Lib for the new LCD Display with ILI9341 controller

Dependents:   TFT_Test_ILI9341 touch_piirto TFT_banggood TFT_Test_ILI9341-a-fish ... more

Lib for 320*240 Pixel Color LCD with ILI9341 controller. Based on MI0283QT-9 datasheet. The lib is based on the http://mbed.org/cookbook/SPI-driven-QVGA-TFT code for the older LCD board.

The lib is using the 4 line serial data interface. The IM pins have to be set to 1110 (IM3-IM0) to use this mode. It use the SPI hardware.

I have started to speed up the lib with using DMA and direct SPI programming. To do this I have to split the code for the different platforms. To prevent unreadable code with a lot of #ifdef... I have create a new file. The #ifdef definition around is switching between the platforms. I will add the other Nucleo platforms. If you want to support others - see ..._NUCLEO.cpp , port and send me the code to add.

Display 1

If you use the TFT Proto from MikroElektronika http://www.mikroe.com/eng/products/view/474/tft-proto-board/ you have to connect : /media/uploads/dreschpe/tft_proto.png

MBEDDisplay
+ 3,3V3,3V
GNDGND
mosiSDI
misoSDO
sckRS
csCS
resetRST
dcWR/SCL
GNDIM0
+3,3VIM1 IM2 IM3
GNDDB0 - DB17
GNDRD

The backlite LED need a resistor to limit the current. You can use two 10R resistors parallel to get 5R driven by 3.3V.

Display 2

Watterott is also selling a ILI9341 based QVGA TFT : http://www.watterott.com/de/MI0283QT-2-Adapter

Unfortunately this adapter is set to 9 bit SPI mode via the mode pins IM0-IM3. If you want to patch this - like I have done - you have to desolder the TFT from the pcb to cut some traces. This is a flexible print. Only for people with soldering skills ! You also have to get access to pin 36 for the dc signal. Cut the GND connection. You can use the level converter used for the LCD_LED signal. Mosfet Q1 can be driven with a logic signal without converter. Watterott will change this in a future revision.

/media/uploads/dreschpe/mi0283qt_v12_patch.pdf

Display 3

There are inexpensive displays from china. You can get them at: http://www.banggood.com/2_2-Inch-Serial-TFT-SPI-LCD-Screen-Module-HD-240-X-320-5110-Compatible-p-912854.html The board has also a SD card connector at the backside, but no touch.

/media/uploads/dreschpe/tft3_1.jpg /media/uploads/dreschpe/tft3_2.jpg

The board can be used without modification. Connect VCC with 5V USB out. There is a voltage regulator on board. To use the SD card simply import the SDFileSystem and connect it to the second SPI.

Fonts

How to get nice looking fonts ?

To print characters to a graphic screen we need a font. To code a font by paper is ok for a small lcd, but for a 320*240 pixel display we need bigger fonts. A 12*12 pixel font is readable, but a lot of work to construct.

Fonts can be made with the GLCD Font Creator also from http://www.mikroe.com .

With this program you can load a window font and convert it into a c-array. To use this Font with my lib you have to add 4 parameter at the beginning of the font array. - the number of byte / char - the vertial size in pixel - the horizontal size in pixel - the number of byte per vertical line (it is vertical size / 8 ) You also have to change the array to char[]. After that you can switch between different fonts with set_font(unsigned char* font); The horizontal size of each character is also stored in the font. It look better if you use bigger fonts or italic. The letter M is wider than a l.

Here are some Fonts from me : http://mbed.org/users/dreschpe/code/TFT_fonts/

The small made for the mbed lab board : http://mbed.org/users/dreschpe/code/LCD_fonts/

And from Peter Holzleitner : http://mbed.org/users/pholzleitner/code/SourceCodePro31-SB/

Text commands :

You can use the claim() function to redirect the output to stdout or stderr to the TFT. After claim(stdout) you can simply use the printf function to print to the TFT.

  • locate(x,y); function is used to setup the cursor position. x,y are the pixel position. This was changed from row,column in older lib !

There are two parameter to setup the color of the text :

  • background(color);
  • foreground(color); All color are 16bit: R5 G6 B5.
  • set_orientation(); This command select one of the 4 directions to use the display. This command is also working on the graphical commands.

Graphics

Graphic commands :

  • cls(); Fill the screen with background color
  • pixel(x,y,color); set a single pixel at x,y with color
  • line(x0,y0,x1,y1,color); draw a line from x0,y0 to x1,y1 with color
  • rect(x0,y0,x1,y1,color); draw a rectangle x0,y0 to x1,y1 with color
  • fillrect(x0,y0,x1,y1,color); draw a filled rectangle
  • circle( x0,y0,radius ,color); draw a circle around x0,y0 with radius
  • fillcircle(x0,y0,radius ,color); draw a filled circle around x0,y0 with radius
  • Bitmap(x0,y0,w,h,*bitmap); paint a bitmap with width w and high h starting at x0,y0 (upper left corner)
  • BMP_16(x0,y0,*bmp); paint a bmp file out of the internal drive or a SD-card

How to transfer a grafic to the mbed ?

The hard way - but fast to load :

Load from mbed flash. It consume a lot of flash memory. To construct a bitmap array we can use gimp. http://www.gimp.org/ Load a image (edit and resize) and export it as BMP. You have to select the option 16 bit R5 G6 B5 !

To convert this file into a c-array you can use the hex-editor winhex. (http://www.x-ways.net/winhex/index-m.html) The eval version can handle the small files. We don`t need the bmp header. Mark the data starting at offset 0x46 to the end of file. Use "edit -> copy block -> C Source" to export this data as C array. Paste the data into a C file into the mbed compiler. The editor will generate a array of char[]. To use 16 bit DMA on this we have to put a __align(2) in front of the definition. To put it into Flash we change it to static const unsigned char bmp[]{...}

__align(2)
static const unsigned char bmp[]{
      0xCB, 0x5A, 0x5C, 0xE7,....

};

The easy way - but slower to load:

With the BMP_16 command we can load a picture out of the internal drive or a SD-card to the display.

  • BMP_16(x0,y0,"/local/test.bmp"); paint test.bmp out of the internal drive to x0, y0
  • BMP_16(x0,y0,"/sd/test.bmp"); paint test.bmp out of a external SD-card to x0, y0

simply copy test.bmp to the mbed usb drive or the SD-card. The bmp has to be saved with the options 16 bit R5 G6 B5 ! You can use the program gimp to convert pictures into the 16 bit bmp format.

sample code

http://mbed.org/users/dreschpe/code/TFT_Test_ILI9341/

// example to test the TFT Display
// Thanks to the GraphicsDisplay and TextDisplay classes
// test2.bmp has to be on the mbed file system

#include "stdio.h"
#include "mbed.h"
#include "SPI_TFT_ILI9341.h"
#include "string"
#include "Arial12x12.h"
#include "Arial24x23.h"
#include "Arial28x28.h"
#include "font_big.h"

extern unsigned char p1[];  // the mbed logo

DigitalOut LCD_LED(p21); // the Watterott display has a backlight switch
DigitalOut CS_Touch(p15); // disable the touch controller on the Watterott display

// the TFT is connected to SPI pin 5-7
SPI_TFT_ILI9341 TFT(p5, p6, p7, p8, p9, p10,"TFT"); // mosi, miso, sclk, cs, reset, dc

int main()
{
    int i;
    LCD_LED = 1;  // backlight on
    CS_Touch = 1; 
   
    TFT.claim(stdout);      // send stdout to the TFT display
    //TFT.claim(stderr);      // send stderr to the TFT display
    TFT.set_orientation(1);
    TFT.background(Black);    // set background to black
    TFT.foreground(White);    // set chars to white
    TFT.cls();                // clear the screen

    //first show the 4 directions
    TFT.set_orientation(0);
    TFT.background(Black);
    TFT.cls();

    TFT.set_font((unsigned char*) Arial12x12);
    TFT.locate(0,0);
    printf("  Hello Mbed 0");

    TFT.set_orientation(1);
    TFT.locate(0,0);
    printf("  Hello Mbed 1");
    TFT.set_orientation(2);
    TFT.locate(0,0);
    printf("  Hello Mbed 2");
    TFT.set_orientation(3);
    TFT.locate(0,0);
    printf("  Hello Mbed 3");
    TFT.set_orientation(1);
    TFT.set_font((unsigned char*) Arial24x23);
    TFT.locate(50,100);
    TFT.printf("TFT orientation");

/media/uploads/dreschpe/orient.jpg

// draw some graphics
    TFT.cls();
    TFT.set_font((unsigned char*) Arial24x23);
    TFT.locate(100,100);
    TFT.printf("Graphic");

    TFT.line(0,0,100,0,Green);
    TFT.line(0,0,0,200,Green);
    TFT.line(0,0,100,200,Green);

    TFT.rect(100,50,150,100,Red);
    TFT.fillrect(180,25,220,70,Blue);

    TFT.circle(80,150,33,White);
    TFT.fillcircle(160,190,20,Yellow);

    double s;

    for (i=0; i<320; i++) {
        s =20 * sin((long double) i / 10 );
        TFT.pixel(i,100 + (int)s ,Red);
    }

/media/uploads/dreschpe/grafik.jpg

   // bigger text
    TFT.foreground(White);
    TFT.background(Blue);
    TFT.cls();
    TFT.set_font((unsigned char*) Arial24x23);
    TFT.locate(0,0);
    TFT.printf("Different Fonts :");

    TFT.set_font((unsigned char*) Neu42x35);
    TFT.locate(0,30);
    TFT.printf("Hello Mbed 1");
    TFT.set_font((unsigned char*) Arial24x23);
    TFT.locate(20,80);
    TFT.printf("Hello Mbed 2");
    TFT.set_font((unsigned char*) Arial12x12);
    TFT.locate(35,120);
    TFT.printf("Hello Mbed 3");

/media/uploads/dreschpe/fonts2.jpg

    // mbed logo from flash
    // defined in graphics.c
    //__align(4)
    //unsigned char p1[18920] = {
    //0xFF, 0xFF, 0xFF, 0xFF, 0xFF, 0xFF, ....
    // 
    TFT.background(Black);
    TFT.cls();

    TFT.locate(10,10);
    TFT.printf("Graphic from Flash");

    TFT.Bitmap(90,90,172,55,p1);

/media/uploads/dreschpe/mbed.jpg

  
  #include "SDFileSystem.h"
  // connect a sd-card to the second spi or use the local filesystem of the LPC   
  SDFileSystem sd(p11, p12, p13, p14, "sd"); // mosi,miso,sck,cs
  TFT.cls();
  TFT.locate(10,110);
  TFT.printf("Graphic from external SD-card");
  int err = TFT.BMP_16(1,140,"/sd/test.bmp");  // load test.bmp from external SD-card
  TFT.locate(10,120);
  if (err != 1) TFT.printf(" - Err: %d",err);

/media/uploads/dreschpe/bmp16.jpg

Committer:
dreschpe
Date:
Sun Jan 26 16:58:45 2014 +0000
Revision:
6:fe07ae8329f7
Parent:
2:0a16083193a4
Child:
8:07ad6a48a85d
Child:
11:59eca2723ec5
Change the bmp16 interface to also use SD-cards to load pictures.

Who changed what in which revision?

UserRevisionLine numberNew contents of line
dreschpe 2:0a16083193a4 1 /* mbed library for 240*320 pixel display TFT based on ILI9341 LCD Controller
dreschpe 2:0a16083193a4 2 * Copyright (c) 2013 Peter Drescher - DC2PD
dreschpe 0:da1bf437cbc1 3 *
dreschpe 0:da1bf437cbc1 4 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
dreschpe 0:da1bf437cbc1 5 * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
dreschpe 0:da1bf437cbc1 6 * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
dreschpe 0:da1bf437cbc1 7 * AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
dreschpe 0:da1bf437cbc1 8 * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
dreschpe 0:da1bf437cbc1 9 * OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
dreschpe 0:da1bf437cbc1 10 * THE SOFTWARE.
dreschpe 0:da1bf437cbc1 11 */
dreschpe 0:da1bf437cbc1 12
dreschpe 0:da1bf437cbc1 13 /* change the char position handling
dreschpe 0:da1bf437cbc1 14 * use pixel (x,y) instadt of colum row */
dreschpe 0:da1bf437cbc1 15
dreschpe 0:da1bf437cbc1 16
dreschpe 0:da1bf437cbc1 17 #ifndef MBED_SPI_TFT_ILI9341_H
dreschpe 0:da1bf437cbc1 18 #define MBED_SPI_TFT_ILI9341_H
dreschpe 0:da1bf437cbc1 19
dreschpe 0:da1bf437cbc1 20 #include "mbed.h"
dreschpe 0:da1bf437cbc1 21 #include "GraphicsDisplay.h"
dreschpe 0:da1bf437cbc1 22
dreschpe 0:da1bf437cbc1 23 #define RGB(r,g,b) (((r&0xF8)<<8)|((g&0xFC)<<3)|((b&0xF8)>>3)) //5 red | 6 green | 5 blue
dreschpe 0:da1bf437cbc1 24
dreschpe 0:da1bf437cbc1 25
dreschpe 0:da1bf437cbc1 26 /* some RGB color definitions */
dreschpe 0:da1bf437cbc1 27 #define Black 0x0000 /* 0, 0, 0 */
dreschpe 0:da1bf437cbc1 28 #define Navy 0x000F /* 0, 0, 128 */
dreschpe 0:da1bf437cbc1 29 #define DarkGreen 0x03E0 /* 0, 128, 0 */
dreschpe 0:da1bf437cbc1 30 #define DarkCyan 0x03EF /* 0, 128, 128 */
dreschpe 0:da1bf437cbc1 31 #define Maroon 0x7800 /* 128, 0, 0 */
dreschpe 0:da1bf437cbc1 32 #define Purple 0x780F /* 128, 0, 128 */
dreschpe 0:da1bf437cbc1 33 #define Olive 0x7BE0 /* 128, 128, 0 */
dreschpe 0:da1bf437cbc1 34 #define LightGrey 0xC618 /* 192, 192, 192 */
dreschpe 0:da1bf437cbc1 35 #define DarkGrey 0x7BEF /* 128, 128, 128 */
dreschpe 0:da1bf437cbc1 36 #define Blue 0x001F /* 0, 0, 255 */
dreschpe 0:da1bf437cbc1 37 #define Green 0x07E0 /* 0, 255, 0 */
dreschpe 0:da1bf437cbc1 38 #define Cyan 0x07FF /* 0, 255, 255 */
dreschpe 0:da1bf437cbc1 39 #define Red 0xF800 /* 255, 0, 0 */
dreschpe 0:da1bf437cbc1 40 #define Magenta 0xF81F /* 255, 0, 255 */
dreschpe 0:da1bf437cbc1 41 #define Yellow 0xFFE0 /* 255, 255, 0 */
dreschpe 0:da1bf437cbc1 42 #define White 0xFFFF /* 255, 255, 255 */
dreschpe 0:da1bf437cbc1 43 #define Orange 0xFD20 /* 255, 165, 0 */
dreschpe 0:da1bf437cbc1 44 #define GreenYellow 0xAFE5 /* 173, 255, 47 */
dreschpe 0:da1bf437cbc1 45
dreschpe 0:da1bf437cbc1 46
dreschpe 0:da1bf437cbc1 47 /** Display control class, based on GraphicsDisplay and TextDisplay
dreschpe 0:da1bf437cbc1 48 *
dreschpe 0:da1bf437cbc1 49 * Example:
dreschpe 0:da1bf437cbc1 50 * @code
dreschpe 0:da1bf437cbc1 51 * #include "stdio.h"
dreschpe 0:da1bf437cbc1 52 * #include "mbed.h"
dreschpe 0:da1bf437cbc1 53 * #include "SPI_TFT_ILI9341.h"
dreschpe 0:da1bf437cbc1 54 * #include "string"
dreschpe 0:da1bf437cbc1 55 * #include "Arial12x12.h"
dreschpe 0:da1bf437cbc1 56 * #include "Arial24x23.h"
dreschpe 0:da1bf437cbc1 57 *
dreschpe 0:da1bf437cbc1 58 *
dreschpe 0:da1bf437cbc1 59 *
dreschpe 2:0a16083193a4 60 * // the TFT is connected to SPI pin 5-7 and IO's 8-10
dreschpe 1:6d6125e88de7 61 * SPI_TFT_ILI9341 TFT(p5, p6, p7, p8, p9, p10,"TFT"); // mosi, miso, sclk, cs, reset, dc
dreschpe 2:0a16083193a4 62 * If your display need a signal for switch the backlight use a aditional IO pin in your program
dreschpe 2:0a16083193a4 63 *
dreschpe 0:da1bf437cbc1 64 * int main() {
dreschpe 0:da1bf437cbc1 65 * TFT.claim(stdout); // send stdout to the TFT display
dreschpe 0:da1bf437cbc1 66 * //TFT.claim(stderr); // send stderr to the TFT display
dreschpe 0:da1bf437cbc1 67 *
dreschpe 0:da1bf437cbc1 68 * TFT.background(Black); // set background to black
dreschpe 0:da1bf437cbc1 69 * TFT.foreground(White); // set chars to white
dreschpe 0:da1bf437cbc1 70 * TFT.cls(); // clear the screen
dreschpe 0:da1bf437cbc1 71 * TFT.set_font((unsigned char*) Arial12x12); // select the font
dreschpe 0:da1bf437cbc1 72 *
dreschpe 0:da1bf437cbc1 73 * TFT.set_orientation(0);
dreschpe 0:da1bf437cbc1 74 * printf(" Hello Mbed 0");
dreschpe 0:da1bf437cbc1 75 * TFT.set_font((unsigned char*) Arial24x23); // select font 2
dreschpe 0:da1bf437cbc1 76 * TFT.locate(48,115);
dreschpe 0:da1bf437cbc1 77 * TFT.printf("Bigger Font");
dreschpe 0:da1bf437cbc1 78 * }
dreschpe 0:da1bf437cbc1 79 * @endcode
dreschpe 0:da1bf437cbc1 80 */
dreschpe 0:da1bf437cbc1 81 class SPI_TFT_ILI9341 : public GraphicsDisplay {
dreschpe 0:da1bf437cbc1 82 public:
dreschpe 0:da1bf437cbc1 83
dreschpe 1:6d6125e88de7 84 /** Create a SPI_TFT object connected to SPI and three pins
dreschpe 0:da1bf437cbc1 85 *
dreschpe 1:6d6125e88de7 86 * @param mosi pin connected to SDO of display
dreschpe 1:6d6125e88de7 87 * @param miso pin connected to SDI of display
dreschpe 1:6d6125e88de7 88 * @param sclk pin connected to RS of display
dreschpe 0:da1bf437cbc1 89 * @param cs pin connected to CS of display
dreschpe 0:da1bf437cbc1 90 * @param reset pin connected to RESET of display
dreschpe 1:6d6125e88de7 91 * @param dc pin connected to WR of display
dreschpe 1:6d6125e88de7 92 * the IM pins have to be set to 1110 (3-0)
dreschpe 0:da1bf437cbc1 93 */
dreschpe 0:da1bf437cbc1 94 SPI_TFT_ILI9341(PinName mosi, PinName miso, PinName sclk, PinName cs, PinName reset, PinName dc, const char* name ="TFT");
dreschpe 0:da1bf437cbc1 95
dreschpe 0:da1bf437cbc1 96 /** Get the width of the screen in pixel
dreschpe 0:da1bf437cbc1 97 *
dreschpe 0:da1bf437cbc1 98 * @returns width of screen in pixel
dreschpe 0:da1bf437cbc1 99 *
dreschpe 0:da1bf437cbc1 100 */
dreschpe 0:da1bf437cbc1 101 virtual int width();
dreschpe 0:da1bf437cbc1 102
dreschpe 0:da1bf437cbc1 103 /** Get the height of the screen in pixel
dreschpe 0:da1bf437cbc1 104 *
dreschpe 0:da1bf437cbc1 105 * @returns height of screen in pixel
dreschpe 0:da1bf437cbc1 106 *
dreschpe 0:da1bf437cbc1 107 */
dreschpe 0:da1bf437cbc1 108 virtual int height();
dreschpe 0:da1bf437cbc1 109
dreschpe 0:da1bf437cbc1 110 /** Draw a pixel at x,y with color
dreschpe 0:da1bf437cbc1 111 *
dreschpe 0:da1bf437cbc1 112 * @param x horizontal position
dreschpe 0:da1bf437cbc1 113 * @param y vertical position
dreschpe 0:da1bf437cbc1 114 * @param color 16 bit pixel color
dreschpe 0:da1bf437cbc1 115 */
dreschpe 0:da1bf437cbc1 116 virtual void pixel(int x, int y,int colour);
dreschpe 0:da1bf437cbc1 117
dreschpe 0:da1bf437cbc1 118 /** draw a circle
dreschpe 0:da1bf437cbc1 119 *
dreschpe 0:da1bf437cbc1 120 * @param x0,y0 center
dreschpe 0:da1bf437cbc1 121 * @param r radius
dreschpe 0:da1bf437cbc1 122 * @param color 16 bit color *
dreschpe 0:da1bf437cbc1 123 *
dreschpe 0:da1bf437cbc1 124 */
dreschpe 0:da1bf437cbc1 125 void circle(int x, int y, int r, int colour);
dreschpe 0:da1bf437cbc1 126
dreschpe 0:da1bf437cbc1 127 /** draw a filled circle
dreschpe 0:da1bf437cbc1 128 *
dreschpe 0:da1bf437cbc1 129 * @param x0,y0 center
dreschpe 0:da1bf437cbc1 130 * @param r radius
dreschpe 0:da1bf437cbc1 131 * @param color 16 bit color *
dreschpe 0:da1bf437cbc1 132 */
dreschpe 0:da1bf437cbc1 133 void fillcircle(int x, int y, int r, int colour);
dreschpe 0:da1bf437cbc1 134
dreschpe 0:da1bf437cbc1 135
dreschpe 0:da1bf437cbc1 136 /** draw a 1 pixel line
dreschpe 0:da1bf437cbc1 137 *
dreschpe 0:da1bf437cbc1 138 * @param x0,y0 start point
dreschpe 0:da1bf437cbc1 139 * @param x1,y1 stop point
dreschpe 0:da1bf437cbc1 140 * @param color 16 bit color
dreschpe 0:da1bf437cbc1 141 *
dreschpe 0:da1bf437cbc1 142 */
dreschpe 0:da1bf437cbc1 143 void line(int x0, int y0, int x1, int y1, int colour);
dreschpe 0:da1bf437cbc1 144
dreschpe 0:da1bf437cbc1 145 /** draw a rect
dreschpe 0:da1bf437cbc1 146 *
dreschpe 0:da1bf437cbc1 147 * @param x0,y0 top left corner
dreschpe 0:da1bf437cbc1 148 * @param x1,y1 down right corner
dreschpe 0:da1bf437cbc1 149 * @param color 16 bit color
dreschpe 0:da1bf437cbc1 150 * *
dreschpe 0:da1bf437cbc1 151 */
dreschpe 0:da1bf437cbc1 152 void rect(int x0, int y0, int x1, int y1, int colour);
dreschpe 0:da1bf437cbc1 153
dreschpe 0:da1bf437cbc1 154 /** draw a filled rect
dreschpe 0:da1bf437cbc1 155 *
dreschpe 0:da1bf437cbc1 156 * @param x0,y0 top left corner
dreschpe 0:da1bf437cbc1 157 * @param x1,y1 down right corner
dreschpe 0:da1bf437cbc1 158 * @param color 16 bit color
dreschpe 0:da1bf437cbc1 159 *
dreschpe 0:da1bf437cbc1 160 */
dreschpe 0:da1bf437cbc1 161 void fillrect(int x0, int y0, int x1, int y1, int colour);
dreschpe 0:da1bf437cbc1 162
dreschpe 0:da1bf437cbc1 163 /** setup cursor position
dreschpe 0:da1bf437cbc1 164 *
dreschpe 0:da1bf437cbc1 165 * @param x x-position (top left)
dreschpe 0:da1bf437cbc1 166 * @param y y-position
dreschpe 0:da1bf437cbc1 167 */
dreschpe 0:da1bf437cbc1 168 virtual void locate(int x, int y);
dreschpe 0:da1bf437cbc1 169
dreschpe 0:da1bf437cbc1 170 /** Fill the screen with _backgroun color
dreschpe 0:da1bf437cbc1 171 *
dreschpe 0:da1bf437cbc1 172 */
dreschpe 0:da1bf437cbc1 173 virtual void cls (void);
dreschpe 0:da1bf437cbc1 174
dreschpe 0:da1bf437cbc1 175 /** calculate the max number of char in a line
dreschpe 0:da1bf437cbc1 176 *
dreschpe 0:da1bf437cbc1 177 * @returns max columns
dreschpe 0:da1bf437cbc1 178 * depends on actual font size
dreschpe 0:da1bf437cbc1 179 *
dreschpe 0:da1bf437cbc1 180 */
dreschpe 0:da1bf437cbc1 181 virtual int columns(void);
dreschpe 0:da1bf437cbc1 182
dreschpe 0:da1bf437cbc1 183 /** calculate the max number of columns
dreschpe 0:da1bf437cbc1 184 *
dreschpe 0:da1bf437cbc1 185 * @returns max column
dreschpe 0:da1bf437cbc1 186 * depends on actual font size
dreschpe 0:da1bf437cbc1 187 *
dreschpe 0:da1bf437cbc1 188 */
dreschpe 0:da1bf437cbc1 189 virtual int rows(void);
dreschpe 0:da1bf437cbc1 190
dreschpe 0:da1bf437cbc1 191 /** put a char on the screen
dreschpe 0:da1bf437cbc1 192 *
dreschpe 0:da1bf437cbc1 193 * @param value char to print
dreschpe 0:da1bf437cbc1 194 * @returns printed char
dreschpe 0:da1bf437cbc1 195 *
dreschpe 0:da1bf437cbc1 196 */
dreschpe 0:da1bf437cbc1 197 virtual int _putc(int value);
dreschpe 0:da1bf437cbc1 198
dreschpe 0:da1bf437cbc1 199 /** draw a character on given position out of the active font to the TFT
dreschpe 0:da1bf437cbc1 200 *
dreschpe 0:da1bf437cbc1 201 * @param x x-position of char (top left)
dreschpe 0:da1bf437cbc1 202 * @param y y-position
dreschpe 0:da1bf437cbc1 203 * @param c char to print
dreschpe 0:da1bf437cbc1 204 *
dreschpe 0:da1bf437cbc1 205 */
dreschpe 0:da1bf437cbc1 206 virtual void character(int x, int y, int c);
dreschpe 0:da1bf437cbc1 207
dreschpe 0:da1bf437cbc1 208 /** paint a bitmap on the TFT
dreschpe 0:da1bf437cbc1 209 *
dreschpe 0:da1bf437cbc1 210 * @param x,y : upper left corner
dreschpe 0:da1bf437cbc1 211 * @param w width of bitmap
dreschpe 0:da1bf437cbc1 212 * @param h high of bitmap
dreschpe 0:da1bf437cbc1 213 * @param *bitmap pointer to the bitmap data
dreschpe 0:da1bf437cbc1 214 *
dreschpe 0:da1bf437cbc1 215 * bitmap format: 16 bit R5 G6 B5
dreschpe 0:da1bf437cbc1 216 *
dreschpe 0:da1bf437cbc1 217 * use Gimp to create / load , save as BMP, option 16 bit R5 G6 B5
dreschpe 0:da1bf437cbc1 218 * use winhex to load this file and mark data stating at offset 0x46 to end
dreschpe 0:da1bf437cbc1 219 * use edit -> copy block -> C Source to export C array
dreschpe 0:da1bf437cbc1 220 * paste this array into your program
dreschpe 0:da1bf437cbc1 221 *
dreschpe 0:da1bf437cbc1 222 * define the array as static const unsigned char to put it into flash memory
dreschpe 0:da1bf437cbc1 223 * cast the pointer to (unsigned char *) :
dreschpe 0:da1bf437cbc1 224 * tft.Bitmap(10,40,309,50,(unsigned char *)scala);
dreschpe 0:da1bf437cbc1 225 */
dreschpe 0:da1bf437cbc1 226 void Bitmap(unsigned int x, unsigned int y, unsigned int w, unsigned int h,unsigned char *bitmap);
dreschpe 0:da1bf437cbc1 227
dreschpe 0:da1bf437cbc1 228
dreschpe 6:fe07ae8329f7 229 /** paint a 16 bit BMP from filesytem on the TFT (slow)
dreschpe 6:fe07ae8329f7 230 *
dreschpe 6:fe07ae8329f7 231 * @param x,y : position of upper left corner
dreschpe 6:fe07ae8329f7 232 * @param *Name_BMP name of the BMP file with drive: "/local/test.bmp"
dreschpe 0:da1bf437cbc1 233 *
dreschpe 0:da1bf437cbc1 234 * @returns 1 if bmp file was found and painted
dreschpe 6:fe07ae8329f7 235 * @returns 0 if bmp file was found not found
dreschpe 6:fe07ae8329f7 236 * @returns -1 if file is no bmp
dreschpe 6:fe07ae8329f7 237 * @returns -2 if bmp file is no 16 bit bmp
dreschpe 0:da1bf437cbc1 238 * @returns -3 if bmp file is to big for screen
dreschpe 0:da1bf437cbc1 239 * @returns -4 if buffer malloc go wrong
dreschpe 0:da1bf437cbc1 240 *
dreschpe 0:da1bf437cbc1 241 * bitmap format: 16 bit R5 G6 B5
dreschpe 0:da1bf437cbc1 242 *
dreschpe 0:da1bf437cbc1 243 * use Gimp to create / load , save as BMP, option 16 bit R5 G6 B5
dreschpe 6:fe07ae8329f7 244 * copy to internal file system or SD card
dreschpe 0:da1bf437cbc1 245 */
dreschpe 0:da1bf437cbc1 246
dreschpe 0:da1bf437cbc1 247 int BMP_16(unsigned int x, unsigned int y, const char *Name_BMP);
dreschpe 0:da1bf437cbc1 248
dreschpe 0:da1bf437cbc1 249
dreschpe 0:da1bf437cbc1 250
dreschpe 0:da1bf437cbc1 251 /** select the font to use
dreschpe 0:da1bf437cbc1 252 *
dreschpe 0:da1bf437cbc1 253 * @param f pointer to font array
dreschpe 0:da1bf437cbc1 254 *
dreschpe 0:da1bf437cbc1 255 * font array can created with GLCD Font Creator from http://www.mikroe.com
dreschpe 0:da1bf437cbc1 256 * you have to add 4 parameter at the beginning of the font array to use:
dreschpe 0:da1bf437cbc1 257 * - the number of byte / char
dreschpe 0:da1bf437cbc1 258 * - the vertial size in pixel
dreschpe 0:da1bf437cbc1 259 * - the horizontal size in pixel
dreschpe 0:da1bf437cbc1 260 * - the number of byte per vertical line
dreschpe 0:da1bf437cbc1 261 * you also have to change the array to char[]
dreschpe 0:da1bf437cbc1 262 *
dreschpe 0:da1bf437cbc1 263 */
dreschpe 0:da1bf437cbc1 264 void set_font(unsigned char* f);
dreschpe 0:da1bf437cbc1 265
dreschpe 0:da1bf437cbc1 266 /** Set the orientation of the screen
dreschpe 0:da1bf437cbc1 267 * x,y: 0,0 is always top left
dreschpe 0:da1bf437cbc1 268 *
dreschpe 2:0a16083193a4 269 * @param o direction to use the screen (0-3)
dreschpe 0:da1bf437cbc1 270 *
dreschpe 0:da1bf437cbc1 271 */
dreschpe 2:0a16083193a4 272 void set_orientation(unsigned int o);
dreschpe 6:fe07ae8329f7 273
dreschpe 6:fe07ae8329f7 274
dreschpe 6:fe07ae8329f7 275 /** read out the manufacturer ID of the LCD
dreschpe 6:fe07ae8329f7 276 * can used for checking the connection to the display
dreschpe 6:fe07ae8329f7 277 * @returns ID
dreschpe 6:fe07ae8329f7 278 */
dreschpe 6:fe07ae8329f7 279 int Read_ID(void);
dreschpe 6:fe07ae8329f7 280
dreschpe 6:fe07ae8329f7 281
dreschpe 0:da1bf437cbc1 282
dreschpe 0:da1bf437cbc1 283 SPI _spi;
dreschpe 0:da1bf437cbc1 284 DigitalOut _cs;
dreschpe 0:da1bf437cbc1 285 DigitalOut _reset;
dreschpe 0:da1bf437cbc1 286 DigitalOut _dc;
dreschpe 0:da1bf437cbc1 287 unsigned char* font;
dreschpe 0:da1bf437cbc1 288
dreschpe 0:da1bf437cbc1 289
dreschpe 0:da1bf437cbc1 290
dreschpe 0:da1bf437cbc1 291
dreschpe 0:da1bf437cbc1 292 protected:
dreschpe 0:da1bf437cbc1 293
dreschpe 0:da1bf437cbc1 294 /** Set draw window region to whole screen
dreschpe 0:da1bf437cbc1 295 *
dreschpe 0:da1bf437cbc1 296 */
dreschpe 0:da1bf437cbc1 297 void WindowMax (void);
dreschpe 0:da1bf437cbc1 298
dreschpe 0:da1bf437cbc1 299
dreschpe 0:da1bf437cbc1 300 /** draw a horizontal line
dreschpe 0:da1bf437cbc1 301 *
dreschpe 0:da1bf437cbc1 302 * @param x0 horizontal start
dreschpe 0:da1bf437cbc1 303 * @param x1 horizontal stop
dreschpe 0:da1bf437cbc1 304 * @param y vertical position
dreschpe 0:da1bf437cbc1 305 * @param color 16 bit color
dreschpe 0:da1bf437cbc1 306 *
dreschpe 0:da1bf437cbc1 307 */
dreschpe 0:da1bf437cbc1 308 void hline(int x0, int x1, int y, int colour);
dreschpe 0:da1bf437cbc1 309
dreschpe 0:da1bf437cbc1 310 /** draw a vertical line
dreschpe 0:da1bf437cbc1 311 *
dreschpe 0:da1bf437cbc1 312 * @param x horizontal position
dreschpe 0:da1bf437cbc1 313 * @param y0 vertical start
dreschpe 0:da1bf437cbc1 314 * @param y1 vertical stop
dreschpe 0:da1bf437cbc1 315 * @param color 16 bit color
dreschpe 0:da1bf437cbc1 316 */
dreschpe 0:da1bf437cbc1 317 void vline(int y0, int y1, int x, int colour);
dreschpe 0:da1bf437cbc1 318
dreschpe 0:da1bf437cbc1 319 /** Set draw window region
dreschpe 0:da1bf437cbc1 320 *
dreschpe 0:da1bf437cbc1 321 * @param x horizontal position
dreschpe 0:da1bf437cbc1 322 * @param y vertical position
dreschpe 0:da1bf437cbc1 323 * @param w window width in pixel
dreschpe 0:da1bf437cbc1 324 * @param h window height in pixels
dreschpe 0:da1bf437cbc1 325 */
dreschpe 0:da1bf437cbc1 326 virtual void window (unsigned int x,unsigned int y, unsigned int w, unsigned int h);
dreschpe 0:da1bf437cbc1 327
dreschpe 0:da1bf437cbc1 328
dreschpe 0:da1bf437cbc1 329
dreschpe 6:fe07ae8329f7 330 /** Init the ILI9341 controller
dreschpe 0:da1bf437cbc1 331 *
dreschpe 0:da1bf437cbc1 332 */
dreschpe 0:da1bf437cbc1 333 void tft_reset();
dreschpe 0:da1bf437cbc1 334
dreschpe 0:da1bf437cbc1 335 /** Write data to the LCD controller
dreschpe 0:da1bf437cbc1 336 *
dreschpe 0:da1bf437cbc1 337 * @param dat data written to LCD controller
dreschpe 0:da1bf437cbc1 338 *
dreschpe 0:da1bf437cbc1 339 */
dreschpe 0:da1bf437cbc1 340 //void wr_dat(unsigned int value);
dreschpe 0:da1bf437cbc1 341 void wr_dat(unsigned char value);
dreschpe 0:da1bf437cbc1 342
dreschpe 0:da1bf437cbc1 343 /** Write a command the LCD controller
dreschpe 0:da1bf437cbc1 344 *
dreschpe 0:da1bf437cbc1 345 * @param cmd: command to be written
dreschpe 0:da1bf437cbc1 346 *
dreschpe 0:da1bf437cbc1 347 */
dreschpe 0:da1bf437cbc1 348 void wr_cmd(unsigned char value);
dreschpe 0:da1bf437cbc1 349
dreschpe 0:da1bf437cbc1 350 /** Start data sequence to the LCD controller
dreschpe 0:da1bf437cbc1 351 *
dreschpe 0:da1bf437cbc1 352 */
dreschpe 0:da1bf437cbc1 353 //void wr_dat_start();
dreschpe 0:da1bf437cbc1 354
dreschpe 0:da1bf437cbc1 355 /** Stop of data writing to the LCD controller
dreschpe 0:da1bf437cbc1 356 *
dreschpe 0:da1bf437cbc1 357 */
dreschpe 0:da1bf437cbc1 358 //void wr_dat_stop();
dreschpe 0:da1bf437cbc1 359
dreschpe 0:da1bf437cbc1 360 /** write data to the LCD controller
dreschpe 0:da1bf437cbc1 361 *
dreschpe 0:da1bf437cbc1 362 * @param data to be written
dreschpe 0:da1bf437cbc1 363 * *
dreschpe 0:da1bf437cbc1 364 */
dreschpe 0:da1bf437cbc1 365 //void wr_dat_only(unsigned short dat);
dreschpe 0:da1bf437cbc1 366
dreschpe 6:fe07ae8329f7 367 /** Read byte from the LCD controller
dreschpe 0:da1bf437cbc1 368 *
dreschpe 6:fe07ae8329f7 369 * @param cmd comand to controller
dreschpe 0:da1bf437cbc1 370 * @returns data from LCD controller
dreschpe 0:da1bf437cbc1 371 *
dreschpe 0:da1bf437cbc1 372 */
dreschpe 6:fe07ae8329f7 373 char rd_byte(unsigned char cmd);
dreschpe 6:fe07ae8329f7 374
dreschpe 6:fe07ae8329f7 375
dreschpe 6:fe07ae8329f7 376 int rd_32(unsigned char cmd);
dreschpe 6:fe07ae8329f7 377
dreschpe 0:da1bf437cbc1 378
dreschpe 0:da1bf437cbc1 379 /** Write a value to the to a LCD register
dreschpe 0:da1bf437cbc1 380 *
dreschpe 0:da1bf437cbc1 381 * @param reg register to be written
dreschpe 0:da1bf437cbc1 382 * @param val data to be written
dreschpe 0:da1bf437cbc1 383 */
dreschpe 0:da1bf437cbc1 384 //void wr_reg (unsigned char reg, unsigned char val);
dreschpe 0:da1bf437cbc1 385
dreschpe 0:da1bf437cbc1 386 /** Read a LCD register
dreschpe 0:da1bf437cbc1 387 *
dreschpe 0:da1bf437cbc1 388 * @param reg register to be read
dreschpe 0:da1bf437cbc1 389 * @returns value of the register
dreschpe 0:da1bf437cbc1 390 */
dreschpe 0:da1bf437cbc1 391 //unsigned short rd_reg (unsigned char reg);
dreschpe 0:da1bf437cbc1 392
dreschpe 0:da1bf437cbc1 393 unsigned char spi_port;
dreschpe 0:da1bf437cbc1 394 unsigned int orientation;
dreschpe 0:da1bf437cbc1 395 unsigned int char_x;
dreschpe 0:da1bf437cbc1 396 unsigned int char_y;
dreschpe 6:fe07ae8329f7 397 PinName clk;
dreschpe 0:da1bf437cbc1 398
dreschpe 0:da1bf437cbc1 399
dreschpe 0:da1bf437cbc1 400 };
dreschpe 0:da1bf437cbc1 401
dreschpe 0:da1bf437cbc1 402 #endif