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1. Add backlight framework for graphic. 2. Add framebuffer and plane, power, EDID for graphic framework 3. Add boot logo render for graphic 4. Update lcd.h Signed-off-by: GuEe-GUI <2991707448@qq.com>
422 lines
11 KiB
C
422 lines
11 KiB
C
/*
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* Copyright (c) 2006-2021, RT-Thread Development Team
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*
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* SPDX-License-Identifier: Apache-2.0
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*
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* Change Logs:
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* Date Author Notes
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* 2023-02-25 GuEe-GUI the first version
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*/
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#include <rtthread.h>
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#include <rtdevice.h>
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#include <cpuport.h>
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#include <drivers/misc.h>
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#if defined(RT_USING_GRAPHIC) && defined(RT_USING_INPUT)
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#define CURSOR_WIDTH 64
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#define CURSOR_HEIGHT 64
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struct hmi_info
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{
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struct rt_device *gdev;
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struct rt_device *idev;
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struct rt_device_graphic_info info;
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struct rt_device_notify event_notify;
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struct rt_input_handler handler;
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rt_bool_t event;
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rt_bool_t vsync;
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rt_bool_t keydown;
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rt_uint32_t x, y;
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rt_uint32_t dx, dy;
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rt_uint32_t bytes_per_pixel;
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rt_ubase_t line[2];
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rt_ubase_t colors[4];
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void *backend_framebuffer;
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};
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static rt_bool_t hmi_working;
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static struct rt_input_device *to_input_device(struct rt_device *idev)
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{
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return rt_container_of(idev, struct rt_input_device, parent);
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}
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static rt_ubase_t to_color(rt_uint8_t color255, rt_ubase_t color_max)
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{
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return (rt_ubase_t)color255 * color_max / 255;
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}
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static void hmi_reset(struct hmi_info *hmi)
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{
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void *cursor;
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rt_ubase_t none_alpha;
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rt_ubase_t red_off, green_off, blue_off, alpha_off;
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rt_ubase_t red_mask, green_mask, blue_mask, alpha_mask;
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struct fb_var_screeninfo var;
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if (hmi->backend_framebuffer)
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{
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rt_free(hmi->backend_framebuffer);
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}
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rt_device_control(hmi->gdev, FBIOGET_VSCREENINFO, &var);
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rt_device_control(hmi->gdev, RTGRAPHIC_CTRL_GET_INFO, &hmi->info);
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hmi->backend_framebuffer = rt_malloc(hmi->info.smem_len);
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hmi->bytes_per_pixel = hmi->info.bits_per_pixel / 8;
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red_off = var.red.offset;
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red_mask = RT_GENMASK(var.red.length - 1, 0);
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green_off = var.green.offset;
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green_mask = RT_GENMASK(var.green.length - 1, 0);
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blue_off = var.blue.offset;
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blue_mask = RT_GENMASK(var.blue.length - 1, 0);
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if (var.transp.length)
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{
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alpha_off = var.transp.offset;
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alpha_mask = RT_GENMASK(var.transp.length - 1, 0);
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}
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else
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{
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alpha_off = 0;
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alpha_mask = 0;
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}
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if ((cursor = rt_malloc(CURSOR_WIDTH * CURSOR_HEIGHT * hmi->bytes_per_pixel)))
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{
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rt_uint8_t *stream = cursor;
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rt_ubase_t color = ((to_color(0x82, red_mask)) << red_off) |
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(to_color(0x50, green_mask) << green_off) |
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(to_color(0xdf, blue_mask) << blue_off) |
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(to_color(0xcc, alpha_mask) << alpha_off);
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for (int y = 0; y < CURSOR_HEIGHT; ++y)
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{
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for (int x = 0; x < CURSOR_WIDTH; ++x)
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{
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rt_memcpy(stream, &color, hmi->bytes_per_pixel);
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stream += hmi->bytes_per_pixel;
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}
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}
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rt_device_control(hmi->gdev, RT_DEVICE_CTRL_CURSOR_SET_TYPE, cursor);
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rt_free(cursor);
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}
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none_alpha = alpha_mask << alpha_off;
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hmi->line[0] = ~0UL;
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hmi->line[1] = none_alpha;
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hmi->colors[0] = ((to_color(0xff, red_mask)) << red_off) |
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(to_color(0x4b, green_mask) << green_off) |
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(to_color(0x00, blue_mask) << blue_off) | none_alpha;
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hmi->colors[1] = ((to_color(0x7f, red_mask)) << red_off) |
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(to_color(0xdb, green_mask) << green_off) |
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(to_color(0x3b, blue_mask) << blue_off) | none_alpha;
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hmi->colors[2] = ((to_color(0x00, red_mask)) << red_off) |
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(to_color(0xa4, green_mask) << green_off) |
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(to_color(0xef, blue_mask) << blue_off) | none_alpha;
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hmi->colors[3] = ((to_color(0xff, red_mask)) << red_off) |
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(to_color(0xb8, green_mask) << green_off) |
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(to_color(0x1c, blue_mask) << blue_off) | none_alpha;
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hmi->event = RT_FALSE;
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}
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static void hmi_graphic_notify(rt_device_t dev)
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{
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struct hmi_info *hmi = (void *)dev;
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hmi->event = RT_TRUE;
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}
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static rt_bool_t hmi_input_callback(struct rt_input_handler *handler,
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struct rt_input_event *ev)
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{
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struct hmi_info *hmi = handler->priv;
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if (ev->type == EV_ABS)
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{
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if (ev->code == 0)
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{
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hmi->dx = (ev->value * hmi->info.width) /
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(handler->idev->absinfo->maximum - handler->idev->absinfo->minimum);
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}
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else if (ev->code == 1)
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{
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hmi->dy = (ev->value * hmi->info.height) /
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(handler->idev->absinfo->maximum - handler->idev->absinfo->minimum);
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}
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}
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else if (ev->type == EV_KEY)
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{
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if (ev->code == BTN_LEFT)
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{
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if (hmi->keydown && ev->value == 0)
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{
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/* Swap lines color */
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hmi->line[0] ^= hmi->line[1];
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hmi->line[1] ^= hmi->line[0];
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hmi->line[0] ^= hmi->line[1];
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hmi->keydown = RT_FALSE;
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hmi->vsync = RT_FALSE;
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}
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else
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{
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hmi->keydown = RT_TRUE;
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}
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}
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}
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else if (ev->type == EV_SYN)
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{
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hmi->vsync = RT_FALSE;
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}
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return RT_TRUE;
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}
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static void hmi_loop(void *param)
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{
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struct hmi_info *hmi = param;
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struct rt_device_rect_info rect;
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struct rt_device_graphic_ops *gops;
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/* Graphic device event */
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hmi->event_notify.notify = &hmi_graphic_notify;
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hmi->event_notify.dev = (void *)hmi;
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rt_device_control(hmi->gdev, RT_DEVICE_CTRL_NOTIFY_SET, &hmi->event_notify);
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/* Input device event */
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hmi->handler.idev = to_input_device(hmi->idev);
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hmi->handler.identify = RT_NULL;
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hmi->handler.callback = &hmi_input_callback;
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hmi->handler.priv = hmi;
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rt_input_add_handler(&hmi->handler);
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hmi->backend_framebuffer = RT_NULL;
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hmi_reset(hmi);
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hmi->dx = hmi->info.width >> 1;
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hmi->dy = hmi->info.height >> 1;
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rect.x = 0;
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rect.y = 0;
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gops = rt_graphix_ops(hmi->gdev);
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rt_device_control(hmi->gdev, RTGRAPHIC_CTRL_POWERON, RT_NULL);
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while (hmi_working)
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{
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rt_ubase_t pos;
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/* Wait graphic change */
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if (hmi->event)
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{
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hmi_reset(hmi);
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}
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hmi->x = hmi->dx;
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hmi->y = hmi->dy;
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rect.width = hmi->info.width;
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rect.height = hmi->info.height;
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pos = RTGRAPHIC_PIXEL_POSITION(hmi->x, hmi->y);
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for (int i = 0; i < RT_ARRAY_SIZE(hmi->colors); ++i)
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{
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rt_uint32_t x1, y1, x2, y2;
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void *fb = hmi->backend_framebuffer ? : hmi->info.framebuffer;
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switch (i)
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{
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case 0:
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x1 = 0;
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y1 = 0;
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x2 = hmi->x;
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y2 = hmi->y;
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break;
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case 1:
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x1 = hmi->x;
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y1 = 0;
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x2 = hmi->info.width;
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y2 = hmi->y;
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break;
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case 2:
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x1 = 0;
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y1 = hmi->y;
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x2 = hmi->x;
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y2 = hmi->info.height;
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break;
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case 3:
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x1 = hmi->x;
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y1 = hmi->y;
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x2 = hmi->info.width;
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y2 = hmi->info.height;
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break;
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}
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fb += x1 * hmi->bytes_per_pixel + y1 * hmi->info.pitch;
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for (int y = y1; y < y2; ++y)
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{
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void *fb_entry = fb;
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for (int x = x1; x < x2; ++x)
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{
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rt_memcpy(fb, &hmi->colors[i], hmi->bytes_per_pixel);
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fb += hmi->bytes_per_pixel;
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}
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fb = fb_entry + hmi->info.pitch;
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}
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}
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if (hmi->backend_framebuffer)
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{
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rt_memcpy(hmi->info.framebuffer, hmi->backend_framebuffer, hmi->info.smem_len);
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}
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gops->draw_hline((void *)&hmi->line[0], 0, rect.width, hmi->y);
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gops->draw_vline((void *)&hmi->line[1], hmi->x, 0, rect.height);
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rt_device_control(hmi->gdev, RTGRAPHIC_CTRL_RECT_UPDATE, &rect);
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rt_device_control(hmi->gdev, RT_DEVICE_CTRL_CURSOR_SET_POSITION, (void *)pos);
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/* Next position */
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hmi->vsync = RT_TRUE;
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rt_hw_wmb();
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while (hmi_working && hmi->vsync)
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{
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rt_thread_mdelay(1);
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}
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}
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rt_device_control(hmi->gdev, RTGRAPHIC_CTRL_POWEROFF, RT_NULL);
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rt_memset(&hmi->event_notify, 0, sizeof(hmi->event_notify));
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rt_device_control(hmi->gdev, RT_DEVICE_CTRL_NOTIFY_SET, &hmi->event_notify);
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rt_input_del_handler(&hmi->handler);
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rt_device_close(hmi->gdev);
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rt_device_close(hmi->idev);
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if (hmi->backend_framebuffer)
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{
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rt_free(hmi->backend_framebuffer);
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}
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rt_free(hmi);
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rt_thread_delete(rt_thread_self());
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}
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rt_err_t hmi_start(const char *gdev, const char *idev)
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{
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rt_err_t err;
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struct hmi_info *hmi;
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struct rt_thread *loop;
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if (hmi_working)
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{
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rt_kprintf("HMI is running\n");
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return -RT_EBUSY;
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}
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hmi = rt_malloc(sizeof(*hmi));
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if (!hmi)
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{
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return -RT_ENOMEM;
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}
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hmi->gdev = rt_device_find(gdev);
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hmi->idev = rt_device_find(idev);
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if (!hmi->gdev || !hmi->idev)
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{
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rt_free(hmi);
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return -RT_EINVAL;
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}
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if (!rt_bitmap_test_bit(to_input_device(hmi->idev)->cap, EV_ABS))
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{
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rt_kprintf("%s is not a ABS input\n", idev);
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rt_free(hmi);
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return -RT_EINVAL;
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}
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if ((err = rt_device_open(hmi->gdev, 0)))
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{
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rt_free(hmi);
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return err;
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}
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if ((err = rt_device_open(hmi->idev, 0)))
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{
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rt_device_close(hmi->gdev);
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rt_free(hmi);
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return err;
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}
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loop = rt_thread_create("HMI", hmi_loop, hmi,
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DM_THREAD_STACK_SIZE,
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RT_THREAD_PRIORITY_MAX / 3,
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rt_tick_from_millisecond(RT_GRAPHIC_UPDATE_MS));
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if (!loop)
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{
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rt_device_close(hmi->gdev);
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rt_device_close(hmi->idev);
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rt_free(hmi);
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return -RT_ENOMEM;
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}
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hmi_working = RT_TRUE;
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rt_thread_startup(loop);
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return RT_EOK;
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}
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rt_err_t hmi_stop(void)
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{
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hmi_working = RT_FALSE;
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return RT_EOK;
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}
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#ifdef RT_USING_FINSH
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static int _hmi_start(int argc, char**argv)
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{
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const char *gdev = "fb0", *idev = "input0";
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if (argc == 3)
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{
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gdev = argv[1];
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idev = argv[2];
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}
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return (int)hmi_start(gdev, idev);
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}
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MSH_CMD_EXPORT_ALIAS(_hmi_start, hmi_start, e.g: hmi_start("fb0", "input0"));
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static int _hmi_stop(void)
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{
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return (int)hmi_stop();
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}
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MSH_CMD_EXPORT_ALIAS(_hmi_stop, hmi_stop, e.g: hmi_exit());
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#endif /* RT_USING_FINSH */
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#endif /* RT_USING_GRAPHIC && RT_USING_INPUT */
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