103 lines
4.1 KiB
C++
103 lines
4.1 KiB
C++
#pragma once
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#include "lidarlib/lidar.hpp"
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#include <cstdint>
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#include <string>
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#include <vector>
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namespace lidarlib {
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// SICK TiM presets. FOV/range from datasheets; scan_angle_* are informational
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// only and do NOT filter points. angle_offset_deg = -90 because the TiM wire
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// frame puts 90° at the device front.
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inline constexpr ModelConfig MODEL_SICK_TIM5XX { "SICK-TIM5xx", -135.f, 135.f, 0.05f, 10.f, -90.f }; // TiM551/561, 270°, 10m
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inline constexpr ModelConfig MODEL_SICK_TIM571 { "SICK-TIM571", -135.f, 135.f, 0.05f, 25.f, -90.f }; // TiM571, 270°, 25m
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inline constexpr ModelConfig MODEL_SICK_TIM7XX { "SICK-TIM7xx", -135.f, 135.f, 0.05f, 25.f, -90.f }; // TiM781, 270°, 25m
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// SICK TiM5xx/7xx over SOPAS/CoLa-A (TCP, default port 2111).
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// Verified against a real TiM781S (FW V5.11). NOT verified: NumEncoders > 0,
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// the 8-bit channel branch, and the TIM5xx/TIM571 FOV/range numbers.
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class SickDriver : public Lidar {
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public:
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using ScanCallback = lidarlib::ScanCallback;
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explicit SickDriver(const ModelConfig& cfg,
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const std::string& ip,
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uint16_t port = 2111);
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~SickDriver();
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SickDriver(const SickDriver&) = delete;
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SickDriver& operator=(const SickDriver&) = delete;
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// Connect + send "sEN LMDscandata 1" to start continuous scan output.
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ErrorCode open() override;
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void close() override;
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bool recv_scan(ScanResult& out, int timeout_ms = 2000) 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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bool is_open() const override { return sock_fd_ >= 0; }
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// No model string on the wire — returns the configured name.
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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 send_telegram(const std::string& body);
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bool read_telegram(std::string& out, int timeout_ms);
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bool parse_lmdscandata(const std::string& telegram, ScanResult& out);
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ModelConfig cfg_;
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std::string detected_model_name_; // owned copy of cfg_.name (stable lifetime)
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std::string ip_;
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uint16_t port_;
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int sock_fd_ = -1;
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ScanCallback cb_;
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// Leftover TCP bytes carried across telegram boundaries; per-instance.
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std::string recv_buf_;
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};
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inline constexpr ModelConfig MODEL_SICK_NANOSCAN3 { "SICK-nanoScan3", -137.5f, 137.5f, 0.05f, 40.f };
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// SICK nanoScan3 / microScan3 safety-scanner binary UDP output. Layout ported
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// from SICK's open-source sick_safetyscanners; NOT verified on real hardware.
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// Passive UDP receiver: the sensor's UDP target must be configured up front in
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// SICK Safety Designer — this class does no CoLa2/TCP handshake.
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class NanoScanDriver : public Lidar {
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public:
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using ScanCallback = lidarlib::ScanCallback;
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// ip: local bind address; port: local UDP port the sensor sends to.
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explicit NanoScanDriver(const ModelConfig& cfg,
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const std::string& ip = "0.0.0.0",
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uint16_t port = 6060);
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~NanoScanDriver();
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NanoScanDriver(const NanoScanDriver&) = delete;
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NanoScanDriver& operator=(const NanoScanDriver&) = delete;
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ErrorCode 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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bool is_open() const override { return sock_fd_ >= 0; }
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// No model string on the wire — returns the configured name.
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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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int recv_datagram(int timeout_ms);
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bool parse_packet(const uint8_t* buf, int len, ScanResult& out);
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ModelConfig cfg_;
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std::string detected_model_name_; // owned copy of cfg_.name (stable lifetime)
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std::string ip_;
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uint16_t port_;
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int sock_fd_ = -1;
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ScanCallback cb_;
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// Per-instance; sized for a full safety-data packet (max ~2751 beams).
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std::vector<uint8_t> recv_buf_;
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};
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} // namespace lidarlib
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