Remove fragile JSON libraries from the firmware while retaining Meshtasticd JSON support (#10152)
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f86cb7781e
@@ -1,42 +1,31 @@
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#include "../test_helpers.h"
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// Helper function for all encrypted packet assertions
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void assert_encrypted_packet(const std::string &json, meshtastic_MeshPacket packet)
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static void assert_encrypted_packet(const std::string &json, const meshtastic_MeshPacket &packet)
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{
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// Parse and validate JSON
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TEST_ASSERT_TRUE(json.length() > 0);
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JSONValue *root = JSON::Parse(json.c_str());
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TEST_ASSERT_NOT_NULL(root);
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TEST_ASSERT_TRUE(root->IsObject());
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Json::Value root = parse_json(json);
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TEST_ASSERT_TRUE(root.isObject());
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JSONObject jsonObj = root->AsObject();
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TEST_ASSERT_TRUE(root.isMember("from"));
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TEST_ASSERT_EQUAL(packet.from, root["from"].asUInt());
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// Assert basic packet fields
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TEST_ASSERT_TRUE(jsonObj.find("from") != jsonObj.end());
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TEST_ASSERT_EQUAL(packet.from, (uint32_t)jsonObj.at("from")->AsNumber());
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TEST_ASSERT_TRUE(root.isMember("to"));
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TEST_ASSERT_EQUAL(packet.to, root["to"].asUInt());
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TEST_ASSERT_TRUE(jsonObj.find("to") != jsonObj.end());
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TEST_ASSERT_EQUAL(packet.to, (uint32_t)jsonObj.at("to")->AsNumber());
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TEST_ASSERT_TRUE(root.isMember("id"));
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TEST_ASSERT_EQUAL(packet.id, root["id"].asUInt());
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TEST_ASSERT_TRUE(jsonObj.find("id") != jsonObj.end());
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TEST_ASSERT_EQUAL(packet.id, (uint32_t)jsonObj.at("id")->AsNumber());
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TEST_ASSERT_TRUE(root.isMember("bytes"));
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TEST_ASSERT_TRUE(root["bytes"].isString());
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// Assert encrypted data fields
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TEST_ASSERT_TRUE(jsonObj.find("bytes") != jsonObj.end());
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TEST_ASSERT_TRUE(jsonObj.at("bytes")->IsString());
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TEST_ASSERT_TRUE(root.isMember("size"));
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TEST_ASSERT_EQUAL(packet.encrypted.size, (int)root["size"].asInt());
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TEST_ASSERT_TRUE(jsonObj.find("size") != jsonObj.end());
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TEST_ASSERT_EQUAL(packet.encrypted.size, (int)jsonObj.at("size")->AsNumber());
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// Assert hex encoding
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std::string encrypted_hex = jsonObj["bytes"]->AsString();
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std::string encrypted_hex = root["bytes"].asString();
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TEST_ASSERT_EQUAL(packet.encrypted.size * 2, encrypted_hex.length());
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delete root;
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}
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// Test encrypted packet serialization
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void test_encrypted_packet_serialization()
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{
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const char *data = "encrypted_payload_data";
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@@ -48,7 +37,6 @@ void test_encrypted_packet_serialization()
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assert_encrypted_packet(json, packet);
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}
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// Test empty encrypted packet
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void test_empty_encrypted_packet()
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{
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meshtastic_MeshPacket packet =
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@@ -13,7 +13,6 @@ static size_t encode_user_info(uint8_t *buffer, size_t buffer_size)
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return stream.bytes_written;
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}
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// Test NODEINFO_APP port
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void test_nodeinfo_serialization()
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{
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uint8_t buffer[256];
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@@ -24,28 +23,20 @@ void test_nodeinfo_serialization()
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std::string json = MeshPacketSerializer::JsonSerialize(&packet, false);
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TEST_ASSERT_TRUE(json.length() > 0);
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JSONValue *root = JSON::Parse(json.c_str());
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TEST_ASSERT_NOT_NULL(root);
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TEST_ASSERT_TRUE(root->IsObject());
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Json::Value root = parse_json(json);
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TEST_ASSERT_TRUE(root.isObject());
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JSONObject jsonObj = root->AsObject();
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TEST_ASSERT_TRUE(root.isMember("type"));
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TEST_ASSERT_EQUAL_STRING("nodeinfo", root["type"].asString().c_str());
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// Check message type
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TEST_ASSERT_TRUE(jsonObj.find("type") != jsonObj.end());
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TEST_ASSERT_EQUAL_STRING("nodeinfo", jsonObj["type"]->AsString().c_str());
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TEST_ASSERT_TRUE(root.isMember("payload"));
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TEST_ASSERT_TRUE(root["payload"].isObject());
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// Check payload
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TEST_ASSERT_TRUE(jsonObj.find("payload") != jsonObj.end());
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TEST_ASSERT_TRUE(jsonObj["payload"]->IsObject());
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const Json::Value &payload = root["payload"];
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JSONObject payload = jsonObj["payload"]->AsObject();
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TEST_ASSERT_TRUE(payload.isMember("shortname"));
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TEST_ASSERT_EQUAL_STRING("TEST", payload["shortname"].asString().c_str());
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// Verify user data
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TEST_ASSERT_TRUE(payload.find("shortname") != payload.end());
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TEST_ASSERT_EQUAL_STRING("TEST", payload["shortname"]->AsString().c_str());
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TEST_ASSERT_TRUE(payload.find("longname") != payload.end());
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TEST_ASSERT_EQUAL_STRING("Test User", payload["longname"]->AsString().c_str());
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delete root;
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TEST_ASSERT_TRUE(payload.isMember("longname"));
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TEST_ASSERT_EQUAL_STRING("Test User", payload["longname"].asString().c_str());
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}
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@@ -3,8 +3,8 @@
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static size_t encode_position(uint8_t *buffer, size_t buffer_size)
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{
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meshtastic_Position position = meshtastic_Position_init_zero;
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position.latitude_i = 374208000; // 37.4208 degrees * 1e7
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position.longitude_i = -1221981000; // -122.1981 degrees * 1e7
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position.latitude_i = 374208000;
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position.longitude_i = -1221981000;
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position.altitude = 123;
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position.time = 1609459200;
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position.has_altitude = true;
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@@ -16,7 +16,6 @@ static size_t encode_position(uint8_t *buffer, size_t buffer_size)
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return stream.bytes_written;
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}
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// Test POSITION_APP port
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void test_position_serialization()
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{
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uint8_t buffer[256];
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@@ -27,31 +26,23 @@ void test_position_serialization()
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std::string json = MeshPacketSerializer::JsonSerialize(&packet, false);
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TEST_ASSERT_TRUE(json.length() > 0);
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JSONValue *root = JSON::Parse(json.c_str());
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TEST_ASSERT_NOT_NULL(root);
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TEST_ASSERT_TRUE(root->IsObject());
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Json::Value root = parse_json(json);
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TEST_ASSERT_TRUE(root.isObject());
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JSONObject jsonObj = root->AsObject();
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TEST_ASSERT_TRUE(root.isMember("type"));
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TEST_ASSERT_EQUAL_STRING("position", root["type"].asString().c_str());
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// Check message type
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TEST_ASSERT_TRUE(jsonObj.find("type") != jsonObj.end());
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TEST_ASSERT_EQUAL_STRING("position", jsonObj["type"]->AsString().c_str());
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TEST_ASSERT_TRUE(root.isMember("payload"));
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TEST_ASSERT_TRUE(root["payload"].isObject());
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// Check payload
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TEST_ASSERT_TRUE(jsonObj.find("payload") != jsonObj.end());
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TEST_ASSERT_TRUE(jsonObj["payload"]->IsObject());
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const Json::Value &payload = root["payload"];
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JSONObject payload = jsonObj["payload"]->AsObject();
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TEST_ASSERT_TRUE(payload.isMember("latitude_i"));
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TEST_ASSERT_EQUAL(374208000, payload["latitude_i"].asInt());
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// Verify position data
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TEST_ASSERT_TRUE(payload.find("latitude_i") != payload.end());
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TEST_ASSERT_EQUAL(374208000, (int)payload["latitude_i"]->AsNumber());
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TEST_ASSERT_TRUE(payload.isMember("longitude_i"));
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TEST_ASSERT_EQUAL(-1221981000, payload["longitude_i"].asInt());
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TEST_ASSERT_TRUE(payload.find("longitude_i") != payload.end());
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TEST_ASSERT_EQUAL(-1221981000, (int)payload["longitude_i"]->AsNumber());
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TEST_ASSERT_TRUE(payload.find("altitude") != payload.end());
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TEST_ASSERT_EQUAL(123, (int)payload["altitude"]->AsNumber());
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delete root;
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TEST_ASSERT_TRUE(payload.isMember("altitude"));
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TEST_ASSERT_EQUAL(123, payload["altitude"].asInt());
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}
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@@ -1,6 +1,62 @@
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#include "../test_helpers.h"
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// Helper function to create and encode device metrics
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static void fill_all_env_metrics(meshtastic_Telemetry &telemetry)
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{
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telemetry.variant.environment_metrics.temperature = 23.56f;
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telemetry.variant.environment_metrics.has_temperature = true;
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telemetry.variant.environment_metrics.relative_humidity = 65.43f;
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telemetry.variant.environment_metrics.has_relative_humidity = true;
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telemetry.variant.environment_metrics.barometric_pressure = 1013.27f;
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telemetry.variant.environment_metrics.has_barometric_pressure = true;
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telemetry.variant.environment_metrics.gas_resistance = 50.58f;
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telemetry.variant.environment_metrics.has_gas_resistance = true;
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telemetry.variant.environment_metrics.iaq = 120;
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telemetry.variant.environment_metrics.has_iaq = true;
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telemetry.variant.environment_metrics.voltage = 3.34f;
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telemetry.variant.environment_metrics.has_voltage = true;
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telemetry.variant.environment_metrics.current = 0.53f;
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telemetry.variant.environment_metrics.has_current = true;
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telemetry.variant.environment_metrics.lux = 450.12f;
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telemetry.variant.environment_metrics.has_lux = true;
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telemetry.variant.environment_metrics.white_lux = 380.95f;
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telemetry.variant.environment_metrics.has_white_lux = true;
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telemetry.variant.environment_metrics.ir_lux = 25.37f;
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telemetry.variant.environment_metrics.has_ir_lux = true;
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telemetry.variant.environment_metrics.uv_lux = 15.68f;
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telemetry.variant.environment_metrics.has_uv_lux = true;
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telemetry.variant.environment_metrics.distance = 150.29f;
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telemetry.variant.environment_metrics.has_distance = true;
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telemetry.variant.environment_metrics.wind_direction = 180;
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telemetry.variant.environment_metrics.has_wind_direction = true;
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telemetry.variant.environment_metrics.wind_speed = 5.52f;
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telemetry.variant.environment_metrics.has_wind_speed = true;
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telemetry.variant.environment_metrics.wind_gust = 8.24f;
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telemetry.variant.environment_metrics.has_wind_gust = true;
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telemetry.variant.environment_metrics.wind_lull = 2.13f;
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telemetry.variant.environment_metrics.has_wind_lull = true;
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telemetry.variant.environment_metrics.weight = 75.56f;
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telemetry.variant.environment_metrics.has_weight = true;
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telemetry.variant.environment_metrics.radiation = 0.13f;
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telemetry.variant.environment_metrics.has_radiation = true;
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telemetry.variant.environment_metrics.rainfall_1h = 2.57f;
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telemetry.variant.environment_metrics.has_rainfall_1h = true;
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telemetry.variant.environment_metrics.rainfall_24h = 15.89f;
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telemetry.variant.environment_metrics.has_rainfall_24h = true;
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telemetry.variant.environment_metrics.soil_moisture = 85;
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telemetry.variant.environment_metrics.has_soil_moisture = true;
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telemetry.variant.environment_metrics.soil_temperature = 18.54f;
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telemetry.variant.environment_metrics.has_soil_temperature = true;
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}
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static size_t encode_telemetry_device_metrics(uint8_t *buffer, size_t buffer_size)
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{
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meshtastic_Telemetry telemetry = meshtastic_Telemetry_init_zero;
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@@ -22,507 +78,233 @@ static size_t encode_telemetry_device_metrics(uint8_t *buffer, size_t buffer_siz
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return stream.bytes_written;
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}
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// Helper function to create and encode empty environment metrics (no fields set)
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static size_t encode_telemetry_environment_metrics_empty(uint8_t *buffer, size_t buffer_size)
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{
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meshtastic_Telemetry telemetry = meshtastic_Telemetry_init_zero;
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telemetry.time = 1609459200;
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telemetry.which_variant = meshtastic_Telemetry_environment_metrics_tag;
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// NO fields are set - all has_* flags remain false
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// This tests that empty environment metrics don't produce any JSON fields
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pb_ostream_t stream = pb_ostream_from_buffer(buffer, buffer_size);
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pb_encode(&stream, &meshtastic_Telemetry_msg, &telemetry);
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return stream.bytes_written;
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}
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// Helper function to create environment metrics with ALL possible fields set
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// This function should be updated whenever new fields are added to the protobuf
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static size_t encode_telemetry_environment_metrics_all_fields(uint8_t *buffer, size_t buffer_size)
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{
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meshtastic_Telemetry telemetry = meshtastic_Telemetry_init_zero;
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telemetry.time = 1609459200;
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telemetry.which_variant = meshtastic_Telemetry_environment_metrics_tag;
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// Basic environment metrics
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telemetry.variant.environment_metrics.temperature = 23.56f;
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telemetry.variant.environment_metrics.has_temperature = true;
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telemetry.variant.environment_metrics.relative_humidity = 65.43f;
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telemetry.variant.environment_metrics.has_relative_humidity = true;
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telemetry.variant.environment_metrics.barometric_pressure = 1013.27f;
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telemetry.variant.environment_metrics.has_barometric_pressure = true;
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// Gas and air quality
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telemetry.variant.environment_metrics.gas_resistance = 50.58f;
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telemetry.variant.environment_metrics.has_gas_resistance = true;
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telemetry.variant.environment_metrics.iaq = 120;
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telemetry.variant.environment_metrics.has_iaq = true;
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// Power measurements
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telemetry.variant.environment_metrics.voltage = 3.34f;
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telemetry.variant.environment_metrics.has_voltage = true;
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telemetry.variant.environment_metrics.current = 0.53f;
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telemetry.variant.environment_metrics.has_current = true;
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// Light measurements (ALL 4 types)
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telemetry.variant.environment_metrics.lux = 450.12f;
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telemetry.variant.environment_metrics.has_lux = true;
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telemetry.variant.environment_metrics.white_lux = 380.95f;
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telemetry.variant.environment_metrics.has_white_lux = true;
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telemetry.variant.environment_metrics.ir_lux = 25.37f;
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telemetry.variant.environment_metrics.has_ir_lux = true;
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telemetry.variant.environment_metrics.uv_lux = 15.68f;
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telemetry.variant.environment_metrics.has_uv_lux = true;
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// Distance measurement
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telemetry.variant.environment_metrics.distance = 150.29f;
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telemetry.variant.environment_metrics.has_distance = true;
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// Wind measurements (ALL 4 types)
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telemetry.variant.environment_metrics.wind_direction = 180;
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telemetry.variant.environment_metrics.has_wind_direction = true;
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telemetry.variant.environment_metrics.wind_speed = 5.52f;
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telemetry.variant.environment_metrics.has_wind_speed = true;
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telemetry.variant.environment_metrics.wind_gust = 8.24f;
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telemetry.variant.environment_metrics.has_wind_gust = true;
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telemetry.variant.environment_metrics.wind_lull = 2.13f;
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telemetry.variant.environment_metrics.has_wind_lull = true;
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// Weight measurement
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telemetry.variant.environment_metrics.weight = 75.56f;
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telemetry.variant.environment_metrics.has_weight = true;
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// Radiation measurement
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telemetry.variant.environment_metrics.radiation = 0.13f;
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telemetry.variant.environment_metrics.has_radiation = true;
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// Rainfall measurements (BOTH types)
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telemetry.variant.environment_metrics.rainfall_1h = 2.57f;
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telemetry.variant.environment_metrics.has_rainfall_1h = true;
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telemetry.variant.environment_metrics.rainfall_24h = 15.89f;
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telemetry.variant.environment_metrics.has_rainfall_24h = true;
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// Soil measurements (BOTH types)
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telemetry.variant.environment_metrics.soil_moisture = 85;
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telemetry.variant.environment_metrics.has_soil_moisture = true;
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telemetry.variant.environment_metrics.soil_temperature = 18.54f;
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telemetry.variant.environment_metrics.has_soil_temperature = true;
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// IMPORTANT: When new environment fields are added to the protobuf,
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// they MUST be added here too, or the coverage test will fail!
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pb_ostream_t stream = pb_ostream_from_buffer(buffer, buffer_size);
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pb_encode(&stream, &meshtastic_Telemetry_msg, &telemetry);
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return stream.bytes_written;
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}
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// Helper function to create and encode environment metrics with all current fields
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static size_t encode_telemetry_environment_metrics(uint8_t *buffer, size_t buffer_size)
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{
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meshtastic_Telemetry telemetry = meshtastic_Telemetry_init_zero;
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telemetry.time = 1609459200;
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telemetry.which_variant = meshtastic_Telemetry_environment_metrics_tag;
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// Basic environment metrics
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telemetry.variant.environment_metrics.temperature = 23.56f;
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telemetry.variant.environment_metrics.has_temperature = true;
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telemetry.variant.environment_metrics.relative_humidity = 65.43f;
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telemetry.variant.environment_metrics.has_relative_humidity = true;
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telemetry.variant.environment_metrics.barometric_pressure = 1013.27f;
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telemetry.variant.environment_metrics.has_barometric_pressure = true;
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// Gas and air quality
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telemetry.variant.environment_metrics.gas_resistance = 50.58f;
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telemetry.variant.environment_metrics.has_gas_resistance = true;
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telemetry.variant.environment_metrics.iaq = 120;
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telemetry.variant.environment_metrics.has_iaq = true;
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// Power measurements
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telemetry.variant.environment_metrics.voltage = 3.34f;
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telemetry.variant.environment_metrics.has_voltage = true;
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telemetry.variant.environment_metrics.current = 0.53f;
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telemetry.variant.environment_metrics.has_current = true;
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// Light measurements
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telemetry.variant.environment_metrics.lux = 450.12f;
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telemetry.variant.environment_metrics.has_lux = true;
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telemetry.variant.environment_metrics.white_lux = 380.95f;
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telemetry.variant.environment_metrics.has_white_lux = true;
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telemetry.variant.environment_metrics.ir_lux = 25.37f;
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telemetry.variant.environment_metrics.has_ir_lux = true;
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telemetry.variant.environment_metrics.uv_lux = 15.68f;
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telemetry.variant.environment_metrics.has_uv_lux = true;
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// Distance measurement
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telemetry.variant.environment_metrics.distance = 150.29f;
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telemetry.variant.environment_metrics.has_distance = true;
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// Wind measurements
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telemetry.variant.environment_metrics.wind_direction = 180;
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telemetry.variant.environment_metrics.has_wind_direction = true;
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telemetry.variant.environment_metrics.wind_speed = 5.52f;
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telemetry.variant.environment_metrics.has_wind_speed = true;
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telemetry.variant.environment_metrics.wind_gust = 8.24f;
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telemetry.variant.environment_metrics.has_wind_gust = true;
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telemetry.variant.environment_metrics.wind_lull = 2.13f;
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telemetry.variant.environment_metrics.has_wind_lull = true;
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// Weight measurement
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telemetry.variant.environment_metrics.weight = 75.56f;
|
||||
telemetry.variant.environment_metrics.has_weight = true;
|
||||
|
||||
// Radiation measurement
|
||||
telemetry.variant.environment_metrics.radiation = 0.13f;
|
||||
telemetry.variant.environment_metrics.has_radiation = true;
|
||||
|
||||
// Rainfall measurements
|
||||
telemetry.variant.environment_metrics.rainfall_1h = 2.57f;
|
||||
telemetry.variant.environment_metrics.has_rainfall_1h = true;
|
||||
telemetry.variant.environment_metrics.rainfall_24h = 15.89f;
|
||||
telemetry.variant.environment_metrics.has_rainfall_24h = true;
|
||||
|
||||
// Soil measurements
|
||||
telemetry.variant.environment_metrics.soil_moisture = 85;
|
||||
telemetry.variant.environment_metrics.has_soil_moisture = true;
|
||||
telemetry.variant.environment_metrics.soil_temperature = 18.54f;
|
||||
telemetry.variant.environment_metrics.has_soil_temperature = true;
|
||||
fill_all_env_metrics(telemetry);
|
||||
|
||||
pb_ostream_t stream = pb_ostream_from_buffer(buffer, buffer_size);
|
||||
pb_encode(&stream, &meshtastic_Telemetry_msg, &telemetry);
|
||||
return stream.bytes_written;
|
||||
}
|
||||
|
||||
// Test TELEMETRY_APP port with device metrics
|
||||
static Json::Value serialize_and_get_payload(meshtastic_PortNum port, const uint8_t *buffer, size_t payload_size)
|
||||
{
|
||||
meshtastic_MeshPacket packet = create_test_packet(port, buffer, payload_size);
|
||||
std::string json = MeshPacketSerializer::JsonSerialize(&packet, false);
|
||||
TEST_ASSERT_TRUE(json.length() > 0);
|
||||
|
||||
Json::Value root = parse_json(json);
|
||||
TEST_ASSERT_TRUE(root.isObject());
|
||||
TEST_ASSERT_TRUE(root.isMember("payload"));
|
||||
TEST_ASSERT_TRUE(root["payload"].isObject());
|
||||
return root;
|
||||
}
|
||||
|
||||
void test_telemetry_device_metrics_serialization()
|
||||
{
|
||||
uint8_t buffer[256];
|
||||
size_t payload_size = encode_telemetry_device_metrics(buffer, sizeof(buffer));
|
||||
|
||||
meshtastic_MeshPacket packet = create_test_packet(meshtastic_PortNum_TELEMETRY_APP, buffer, payload_size);
|
||||
Json::Value root = serialize_and_get_payload(meshtastic_PortNum_TELEMETRY_APP, buffer, payload_size);
|
||||
|
||||
std::string json = MeshPacketSerializer::JsonSerialize(&packet, false);
|
||||
TEST_ASSERT_TRUE(json.length() > 0);
|
||||
TEST_ASSERT_TRUE(root.isMember("type"));
|
||||
TEST_ASSERT_EQUAL_STRING("telemetry", root["type"].asString().c_str());
|
||||
|
||||
JSONValue *root = JSON::Parse(json.c_str());
|
||||
TEST_ASSERT_NOT_NULL(root);
|
||||
TEST_ASSERT_TRUE(root->IsObject());
|
||||
const Json::Value &payload = root["payload"];
|
||||
|
||||
JSONObject jsonObj = root->AsObject();
|
||||
TEST_ASSERT_TRUE(payload.isMember("battery_level"));
|
||||
TEST_ASSERT_EQUAL(85, payload["battery_level"].asInt());
|
||||
|
||||
// Check message type
|
||||
TEST_ASSERT_TRUE(jsonObj.find("type") != jsonObj.end());
|
||||
TEST_ASSERT_EQUAL_STRING("telemetry", jsonObj["type"]->AsString().c_str());
|
||||
TEST_ASSERT_TRUE(payload.isMember("voltage"));
|
||||
TEST_ASSERT_FLOAT_WITHIN(0.01f, 3.72f, payload["voltage"].asFloat());
|
||||
|
||||
// Check payload
|
||||
TEST_ASSERT_TRUE(jsonObj.find("payload") != jsonObj.end());
|
||||
TEST_ASSERT_TRUE(jsonObj["payload"]->IsObject());
|
||||
TEST_ASSERT_TRUE(payload.isMember("channel_utilization"));
|
||||
TEST_ASSERT_FLOAT_WITHIN(0.01f, 15.56f, payload["channel_utilization"].asFloat());
|
||||
|
||||
JSONObject payload = jsonObj["payload"]->AsObject();
|
||||
|
||||
// Verify telemetry data
|
||||
TEST_ASSERT_TRUE(payload.find("battery_level") != payload.end());
|
||||
TEST_ASSERT_EQUAL(85, (int)payload["battery_level"]->AsNumber());
|
||||
|
||||
TEST_ASSERT_TRUE(payload.find("voltage") != payload.end());
|
||||
TEST_ASSERT_FLOAT_WITHIN(0.01f, 3.72f, payload["voltage"]->AsNumber());
|
||||
|
||||
TEST_ASSERT_TRUE(payload.find("channel_utilization") != payload.end());
|
||||
TEST_ASSERT_FLOAT_WITHIN(0.01f, 15.56f, payload["channel_utilization"]->AsNumber());
|
||||
|
||||
TEST_ASSERT_TRUE(payload.find("uptime_seconds") != payload.end());
|
||||
TEST_ASSERT_EQUAL(12345, (int)payload["uptime_seconds"]->AsNumber());
|
||||
|
||||
// Note: JSON serialization may not preserve exact 2-decimal formatting due to float precision
|
||||
// We verify the numeric values are correct within tolerance
|
||||
|
||||
delete root;
|
||||
TEST_ASSERT_TRUE(payload.isMember("uptime_seconds"));
|
||||
TEST_ASSERT_EQUAL(12345, payload["uptime_seconds"].asInt());
|
||||
}
|
||||
|
||||
// Test that telemetry environment metrics are properly serialized
|
||||
void test_telemetry_environment_metrics_serialization()
|
||||
{
|
||||
uint8_t buffer[256];
|
||||
size_t payload_size = encode_telemetry_environment_metrics(buffer, sizeof(buffer));
|
||||
|
||||
meshtastic_MeshPacket packet = create_test_packet(meshtastic_PortNum_TELEMETRY_APP, buffer, payload_size);
|
||||
Json::Value root = serialize_and_get_payload(meshtastic_PortNum_TELEMETRY_APP, buffer, payload_size);
|
||||
const Json::Value &payload = root["payload"];
|
||||
|
||||
std::string json = MeshPacketSerializer::JsonSerialize(&packet, false);
|
||||
TEST_ASSERT_TRUE(json.length() > 0);
|
||||
TEST_ASSERT_TRUE(payload.isMember("temperature"));
|
||||
TEST_ASSERT_FLOAT_WITHIN(0.01f, 23.56f, payload["temperature"].asFloat());
|
||||
|
||||
JSONValue *root = JSON::Parse(json.c_str());
|
||||
TEST_ASSERT_NOT_NULL(root);
|
||||
TEST_ASSERT_TRUE(root->IsObject());
|
||||
TEST_ASSERT_TRUE(payload.isMember("relative_humidity"));
|
||||
TEST_ASSERT_FLOAT_WITHIN(0.01f, 65.43f, payload["relative_humidity"].asFloat());
|
||||
|
||||
JSONObject jsonObj = root->AsObject();
|
||||
|
||||
// Check payload exists
|
||||
TEST_ASSERT_TRUE(jsonObj.find("payload") != jsonObj.end());
|
||||
TEST_ASSERT_TRUE(jsonObj["payload"]->IsObject());
|
||||
|
||||
JSONObject payload = jsonObj["payload"]->AsObject();
|
||||
|
||||
// Test key fields that should be present in the serializer
|
||||
TEST_ASSERT_TRUE(payload.find("temperature") != payload.end());
|
||||
TEST_ASSERT_FLOAT_WITHIN(0.01f, 23.56f, payload["temperature"]->AsNumber());
|
||||
|
||||
TEST_ASSERT_TRUE(payload.find("relative_humidity") != payload.end());
|
||||
TEST_ASSERT_FLOAT_WITHIN(0.01f, 65.43f, payload["relative_humidity"]->AsNumber());
|
||||
|
||||
TEST_ASSERT_TRUE(payload.find("distance") != payload.end());
|
||||
TEST_ASSERT_FLOAT_WITHIN(0.01f, 150.29f, payload["distance"]->AsNumber());
|
||||
|
||||
// Note: JSON serialization may have float precision limitations
|
||||
// We focus on verifying numeric accuracy rather than exact string formatting
|
||||
|
||||
delete root;
|
||||
TEST_ASSERT_TRUE(payload.isMember("distance"));
|
||||
TEST_ASSERT_FLOAT_WITHIN(0.01f, 150.29f, payload["distance"].asFloat());
|
||||
}
|
||||
|
||||
// Test comprehensive environment metrics coverage
|
||||
void test_telemetry_environment_metrics_comprehensive()
|
||||
{
|
||||
uint8_t buffer[256];
|
||||
size_t payload_size = encode_telemetry_environment_metrics(buffer, sizeof(buffer));
|
||||
|
||||
meshtastic_MeshPacket packet = create_test_packet(meshtastic_PortNum_TELEMETRY_APP, buffer, payload_size);
|
||||
Json::Value root = serialize_and_get_payload(meshtastic_PortNum_TELEMETRY_APP, buffer, payload_size);
|
||||
const Json::Value &payload = root["payload"];
|
||||
|
||||
std::string json = MeshPacketSerializer::JsonSerialize(&packet, false);
|
||||
TEST_ASSERT_TRUE(json.length() > 0);
|
||||
|
||||
JSONValue *root = JSON::Parse(json.c_str());
|
||||
TEST_ASSERT_NOT_NULL(root);
|
||||
TEST_ASSERT_TRUE(root->IsObject());
|
||||
|
||||
JSONObject jsonObj = root->AsObject();
|
||||
|
||||
// Check payload exists
|
||||
TEST_ASSERT_TRUE(jsonObj.find("payload") != jsonObj.end());
|
||||
TEST_ASSERT_TRUE(jsonObj["payload"]->IsObject());
|
||||
|
||||
JSONObject payload = jsonObj["payload"]->AsObject();
|
||||
|
||||
// Check all 15 originally supported fields
|
||||
TEST_ASSERT_TRUE(payload.find("temperature") != payload.end());
|
||||
TEST_ASSERT_TRUE(payload.find("relative_humidity") != payload.end());
|
||||
TEST_ASSERT_TRUE(payload.find("barometric_pressure") != payload.end());
|
||||
TEST_ASSERT_TRUE(payload.find("gas_resistance") != payload.end());
|
||||
TEST_ASSERT_TRUE(payload.find("voltage") != payload.end());
|
||||
TEST_ASSERT_TRUE(payload.find("current") != payload.end());
|
||||
TEST_ASSERT_TRUE(payload.find("iaq") != payload.end());
|
||||
TEST_ASSERT_TRUE(payload.find("distance") != payload.end());
|
||||
TEST_ASSERT_TRUE(payload.find("lux") != payload.end());
|
||||
TEST_ASSERT_TRUE(payload.find("white_lux") != payload.end());
|
||||
TEST_ASSERT_TRUE(payload.find("wind_direction") != payload.end());
|
||||
TEST_ASSERT_TRUE(payload.find("wind_speed") != payload.end());
|
||||
TEST_ASSERT_TRUE(payload.find("wind_gust") != payload.end());
|
||||
TEST_ASSERT_TRUE(payload.find("wind_lull") != payload.end());
|
||||
TEST_ASSERT_TRUE(payload.find("radiation") != payload.end());
|
||||
|
||||
delete root;
|
||||
TEST_ASSERT_TRUE(payload.isMember("temperature"));
|
||||
TEST_ASSERT_TRUE(payload.isMember("relative_humidity"));
|
||||
TEST_ASSERT_TRUE(payload.isMember("barometric_pressure"));
|
||||
TEST_ASSERT_TRUE(payload.isMember("gas_resistance"));
|
||||
TEST_ASSERT_TRUE(payload.isMember("voltage"));
|
||||
TEST_ASSERT_TRUE(payload.isMember("current"));
|
||||
TEST_ASSERT_TRUE(payload.isMember("iaq"));
|
||||
TEST_ASSERT_TRUE(payload.isMember("distance"));
|
||||
TEST_ASSERT_TRUE(payload.isMember("lux"));
|
||||
TEST_ASSERT_TRUE(payload.isMember("white_lux"));
|
||||
TEST_ASSERT_TRUE(payload.isMember("wind_direction"));
|
||||
TEST_ASSERT_TRUE(payload.isMember("wind_speed"));
|
||||
TEST_ASSERT_TRUE(payload.isMember("wind_gust"));
|
||||
TEST_ASSERT_TRUE(payload.isMember("wind_lull"));
|
||||
TEST_ASSERT_TRUE(payload.isMember("radiation"));
|
||||
}
|
||||
|
||||
// Test for the 7 environment fields that were added to complete coverage
|
||||
void test_telemetry_environment_metrics_missing_fields()
|
||||
{
|
||||
uint8_t buffer[256];
|
||||
size_t payload_size = encode_telemetry_environment_metrics(buffer, sizeof(buffer));
|
||||
|
||||
meshtastic_MeshPacket packet = create_test_packet(meshtastic_PortNum_TELEMETRY_APP, buffer, payload_size);
|
||||
Json::Value root = serialize_and_get_payload(meshtastic_PortNum_TELEMETRY_APP, buffer, payload_size);
|
||||
const Json::Value &payload = root["payload"];
|
||||
|
||||
std::string json = MeshPacketSerializer::JsonSerialize(&packet, false);
|
||||
TEST_ASSERT_TRUE(json.length() > 0);
|
||||
TEST_ASSERT_TRUE(payload.isMember("ir_lux"));
|
||||
TEST_ASSERT_FLOAT_WITHIN(0.01f, 25.37f, payload["ir_lux"].asFloat());
|
||||
|
||||
JSONValue *root = JSON::Parse(json.c_str());
|
||||
TEST_ASSERT_NOT_NULL(root);
|
||||
TEST_ASSERT_TRUE(root->IsObject());
|
||||
TEST_ASSERT_TRUE(payload.isMember("uv_lux"));
|
||||
TEST_ASSERT_FLOAT_WITHIN(0.01f, 15.68f, payload["uv_lux"].asFloat());
|
||||
|
||||
JSONObject jsonObj = root->AsObject();
|
||||
TEST_ASSERT_TRUE(payload.isMember("weight"));
|
||||
TEST_ASSERT_FLOAT_WITHIN(0.01f, 75.56f, payload["weight"].asFloat());
|
||||
|
||||
// Check payload exists
|
||||
TEST_ASSERT_TRUE(jsonObj.find("payload") != jsonObj.end());
|
||||
TEST_ASSERT_TRUE(jsonObj["payload"]->IsObject());
|
||||
TEST_ASSERT_TRUE(payload.isMember("rainfall_1h"));
|
||||
TEST_ASSERT_FLOAT_WITHIN(0.01f, 2.57f, payload["rainfall_1h"].asFloat());
|
||||
|
||||
JSONObject payload = jsonObj["payload"]->AsObject();
|
||||
TEST_ASSERT_TRUE(payload.isMember("rainfall_24h"));
|
||||
TEST_ASSERT_FLOAT_WITHIN(0.01f, 15.89f, payload["rainfall_24h"].asFloat());
|
||||
|
||||
// Check the 7 fields that were previously missing
|
||||
TEST_ASSERT_TRUE(payload.find("ir_lux") != payload.end());
|
||||
TEST_ASSERT_FLOAT_WITHIN(0.01f, 25.37f, payload["ir_lux"]->AsNumber());
|
||||
TEST_ASSERT_TRUE(payload.isMember("soil_moisture"));
|
||||
TEST_ASSERT_EQUAL(85, payload["soil_moisture"].asInt());
|
||||
|
||||
TEST_ASSERT_TRUE(payload.find("uv_lux") != payload.end());
|
||||
TEST_ASSERT_FLOAT_WITHIN(0.01f, 15.68f, payload["uv_lux"]->AsNumber());
|
||||
|
||||
TEST_ASSERT_TRUE(payload.find("weight") != payload.end());
|
||||
TEST_ASSERT_FLOAT_WITHIN(0.01f, 75.56f, payload["weight"]->AsNumber());
|
||||
|
||||
TEST_ASSERT_TRUE(payload.find("rainfall_1h") != payload.end());
|
||||
TEST_ASSERT_FLOAT_WITHIN(0.01f, 2.57f, payload["rainfall_1h"]->AsNumber());
|
||||
|
||||
TEST_ASSERT_TRUE(payload.find("rainfall_24h") != payload.end());
|
||||
TEST_ASSERT_FLOAT_WITHIN(0.01f, 15.89f, payload["rainfall_24h"]->AsNumber());
|
||||
|
||||
TEST_ASSERT_TRUE(payload.find("soil_moisture") != payload.end());
|
||||
TEST_ASSERT_EQUAL(85, (int)payload["soil_moisture"]->AsNumber());
|
||||
|
||||
TEST_ASSERT_TRUE(payload.find("soil_temperature") != payload.end());
|
||||
TEST_ASSERT_FLOAT_WITHIN(0.01f, 18.54f, payload["soil_temperature"]->AsNumber());
|
||||
|
||||
// Note: JSON float serialization may not preserve exact decimal formatting
|
||||
// We verify the values are numerically correct within tolerance
|
||||
|
||||
delete root;
|
||||
TEST_ASSERT_TRUE(payload.isMember("soil_temperature"));
|
||||
TEST_ASSERT_FLOAT_WITHIN(0.01f, 18.54f, payload["soil_temperature"].asFloat());
|
||||
}
|
||||
|
||||
// Test that ALL environment fields are serialized (canary test for forgotten fields)
|
||||
// This test will FAIL if a new environment field is added to the protobuf but not to the serializer
|
||||
// Canary test: if a new env field is added to the protobuf but not to the serializer
|
||||
// (or to fill_all_env_metrics), this test will fail.
|
||||
void test_telemetry_environment_metrics_complete_coverage()
|
||||
{
|
||||
uint8_t buffer[256];
|
||||
size_t payload_size = encode_telemetry_environment_metrics_all_fields(buffer, sizeof(buffer));
|
||||
size_t payload_size = encode_telemetry_environment_metrics(buffer, sizeof(buffer));
|
||||
|
||||
meshtastic_MeshPacket packet = create_test_packet(meshtastic_PortNum_TELEMETRY_APP, buffer, payload_size);
|
||||
Json::Value root = serialize_and_get_payload(meshtastic_PortNum_TELEMETRY_APP, buffer, payload_size);
|
||||
const Json::Value &payload = root["payload"];
|
||||
|
||||
std::string json = MeshPacketSerializer::JsonSerialize(&packet, false);
|
||||
TEST_ASSERT_TRUE(json.length() > 0);
|
||||
TEST_ASSERT_TRUE(payload.isMember("temperature"));
|
||||
TEST_ASSERT_FLOAT_WITHIN(0.01f, 23.56f, payload["temperature"].asFloat());
|
||||
TEST_ASSERT_TRUE(payload.isMember("relative_humidity"));
|
||||
TEST_ASSERT_FLOAT_WITHIN(0.01f, 65.43f, payload["relative_humidity"].asFloat());
|
||||
TEST_ASSERT_TRUE(payload.isMember("barometric_pressure"));
|
||||
TEST_ASSERT_FLOAT_WITHIN(0.01f, 1013.27f, payload["barometric_pressure"].asFloat());
|
||||
|
||||
JSONValue *root = JSON::Parse(json.c_str());
|
||||
TEST_ASSERT_NOT_NULL(root);
|
||||
TEST_ASSERT_TRUE(root->IsObject());
|
||||
TEST_ASSERT_TRUE(payload.isMember("gas_resistance"));
|
||||
TEST_ASSERT_FLOAT_WITHIN(0.01f, 50.58f, payload["gas_resistance"].asFloat());
|
||||
TEST_ASSERT_TRUE(payload.isMember("iaq"));
|
||||
TEST_ASSERT_EQUAL(120, payload["iaq"].asInt());
|
||||
|
||||
JSONObject jsonObj = root->AsObject();
|
||||
TEST_ASSERT_TRUE(payload.isMember("voltage"));
|
||||
TEST_ASSERT_FLOAT_WITHIN(0.01f, 3.34f, payload["voltage"].asFloat());
|
||||
TEST_ASSERT_TRUE(payload.isMember("current"));
|
||||
TEST_ASSERT_FLOAT_WITHIN(0.01f, 0.53f, payload["current"].asFloat());
|
||||
|
||||
// Check payload exists
|
||||
TEST_ASSERT_TRUE(jsonObj.find("payload") != jsonObj.end());
|
||||
TEST_ASSERT_TRUE(jsonObj["payload"]->IsObject());
|
||||
TEST_ASSERT_TRUE(payload.isMember("lux"));
|
||||
TEST_ASSERT_FLOAT_WITHIN(0.01f, 450.12f, payload["lux"].asFloat());
|
||||
TEST_ASSERT_TRUE(payload.isMember("white_lux"));
|
||||
TEST_ASSERT_FLOAT_WITHIN(0.01f, 380.95f, payload["white_lux"].asFloat());
|
||||
TEST_ASSERT_TRUE(payload.isMember("ir_lux"));
|
||||
TEST_ASSERT_FLOAT_WITHIN(0.01f, 25.37f, payload["ir_lux"].asFloat());
|
||||
TEST_ASSERT_TRUE(payload.isMember("uv_lux"));
|
||||
TEST_ASSERT_FLOAT_WITHIN(0.01f, 15.68f, payload["uv_lux"].asFloat());
|
||||
|
||||
JSONObject payload = jsonObj["payload"]->AsObject();
|
||||
TEST_ASSERT_TRUE(payload.isMember("distance"));
|
||||
TEST_ASSERT_FLOAT_WITHIN(0.01f, 150.29f, payload["distance"].asFloat());
|
||||
|
||||
// ✅ ALL 22 environment fields MUST be present and correct
|
||||
// If this test fails, it means either:
|
||||
// 1. A new field was added to the protobuf but not to the serializer
|
||||
// 2. The encode_telemetry_environment_metrics_all_fields() function wasn't updated
|
||||
TEST_ASSERT_TRUE(payload.isMember("wind_direction"));
|
||||
TEST_ASSERT_EQUAL(180, payload["wind_direction"].asInt());
|
||||
TEST_ASSERT_TRUE(payload.isMember("wind_speed"));
|
||||
TEST_ASSERT_FLOAT_WITHIN(0.01f, 5.52f, payload["wind_speed"].asFloat());
|
||||
TEST_ASSERT_TRUE(payload.isMember("wind_gust"));
|
||||
TEST_ASSERT_FLOAT_WITHIN(0.01f, 8.24f, payload["wind_gust"].asFloat());
|
||||
TEST_ASSERT_TRUE(payload.isMember("wind_lull"));
|
||||
TEST_ASSERT_FLOAT_WITHIN(0.01f, 2.13f, payload["wind_lull"].asFloat());
|
||||
|
||||
// Basic environment (3 fields)
|
||||
TEST_ASSERT_TRUE(payload.find("temperature") != payload.end());
|
||||
TEST_ASSERT_FLOAT_WITHIN(0.01f, 23.56f, payload["temperature"]->AsNumber());
|
||||
TEST_ASSERT_TRUE(payload.find("relative_humidity") != payload.end());
|
||||
TEST_ASSERT_FLOAT_WITHIN(0.01f, 65.43f, payload["relative_humidity"]->AsNumber());
|
||||
TEST_ASSERT_TRUE(payload.find("barometric_pressure") != payload.end());
|
||||
TEST_ASSERT_FLOAT_WITHIN(0.01f, 1013.27f, payload["barometric_pressure"]->AsNumber());
|
||||
TEST_ASSERT_TRUE(payload.isMember("weight"));
|
||||
TEST_ASSERT_FLOAT_WITHIN(0.01f, 75.56f, payload["weight"].asFloat());
|
||||
|
||||
// Gas and air quality (2 fields)
|
||||
TEST_ASSERT_TRUE(payload.find("gas_resistance") != payload.end());
|
||||
TEST_ASSERT_FLOAT_WITHIN(0.01f, 50.58f, payload["gas_resistance"]->AsNumber());
|
||||
TEST_ASSERT_TRUE(payload.find("iaq") != payload.end());
|
||||
TEST_ASSERT_EQUAL(120, (int)payload["iaq"]->AsNumber());
|
||||
TEST_ASSERT_TRUE(payload.isMember("radiation"));
|
||||
TEST_ASSERT_FLOAT_WITHIN(0.01f, 0.13f, payload["radiation"].asFloat());
|
||||
|
||||
// Power measurements (2 fields)
|
||||
TEST_ASSERT_TRUE(payload.find("voltage") != payload.end());
|
||||
TEST_ASSERT_FLOAT_WITHIN(0.01f, 3.34f, payload["voltage"]->AsNumber());
|
||||
TEST_ASSERT_TRUE(payload.find("current") != payload.end());
|
||||
TEST_ASSERT_FLOAT_WITHIN(0.01f, 0.53f, payload["current"]->AsNumber());
|
||||
TEST_ASSERT_TRUE(payload.isMember("rainfall_1h"));
|
||||
TEST_ASSERT_FLOAT_WITHIN(0.01f, 2.57f, payload["rainfall_1h"].asFloat());
|
||||
TEST_ASSERT_TRUE(payload.isMember("rainfall_24h"));
|
||||
TEST_ASSERT_FLOAT_WITHIN(0.01f, 15.89f, payload["rainfall_24h"].asFloat());
|
||||
|
||||
// Light measurements (4 fields)
|
||||
TEST_ASSERT_TRUE(payload.find("lux") != payload.end());
|
||||
TEST_ASSERT_FLOAT_WITHIN(0.01f, 450.12f, payload["lux"]->AsNumber());
|
||||
TEST_ASSERT_TRUE(payload.find("white_lux") != payload.end());
|
||||
TEST_ASSERT_FLOAT_WITHIN(0.01f, 380.95f, payload["white_lux"]->AsNumber());
|
||||
TEST_ASSERT_TRUE(payload.find("ir_lux") != payload.end());
|
||||
TEST_ASSERT_FLOAT_WITHIN(0.01f, 25.37f, payload["ir_lux"]->AsNumber());
|
||||
TEST_ASSERT_TRUE(payload.find("uv_lux") != payload.end());
|
||||
TEST_ASSERT_FLOAT_WITHIN(0.01f, 15.68f, payload["uv_lux"]->AsNumber());
|
||||
|
||||
// Distance measurement (1 field)
|
||||
TEST_ASSERT_TRUE(payload.find("distance") != payload.end());
|
||||
TEST_ASSERT_FLOAT_WITHIN(0.01f, 150.29f, payload["distance"]->AsNumber());
|
||||
|
||||
// Wind measurements (4 fields)
|
||||
TEST_ASSERT_TRUE(payload.find("wind_direction") != payload.end());
|
||||
TEST_ASSERT_EQUAL(180, (int)payload["wind_direction"]->AsNumber());
|
||||
TEST_ASSERT_TRUE(payload.find("wind_speed") != payload.end());
|
||||
TEST_ASSERT_FLOAT_WITHIN(0.01f, 5.52f, payload["wind_speed"]->AsNumber());
|
||||
TEST_ASSERT_TRUE(payload.find("wind_gust") != payload.end());
|
||||
TEST_ASSERT_FLOAT_WITHIN(0.01f, 8.24f, payload["wind_gust"]->AsNumber());
|
||||
TEST_ASSERT_TRUE(payload.find("wind_lull") != payload.end());
|
||||
TEST_ASSERT_FLOAT_WITHIN(0.01f, 2.13f, payload["wind_lull"]->AsNumber());
|
||||
|
||||
// Weight measurement (1 field)
|
||||
TEST_ASSERT_TRUE(payload.find("weight") != payload.end());
|
||||
TEST_ASSERT_FLOAT_WITHIN(0.01f, 75.56f, payload["weight"]->AsNumber());
|
||||
|
||||
// Radiation measurement (1 field)
|
||||
TEST_ASSERT_TRUE(payload.find("radiation") != payload.end());
|
||||
TEST_ASSERT_FLOAT_WITHIN(0.01f, 0.13f, payload["radiation"]->AsNumber());
|
||||
|
||||
// Rainfall measurements (2 fields)
|
||||
TEST_ASSERT_TRUE(payload.find("rainfall_1h") != payload.end());
|
||||
TEST_ASSERT_FLOAT_WITHIN(0.01f, 2.57f, payload["rainfall_1h"]->AsNumber());
|
||||
TEST_ASSERT_TRUE(payload.find("rainfall_24h") != payload.end());
|
||||
TEST_ASSERT_FLOAT_WITHIN(0.01f, 15.89f, payload["rainfall_24h"]->AsNumber());
|
||||
|
||||
// Soil measurements (2 fields)
|
||||
TEST_ASSERT_TRUE(payload.find("soil_moisture") != payload.end());
|
||||
TEST_ASSERT_EQUAL(85, (int)payload["soil_moisture"]->AsNumber());
|
||||
TEST_ASSERT_TRUE(payload.find("soil_temperature") != payload.end());
|
||||
TEST_ASSERT_FLOAT_WITHIN(0.01f, 18.54f, payload["soil_temperature"]->AsNumber());
|
||||
|
||||
// Total: 22 environment fields
|
||||
// This test ensures 100% coverage of environment metrics
|
||||
|
||||
// Note: JSON float serialization precision may vary due to the underlying library
|
||||
// The important aspect is that all values are numerically accurate within tolerance
|
||||
|
||||
delete root;
|
||||
TEST_ASSERT_TRUE(payload.isMember("soil_moisture"));
|
||||
TEST_ASSERT_EQUAL(85, payload["soil_moisture"].asInt());
|
||||
TEST_ASSERT_TRUE(payload.isMember("soil_temperature"));
|
||||
TEST_ASSERT_FLOAT_WITHIN(0.01f, 18.54f, payload["soil_temperature"].asFloat());
|
||||
}
|
||||
|
||||
// Test that unset environment fields are not present in JSON
|
||||
void test_telemetry_environment_metrics_unset_fields()
|
||||
{
|
||||
uint8_t buffer[256];
|
||||
size_t payload_size = encode_telemetry_environment_metrics_empty(buffer, sizeof(buffer));
|
||||
|
||||
meshtastic_MeshPacket packet = create_test_packet(meshtastic_PortNum_TELEMETRY_APP, buffer, payload_size);
|
||||
Json::Value root = serialize_and_get_payload(meshtastic_PortNum_TELEMETRY_APP, buffer, payload_size);
|
||||
const Json::Value &payload = root["payload"];
|
||||
|
||||
std::string json = MeshPacketSerializer::JsonSerialize(&packet, false);
|
||||
TEST_ASSERT_TRUE(json.length() > 0);
|
||||
|
||||
JSONValue *root = JSON::Parse(json.c_str());
|
||||
TEST_ASSERT_NOT_NULL(root);
|
||||
TEST_ASSERT_TRUE(root->IsObject());
|
||||
|
||||
JSONObject jsonObj = root->AsObject();
|
||||
|
||||
// Check payload exists
|
||||
TEST_ASSERT_TRUE(jsonObj.find("payload") != jsonObj.end());
|
||||
TEST_ASSERT_TRUE(jsonObj["payload"]->IsObject());
|
||||
|
||||
JSONObject payload = jsonObj["payload"]->AsObject();
|
||||
|
||||
// With completely empty environment metrics, NO fields should be present
|
||||
// Only basic telemetry fields like "time" might be present
|
||||
|
||||
// All 22 environment fields should be absent (none were set)
|
||||
TEST_ASSERT_TRUE(payload.find("temperature") == payload.end());
|
||||
TEST_ASSERT_TRUE(payload.find("relative_humidity") == payload.end());
|
||||
TEST_ASSERT_TRUE(payload.find("barometric_pressure") == payload.end());
|
||||
TEST_ASSERT_TRUE(payload.find("gas_resistance") == payload.end());
|
||||
TEST_ASSERT_TRUE(payload.find("iaq") == payload.end());
|
||||
TEST_ASSERT_TRUE(payload.find("voltage") == payload.end());
|
||||
TEST_ASSERT_TRUE(payload.find("current") == payload.end());
|
||||
TEST_ASSERT_TRUE(payload.find("lux") == payload.end());
|
||||
TEST_ASSERT_TRUE(payload.find("white_lux") == payload.end());
|
||||
TEST_ASSERT_TRUE(payload.find("ir_lux") == payload.end());
|
||||
TEST_ASSERT_TRUE(payload.find("uv_lux") == payload.end());
|
||||
TEST_ASSERT_TRUE(payload.find("distance") == payload.end());
|
||||
TEST_ASSERT_TRUE(payload.find("wind_direction") == payload.end());
|
||||
TEST_ASSERT_TRUE(payload.find("wind_speed") == payload.end());
|
||||
TEST_ASSERT_TRUE(payload.find("wind_gust") == payload.end());
|
||||
TEST_ASSERT_TRUE(payload.find("wind_lull") == payload.end());
|
||||
TEST_ASSERT_TRUE(payload.find("weight") == payload.end());
|
||||
TEST_ASSERT_TRUE(payload.find("radiation") == payload.end());
|
||||
TEST_ASSERT_TRUE(payload.find("rainfall_1h") == payload.end());
|
||||
TEST_ASSERT_TRUE(payload.find("rainfall_24h") == payload.end());
|
||||
TEST_ASSERT_TRUE(payload.find("soil_moisture") == payload.end());
|
||||
TEST_ASSERT_TRUE(payload.find("soil_temperature") == payload.end());
|
||||
|
||||
delete root;
|
||||
TEST_ASSERT_FALSE(payload.isMember("temperature"));
|
||||
TEST_ASSERT_FALSE(payload.isMember("relative_humidity"));
|
||||
TEST_ASSERT_FALSE(payload.isMember("barometric_pressure"));
|
||||
TEST_ASSERT_FALSE(payload.isMember("gas_resistance"));
|
||||
TEST_ASSERT_FALSE(payload.isMember("iaq"));
|
||||
TEST_ASSERT_FALSE(payload.isMember("voltage"));
|
||||
TEST_ASSERT_FALSE(payload.isMember("current"));
|
||||
TEST_ASSERT_FALSE(payload.isMember("lux"));
|
||||
TEST_ASSERT_FALSE(payload.isMember("white_lux"));
|
||||
TEST_ASSERT_FALSE(payload.isMember("ir_lux"));
|
||||
TEST_ASSERT_FALSE(payload.isMember("uv_lux"));
|
||||
TEST_ASSERT_FALSE(payload.isMember("distance"));
|
||||
TEST_ASSERT_FALSE(payload.isMember("wind_direction"));
|
||||
TEST_ASSERT_FALSE(payload.isMember("wind_speed"));
|
||||
TEST_ASSERT_FALSE(payload.isMember("wind_gust"));
|
||||
TEST_ASSERT_FALSE(payload.isMember("wind_lull"));
|
||||
TEST_ASSERT_FALSE(payload.isMember("weight"));
|
||||
TEST_ASSERT_FALSE(payload.isMember("radiation"));
|
||||
TEST_ASSERT_FALSE(payload.isMember("rainfall_1h"));
|
||||
TEST_ASSERT_FALSE(payload.isMember("rainfall_24h"));
|
||||
TEST_ASSERT_FALSE(payload.isMember("soil_moisture"));
|
||||
TEST_ASSERT_FALSE(payload.isMember("soil_temperature"));
|
||||
}
|
||||
|
||||
@@ -1,48 +1,30 @@
|
||||
#include "../test_helpers.h"
|
||||
#include <memory>
|
||||
|
||||
// Helper function to test common packet fields and structure
|
||||
void verify_text_message_packet_structure(const std::string &json, const char *expected_text)
|
||||
static void verify_text_message_packet_structure(const std::string &json, const char *expected_text)
|
||||
{
|
||||
TEST_ASSERT_TRUE(json.length() > 0);
|
||||
|
||||
// Use smart pointer for automatic memory management
|
||||
std::unique_ptr<JSONValue> root(JSON::Parse(json.c_str()));
|
||||
TEST_ASSERT_NOT_NULL(root.get());
|
||||
TEST_ASSERT_TRUE(root->IsObject());
|
||||
Json::Value root = parse_json(json);
|
||||
TEST_ASSERT_TRUE(root.isObject());
|
||||
|
||||
JSONObject jsonObj = root->AsObject();
|
||||
TEST_ASSERT_TRUE(root.isMember("from"));
|
||||
TEST_ASSERT_EQUAL(0x11223344u, root["from"].asUInt());
|
||||
TEST_ASSERT_TRUE(root.isMember("to"));
|
||||
TEST_ASSERT_EQUAL(0x55667788u, root["to"].asUInt());
|
||||
TEST_ASSERT_TRUE(root.isMember("id"));
|
||||
TEST_ASSERT_EQUAL(0x9999u, root["id"].asUInt());
|
||||
|
||||
// Check basic packet fields - use helper function to reduce duplication
|
||||
auto check_field = [&](const char *field, uint32_t expected_value) {
|
||||
auto it = jsonObj.find(field);
|
||||
TEST_ASSERT_TRUE(it != jsonObj.end());
|
||||
TEST_ASSERT_EQUAL(expected_value, (uint32_t)it->second->AsNumber());
|
||||
};
|
||||
TEST_ASSERT_TRUE(root.isMember("type"));
|
||||
TEST_ASSERT_EQUAL_STRING("text", root["type"].asString().c_str());
|
||||
|
||||
check_field("from", 0x11223344);
|
||||
check_field("to", 0x55667788);
|
||||
check_field("id", 0x9999);
|
||||
TEST_ASSERT_TRUE(root.isMember("payload"));
|
||||
TEST_ASSERT_TRUE(root["payload"].isObject());
|
||||
|
||||
// Check message type
|
||||
auto type_it = jsonObj.find("type");
|
||||
TEST_ASSERT_TRUE(type_it != jsonObj.end());
|
||||
TEST_ASSERT_EQUAL_STRING("text", type_it->second->AsString().c_str());
|
||||
|
||||
// Check payload
|
||||
auto payload_it = jsonObj.find("payload");
|
||||
TEST_ASSERT_TRUE(payload_it != jsonObj.end());
|
||||
TEST_ASSERT_TRUE(payload_it->second->IsObject());
|
||||
|
||||
JSONObject payload = payload_it->second->AsObject();
|
||||
auto text_it = payload.find("text");
|
||||
TEST_ASSERT_TRUE(text_it != payload.end());
|
||||
TEST_ASSERT_EQUAL_STRING(expected_text, text_it->second->AsString().c_str());
|
||||
|
||||
// No need for manual delete with smart pointer
|
||||
const Json::Value &payload = root["payload"];
|
||||
TEST_ASSERT_TRUE(payload.isMember("text"));
|
||||
TEST_ASSERT_EQUAL_STRING(expected_text, payload["text"].asString().c_str());
|
||||
}
|
||||
|
||||
// Test TEXT_MESSAGE_APP port
|
||||
void test_text_message_serialization()
|
||||
{
|
||||
const char *test_text = "Hello Meshtastic!";
|
||||
@@ -53,7 +35,6 @@ void test_text_message_serialization()
|
||||
verify_text_message_packet_structure(json, test_text);
|
||||
}
|
||||
|
||||
// Test with nullptr to check robustness
|
||||
void test_text_message_serialization_null()
|
||||
{
|
||||
meshtastic_MeshPacket packet = create_test_packet(meshtastic_PortNum_TEXT_MESSAGE_APP, nullptr, 0);
|
||||
@@ -62,11 +43,9 @@ void test_text_message_serialization_null()
|
||||
verify_text_message_packet_structure(json, "");
|
||||
}
|
||||
|
||||
// Test TEXT_MESSAGE_APP port with very long message (boundary testing)
|
||||
void test_text_message_serialization_long_text()
|
||||
{
|
||||
// Test with actual message size limits
|
||||
constexpr size_t MAX_MESSAGE_SIZE = 200; // Typical LoRa payload limit
|
||||
constexpr size_t MAX_MESSAGE_SIZE = 200;
|
||||
std::string long_text(MAX_MESSAGE_SIZE, 'A');
|
||||
|
||||
meshtastic_MeshPacket packet = create_test_packet(meshtastic_PortNum_TEXT_MESSAGE_APP,
|
||||
@@ -76,30 +55,25 @@ void test_text_message_serialization_long_text()
|
||||
verify_text_message_packet_structure(json, long_text.c_str());
|
||||
}
|
||||
|
||||
// Test with message over size limit (should fail)
|
||||
void test_text_message_serialization_oversized()
|
||||
{
|
||||
constexpr size_t OVERSIZED_MESSAGE = 250; // Over the limit
|
||||
constexpr size_t OVERSIZED_MESSAGE = 250;
|
||||
std::string oversized_text(OVERSIZED_MESSAGE, 'B');
|
||||
|
||||
meshtastic_MeshPacket packet = create_test_packet(
|
||||
meshtastic_PortNum_TEXT_MESSAGE_APP, reinterpret_cast<const uint8_t *>(oversized_text.c_str()), oversized_text.length());
|
||||
|
||||
// Should fail or return empty/error
|
||||
std::string json = MeshPacketSerializer::JsonSerialize(&packet, false);
|
||||
// Should only verify first 234 characters for oversized messages
|
||||
std::string expected_text = oversized_text.substr(0, 234);
|
||||
verify_text_message_packet_structure(json, expected_text.c_str());
|
||||
}
|
||||
|
||||
// Add test for malformed UTF-8 sequences
|
||||
void test_text_message_serialization_invalid_utf8()
|
||||
{
|
||||
const uint8_t invalid_utf8[] = {0xFF, 0xFE, 0xFD, 0x00}; // Invalid UTF-8
|
||||
const uint8_t invalid_utf8[] = {0xFF, 0xFE, 0xFD, 0x00};
|
||||
meshtastic_MeshPacket packet =
|
||||
create_test_packet(meshtastic_PortNum_TEXT_MESSAGE_APP, invalid_utf8, sizeof(invalid_utf8) - 1);
|
||||
|
||||
// Should not crash, may produce replacement characters
|
||||
std::string json = MeshPacketSerializer::JsonSerialize(&packet, false);
|
||||
TEST_ASSERT_TRUE(json.length() > 0);
|
||||
}
|
||||
}
|
||||
|
||||
@@ -6,7 +6,7 @@ static size_t encode_waypoint(uint8_t *buffer, size_t buffer_size)
|
||||
waypoint.id = 12345;
|
||||
waypoint.latitude_i = 374208000;
|
||||
waypoint.longitude_i = -1221981000;
|
||||
waypoint.expire = 1609459200 + 3600; // 1 hour from now
|
||||
waypoint.expire = 1609459200 + 3600;
|
||||
strcpy(waypoint.name, "Test Point");
|
||||
strcpy(waypoint.description, "Test waypoint description");
|
||||
|
||||
@@ -15,7 +15,6 @@ static size_t encode_waypoint(uint8_t *buffer, size_t buffer_size)
|
||||
return stream.bytes_written;
|
||||
}
|
||||
|
||||
// Test WAYPOINT_APP port
|
||||
void test_waypoint_serialization()
|
||||
{
|
||||
uint8_t buffer[256];
|
||||
@@ -26,28 +25,20 @@ void test_waypoint_serialization()
|
||||
std::string json = MeshPacketSerializer::JsonSerialize(&packet, false);
|
||||
TEST_ASSERT_TRUE(json.length() > 0);
|
||||
|
||||
JSONValue *root = JSON::Parse(json.c_str());
|
||||
TEST_ASSERT_NOT_NULL(root);
|
||||
TEST_ASSERT_TRUE(root->IsObject());
|
||||
Json::Value root = parse_json(json);
|
||||
TEST_ASSERT_TRUE(root.isObject());
|
||||
|
||||
JSONObject jsonObj = root->AsObject();
|
||||
TEST_ASSERT_TRUE(root.isMember("type"));
|
||||
TEST_ASSERT_EQUAL_STRING("waypoint", root["type"].asString().c_str());
|
||||
|
||||
// Check message type
|
||||
TEST_ASSERT_TRUE(jsonObj.find("type") != jsonObj.end());
|
||||
TEST_ASSERT_EQUAL_STRING("waypoint", jsonObj["type"]->AsString().c_str());
|
||||
TEST_ASSERT_TRUE(root.isMember("payload"));
|
||||
TEST_ASSERT_TRUE(root["payload"].isObject());
|
||||
|
||||
// Check payload
|
||||
TEST_ASSERT_TRUE(jsonObj.find("payload") != jsonObj.end());
|
||||
TEST_ASSERT_TRUE(jsonObj["payload"]->IsObject());
|
||||
const Json::Value &payload = root["payload"];
|
||||
|
||||
JSONObject payload = jsonObj["payload"]->AsObject();
|
||||
TEST_ASSERT_TRUE(payload.isMember("id"));
|
||||
TEST_ASSERT_EQUAL(12345, payload["id"].asInt());
|
||||
|
||||
// Verify waypoint data
|
||||
TEST_ASSERT_TRUE(payload.find("id") != payload.end());
|
||||
TEST_ASSERT_EQUAL(12345, (int)payload["id"]->AsNumber());
|
||||
|
||||
TEST_ASSERT_TRUE(payload.find("name") != payload.end());
|
||||
TEST_ASSERT_EQUAL_STRING("Test Point", payload["name"]->AsString().c_str());
|
||||
|
||||
delete root;
|
||||
TEST_ASSERT_TRUE(payload.isMember("name"));
|
||||
TEST_ASSERT_EQUAL_STRING("Test Point", payload["name"].asString().c_str());
|
||||
}
|
||||
|
||||
Reference in New Issue
Block a user