mirror of
https://github.com/fastfetch-cli/fastfetch.git
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313 lines
12 KiB
C
313 lines
12 KiB
C
#include "common/printing.h"
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#include "common/jsonconfig.h"
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#include "common/percent.h"
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#include "common/parsing.h"
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#include "common/temps.h"
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#include "detection/battery/battery.h"
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#include "modules/battery/battery.h"
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#include "util/stringUtils.h"
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static void printBattery(FFBatteryOptions* options, FFBatteryResult* result, uint8_t index)
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{
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FF_STRBUF_AUTO_DESTROY key = ffStrbufCreate();
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if (options->moduleArgs.key.length == 0)
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{
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if (result->modelName.length > 0)
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ffStrbufSetF(&key, "%s (%s)", FF_BATTERY_MODULE_NAME, result->modelName.chars);
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else
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ffStrbufSetS(&key, FF_BATTERY_MODULE_NAME);
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}
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else
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{
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ffStrbufClear(&key);
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FF_PARSE_FORMAT_STRING_CHECKED(&key, &options->moduleArgs.key, ((FFformatarg[]) {
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FF_FORMAT_ARG(index, "index"),
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FF_FORMAT_ARG(result->modelName, "name"),
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FF_FORMAT_ARG(options->moduleArgs.keyIcon, "icon"),
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}));
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}
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FFPercentageTypeFlags percentType = options->percent.type == 0 ? instance.config.display.percentType : options->percent.type;
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if(options->moduleArgs.outputFormat.length == 0)
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{
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ffPrintLogoAndKey(key.chars, 0, &options->moduleArgs, FF_PRINT_TYPE_NO_CUSTOM_KEY);
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FF_STRBUF_AUTO_DESTROY str = ffStrbufCreate();
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bool showStatus =
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!(percentType & FF_PERCENTAGE_TYPE_HIDE_OTHERS_BIT) &&
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result->status.length > 0 &&
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ffStrbufIgnCaseCompS(&result->status, "Unknown") != 0;
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if(result->capacity >= 0)
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{
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if(percentType & FF_PERCENTAGE_TYPE_BAR_BIT)
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{
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ffPercentAppendBar(&str, result->capacity, options->percent, &options->moduleArgs);
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}
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if(percentType & FF_PERCENTAGE_TYPE_NUM_BIT)
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{
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if(str.length > 0)
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ffStrbufAppendC(&str, ' ');
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ffPercentAppendNum(&str, result->capacity, options->percent, str.length > 0, &options->moduleArgs);
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}
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if(result->timeRemaining > 0)
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{
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if(str.length > 0)
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ffStrbufAppendS(&str, " (");
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ffParseDuration((uint32_t) result->timeRemaining, &str);
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ffStrbufAppendS(&str, " remaining)");
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}
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}
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if(showStatus)
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{
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if(str.length > 0)
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ffStrbufAppendF(&str, " [%s]", result->status.chars);
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else
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ffStrbufAppend(&str, &result->status);
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}
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if(result->temperature == result->temperature) //FF_BATTERY_TEMP_UNSET
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{
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if(str.length > 0)
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ffStrbufAppendS(&str, " - ");
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ffTempsAppendNum(result->temperature, &str, options->tempConfig, &options->moduleArgs);
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}
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ffStrbufPutTo(&str, stdout);
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}
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else
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{
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uint32_t timeRemaining = result->timeRemaining < 0 ? 0 : (uint32_t) result->timeRemaining;
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uint32_t seconds = timeRemaining % 60;
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timeRemaining /= 60;
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uint32_t minutes = timeRemaining % 60;
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timeRemaining /= 60;
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uint32_t hours = timeRemaining % 24;
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timeRemaining /= 24;
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uint32_t days = timeRemaining;
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FF_STRBUF_AUTO_DESTROY capacityNum = ffStrbufCreate();
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if(percentType & FF_PERCENTAGE_TYPE_NUM_BIT)
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ffPercentAppendNum(&capacityNum, result->capacity, options->percent, false, &options->moduleArgs);
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FF_STRBUF_AUTO_DESTROY capacityBar = ffStrbufCreate();
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if(percentType & FF_PERCENTAGE_TYPE_BAR_BIT)
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ffPercentAppendBar(&capacityBar, result->capacity, options->percent, &options->moduleArgs);
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FF_STRBUF_AUTO_DESTROY tempStr = ffStrbufCreate();
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ffTempsAppendNum(result->temperature, &tempStr, options->tempConfig, &options->moduleArgs);
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FF_PRINT_FORMAT_CHECKED(key.chars, 0, &options->moduleArgs, FF_PRINT_TYPE_NO_CUSTOM_KEY, ((FFformatarg[]) {
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FF_FORMAT_ARG(result->manufacturer, "manufacturer"),
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FF_FORMAT_ARG(result->modelName, "model-name"),
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FF_FORMAT_ARG(result->technology, "technology"),
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FF_FORMAT_ARG(capacityNum, "capacity"),
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FF_FORMAT_ARG(result->status, "status"),
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FF_FORMAT_ARG(tempStr, "temperature"),
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FF_FORMAT_ARG(result->cycleCount, "cycle-count"),
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FF_FORMAT_ARG(result->serial, "serial"),
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FF_FORMAT_ARG(result->manufactureDate, "manufacture-date"),
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FF_FORMAT_ARG(capacityBar, "capacity-bar"),
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FF_FORMAT_ARG(days, "time-days"),
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FF_FORMAT_ARG(hours, "time-hours"),
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FF_FORMAT_ARG(minutes, "time-minutes"),
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FF_FORMAT_ARG(seconds, "time-seconds"),
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}));
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}
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}
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void ffPrintBattery(FFBatteryOptions* options)
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{
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FF_LIST_AUTO_DESTROY results = ffListCreate(sizeof(FFBatteryResult));
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const char* error = ffDetectBattery(options, &results);
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if (error)
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{
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ffPrintError(FF_BATTERY_MODULE_NAME, 0, &options->moduleArgs, FF_PRINT_TYPE_DEFAULT, "%s", error);
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return;
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}
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if(results.length == 0)
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{
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ffPrintError(FF_BATTERY_MODULE_NAME, 0, &options->moduleArgs, FF_PRINT_TYPE_DEFAULT, "%s", "No batteries found");
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return;
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}
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for(uint32_t i = 0; i < results.length; i++)
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{
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FFBatteryResult* result = FF_LIST_GET(FFBatteryResult, results, i);
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printBattery(options, result, results.length == 1 ? 0 : (uint8_t) (i + 1));
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}
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FF_LIST_FOR_EACH(FFBatteryResult, result, results)
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{
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ffStrbufDestroy(&result->manufacturer);
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ffStrbufDestroy(&result->modelName);
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ffStrbufDestroy(&result->technology);
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ffStrbufDestroy(&result->status);
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ffStrbufDestroy(&result->serial);
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ffStrbufDestroy(&result->manufactureDate);
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}
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}
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bool ffParseBatteryCommandOptions(FFBatteryOptions* options, const char* key, const char* value)
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{
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const char* subKey = ffOptionTestPrefix(key, FF_BATTERY_MODULE_NAME);
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if (!subKey) return false;
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if (ffOptionParseModuleArgs(key, subKey, value, &options->moduleArgs))
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return true;
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if (ffTempsParseCommandOptions(key, subKey, value, &options->temp, &options->tempConfig))
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return true;
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#ifdef _WIN32
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if (ffStrEqualsIgnCase(subKey, "use-setup-api"))
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{
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options->useSetupApi = ffOptionParseBoolean(value);
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return true;
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}
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#endif
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if (ffPercentParseCommandOptions(key, subKey, value, &options->percent))
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return true;
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return false;
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}
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void ffParseBatteryJsonObject(FFBatteryOptions* options, yyjson_val* module)
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{
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yyjson_val *key_, *val;
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size_t idx, max;
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yyjson_obj_foreach(module, idx, max, key_, val)
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{
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const char* key = yyjson_get_str(key_);
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if(ffStrEqualsIgnCase(key, "type") || ffStrEqualsIgnCase(key, "condition"))
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continue;
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if (ffJsonConfigParseModuleArgs(key, val, &options->moduleArgs))
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continue;
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#ifdef _WIN32
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if (ffStrEqualsIgnCase(key, "useSetupApi"))
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{
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options->useSetupApi = yyjson_get_bool(val);
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continue;
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}
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#endif
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if (ffTempsParseJsonObject(key, val, &options->temp, &options->tempConfig))
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continue;
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if (ffPercentParseJsonObject(key, val, &options->percent))
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continue;
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ffPrintError(FF_BATTERY_MODULE_NAME, 0, &options->moduleArgs, FF_PRINT_TYPE_DEFAULT, "Unknown JSON key %s", key);
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}
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}
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void ffGenerateBatteryJsonConfig(FFBatteryOptions* options, yyjson_mut_doc* doc, yyjson_mut_val* module)
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{
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__attribute__((__cleanup__(ffDestroyBatteryOptions))) FFBatteryOptions defaultOptions;
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ffInitBatteryOptions(&defaultOptions);
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ffJsonConfigGenerateModuleArgsConfig(doc, module, &defaultOptions.moduleArgs, &options->moduleArgs);
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#ifdef _WIN32
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if (defaultOptions.useSetupApi != options->useSetupApi)
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yyjson_mut_obj_add_bool(doc, module, "useSetupApi", options->useSetupApi);
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#endif
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ffTempsGenerateJsonConfig(doc, module, defaultOptions.temp, defaultOptions.tempConfig, options->temp, options->tempConfig);
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ffPercentGenerateJsonConfig(doc, module, defaultOptions.percent, options->percent);
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}
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void ffGenerateBatteryJsonResult(FFBatteryOptions* options, yyjson_mut_doc* doc, yyjson_mut_val* module)
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{
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FF_LIST_AUTO_DESTROY results = ffListCreate(sizeof(FFBatteryResult));
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const char* error = ffDetectBattery(options, &results);
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if (error)
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{
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yyjson_mut_obj_add_str(doc, module, "error", error);
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return;
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}
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yyjson_mut_val* arr = yyjson_mut_obj_add_arr(doc, module, "result");
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FF_LIST_FOR_EACH(FFBatteryResult, battery, results)
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{
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yyjson_mut_val* obj = yyjson_mut_arr_add_obj(doc, arr);
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yyjson_mut_obj_add_real(doc, obj, "capacity", battery->capacity);
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yyjson_mut_obj_add_strbuf(doc, obj, "manufacturer", &battery->manufacturer);
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yyjson_mut_obj_add_strbuf(doc, obj, "manufactureDate", &battery->manufactureDate);
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yyjson_mut_obj_add_strbuf(doc, obj, "modelName", &battery->modelName);
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yyjson_mut_obj_add_strbuf(doc, obj, "status", &battery->status);
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yyjson_mut_obj_add_strbuf(doc, obj, "technology", &battery->technology);
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yyjson_mut_obj_add_strbuf(doc, obj, "serial", &battery->serial);
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yyjson_mut_obj_add_real(doc, obj, "temperature", battery->temperature);
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yyjson_mut_obj_add_uint(doc, obj, "cycleCount", battery->cycleCount);
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if (battery->timeRemaining > 0)
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yyjson_mut_obj_add_int(doc, obj, "timeRemaining", battery->timeRemaining);
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}
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FF_LIST_FOR_EACH(FFBatteryResult, battery, results)
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{
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ffStrbufDestroy(&battery->manufacturer);
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ffStrbufDestroy(&battery->manufactureDate);
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ffStrbufDestroy(&battery->modelName);
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ffStrbufDestroy(&battery->technology);
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ffStrbufDestroy(&battery->status);
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ffStrbufDestroy(&battery->serial);
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}
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}
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static FFModuleBaseInfo ffModuleInfo = {
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.name = FF_BATTERY_MODULE_NAME,
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.description = "Print battery capacity, status, etc",
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.parseCommandOptions = (void*) ffParseBatteryCommandOptions,
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.parseJsonObject = (void*) ffParseBatteryJsonObject,
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.printModule = (void*) ffPrintBattery,
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.generateJsonResult = (void*) ffGenerateBatteryJsonResult,
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.generateJsonConfig = (void*) ffGenerateBatteryJsonConfig,
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.formatArgs = FF_FORMAT_ARG_LIST(((FFModuleFormatArg[]) {
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{"Battery manufacturer", "manufacturer"},
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{"Battery model name", "model-name"},
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{"Battery technology", "technology"},
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{"Battery capacity (percentage num)", "capacity"},
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{"Battery status", "status"},
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{"Battery temperature (formatted)", "temperature"},
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{"Battery cycle count", "cycle-count"},
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{"Battery serial number", "serial"},
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{"Battery manufactor date", "manufacture-date"},
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{"Battery capacity (percentage bar)", "capacity-bar"},
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{"Battery time remaining days", "time-days"},
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{"Battery time remaining hours", "time-hours"},
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{"Battery time remaining minutes", "time-minutes"},
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{"Battery time remaining seconds", "time-seconds"},
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}))
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};
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void ffInitBatteryOptions(FFBatteryOptions* options)
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{
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options->moduleInfo = ffModuleInfo;
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ffOptionInitModuleArg(&options->moduleArgs, "");
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options->temp = false;
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options->tempConfig = (FFColorRangeConfig) { 60, 80 };
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options->percent = (FFPercentageModuleConfig) { 50, 20, 0 };
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#ifdef _WIN32
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options->useSetupApi = false;
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#endif
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}
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void ffDestroyBatteryOptions(FFBatteryOptions* options)
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{
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ffOptionDestroyModuleArg(&options->moduleArgs);
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}
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