253 lines
6.2 KiB
C
253 lines
6.2 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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* 2020-11-08 bigmagic 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 <touch.h>
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#include "drv_xpt2046.h"
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//http://www.lcdwiki.com/MHS-3.5inch_RPi_Display
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#define DBG_TAG "xpt2046"
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#define DBG_LVL DBG_INFO
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#include <rtdbg.h>
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//XPT2046
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#define READ_X (0xD0)
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#define READ_Y (0x90)
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#define TFT_WIDTH (320)
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#define TFT_HEIGHT (480)
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//freq
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#define TOUCH_SPI_MAX_FREQ (10*1000)
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#define TP_IRQ_PIN (17)
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#define TOUCH_DEVICE_NAME ("spi0.1")
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static struct rt_semaphore touch_ack;
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static rt_touch_t touch_device = RT_NULL;
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static rt_thread_t touch_tid = RT_NULL;
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#define TOUCH_THREAD_STACK_SIZE (1024)
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#define TOUCH_THREAD_PRIORITY (30)
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#define TOUCH_THREAD_TIMESLICE (10)
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rt_uint8_t touch_flag = 0;
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rt_uint16_t touch_x_val = 0;
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rt_uint16_t touch_y_val = 0;
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extern struct rt_semaphore lcd_spi_lock;
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static void touch_read_x_y(void *dev, rt_uint16_t *x, rt_uint16_t *y)
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{
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struct rt_spi_device *touch_dev = (struct rt_spi_device *)dev;
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struct rt_spi_message msg1,msg2,msg3,msg4;
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rt_uint16_t readx_val = 0,ready_val = 0;
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rt_uint8_t readx[2];
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rt_uint8_t ready[2];
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rt_sem_take(&lcd_spi_lock, RT_WAITING_FOREVER);
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int read_x_id = READ_X;
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int read_y_id = READ_Y;
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msg1.send_buf = &read_x_id;
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msg1.recv_buf = RT_NULL;
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msg1.length = 1;
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msg1.cs_take = 1;
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msg1.cs_release = 0;
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msg1.next = &msg2;
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msg2.send_buf = RT_NULL;
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msg2.recv_buf = &readx[0];
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msg2.length = 2;
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msg2.cs_take = 0;
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msg2.cs_release = 0;
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msg2.next = &msg3;
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msg3.send_buf = &read_y_id;
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msg3.recv_buf = RT_NULL;
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msg3.length = 1;
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msg3.cs_take = 0;
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msg3.cs_release = 0;
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msg3.next = &msg4;
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msg4.send_buf = RT_NULL;
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msg4.recv_buf = &ready[0];
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msg4.length = 2;
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msg4.cs_take = 0;
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msg4.cs_release = 1;
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msg4.next = RT_NULL;
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rt_spi_transfer_message(touch_dev, &msg1);
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readx_val = ((readx[0] << 8) | readx[1]) >> 4;
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ready_val = ((ready[0] << 8) | ready[1]) >> 4;
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rt_sem_release(&lcd_spi_lock);
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*x = readx_val;
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*y = ready_val;
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}
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/*
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XPT2046:Width:320 High:480
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no pressed:(0x800,0xfff)
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---ETH----USB-----------------------
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| (0x800,0x800) (0xfff,0x800) |
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| |
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| (0x800,0xFFF) (0xfff,0xfff) |
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------------------------------------
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*/
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#define XMIN 0x800
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#define YMAX 0xfff
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void read_tp(void *dev, rt_uint16_t *x, rt_uint16_t *y)
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{
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struct rt_spi_device *touch_dev = (struct rt_spi_device *)dev;
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rt_uint8_t try = 0;
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uint16_t _y[5] = {0,0,0,0,0};
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uint16_t _x[5] = {0,0,0,0,0};
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uint16_t x_val = 0;
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uint16_t y_val = 0;
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uint16_t cur_x = 0;
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uint16_t cur_y = 0;
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int index = 0;
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while(1)
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{
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try = try + 1;
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touch_read_x_y(touch_dev, x, y);
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if((*x > XMIN) && (*y < YMAX))
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{
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_x[index] = *x;
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_y[index] = *y;
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index = index + 1;
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}
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if(index == 5)
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{
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break;
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}
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if(try > 10)
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{
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break;
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}
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}
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x_val = (_x[0] + _x[1] + _x[2] + _x[3]+ _x[4]) / index;
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y_val = (_y[0] + _y[1] + _y[2] + _y[3]+ _y[4]) / index;
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cur_x = (x_val - 0x800) * TFT_WIDTH / 0x800;
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cur_y = (y_val - 0x800) * TFT_HEIGHT / 0x800;
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if((cur_x < TFT_WIDTH) && (cur_y < TFT_HEIGHT))
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{
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*x = TFT_WIDTH - cur_x;
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*y = TFT_HEIGHT - cur_y;
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}
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else
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{
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*x = 0;
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*y = 0;
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}
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}
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static void touch_thread_entry(void *param)
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{
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rt_uint16_t x,y;
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struct rt_spi_device *touch_dev;
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touch_dev = (struct rt_spi_device *)rt_device_find(TOUCH_DEVICE_NAME);
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touch_dev->config.max_hz = TOUCH_SPI_MAX_FREQ;
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if (!touch_dev)
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{
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rt_kprintf("no %s!\n", TOUCH_DEVICE_NAME);
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}
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while (1)
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{
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rt_sem_take(&touch_ack, RT_WAITING_FOREVER);
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read_tp(touch_dev, &x, &y);
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if((x!= 0) && (y !=0))
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{
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touch_x_val = x;
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touch_y_val = y;
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touch_flag = 1;
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}
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rt_pin_mode(TP_IRQ_PIN, PIN_MODE_INPUT_PULLUP);
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}
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}
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static void touch_readly(void *args)
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{
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if(rt_pin_read(TP_IRQ_PIN) == PIN_LOW)
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{
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rt_pin_mode(TP_IRQ_PIN, PIN_MODE_OUTPUT);
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rt_pin_write(TP_IRQ_PIN,PIN_HIGH);
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rt_sem_release(&touch_ack);
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}
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}
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static rt_size_t xpt2046_read_point(struct rt_touch_device *touch, void *buf, rt_size_t read_num)
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{
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rt_uint16_t* touchxy = (rt_uint16_t *)buf;
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if((read_num != 0) && (touch_flag == 1))
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{
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touchxy[0] = touch_x_val;
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touchxy[1] = touch_y_val;
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touch_flag = 0;
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return read_num;
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}
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else
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{
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return 0;
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}
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}
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static rt_err_t xpt2046_control(struct rt_touch_device *device, int cmd, void *data)
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{
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return RT_EOK;
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}
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static struct rt_touch_ops touch_ops =
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{
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.touch_readpoint = xpt2046_read_point,
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.touch_control = xpt2046_control,
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};
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static int hw_xpt2046_touch_init(void)
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{
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//touch sem
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rt_sem_init(&touch_ack, "touch_ack", 0, RT_IPC_FLAG_FIFO);
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touch_tid = rt_thread_create("touch",
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touch_thread_entry, RT_NULL,
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TOUCH_THREAD_STACK_SIZE,
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TOUCH_THREAD_PRIORITY, TOUCH_THREAD_TIMESLICE);
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if (touch_tid != RT_NULL)
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rt_thread_startup(touch_tid);
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rt_pin_mode(TP_IRQ_PIN, PIN_MODE_INPUT_PULLUP);
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rt_pin_attach_irq(TP_IRQ_PIN, PIN_IRQ_MODE_LOW_LEVEL, touch_readly, RT_NULL);
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rt_pin_irq_enable(TP_IRQ_PIN, PIN_IRQ_ENABLE);
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touch_device = (rt_touch_t)rt_calloc(1, sizeof(struct rt_touch_device));
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if (touch_device == RT_NULL)
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return -RT_ERROR;
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/* register touch device */
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touch_device->info.type = RT_TOUCH_TYPE_RESISTANCE;
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touch_device->info.vendor = RT_TOUCH_VENDOR_UNKNOWN;
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//rt_memcpy(&touch_device->config, cfg, sizeof(struct rt_touch_config));
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touch_device->ops = &touch_ops;
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rt_hw_touch_register(touch_device, "xpt2046", RT_DEVICE_FLAG_INT_RX, RT_NULL);
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return 0;
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}
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INIT_DEVICE_EXPORT(hw_xpt2046_touch_init);
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