mirror of https://github.com/arendst/Tasmota.git
295 lines
10 KiB
C++
295 lines
10 KiB
C++
/*
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xdrv_19_ps16dz_dimmer.ino - PS_16_DZ dimmer and Sonoff L1 support for Sonoff-Tasmota
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Copyright (C) 2019 Joel Stein and Theo Arends
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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_LIGHT
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#ifdef USE_PS_16_DZ
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/*********************************************************************************************\
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* PS 16 DZ Serial Dimmer and Sonoff L1
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\*********************************************************************************************/
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#define XDRV_19 19
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#define PS16DZ_BUFFER_SIZE 140
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#define PS16DZ_SONOFF_L1_MODE_COLORFUL 1 // Colorful (static color)
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#define PS16DZ_SONOFF_L1_MODE_COLORFUL_GRADIENT 2 // Colorful Gradient
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#define PS16DZ_SONOFF_L1_MODE_COLORFUL_BREATH 3 // Colorful Breath
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#define PS16DZ_SONOFF_L1_MODE_DIY_GRADIENT 4 // DIY Gradient (fade in and out) [Speed 1- 100, color]
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#define PS16DZ_SONOFF_L1_MODE_DIY_PULSE 5 // DIY Pulse (faster fade in and out) [Speed 1- 100, color]
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#define PS16DZ_SONOFF_L1_MODE_DIY_BREATH 6 // DIY Breath (toggle on/off) [Speed 1- 100, color]
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#define PS16DZ_SONOFF_L1_MODE_DIY_STROBE 7 // DIY Strobe (faster toggle on/off) [Speed 1- 100, color]
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#define PS16DZ_SONOFF_L1_MODE_RGB_GRADIENT 8 // RGB Gradient
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#define PS16DZ_SONOFF_L1_MODE_RGB_PULSE 9 // RGB Pulse
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#define PS16DZ_SONOFF_L1_MODE_RGB_BREATH 10 // RGB Breath
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#define PS16DZ_SONOFF_L1_MODE_RGB_STROBE 11 // RGB strobe
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#define PS16DZ_SONOFF_L1_MODE_SYNC_TO_MUSIC 12 // Sync to music [Speed 1- 100, sensitivity 1 - 10]
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#include <TasmotaSerial.h>
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TasmotaSerial *PS16DZSerial = nullptr;
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char *ps16dz_tx_buffer = nullptr; // Serial transmit buffer
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char *ps16dz_rx_buffer = nullptr; // Serial receive buffer
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int ps16dz_byte_counter = 0;
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uint8_t ps16dz_color[3]; // Most recent serial sent/received values
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uint8_t ps16dz_dimmer = 0;
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bool ps16dz_supports_color = false;
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bool ps16dz_switch = false;
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/*********************************************************************************************\
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* Internal Functions
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\*********************************************************************************************/
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void PS16DZSerialSendTxBuffer(void)
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{
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AddLog_P2(LOG_LEVEL_DEBUG, PSTR("PSZ: Send %s"), ps16dz_tx_buffer);
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PS16DZSerial->print(ps16dz_tx_buffer);
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PS16DZSerial->write(0x1B);
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PS16DZSerial->flush();
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}
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void PS16DZSerialSendOkCommand(void)
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{
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snprintf_P(ps16dz_tx_buffer, PS16DZ_BUFFER_SIZE, PSTR("AT+SEND=ok"));
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PS16DZSerialSendTxBuffer();
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}
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// Send a serial update command to the LED controller
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// For dimmer types:
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// AT+UPDATE="sequence":"1554682835320","switch":"on","bright":100
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// For color types:
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// AT+UPDATE="sequence":"1554682835320","switch":"on","bright":100,"mode":1,"colorR":255,"colorG":46,"colorB":101,"light_types":1
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void PS16DZSerialSendUpdateCommand(void)
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{
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uint8_t light_state_dimmer = light_state.getDimmer();
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// Dimming acts odd below 10% - this mirrors the threshold set on the faceplate itself
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light_state_dimmer = (light_state_dimmer < 10) ? 10 : light_state_dimmer;
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snprintf_P(ps16dz_tx_buffer, PS16DZ_BUFFER_SIZE, PSTR("AT+UPDATE=\"sequence\":\"%d%03d\",\"switch\":\"%s\",\"bright\":%d"),
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LocalTime(), millis()%1000, power?"on":"off", light_state_dimmer);
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if (ps16dz_supports_color) {
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uint8_t light_state_rgb[3];
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light_state.getRGB(&light_state_rgb[0], &light_state_rgb[1], &light_state_rgb[2]);
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snprintf_P(ps16dz_tx_buffer, PS16DZ_BUFFER_SIZE, PSTR("%s,\"mode\":%d,\"colorR\":%d,\"colorG\":%d,\"colorB\":%d,\"light_types\":1"),
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ps16dz_tx_buffer, PS16DZ_SONOFF_L1_MODE_COLORFUL, light_state_rgb[0], light_state_rgb[1], light_state_rgb[2]);
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}
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PS16DZSerialSendTxBuffer();
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}
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/*********************************************************************************************\
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* API Functions
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\*********************************************************************************************/
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bool PS16DZSerialSendUpdateCommandIfRequired(void)
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{
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if (!PS16DZSerial) { return true; }
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bool is_switch_change = (XdrvMailbox.payload != SRC_SWITCH);
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bool is_brightness_change = (light_state.getDimmer() != ps16dz_dimmer);
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uint8_t light_state_rgb[3];
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light_state.getRGB(&light_state_rgb[0], &light_state_rgb[1], &light_state_rgb[2]);
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bool is_color_change = (ps16dz_supports_color && (memcmp(light_state_rgb, ps16dz_color, 3) != 0));
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if (is_switch_change || is_brightness_change || is_color_change) {
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PS16DZSerialSendUpdateCommand();
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}
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return true;
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}
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bool PS16DZModuleSelected(void)
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{
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switch (my_module_type)
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{
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case PS_16_DZ:
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light_type = LT_SERIAL1;
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break;
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case SONOFF_L1:
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light_type = LT_PWM3;
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break;
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}
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return true;
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}
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void PS16DZInit(void)
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{
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ps16dz_supports_color = (light_state.getColorMode() == LCM_RGB);
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ps16dz_tx_buffer = (char*)(malloc(PS16DZ_BUFFER_SIZE));
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if (ps16dz_tx_buffer != nullptr) {
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ps16dz_rx_buffer = (char*)(malloc(PS16DZ_BUFFER_SIZE));
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if (ps16dz_rx_buffer != nullptr) {
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PS16DZSerial = new TasmotaSerial(pin[GPIO_RXD], pin[GPIO_TXD], 2);
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if (PS16DZSerial->begin(19200)) {
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if (PS16DZSerial->hardwareSerial()) { ClaimSerial(); }
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}
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}
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}
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}
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void PS16DZSerialInput(void)
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{
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char scmnd[20];
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while (PS16DZSerial->available()) {
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yield();
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uint8_t serial_in_byte = PS16DZSerial->read();
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if (serial_in_byte != 0x1B) {
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if (ps16dz_byte_counter >= PS16DZ_BUFFER_SIZE - 1) {
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memset(ps16dz_rx_buffer, 0, PS16DZ_BUFFER_SIZE);
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ps16dz_byte_counter = 0;
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}
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if (ps16dz_byte_counter || (!ps16dz_byte_counter && ('A' == serial_in_byte))) {
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ps16dz_rx_buffer[ps16dz_byte_counter++] = serial_in_byte;
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}
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} else {
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ps16dz_rx_buffer[ps16dz_byte_counter++] = 0x00;
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AddLog_P2(LOG_LEVEL_DEBUG, PSTR("PSZ: Received %s"), ps16dz_rx_buffer);
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if (!strncmp(ps16dz_rx_buffer+3, "UPDATE", 6)) {
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char *end_str;
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char *string = ps16dz_rx_buffer+10;
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char *token = strtok_r(string, ",", &end_str);
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bool color_updated[3] = { false, false, false };
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memcpy(ps16dz_color, Settings.light_color, 3);
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bool is_switch_change = false;
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bool is_color_change = false;
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bool is_brightness_change = false;
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while (token != nullptr) {
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char* end_token;
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char* token2 = strtok_r(token, ":", &end_token);
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char* token3 = strtok_r(nullptr, ":", &end_token);
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if (!strncmp(token2, "\"switch\"", 8)) {
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ps16dz_switch = !strncmp(token3, "\"on\"", 4) ? true : false;
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AddLog_P2(LOG_LEVEL_DEBUG, PSTR("PSZ: Switch %d"), ps16dz_switch);
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is_switch_change = (ps16dz_switch != power);
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if (is_switch_change) {
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ExecuteCommandPower(1, ps16dz_switch, SRC_SWITCH); // send SRC_SWITCH? to use as flag to prevent loop from inbound states from faceplate interaction
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}
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}
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else if (!strncmp(token2, "\"color", 6)) {
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char color_channel_name = token2[6];
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int color_index;
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switch(color_channel_name)
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{
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case 'R': color_index = 0;
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break;
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case 'G': color_index = 1;
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break;
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case 'B': color_index = 2;
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break;
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}
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int color_value = atoi(token3);
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ps16dz_color[color_index] = color_value;
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color_updated[color_index] = true;
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bool all_color_channels_updated = color_updated[0] && color_updated[1] && color_updated[2];
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if (all_color_channels_updated) {
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AddLog_P2(LOG_LEVEL_DEBUG, PSTR("PSZ: Color R:%d, G:%d, B:%d"), ps16dz_color[0], ps16dz_color[1], ps16dz_color[2]);
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is_color_change = (memcmp(ps16dz_color, Settings.light_color, 3) != 0);
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}
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if (power && is_color_change) {
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snprintf_P(scmnd, sizeof(scmnd), PSTR(D_CMND_COLOR "2 %02x%02x%02x"), ps16dz_color[0], ps16dz_color[1], ps16dz_color[2]);
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ExecuteCommand(scmnd, SRC_SWITCH);
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}
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}
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else if (!strncmp(token2, "\"bright\"", 8)) {
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ps16dz_dimmer = atoi(token3);
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AddLog_P2(LOG_LEVEL_DEBUG, PSTR("PSZ: Brightness %d"), ps16dz_dimmer);
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is_brightness_change = ps16dz_dimmer != Settings.light_dimmer;
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if (power && (ps16dz_dimmer > 0) && is_brightness_change) {
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snprintf_P(scmnd, sizeof(scmnd), PSTR(D_CMND_DIMMER " %d"), ps16dz_dimmer);
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ExecuteCommand(scmnd, SRC_SWITCH);
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}
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}
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else if (!strncmp(token2, "\"sequence\"", 10)) {
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AddLog_P2(LOG_LEVEL_DEBUG, PSTR("PSZ: Sequence %s"), token3);
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}
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token = strtok_r(nullptr, ",", &end_str);
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}
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if (!is_color_change && !is_brightness_change) {
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AddLog_P2(LOG_LEVEL_DEBUG, PSTR("PSZ: Update"));
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PS16DZSerialSendOkCommand();
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}
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}
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else if (!strncmp(ps16dz_rx_buffer+3, "SETTING", 7)) {
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if (!Settings.flag.button_restrict) {
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snprintf_P(scmnd, sizeof(scmnd), PSTR(D_CMND_WIFICONFIG " 2"));
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ExecuteCommand(scmnd, SRC_BUTTON);
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}
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}
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memset(ps16dz_rx_buffer, 0, PS16DZ_BUFFER_SIZE);
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ps16dz_byte_counter = 0;
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}
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}
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}
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/*********************************************************************************************\
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* Interface
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\*********************************************************************************************/
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bool Xdrv19(uint8_t function)
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{
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bool result = false;
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if ((PS_16_DZ == my_module_type) || (SONOFF_L1 == my_module_type)) {
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switch (function) {
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case FUNC_LOOP:
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if (PS16DZSerial) { PS16DZSerialInput(); }
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break;
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case FUNC_MODULE_INIT:
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result = PS16DZModuleSelected();
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break;
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case FUNC_INIT:
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PS16DZInit();
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break;
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case FUNC_SET_DEVICE_POWER:
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case FUNC_SET_CHANNELS:
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result = PS16DZSerialSendUpdateCommandIfRequired();
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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_PS_16_DZ
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#endif // USE_LIGHT
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