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Copy pathDataManager.cpp
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207 lines (182 loc) · 6.43 KB
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#include "pch.h"
#include "DataManager.h"
#include "OpenCodeGoService.h"
#include "PluginModule.h"
#include <cstdio>
#include <utility>
CDataManager CDataManager::m_instance;
namespace
{
void WritePrivateProfileInt(const wchar_t* app_name, const wchar_t* key_name, int value, const wchar_t* file_path)
{
wchar_t buff[32];
swprintf_s(buff, L"%d", value);
WritePrivateProfileStringW(app_name, key_name, buff, file_path);
}
std::wstring LoadPrivateProfileString(const wchar_t* app_name, const wchar_t* key_name, const wchar_t* default_value, const wchar_t* file_path)
{
wchar_t buff[4096];
DWORD len = GetPrivateProfileStringW(app_name, key_name, default_value, buff, 4096, file_path);
return std::wstring(buff, len);
}
} // namespace
CDataManager::CDataManager()
{
InitializeCriticalSection(&m_lock);
}
CDataManager::~CDataManager()
{
SaveConfig();
DeleteCriticalSection(&m_lock);
}
CDataManager& CDataManager::Instance()
{
return m_instance;
}
void CDataManager::LoadConfig(const std::wstring& config_dir)
{
// Config file is placed in the main program's plugin config directory.
if (!config_dir.empty())
m_config_path = config_dir + L"OpenCodeGoUsage.ini";
else
m_config_path = L"OpenCodeGoUsage.ini";
m_setting_data.api_key = LoadPrivateProfileString(L"config", L"api_key", L"", m_config_path.c_str());
m_setting_data.refresh_interval_seconds = GetPrivateProfileIntW(L"config", L"refresh_seconds", 60, m_config_path.c_str());
m_setting_data.show_reset_time = GetPrivateProfileIntW(L"config", L"show_reset_time", 1, m_config_path.c_str()) != 0;
}
void CDataManager::SaveConfig() const
{
WritePrivateProfileStringW(L"config", L"api_key", m_setting_data.api_key.c_str(), m_config_path.c_str());
WritePrivateProfileInt(L"config", L"refresh_seconds", m_setting_data.refresh_interval_seconds, m_config_path.c_str());
WritePrivateProfileInt(L"config", L"show_reset_time", m_setting_data.show_reset_time ? 1 : 0, m_config_path.c_str());
}
void CDataManager::SetUsage(const OpenCodeGoUsage& usage)
{
EnterCriticalSection(&m_lock);
m_rolling_percent = usage.rolling.percent;
m_weekly_percent = usage.weekly.percent;
m_monthly_percent = usage.monthly.percent;
m_rolling_reset = usage.rolling.resets_at;
m_weekly_reset = usage.weekly.resets_at;
m_monthly_reset = usage.monthly.resets_at;
m_has_usage = usage.has_usage;
m_error.clear();
LeaveCriticalSection(&m_lock);
}
void CDataManager::SetErrorMessage(const std::wstring& message)
{
EnterCriticalSection(&m_lock);
m_error = message;
m_has_usage = false;
LeaveCriticalSection(&m_lock);
}
void CDataManager::ClearError()
{
EnterCriticalSection(&m_lock);
m_error.clear();
LeaveCriticalSection(&m_lock);
}
const wchar_t* CDataManager::GetDisplayLabel(DisplayWindow w) const
{
const size_t slot = static_cast<size_t>(w);
EnterCriticalSection(&m_lock);
if (w == DisplayWindow::Reset)
{
m_label_buffer[slot] = StringRes(IDS_LABEL_AI_RESET);
}
else
{
m_label_buffer[slot] = StringRes(IDS_LABEL_AI_USAGE);
m_label_buffer[slot] += L" (";
m_label_buffer[slot] += DisplayWindowShortLabel(w);
m_label_buffer[slot] += L"):";
}
LeaveCriticalSection(&m_lock);
return m_label_buffer[slot].c_str();
}
const wchar_t* CDataManager::GetDisplayValue(DisplayWindow w) const
{
const size_t slot = static_cast<size_t>(w);
EnterCriticalSection(&m_lock);
if (w == DisplayWindow::Reset)
{
// Combined next-reset row: "1h • 3d • 12d" (Rolling • Weekly • Monthly).
std::wstring combined;
combined += FormatResetCountdown(m_rolling_reset);
combined += L" \x2022 ";
combined += FormatResetCountdown(m_weekly_reset);
combined += L" \x2022 ";
combined += FormatResetCountdown(m_monthly_reset);
m_value_buffer[slot] = std::move(combined);
LeaveCriticalSection(&m_lock);
return m_value_buffer[slot].c_str();
}
int percent = -1;
std::wstring reset;
switch (w)
{
case DisplayWindow::Weekly: percent = m_weekly_percent; reset = m_weekly_reset; break;
case DisplayWindow::Monthly: percent = m_monthly_percent; reset = m_monthly_reset; break;
default: percent = m_rolling_percent; reset = m_rolling_reset; break;
}
if (percent >= 0)
{
// We have a cached value for this window — show it. On a later failed
// refresh this is the last "known good" value (graceful degradation):
// e.g. "2% (4h)" instead of nothing or a broken "% (4h)".
std::wstring value = FormatWindowValue(percent, reset, m_setting_data.show_reset_time);
m_value_buffer[slot] = std::move(value);
}
else
{
// This window has never produced a value (e.g. no API key, or the API
// has never returned data): show a plain "-".
m_value_buffer[slot] = L"-";
}
LeaveCriticalSection(&m_lock);
return m_value_buffer[slot].c_str();
}
std::wstring CDataManager::GetError() const
{
EnterCriticalSection(&m_lock);
std::wstring err = m_error;
LeaveCriticalSection(&m_lock);
return err;
}
bool CDataManager::HasApiKey() const
{
return !m_setting_data.api_key.empty();
}
/// Returns the graph value (0..1) for one window. Returns -1 when no usage is
/// available (the main program should skip the graph).
float CDataManager::GetGraphValue(DisplayWindow w) const
{
EnterCriticalSection(&m_lock);
int percent = -1;
switch (w)
{
case DisplayWindow::Weekly: percent = m_weekly_percent; break;
case DisplayWindow::Monthly: percent = m_monthly_percent; break;
case DisplayWindow::Reset: percent = -1; break;
default: percent = m_rolling_percent; break;
}
LeaveCriticalSection(&m_lock);
if (w == DisplayWindow::Reset || !m_has_usage || percent < 0)
return -1.0f;
return static_cast<float>(percent) / 100.0f;
}
const wchar_t* CDataManager::StringRes(UINT id) const
{
{
auto iter = m_string_table.find(id);
if (iter != m_string_table.end())
return iter->second.c_str();
}
// Not cached yet — load from this DLL's resources.
wchar_t buff[512];
int len = LoadStringW(GetPluginModuleHandle(), id, buff, 512);
std::wstring& slot = m_string_table[id];
if (len > 0)
slot.assign(buff, static_cast<size_t>(len));
return slot.c_str();
}