Some changes to the SSD1963 driver to cater for new boards

ugfx_release_2.6
inmarket 2015-02-23 18:16:33 +10:00
parent 9da63a2aaa
commit 53aba6de89
1 changed files with 39 additions and 17 deletions

View File

@ -90,23 +90,23 @@ static inline void set_viewport(GDisplay* g) {
write_data16(g, g->p.y); write_data16(g, g->p.y);
write_data16(g, g->p.y+g->p.cy-1); write_data16(g, g->p.y+g->p.cy-1);
write_index(g, SSD1963_SET_PAGE_ADDRESS); write_index(g, SSD1963_SET_PAGE_ADDRESS);
write_data16(g, GDISP_SCREEN_HEIGHT-1 - (g->p.x+g->p.cx-1) ); write_data16(g, g->g.Width - g->p.x - g->p.cx);
write_data16(g, GDISP_SCREEN_HEIGHT-1 - (g->p.x)); write_data16(g, g->g.Width-1 - g->p.x);
write_index(g, SSD1963_WRITE_MEMORY_START); write_index(g, SSD1963_WRITE_MEMORY_START);
break; break;
case GDISP_ROTATE_180: case GDISP_ROTATE_180:
write_index(g, SSD1963_SET_COLUMN_ADDRESS); write_index(g, SSD1963_SET_COLUMN_ADDRESS);
write_data16(g, GDISP_SCREEN_WIDTH-1 - (g->p.x+g->p.cx-1)); write_data16(g, g->g.Width - g->p.x - g->p.cx);
write_data16(g, GDISP_SCREEN_WIDTH-1 - (g->p.x)); write_data16(g, g->g.Width-1 - g->p.x);
write_index(g, SSD1963_SET_PAGE_ADDRESS); write_index(g, SSD1963_SET_PAGE_ADDRESS);
write_data16(g, GDISP_SCREEN_HEIGHT-1 - (g->p.y+g->p.cy-1)); write_data16(g, g->g.Height - g->p.y - g->p.cy);
write_data16(g, GDISP_SCREEN_HEIGHT-1 - (g->p.y)); write_data16(g, g->g.Height-1 - g->p.y);
write_index(g, SSD1963_WRITE_MEMORY_START); write_index(g, SSD1963_WRITE_MEMORY_START);
break; break;
case GDISP_ROTATE_270: case GDISP_ROTATE_270:
write_index(g, SSD1963_SET_COLUMN_ADDRESS); write_index(g, SSD1963_SET_COLUMN_ADDRESS);
write_data16(g, GDISP_SCREEN_WIDTH-1 - (g->p.y+g->p.cy-1)); write_data16(g, g->g.Height - g->p.y - g->p.cy);
write_data16(g, GDISP_SCREEN_WIDTH-1 - (g->p.y)); write_data16(g, g->g.Height-1 - g->p.y);
write_index(g, SSD1963_SET_PAGE_ADDRESS); write_index(g, SSD1963_SET_PAGE_ADDRESS);
write_data16(g, g->p.x); write_data16(g, g->p.x);
write_data16(g, g->p.x+g->p.cx-1); write_data16(g, g->p.x+g->p.cx-1);
@ -128,18 +128,29 @@ static inline void set_backlight(GDisplay *g, uint8_t percent) {
// connected to a LED connection on the breakout board // connected to a LED connection on the breakout board
write_index(g, SSD1963_SET_PWM_CONF); //set PWM for BackLight write_index(g, SSD1963_SET_PWM_CONF); //set PWM for BackLight
#if SSD1963_INIT_METHOD_2
write_data(g, 0x05);
// write_data(g, 0x0E); // PWMF[7:0] = 2, PWM base freq = PLL/(256*(1+5))/256 = 300Hz for a PLL freq = 120MHz (source: Displaytech)
write_data(g, 0xFF); // Dummy data (not needed DBC is in control)
#else
write_data(g, 0x01); write_data(g, 0x01);
// write_data(g, 0x0E); // PWMF[7:0] = 2, PWM base freq = PLL/(256*(1+5))/256 = 300Hz for a PLL freq = 120MHz (source: Displaytech) // write_data(g, 0x0E); // PWMF[7:0] = 2, PWM base freq = PLL/(256*(1+5))/256 = 300Hz for a PLL freq = 120MHz (source: Displaytech)
#endif
if (percent == 0xFF) // use percent==0xFF to turn off SSD1963 pwm in power SLEEP or DEEP SLEEP mode if (percent == 0xFF) // use percent==0xFF to turn off SSD1963 pwm in power SLEEP or DEEP SLEEP mode
write_data(g, 0x00); write_data(g, 0x00);
else if (percent >= 100) else if (percent >= 100)
write_data(g, 0x00FF); // Fully on for any percentage >= 100 write_data(g, 0x00FF); // Fully on for any percentage >= 100
else else
write_data(g, (percent*255)/100 & 0x00FF); write_data(g, (percent*255)/100 & 0x00FF);
#if SSD1963_INIT_METHOD_2
write_data(g, 0x00); // DBC minimum brightness
write_data(g, 0x00); // Brightness prescaler - active when Transition Effect enable A5 = 1
#else
write_data(g, 0x01); // Controlled by host (not DBC), enabled write_data(g, 0x01); // Controlled by host (not DBC), enabled
write_data(g, 0xFF); // DBC manual brightness (not used - zero would work) write_data(g, 0xFF); // DBC manual brightness (not used - zero would work)
write_data(g, 0x60); // DBC minimum brightness (not used - zero would work) write_data(g, 0x60); // DBC minimum brightness (not used - zero would work)
write_data(g, 0x0F); // Brightness prescaler - active when Transition Effect enable A5 = 1 write_data(g, 0x0F); // Brightness prescaler - active when Transition Effect enable A5 = 1
#endif
} }
/*===========================================================================*/ /*===========================================================================*/
@ -166,9 +177,9 @@ LLDSPEC bool_t gdisp_lld_init(GDisplay *g) {
#if !GDISP_SSD1963_NO_INIT #if !GDISP_SSD1963_NO_INIT
// Hardware reset // Hardware reset
setpin_reset(g, TRUE); setpin_reset(g, TRUE);
gfxSleepMilliseconds(20); gfxSleepMilliseconds(100);
setpin_reset(g, FALSE); setpin_reset(g, FALSE);
gfxSleepMilliseconds(20); gfxSleepMilliseconds(200);
#endif #endif
// Get the bus for the following initialisation commands // Get the bus for the following initialisation commands
@ -176,19 +187,22 @@ LLDSPEC bool_t gdisp_lld_init(GDisplay *g) {
#if !GDISP_SSD1963_NO_INIT #if !GDISP_SSD1963_NO_INIT
write_index(g, SSD1963_SOFT_RESET); // Software reset - clears almost everything (apart from PLL) write_index(g, SSD1963_SOFT_RESET); // Software reset - clears almost everything (apart from PLL)
gfxSleepMilliseconds(5); write_index(g, SSD1963_SOFT_RESET); // Software reset - clears almost everything (apart from PLL)
write_index(g, SSD1963_SOFT_RESET); // Software reset - clears almost everything (apart from PLL)
gfxSleepMilliseconds(50);
/* Driver PLL config */ /* Driver PLL config */
write_index(g, SSD1963_SET_PLL_MN); write_index(g, SSD1963_SET_PLL_MN);
write_data(g, 35); // PLLclk = REFclk (10Mhz) * 36 (360Mhz) write_data(g, 35); // PLLclk = REFclk (10Mhz) * 36 (360Mhz)
write_data(g, 2); // SYSclk = PLLclk / 3 (120MHz) write_data(g, 2); // SYSclk = PLLclk / 3 (120MHz)
write_data(g, 4); // Apply calculation bit, else it is ignored //#if SSD1963_INIT_METHOD_2
write_data(g, 54); // Apply calculation bit, else it is ignored
//#else
// write_data(g, 4); // Apply calculation bit, else it is ignored
//#endif
write_reg(g, SSD1963_SET_PLL, 0x01); // Enable PLL write_reg(g, SSD1963_SET_PLL, 0x01); // Enable PLL
gfxSleepMilliseconds(5); gfxSleepMilliseconds(100);
write_reg(g, SSD1963_SET_PLL, 0x03); // Use PLL write_reg(g, SSD1963_SET_PLL, 0x03); // Use PLL
gfxSleepMilliseconds(5);
write_index(g, SSD1963_SOFT_RESET); // Software reset - clears almost everything (apart from PLL)
gfxSleepMilliseconds(5);
/* LCD panel parameters */ /* LCD panel parameters */
write_index(g, SSD1963_SET_GDISP_MODE); write_index(g, SSD1963_SET_GDISP_MODE);
@ -228,10 +242,14 @@ LLDSPEC bool_t gdisp_lld_init(GDisplay *g) {
write_data(g, lcdp->vpulse); write_data(g, lcdp->vpulse);
write_data(g, 0x00); write_data(g, 0x00);
write_data(g, 0x00); write_data(g, 0x00);
/* Enable DBC to control Backlight */
write_index(g, SSD1963_SET_DBC_CONF);
write_data(g, 0x2F);
#endif #endif
/* Tear effect indicator ON. This is used to tell the host MCU when the driver is not refreshing the panel (during front/back porch) */ /* Tear effect indicator ON. This is used to tell the host MCU when the driver is not refreshing the panel (during front/back porch) */
write_reg(g, SSD1963_SET_TEAR_ON, 0x00); //write_reg(g, SSD1963_SET_TEAR_ON, 0x00);
/* Turn on */ /* Turn on */
write_index(g, SSD1963_SET_DISPLAY_ON); write_index(g, SSD1963_SET_DISPLAY_ON);
@ -285,8 +303,10 @@ LLDSPEC bool_t gdisp_lld_init(GDisplay *g) {
break; break;
case powerOn: case powerOn:
acquire_bus(g); acquire_bus(g);
setreadmode(g);
dummy_read(g); dummy_read(g);
dummy_read(g); dummy_read(g);
setwritemode(g);
gfxSleepMilliseconds(100); // Wait for 1msec to let the PLL stable if was stopped by deep sleep mode gfxSleepMilliseconds(100); // Wait for 1msec to let the PLL stable if was stopped by deep sleep mode
write_index(g, SSD1963_EXIT_SLEEP_MODE); // need this in case we were in 'normal' sleep mode write_index(g, SSD1963_EXIT_SLEEP_MODE); // need this in case we were in 'normal' sleep mode
@ -359,7 +379,9 @@ LLDSPEC bool_t gdisp_lld_init(GDisplay *g) {
case GDISP_CONTROL_BACKLIGHT: case GDISP_CONTROL_BACKLIGHT:
if ((unsigned)g->p.ptr > 100) if ((unsigned)g->p.ptr > 100)
g->p.ptr = (void *)100; g->p.ptr = (void *)100;
acquire_bus(g);
set_backlight(g, (unsigned)g->p.ptr); set_backlight(g, (unsigned)g->p.ptr);
release_bus(g);
g->g.Backlight = (unsigned)g->p.ptr; g->g.Backlight = (unsigned)g->p.ptr;
return; return;