315 lines
9.6 KiB
C
315 lines
9.6 KiB
C
/*
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* This file is subject to the terms of the GFX License. If a copy of
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* the license was not distributed with this file, you can obtain one at:
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*
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* http://ugfx.org/license.html
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*/
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#include "gfx.h"
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#if GFX_USE_GDISP
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# define GDISP_DRIVER_VMT GDISPVMT_ST7565_QMK
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# include "gdisp_lld_config.h"
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# include "src/gdisp/gdisp_driver.h"
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# include "board_st7565.h"
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/*===========================================================================*/
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/* Driver local definitions. */
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/*===========================================================================*/
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# ifndef GDISP_SCREEN_HEIGHT
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# define GDISP_SCREEN_HEIGHT LCD_HEIGHT
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# endif
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# ifndef GDISP_SCREEN_WIDTH
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# define GDISP_SCREEN_WIDTH LCD_WIDTH
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# endif
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# ifndef GDISP_INITIAL_CONTRAST
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# define GDISP_INITIAL_CONTRAST 35
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# endif
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# ifndef GDISP_INITIAL_BACKLIGHT
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# define GDISP_INITIAL_BACKLIGHT 100
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# endif
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# define GDISP_FLG_NEEDFLUSH (GDISP_FLG_DRIVER << 0)
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# include "st7565.h"
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/*===========================================================================*/
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/* Driver config defaults for backward compatibility. */
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/*===========================================================================*/
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# ifndef ST7565_LCD_BIAS
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# define ST7565_LCD_BIAS ST7565_LCD_BIAS_7
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# endif
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# ifndef ST7565_ADC
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# define ST7565_ADC ST7565_ADC_NORMAL
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# endif
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# ifndef ST7565_COM_SCAN
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# define ST7565_COM_SCAN ST7565_COM_SCAN_INC
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# endif
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# ifndef ST7565_PAGE_ORDER
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# define ST7565_PAGE_ORDER 0, 1, 2, 3, 4, 5, 6, 7
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# endif
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/*===========================================================================*/
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/* Driver local functions. */
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/*===========================================================================*/
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// Some common routines and macros
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# define RAM(g) ((gU8 *)g->priv)
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# define write_cmd2(g, cmd1, cmd2) \
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{ \
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write_cmd(g, cmd1); \
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write_cmd(g, cmd2); \
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}
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# define write_cmd3(g, cmd1, cmd2, cmd3) \
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{ \
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write_cmd(g, cmd1); \
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write_cmd(g, cmd2); \
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write_cmd(g, cmd3); \
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}
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// Some common routines and macros
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# define delay(us) gfxSleepMicroseconds(us)
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# define delay_ms(ms) gfxSleepMilliseconds(ms)
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# define xyaddr(x, y) ((x) + ((y) >> 3) * GDISP_SCREEN_WIDTH)
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# define xybit(y) (1 << ((y)&7))
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/*===========================================================================*/
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/* Driver exported functions. */
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/*===========================================================================*/
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/*
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* As this controller can't update on a pixel boundary we need to maintain the
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* the entire display surface in memory so that we can do the necessary bit
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* operations. Fortunately it is a small display in monochrome.
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* 64 * 128 / 8 = 1024 bytes.
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*/
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LLDSPEC bool_t gdisp_lld_init(GDisplay *g) {
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// The private area is the display surface.
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g->priv = gfxAlloc(GDISP_SCREEN_HEIGHT * GDISP_SCREEN_WIDTH / 8);
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if (!g->priv) {
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return gFalse;
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}
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// Initialise the board interface
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init_board(g);
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// Hardware reset
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setpin_reset(g, TRUE);
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gfxSleepMilliseconds(20);
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setpin_reset(g, FALSE);
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gfxSleepMilliseconds(20);
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acquire_bus(g);
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write_cmd(g, ST7565_LCD_BIAS);
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write_cmd(g, ST7565_ADC);
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write_cmd(g, ST7565_COM_SCAN);
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write_cmd(g, ST7565_START_LINE | 0);
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write_cmd2(g, ST7565_CONTRAST, GDISP_INITIAL_CONTRAST * 64 / 101);
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write_cmd(g, ST7565_RESISTOR_RATIO | 0x1);
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// turn on voltage converter (VC=1, VR=0, VF=0)
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write_cmd(g, ST7565_POWER_CONTROL | 0x04);
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delay_ms(50);
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// turn on voltage regulator (VC=1, VR=1, VF=0)
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write_cmd(g, ST7565_POWER_CONTROL | 0x06);
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delay_ms(50);
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// turn on voltage follower (VC=1, VR=1, VF=1)
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write_cmd(g, ST7565_POWER_CONTROL | 0x07);
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delay_ms(50);
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write_cmd(g, ST7565_DISPLAY_ON);
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write_cmd(g, ST7565_ALLON_NORMAL);
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write_cmd(g, ST7565_INVERT_DISPLAY); // Disable Inversion of display.
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write_cmd(g, ST7565_RMW);
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// Finish Init
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post_init_board(g);
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// Release the bus
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release_bus(g);
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/* Initialise the GDISP structure */
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g->g.Width = GDISP_SCREEN_WIDTH;
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g->g.Height = GDISP_SCREEN_HEIGHT;
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g->g.Orientation = GDISP_ROTATE_0;
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g->g.Powermode = powerOff;
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g->g.Backlight = GDISP_INITIAL_BACKLIGHT;
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g->g.Contrast = GDISP_INITIAL_CONTRAST;
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return TRUE;
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}
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# if GDISP_HARDWARE_FLUSH
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LLDSPEC void gdisp_lld_flush(GDisplay *g) {
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unsigned p;
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// Don't flush if we don't need it.
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if (!(g->flags & GDISP_FLG_NEEDFLUSH)) return;
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acquire_bus(g);
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gU8 pagemap[] = {ST7565_PAGE_ORDER};
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for (p = 0; p < sizeof(pagemap); p++) {
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write_cmd(g, ST7565_PAGE | pagemap[p]);
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write_cmd(g, ST7565_COLUMN_MSB | 0);
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write_cmd(g, ST7565_COLUMN_LSB | 0);
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write_cmd(g, ST7565_RMW);
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write_data(g, RAM(g) + (p * GDISP_SCREEN_WIDTH), GDISP_SCREEN_WIDTH);
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}
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release_bus(g);
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g->flags &= ~GDISP_FLG_NEEDFLUSH;
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}
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# endif
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# if GDISP_HARDWARE_DRAWPIXEL
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LLDSPEC void gdisp_lld_draw_pixel(GDisplay *g) {
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coord_t x, y;
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switch (g->g.Orientation) {
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default:
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case GDISP_ROTATE_0:
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x = g->p.x;
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y = g->p.y;
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break;
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case GDISP_ROTATE_90:
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x = g->p.y;
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y = GDISP_SCREEN_HEIGHT - 1 - g->p.x;
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break;
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case GDISP_ROTATE_180:
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x = GDISP_SCREEN_WIDTH - 1 - g->p.x;
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y = GDISP_SCREEN_HEIGHT - 1 - g->p.y;
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break;
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case GDISP_ROTATE_270:
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x = GDISP_SCREEN_HEIGHT - 1 - g->p.y;
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y = g->p.x;
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break;
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}
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if (gdispColor2Native(g->p.color) != Black)
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RAM(g)[xyaddr(x, y)] |= xybit(y);
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else
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RAM(g)[xyaddr(x, y)] &= ~xybit(y);
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g->flags |= GDISP_FLG_NEEDFLUSH;
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}
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# endif
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# if GDISP_HARDWARE_PIXELREAD
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LLDSPEC color_t gdisp_lld_get_pixel_color(GDisplay *g) {
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coord_t x, y;
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switch (g->g.Orientation) {
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default:
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case GDISP_ROTATE_0:
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x = g->p.x;
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y = g->p.y;
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break;
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case GDISP_ROTATE_90:
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x = g->p.y;
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y = GDISP_SCREEN_HEIGHT - 1 - g->p.x;
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break;
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case GDISP_ROTATE_180:
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x = GDISP_SCREEN_WIDTH - 1 - g->p.x;
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y = GDISP_SCREEN_HEIGHT - 1 - g->p.y;
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break;
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case GDISP_ROTATE_270:
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x = GDISP_SCREEN_HEIGHT - 1 - g->p.y;
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y = g->p.x;
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break;
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}
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return (RAM(g)[xyaddr(x, y)] & xybit(y)) ? White : Black;
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}
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# endif
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# if GDISP_HARDWARE_BITFILLS
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LLDSPEC void gdisp_lld_blit_area(GDisplay *g) {
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uint8_t *buffer = (uint8_t *)g->p.ptr;
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int linelength = g->p.cx;
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for (int i = 0; i < g->p.cy; i++) {
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unsigned dstx = g->p.x;
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unsigned dsty = g->p.y + i;
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unsigned srcx = g->p.x1;
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unsigned srcy = g->p.y1 + i;
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unsigned srcbit = srcy * g->p.x2 + srcx;
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for (int j = 0; j < linelength; j++) {
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uint8_t src = buffer[srcbit / 8];
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uint8_t bit = 7 - (srcbit % 8);
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uint8_t bitset = (src >> bit) & 1;
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uint8_t *dst = &(RAM(g)[xyaddr(dstx, dsty)]);
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if (bitset) {
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*dst |= xybit(dsty);
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} else {
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*dst &= ~xybit(dsty);
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}
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dstx++;
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srcbit++;
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}
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}
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g->flags |= GDISP_FLG_NEEDFLUSH;
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}
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# endif
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# if GDISP_NEED_CONTROL && GDISP_HARDWARE_CONTROL
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LLDSPEC void gdisp_lld_control(GDisplay *g) {
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switch (g->p.x) {
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case GDISP_CONTROL_POWER:
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if (g->g.Powermode == (powermode_t)g->p.ptr) return;
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switch ((powermode_t)g->p.ptr) {
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case powerOff:
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case powerSleep:
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case powerDeepSleep:
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acquire_bus(g);
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write_cmd(g, ST7565_DISPLAY_OFF);
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release_bus(g);
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break;
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case powerOn:
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acquire_bus(g);
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write_cmd(g, ST7565_DISPLAY_ON);
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release_bus(g);
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break;
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default:
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return;
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}
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g->g.Powermode = (powermode_t)g->p.ptr;
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return;
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case GDISP_CONTROL_ORIENTATION:
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if (g->g.Orientation == (orientation_t)g->p.ptr) return;
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switch ((orientation_t)g->p.ptr) {
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/* Rotation is handled by the drawing routines */
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case GDISP_ROTATE_0:
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case GDISP_ROTATE_180:
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g->g.Height = GDISP_SCREEN_HEIGHT;
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g->g.Width = GDISP_SCREEN_WIDTH;
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break;
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case GDISP_ROTATE_90:
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case GDISP_ROTATE_270:
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g->g.Height = GDISP_SCREEN_WIDTH;
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g->g.Width = GDISP_SCREEN_HEIGHT;
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break;
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default:
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return;
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}
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g->g.Orientation = (orientation_t)g->p.ptr;
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return;
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case GDISP_CONTROL_CONTRAST:
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if ((unsigned)g->p.ptr > 100) g->p.ptr = (void *)100;
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acquire_bus(g);
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write_cmd2(g, ST7565_CONTRAST, ((((unsigned)g->p.ptr) << 6) / 101) & 0x3F);
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release_bus(g);
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g->g.Contrast = (unsigned)g->p.ptr;
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return;
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}
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}
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# endif // GDISP_NEED_CONTROL
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#endif // GFX_USE_GDISP
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