Merge branch 'neutral-ble-client' into radon-eye-single-node

This commit is contained in:
J. Nick Koston
2026-08-26 19:50:16 -05:00
298 changed files with 13885 additions and 2073 deletions
+8
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@@ -9,6 +9,14 @@ esphome:
event: esphome.button_pressed
data:
message: Button was pressed
- homeassistant.event:
event: esphome.button_pressed_with_variables
data_template:
message: Button {{ button_name }} ({{ button_index }}) was pressed from {{ button_source }}
variables:
button_name: !lambda 'return std::string("test_button");'
button_index: !lambda 'return 1;'
button_source: static_value
- homeassistant.action:
action: notify.html5
data:
+1
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@@ -4,4 +4,5 @@ media_source:
- platform: audio_http
id: audio_http_source
buffer_size: 100000
persistent_ring_buffer: true
task_stack_in_psram: true
+73
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@@ -0,0 +1,73 @@
#include <gtest/gtest.h>
#include "esphome/components/climate/climate.h"
namespace esphome::climate::testing {
// Minimal concrete Climate that offers a fixed set of modes, so the restore path can be exercised
// without any hardware or platform component.
class TestClimate : public Climate {
public:
ClimateTraits traits() override {
auto traits = ClimateTraits();
traits.set_supported_modes({CLIMATE_MODE_OFF, CLIMATE_MODE_COOL});
traits.set_supported_fan_modes({CLIMATE_FAN_LOW, CLIMATE_FAN_HIGH});
return traits;
}
protected:
void control(const ClimateCall &call) override {}
};
TEST(ClimateRestoreStateTest, RestoresASupportedMode) {
TestClimate climate;
// Value-initialized: several members (mode, swing_mode, the temperature union) have no default
// member initializer, so leaving the {} off would read indeterminate values.
ClimateDeviceRestoreState state{};
state.mode = CLIMATE_MODE_COOL;
state.apply(&climate);
EXPECT_EQ(climate.mode, CLIMATE_MODE_COOL);
}
TEST(ClimateRestoreStateTest, DoesNotRestoreAnUnsupportedMode) {
TestClimate climate;
ClimateDeviceRestoreState state{};
state.mode = CLIMATE_MODE_HEAT;
state.apply(&climate);
// The device never advertised HEAT, so the mode stays where it was.
EXPECT_EQ(climate.mode, CLIMATE_MODE_OFF);
}
TEST(ClimateRestoreStateTest, LeavesTheCurrentModeAloneRatherThanForcingOff) {
TestClimate climate;
// apply() is public and nothing restricts it to setup(), so the entity is not necessarily off
// when an unsupported mode is dropped. It keeps what it had rather than being forced to OFF.
climate.mode = CLIMATE_MODE_COOL;
ClimateDeviceRestoreState state{};
state.mode = CLIMATE_MODE_HEAT;
state.apply(&climate);
EXPECT_EQ(climate.mode, CLIMATE_MODE_COOL);
}
TEST(ClimateRestoreStateTest, KeepsRestoringTheOtherFieldsWhenTheModeIsDropped) {
TestClimate climate;
ClimateDeviceRestoreState state{};
state.mode = CLIMATE_MODE_HEAT;
state.target_temperature = 21.0f;
state.uses_custom_fan_mode = false;
state.fan_mode = CLIMATE_FAN_HIGH;
state.apply(&climate);
EXPECT_EQ(climate.mode, CLIMATE_MODE_OFF);
EXPECT_FLOAT_EQ(climate.target_temperature, 21.0f);
// Compared as an optional: this asserts both that the fan mode was restored and what it holds.
EXPECT_EQ(climate.fan_mode, CLIMATE_FAN_HIGH);
}
} // namespace esphome::climate::testing
@@ -12,5 +12,8 @@ climate:
- platform: climate_ir_lg
name: LG Climate
transmitter_id: xmitr
header_high: 3300us
header_low: 9840us
advanced_commands_support: true
sensor: climate_ir_lg_temp_sensor
humidity_sensor: humidity_sensor
@@ -57,6 +57,21 @@ sensor:
name: Power Factor 1
emontx_id: test_emontx
# Apparent power sensor (AP pattern): expects state_class=measurement,
# unit=VA, device_class=apparent_power, accuracy_decimals=2
- platform: emontx
tag_name: AP1
name: Apparent Power 1
emontx_id: test_emontx
# Frequency sensor (F, matched exactly, not as a prefix): expects
# state_class=measurement, unit=Hz, device_class=frequency,
# accuracy_decimals=2
- platform: emontx
tag_name: F
name: Frequency
emontx_id: test_emontx
# Unknown tag: no prefix match, falls back to state_class=measurement,
# accuracy_decimals=0
- platform: emontx
+1 -1
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@@ -7,7 +7,7 @@ esp32:
enable_lwip_mdns_queries: true
enable_lwip_bridge_interface: true
disable_libc_locks_in_iram: false # Test explicit opt-out of RAM optimization
use_full_certificate_bundle: false # Test CMN bundle (default)
use_full_certificate_bundle: false # Bundle stays off without a component that needs it
include_builtin_idf_components:
- freertos # Test escape hatch (freertos is always included anyway)
enable_full_printf: false
@@ -0,0 +1,17 @@
ethernet:
type: W5500
spi_id: spi_bus
cs_pin: 5
interrupt_pin: 36
reset_pin: 22
clock_speed: 10Mhz
manual_ip:
static_ip: 192.168.178.56
gateway: 192.168.178.1
subnet: 255.255.255.0
domain: .local
mac_address: "02:AA:BB:CC:DD:01"
on_connect:
- logger.log: "Ethernet connected!"
on_disconnect:
- logger.log: "Ethernet disconnected!"
@@ -0,0 +1,3 @@
packages:
spi: !include ../../test_build_components/common/spi/esp32-idf.yaml
ethernet: !include common-w5500-spi-id.yaml
@@ -0,0 +1,72 @@
#include <gtest/gtest.h>
#include "esphome/components/hoermann_hcp/button/hoermann_hcp_button.h"
#include "../common.h"
namespace esphome::hoermann_hcp::testing {
// The intermediate positions are named in the second register, which repeats that name on release.
TEST(HoermannHcpButtonTest, VentButtonSendsTheVentCommand) {
TestableHoermannHcp door;
HoermannHcpVentButton vent(&door);
connect_controller(door);
vent.press();
auto [pressed, pressed_2] = poll_command(door);
EXPECT_EQ(pressed, 0x0200);
EXPECT_EQ(pressed_2, 0x4000);
std::this_thread::sleep_for(KEY_PRESS_ELAPSED);
auto [released, released_2] = poll_command(door);
EXPECT_EQ(released, 0x0100);
EXPECT_EQ(released_2, 0x4000);
}
TEST(HoermannHcpButtonTest, HalfOpenButtonSendsTheHalfOpenCommand) {
TestableHoermannHcp door;
HoermannHcpHalfOpenButton half_open(&door);
connect_controller(door);
half_open.press();
auto [pressed, pressed_2] = poll_command(door);
EXPECT_EQ(pressed, 0x0200);
EXPECT_EQ(pressed_2, 0x0400);
std::this_thread::sleep_for(KEY_PRESS_ELAPSED);
auto [released, released_2] = poll_command(door);
EXPECT_EQ(released, 0x0100);
EXPECT_EQ(released_2, 0x0400);
}
// The door drives to the vent position on its own, so a position the cover was still travelling to must not
// stop it on the way there.
TEST(HoermannHcpButtonTest, VentAbandonsAnArmedTarget) {
TestableHoermannHcp door; // starts out fully closed
HoermannHcpVentButton vent(&door);
connect_controller(door);
door.set_position(0.5f);
consume_command(door);
door.on_write_registers(BROADCAST_REG, make_registers({0x0000, 0x0014, 0x0100}));
ASSERT_EQ(door.get_door_state(), DoorState::OPENING);
vent.press();
consume_command(door);
// Position 120/200 = 0.6 is past the abandoned target, which must no longer stop the door.
door.on_write_registers(BROADCAST_REG, make_registers({0x0000, 0x0078, 0x0100}));
EXPECT_EQ(poll_command(door).first, 0x0000);
}
// A button carries no state, so a refused press is simply dropped rather than fired once the controller
// turns up, which could be much later.
TEST(HoermannHcpButtonTest, PressWithoutABusControllerSendsNothing) {
HoermannHcp door; // never contacted by a bus controller
HoermannHcpVentButton vent(&door);
vent.press();
EXPECT_EQ(poll_command(door).first, 0x0000);
}
} // namespace esphome::hoermann_hcp::testing
@@ -12,6 +12,13 @@ binary_sensor:
is_connected:
name: Garage Connected
button:
- platform: hoermann_hcp
vent:
name: Garage Vent
half_open:
name: Garage Half Open
light:
- platform: hoermann_hcp
name: Garage Light
+2 -2
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@@ -12,7 +12,7 @@ esphome:
data_template:
message: The humidity is {{ my_variable }}%.
variables:
my_variable: "return id(ha_hello_world_temperature).state;"
my_variable: !lambda "return id(ha_hello_world_temperature).state;"
- homeassistant.action:
action: notify.html5
data:
@@ -24,7 +24,7 @@ esphome:
data_template:
message: The humidity is {{ my_variable }}%.
variables:
my_variable: "return id(ha_hello_world_temperature).state;"
my_variable: !lambda "return id(ha_hello_world_temperature).state;"
wifi:
ssid: MySSID
+90
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@@ -1181,6 +1181,38 @@ lvgl:
- logger.log:
format: "bar value %f"
args: [x]
- table:
id: table_id
align: top_mid
y: 60
columns:
- width: 40%
- width: 80
rows:
- ["Name", "Value"]
- cells:
- text: "Temp"
merge_right: true
- text: "22.5"
text_crop: true
selected_row: 0
on_value:
then:
- logger.log:
format: "table selected row %u col %u"
args: [row, column]
on_click:
then:
- lvgl.table.cell.update:
id: table_id
row: 1
column: 1
text: !lambda return str_sprintf("%.1f", (float) rand() / RAND_MAX * 100);
merge_right: false
- lvgl.table.update:
id: table_id
selected_row: !lambda return (int) ((float) rand() / RAND_MAX * 2);
selected_column: 0
- line:
id: lv_line_id
align: center
@@ -1214,6 +1246,64 @@ lvgl:
id: checkbox_id
text: Checkbox
align: bottom_right
- list:
id: test_list_id
align: top_right
width: 150px
height: 120px
pad_row: 4
on_add:
- logger.log:
format: "list entry added at %d"
args: [list_index]
on_remove:
- logger.log:
format: "list entry removed at %d"
args: [list_index]
on_click:
- lvgl.list.add_text:
id: test_list_id
text: !lambda return "Section";
- lvgl.list.add_text:
id: test_list_id
text: "Pinned section"
index: 0
- lvgl.list.add:
id: test_list_id
button:
text: "Entry"
checkable: true
- lvgl.list.add:
id: test_list_id
index: 1
obj:
widgets:
- label:
text: !lambda return "Dynamic row " + std::to_string(millis());
- button:
widgets:
- label:
text: "Tap"
on_click:
- lambda: |-
ESP_LOGD("lvgl", "dynamic row button clicked, row %d",
lvgl::lv_list_get_row_index(id(test_list_id), static_cast<lv_obj_t *>(lv_event_get_target(event))));
- dropdown:
options:
- "One"
- "Two"
on_value:
- lambda: |-
ESP_LOGD("lvgl", "dynamic row dropdown changed, row %d",
lvgl::lv_list_get_row_index(id(test_list_id), static_cast<lv_obj_t *>(lv_event_get_target(event))));
- lvgl.list.remove:
id: test_list_id
index: 0
- lvgl.list.clear:
id: test_list_id
- lvgl.list.update:
id: test_list_id
pad_row: 8
- slider:
id: slider_id
align: top_mid
+73
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@@ -0,0 +1,73 @@
esphome:
name: lvgl-list-validate
host:
logger:
display:
- platform: sdl
id: sdl0
dimensions:
width: 320
height: 240
lvgl:
displays: sdl0
widgets:
# Two independent lists, each with their own on_add/on_remove and, for list_a,
# more than one automation under the same trigger key -- checks that the
# per-list trigger bookkeeping is keyed correctly and doesn't require exactly
# one automation.
- list:
id: validate_list_a
align: center
pad_row: 6
on_add:
- logger.log:
format: "a: added %d"
args: [list_index]
- logger.log:
format: "a: also added %d"
args: [list_index]
on_remove:
- logger.log:
format: "a: removed %d"
args: [list_index]
on_boot:
# lvgl.list.add_text and lvgl.list.add both take an optional, templatable index.
- lvgl.list.add_text:
id: validate_list_a
text: "Header"
index: !lambda return 0;
# any registered widget type is valid as the single lvgl.list.add key.
- lvgl.list.add:
id: validate_list_a
checkbox:
align: center
text: "Option"
- lvgl.list.add:
id: validate_list_a
index: !lambda return 0;
switch:
align: center
- lvgl.list.add:
id: validate_list_a
spinner:
align: center
- lvgl.list.add:
id: validate_list_a
obj:
align: center
- lvgl.list.remove:
id: validate_list_a
index: !lambda return 0;
- lvgl.list.clear:
id: validate_list_a
- list:
id: validate_list_b
align: center
on_remove:
- logger.log:
format: "b: removed %d"
args: [list_index]
@@ -15,11 +15,10 @@ struct MitsubishiCN105ClimateTestContext {
TEST(MitsubishiCN105ClimateTests, CelsiusTemperatureMappingAndTraitsMatchExpectedValues) {
MitsubishiCN105ClimateTestContext context;
const auto mapping = TemperatureMapping();
for (int temperature = 16; temperature <= 31; ++temperature) {
EXPECT_EQ(mapping.to_mitsubishi(temperature), temperature);
EXPECT_EQ(mapping.from_mitsubishi(temperature), temperature);
EXPECT_EQ(context.component.get_temperature_mapping().to_mitsubishi(temperature), temperature);
EXPECT_EQ(context.component.get_temperature_mapping().from_mitsubishi(temperature), temperature);
}
const auto traits = context.sut.traits();
@@ -32,8 +31,6 @@ TEST(MitsubishiCN105ClimateTests, CelsiusTemperatureMappingAndTraitsMatchExpecte
TEST(MitsubishiCN105ClimateTests, FahrenheitTemperatureMappingAndTraitsMatchExpectedValues) {
MitsubishiCN105ClimateTestContext context;
auto mapping = TemperatureMapping();
mapping.set_use_fahrenheit(true);
context.component.set_use_fahrenheit(true);
const std::array cases{
@@ -46,8 +43,8 @@ TEST(MitsubishiCN105ClimateTests, FahrenheitTemperatureMappingAndTraitsMatchExpe
};
for (const auto &[fahrenheit, mitsubishi_celsius] : cases) {
EXPECT_FLOAT_EQ(mapping.to_mitsubishi(fahrenheit), mitsubishi_celsius);
EXPECT_FLOAT_EQ(mapping.from_mitsubishi(mitsubishi_celsius), fahrenheit);
EXPECT_FLOAT_EQ(context.component.get_temperature_mapping().to_mitsubishi(fahrenheit), mitsubishi_celsius);
EXPECT_FLOAT_EQ(context.component.get_temperature_mapping().from_mitsubishi(mitsubishi_celsius), fahrenheit);
}
const auto traits = context.sut.traits();
EXPECT_EQ(traits.get_temperature_unit(), TemperatureUnit::FAHRENHEIT);
@@ -42,11 +42,17 @@ TEST(MitsubishiCN105Tests, ConnectAndUpdateStatus) {
// All bytes from UART should be consumed
EXPECT_TRUE(ctx.uart.rx.empty());
// After successful connect we request status, first settings (0x02)
// Defer the first settings request (0x02) until the next update.
EXPECT_EQ(ctx.sut.state_, TestableMitsubishiCN105::State::DEFERRED_STATUS_REQUEST);
EXPECT_TRUE(ctx.uart.tx.empty());
ctx.sut.set_current_time(201);
ASSERT_FALSE(ctx.sut.update());
EXPECT_EQ(ctx.sut.state_, TestableMitsubishiCN105::State::UPDATING_STATUS);
EXPECT_THAT(ctx.uart.tx, ::testing::ElementsAre(0xFC, 0x42, 0x01, 0x30, 0x10, 0x02, 0x00, 0x00, 0x00, 0x00, 0x00,
0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x7B));
EXPECT_EQ(ctx.sut.operation_start_ms_, 200);
EXPECT_EQ(ctx.sut.operation_start_ms_, 201);
// Clear TX bytes.
ctx.uart.tx.clear();
@@ -75,15 +81,24 @@ TEST(MitsubishiCN105Tests, ConnectAndUpdateStatus) {
EXPECT_EQ(ctx.sut.status().vane_mode, MitsubishiCN105::VaneMode::POSITION_4);
EXPECT_EQ(ctx.sut.status().wide_vane_mode, MitsubishiCN105::WideVaneMode::SWING);
// Now fetch telemetry (0x03)
// Defer the telemetry request (0x03) until the next update.
EXPECT_EQ(ctx.sut.state_, TestableMitsubishiCN105::State::DEFERRED_STATUS_REQUEST);
EXPECT_TRUE(ctx.uart.tx.empty());
ctx.sut.set_current_time(301);
ASSERT_FALSE(ctx.sut.update());
EXPECT_EQ(ctx.sut.state_, TestableMitsubishiCN105::State::UPDATING_STATUS);
EXPECT_THAT(ctx.uart.tx, ::testing::ElementsAre(0xFC, 0x42, 0x01, 0x30, 0x10, 0x03, 0x00, 0x00, 0x00, 0x00, 0x00,
0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x7A));
EXPECT_EQ(ctx.sut.operation_start_ms_, 300);
EXPECT_EQ(ctx.sut.operation_start_ms_, 301);
// Clear TX bytes.
ctx.uart.tx.clear();
// Queue a setting while waiting for telemetry.
ctx.sut.set_power(true);
// Telemetry response
ctx.uart.push_rx({0xFC, 0x62, 0x01, 0x30, 0x10, 0x03, 0x00, 0x00, 0x0B, 0x00, 0x00,
0xAA, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0xA5});
@@ -103,6 +118,13 @@ TEST(MitsubishiCN105Tests, ConnectAndUpdateStatus) {
EXPECT_TRUE(ctx.uart.tx.empty());
EXPECT_EQ(ctx.sut.state_, TestableMitsubishiCN105::State::WAITING_FOR_SCHEDULED_STATUS_UPDATE);
EXPECT_EQ(ctx.sut.operation_start_ms_, 400);
// Apply the pending setting on the next update, outside RX processing.
ctx.sut.set_current_time(401);
ASSERT_FALSE(ctx.sut.update());
EXPECT_EQ(ctx.sut.state_, TestableMitsubishiCN105::State::APPLYING_SETTINGS);
EXPECT_FALSE(ctx.uart.tx.empty());
EXPECT_EQ(ctx.sut.operation_start_ms_, 401);
}
TEST(MitsubishiCN105Tests, NoResponseTriggersReconnect) {
@@ -469,6 +491,36 @@ TEST(MitsubishiCN105Tests, WriteInterruptsWaitingForNextStatusUpdate) {
EXPECT_EQ(ctx.sut.status_update_wait_credit_ms_, 0);
}
TEST(MitsubishiCN105Tests, PendingSettingsTakePriorityOverDueTelemetry) {
MitsubishiCN105TestsContext ctx;
ctx.sut.status_.target_temperature = 24.0f;
ctx.sut.status_.room_temperature = 21.0f;
ASSERT_TRUE(ctx.sut.is_status_initialized());
ctx.sut.state_ = TestableMitsubishiCN105::State::STATUS_UPDATED;
ctx.sut.set_state(TestableMitsubishiCN105::State::SCHEDULE_NEXT_STATUS_UPDATE);
ctx.sut.set_current_time(1000);
ASSERT_FALSE(ctx.sut.update());
ASSERT_EQ(ctx.sut.state_, TestableMitsubishiCN105::State::UPDATING_STATUS);
ctx.uart.tx.clear();
ctx.sut.set_power(true);
ctx.uart.push_rx({0xFC, 0x62, 0x01, 0x30, 0x10, 0x02, 0x00, 0x00, 0x00, 0x08, 0x07,
0x00, 0x04, 0x00, 0x00, 0x0C, 0x00, 0x00, 0x00, 0x00, 0x00, 0x3C});
ctx.sut.set_current_time(1001);
ASSERT_TRUE(ctx.sut.update());
EXPECT_TRUE(ctx.uart.tx.empty());
EXPECT_EQ(ctx.sut.state_, TestableMitsubishiCN105::State::WAITING_FOR_SCHEDULED_STATUS_UPDATE);
ctx.sut.set_current_time(1002);
ASSERT_FALSE(ctx.sut.update());
EXPECT_EQ(ctx.sut.state_, TestableMitsubishiCN105::State::APPLYING_SETTINGS);
EXPECT_THAT(ctx.uart.tx, ::testing::ElementsAre(0xFC, 0x41, 0x01, 0x30, 0x10, 0x01, 0x01, 0x00, 0x01, 0x00, 0x00,
0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x7B));
}
TEST(MitsubishiCN105Tests, SetAndClearRemoteRoomTemp) {
MitsubishiCN105TestsContext ctx;
@@ -13,7 +13,7 @@ namespace esphome::modbus_controller::testing {
// malformed. Built at its true byte count, the oversize frame is refused by the hub's size check with
// a log instead.
TEST(ModbusCommandPayload, CoilWritePayloadIsExactSizedNotTruncated) {
ModbusController controller;
ModbusController controller(nullptr, 1);
std::vector<bool> coils(modbus::MAX_NUM_OF_COILS_TO_WRITE + 1, true);
auto cmd = ModbusCommandItem::create_write_multiple_coils(&controller, 0x10, coils);
EXPECT_EQ(cmd.payload.size(), modbus::packed_bit_bytes(coils.size()));
@@ -21,7 +21,7 @@ TEST(ModbusCommandPayload, CoilWritePayloadIsExactSizedNotTruncated) {
// LSB-first packing with zeroed pad bits, matching the wire layout the PDU builders produce.
TEST(ModbusCommandPayload, CoilWritePacksLsbFirstWithZeroPad) {
ModbusController controller;
ModbusController controller(nullptr, 1);
const std::vector<bool> coils{true, false, true, true};
auto cmd = ModbusCommandItem::create_write_multiple_coils(&controller, 0x10, coils);
ASSERT_EQ(cmd.payload.size(), 1u);
@@ -2,6 +2,7 @@ modbus_controller:
- id: modbus_controller1
address: 0x2
modbus_id: modbus_bus
continuous: true
on_online:
then:
logger.log: "Module Online"
@@ -2,6 +2,7 @@ remote_transmitter:
id: xmitr
pin: GPIO26
carrier_duty_percent: 50%
# non_blocking is bk7231n/bk7238-only; the CI board is a BK7252
packages:
buttons: !include common-buttons.yaml
@@ -2,6 +2,7 @@ remote_transmitter:
id: xmitr
pin: GPIO12
carrier_duty_percent: 50%
# non_blocking is rtl8720c-only; the CI board is an RTL8710B
packages:
buttons: !include common-buttons.yaml
@@ -0,0 +1,54 @@
esphome:
on_boot:
then:
- rp2_ble_tracker.start_scan
- rp2_ble_tracker.start_scan:
continuous: true
# Lambda arm of the templatable value — different codegen instantiation.
- rp2_ble_tracker.start_scan:
continuous: !lambda return false;
- rp2_ble_tracker.stop_scan
- rp2_ble_tracker.stop_scan: ble_tracker
rp2_ble_tracker:
on_ble_advertise:
- mac_address: AC:37:43:77:5F:4C
then:
- lambda: |-
char addr[MAC_ADDRESS_PRETTY_BUFFER_SIZE];
ESP_LOGD("main", "The device address is %s", x.address_str_to(addr));
- mac_address:
- AC:37:43:77:5F:4C
- AC:37:43:77:5F:4D
then:
- lambda: |-
char addr[MAC_ADDRESS_PRETTY_BUFFER_SIZE];
ESP_LOGD("main", "The device address is %s", x.address_str_to(addr));
on_ble_service_data_advertise:
- service_uuid: ABCD
# mac_address exercises the UUID triggers' set_address() codegen branch.
mac_address: AC:37:43:77:5F:4C
then:
- lambda: |-
ESP_LOGD("main", "Length of service data is %zu", x.size());
- service_uuid: ABCDABCD
then:
- lambda: |-
ESP_LOGD("main", "32-bit service data is %zu", x.size());
- service_uuid: ABCDABCD-ABCD-ABCD-ABCD-ABCDABCDABCD
then:
- lambda: |-
ESP_LOGD("main", "128-bit service data is %zu", x.size());
on_ble_manufacturer_data_advertise:
- manufacturer_id: ABCD
then:
- lambda: |-
ESP_LOGD("main", "Length of manufacturer data is %zu", x.size());
- manufacturer_id: ABCDABCD-ABCD-ABCD-ABCD-ABCDABCDABCD
then:
- lambda: |-
ESP_LOGD("main", "128-bit manufacturer data is %zu", x.size());
on_scan_end:
- then:
- lambda: |-
ESP_LOGD("main", "Scan ended");
@@ -0,0 +1,3 @@
packages:
rp2_ble_tracker: !include common.yaml
automations: !include common-automations.yaml
@@ -0,0 +1,61 @@
#include <gtest/gtest.h>
#include <optional>
#include "esphome/components/runtime_image/runtime_image.h"
namespace esphome::runtime_image::testing {
TEST(RuntimeImageMime, FormatForKnownMimeTypes) {
EXPECT_EQ(get_format_for_mime_type("image/bmp"), BMP);
EXPECT_EQ(get_format_for_mime_type("image/x-ms-bmp"), BMP);
EXPECT_EQ(get_format_for_mime_type("image/x-bmp"), BMP);
EXPECT_EQ(get_format_for_mime_type("image/png"), PNG);
EXPECT_EQ(get_format_for_mime_type("image/x-png"), PNG);
#ifdef USE_RUNTIME_IMAGE_JPEG
EXPECT_EQ(get_format_for_mime_type("image/jpeg"), JPEG);
EXPECT_EQ(get_format_for_mime_type("image/jpg"), JPEG);
#endif // USE_RUNTIME_IMAGE_JPEG
}
TEST(RuntimeImageMime, FormatMatchingIsCaseInsensitive) {
EXPECT_EQ(get_format_for_mime_type("Image/PNG"), PNG);
EXPECT_EQ(get_format_for_mime_type("IMAGE/BMP"), BMP);
}
TEST(RuntimeImageMime, FormatMatchesContentTypeWithParameters) {
// Content-Type headers may carry parameters after the media type
EXPECT_EQ(get_format_for_mime_type("image/png; charset=binary"), PNG);
EXPECT_EQ(get_format_for_mime_type("image/bmp;name=\"a.bmp\""), BMP);
}
TEST(RuntimeImageMime, UnknownMimeTypeHasNoFormat) {
EXPECT_EQ(get_format_for_mime_type("text/html"), std::nullopt);
EXPECT_EQ(get_format_for_mime_type("application/octet-stream"), std::nullopt);
EXPECT_EQ(get_format_for_mime_type("image/*"), std::nullopt);
EXPECT_EQ(get_format_for_mime_type(""), std::nullopt);
EXPECT_EQ(get_format_for_mime_type(nullptr), std::nullopt);
}
TEST(RuntimeImageMime, MimeTypeForFormatRoundTrip) {
EXPECT_STREQ(get_mime_type_for_format(BMP), "image/bmp");
EXPECT_STREQ(get_mime_type_for_format(PNG), "image/png");
#ifdef USE_RUNTIME_IMAGE_JPEG
EXPECT_STREQ(get_mime_type_for_format(JPEG), "image/jpeg");
#endif // USE_RUNTIME_IMAGE_JPEG
// AUTO has no single MIME type and falls back to the wildcard
EXPECT_STREQ(get_mime_type_for_format(AUTO), "image/*");
// Every decodable format must resolve back to itself through its MIME type
for (ImageFormat format : {
BMP,
PNG,
#ifdef USE_RUNTIME_IMAGE_JPEG
JPEG,
#endif // USE_RUNTIME_IMAGE_JPEG
}) {
EXPECT_EQ(get_format_for_mime_type(get_mime_type_for_format(format)), format) << format;
}
}
} // namespace esphome::runtime_image::testing
+12
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@@ -0,0 +1,12 @@
sensor:
- platform: sfa40
i2c_id: i2c_bus
wait_for_ready: false
formaldehyde:
name: SFA40 formaldehyde
temperature:
name: SFA40 temperature
humidity:
name: SFA40 humidity
address: 0x5D
update_interval: 30s
@@ -0,0 +1,3 @@
packages:
i2c: !include ../../test_build_components/common/i2c/esp32-idf.yaml
sfa40: !include common.yaml
@@ -0,0 +1,3 @@
packages:
i2c: !include ../../test_build_components/common/i2c/esp8266-ard.yaml
sfa40: !include common.yaml
@@ -0,0 +1,3 @@
packages:
i2c: !include ../../test_build_components/common/i2c/rp2040-ard.yaml
sfa40: !include common.yaml
@@ -0,0 +1,9 @@
packages:
i2c: !include ../../test_build_components/common/i2c/esp32-idf.yaml
sensor:
- platform: sfa40
i2c_id: i2c_bus
wait_for_ready: true
formaldehyde:
name: SFA40 formaldehyde
+1 -1
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@@ -4,6 +4,6 @@ from tests.testing_helpers import ComponentManifestOverride
def override_manifest(manifest: ComponentManifestOverride) -> None:
async def to_code(config):
cg.add_build_flag("-DUSE_TIME_TIMEZONE")
cg.add_define("USE_TIME_TIMEZONE")
manifest.to_code = to_code
+3
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@@ -41,3 +41,6 @@ number:
min_value: 2
max_value: 100
step: 1
time:
- platform: zigbee
@@ -10,6 +10,3 @@ zigbee:
on_start:
then:
- logger.log: "Started zigbee stack"
time:
- platform: zigbee
@@ -5,3 +5,6 @@ zigbee:
on_join:
then:
- logger.log: "Joined network"
time:
- platform: zigbee