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1 //
2 // Copyright (c) 2017 The Khronos Group Inc.
3 //
4 // Licensed under the Apache License, Version 2.0 (the "License");
5 // you may not use this file except in compliance with the License.
6 // You may obtain a copy of the License at
7 //
8 //    http://www.apache.org/licenses/LICENSE-2.0
9 //
10 // Unless required by applicable law or agreed to in writing, software
11 // distributed under the License is distributed on an "AS IS" BASIS,
12 // WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
13 // See the License for the specific language governing permissions and
14 // limitations under the License.
15 //
16 #include "testBase.h"
17 #include "harness/typeWrappers.h"
18 #include "harness/conversions.h"
19 #include <sstream>
20 #include <string>
21 #include <cmath>
22 
23 using namespace std;
24 
25 const char *clone_kernel_test_img[] =
26 {
27     "__kernel void img_read_kernel(read_only image2d_t img, sampler_t sampler, __global int* outbuf)\n"
28     "{\n"
29     "    uint4 color;\n"
30     "\n"
31     "    color = read_imageui(img, sampler, (int2)(0,0));\n"
32     "    \n"
33     "    // 7, 8, 9, 10th DWORD\n"
34     "    outbuf[7] = color.x;\n"
35     "    outbuf[8] = color.y;\n"
36     "    outbuf[9] = color.z;\n"
37     "    outbuf[10] = color.w;\n"
38     "}\n"
39     "\n"
40     "__kernel void img_write_kernel(write_only image2d_t img, uint4 color)\n"
41     "{\n"
42     "    write_imageui (img, (int2)(0, 0), color);\n"
43     "}\n"
44 
45 };
46 
47 const char *clone_kernel_test_double[] =
48 {
49     "#pragma OPENCL EXTENSION cl_khr_fp64 : enable\n"
50     "__kernel void clone_kernel_test1(double d, __global double* outbuf)\n"
51     "{\n"
52     "    // use the same outbuf as rest of the tests\n"
53     "    outbuf[2] = d;\n"
54     "}\n"
55 };
56 
57 const char *clone_kernel_test_kernel[] = {
58 "typedef struct\n"
59 "{\n"
60 "    int i;\n"
61 "    float f;\n"
62 "} structArg;\n"
63 "\n"
64 "// value type test\n"
65 "__kernel void clone_kernel_test0(int iarg, float farg, structArg sarg, __local int* localbuf, __global int* outbuf)\n"
66 "{\n"
67 "    int  tid = get_global_id(0);\n"
68 "\n"
69 "    outbuf[0] = iarg;\n"
70 "    outbuf[1] = sarg.i;\n"
71 "    \n"
72 "    ((__global float*)outbuf)[2] = farg;\n"
73 "    ((__global float*)outbuf)[3] = sarg.f;\n"
74 "}\n"
75 "\n"
76 "__kernel void buf_read_kernel(__global int* buf, __global int* outbuf)\n"
77 "{\n"
78 "    // 6th DWORD\n"
79 "    outbuf[6] = buf[0];\n"
80 "}\n"
81 "\n"
82 "__kernel void buf_write_kernel(__global int* buf, int write_val)\n"
83 "{\n"
84 "    buf[0] = write_val;\n"
85 "}\n"
86 
87  };
88 
89 const int BUF_SIZE = 128;
90 
91 struct structArg
92 {
93     int i;
94     float f;
95 };
96 
97 static unsigned char *
generate_8888_image(int w,int h,MTdata d)98 generate_8888_image(int w, int h, MTdata d)
99 {
100     unsigned char   *ptr = (unsigned char*)malloc(w * h * 4);
101     int             i;
102 
103     for (i=0; i<w*h*4; i++)
104         ptr[i] = (unsigned char)genrand_int32( d);
105 
106     return ptr;
107 }
108 
test_image_arg_shallow_clone(cl_device_id deviceID,cl_context context,cl_command_queue queue,int num_elements,void * pbufRes,clMemWrapper & bufOut)109 int test_image_arg_shallow_clone(cl_device_id deviceID, cl_context context, cl_command_queue queue, int num_elements, void* pbufRes, clMemWrapper& bufOut)
110 {
111     int error;
112     cl_image_format    img_format;
113     clSamplerWrapper sampler;
114     img_format.image_channel_order = CL_RGBA;
115     img_format.image_channel_data_type = CL_UNSIGNED_INT8;
116     cl_image_desc imageDesc;
117     memset(&imageDesc, 0x0, sizeof(cl_image_desc));
118     imageDesc.image_type = CL_MEM_OBJECT_IMAGE2D;
119     imageDesc.image_width = 512;
120     imageDesc.image_height = 512;
121 
122     cl_uint color[4] = {1,3,5,7};
123 
124     clProgramWrapper program_read;
125     clProgramWrapper program_write;
126     clKernelWrapper kernel_read;
127     clKernelWrapper kernel_write;
128     clKernelWrapper kernel_cloned;
129     size_t    ndrange1 = 1;
130 
131     clMemWrapper img;
132 
133     if (create_single_kernel_helper(context, &program_read, &kernel_read, 1,
134                                     clone_kernel_test_img, "img_read_kernel")
135         != 0)
136     {
137         return -1;
138     }
139 
140     if (create_single_kernel_helper(context, &program_write, &kernel_write, 1,
141                                     clone_kernel_test_img, "img_write_kernel")
142         != 0)
143     {
144         return -1;
145     }
146 
147     img = clCreateImage(context, CL_MEM_READ_WRITE, &img_format, &imageDesc, NULL, &error);
148     test_error( error, "clCreateImage failed." );
149 
150     cl_sampler_properties properties[] = {
151         CL_SAMPLER_NORMALIZED_COORDS, CL_FALSE,
152         CL_SAMPLER_ADDRESSING_MODE, CL_ADDRESS_CLAMP_TO_EDGE,
153         CL_SAMPLER_FILTER_MODE, CL_FILTER_NEAREST,
154         0 };
155     sampler = clCreateSamplerWithProperties(context, properties, &error);
156     test_error( error, "clCreateSamplerWithProperties failed." );
157 
158     error = clSetKernelArg(kernel_write, 1, sizeof(int) * 4, color);
159     error += clSetKernelArg(kernel_write, 0, sizeof(cl_mem), &img);
160     test_error( error, "clSetKernelArg failed." );
161 
162     error = clEnqueueNDRangeKernel(queue, kernel_write, 1, NULL, &ndrange1, NULL, 0, NULL, NULL);
163     test_error( error, "clEnqueueNDRangeKernel failed." );
164 
165     error = clSetKernelArg(kernel_read, 0, sizeof(cl_mem), &img);
166     error += clSetKernelArg(kernel_read, 1, sizeof(cl_sampler), &sampler);
167     error += clSetKernelArg(kernel_read, 2, sizeof(cl_mem), &bufOut);
168 
169     test_error( error, "clSetKernelArg failed." );
170 
171     // clone the kernel
172     kernel_cloned = clCloneKernel(kernel_read, &error);
173     test_error( error, "clCloneKernel failed." );
174     error = clEnqueueNDRangeKernel(queue, kernel_cloned, 1, NULL, &ndrange1, NULL, 0, NULL, NULL);
175     test_error( error, "clEnqueueNDRangeKernel failed." );
176 
177     // read result back
178     error = clEnqueueReadBuffer(queue, bufOut, CL_TRUE, 0, 128, pbufRes, 0, NULL, NULL);
179     test_error( error, "clEnqueueReadBuffer failed." );
180 
181     if (((cl_uint*)pbufRes)[7] != color[0])
182     {
183         test_error( error, "clCloneKernel test failed." );
184         return -1;
185     }
186 
187     if (((cl_uint*)pbufRes)[8] != color[1])
188     {
189         test_error( error, "clCloneKernel test failed." );
190         return -1;
191     }
192 
193     if (((cl_uint*)pbufRes)[9] != color[2])
194     {
195         test_error( error, "clCloneKernel test failed." );
196         return -1;
197     }
198 
199     if (((cl_uint*)pbufRes)[10] != color[3])
200     {
201         test_error( error, "clCloneKernel test failed." );
202         return -1;
203     }
204 
205     return 0;
206 }
207 
test_double_arg_clone(cl_device_id deviceID,cl_context context,cl_command_queue queue,int num_elements,void * pbufRes,clMemWrapper & bufOut)208 int test_double_arg_clone(cl_device_id deviceID, cl_context context, cl_command_queue queue, int num_elements, void* pbufRes, clMemWrapper& bufOut)
209 {
210     int error = 0;
211     clProgramWrapper program;
212     clKernelWrapper kernel;
213     clKernelWrapper kernel_cloned;
214     size_t    ndrange1 = 1;
215 
216     if( create_single_kernel_helper( context, &program, &kernel, 1, clone_kernel_test_double, "clone_kernel_test1" ) != 0 )
217     {
218         return -1;
219     }
220 
221     cl_double d = 1.23;
222     error = clSetKernelArg(kernel, 0, sizeof(double), &d);
223     error += clSetKernelArg(kernel, 1, sizeof(cl_mem), &bufOut);
224     test_error( error, "clSetKernelArg failed." );
225 
226     kernel_cloned = clCloneKernel(kernel, &error);
227     test_error( error, "clCloneKernel failed." );
228 
229     error = clEnqueueNDRangeKernel(queue, kernel_cloned, 1, NULL, &ndrange1, NULL, 0, NULL, NULL);
230     test_error( error, "clEnqueueNDRangeKernel failed." );
231 
232     // read result back
233     error = clEnqueueReadBuffer(queue, bufOut, CL_TRUE, 0, BUF_SIZE, pbufRes, 0, NULL, NULL);
234     test_error( error, "clEnqueueReadBuffer failed." );
235 
236     if (abs(((cl_double*)pbufRes)[2] - d) > 0.0000001)
237     {
238         test_error( error, "clCloneKernel test failed." );
239         return -1;
240     }
241 
242     return 0;
243 }
244 
test_clone_kernel(cl_device_id deviceID,cl_context context,cl_command_queue queue,int num_elements)245 int test_clone_kernel(cl_device_id deviceID, cl_context context, cl_command_queue queue, int num_elements)
246 {
247     int error;
248     clProgramWrapper program;
249     clProgramWrapper program_buf_read;
250     clProgramWrapper program_buf_write;
251     clKernelWrapper kernel;
252     clKernelWrapper kernel_pipe_read;
253     clKernelWrapper kernel_buf_read;
254     clKernelWrapper kernel_pipe_write;
255     clKernelWrapper kernel_buf_write;
256 
257     clKernelWrapper kernel_pipe_read_cloned;
258     clKernelWrapper kernel_buf_read_cloned;
259     size_t    ndrange1 = 1;
260 
261     int write_val = 123;
262 
263 
264     cl_bool bimg = CL_FALSE;
265     cl_bool bdouble = CL_FALSE;
266     // test image support
267     error = clGetDeviceInfo(deviceID, CL_DEVICE_IMAGE_SUPPORT, sizeof(cl_bool), &bimg, NULL);
268     test_error( error, "clGetDeviceInfo failed." );
269 
270     // test double support
271     if (is_extension_available(deviceID, "cl_khr_fp64"))
272     {
273         bdouble = CL_TRUE;
274     }
275 
276     /* Create kernels to test with */
277     if( create_single_kernel_helper( context, &program, &kernel, 1, clone_kernel_test_kernel, "clone_kernel_test0" ) != 0 )
278     {
279         return -1;
280     }
281 
282     if (create_single_kernel_helper(context, &program_buf_read,
283                                     &kernel_buf_read, 1,
284                                     clone_kernel_test_kernel, "buf_read_kernel")
285         != 0)
286     {
287         return -1;
288     }
289 
290     if (create_single_kernel_helper(
291             context, &program_buf_write, &kernel_buf_write, 1,
292             clone_kernel_test_kernel, "buf_write_kernel")
293         != 0)
294     {
295         return -1;
296     }
297 
298     // Kernel args
299     // Value type
300     int intarg = 0;
301     float farg = 1.0;
302     structArg sa = { 1, 1.0f };
303 
304     // cl_mem
305     clMemWrapper buf, bufOut;
306 
307     char* pbuf = new char[BUF_SIZE];
308     char* pbufRes = new char[BUF_SIZE];
309     buf = clCreateBuffer(context, CL_MEM_READ_WRITE | CL_MEM_USE_HOST_PTR, BUF_SIZE, pbuf, &error);
310     test_error( error, "clCreateBuffer failed." );
311 
312     bufOut = clCreateBuffer(context, CL_MEM_READ_WRITE | CL_MEM_ALLOC_HOST_PTR, BUF_SIZE, NULL, &error);
313     test_error( error, "clCreateBuffer failed." );
314 
315     error = clSetKernelArg(kernel, 0, sizeof(int), &intarg);
316     error += clSetKernelArg(kernel, 1, sizeof(float), &farg);
317     error += clSetKernelArg(kernel, 2, sizeof(structArg), &sa);
318     error += clSetKernelArg(kernel, 3, 128, NULL);    // local mem
319 
320     test_error( error, "clSetKernelArg failed." );
321 
322     // clone the kernel
323     clKernelWrapper clonek = clCloneKernel(kernel, &error);
324     test_error( error, "clCloneKernel failed." );
325 
326     // set the last arg and enqueue
327     error = clSetKernelArg(clonek, 4, sizeof(cl_mem), &bufOut);
328     test_error( error, "clSetKernelArg failed." );
329     error = clEnqueueNDRangeKernel(queue, clonek, 1, NULL, &ndrange1, NULL, 0, NULL, NULL);
330     test_error( error, "clEnqueueNDRangeKernel failed." );
331 
332     // shallow clone tests for buffer
333     error = clSetKernelArg(kernel_buf_write, 0, sizeof(cl_mem), &buf);
334     error += clSetKernelArg(kernel_buf_write, 1, sizeof(int), &write_val);
335     test_error( error, "clSetKernelArg failed." );
336     error = clEnqueueNDRangeKernel(queue, kernel_buf_write, 1, NULL, &ndrange1, NULL, 0, NULL, NULL);
337     test_error( error, "clEnqueueNDRangeKernel failed." );
338 
339     error = clSetKernelArg(kernel_buf_read, 0, sizeof(cl_mem), &buf);
340     error += clSetKernelArg(kernel_buf_read, 1, sizeof(cl_mem), &bufOut);
341     test_error( error, "clSetKernelArg failed." );
342 
343     // clone the kernel
344     kernel_buf_read_cloned = clCloneKernel(kernel_buf_read, &error);
345     test_error( error, "clCloneKernel API call failed." );
346     error = clEnqueueNDRangeKernel(queue, kernel_buf_read_cloned, 1, NULL, &ndrange1, NULL, 0, NULL, NULL);
347     test_error( error, "clEnqueueNDRangeKernel failed." );
348 
349     // read result back
350     error = clEnqueueReadBuffer(queue, bufOut, CL_TRUE, 0, BUF_SIZE, pbufRes, 0, NULL, NULL);
351     test_error( error, "clEnqueueReadBuffer failed." );
352 
353     // Compare the results
354     if (((int*)pbufRes)[0] != intarg)
355     {
356         test_error( error, "clCloneKernel test failed. Failed to clone integer type argument." );
357         return -1;
358     }
359 
360     if (((int*)pbufRes)[1] != sa.i)
361     {
362         test_error( error, "clCloneKernel test failed. Failed to clone structure type argument." );
363         return -1;
364     }
365 
366     if (((float*)pbufRes)[2] != farg)
367     {
368         test_error( error, "clCloneKernel test failed. Failed to clone structure type argument." );
369         return -1;
370     }
371 
372     if (((float*)pbufRes)[3] != sa.f)
373     {
374         test_error( error, "clCloneKernel test failed. Failed to clone float type argument." );
375         return -1;
376     }
377 
378     if (((int*)pbufRes)[6] != write_val)
379     {
380         test_error( error, "clCloneKernel test failed.  Failed to clone cl_mem argument." );
381         return -1;
382     }
383 
384     if (bimg)
385     {
386         error = test_image_arg_shallow_clone(deviceID, context, queue, num_elements, pbufRes, bufOut);
387         test_error( error, "image arg shallow clone test failed." );
388     }
389 
390     if (bdouble)
391     {
392         error = test_double_arg_clone(deviceID, context, queue, num_elements, pbufRes, bufOut);
393         test_error( error, "double arg clone test failed." );
394     }
395 
396     delete [] pbuf;
397     delete [] pbufRes;
398 
399     return 0;
400 }
401 
402