Files
OpenCL-CTS/test_conformance/SVM/test_allocate_shared_buffer_negative.cpp
Kévin Petit 5b7af4b36d [NFC] Change the name of the default device provided by the new registration framework (#2186)
The code base uses a mix of 'device' and 'deviceID'. I suggest we
standardise on 'device' which is shorter and slightly more prevalent.

Contributes to #2181

Signed-off-by: Kevin Petit <kevin.petit@arm.com>
2024-12-12 13:24:04 -08:00

101 lines
3.6 KiB
C++

//
// Copyright (c) 2017 The Khronos Group Inc.
//
// Licensed under the Apache License, Version 2.0 (the "License");
// you may not use this file except in compliance with the License.
// You may obtain a copy of the License at
//
// http://www.apache.org/licenses/LICENSE-2.0
//
// Unless required by applicable law or agreed to in writing, software
// distributed under the License is distributed on an "AS IS" BASIS,
// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
// See the License for the specific language governing permissions and
// limitations under the License.
//
#include "common.h"
const cl_mem_flags svm_flag_set[] = {
CL_MEM_READ_WRITE,
CL_MEM_WRITE_ONLY,
CL_MEM_READ_ONLY,
CL_MEM_READ_WRITE | CL_MEM_SVM_FINE_GRAIN_BUFFER,
CL_MEM_WRITE_ONLY | CL_MEM_SVM_FINE_GRAIN_BUFFER,
CL_MEM_READ_ONLY | CL_MEM_SVM_FINE_GRAIN_BUFFER,
CL_MEM_READ_WRITE | CL_MEM_SVM_FINE_GRAIN_BUFFER | CL_MEM_SVM_ATOMICS,
CL_MEM_WRITE_ONLY | CL_MEM_SVM_FINE_GRAIN_BUFFER | CL_MEM_SVM_ATOMICS,
CL_MEM_READ_ONLY | CL_MEM_SVM_FINE_GRAIN_BUFFER | CL_MEM_SVM_ATOMICS,
0
};
const char* svm_flag_set_names[] = {
"CL_MEM_READ_WRITE",
"CL_MEM_WRITE_ONLY",
"CL_MEM_READ_ONLY",
"CL_MEM_READ_WRITE | CL_MEM_SVM_FINE_GRAIN_BUFFER",
"CL_MEM_WRITE_ONLY | CL_MEM_SVM_FINE_GRAIN_BUFFER",
"CL_MEM_READ_ONLY | CL_MEM_SVM_FINE_GRAIN_BUFFER",
"CL_MEM_READ_WRITE | CL_MEM_SVM_FINE_GRAIN_BUFFER | CL_MEM_SVM_ATOMICS",
"CL_MEM_WRITE_ONLY | CL_MEM_SVM_FINE_GRAIN_BUFFER | CL_MEM_SVM_ATOMICS",
"CL_MEM_READ_ONLY | CL_MEM_SVM_FINE_GRAIN_BUFFER | CL_MEM_SVM_ATOMICS",
"0"
};
REGISTER_TEST(svm_allocate_shared_buffer_negative)
{
clContextWrapper contextWrapper = NULL;
clProgramWrapper program = NULL;
cl_uint num_devices = 0;
cl_int err = CL_SUCCESS;
clCommandQueueWrapper queues[MAXQ];
cl_device_svm_capabilities caps;
err = clGetDeviceInfo(device, CL_DEVICE_SVM_CAPABILITIES,
sizeof(cl_device_svm_capabilities), &caps, NULL);
test_error(err, "clGetDeviceInfo failed for CL_DEVICE_SVM_CAPABILITIES");
// under construction...
err = create_cl_objects(device, NULL, &contextWrapper, &program, &queues[0],
&num_devices, CL_DEVICE_SVM_COARSE_GRAIN_BUFFER);
context = contextWrapper;
if (err) return err;
size_t size = 1024;
// iteration over flag combos
int num_flags = sizeof(svm_flag_set) / sizeof(cl_mem_flags);
for (int i = 0; i < num_flags; i++)
{
if (((svm_flag_set[i] & CL_MEM_SVM_FINE_GRAIN_BUFFER) != 0
&& (caps & CL_DEVICE_SVM_FINE_GRAIN_BUFFER) == 0)
|| ((svm_flag_set[i] & CL_MEM_SVM_ATOMICS) != 0
&& (caps & CL_DEVICE_SVM_ATOMICS) == 0))
{
log_info("Skipping clSVMalloc with flags: %s\n",
svm_flag_set_names[i]);
continue;
}
log_info("Testing clSVMalloc with flags: %s\n", svm_flag_set_names[i]);
cl_char* pBufData1 =
(cl_char*)clSVMAlloc(context, svm_flag_set[i], size, 0);
if (pBufData1 == NULL)
{
log_error("SVMalloc returned NULL");
return -1;
}
{
clMemWrapper buf1 = clCreateBuffer(context, CL_MEM_USE_HOST_PTR,
2 * size, pBufData1, &err);
test_failure_error(err, CL_INVALID_BUFFER_SIZE,
"clCreateBuffer did not return expected error"
"CL_INVALID_BUFFER_SIZE");
}
clSVMFree(context, pBufData1);
}
return TEST_PASS;
}