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NexHardware.cpp
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/**
* @file NexHardware.cpp
*
* The implementation of base API for using Nextion.
*
* @author Wu Pengfei (email:<[email protected]>)
* @date 2015/8/11
* @copyright
* Copyright (C) 2014-2015 ITEAD Intelligent Systems Co., Ltd. \n
* This program is free software; you can redistribute it and/or
* modify it under the terms of the GNU General Public License as
* published by the Free Software Foundation; either version 2 of
* the License, or (at your option) any later version.
*/
#include "NexHardware.h"
#define NEX_RET_CMD_FINISHED (0x01)
#define NEX_RET_EVENT_LAUNCHED (0x88)
#define NEX_RET_EVENT_UPGRADED (0x89)
#define NEX_RET_EVENT_TOUCH_HEAD (0x65)
#define NEX_RET_EVENT_POSITION_HEAD (0x67)
#define NEX_RET_EVENT_SLEEP_POSITION_HEAD (0x68)
#define NEX_RET_CURRENT_PAGE_ID_HEAD (0x66)
#define NEX_RET_STRING_HEAD (0x70)
#define NEX_RET_NUMBER_HEAD (0x71)
#define NEX_RET_VALUE_HEAD (0x72)
#define NEX_RET_INVALID_CMD (0x00)
#define NEX_RET_INVALID_COMPONENT_ID (0x02)
#define NEX_RET_INVALID_PAGE_ID (0x03)
#define NEX_RET_INVALID_PICTURE_ID (0x04)
#define NEX_RET_INVALID_FONT_ID (0x05)
#define NEX_RET_INVALID_BAUD (0x11)
#define NEX_RET_INVALID_VARIABLE (0x1A)
#define NEX_RET_INVALID_OPERATION (0x1B)
/*
* Receive uint32_t data.
*
* @param number - save uint32_t data.
* @param timeout - set timeout time.
*
* @retval true - success.
* @retval false - failed.
*
*/
bool recvRetNumber(uint32_t *number, uint32_t timeout)
{
bool ret = false;
uint8_t temp[8] = {0};
if (!number)
{
goto __return;
}
nexSerial.setTimeout(timeout);
if (sizeof(temp) != nexSerial.readBytes((char *)temp, sizeof(temp)))
{
goto __return;
}
if (temp[0] == NEX_RET_NUMBER_HEAD
&& temp[5] == 0xFF
&& temp[6] == 0xFF
&& temp[7] == 0xFF
)
{
*number = (temp[4] << 24) | (temp[3] << 16) | (temp[2] << 8) | (temp[1]);
ret = true;
}
__return:
if (ret)
{
dbSerialPrint("recvRetNumber :");
dbSerialPrintln(*number);
}
else
{
dbSerialPrintln("recvRetNumber err");
}
return ret;
}
/*
* Receive string data.
*
* @param buffer - save string data.
* @param len - string buffer length.
* @param timeout - set timeout time.
*
* @return the length of string buffer.
*
*/
uint16_t recvRetString(char *buffer, uint16_t len, uint32_t timeout)
{
uint16_t ret = 0;
bool str_start_flag = false;
uint8_t cnt_0xff = 0;
String temp = String("");
uint8_t c = 0;
long start;
if (!buffer || len == 0)
{
goto __return;
}
start = millis();
while (millis() - start <= timeout)
{
while (nexSerial.available())
{
c = nexSerial.read();
if (str_start_flag)
{
if (0xFF == c)
{
cnt_0xff++;
if (cnt_0xff >= 3)
{
break;
}
}
else
{
temp += (char)c;
}
}
else if (NEX_RET_STRING_HEAD == c)
{
str_start_flag = true;
}
}
if (cnt_0xff >= 3)
{
break;
}
}
ret = temp.length();
ret = ret > len ? len : ret;
strncpy(buffer, temp.c_str(), ret);
__return:
dbSerialPrint("recvRetString[");
dbSerialPrint(temp.length());
dbSerialPrint(",");
dbSerialPrint(temp);
dbSerialPrintln("]");
return ret;
}
/*
* Send command to Nextion.
*
* @param cmd - the string of command.
*/
void sendCommand(const char* cmd)
{
while (nexSerial.available())
{
nexSerial.read();
}
nexSerial.print(cmd);
nexSerial.write(0xFF);
nexSerial.write(0xFF);
nexSerial.write(0xFF);
}
/*
* Command is executed successfully.
*
* @param timeout - set timeout time.
*
* @retval true - success.
* @retval false - failed.
*
*/
bool recvRetCommandFinished(uint32_t timeout)
{
bool ret = false;
uint8_t temp[4] = {0};
nexSerial.setTimeout(timeout);
if (sizeof(temp) != nexSerial.readBytes((char *)temp, sizeof(temp)))
{
ret = false;
}
if (temp[0] == NEX_RET_CMD_FINISHED
&& temp[1] == 0xFF
&& temp[2] == 0xFF
&& temp[3] == 0xFF
)
{
ret = true;
}
if (ret)
{
dbSerialPrintln("recvRetCommandFinished ok");
}
else
{
dbSerialPrintln("recvRetCommandFinished err");
}
return ret;
}
bool nexInit(void)
{
bool ret1 = false;
bool ret2 = false;
sendCommand("");
sendCommand("bkcmd=1");
ret1 = recvRetCommandFinished();
sendCommand("page 0");
ret2 = recvRetCommandFinished();
return ret1 && ret2;
}
void nexLoop(NexTouch *nex_listen_list[])
{
static uint8_t __buffer[20];
uint16_t i;
uint8_t c;
while (nexSerial.available() > 0)
{
delay(10);
c = nexSerial.read();
if (NEX_RET_EVENT_TOUCH_HEAD == c)
{
if (nexSerial.available() >= 6)
{
__buffer[0] = c;
for (i = 1; i < 7; i++)
{
__buffer[i] = nexSerial.read();
}
__buffer[i] = 0x00;
if (0xFF == __buffer[4] && 0xFF == __buffer[5] && 0xFF == __buffer[6])
{
NexTouch::iterate(nex_listen_list, __buffer[1], __buffer[2], (int32_t)__buffer[3], NULL);
}
}
}
else if( NEX_RET_CURRENT_PAGE_ID_HEAD == c)
{
dbSerialPrint("page cmd:");
if (nexSerial.available() >= 4)
{
__buffer[0] = c;
for (i = 1; i < 5; i++)
{
__buffer[i] = nexSerial.read();
}
__buffer[i] = 0x00;
if (0xFF == __buffer[2] && 0xFF == __buffer[3] && 0xFF == __buffer[4])
{
dbSerialPrintln(__buffer[1]);
NexTouch::iterate(nex_listen_list, __buffer[1], 0, (int32_t)NEX_EVENT_PUSH, NULL);
}
}
}
else if (NEX_RET_VALUE_HEAD == c)
{
dbSerialPrint("value cmd:");
if (nexSerial.available() >= 10)
{
__buffer[0] = c;
for (i = 1; i < 12; i++)
{
__buffer[i] = nexSerial.read();
}
__buffer[i] = 0x00;
if (0xFF == __buffer[i-1] && 0xFF == __buffer[i-2] && 0xFF == __buffer[i-3])
{
dbSerialPrint(" Page:");
dbSerialPrint(__buffer[1]);
dbSerialPrint(" Component:");
dbSerialPrint(__buffer[2]);
dbSerialPrint(" Value:");
i = __buffer[4] | (((unsigned long)__buffer[5]) << 8) | (((unsigned long)__buffer[6]) << 16) | (((unsigned long)__buffer[6]) << 24);
dbSerialPrintln(i);
NexTouch::iterate(nex_listen_list, __buffer[1], __buffer[2], (int32_t)__buffer[3], (void *)&(__buffer[4]));
}
}
}
}
}
/**
* Return current page id.
*
* @param pageId - output parameter,to save page id.
*
* @retval true - success.
* @retval false - failed.
*/
bool sendCurrentPageId(uint8_t* pageId)
{
bool ret = false;
uint8_t temp[5] = {0};
if (!pageId)
{
goto __return;
}
sendCommand("sendme");
delay(50);
nexSerial.setTimeout(100);
if (sizeof(temp) != nexSerial.readBytes((char *)temp, sizeof(temp)))
{
goto __return;
}
if (temp[0] == NEX_RET_CURRENT_PAGE_ID_HEAD
&& temp[2] == 0xFF
&& temp[3] == 0xFF
&& temp[4] == 0xFF
)
{
*pageId = temp[1];
ret = true;
}
__return:
if (ret)
{
dbSerialPrint("recvPageId :");
dbSerialPrintln(*pageId);
}
else
{
dbSerialPrintln("recvPageId err");
}
return ret;
}
/**
* Set current backlight brightness value.
*
* @param dimValue - current backlight brightness value.
*
* @retval true - success.
* @retval false - failed.
*/
bool setCurrentBrightness(uint8_t dimValue)
{
bool ret = false;
char buf[10] = {0};
String cmd;
utoa(dimValue, buf, 10);
cmd += "dim=";
cmd += buf;
sendCommand(cmd.c_str());
delay(10);
if(recvRetCommandFinished())
{
dbSerialPrint("setCurrentBrightness[ ");
dbSerialPrint(dimValue);
dbSerialPrintln("]ok ");
ret = true;
}
else
{
dbSerialPrintln("setCurrentBrightness err ");
}
return ret;
}
/**
* Set default baudrate.
*
* @param defaultBaudrate - default baudrate,it supports 2400,4800,9600,19200,38400,57600,115200.
*
* @retval true - success.
* @retval false - failed.
*/
bool setDefaultBaudrate(uint32_t defaultBaudrate)
{
bool ret = false;
char buf[10] = {0};
String cmd;
utoa(defaultBaudrate, buf, 10);
cmd += "bauds=";
cmd += buf;
sendCommand(cmd.c_str());
delay(10);
if(recvRetCommandFinished())
{
dbSerialPrintln("setDefaultBaudrate ok ");
ret = true;
}
else
{
dbSerialPrintln("setDefaultBaudrate err ");
}
return ret;
}
void sendRefreshAll(void)
{
sendCommand("ref 0");
}