Files
rocm-systems/tests/rocm_smi_test/functional/evt_notif_read_write.cc
T
Mukul Joshi 406859ca8a Update KFD SMI event notification handling
Event bitmask in KFD SMI event is now replaced with event index in
the SMI event message. Sending a event bitmask, which was a 64-bit
field with only 1 bit set, was quite wasteful of memory and also
potentially limiting to 64 events. Instead the kernel would send
event index in the SMI event message. As a result, update the
KFD SMI event handling to expect the event index in the message.

Change-Id: I3e74620788d3c1f7c0bdaa69e9d9ab3d1aba2c92
2020-09-16 13:24:50 -04:00

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5.6 KiB
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Executable File

/*
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#include <stdint.h>
#include <stddef.h>
#include <iostream>
#include "gtest/gtest.h"
#include "rocm_smi/rocm_smi.h"
#include "rocm_smi_test/functional/evt_notif_read_write.h"
#include "rocm_smi_test/test_common.h"
#include "rocm_smi_test/test_utils.h"
TestEvtNotifReadWrite::TestEvtNotifReadWrite() : TestBase() {
set_title("RSMI Event Notification Read/Write Test");
set_description("The Event Notification Read/Write tests verifies that "
"we can configure to collect various event types and then read them");
}
TestEvtNotifReadWrite::~TestEvtNotifReadWrite(void) {
}
void TestEvtNotifReadWrite::SetUp(void) {
TestBase::SetUp();
return;
}
void TestEvtNotifReadWrite::DisplayTestInfo(void) {
TestBase::DisplayTestInfo();
}
void TestEvtNotifReadWrite::DisplayResults(void) const {
TestBase::DisplayResults();
return;
}
void TestEvtNotifReadWrite::Close() {
// This will close handles opened within rsmitst utility calls and call
// rsmi_shut_down(), so it should be done after other hsa cleanup
TestBase::Close();
}
void TestEvtNotifReadWrite::Run(void) {
rsmi_status_t ret;
uint32_t dv_ind;
TestBase::Run();
if (num_monitor_devs() == 0) {
return;
}
if (setup_failed_) {
IF_VERB(STANDARD) {
std::cout << "** SetUp Failed for this test. Skipping.**" <<
std::endl;
}
return;
}
rsmi_evt_notification_type_t evt_type = RSMI_EVT_NOTIF_FIRST;
uint64_t mask = RSMI_EVENT_MASK_FROM_INDEX(evt_type);
while (evt_type != RSMI_EVT_NOTIF_LAST) {
mask |= RSMI_EVENT_MASK_FROM_INDEX(evt_type);
evt_type = static_cast<rsmi_evt_notification_type_t>(
static_cast<uint32_t>(evt_type)+1);
}
for (dv_ind = 0; dv_ind < num_monitor_devs(); ++dv_ind) {
ret = rsmi_event_notification_init(dv_ind);
if (ret == RSMI_STATUS_NOT_SUPPORTED) {
IF_VERB(STANDARD) {
std::cout <<
"Event notification is not supported for this driver version." <<
std::endl;
}
return;
}
ASSERT_EQ(ret, RSMI_STATUS_SUCCESS);
ret = rsmi_event_notification_mask_set(dv_ind, mask);
ASSERT_EQ(ret, RSMI_STATUS_SUCCESS);
}
rsmi_evt_notification_data_t data[10];
uint32_t num_elem = 10;
ret = rsmi_event_notification_get(10000, &num_elem, data);
if (ret == RSMI_STATUS_SUCCESS || ret == RSMI_STATUS_INSUFFICIENT_SIZE) {
EXPECT_LE(num_elem, 10) <<
"Expected the number of elements found to be <= buffer size (10)";
IF_VERB(STANDARD) {
for (uint32_t i = 0; i < num_elem; ++i) {
std::cout << "\tdv_ind=" << data[i].dv_ind <<
" Type: " << NameFromEvtNotifType(data[i].event) <<
" Mesg: " << data[i].message << std::endl;
}
}
IF_VERB(STANDARD) {
if (ret == RSMI_STATUS_INSUFFICIENT_SIZE) {
std::cout <<
"\t\tBuffer size is 10, but more than 10 events are available." <<
std::endl;
}
}
} else if (ret == RSMI_STATUS_NO_DATA) {
IF_VERB(STANDARD) {
std::cout << "\tNo events were collected." << std::endl;
}
} else {
// This should always fail. We want to print out the return code.
EXPECT_EQ(ret, RSMI_STATUS_SUCCESS) <<
"Unexpected return code for rsmi_event_notification_get()";
}
for (uint32_t dv_ind = 0; dv_ind < num_monitor_devs(); ++dv_ind) {
ret = rsmi_event_notification_stop(dv_ind);
ASSERT_EQ(ret, RSMI_STATUS_SUCCESS);
}
}