color)
    Call LCD_DrawPoint(x1-yPix, y1-xPix, color)
    xPix = xPix + 1

    If di < 0 Then
        di= (4 * xPix + 6) + di
    Else
        di= (10 + 4 * (xPix-yPix)) + di
        yPix = yPix - 1
    Endif
    Wend

End Proc
// line drawing

Proc LCD_DrawPoint(x1 As Word, y1 As Word ,color As Word)

    Call LCD_WRITE_COM(ILI9341_CASET)  //Column addr set
    Call LCD_WRITE_DATA(x1.HB)
    Call LCD_WRITE_DATA(x1.LB)
    Call LCD_WRITE_COM(ILI9341_RASET)  //Row addr set
    Call LCD_WRITE_DATA(y1.HB)
    Call LCD_WRITE_DATA(y1.LB)
    Call LCD_WRITE_COM(ILI9341_RAMWR)  //write to RAM

    Call LCD_WRITE_DATA(color.HB)
    Call LCD_WRITE_DATA(color.LB)

End Proc
 
Hi I and D,
I've been trying I's CODE, but can only get anything if I change the OSC to my usual settings for my PCB i,e, XTL 32MHz.
I now have flashing LED, so things are ticking, but no sense from the lines and drawing etc.
I'll keep trying.

I have a track to the screen LED (light), but how do you do it in the CODE?
C
 
Hi Cam.. Are you on breadboard? if the SPI lines are in a breadboard the SPI is chopped an I only get 4Mhz

I set the FOSC to 64Mhz and set the speed of SPI to FOSC / 16 ergo 4Mhz...

I haven't tried SPI at 8Mhz FOSC = 32Mhs with SPI FOSC / 4

I'm at home today, so I should have characters very soon,
 
As a side note.. I have hacked the fill rect routine as it was not quite right.

No error checking and it now works better.

Code:
'Fuses definition.

#define CONFIG1L = 0x00
#define CONFIG1H = 0x38
#define CONFIG2L = 0x1E
#define CONFIG2H = 0x3C
#define CONFIG3L = 0x00
#define CONFIG3H = 0x3D
#define CONFIG4L = 0x80
#define CONFIG4H = 0x00
#define CONFIG5L = 0x0F
#define CONFIG5H = 0xC0
#define CONFIG6L = 0x0F
#define CONFIG6H = 0xE0
#define CONFIG7L = 0x0F
#define CONFIG7H = 0x40

#define CLOCK_FREQUENCY = 64  'Clock 64Mhz
#define STRING_MAX_LENGTH = 60

'#define SIMULATION_WAITMS_VALUE = 1
'************************************************


'*****************************************************
'lcd driver

Const ILI9341_NOP = 0x00
Const ILI9341_SWRESET = 0x01
Const ILI9341_RDDID = 0x04
Const ILI9341_RDDST = 0x09

Const ILI9341_SLPIN = 0x10
Const ILI9341_SLPOUT = 0x11
Const ILI9341_PTLON = 0x12
Const ILI9341_NORON = 0x13

Const ILI9341_INVOFF = 0x20
Const ILI9341_INVON = 0x21
Const ILI9341_DISPOFF = 0x28
Const ILI9341_DISPON = 0x29
Const ILI9341_CASET = 0x2a
Const ILI9341_RASET = 0x2b
Const ILI9341_RAMWR = 0x2c
Const ILI9341_RAMRD = 0x2e

Const ILI9341_PTLAR = 0x30
Const ILI9341_COLMOD = 0x3a
Const ILI9341_MADCTL = 0x36
Const ILI9341_DISP_FUNC = 0xB6


Const ILI9341_MADCTL_MY = 0x80
Const ILI9341_MADCTL_MX = 0x40
Const ILI9341_MADCTL_MV = 0x20
Const ILI9341_MADCTL_ML = 0x10
Const ILI9341_MADCTL_RGB = 0x00

Const ILI9341_RDID1 = 0xda
Const ILI9341_RDID2 = 0xdb
Const ILI9341_RDID3 = 0xdc
Const ILI9341_RDID4 = 0xdd


Const LCD_BLACK = 0x0000
Const LCD_RED = 0x001f
Const LCD_BLUE = 0xf800
Const LCD_GREEN = 0x07E0
Const LCD_YELLOW = 0x07ff
Const LCD_MAGENTA = 0xf81f
Const LCD_CYAN = 0xffe0
Const LCD_WHITE = 0xffff

Dim LCD_width As Word  ///< Display width as modified by current rotation
Dim LCD_height As Word  ///< Display height as modified by current rotation

Dim LCD_rotation As Byte  ///< Display rotation (0 thru 3)

Symbol TFT_RST = PORTC.0  'RST RESET pin
Symbol TFT_DC = PORTC.1  'DC (SS) Data/Command pin
Symbol TFT_CS = PORTC.2  'CS Chip Select pin
Symbol TFT_SCK = PORTC.3  'SCK as output
Symbol TFT_SDI = PORTC.4  'SDI as input -> SDO
Symbol TFT_SDO = PORTC.5  'SDO as output -> SDI
'*************************************************

Dim x As Byte
OSCCON = 0x70

OSCTUNE.PLLEN = 1
TRISA.1 = 0
TRISC = 0
ADCON1 = 15
Call SPI_init()
Call LCD_init()
Main:

    x = 1
    While x = 1
    WaitMs 300
    LATA.1 = 1
    Call fillScreen(LCD_RED)
    WaitMs 300
    LATA.1 = 0
    Call fillwindow(10,10,310,230, LCD_BLUE)
    WaitMs 300
    LATA.1 = 1
    Call fillwindow(10,10,310,230, LCD_GREEN)
    WaitMs 300
    LATA.1 = 0
    Call fillScreen(LCD_WHITE)
    Call LCD_DrawLine(10,10,310,230,LCD_BLACK)
    Call LCD_DrawLine(310,10,10,230,LCD_BLACK)
    Call LCD_DrawLine(10,120,310,120,LCD_BLACK)
    Call LCD_DrawLine(160,10,160,230,LCD_BLACK)

    Call LCD_Circle(160,120,100,LCD_BLUE)
    Call fillwindow(100,50,220,190, LCD_WHITE)
    Call LCD_DrawRectangle(100,50,220,190,LCD_BLUE)

    WaitMs 1000

Wend
End

Proc SPI_init()

SSPSTAT = 0x40
SSPCON1 = 0x31


End Proc

Proc LCD_WRITE_COM(dat As Byte)
    TFT_CS = 0
    TFT_DC = 0
    SSPBUF = dat
    While SSPSTAT.BF = 0
    Wend
    TFT_DC = 1
    TFT_CS = 1

End Proc

Proc LCD_WRITE_DATA(dat As Byte)
    TFT_CS = 0
    TFT_DC = 1
    SSPBUF = dat
    While SSPSTAT.BF = 0
    Wend
    TFT_DC = 1
    TFT_CS = 1

End Proc

Proc LCD_init()

Dim idx As Byte
Dim cmd As Byte
    High TFT_RST
    'ConfigPin TFT_RST = Output
    WaitMs 100
    Low TFT_RST
    WaitMs 100
    High TFT_RST
    WaitMs 200

    Call LCD_WRITE_COM(ILI9341_SWRESET)
    WaitMs 150
    Call LCD_WRITE_COM(ILI9341_DISPOFF)
    Call LCD_WRITE_COM(0xCB)     //Power control a
    Call LCD_WRITE_DATA(0x39)
    Call LCD_WRITE_DATA(0x2C)
    Call LCD_WRITE_DATA(0x00)
    Call LCD_WRITE_DATA(0x34)
    Call LCD_WRITE_DATA(0x02)
    WaitMs 1
    Call LCD_WRITE_COM(0xCF)    //Power control b
    Call LCD_WRITE_DATA(0x00)
    Call LCD_WRITE_DATA(0XC1)
    Call LCD_WRITE_DATA(0X30)
    WaitMs 1
    Call LCD_WRITE_COM(0xE8)    //Timing control a
    Call LCD_WRITE_DATA(0x85)
    Call LCD_WRITE_DATA(0x10)
    Call LCD_WRITE_DATA(0x78)
    WaitMs 1
    Call LCD_WRITE_COM(0xEA)    //Timing control b
    Call LCD_WRITE_DATA(0x00)
    Call LCD_WRITE_DATA(0x00)
    WaitMs 1
    Call LCD_WRITE_COM(0xED)    //Power on seq control
    Call LCD_WRITE_DATA(0x64)
    Call LCD_WRITE_DATA(0x03)
    Call LCD_WRITE_DATA(0X12)
    Call LCD_WRITE_DATA(0X81)

    //WaitMs 1
    Call LCD_WRITE_COM(0xC0)    //Power control 1
    Call LCD_WRITE_DATA(0x26)  //VRH[5:0]
    //WaitMs 1
    Call LCD_WRITE_COM(0xC1)    //Power control 2
    Call LCD_WRITE_DATA(0x11)   //SAP[2:0];BT[3:0]
    //WaitMs 1
    Call LCD_WRITE_COM(0xC5)    //VCM control
    Call LCD_WRITE_DATA(0x3e)   //Contrast
    Call LCD_WRITE_DATA(0x28)
   // WaitMs 1
    Call LCD_WRITE_COM(0xF7)
    Call LCD_WRITE_DATA(0x20)
    //WaitMs 1
    Call LCD_WRITE_COM(ILI9341_MADCTL)
    Call LCD_WRITE_DATA(0x8)
    Call LCD_WRITE_COM(ILI9341_INVOFF)
    //WaitMs 1
    Call LCD_WRITE_COM(ILI9341_NORON)
    WaitMs 1
    Call LCD_WRITE_COM(ILI9341_COLMOD )
    Call LCD_WRITE_DATA(0x55)
    //WaitMs 1
    Call LCD_WRITE_COM(0xB7) //emtry mode
    Call LCD_WRITE_DATA(0x07)
    Call LCD_WRITE_COM(0x3A) //pixel format
    Call LCD_WRITE_DATA(0x55) //16bit
    Call LCD_WRITE_COM(ILI9341_DISP_FUNC)    // Display Function Control
    Call LCD_WRITE_DATA(0x08)
    Call LCD_WRITE_DATA(0x82)
    Call LCD_WRITE_DATA(0x27)
    WaitMs 1
    Call LCD_WRITE_COM(ILI9341_SLPOUT)
    WaitMs 120
    Call LCD_WRITE_COM(ILI9341_DISPON)
    WaitMs 1

    LCD_height = 240
    LCD_width = 320

End Proc

'/**************************************************************************/
'@brief  SPI displays set an address window rectangle For blitting pixels
'@param  x  Top left corner x coordinate
'@param  y  Top left corner x coordinate
'@param  W  Width of window
'@param  h  Height of window
'/**************************************************************************/
Proc setAddrWindow(x1 As Word, y1 As Word, x2 As Word, y2 As Word)

Call LCD_WRITE_COM(ILI9341_CASET)  //Column addr set
Call LCD_WRITE_DATA(x1.HB)
Call LCD_WRITE_DATA(x1.LB)
Call LCD_WRITE_DATA(x2.HB)
Call LCD_WRITE_DATA(x2.LB)
Call LCD_WRITE_COM(ILI9341_RASET)  //Row addr set
Call LCD_WRITE_DATA(y1.HB)
Call LCD_WRITE_DATA(y1.LB)
Call LCD_WRITE_DATA(y2.HB)
Call LCD_WRITE_DATA(y2.LB)

Call LCD_WRITE_COM(ILI9341_RAMWR)  //write to RAM
End Proc
Proc LCD_DrawLine(x1 As Word, y1 As Word, x2 As Word, y2 As Word, color As Word)

    Dim t As Word
    Dim xerr, yerr, delta_x, delta_y, distance As Integer
    Dim incx, incy, xPix, yPix As Integer
    xerr = 0
    yerr = 0

    delta_x = x2 - x1
    delta_y = y2 - y1
    xPix = x1
    yPix = y1

    If delta_x > 0 Then    incx = 1
    If delta_x = 0 Then incx = 0
    If delta_x < 0 Then
        incx = -1
        delta_x = -delta_x
    Endif

    If delta_y > 0 Then    incy = 1
    If delta_y = 0 Then incy = 0
    If delta_y < 0 Then
        incy = -1
        delta_y = -delta_y
    Endif


    If delta_x > delta_y Then
        distance = delta_x
    Else
        distance = delta_y
    Endif

    For t = 0 To distance + 1 Step 1
         Call LCD_DrawPoint(xPix, yPix, color)
        xerr = xerr + delta_x
        yerr = yerr + delta_y
        If xerr > distance Then
            xerr = xerr - distance
            xPix = xPix + incx
        Endif
        If  yerr > distance Then
            yerr = yerr - distance
            yPix = yPix + incy
        Endif
    Next t
End Proc
Proc LCD_String( str As String, x As Word, y As Word, size  As Word , fcol As Word , bcol As Word)
      
    Dim  x0 As Integer
    Dim width, height As Integer
   
    Select Case size
        Case 1
            width = 5
            height = 8           
        Case 2
            width = 8
            height = 12           
        Case 3
            width = 16
            height = 24           
    EndSelect
   
    x0 = x
   
    width+=x
    height+=y
    
End Proc
// Rectangle

Proc LCD_DrawRectangle( x1 As Integer, y1 As Integer, x2 As Integer, y2 As Integer, color As Word)

    Call LCD_DrawLine(x1, y1, x2, y1, color)
    Call LCD_DrawLine(x1, y1, x1, y2, color)
    Call LCD_DrawLine(x1, y2, x2, y2, color)
    Call LCD_DrawLine(x2, y1, x2, y2, color)

End Proc
//   Circle routine

Proc LCD_Circle(x1 As Word, y1 As Word, rad As Word, color As Word)
Dim xPix, yPix, di As Integer
xPix = 0
yPix = rad
di = 3 - ShiftLeft(rad,1)
    While xPix <= yPix

    Call LCD_DrawPoint(x1+xPix, y1-yPix, color)
    Call LCD_DrawPoint(x1+yPix, y1-xPix, color)
    Call LCD_DrawPoint(x1+yPix, y1+xPix, color)
    Call LCD_DrawPoint(x1+xPix, y1+yPix, color)
    Call LCD_DrawPoint(x1-xPix, y1+yPix, color)
    Call LCD_DrawPoint(x1-yPix, y1+xPix, color)
    Call LCD_DrawPoint(x1-xPix, y1-yPix, color)
    Call LCD_DrawPoint(x1-yPix, y1-xPix, color)
    xPix = xPix + 1

    If di < 0 Then
        di= (4 * xPix + 6) + di
    Else
        di= (10 + 4 * (xPix-yPix)) + di
        yPix = yPix - 1
    Endif
    Wend

End Proc
// line drawing

Proc LCD_DrawPoint(x1 As Word, y1 As Word ,color As Word)

    Call LCD_WRITE_COM(ILI9341_CASET)  //Column addr set
    Call LCD_WRITE_DATA(x1.HB)
    Call LCD_WRITE_DATA(x1.LB)
    Call LCD_WRITE_COM(ILI9341_RASET)  //Row addr set
    Call LCD_WRITE_DATA(y1.HB)
    Call LCD_WRITE_DATA(y1.LB)
    Call LCD_WRITE_COM(ILI9341_RAMWR)  //write to RAM

    Call LCD_WRITE_DATA(color.HB)
    Call LCD_WRITE_DATA(color.LB)

End Proc

'/**************************************************************************/
Proc fillRect(x1 As Word, y1 As Word, x2 As Word, y2 As Word, color As Word)
Dim px As Long
Dim tmp As Word
If x2 > 0 And y2 > 0 Then      //Nonzero width and height?

    Call setAddrWindow(x1, y1, x2, y2)

    px = x2
    px = px * y2
    TFT_CS = 0
    TFT_DC = 1
    While px > 1
        SSPBUF = color.HB
        While SSPSTAT.BF = 0
        Wend
        SSPBUF = color.LB
        While SSPSTAT.BF = 0
        Wend
        px = px - 1
    Wend
    TFT_DC = 1
    TFT_CS = 1
    Endif
End Proc

'/**************************************************************************/
'@brief    Fill the screen completely with one color. Update in subclasses If desired!
'@param    color 16-Bit 5-6-5 Color To fill with
'/**************************************************************************/
Proc fillScreen(color As Word)
Call fillRect(0, 0, LCD_width, LCD_height, color)
End Proc
Proc fillwindow(x1 As Word,y1 As Word,x2 As Word,y2 As Word,color As Word)
Call fillRect(x1, y1, x2, y2, color)
End Proc
 
Last edited:
Hi Cam.. Are you on breadboard? if the SPI lines are in a breadboard the SPI is chopped an I only get 4Mhz

I set the FOSC to 64Mhz and set the speed of SPI to FOSC / 16 ergo 4Mhz...

I haven't tried SPI at 8Mhz FOSC = 32Mhs with SPI FOSC / 4

I'm at home today, so I should have characters very soon,
Hi I,
This is my set up. I had so much trouble with breadboards, that I alway make or use an old PCB, and solder it. (18F46K20)

On my board is an 8MHz XTL, plus PLL = 32MHz. I have LEDs and they are flashing, which tells me the system is running.

I'm puzzled about the screen light marked LED, and I have a track connected to it. I switch it on, so the screen is white, Im not sure what PRINT white does?

If there's something tedious to do like numbers, I cn do something like that.
C
 

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Last edited:
Hi Cam.. Looking at your code... a) RASET and CASET have to be set before writes

RASET and CASET are byte only for some reason you have 360 in both?

if you use X1 and Y1 as a word you cam use x1.HB and x1.LB then the RASET will initialise properly
 

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