mirror of https://github.com/arendst/Tasmota.git
180 lines
6.8 KiB
C++
180 lines
6.8 KiB
C++
/*
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xdrv_08_serial_bridge.ino - serial bridge support for Sonoff-Tasmota
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Copyright (C) 2019 Theo Arends and Dániel Zoltán Tolnai
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This program is free software: you can redistribute it and/or modify
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it under the terms of the GNU General Public License as published by
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the Free Software Foundation, either version 3 of the License, or
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(at your option) any later version.
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This program is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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GNU General Public License for more details.
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You should have received a copy of the GNU General Public License
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along with this program. If not, see <http://www.gnu.org/licenses/>.
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*/
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#ifdef USE_SERIAL_BRIDGE
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/*********************************************************************************************\
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* Serial Bridge using Software Serial library (TasmotaSerial)
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\*********************************************************************************************/
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#define XDRV_08 8
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const uint8_t SERIAL_BRIDGE_BUFFER_SIZE = 130;
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#include <TasmotaSerial.h>
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const char kSerialBridgeCommands[] PROGMEM = D_CMND_SSERIALSEND "|" D_CMND_SBAUDRATE;
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void (* const SerialBridgeCommand[])(void) PROGMEM = { &CmndSSerialSend, &CmndSBaudrate };
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TasmotaSerial *SerialBridgeSerial = nullptr;
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unsigned long serial_bridge_polling_window = 0;
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char *serial_bridge_buffer = nullptr;
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int serial_bridge_in_byte_counter = 0;
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bool serial_bridge_active = true;
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bool serial_bridge_raw = false;
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void SerialBridgeInput(void)
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{
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while (SerialBridgeSerial->available()) {
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yield();
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uint8_t serial_in_byte = SerialBridgeSerial->read();
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if ((serial_in_byte > 127) && !serial_bridge_raw) { // Discard binary data above 127 if no raw reception allowed
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serial_bridge_in_byte_counter = 0;
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SerialBridgeSerial->flush();
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return;
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}
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if (serial_in_byte || serial_bridge_raw) { // Any char between 1 and 127 or any char (0 - 255)
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if ((serial_bridge_in_byte_counter < SERIAL_BRIDGE_BUFFER_SIZE -1) && // Add char to string if it still fits and ...
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((isprint(serial_in_byte) && (128 == Settings.serial_delimiter)) || // Any char between 32 and 127
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((serial_in_byte != Settings.serial_delimiter) && (128 != Settings.serial_delimiter)) || // Any char between 1 and 127 and not being delimiter
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serial_bridge_raw)) { // Any char between 0 and 255
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serial_bridge_buffer[serial_bridge_in_byte_counter++] = serial_in_byte;
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serial_bridge_polling_window = millis(); // Wait for more data
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} else {
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serial_bridge_polling_window = 0; // Publish now
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break;
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}
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}
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}
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if (serial_bridge_in_byte_counter && (millis() > (serial_bridge_polling_window + SERIAL_POLLING))) {
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serial_bridge_buffer[serial_bridge_in_byte_counter] = 0; // Serial data completed
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if (!serial_bridge_raw) {
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Response_P(PSTR("{\"" D_JSON_SSERIALRECEIVED "\":\"%s\"}"), serial_bridge_buffer);
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} else {
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Response_P(PSTR("{\"" D_JSON_SSERIALRECEIVED "\":\""));
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for (uint32_t i = 0; i < serial_bridge_in_byte_counter; i++) {
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ResponseAppend_P(PSTR("%02x"), serial_bridge_buffer[i]);
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}
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ResponseAppend_P(PSTR("\"}"));
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}
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MqttPublishPrefixTopic_P(RESULT_OR_TELE, PSTR(D_JSON_SSERIALRECEIVED));
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XdrvRulesProcess();
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serial_bridge_in_byte_counter = 0;
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}
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}
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/********************************************************************************************/
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void SerialBridgeInit(void)
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{
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serial_bridge_active = false;
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if ((pin[GPIO_SBR_RX] < 99) && (pin[GPIO_SBR_TX] < 99)) {
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SerialBridgeSerial = new TasmotaSerial(pin[GPIO_SBR_RX], pin[GPIO_SBR_TX]);
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if (SerialBridgeSerial->begin(Settings.sbaudrate * 1200)) { // Baud rate is stored div 1200 so it fits into one byte
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if (SerialBridgeSerial->hardwareSerial()) {
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ClaimSerial();
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serial_bridge_buffer = serial_in_buffer; // Use idle serial buffer to save RAM
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} else {
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serial_bridge_buffer = (char*)(malloc(SERIAL_BRIDGE_BUFFER_SIZE));
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}
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serial_bridge_active = true;
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SerialBridgeSerial->flush();
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}
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}
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}
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/*********************************************************************************************\
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* Commands
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\*********************************************************************************************/
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void CmndSSerialSend(void)
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{
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if ((XdrvMailbox.index > 0) && (XdrvMailbox.index <= 5)) {
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serial_bridge_raw = (XdrvMailbox.index > 3);
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if (XdrvMailbox.data_len > 0) {
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if (1 == XdrvMailbox.index) {
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SerialBridgeSerial->write(XdrvMailbox.data, XdrvMailbox.data_len); // "Hello Tiger"
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SerialBridgeSerial->write("\n"); // "\n"
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}
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else if ((2 == XdrvMailbox.index) || (4 == XdrvMailbox.index)) {
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SerialBridgeSerial->write(XdrvMailbox.data, XdrvMailbox.data_len); // "Hello Tiger" or "A0"
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}
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else if (3 == XdrvMailbox.index) { // "Hello\f"
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SerialBridgeSerial->write(Unescape(XdrvMailbox.data, &XdrvMailbox.data_len), XdrvMailbox.data_len);
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}
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else if (5 == XdrvMailbox.index) {
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char *p;
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char stemp[3];
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uint8_t code;
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char *codes = RemoveSpace(XdrvMailbox.data);
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int size = strlen(XdrvMailbox.data);
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while (size > 0) {
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strlcpy(stemp, codes, sizeof(stemp));
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code = strtol(stemp, &p, 16);
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SerialBridgeSerial->write(code); // "AA004566" as hex values
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size -= 2;
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codes += 2;
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}
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}
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Response_P(S_JSON_COMMAND_SVALUE, XdrvMailbox.command, D_JSON_DONE);
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}
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}
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}
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void CmndSBaudrate(void)
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{
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if (XdrvMailbox.payload > 1200) {
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Settings.sbaudrate /= 1200; // Make it a valid baudrate
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SerialBridgeSerial->begin(Settings.sbaudrate * 1200); // Reinitialize serial port with new baud rate
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}
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Response_P(S_JSON_COMMAND_NVALUE, XdrvMailbox.command, Settings.sbaudrate * 1200);
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}
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/*********************************************************************************************\
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* Interface
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\*********************************************************************************************/
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bool Xdrv08(uint8_t function)
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{
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bool result = false;
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if (serial_bridge_active) {
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switch (function) {
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case FUNC_LOOP:
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if (SerialBridgeSerial) { SerialBridgeInput(); }
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break;
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case FUNC_PRE_INIT:
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SerialBridgeInit();
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break;
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case FUNC_COMMAND:
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result = DecodeCommand(kSerialBridgeCommands, SerialBridgeCommand);
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break;
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}
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}
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return result;
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}
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#endif // USE_SERIAL_BRIDGE
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