Files
roro9stack/test/test_storage/test_storage.cpp
T
twislaandClaude Opus 5.5 987406fa7c Add M0 services: settings, battery, clock, storage, power
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
2026-10-02 09:47:36 +02:00

109 lines
3.3 KiB
C++

#include <unity.h>
#include <vector>
#include "event_bus.h"
#include "storage_monitor.h"
using namespace roro;
void setUp() {}
void tearDown() {}
static const uint64_t GB = 1024ull * 1024 * 1024;
static const uint64_t MB = 1024ull * 1024;
struct Fixture {
EventBus bus{16};
StorageMonitor monitor{bus};
std::vector<Event> notifications;
std::vector<Event> thresholds;
Fixture() {
bus.subscribe(EventType::Notification, [&](const Event& e) { notifications.push_back(e); });
bus.subscribe(EventType::StorageThreshold, [&](const Event& e) { thresholds.push_back(e); });
}
void update(uint64_t used, uint64_t total = 32 * GB) {
monitor.update(true, total, used);
bus.dispatch();
}
};
void test_no_card_means_nothing_can_be_written() {
Fixture f;
f.monitor.update(false, 0, 0);
TEST_ASSERT_FALSE(f.monitor.state().present);
TEST_ASSERT_FALSE(f.monitor.state().logsAllowed);
TEST_ASSERT_FALSE(f.monitor.state().capturesAllowed);
}
void test_below_80_percent_everything_is_allowed_quietly() {
Fixture f;
f.update(16 * GB);
TEST_ASSERT_EQUAL(50, f.monitor.state().usedPercent);
TEST_ASSERT_TRUE(f.monitor.state().logsAllowed);
TEST_ASSERT_TRUE(f.monitor.state().capturesAllowed);
TEST_ASSERT_EQUAL(0, f.notifications.size());
}
void test_crossing_80_percent_warns_once_per_boot() {
Fixture f;
f.update(26 * GB); // 81 %
TEST_ASSERT_EQUAL(1, f.notifications.size());
f.update(26 * GB);
f.update(10 * GB); // cleaned up
f.update(27 * GB); // over again, same boot
TEST_ASSERT_EQUAL(1, f.notifications.size());
}
void test_warning_is_a_warning_level_notification() {
Fixture f;
f.update(26 * GB);
TEST_ASSERT_EQUAL(static_cast<int32_t>(NotificationLevel::Warning), f.notifications[0].a);
}
void test_at_90_percent_logs_stop_but_captures_continue() {
Fixture f;
f.update(29 * GB); // 90.6 %
TEST_ASSERT_FALSE(f.monitor.state().logsAllowed);
TEST_ASSERT_TRUE(f.monitor.state().capturesAllowed);
}
void test_logs_resume_after_clean_up_below_90() {
Fixture f;
f.update(29 * GB);
f.update(20 * GB);
TEST_ASSERT_TRUE(f.monitor.state().logsAllowed);
}
void test_captures_stop_when_card_is_full() {
Fixture f;
f.update(32 * GB - MB); // less than the 2 MiB reserve left
TEST_ASSERT_FALSE(f.monitor.state().capturesAllowed);
}
void test_threshold_event_only_when_level_changes() {
Fixture f;
f.update(10 * GB); // level 0, initial
f.update(26 * GB); // 80
f.update(26 * GB); // still 80
f.update(29 * GB); // 90
f.update(32 * GB); // full
TEST_ASSERT_EQUAL(3, f.thresholds.size());
TEST_ASSERT_EQUAL(80, f.thresholds[0].b);
TEST_ASSERT_EQUAL(90, f.thresholds[1].b);
TEST_ASSERT_EQUAL(100, f.thresholds[2].b);
}
int main() {
UNITY_BEGIN();
RUN_TEST(test_no_card_means_nothing_can_be_written);
RUN_TEST(test_below_80_percent_everything_is_allowed_quietly);
RUN_TEST(test_crossing_80_percent_warns_once_per_boot);
RUN_TEST(test_warning_is_a_warning_level_notification);
RUN_TEST(test_at_90_percent_logs_stop_but_captures_continue);
RUN_TEST(test_logs_resume_after_clean_up_below_90);
RUN_TEST(test_captures_stop_when_card_is_full);
RUN_TEST(test_threshold_event_only_when_level_changes);
return UNITY_END();
}