mirror of https://github.com/arendst/Tasmota.git
525 lines
16 KiB
C
525 lines
16 KiB
C
/*
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xsns_62_esp32_mi.h - MI-BLE-sensors via ESP32 support for Tasmota
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Copyright (C) 2021 Christian Baars 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_MI_ESP32
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/*********************************************************************************************\
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* structs and types
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\*********************************************************************************************/
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#pragma pack(1) // byte-aligned structures to read the sensor data
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struct frame_crtl_t{
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uint16_t reserved1:1;
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uint16_t reserved2:1;
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uint16_t reserved3:1;
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uint16_t isEncrypted:1;
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uint16_t includesMAC:1;
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uint16_t includesCapability:1;
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uint16_t includesObj:1;
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uint16_t MESH:1;
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uint16_t registered:1;
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uint16_t solicited:1;
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uint16_t AuthMode:2;
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uint16_t version:4;
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};
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struct mi_payload_t{
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uint8_t type;
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uint8_t ten;
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uint8_t size;
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union {
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struct{ //0d
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int16_t temp;
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uint16_t hum;
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}HT;
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uint8_t bat; //0a
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int16_t temp; //04
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uint16_t hum; //06
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uint32_t lux; //07
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uint8_t moist; //08
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uint16_t fert; //09
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uint8_t leak; //14
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uint32_t NMT; //17
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uint8_t door; //19
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struct{ //01
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uint8_t num;
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uint8_t value;
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uint8_t type;
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}Btn;
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};
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uint8_t padding[12]; //for decryption
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};
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struct mi_beacon_t{
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frame_crtl_t frame;
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uint16_t productID;
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uint8_t counter;
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uint8_t MAC[6];
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uint8_t capability;
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mi_payload_t payload;
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};
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struct cg_packet_t {
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uint16_t frameID;
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uint8_t MAC[6];
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uint16_t mode;
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union {
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struct {
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int16_t temp; // -9 - 59 °C
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uint16_t hum;
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};
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uint8_t bat;
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};
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};
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struct encPacket_t{
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// the packet is longer, but this part is enough to decrypt
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uint16_t PID;
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uint8_t frameCnt;
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uint8_t MAC[6];
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uint8_t payload[16]; // only a pointer to the address, size is variable
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};
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struct berryAdvPacket_t{
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uint8_t MAC[6];
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uint8_t addressType;
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uint8_t RSSI;
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uint8_t length; // length of payload
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uint8_t payload[32]; // only a pointer to the address, size is 0-31 bytes
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};
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union mi_bindKey_t{
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struct{
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uint8_t key[16];
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uint8_t MAC[6];
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};
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uint8_t buf[22];
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};
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struct ATCPacket_t{ //and PVVX
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uint8_t MAC[6];
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union {
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struct{
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uint16_t temp; //sadly this is in wrong endianess
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uint8_t hum;
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uint8_t batPer;
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uint16_t batMV;
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uint8_t frameCnt;
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} A; //ATC
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struct{
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int16_t temp;
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uint16_t hum; // x 0.01 %
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uint16_t batMV;
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uint8_t batPer;
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uint8_t frameCnt;
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struct {
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uint8_t reed:1;
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uint8_t TRGval:1;
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uint8_t TRGcrtl:1;
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uint8_t tempTrig:1;
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uint8_t humTrig:1;
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uint8_t spare:3;
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};
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}P; //PVVX
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};
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};
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#pragma pack(0)
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struct MI32connectionContextBerry_t{
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NimBLEUUID serviceUUID;
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NimBLEUUID charUUID;
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uint16_t returnCharUUID;
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uint8_t MAC[6];
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uint8_t * buffer;
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uint8_t operation;
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uint8_t addrType;
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int error;
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bool oneOp;
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bool response;
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};
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struct {
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// uint32_t period; // set manually in addition to TELE-period, is set to TELE-period after start
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TaskHandle_t ScanTask = nullptr;
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TaskHandle_t ConnTask = nullptr;
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MI32connectionContextBerry_t *conCtx = nullptr;
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union {
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struct {
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uint32_t init:1;
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uint32_t connected:1;
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uint32_t autoScan:1;
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uint32_t canScan:1;
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uint32_t runningScan:1;
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uint32_t canConnect:1;
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uint32_t willConnect:1;
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uint32_t readingDone:1;
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uint32_t shallTriggerTele:1;
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uint32_t triggeredTele:1;
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uint32_t shallShowStatusInfo:1; // react to amount of found sensors via RULES
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uint32_t didGetConfig:1;
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uint32_t didStartHAP:1;
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uint32_t triggerBerryAdvCB:1;
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uint32_t triggerBerryConnCB:1;
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uint32_t triggerNextConnJob:1;
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uint32_t readyForNextConnJob:1;
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};
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uint32_t all = 0;
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} mode;
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struct {
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uint8_t sensor; // points to to the number 0...255
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} state;
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struct {
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uint32_t allwaysAggregate:1; // always show all known values of one sensor in brdigemode
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uint32_t noSummary:1; // no sensor values at TELE-period
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uint32_t directBridgeMode:1; // send every received BLE-packet as a MQTT-message in real-time
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uint32_t showRSSI:1;
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uint32_t activeScan:1;
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uint32_t ignoreBogusBattery:1;
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uint32_t minimalSummary:1; // DEPRECATED!!
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} option;
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#ifdef USE_MI_EXT_GUI
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uint32_t widgetSlot;
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#ifdef USE_ENERGY_SENSOR
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uint8_t *energy_history;
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#endif //USE_ENERGY_SENSOR
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#endif //USE_MI_EXT_GUI
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#ifdef USE_MI_HOMEKIT
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void *outlet_hap_service[4]; //arbitrary chosen
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int8_t HKconnectedControllers = 0; //should never be < 0
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uint8_t HKinfoMsg = 0;
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char hk_setup_code[11];
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#endif //USE_MI_HOMEKIT
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void *beConnCB;
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void *beAdvCB;
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uint8_t *beAdvBuf;
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uint8_t infoMsg = 0;
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} MI32;
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struct mi_sensor_t{
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uint8_t type; //Flora = 1; MI-HT_V1=2; LYWSD02=3; LYWSD03=4; CGG1=5; CGD1=6
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uint8_t lastCnt; //device generated counter of the packet
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uint8_t shallSendMQTT;
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uint8_t MAC[6];
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uint8_t *key;
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uint32_t lastTimeSeen;
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union {
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struct {
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uint32_t needsKey:1;
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uint32_t temp:1;
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uint32_t hum:1;
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uint32_t tempHum:1; //every hum sensor has temp too, easier to use Tasmota dew point functions
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uint32_t lux:1;
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uint32_t moist:1;
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uint32_t fert:1;
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uint32_t bat:1;
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uint32_t NMT:1;
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uint32_t motion:1;
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uint32_t Btn:1;
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uint32_t knob:1;
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uint32_t door:1;
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uint32_t leak:1;
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};
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uint32_t raw;
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} feature;
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union {
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struct {
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uint32_t temp:1;
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uint32_t hum:1;
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uint32_t tempHum:1; //can be combined from the sensor
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uint32_t lux:1;
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uint32_t moist:1;
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uint32_t fert:1;
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uint32_t bat:1;
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uint32_t NMT:1;
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uint32_t motion:1;
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uint32_t noMotion:1;
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uint32_t Btn:1;
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uint32_t knob:1;
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uint32_t longpress:1; //needs no extra feature bit, because knob is sufficient
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uint32_t door:1;
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uint32_t leak:1;
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};
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uint32_t raw;
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} eventType;
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union{
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struct{
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uint8_t hasWrongKey:1;
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uint8_t isUnbounded:1;
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};
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uint8_t raw;
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} status;
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int RSSI;
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uint32_t lastTime;
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uint32_t lux;
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uint8_t *lux_history;
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float temp; //Flora, MJ_HT_V1, LYWSD0x, CGx
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uint8_t *temp_history;
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union {
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struct {
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uint8_t moisture;
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uint16_t fertility;
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char firmware[6]; // actually only for FLORA but hopefully we can add for more devices
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}; // Flora
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struct {
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float hum;
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uint8_t *hum_history;
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}; // MJ_HT_V1, LYWSD0x
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struct {
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uint16_t events; //"alarms" since boot
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uint32_t NMT; // no motion time in seconds for the MJYD2S and NLIGHT
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};
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struct {
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uint8_t Btn; // number starting with 0
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uint8_t BtnType; // 0 -single, 1 - double, 2 - hold
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uint8_t leak; // the leak sensor is the only non-RC device so far with a button fuctionality, so we handle it here
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int8_t dimmer;
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uint8_t pressed; // dimmer knob pressed while rotating
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uint8_t longpress; // dimmer knob pressed without rotating
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};
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uint8_t door;
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};
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union {
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uint8_t bat; // many values seem to be hard-coded garbage (LYWSD0x, GCD1)
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};
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#ifdef USE_MI_HOMEKIT
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//HAP handles
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void *temp_hap_service;
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void *hum_hap_service;
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void *light_hap_service;
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void *motion_hap_service;
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void *door_sensor_hap_service;
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void *button_hap_service[6];
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void *bat_hap_service;
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void *leak_hap_service;
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#endif //USE_MI_HOMEKIT
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};
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/*********************************************************************************************\
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* constants
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\*********************************************************************************************/
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#define D_CMND_MI32 "MI32"
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const char kMI32_Commands[] PROGMEM = D_CMND_MI32 "|Key|Cfg|Option";
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void (*const MI32_Commands[])(void) PROGMEM = {&CmndMi32Key, &CmndMi32Cfg, &CmndMi32Option };
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#define FLORA 1
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#define MJ_HT_V1 2
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#define LYWSD02 3
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#define LYWSD03MMC 4
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#define CGG1 5
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#define CGD1 6
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#define NLIGHT 7
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#define MJYD2S 8
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#define YLYK01 9
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#define MHOC401 10
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#define MHOC303 11
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#define ATC 12
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#define MCCGQ02 13
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#define SJWS01L 14
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#define PVVX 15
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#define YLKG08 16
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#define MI32_TYPES 16 //count this manually
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const uint16_t kMI32DeviceID[MI32_TYPES]={ 0x0098, // Flora
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0x01aa, // MJ_HT_V1
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0x045b, // LYWSD02
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0x055b, // LYWSD03
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0x0347, // CGG1
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0x0576, // CGD1
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0x03dd, // NLIGHT
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0x07f6, // MJYD2S
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0x0153, // YLYK01, old name yee-rc
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0x0387, // MHO-C401
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0x06d3, // MHO-C303
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0x0a1c, // ATC -> this is a fake ID
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0x098b, // MCCGQ02
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0x0863, // SJWS01L
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0x944a, // PVVX -> this is a fake ID
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0x03b6 // YLKG08 and YLKG07 - version w/wo mains
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};
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const char kMI32DeviceType1[] PROGMEM = "Flora";
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const char kMI32DeviceType2[] PROGMEM = "MJ_HT_V1";
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const char kMI32DeviceType3[] PROGMEM = "LYWSD02";
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const char kMI32DeviceType4[] PROGMEM = "LYWSD03";
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const char kMI32DeviceType5[] PROGMEM = "CGG1";
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const char kMI32DeviceType6[] PROGMEM = "CGD1";
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const char kMI32DeviceType7[] PROGMEM = "NLIGHT";
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const char kMI32DeviceType8[] PROGMEM = "MJYD2S";
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const char kMI32DeviceType9[] PROGMEM = "YLYK01"; //old name yeerc
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const char kMI32DeviceType10[] PROGMEM ="MHOC401";
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const char kMI32DeviceType11[] PROGMEM ="MHOC303";
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const char kMI32DeviceType12[] PROGMEM ="ATC";
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const char kMI32DeviceType13[] PROGMEM ="MCCGQ02";
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const char kMI32DeviceType14[] PROGMEM ="SJWS01L";
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const char kMI32DeviceType15[] PROGMEM ="PVVX";
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const char kMI32DeviceType16[] PROGMEM ="YLKG08";
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const char * kMI32DeviceType[] PROGMEM = {kMI32DeviceType1,kMI32DeviceType2,kMI32DeviceType3,kMI32DeviceType4,
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kMI32DeviceType5,kMI32DeviceType6,kMI32DeviceType7,kMI32DeviceType8,
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kMI32DeviceType9,kMI32DeviceType10,kMI32DeviceType11,kMI32DeviceType12,
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kMI32DeviceType13,kMI32DeviceType14,kMI32DeviceType15,kMI32DeviceType16};
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const char kMI32_ConnErrorMsg[] PROGMEM = "no Error|could not connect|did disconnect|got no service|got no characteristic|can not read|can not notify|can not write|did not write|notify time out";
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const char kMI32_BLEInfoMsg[] PROGMEM = "Scan ended|Got Notification|Did connect|Did disconnect|Still connected|Start scanning";
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const char kMI32_HKInfoMsg[] PROGMEM = "HAP core started|HAP core did not start!!|HAP controller disconnected|HAP controller connected|HAP outlet added";
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const char kMI32_ButtonMsg[] PROGMEM = "Single|Double|Hold"; //mapping: in Tasmota: 1,2,3 ; for HomeKit and Xiaomi 0,1,2
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/*********************************************************************************************\
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* enumerations
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\*********************************************************************************************/
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enum MI32_Commands { // commands useable in console or rules
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CMND_MI32_KEY, // add bind key to a mac for packet decryption
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CMND_MI32_CFG, // save config file as JSON with all sensors w/o keys to mi32cfg
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CMND_MI32_OPTION // change driver options at runtime
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};
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enum MI32_TASK {
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MI32_TASK_SCAN = 0,
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MI32_TASK_CONN = 1,
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};
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enum MI32_ConnErrorMsg {
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MI32_CONN_NO_ERROR = 0,
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MI32_CONN_NO_CONNECT,
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MI32_CONN_DID_DISCCONNECT,
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MI32_CONN_NO_SERVICE,
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MI32_CONN_NO_CHARACTERISTIC,
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MI32_CONN_CAN_NOT_READ,
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MI32_CONN_CAN_NOT_NOTIFY,
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MI32_CONN_CAN_NOT_WRITE,
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MI32_CONN_DID_NOT_WRITE,
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MI32_CONN_NOTIFY_TIMEOUT
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};
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enum MI32_BLEInfoMsg {
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MI32_SCAN_ENDED = 1,
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MI32_GOT_NOTIFICATION,
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MI32_DID_CONNECT,
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MI32_DID_DISCONNECT,
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MI32_STILL_CONNECTED,
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MI32_START_SCANNING
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};
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enum MI32_HKInfoMsg {
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MI32_HAP_DID_START = 1,
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MI32_HAP_DID_NOT_START,
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MI32_HAP_CONTROLLER_DISCONNECTED,
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MI32_HAP_CONTROLLER_CONNECTED,
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MI32_HAP_OUTLET_ADDED
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};
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/*********************************************************************************************\
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* extended web gui
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\*********************************************************************************************/
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#ifdef USE_WEBSERVER
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#ifdef USE_MI_EXT_GUI
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const char HTTP_BTN_MENU_MI32[] PROGMEM = "<p><form action='m32' method='get'><button>Mi Dashboard</button></form></p>";
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const char HTTP_MI32_SCRIPT_1[] PROGMEM =
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"function setUp(){setInterval(countUp,1000); setInterval(update,100);}"
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"function countUp(){let ti=document.querySelectorAll('.Ti');"
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"for(const el of ti){var t=parseInt(el.innerText);el.innerText=t+1;}}"
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"function update(){" //source, value
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"var xr=new XMLHttpRequest();"
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"xr.onreadystatechange=()=>{"
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"if(xr.readyState==4&&xr.status==200){"
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"var r = xr.response;" // new widget
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"if(r.length>2000){return;};if(r.length==0){return;}"
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"var d = document.createElement('div');"
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"d.innerHTML = r.trim();"
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"var old = eb(d.firstChild.id);"
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"old.parentNode.replaceChild(d.firstChild,old);"
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"};"
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"};"
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"xr.open('GET','/m32?wi=1',true);"
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"xr.send();"
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"};"
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;
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const char HTTP_MI32_STYLE[] PROGMEM =
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"<style onload=setTimeout(setUp,500)>.parent {display: flex;flex-wrap: wrap;justify-content: center;}svg{float:inline-end;}"
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".box {flex: 0 1 335px;margin: 5px;padding: 5px;border-radius: 0.8rem;background-color: rgba(221, 221, 221, 0.2);}</style>";
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const char HTTP_MI32_STYLE_SVG[] PROGMEM =
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"<svg height='0'><defs><linearGradient id='grd%u' x1='0%%' y1='0%%' x2='0%%' y2='15%%'>"
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"<stop offset='0' stop-color='rgba(%u, %u, %u, 0.5)'/>"
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"<stop offset='1' stop-color='rgba(%u, %u, %u, 0)'/></linearGradient></defs></svg>"
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;
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const char HTTP_MI32_PARENT_START[] PROGMEM =
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"<div class='parent'>"
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"<div class='box'><h2>MI32 Bridge</h2>"
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"Observing <span id='numDev'>%u</span> devices<br>"
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"Uptime: <span class='Ti'>%u</span> seconds<br>"
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#ifdef USE_MI_HOMEKIT
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"HomeKit setup code: %s<br>"
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"HAP controller connections: %d<br>"
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#else
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"HomeKit not enabled%s<br>"
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#endif //USE_MI_HOMEKIT
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"Free Heap: %u kB"
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"</div>";
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const char HTTP_MI32_WIDGET[] PROGMEM =
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"<div class='box' id='box%u' style='opacity:%u.5;'>MAC:%s RSSI:%d %s<br>"
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"<small>‌%s</small>"
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"<h2 style='margin-top:0em;'>%s"
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"<svg height='24' width='24' style='float:inline-end;'>"
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|
"<circle cx='11' cy='11' r='0' fill='#90ee90' opacity='0'>"
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|
"<animate attributeName='r' from='11' to='0' dur='9s' repeatCount='1'></animate>"
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"<animate attributeName='opacity' from='1' to='0' dur='9s' repeatCount='1'></animate></circle></svg>"
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"</h2>";
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const char HTTP_MI32_GRAPH[] PROGMEM =
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"<svg height='20' width='150'>"
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|
"<polyline points='%s'"
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|
"style='stroke:rgb(%u, %u, %u);fill:none;'></polyline>"
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|
"<polyline points='%s138,20 0,20'"
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|
"style='stroke:none;fill:url(#grd%u);'></polyline>"
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"</svg>";
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//rgb(185, 124, 124) - red, rgb(185, 124, 124) - blue, rgb(242, 240, 176) - yellow
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#ifdef USE_MI_ESP32_ENERGY
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const char HTTP_MI32_POWER_WIDGET[] PROGMEM =
|
|
"<div class='box' id='box%u'>"
|
|
"<h2 style='margin-top:0em;'>Energy"
|
|
"</h2>"
|
|
"<p>" D_VOLTAGE ": %.1f " D_UNIT_VOLT "</p>"
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|
"<p>" D_CURRENT ": %.3f " D_UNIT_AMPERE "</p>";
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#endif //USE_MI_ESP32_ENERGY
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#endif //USE_MI_EXT_GUI
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#endif // USE_WEBSERVER
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#endif //USE_MI_ESP32
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