Merge pull request #10 from elephantrobotics/humble-dev
feat(agv_pro_base,agv_pro_msgs): add LED color and mode services with…
This commit is contained in:
@@ -15,6 +15,8 @@
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#include <tf2_geometry_msgs/tf2_geometry_msgs.hpp>
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#include <agv_pro_msgs/srv/set_digital_output.hpp>
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#include <agv_pro_msgs/srv/get_digital_input.hpp>
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#include <agv_pro_msgs/srv/set_led_color.hpp>
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#include <agv_pro_msgs/srv/set_led_mode.hpp>
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#define SEND_DATA_SIZE 14 // Total bytes in a command frame to ESP32(version>=V1.0.8)
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#define RECEIVE_FRAME_SIZE 31 // Total bytes in a frame from ESP32(version>=V1.0.8)
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@@ -23,6 +25,8 @@
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#define POWER_ON 0x10
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#define GET_POWER_STATE 0x12
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#define SET_AUTO_REPORT_STATE 0x23
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#define SET_LED_COLOR 0x34
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#define SET_LED_MODE 0x3A
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#define SET_OUTPUT_IO 0x40
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#define GET_INPUT_IO 0x41
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@@ -196,6 +200,14 @@ private:
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const std::shared_ptr<agv_pro_msgs::srv::GetDigitalInput::Request> request,
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std::shared_ptr<agv_pro_msgs::srv::GetDigitalInput::Response> response);
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void handleSetLedColor(
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const std::shared_ptr<agv_pro_msgs::srv::SetLedColor::Request> request,
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std::shared_ptr<agv_pro_msgs::srv::SetLedColor::Response> response);
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void handleSetLedMode(
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const std::shared_ptr<agv_pro_msgs::srv::SetLedMode::Request> request,
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std::shared_ptr<agv_pro_msgs::srv::SetLedMode::Response> response);
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boost::asio::io_service io_;
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std::unique_ptr<boost::asio::serial_port> serial_port_;
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@@ -262,6 +274,8 @@ private:
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rclcpp::Subscription<geometry_msgs::msg::Twist>::SharedPtr cmd_sub;
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rclcpp::Service<agv_pro_msgs::srv::SetDigitalOutput>::SharedPtr set_output_service;
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rclcpp::Service<agv_pro_msgs::srv::GetDigitalInput>::SharedPtr get_input_service;
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rclcpp::Service<agv_pro_msgs::srv::SetLedColor>::SharedPtr set_led_service;
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rclcpp::Service<agv_pro_msgs::srv::SetLedMode>::SharedPtr set_led_mode_service;
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sensor_msgs::msg::Imu imu_data;
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std::unique_ptr<tf2_ros::TransformBroadcaster> odomBroadcaster;
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@@ -280,7 +280,7 @@ void AGV_PRO::handleSetDigitalOutput(
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uint8_t status = response_frame[4];
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if (status == 0x01) {
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RCLCPP_INFO(this->get_logger(), "SetDigitalOutput succeeded");
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RCLCPP_DEBUG(this->get_logger(), "SetDigitalOutput succeeded");
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response->success = true;
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response->message = "Success";
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} else {
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@@ -315,13 +315,96 @@ void AGV_PRO::handleGetDigitalInput(
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RCLCPP_ERROR(this->get_logger(), "GetDigitalInput failed with status: 0x%02X", status);
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response->success = false;
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} else {
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RCLCPP_INFO(this->get_logger(), "GetDigitalInput succeeded, state: %u", status);
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RCLCPP_DEBUG(this->get_logger(), "GetDigitalInput succeeded, state: %u", status);
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response->state = static_cast<int32_t>(status);
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response->success = true;
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response->message = "Success";
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}
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}
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void AGV_PRO::handleSetLedColor(
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const std::shared_ptr<agv_pro_msgs::srv::SetLedColor::Request> request,
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std::shared_ptr<agv_pro_msgs::srv::SetLedColor::Response> response)
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{
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if (request->position < 0 || request->position > 1) {
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RCLCPP_ERROR(this->get_logger(), "Invalid LED position: %d", request->position);
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response->success = false;
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response->message = "Invalid LED position";
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return;
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}
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if (request->brightness < 0 || request->brightness > 255) {
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RCLCPP_ERROR(this->get_logger(), "Invalid brightness: %d", request->brightness);
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response->success = false;
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response->message = "Invalid brightness";
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return;
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}
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if (request->r < 0 || request->r > 255 ||
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request->g < 0 || request->g > 255 ||
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request->b < 0 || request->b > 255) {
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RCLCPP_ERROR(
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this->get_logger(),
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"Invalid RGB value: r=%d g=%d b=%d",
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request->r, request->g, request->b
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);
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response->success = false;
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response->message = "Invalid RGB value";
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return;
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}
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uint8_t position = static_cast<uint8_t>(request->position);
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uint8_t brightness = static_cast<uint8_t>(request->brightness);
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uint8_t r = static_cast<uint8_t>(request->r);
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uint8_t g = static_cast<uint8_t>(request->g);
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uint8_t b = static_cast<uint8_t>(request->b);
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auto frame = build_serial_frame(SET_LED_COLOR, {position, brightness, r, g, b});
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send_serial_frame(frame, true);
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const std::vector<uint8_t> expected_header = {0xFE, 0xFE, 0x0B, SET_LED_COLOR};
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auto response_frame = read_serial_response(expected_header, 8, 5.0);
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// print_hex("recv_buf", response_frame); //debug
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uint8_t status = response_frame[4];
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if (status == 0x01) {
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RCLCPP_DEBUG(this->get_logger(), "SetLedColor succeeded");
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response->success = true;
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response->message = "Success";
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} else {
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RCLCPP_ERROR(this->get_logger(), "SetLedColor failed with status: 0x%02X", status);
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response->success = false;
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response->message = "Failed with status code";
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}
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}
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void AGV_PRO::handleSetLedMode(
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const std::shared_ptr<agv_pro_msgs::srv::SetLedMode::Request> request,
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std::shared_ptr<agv_pro_msgs::srv::SetLedMode::Response> response)
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{
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uint8_t mode = request->mode ? 0x01 : 0x00;
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auto frame = build_serial_frame(SET_LED_MODE, {mode});
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send_serial_frame(frame, true);
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const std::vector<uint8_t> expected_header = {0xFE, 0xFE, 0x0B, SET_LED_MODE};
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auto response_frame = read_serial_response(expected_header, 8, 5.0);
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// print_hex("recv_buf", response_frame); //debug
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uint8_t status = response_frame[4];
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if (status == 0x01) {
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RCLCPP_DEBUG(this->get_logger(), "SetLedMode succeeded");
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response->success = true;
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response->message = "Success";
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} else {
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RCLCPP_ERROR(this->get_logger(), "SetLedMode failed with status: 0x%02X", status);
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response->success = false;
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response->message = "Failed with status code";
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}
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}
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bool AGV_PRO::readData()
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{
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std::vector<uint8_t> buf_length(1);
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@@ -569,6 +652,16 @@ AGV_PRO::AGV_PRO(std::string node_name):rclcpp::Node(node_name)
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std::bind(&AGV_PRO::handleGetDigitalInput, this, std::placeholders::_1, std::placeholders::_2)
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);
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set_led_service = this->create_service<agv_pro_msgs::srv::SetLedColor>(
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"set_led_color",
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std::bind(&AGV_PRO::handleSetLedColor, this, std::placeholders::_1, std::placeholders::_2)
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);
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set_led_mode_service = this->create_service<agv_pro_msgs::srv::SetLedMode>(
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"set_led_mode",
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std::bind(&AGV_PRO::handleSetLedMode, this, std::placeholders::_1, std::placeholders::_2)
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);
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lastTime = this->get_clock()->now();
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try{
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@@ -17,6 +17,8 @@ rosidl_generate_interfaces(${PROJECT_NAME}
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"msg/AGVProStatus.msg"
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"srv/SetDigitalOutput.srv"
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"srv/GetDigitalInput.srv"
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"srv/SetLedColor.srv"
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"srv/SetLedMode.srv"
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DEPENDENCIES std_msgs
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)
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@@ -0,0 +1,133 @@
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#!/usr/bin/env python3
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import rclpy
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import time
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from rclpy.node import Node
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from agv_pro_msgs.srv import (
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SetDigitalOutput,
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GetDigitalInput,
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SetLedColor,
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SetLedMode
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)
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class AGVIOClient(Node):
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def __init__(self):
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super().__init__('agv_io_client')
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# Create service client
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self.cli_set_io = self.create_client(SetDigitalOutput, 'set_digital_output')
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self.cli_get_io = self.create_client(GetDigitalInput, 'get_digital_input')
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self.cli_led_output = self.create_client(SetLedColor, 'set_led_color')
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self.cli_led_mode = self.create_client(SetLedMode, 'set_led_mode')
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# Wait until all services are available
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self._wait_for_services()
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def _wait_for_services(self):
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"""Wait for all services to become available."""
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clients = [
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self.cli_set_io,
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self.cli_get_io,
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self.cli_led_output,
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self.cli_led_mode
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]
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for cli in clients:
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while not cli.wait_for_service(timeout_sec=1.0):
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pass
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def _call_service(self, client, request):
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future = client.call_async(request)
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rclpy.spin_until_future_complete(self, future, timeout_sec=5.0)
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if future.result() is not None:
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return future.result()
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else:
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self.get_logger().error(f'Service call failed: {future.exception()}')
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return None
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# ------------------------------
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# Set digital output
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# ------------------------------
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def set_digital_output(self, pin: int, state: int) -> bool:
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"""Set digital output pin state."""
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req = SetDigitalOutput.Request()
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req.pin = pin
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req.state = state
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res = self._call_service(self.cli_set_io, req)
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return res.success if res else False
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# ------------------------------
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# Get digital input
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# ------------------------------
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def get_digital_input(self, pin: int):
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"""Read digital input pin state."""
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req = GetDigitalInput.Request()
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req.pin = pin
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res = self._call_service(self.cli_get_io, req)
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return res.state if (res and res.success) else None
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# ------------------------------
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# Set LED color
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# ------------------------------
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def set_led_color(self,
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position: int,
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brightness: int,
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r: int,
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g: int,
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b: int) -> bool:
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"""Set LED RGB color and brightness."""
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req = SetLedColor.Request()
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req.position = position
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req.brightness = brightness
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req.r = r
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req.g = g
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req.b = b
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res = self._call_service(self.cli_led_output, req)
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return res.success if res else False
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# ------------------------------
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# Set LED mode
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# ------------------------------
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def set_led_mode(self, mode: bool) -> bool:
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"""Set LED mode (True/False)."""
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req = SetLedMode.Request()
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req.mode = mode
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res = self._call_service(self.cli_led_mode, req)
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return res.success if res else False
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def main(args=None):
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rclpy.init(args=args)
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client = AGVIOClient()
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################
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# Example usage:
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################
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# client.set_digital_output(pin=1, state=1)
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# client.get_digital_input(pin=2)
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# client.set_led_mode(True)
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# for i in range(10):
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# client.set_led_color(0, 100, 255, 255, 0)
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# client.set_led_color(1, 100, 255, 255, 0)
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# time.sleep(0.5)
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# client.set_led_color(0, 0, 0, 0, 0)
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# client.set_led_color(1, 0, 0, 0, 0)
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# time.sleep(0.5)
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# client.set_led_color(0, 100, 255, 255, 0)
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# client.set_led_color(1, 100, 255, 255, 0)
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# client.set_led_mode(True)
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client.destroy_node()
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rclpy.shutdown()
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if __name__ == '__main__':
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main()
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@@ -0,0 +1,8 @@
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int32 position
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int32 brightness
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int32 r
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int32 g
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int32 b
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---
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bool success
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string message
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@@ -0,0 +1,4 @@
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bool mode
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---
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bool success
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string message
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