05cd82ef94
Cleaning up go package naming
259 lines
7.9 KiB
C
259 lines
7.9 KiB
C
#ifndef __APPLE__
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#include "gpu_info_oneapi.h"
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#include <string.h>
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void oneapi_init(char *oneapi_lib_path, oneapi_init_resp_t *resp) {
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ze_result_t ret;
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resp->err = NULL;
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resp->oh.devices = NULL;
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resp->oh.num_devices = NULL;
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resp->oh.drivers = NULL;
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resp->oh.num_drivers = 0;
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const int buflen = 256;
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char buf[buflen + 1];
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int i, d;
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struct lookup {
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char *s;
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void **p;
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} l[] = {
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{"zesInit", (void *)&resp->oh.zesInit},
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{"zesDriverGet", (void *)&resp->oh.zesDriverGet},
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{"zesDeviceGet", (void *)&resp->oh.zesDeviceGet},
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{"zesDeviceGetProperties", (void *)&resp->oh.zesDeviceGetProperties},
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{"zesDeviceEnumMemoryModules",
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(void *)&resp->oh.zesDeviceEnumMemoryModules},
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{"zesMemoryGetProperties", (void *)&resp->oh.zesMemoryGetProperties},
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{"zesMemoryGetState", (void *)&resp->oh.zesMemoryGetState},
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{NULL, NULL},
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};
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resp->oh.handle = LOAD_LIBRARY(oneapi_lib_path, RTLD_LAZY);
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if (!resp->oh.handle) {
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char *msg = LOAD_ERR();
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snprintf(buf, buflen,
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"Unable to load %s library to query for Intel GPUs: %s\n",
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oneapi_lib_path, msg);
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free(msg);
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resp->err = strdup(buf);
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return;
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}
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// TODO once we've squashed the remaining corner cases remove this log
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LOG(resp->oh.verbose,
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"wiring Level-Zero management library functions in %s\n",
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oneapi_lib_path);
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for (i = 0; l[i].s != NULL; i++) {
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// TODO once we've squashed the remaining corner cases remove this log
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LOG(resp->oh.verbose, "dlsym: %s\n", l[i].s);
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*l[i].p = LOAD_SYMBOL(resp->oh.handle, l[i].s);
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if (!*(l[i].p)) {
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resp->oh.handle = NULL;
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char *msg = LOAD_ERR();
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LOG(resp->oh.verbose, "dlerr: %s\n", msg);
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UNLOAD_LIBRARY(resp->oh.handle);
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snprintf(buf, buflen, "symbol lookup for %s failed: %s", l[i].s, msg);
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free(msg);
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resp->err = strdup(buf);
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return;
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}
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}
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LOG(resp->oh.verbose, "calling zesInit\n");
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ret = (*resp->oh.zesInit)(0);
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if (ret != ZE_RESULT_SUCCESS) {
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LOG(resp->oh.verbose, "zesInit err: %x\n", ret);
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snprintf(buf, buflen, "oneapi vram init failure: %x", ret);
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resp->err = strdup(buf);
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oneapi_release(resp->oh);
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return;
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}
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LOG(resp->oh.verbose, "calling zesDriverGet\n");
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ret = (*resp->oh.zesDriverGet)(&resp->oh.num_drivers, NULL);
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if (ret != ZE_RESULT_SUCCESS) {
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LOG(resp->oh.verbose, "zesDriverGet err: %x\n", ret);
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snprintf(buf, buflen, "unable to get driver count: %x", ret);
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resp->err = strdup(buf);
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oneapi_release(resp->oh);
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return;
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}
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LOG(resp->oh.verbose, "oneapi driver count: %d\n", resp->oh.num_drivers);
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resp->oh.drivers = malloc(resp->oh.num_drivers * sizeof(zes_driver_handle_t));
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resp->oh.num_devices = malloc(resp->oh.num_drivers * sizeof(uint32_t));
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memset(&resp->oh.num_devices[0], 0, resp->oh.num_drivers * sizeof(uint32_t));
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resp->oh.devices =
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malloc(resp->oh.num_drivers * sizeof(zes_device_handle_t *));
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ret = (*resp->oh.zesDriverGet)(&resp->oh.num_drivers, &resp->oh.drivers[0]);
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if (ret != ZE_RESULT_SUCCESS) {
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LOG(resp->oh.verbose, "zesDriverGet err: %x\n", ret);
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snprintf(buf, buflen, "unable to get driver count: %x", ret);
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resp->err = strdup(buf);
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oneapi_release(resp->oh);
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return;
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}
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for (d = 0; d < resp->oh.num_drivers; d++) {
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LOG(resp->oh.verbose, "calling zesDeviceGet count %d: %p\n", d, resp->oh.drivers[d]);
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ret = (*resp->oh.zesDeviceGet)(resp->oh.drivers[d],
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&resp->oh.num_devices[d], NULL);
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if (ret != ZE_RESULT_SUCCESS) {
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LOG(resp->oh.verbose, "zesDeviceGet err: %x\n", ret);
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snprintf(buf, buflen, "unable to get device count: %x", ret);
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resp->err = strdup(buf);
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oneapi_release(resp->oh);
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return;
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}
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resp->oh.devices[d] =
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malloc(resp->oh.num_devices[d] * sizeof(zes_device_handle_t));
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ret = (*resp->oh.zesDeviceGet)(
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resp->oh.drivers[d], &resp->oh.num_devices[d], resp->oh.devices[d]);
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if (ret != ZE_RESULT_SUCCESS) {
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LOG(resp->oh.verbose, "zesDeviceGet err: %x\n", ret);
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snprintf(buf, buflen, "unable to get device count: %x", ret);
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resp->err = strdup(buf);
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oneapi_release(resp->oh);
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return;
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}
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}
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return;
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}
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void oneapi_check_vram(oneapi_handle_t h, int driver, int device,
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mem_info_t *resp) {
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ze_result_t ret;
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resp->err = NULL;
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uint64_t totalMem = 0;
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uint64_t usedMem = 0;
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const int buflen = 256;
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char buf[buflen + 1];
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int i, d, m;
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if (h.handle == NULL) {
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resp->err = strdup("Level-Zero handle not initialized");
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return;
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}
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if (driver > h.num_drivers || device > h.num_devices[driver]) {
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resp->err = strdup("driver of device index out of bounds");
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return;
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}
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resp->total = 0;
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resp->free = 0;
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zes_device_ext_properties_t ext_props;
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ext_props.stype = ZES_STRUCTURE_TYPE_DEVICE_EXT_PROPERTIES;
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ext_props.pNext = NULL;
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zes_device_properties_t props;
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props.stype = ZES_STRUCTURE_TYPE_DEVICE_PROPERTIES;
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props.pNext = &ext_props;
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ret = (*h.zesDeviceGetProperties)(h.devices[driver][device], &props);
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if (ret != ZE_RESULT_SUCCESS) {
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snprintf(buf, buflen, "unable to get device properties: %d", ret);
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resp->err = strdup(buf);
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return;
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}
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snprintf(&resp->gpu_name[0], GPU_NAME_LEN, "%s", props.modelName);
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// TODO this needs to map to ONEAPI_DEVICE_SELECTOR syntax
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// (this is probably wrong...)
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// TODO - the driver isn't included - what if there are multiple drivers?
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snprintf(&resp->gpu_id[0], GPU_ID_LEN, "%d", device);
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if (h.verbose) {
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// When in verbose mode, report more information about
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// the card we discover.
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LOG(h.verbose, "[%d:%d] oneAPI device name: %s\n", driver, device,
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props.modelName);
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LOG(h.verbose, "[%d:%d] oneAPI brand: %s\n", driver, device,
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props.brandName);
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LOG(h.verbose, "[%d:%d] oneAPI vendor: %s\n", driver, device,
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props.vendorName);
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LOG(h.verbose, "[%d:%d] oneAPI S/N: %s\n", driver, device,
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props.serialNumber);
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LOG(h.verbose, "[%d:%d] oneAPI board number: %s\n", driver, device,
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props.boardNumber);
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}
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// TODO
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// Compute Capability equivalent in resp->major, resp->minor, resp->patch
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uint32_t memCount = 0;
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ret = (*h.zesDeviceEnumMemoryModules)(h.devices[driver][device], &memCount,
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NULL);
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if (ret != ZE_RESULT_SUCCESS) {
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snprintf(buf, buflen, "unable to enumerate Level-Zero memory modules: %x",
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ret);
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resp->err = strdup(buf);
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return;
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}
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LOG(h.verbose, "discovered %d Level-Zero memory modules\n", memCount);
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zes_mem_handle_t *mems = malloc(memCount * sizeof(zes_mem_handle_t));
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(*h.zesDeviceEnumMemoryModules)(h.devices[driver][device], &memCount, mems);
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for (m = 0; m < memCount; m++) {
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zes_mem_state_t state;
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state.stype = ZES_STRUCTURE_TYPE_MEM_STATE;
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state.pNext = NULL;
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ret = (*h.zesMemoryGetState)(mems[m], &state);
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if (ret != ZE_RESULT_SUCCESS) {
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snprintf(buf, buflen, "unable to get memory state: %x", ret);
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resp->err = strdup(buf);
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free(mems);
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return;
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}
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resp->total += state.size;
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resp->free += state.free;
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}
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free(mems);
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}
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void oneapi_release(oneapi_handle_t h) {
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int d;
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LOG(h.verbose, "releasing oneapi library\n");
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for (d = 0; d < h.num_drivers; d++) {
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if (h.devices != NULL && h.devices[d] != NULL) {
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free(h.devices[d]);
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}
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}
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if (h.devices != NULL) {
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free(h.devices);
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h.devices = NULL;
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}
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if (h.num_devices != NULL) {
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free(h.num_devices);
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h.num_devices = NULL;
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}
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if (h.drivers != NULL) {
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free(h.drivers);
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h.drivers = NULL;
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}
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h.num_drivers = 0;
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UNLOAD_LIBRARY(h.handle);
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h.handle = NULL;
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}
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int oneapi_get_device_count(oneapi_handle_t h, int driver) {
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if (h.handle == NULL || h.num_devices == NULL) {
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return 0;
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}
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if (driver > h.num_drivers) {
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return 0;
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}
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return (int)h.num_devices[driver];
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}
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#endif // __APPLE__
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