158 lines
6.1 KiB
C++
158 lines
6.1 KiB
C++
#pragma once
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#include <cstdint>
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#include <vector>
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#include <string>
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#include <functional>
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#include <optional>
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namespace lidarlib {
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// ROS sensor_msgs/LaserScan-shaped output (radians, meters, seconds).
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// ranges[i] is at angle_min + i*angle_increment, in sweep order.
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struct LaserScan {
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uint32_t timestamp_ms = 0; // device clock (ms); 0 if not on the wire
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float angle_min = 0.f; // rad
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float angle_max = 0.f; // rad
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float angle_increment = 0.f; // rad
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float time_increment = 0.f; // sec — not exposed by devices, always 0
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float scan_time = 0.f; // sec — not exposed by devices, always 0
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float range_min = 0.f; // m — from ModelConfig, not measured
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float range_max = 0.f; // m — from ModelConfig, not measured
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std::vector<float> ranges; // m
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std::vector<float> intensities; // 0-255 as float
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};
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// Diagnostic/header fields; fields the family doesn't carry stay std::nullopt.
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struct ExtraInfo {
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std::string detected_model = "AUTO";
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uint8_t error_status = 0; // Family A: BIT0=Monitor, BIT1=Voltage, BIT2=Temp
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uint8_t distance_scale_mm = 0; // 0 = not reported
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// Family A only
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std::optional<uint16_t> rotation_raw;
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// Family C / V3 (GS1-5) only — raw passthroughs, unverified
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std::optional<uint8_t> distance_ratio_raw;
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std::optional<uint16_t> scan_frequency_raw;
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std::optional<uint16_t> input_status;
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std::optional<uint16_t> output_status;
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std::optional<uint32_t> field_status;
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std::optional<uint32_t> status_flags;
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};
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struct ScanResult {
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LaserScan scan;
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ExtraInfo info;
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};
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// Per-model configuration. scan_angle_* use the signed system [-180,180]:
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// 0 = ahead, + = left, - = right. range_min/max are datasheet placeholders.
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struct ModelConfig {
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const char* name;
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float scan_angle_min; // deg
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float scan_angle_max; // deg
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float range_min_m = 0.05f;
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float range_max_m = 30.f;
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// Added to the raw device angle so output 0° = ahead (LR-1F/1FMI report 0°
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// at the back: +180; SICK TiM puts the front at 90°: -90).
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float angle_offset_deg = 0.f;
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// Output remap window (see make_lidar / remap_scan_window): shifts the
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// scan's angles onto [out_angle_min, out_angle_max] without dropping points.
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bool remap_angles = false;
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float out_angle_min = 0.f; // deg
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float out_angle_max = 0.f; // deg
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};
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inline constexpr ModelConfig MODEL_VB { "VB", -135.f, 135.f, 0.05f, 30.f }; // 2D 270°
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inline constexpr ModelConfig MODEL_VF { "VF", -180.f, 180.f, 0.05f, 30.f }; // 2D 360°
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inline constexpr ModelConfig MODEL_LR1F { "LR-1F", -180.f, 180.f, 0.05f, 50.f, 180.f }; // 2D 360° 50m; device 0° = rear
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inline constexpr ModelConfig MODEL_LR1FMI { "LR-1FMI", -180.f, 180.f, 0.05f, 30.f, 180.f }; // 2D 360° (Family B); device 0° = rear
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inline constexpr ModelConfig MODEL_LR1BS5 { "LR-1BS5", -180.f, 180.f, 0.05f, 30.f }; // 2D 360° (Family B)
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inline constexpr ModelConfig MODEL_LR16F { "LR-16F", -135.f, 135.f, 0.05f, 30.f }; // 3D 16 line
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inline constexpr ModelConfig MODEL_GS15 { "GS1-5", -180.f, 180.f, 0.05f, 30.f }; // 2D 360°
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// Model unknown ahead of time: Family B/C packets carry enough to auto-detect;
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// Family A doesn't, so the wide default FOV is kept.
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inline constexpr ModelConfig MODEL_AUTO { "AUTO", -180.f, 180.f, 0.05f, 30.f };
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using ScanCallback = std::function<void(const ScanResult&)>;
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// Unified driver interface returned by make_lidar(); OLEI and SICK drivers
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// both derive from it.
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class Lidar {
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public:
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virtual ~Lidar() = default;
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virtual bool open() = 0;
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virtual void close() = 0;
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// Block until one full scan; false on error/timeout. timeout_ms = 0 → block
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// indefinitely. No default on purpose: drivers differ (OLEI 1000, SICK 2000).
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virtual bool recv_scan(ScanResult& out, int timeout_ms) = 0;
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virtual void set_scan_callback(ScanCallback cb) = 0;
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virtual bool spin_once() = 0;
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virtual const char* detected_model() const = 0;
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};
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// OLEI UDP driver.
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class Driver : public Lidar {
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public:
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using ScanCallback = lidarlib::ScanCallback;
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// ip: local bind address; port: UDP port the lidar sends to;
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// inverted: unit mounted upside-down → mirror every angle.
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explicit Driver(const ModelConfig& cfg,
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const std::string& ip = "0.0.0.0",
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uint16_t port = 2368,
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bool inverted = false);
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~Driver();
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Driver(const Driver&) = delete;
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Driver& operator=(const Driver&) = delete;
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bool open() override;
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void close() override;
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bool recv_scan(ScanResult& out, int timeout_ms = 1000) override;
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void set_scan_callback(ScanCallback cb) override { cb_ = std::move(cb); }
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bool spin_once() override;
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// Model name read from the Family B/C header; "AUTO" until one is seen.
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const char* detected_model() const override { return detected_model_name_.c_str(); }
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private:
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bool parse_family_a(const uint8_t* buf, int len); // ID=0xFAF0
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bool parse_family_b(const uint8_t* buf, int len); // ID=0xFEF0
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bool parse_family_c(const uint8_t* buf, int len); // Magic=0xFEAC (GS1-5)
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void push_point(float signed_angle_deg, float dist_m, uint8_t intensity);
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void flush_scan();
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ModelConfig cfg_;
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std::string ip_;
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uint16_t port_;
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bool inverted_ = false;
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int sock_fd_ = -1;
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ScanCallback cb_;
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// Per-revolution accumulation buffers (index-aligned)
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std::vector<float> pending_angle_deg_;
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std::vector<float> pending_dist_m_;
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std::vector<uint8_t> pending_intensity_;
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uint32_t pending_ts_ = 0;
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uint8_t pending_err_ = 0;
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float last_angle_ = -1.f; // wrap detection, device space [0,360)
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ExtraInfo pending_info_;
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ScanResult ready_result_;
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bool scan_ready_ = false;
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// Per-instance so two drivers on two threads don't race.
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uint8_t recv_buf_[4096];
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bool auto_detect_ = false;
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bool model_locked_ = false;
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std::string detected_model_name_ = "AUTO";
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};
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} // namespace lidarlib
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