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219 lines
5.6 KiB
219 lines
5.6 KiB
//
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// MQTT Commands coming in from the attache microcontrollver over the serial port
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//
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#include <esp8266.h>
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#include "mqtt.h"
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#include "mqtt_client.h"
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#include "mqtt_cmd.h"
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#ifdef MQTTCMD_DBG
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#define DBG(format, ...) do { os_printf(format, ## __VA_ARGS__); } while(0)
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#else
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#define DBG(format, ...) do { } while(0)
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#endif
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static bool blocked; // flag to prevent MQTT from sending on serial while trying to PGM uC
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void ICACHE_FLASH_ATTR
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mqtt_block() { blocked = true; }
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void ICACHE_FLASH_ATTR
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mqtt_unblock() { blocked = false; }
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void ICACHE_FLASH_ATTR
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cmdMqttConnectedCb(MQTT_Client* client) {
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if (blocked) return;
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MqttCmdCb* cb = (MqttCmdCb*)client->user_data;
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DBG("MQTT: Connected Cb=%p\n", (void*)cb->connectedCb);
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cmdResponseStart(CMD_RESP_CB, cb->connectedCb, 0);
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cmdResponseEnd();
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}
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void ICACHE_FLASH_ATTR
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cmdMqttDisconnectedCb(MQTT_Client* client) {
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if (blocked) return;
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MqttCmdCb* cb = (MqttCmdCb*)client->user_data;
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DBG("MQTT: Disconnected cb=%p\n", (void*)cb->disconnectedCb);
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cmdResponseStart(CMD_RESP_CB, cb->disconnectedCb, 0);
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cmdResponseEnd();
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}
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void ICACHE_FLASH_ATTR
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cmdMqttPublishedCb(MQTT_Client* client) {
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if (blocked) return;
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MqttCmdCb* cb = (MqttCmdCb*)client->user_data;
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DBG("MQTT: Published cb=%p\n", (void*)cb->publishedCb);
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cmdResponseStart(CMD_RESP_CB, cb->publishedCb, 0);
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cmdResponseEnd();
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}
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void ICACHE_FLASH_ATTR
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cmdMqttDataCb(MQTT_Client* client, const char* topic, uint32_t topic_len,
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const char* data, uint32_t data_len)
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{
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if (blocked) return;
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MqttCmdCb* cb = (MqttCmdCb*)client->user_data;
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DBG("MQTT: Data cb=%p topic=%s len=%u\n", (void*)cb->dataCb, topic, data_len);
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cmdResponseStart(CMD_RESP_CB, cb->dataCb, 2);
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cmdResponseBody(topic, topic_len);
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cmdResponseBody(data, data_len);
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cmdResponseEnd();
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}
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void ICACHE_FLASH_ATTR
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MQTTCMD_Lwt(CmdPacket *cmd) {
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CmdRequest req;
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cmdRequest(&req, cmd);
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if (cmdGetArgc(&req) != 4) return;
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MQTT_Client* client = &mqttClient;
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// free old topic & message
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if (client->connect_info.will_topic)
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os_free(client->connect_info.will_topic);
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if (client->connect_info.will_message)
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os_free(client->connect_info.will_message);
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uint16_t len;
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// get topic
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len = cmdArgLen(&req);
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if (len > 128) return; // safety check
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client->connect_info.will_topic = (char*)os_zalloc(len + 1);
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cmdPopArg(&req, client->connect_info.will_topic, len);
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client->connect_info.will_topic[len] = 0;
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// get message
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len = cmdArgLen(&req);
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if (len > 128) return; // safety check
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client->connect_info.will_message = (char*)os_zalloc(len + 1);
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cmdPopArg(&req, client->connect_info.will_message, len);
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client->connect_info.will_message[len] = 0;
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// get qos
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cmdPopArg(&req, (uint8_t*)&client->connect_info.will_qos, 4);
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// get retain
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cmdPopArg(&req, (uint8_t*)&client->connect_info.will_retain, 4);
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DBG("MQTT: MQTTCMD_Lwt topic=%s, message=%s, qos=%d, retain=%d\n",
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client->connect_info.will_topic,
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client->connect_info.will_message,
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client->connect_info.will_qos,
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client->connect_info.will_retain);
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// trigger a reconnect to set the LWT
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MQTT_Reconnect(client);
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}
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void ICACHE_FLASH_ATTR
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MQTTCMD_Publish(CmdPacket *cmd) {
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CmdRequest req;
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cmdRequest(&req, cmd);
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if (cmdGetArgc(&req) != 5) return;
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MQTT_Client* client = &mqttClient;
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uint16_t len;
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// get topic
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len = cmdArgLen(&req);
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if (len > 128) return; // safety check
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uint8_t *topic = (uint8_t*)os_zalloc(len + 1);
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cmdPopArg(&req, topic, len);
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topic[len] = 0;
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// get data
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len = cmdArgLen(&req);
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uint8_t *data = (uint8_t*)os_zalloc(len+1);
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if (!data) { // safety check
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os_free(topic);
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return;
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}
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cmdPopArg(&req, data, len);
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data[len] = 0;
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uint16_t data_len;
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uint8_t qos, retain;
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// get data length
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cmdPopArg(&req, &data_len, sizeof(data_len));
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// get qos
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cmdPopArg(&req, &qos, sizeof(qos));
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// get retain
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cmdPopArg(&req, &retain, sizeof(retain));
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DBG("MQTT: MQTTCMD_Publish topic=%s, data_len=%d, qos=%d, retain=%d\n",
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topic, data_len, qos, retain);
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MQTT_Publish(client, (char*)topic, (char*)data, data_len, qos%3, retain&1);
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os_free(topic);
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os_free(data);
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return;
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}
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void ICACHE_FLASH_ATTR
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MQTTCMD_Subscribe(CmdPacket *cmd) {
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CmdRequest req;
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cmdRequest(&req, cmd);
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if (cmdGetArgc(&req) != 2) return;
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MQTT_Client* client = &mqttClient;
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uint16_t len;
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// get topic
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len = cmdArgLen(&req);
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if (len > 128) return; // safety check
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uint8_t* topic = (uint8_t*)os_zalloc(len + 1);
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cmdPopArg(&req, topic, len);
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topic[len] = 0;
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// get qos
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uint32_t qos = 0;
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cmdPopArg(&req, (uint8_t*)&qos, 4);
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DBG("MQTT: MQTTCMD_Subscribe topic=%s, qos=%u\n", topic, qos);
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MQTT_Subscribe(client, (char*)topic, (uint8_t)qos);
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os_free(topic);
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return;
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}
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void ICACHE_FLASH_ATTR
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MQTTCMD_Setup(CmdPacket *cmd) {
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CmdRequest req;
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cmdRequest(&req, cmd);
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MQTT_Client* client = &mqttClient;
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if (cmdGetArgc(&req) != 4) return;
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// create callback
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MqttCmdCb* callback = (MqttCmdCb*)os_zalloc(sizeof(MqttCmdCb));
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cmdPopArg(&req, &callback->connectedCb, 4);
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cmdPopArg(&req, &callback->disconnectedCb, 4);
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cmdPopArg(&req, &callback->publishedCb, 4);
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cmdPopArg(&req, &callback->dataCb, 4);
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client->user_data = callback;
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DBG("MQTT connectedCb=%x\n", callback->connectedCb);
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client->cmdConnectedCb = cmdMqttConnectedCb;
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client->cmdDisconnectedCb = cmdMqttDisconnectedCb;
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client->cmdPublishedCb = cmdMqttPublishedCb;
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client->cmdDataCb = cmdMqttDataCb;
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if (client->connState == MQTT_CONNECTED) {
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if (callback->connectedCb)
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cmdMqttConnectedCb(client);
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} else if (callback->disconnectedCb) {
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cmdMqttDisconnectedCb(client);
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}
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}
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