Files
fastfetch/src/modules/gpu/gpu.c
T
李通洲 f8be6322df GPU: rename use-nvml to driver-specific
Because we are supporting drivers other than NVML
2023-12-20 15:32:55 +08:00

367 lines
12 KiB
C

#include "common/bar.h"
#include "common/parsing.h"
#include "common/printing.h"
#include "common/jsonconfig.h"
#include "detection/host/host.h"
#include "detection/gpu/gpu.h"
#include "modules/gpu/gpu.h"
#include "util/stringUtils.h"
#include <stdlib.h>
#define FF_GPU_NUM_FORMAT_ARGS 11
static void printGPUResult(FFGPUOptions* options, uint8_t index, const FFGPUResult* gpu)
{
const char* type;
switch (gpu->type)
{
case FF_GPU_TYPE_INTEGRATED: type = "Integrated"; break;
case FF_GPU_TYPE_DISCRETE: type = "Discrete"; break;
default: type = "Unknown"; break;
}
if(options->moduleArgs.outputFormat.length == 0)
{
ffPrintLogoAndKey(FF_GPU_MODULE_NAME, index, &options->moduleArgs, FF_PRINT_TYPE_DEFAULT);
FF_STRBUF_AUTO_DESTROY output = ffStrbufCreateA(gpu->vendor.length + 1 + gpu->name.length);
if(gpu->vendor.length > 0 && !ffStrbufStartsWith(&gpu->name, &gpu->vendor))
{
ffStrbufAppend(&output, &gpu->vendor);
ffStrbufAppendC(&output, ' ');
}
ffStrbufAppend(&output, &gpu->name);
if(gpu->coreCount != FF_GPU_CORE_COUNT_UNSET)
ffStrbufAppendF(&output, " (%d)", gpu->coreCount);
if(gpu->frequency != FF_GPU_FREQUENCY_UNSET)
ffStrbufAppendF(&output, " @ %.2f MHz", gpu->frequency / 1e6);
if(gpu->temperature == gpu->temperature) //FF_GPU_TEMP_UNSET
{
ffStrbufAppendS(&output, " - ");
ffParseTemperature(gpu->temperature, &output);
}
if(gpu->dedicated.total != FF_GPU_VMEM_SIZE_UNSET && gpu->dedicated.total != 0)
{
ffStrbufAppendS(&output, " (");
if(gpu->dedicated.used != FF_GPU_VMEM_SIZE_UNSET)
{
ffParseSize(gpu->dedicated.used, &output);
ffStrbufAppendS(&output, " / ");
}
ffParseSize(gpu->dedicated.total, &output);
if(gpu->dedicated.used != FF_GPU_VMEM_SIZE_UNSET)
{
ffStrbufAppendS(&output, ", ");
ffAppendPercentNum(&output, (double) gpu->dedicated.used / (double) gpu->dedicated.total * 100.0, 50, 80, false);
}
ffStrbufAppendC(&output, ')');
}
if (gpu->type != FF_GPU_TYPE_UNKNOWN)
ffStrbufAppendF(&output, " [%s]", type);
ffStrbufPutTo(&output, stdout);
}
else
{
ffPrintFormat(FF_GPU_MODULE_NAME, index, &options->moduleArgs, FF_GPU_NUM_FORMAT_ARGS, (FFformatarg[]){
{FF_FORMAT_ARG_TYPE_STRBUF, &gpu->vendor},
{FF_FORMAT_ARG_TYPE_STRBUF, &gpu->name},
{FF_FORMAT_ARG_TYPE_STRBUF, &gpu->driver},
{FF_FORMAT_ARG_TYPE_DOUBLE, &gpu->temperature},
{FF_FORMAT_ARG_TYPE_INT, &gpu->coreCount},
{FF_FORMAT_ARG_TYPE_STRING, type},
{FF_FORMAT_ARG_TYPE_UINT64, &gpu->dedicated.total},
{FF_FORMAT_ARG_TYPE_UINT64, &gpu->dedicated.used},
{FF_FORMAT_ARG_TYPE_UINT64, &gpu->shared.total},
{FF_FORMAT_ARG_TYPE_UINT64, &gpu->shared.used},
{FF_FORMAT_ARG_TYPE_UINT, &gpu->frequency},
});
}
}
void ffPrintGPU(FFGPUOptions* options)
{
FF_LIST_AUTO_DESTROY gpus = ffListCreate(sizeof (FFGPUResult));
const char* error = ffDetectGPU(options, &gpus);
if (error)
{
ffPrintError(FF_GPU_MODULE_NAME, 0, &options->moduleArgs, "%s", error);
return;
}
FF_LIST_AUTO_DESTROY selectedGPUs;
ffListInitA(&selectedGPUs, sizeof(const FFGPUResult*), gpus.length);
FF_LIST_FOR_EACH(FFGPUResult, gpu, gpus)
{
if(gpu->type == FF_GPU_TYPE_INTEGRATED && options->hideType == FF_GPU_TYPE_INTEGRATED)
continue;
if(gpu->type == FF_GPU_TYPE_DISCRETE && options->hideType == FF_GPU_TYPE_DISCRETE)
continue;
* (const FFGPUResult**) ffListAdd(&selectedGPUs) = gpu;
}
for(uint32_t i = 0; i < selectedGPUs.length; i++)
printGPUResult(options, selectedGPUs.length == 1 ? 0 : (uint8_t) (i + 1), * (const FFGPUResult**) ffListGet(&selectedGPUs, i));
if(selectedGPUs.length == 0)
ffPrintError(FF_GPU_MODULE_NAME, 0, &options->moduleArgs, "No GPUs found");
FF_LIST_FOR_EACH(FFGPUResult, gpu, gpus)
{
ffStrbufDestroy(&gpu->vendor);
ffStrbufDestroy(&gpu->name);
ffStrbufDestroy(&gpu->driver);
}
}
bool ffParseGPUCommandOptions(FFGPUOptions* options, const char* key, const char* value)
{
const char* subKey = ffOptionTestPrefix(key, FF_GPU_MODULE_NAME);
if (!subKey) return false;
if (ffOptionParseModuleArgs(key, subKey, value, &options->moduleArgs))
return true;
if (ffStrEqualsIgnCase(subKey, "driver-specific"))
{
options->driverSpecific = ffOptionParseBoolean(value);
return true;
}
if (ffStrEqualsIgnCase(subKey, "force-vulkan"))
{
options->forceVulkan = ffOptionParseBoolean(value);
return true;
}
if (ffStrEqualsIgnCase(subKey, "temp"))
{
options->temp = ffOptionParseBoolean(value);
return true;
}
if (ffStrEqualsIgnCase(subKey, "hide-type"))
{
options->hideType = (FFGPUType) ffOptionParseEnum(key, value, (FFKeyValuePair[]) {
{ "none", FF_GPU_TYPE_UNKNOWN },
{ "integrated", FF_GPU_TYPE_INTEGRATED },
{ "discrete", FF_GPU_TYPE_DISCRETE },
{},
});
}
return false;
}
void ffParseGPUJsonObject(FFGPUOptions* options, yyjson_val* module)
{
yyjson_val *key_, *val;
size_t idx, max;
yyjson_obj_foreach(module, idx, max, key_, val)
{
const char* key = yyjson_get_str(key_);
if(ffStrEqualsIgnCase(key, "type"))
continue;
if (ffJsonConfigParseModuleArgs(key, val, &options->moduleArgs))
continue;
if (ffStrEqualsIgnCase(key, "temp"))
{
options->temp = yyjson_get_bool(val);
continue;
}
if (ffStrEqualsIgnCase(key, "driverSpecific"))
{
options->driverSpecific = yyjson_get_bool(val);
continue;
}
if (ffStrEqualsIgnCase(key, "forceVulkan"))
{
options->forceVulkan = yyjson_get_bool(val);
continue;
}
if (ffStrEqualsIgnCase(key, "hideType"))
{
int value;
const char* error = ffJsonConfigParseEnum(val, &value, (FFKeyValuePair[]) {
{ "none", FF_GPU_TYPE_UNKNOWN },
{ "integrated", FF_GPU_TYPE_INTEGRATED },
{ "discrete", FF_GPU_TYPE_DISCRETE },
{},
});
if (error)
ffPrintError(FF_GPU_MODULE_NAME, 0, &options->moduleArgs, "Invalid %s value: %s", key, error);
else
options->hideType = (FFGPUType) value;
continue;
}
ffPrintError(FF_GPU_MODULE_NAME, 0, &options->moduleArgs, "Unknown JSON key %s", key);
}
}
void ffGenerateGPUJsonConfig(FFGPUOptions* options, yyjson_mut_doc* doc, yyjson_mut_val* module)
{
__attribute__((__cleanup__(ffDestroyGPUOptions))) FFGPUOptions defaultOptions;
ffInitGPUOptions(&defaultOptions);
ffJsonConfigGenerateModuleArgsConfig(doc, module, &defaultOptions.moduleArgs, &options->moduleArgs);
if (options->driverSpecific != defaultOptions.driverSpecific)
yyjson_mut_obj_add_bool(doc, module, "driverSpecific", options->driverSpecific);
if (options->forceVulkan != defaultOptions.forceVulkan)
yyjson_mut_obj_add_bool(doc, module, "forceVulkan", options->forceVulkan);
if (options->temp != defaultOptions.temp)
yyjson_mut_obj_add_bool(doc, module, "temp", options->temp);
if (options->hideType != defaultOptions.hideType)
{
switch (options->hideType)
{
case FF_GPU_TYPE_UNKNOWN:
yyjson_mut_obj_add_str(doc, module, "hideType", "none");
break;
case FF_GPU_TYPE_INTEGRATED:
yyjson_mut_obj_add_str(doc, module, "hideType", "integrated");
break;
case FF_GPU_TYPE_DISCRETE:
yyjson_mut_obj_add_str(doc, module, "hideType", "discrete");
break;
}
}
}
void ffGenerateGPUJsonResult(FFGPUOptions* options, yyjson_mut_doc* doc, yyjson_mut_val* module)
{
FF_LIST_AUTO_DESTROY gpus = ffListCreate(sizeof (FFGPUResult));
const char* error = ffDetectGPU(options, &gpus);
if (error)
{
yyjson_mut_obj_add_str(doc, module, "error", error);
return;
}
yyjson_mut_val* arr = yyjson_mut_obj_add_arr(doc, module, "result");
FF_LIST_FOR_EACH(FFGPUResult, gpu, gpus)
{
yyjson_mut_val* obj = yyjson_mut_arr_add_obj(doc, arr);
if (gpu->coreCount != FF_GPU_CORE_COUNT_UNSET)
yyjson_mut_obj_add_int(doc, obj, "coreCount", gpu->coreCount);
else
yyjson_mut_obj_add_null(doc, obj, "coreCount");
yyjson_mut_val* memoryObj = yyjson_mut_obj_add_obj(doc, obj, "memory");
yyjson_mut_val* dedicatedObj = yyjson_mut_obj_add_obj(doc, memoryObj, "dedicated");
if (gpu->dedicated.total != FF_GPU_VMEM_SIZE_UNSET)
yyjson_mut_obj_add_uint(doc, dedicatedObj, "total", gpu->dedicated.total);
else
yyjson_mut_obj_add_null(doc, dedicatedObj, "total");
if (gpu->dedicated.used != FF_GPU_VMEM_SIZE_UNSET)
yyjson_mut_obj_add_uint(doc, dedicatedObj, "used", gpu->dedicated.used);
else
yyjson_mut_obj_add_null(doc, dedicatedObj, "used");
yyjson_mut_obj_add_strbuf(doc, obj, "driver", &gpu->driver);
yyjson_mut_obj_add_strbuf(doc, obj, "name", &gpu->name);
yyjson_mut_val* sharedObj = yyjson_mut_obj_add_obj(doc, memoryObj, "shared");
if (gpu->shared.total != FF_GPU_VMEM_SIZE_UNSET)
yyjson_mut_obj_add_uint(doc, sharedObj, "total", gpu->shared.total);
else
yyjson_mut_obj_add_null(doc, sharedObj, "total");
if (gpu->shared.used != FF_GPU_VMEM_SIZE_UNSET)
yyjson_mut_obj_add_uint(doc, sharedObj, "used", gpu->shared.used);
else
yyjson_mut_obj_add_null(doc, sharedObj, "used");
if(gpu->temperature == gpu->temperature) //FF_GPU_TEMP_UNSET
yyjson_mut_obj_add_real(doc, obj, "temperature", gpu->temperature);
else
yyjson_mut_obj_add_null(doc, obj, "temperature");
const char* type;
switch (gpu->type)
{
case FF_GPU_TYPE_INTEGRATED: type = "Integrated"; break;
case FF_GPU_TYPE_DISCRETE: type = "Discrete"; break;
default: type = "Unknown"; break;
}
yyjson_mut_obj_add_str(doc, obj, "type", type);
yyjson_mut_obj_add_strbuf(doc, obj, "vendor", &gpu->vendor);
if (gpu->frequency == FF_GPU_FREQUENCY_UNSET)
yyjson_mut_obj_add_null(doc, obj, "frequency");
else
yyjson_mut_obj_add_uint(doc, obj, "frequency", gpu->frequency);
}
FF_LIST_FOR_EACH(FFGPUResult, gpu, gpus)
{
ffStrbufDestroy(&gpu->vendor);
ffStrbufDestroy(&gpu->name);
ffStrbufDestroy(&gpu->driver);
}
}
void ffPrintGPUHelpFormat(void)
{
ffPrintModuleFormatHelp(FF_GPU_MODULE_NAME, "{1} {2}", FF_GPU_NUM_FORMAT_ARGS, (const char* []) {
"GPU vendor",
"GPU name",
"GPU driver",
"GPU temperature",
"GPU core count",
"GPU type",
"GPU total dedicated memory",
"GPU used dedicated memory",
"GPU total shared memory",
"GPU used shared memory",
});
}
void ffInitGPUOptions(FFGPUOptions* options)
{
ffOptionInitModuleBaseInfo(
&options->moduleInfo,
FF_GPU_MODULE_NAME,
"Print GPU names, graphic memory size, type, etc",
ffParseGPUCommandOptions,
ffParseGPUJsonObject,
ffPrintGPU,
ffGenerateGPUJsonResult,
ffPrintGPUHelpFormat,
ffGenerateGPUJsonConfig
);
ffOptionInitModuleArg(&options->moduleArgs);
options->driverSpecific = false;
options->forceVulkan = false;
options->temp = false;
options->hideType = FF_GPU_TYPE_UNKNOWN;
}
void ffDestroyGPUOptions(FFGPUOptions* options)
{
ffOptionDestroyModuleArg(&options->moduleArgs);
}