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fastfetch/src/modules/cpu/cpu.c
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#include "common/printing.h"
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#include "common/jsonconfig.h"
#include "common/parsing.h"
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#include "detection/cpu/cpu.h"
#include "modules/cpu/cpu.h"
#include "util/stringUtils.h"
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#define FF_CPU_NUM_FORMAT_ARGS 8
void ffPrintCPU(FFCPUOptions* options)
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{
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FFCPUResult cpu;
cpu.temperature = FF_CPU_TEMP_UNSET;
cpu.coresPhysical = cpu.coresLogical = cpu.coresOnline = 0;
cpu.frequencyMax = cpu.frequencyMin = 0;
ffStrbufInit(&cpu.name);
ffStrbufInit(&cpu.vendor);
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const char* error = ffDetectCPU(options, &cpu);
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if(error)
{
ffPrintError(FF_CPU_MODULE_NAME, 0, &options->moduleArgs, "%s", error);
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}
else if(cpu.vendor.length == 0 && cpu.name.length == 0 && cpu.coresOnline <= 1)
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{
ffPrintError(FF_CPU_MODULE_NAME, 0, &options->moduleArgs, "No CPU detected");
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}
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else
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{
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if(options->moduleArgs.outputFormat.length == 0)
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{
ffPrintLogoAndKey(FF_CPU_MODULE_NAME, 0, &options->moduleArgs, FF_PRINT_TYPE_DEFAULT);
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FF_STRBUF_AUTO_DESTROY str = ffStrbufCreate();
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if(cpu.name.length > 0)
ffStrbufAppend(&str, &cpu.name);
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else if(cpu.vendor.length > 0)
{
ffStrbufAppend(&str, &cpu.vendor);
ffStrbufAppendS(&str, " CPU");
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}
else
ffStrbufAppendS(&str, "Unknown");
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if(cpu.coresOnline > 1)
ffStrbufAppendF(&str, " (%u)", cpu.coresOnline);
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if(cpu.frequencyMax > 0.0)
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ffStrbufAppendF(&str, " @ %.*f GHz", options->freqNdigits, cpu.frequencyMax);
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if(cpu.temperature == cpu.temperature) //FF_CPU_TEMP_UNSET
{
ffStrbufAppendS(&str, " - ");
ffParseTemperature(cpu.temperature, &str);
}
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ffStrbufPutTo(&str, stdout);
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}
else
{
ffPrintFormat(FF_CPU_MODULE_NAME, 0, &options->moduleArgs, FF_CPU_NUM_FORMAT_ARGS, (FFformatarg[]){
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{FF_FORMAT_ARG_TYPE_STRBUF, &cpu.name},
{FF_FORMAT_ARG_TYPE_STRBUF, &cpu.vendor},
{FF_FORMAT_ARG_TYPE_UINT16, &cpu.coresPhysical},
{FF_FORMAT_ARG_TYPE_UINT16, &cpu.coresLogical},
{FF_FORMAT_ARG_TYPE_UINT16, &cpu.coresOnline},
{FF_FORMAT_ARG_TYPE_DOUBLE, &cpu.frequencyMin},
{FF_FORMAT_ARG_TYPE_DOUBLE, &cpu.frequencyMax},
{FF_FORMAT_ARG_TYPE_DOUBLE, &cpu.temperature}
});
}
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}
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ffStrbufDestroy(&cpu.name);
ffStrbufDestroy(&cpu.vendor);
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}
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bool ffParseCPUCPUOptions(FFCPUOptions* options, const char* key, const char* value)
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{
const char* subKey = ffOptionTestPrefix(key, FF_CPU_MODULE_NAME);
if (!subKey) return false;
if (ffOptionParseModuleArgs(key, subKey, value, &options->moduleArgs))
return true;
if (ffStrEqualsIgnCase(subKey, "temp"))
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{
options->temp = ffOptionParseBoolean(value);
return true;
}
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if (ffStrEqualsIgnCase(subKey, "freq-ndigits"))
{
options->freqNdigits = (uint8_t) ffOptionParseUInt32(key, value);
return true;
}
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return false;
}
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void ffParseCPUJsonObject(FFCPUOptions* options, yyjson_val* module)
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{
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yyjson_val *key_, *val;
size_t idx, max;
yyjson_obj_foreach(module, idx, max, key_, val)
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{
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const char* key = yyjson_get_str(key_);
if(ffStrEqualsIgnCase(key, "type"))
continue;
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if (ffJsonConfigParseModuleArgs(key, val, &options->moduleArgs))
continue;
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if (ffStrEqualsIgnCase(key, "temp"))
{
options->temp = yyjson_get_bool(val);
continue;
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}
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if (ffStrEqualsIgnCase(key, "freqNdigits"))
{
options->freqNdigits = (uint8_t) yyjson_get_uint(val);
continue;
}
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ffPrintError(FF_CPU_MODULE_NAME, 0, &options->moduleArgs, "Unknown JSON key %s", key);
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}
}
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void ffGenerateCPUJsonConfig(FFCPUOptions* options, yyjson_mut_doc* doc, yyjson_mut_val* module)
{
__attribute__((__cleanup__(ffDestroyCPUOptions))) FFCPUOptions defaultOptions;
ffInitCPUOptions(&defaultOptions);
ffJsonConfigGenerateModuleArgsConfig(doc, module, &defaultOptions.moduleArgs, &options->moduleArgs);
if (defaultOptions.temp != options->temp)
yyjson_mut_obj_add_bool(doc, module, "temp", options->temp);
if (defaultOptions.freqNdigits != options->freqNdigits)
yyjson_mut_obj_add_uint(doc, module, "freqNdigits", options->freqNdigits);
}
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void ffGenerateCPUJsonResult(FFCPUOptions* options, yyjson_mut_doc* doc, yyjson_mut_val* module)
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{
FFCPUResult cpu;
cpu.temperature = FF_CPU_TEMP_UNSET;
cpu.coresPhysical = cpu.coresLogical = cpu.coresOnline = 0;
cpu.frequencyMax = cpu.frequencyMin = 0;
ffStrbufInit(&cpu.name);
ffStrbufInit(&cpu.vendor);
const char* error = ffDetectCPU(options, &cpu);
if(error)
{
yyjson_mut_obj_add_str(doc, module, "error", error);
}
else if(cpu.vendor.length == 0 && cpu.name.length == 0 && cpu.coresOnline <= 1)
{
yyjson_mut_obj_add_str(doc, module, "error", "No CPU detected");
}
else
{
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yyjson_mut_val* obj = yyjson_mut_obj_add_obj(doc, module, "result");
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yyjson_mut_obj_add_strbuf(doc, obj, "cpu", &cpu.name);
yyjson_mut_obj_add_strbuf(doc, obj, "vendor", &cpu.vendor);
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yyjson_mut_val* cores = yyjson_mut_obj_add_obj(doc, obj, "cores");
yyjson_mut_obj_add_uint(doc, cores, "physical", cpu.coresPhysical);
yyjson_mut_obj_add_uint(doc, cores, "logical", cpu.coresLogical);
yyjson_mut_obj_add_uint(doc, cores, "online", cpu.coresOnline);
yyjson_mut_val* frequency = yyjson_mut_obj_add_obj(doc, obj, "frequency");
yyjson_mut_obj_add_real(doc, frequency, "min", cpu.frequencyMin);
yyjson_mut_obj_add_real(doc, frequency, "max", cpu.frequencyMax);
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yyjson_mut_obj_add_real(doc, obj, "temperature", cpu.temperature);
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}
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ffStrbufDestroy(&cpu.name);
ffStrbufDestroy(&cpu.vendor);
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}
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void ffPrintCPUHelpFormat(void)
{
ffPrintModuleFormatHelp(FF_CPU_MODULE_NAME, "{1} ({5}) @ {7} GHz", FF_CPU_NUM_FORMAT_ARGS, (const char* []) {
"Name",
"Vendor",
"Physical core count",
"Logical core count",
"Online core count",
"Min frequency",
"Max frequency",
"Temperature"
});
}
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void ffInitCPUOptions(FFCPUOptions* options)
{
ffOptionInitModuleBaseInfo(
&options->moduleInfo,
FF_CPU_MODULE_NAME,
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ffParseCPUCPUOptions,
ffParseCPUJsonObject,
ffPrintCPU,
ffGenerateCPUJsonResult,
ffPrintCPUHelpFormat,
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ffGenerateCPUJsonConfig
);
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ffOptionInitModuleArg(&options->moduleArgs);
options->temp = false;
options->freqNdigits = 2;
}
void ffDestroyCPUOptions(FFCPUOptions* options)
{
ffOptionDestroyModuleArg(&options->moduleArgs);
}