145 lines
5.9 KiB
C++
145 lines
5.9 KiB
C++
/*
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* MIT License
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*
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* Copyright (c) 2026 Mark Allyn
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*
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* Permission is hereby granted, free of charge, to any person obtaining a copy
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* of this software and associated documentation files (the "Software"), to deal
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* in the Software without restriction, including without limitation the rights
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* to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
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* copies of the Software, and to permit persons to whom the Software is
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* furnished to do so, subject to the following conditions:
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*
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* The above copyright notice and this permission notice shall be included in all
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* copies or substantial portions of the Software.
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*
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* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
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* IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
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* FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
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* AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
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* LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
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* OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
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* SOFTWARE.
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*/
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/*
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* global_data.cpp
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* Author: Mark Allyn
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*
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* Definitions of all system-wide global variables.
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* Extern declarations live in include/data_structure_and_constants.h.
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*/
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#include "include/data_structure_and_constants.h"
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/* ============================================================
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* RADAR MANAGEMENT
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* Components: Thread 1 (startup, scope switching), Traffic Cop (Thread 2)
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* ============================================================ */
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/* radar_management[] is indexed by RADAR_* constants (0-4).
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* Slot 0 (RADAR_NONE) is the management/system entry.
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* Slots 1-4 are per-radar entries. operatable is set to 1 once a radar is
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* fully built. available and selected are set during startup argument parsing.
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* Components: Thread 1, Traffic Cop (Thread 2) */
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radar_management_structure radar_management[RADAR_COUNT] = {
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{ RADAR_NONE, 0, 0, 0 }, // [0] management entry
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{ RADAR_CHAIN_HOME, 0, 0, 0 }, // [1] chain_home — not yet built
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{ RADAR_MARINE_ASCOPE, 0, 0, 0 }, // [2] marine_ascope — not yet built
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{ RADAR_MARINE_TRAFFIC, 0, 0, 0 }, // [3] marine_traffic — not yet built
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{ RADAR_POLICE_BOAT, 0, 0, 0 }, // [4] police_boat — not yet built
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};
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// No radar selected on startup; intro screen is displayed.
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// Components: Thread 1, Traffic Cop (Thread 2), all scope renderers
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int current_radar = RADAR_NONE;
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// Range step indices — 0 = lowest (shortest) range step for each scope.
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// Incremented/decremented by the o/p keyboard handler in Thread 1.
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// Chain Home is fixed-range; its index exists for consistency but is unused.
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// Components: Thread 1 keyboard handler, each scope renderer
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int chain_home_range_setting = 0;
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int ascope_range_setting = 0;
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int traffic_control_range_setting = 0;
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int police_boat_range_setting = 0;
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/* ============================================================
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* THREAD MUTEXES
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* Components: all threads as noted per mutex
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* ============================================================ */
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// Thread 2 -> Thread 1: target data handoff
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// Components: Traffic Cop (Thread 2), Thread 1
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std::mutex mutex_target_data;
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// Thread 3 -> Thread 2: simulator to traffic cop
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// Components: Simulator (Thread 3), Traffic Cop (Thread 2)
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std::mutex mutex_simulator_to_traffic_cop;
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// Thread 4 -> Thread 1: physical control panel data (not yet implemented)
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// Components: Physical Controls (Thread 4), Thread 1
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std::mutex mutex_control_data_to_shaders;
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// Thread 5 -> Thread 2: Raspberry Pi receiver to traffic cop (not yet implemented)
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// Components: Raspberry Pi Receiver (Thread 5), Traffic Cop (Thread 2)
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std::mutex mutex_raspberry_pi;
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/* ============================================================
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* SHADER UNIFORM COPIES
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* These are set by keyboard callbacks in Thread 1 and pushed to
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* GLSL shader uniforms each frame render.
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* Initial values are sensible defaults; adjust in include/settings.h
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* as components are developed and tested.
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* ============================================================ */
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// Scope intensity — keyboard 3 (lower) / 4 (higher)
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// GLSL uniform: float intensity
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// Components: all scopes
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float uniform_intensity = 1.0f;
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// Receiver sensitivity — keyboard 5 (lower) / 6 (higher)
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// GLSL uniform: float sensitivity
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// Components: all scopes
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float uniform_sensitivity = 1.0f;
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// STC sensitivity for close-in targets — keyboard q (lower) / w (higher)
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// GLSL uniform: float stc_sensitivity
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// Components: all scopes
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float uniform_stc_sensitivity = 0.5f;
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// STC effective range (normalized 0-1) — keyboard e (lower) / r (higher)
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// GLSL uniform: float stc_range
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// Components: all scopes
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float uniform_stc_range = 0.3f;
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// Rain noise filter, PPI scopes only — keyboard t (decrease) / y (increase)
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// GLSL uniform: float noise_filter
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// Components: PPI scopes (marine traffic control, on-board boat)
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float uniform_noise_filter = 0.0f;
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// Chain Home radiogoniometer bearing in degrees — keyboard u (left) / i (right)
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// GLSL uniform: float radiogoniometer
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// Components: Chain Home A-scope
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float uniform_radiogoniometer = 0.0f;
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// Maximum radar range (scope-dependent units) — keyboard o (lower) / p (higher)
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// GLSL uniform: float max_range
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// Components: Marine A-scope, PPI scopes (not Chain Home; that is fixed)
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float uniform_max_range = 1.0f;
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// Range cursor position (normalized 0-1) — keyboard a (lower) / s (higher)
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// GLSL uniform: float range_cursor
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// Components: PPI scopes (marine traffic control, on-board boat)
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float uniform_range_cursor = 0.5f;
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// Bearing cursor in degrees — keyboard d (CCW) / f (CW)
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// GLSL uniform: float bearing_cursor
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// Components: PPI scopes (marine traffic control, on-board boat)
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float uniform_bearing_cursor = 0.0f;
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// Marine A-scope antenna rotation bearing in degrees — keyboard g (CCW) / h (CW)
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// GLSL uniform: float marine_a_bearing
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// Components: Marine A-scope
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float uniform_marine_a_bearing = 0.0f;
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