Public Access
lib/services holds the host-tested logic: - Settings: typed, validated, persisted, SettingChanged events, transmit gated on a confirmed Region - BatteryEstimator: LiPo curve, median smoothing against TX sags - ClockModel: source priority GNSS > NTP > mesh, relative ages, Europe/Brussels local time via POSIX TZ - StorageMonitor: warning once per boot at 80%, Logs stop at 90%, Captures stop with < 2 MiB left - PowerPolicy / PowerButton: dim/off timeouts, wake key swallowed only when the screen was off, G0 long press src/services wires them to the hardware (NVS, battery ADC, SD on the shared SPI bus with the LoRa CS held high, backlight, deep sleep), and main.cpp is a temporary diagnostics screen for the hardware checks. Co-Authored-By: Claude Opus 5.5 <noreply@anthropic.com> Claude-Session: https://claude.ai/code/session_01EhqxQ49eCju4CzKYNjZzwT
37 lines
898 B
C++
37 lines
898 B
C++
#pragma once
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#include <cstdint>
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#include "event_bus.h"
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namespace roro {
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struct StorageState {
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bool present = false;
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uint64_t totalBytes = 0;
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uint64_t usedBytes = 0;
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int usedPercent = 0;
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int level = 0; // 0, 80, 90 or 100 (full)
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bool logsAllowed = false;
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bool capturesAllowed = false;
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};
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// Applies the SD card rules (see CONTEXT.md): Storage Warning once per boot past 80 %, Logs stop
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// past 90 % to keep room for Captures, Captures stop when the card is full.
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class StorageMonitor {
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public:
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static constexpr uint64_t kFullReserveBytes = 2ull * 1024 * 1024;
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explicit StorageMonitor(EventBus& bus) : bus_(bus) {}
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void update(bool present, uint64_t totalBytes, uint64_t usedBytes);
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const StorageState& state() const { return state_; }
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private:
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EventBus& bus_;
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StorageState state_;
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bool warned_ = false;
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};
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} // namespace roro
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