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signal strength text sensor
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parent
2c9c6aea30
commit
24a4845991
6 changed files with 170 additions and 67 deletions
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@ -49,6 +49,142 @@ std::string state_to_string(ModemComponentState state) {
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return str;
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}
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std::string network_system_mode_to_string(int mode) {
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std::string network_type = "Not available";
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// Access Technology from AT+CNSMOD?
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// see https://www.waveshare.com/w/upload/a/af/SIM7500_SIM7600_Series_AT_Command_Manual_V3.00.pdf, page 109
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switch (mode) {
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case 0:
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network_type = "No service";
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break;
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case 1:
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network_type = "GSM";
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break;
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case 2:
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network_type = "GPRS";
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break;
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case 3:
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network_type = "EGPRS (EDGE)";
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break;
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case 4:
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network_type = "WCDMA";
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break;
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case 5:
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network_type = "HSDPA only (WCDMA)";
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break;
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case 6:
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network_type = "HSUPA only (WCDMA)";
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break;
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case 7:
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network_type = "HSPA (HSDPA and HSUPA, WCDMA)";
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break;
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case 8:
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network_type = "LTE";
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break;
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case 9:
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network_type = "TDS-CDMA";
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break;
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case 10:
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network_type = "TDS-HSDPA only";
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break;
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case 11:
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network_type = "TDS-HSUPA only";
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break;
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case 12:
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network_type = "TDS-HSPA (HSDPA and HSUPA)";
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break;
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case 13:
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network_type = "CDMA";
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break;
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case 14:
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network_type = "EVDO";
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break;
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case 15:
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network_type = "HYBRID (CDMA and EVDO)";
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break;
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case 16:
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network_type = "1XLTE (CDMA and LTE)";
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break;
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case 23:
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network_type = "EHRPD";
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break;
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case 24:
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network_type = "HYBRID (CDMA and EHRPD)";
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break;
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default:
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network_type = "Unknown";
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}
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return network_type;
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}
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std::string get_signal_bars(float rssi) { return get_signal_bars(rssi, true); }
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std::string get_signal_bars(float rssi, bool color) {
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// adapted from wifi_component.cpp
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// LOWER ONE QUARTER BLOCK
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// Unicode: U+2582, UTF-8: E2 96 82
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// LOWER HALF BLOCK
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// Unicode: U+2584, UTF-8: E2 96 84
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// LOWER THREE QUARTERS BLOCK
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// Unicode: U+2586, UTF-8: E2 96 86
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// FULL BLOCK
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// Unicode: U+2588, UTF-8: E2 96 88
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if (!color) {
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if (std::isnan(rssi)) {
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return {};
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} else if (rssi >= -50) {
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return "High";
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} else if (rssi >= -65) {
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return "Good";
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} else if (rssi >= -85) {
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return "Medium";
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} else {
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return "Low";
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}
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} else {
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if (std::isnan(rssi)) {
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return "\033[0;31m" // red
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"!"
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"\033[0;37m"
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"\xe2\x96\x84"
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"\xe2\x96\x86"
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"\xe2\x96\x88"
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"\033[0m";
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} else if (rssi >= -50) {
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return "\033[0;32m" // green
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"\xe2\x96\x82"
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"\xe2\x96\x84"
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"\xe2\x96\x86"
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"\xe2\x96\x88"
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"\033[0m";
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} else if (rssi >= -65) {
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return "\033[0;33m" // yellow
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"\xe2\x96\x82"
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"\xe2\x96\x84"
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"\xe2\x96\x86"
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"\033[0;37m"
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"\xe2\x96\x88"
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"\033[0m";
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} else if (rssi >= -85) {
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return "\033[0;33m" // yellow
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"\xe2\x96\x82"
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"\xe2\x96\x84"
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"\033[0;37m"
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"\xe2\x96\x86"
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"\xe2\x96\x88"
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"\033[0m";
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} else {
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return "\033[0;31m" // red
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"\xe2\x96\x82"
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"\033[0;37m"
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"\xe2\x96\x84"
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"\xe2\x96\x86"
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"\xe2\x96\x88"
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"\033[0m";
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}
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}
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}
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} // namespace modem
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} // namespace esphome
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#endif // USE_ESP_IDF
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@ -10,8 +10,10 @@ namespace esphome {
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namespace modem {
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std::string command_result_to_string(command_result err);
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std::string state_to_string(ModemComponentState state);
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std::string network_system_mode_to_string(int mode);
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std::string get_signal_bars(float rssi);
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std::string get_signal_bars(float rssi, bool color);
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} // namespace modem
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} // namespace esphome
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@ -1,7 +1,7 @@
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import esphome.codegen as cg
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from esphome.components import text_sensor
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import esphome.config_validation as cv
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from esphome.const import CONF_ID, DEVICE_CLASS_EMPTY
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from esphome.const import CONF_ID, CONF_SIGNAL_STRENGTH, DEVICE_CLASS_EMPTY
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from .. import MODEM_COMPONENT_SCHEMA, final_validate_platform, modem_ns
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@ -24,6 +24,9 @@ CONFIG_SCHEMA = cv.All(
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cv.Optional(CONF_NETWORK_TYPE): text_sensor.text_sensor_schema(
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device_class=DEVICE_CLASS_EMPTY,
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),
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cv.Optional(CONF_SIGNAL_STRENGTH): text_sensor.text_sensor_schema(
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device_class=DEVICE_CLASS_EMPTY,
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),
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}
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)
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.extend(MODEM_COMPONENT_SCHEMA)
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@ -40,4 +43,8 @@ async def to_code(config):
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network_type_text_sensor = await text_sensor.new_text_sensor(network_type)
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cg.add(var.set_network_type_text_sensor(network_type_text_sensor))
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if signal_strength := config.get(CONF_SIGNAL_STRENGTH, None):
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signal_strength_text_sensor = await text_sensor.new_text_sensor(signal_strength)
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cg.add(var.set_signal_strength_text_sensor(signal_strength_text_sensor))
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await cg.register_component(var, config)
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@ -11,6 +11,7 @@
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#include "esphome/core/application.h"
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#include "../modem_component.h"
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#include "../helpers.h"
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#define ESPHL_ERROR_CHECK(err, message) \
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if ((err) != ESP_OK) { \
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@ -38,6 +39,7 @@ void ModemTextSensor::update() {
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ESP_LOGD(TAG, "Modem text_sensor update");
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if (modem::global_modem_component->dce && modem::global_modem_component->modem_ready()) {
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this->update_network_type_text_sensor_();
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this->update_signal_strength_text_sensor_();
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}
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}
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@ -46,74 +48,22 @@ void ModemTextSensor::update_network_type_text_sensor_() {
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int act;
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std::string network_type = "Not available";
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if (modem::global_modem_component->dce->get_network_system_mode(act) == command_result::OK) {
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// Access Technology from AT+CNSMOD?
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// see https://www.waveshare.com/w/upload/a/af/SIM7500_SIM7600_Series_AT_Command_Manual_V3.00.pdf, page 109
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switch (act) {
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case 0:
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network_type = "No service";
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break;
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case 1:
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network_type = "GSM";
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break;
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case 2:
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network_type = "GPRS";
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break;
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case 3:
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network_type = "EGPRS (EDGE)";
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break;
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case 4:
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network_type = "WCDMA";
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break;
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case 5:
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network_type = "HSDPA only (WCDMA)";
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break;
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case 6:
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network_type = "HSUPA only (WCDMA)";
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break;
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case 7:
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network_type = "HSPA (HSDPA and HSUPA, WCDMA)";
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break;
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case 8:
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network_type = "LTE";
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break;
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case 9:
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network_type = "TDS-CDMA";
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break;
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case 10:
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network_type = "TDS-HSDPA only";
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break;
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case 11:
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network_type = "TDS-HSUPA only";
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break;
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case 12:
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network_type = "TDS-HSPA (HSDPA and HSUPA)";
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break;
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case 13:
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network_type = "CDMA";
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break;
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case 14:
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network_type = "EVDO";
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break;
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case 15:
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network_type = "HYBRID (CDMA and EVDO)";
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break;
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case 16:
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network_type = "1XLTE (CDMA and LTE)";
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break;
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case 23:
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network_type = "EHRPD";
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break;
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case 24:
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network_type = "HYBRID (CDMA and EHRPD)";
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break;
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default:
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network_type = "Unknown";
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}
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network_type = network_system_mode_to_string(act);
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}
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this->network_type_text_sensor_->publish_state(network_type);
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}
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}
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void ModemTextSensor::update_signal_strength_text_sensor_() {
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if (modem::global_modem_component->modem_ready() && this->network_type_text_sensor_) {
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float rssi, ber;
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if (modem::global_modem_component->get_signal_quality(rssi, ber)) {
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std::string bars = get_signal_bars(rssi, false);
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this->signal_strength_text_sensor_->publish_state(bars);
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}
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}
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}
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} // namespace modem
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} // namespace esphome
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@ -18,6 +18,9 @@ class ModemTextSensor : public PollingComponent {
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void set_network_type_text_sensor(text_sensor::TextSensor *network_type_text_sensor) {
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this->network_type_text_sensor_ = network_type_text_sensor;
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}
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void set_signal_strength_text_sensor(text_sensor::TextSensor *signal_strength_text_sensor) {
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this->signal_strength_text_sensor_ = signal_strength_text_sensor;
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}
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// ========== INTERNAL METHODS ==========
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// (In most use cases you won't need these)
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protected:
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text_sensor::TextSensor *network_type_text_sensor_{nullptr};
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text_sensor::TextSensor *signal_strength_text_sensor_{nullptr};
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void update_network_type_text_sensor_();
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void update_signal_strength_text_sensor_();
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};
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} // namespace modem
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@ -12,19 +12,22 @@ modem:
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pin_code: "0000"
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enable_on_boot: True
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enable_cmux: True
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reboot_timeout: 5min
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init_at:
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- AT
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on_not_responding:
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logger.log: "modem not responding"
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on_connect:
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logger.log: "got IP"
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logger.log: "modem connected"
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on_disconnect:
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logger.log: "lost IP"
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logger.log: "modem disconnected"
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text_sensor:
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- platform: modem
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network_type:
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name: network type
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signal_strength:
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name: Signal strength
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sensor:
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- platform: modem
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