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https://github.com/KhronosGroup/OpenCL-CTS.git
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* test_common: Replace cl_ushort with cl_half (#885) Change-Id: I507eca2084629c3b6f3e7331f062f006edbce434 Signed-off-by: Chetankumar Mistry <chetan.mistry@arm.com> * buffers, pipes, profiling: Replace cl_ushort with cl_half (#885) Change-Id: Id9799322b636af6aa0eec3d4e846d7af8c7f9602 Signed-off-by: Chetankumar Mistry <chetan.mistry@arm.com> * images/kernel_read_write: Replace cl_ushort with cl_half (#885) Change-Id: I922ddb593b6e5631d0f4ea1522c7f75f8770be40 Signed-off-by: Chetankumar Mistry <chetan.mistry@arm.com> * half: Replace cl_ushort with cl_half (#885) Change-Id: I484a5bb2b33a7e87805fc6079953c66e5f8d9239 Signed-off-by: Chetankumar Mistry <chetan.mistry@arm.com>
This commit is contained in:
@@ -1277,9 +1277,7 @@ void * CreateGLTexture2DMultisample( size_t width, size_t height, size_t samples
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case kUInt:
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*((unsigned int*)p) = val*0xffffffff;
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break;
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case kHalf:
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*((cl_ushort*)p) = convert_float_to_half(val);
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break;
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case kHalf: *((cl_half *)p) = convert_float_to_half(val); break;
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default:
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log_error("Test error: unexpected type enum 0x%x\n",type);
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}
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@@ -1541,9 +1539,7 @@ void * CreateGLTexture2DArrayMultisample(size_t width, size_t height,
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case kUInt:
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*((unsigned int*)p) = val*0xffffffff;
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break;
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case kHalf:
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*((cl_ushort*)p) = convert_float_to_half(val);
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break;
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case kHalf: *((cl_half *)p) = convert_float_to_half(val); break;
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default:
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log_error("Test error: unexpected type enum 0x%x\n",type);
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}
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@@ -880,7 +880,7 @@ void generate_random_data( ExplicitType type, size_t count, MTdata d, void *outD
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cl_ulong *ulongPtr;
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cl_float *floatPtr;
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cl_double *doublePtr;
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cl_ushort *halfPtr;
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cl_half *halfPtr;
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size_t i;
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cl_uint bits = genrand_int32(d);
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cl_uint bitsLeft = 32;
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@@ -354,7 +354,7 @@ static float Ulp_Error_Half_Float( float test, double reference )
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return (float) scalbn( testVal - reference, ulp_exp );
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}
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float Ulp_Error_Half( cl_ushort test, float reference )
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float Ulp_Error_Half(cl_half test, float reference)
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{
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return Ulp_Error_Half_Float(cl_half_to_float(test), reference);
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}
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@@ -122,9 +122,9 @@ static int vlog_win32(const char *format, ...);
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extern const char *IGetErrorString( int clErrorCode );
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extern float Ulp_Error_Half( cl_ushort test, float reference );
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extern float Ulp_Error( float test, double reference );
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extern float Ulp_Error_Double( double test, long double reference );
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extern float Ulp_Error_Half(cl_half test, float reference);
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extern float Ulp_Error(float test, double reference);
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extern float Ulp_Error_Double(double test, long double reference);
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extern const char *GetChannelTypeName( cl_channel_type type );
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extern int IsChannelTypeSupported( cl_channel_type type );
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@@ -925,7 +925,7 @@ int get_format_min_int( cl_image_format *format )
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}
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}
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cl_ushort convert_float_to_half( float f )
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cl_half convert_float_to_half(float f)
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{
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switch( gFloatToHalfRoundingMode )
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{
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@@ -1281,10 +1281,9 @@ void read_image_pixel_float( void *imageData, image_descriptor *imageInfo,
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break;
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}
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case CL_HALF_FLOAT:
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{
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cl_ushort *dPtr = (cl_ushort *)ptr;
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for( i = 0; i < channelCount; i++ )
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case CL_HALF_FLOAT: {
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cl_half *dPtr = (cl_half *)ptr;
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for (i = 0; i < channelCount; i++)
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tempData[i] = cl_half_to_float(dPtr[i]);
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break;
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}
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@@ -2397,9 +2396,8 @@ void pack_image_pixel( float *srcVector, const cl_image_format *imageFormat, voi
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size_t channelCount = get_format_channel_count( imageFormat );
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switch( imageFormat->image_channel_data_type )
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{
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case CL_HALF_FLOAT:
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{
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cl_ushort *ptr = (cl_ushort *)outData;
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case CL_HALF_FLOAT: {
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cl_half *ptr = (cl_half *)outData;
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switch( gFloatToHalfRoundingMode )
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{
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@@ -2569,9 +2567,8 @@ void pack_image_pixel_error( const float *srcVector, const cl_image_format *imag
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size_t channelCount = get_format_channel_count( imageFormat );
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switch( imageFormat->image_channel_data_type )
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{
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case CL_HALF_FLOAT:
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{
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const cl_ushort *ptr = (const cl_ushort *)results;
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case CL_HALF_FLOAT: {
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const cl_half *ptr = (const cl_half *)results;
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for( unsigned int i = 0; i < channelCount; i++ )
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errors[i] = Ulp_Error_Half( ptr[i], srcVector[i] );
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@@ -2838,25 +2835,28 @@ int DetectFloatToHalfRoundingMode( cl_command_queue q ) // Returns CL_SUCCESS
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return err;
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}
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// read the results
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cl_ushort outBuf[count*4];
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memset( outBuf, -1, sizeof( outBuf ) );
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size_t origin[3] = {0,0,0};
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size_t region[3] = {count,1,1};
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err = clEnqueueReadImage( q, outImage, CL_TRUE, origin, region, 0, 0, outBuf, 0, NULL, NULL );
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if( err )
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// read the results
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cl_half outBuf[count * 4];
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memset(outBuf, -1, sizeof(outBuf));
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size_t origin[3] = { 0, 0, 0 };
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size_t region[3] = { count, 1, 1 };
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err = clEnqueueReadImage(q, outImage, CL_TRUE, origin, region, 0, 0,
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outBuf, 0, NULL, NULL);
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if (err)
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{
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log_error( "Error: could not read output image in DetectFloatToHalfRoundingMode (%d)", err );
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clReleaseMemObject( inBuf );
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clReleaseMemObject( outImage );
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clReleaseKernel( k );
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log_error("Error: could not read output image in "
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"DetectFloatToHalfRoundingMode (%d)",
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err);
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clReleaseMemObject(inBuf);
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clReleaseMemObject(outImage);
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clReleaseKernel(k);
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return err;
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}
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// Generate our list of reference results
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cl_ushort rte_ref[count*4];
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cl_ushort rtz_ref[count*4];
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for( size_t i = 0; i < 4 * count; i++ )
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// Generate our list of reference results
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cl_half rte_ref[count * 4];
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cl_half rtz_ref[count * 4];
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for (size_t i = 0; i < 4 * count; i++)
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{
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rte_ref[i] = cl_half_from_float(inp[i], CL_HALF_RTE);
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rtz_ref[i] = cl_half_from_float(inp[i], CL_HALF_RTZ);
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@@ -275,10 +275,9 @@ template <class T> void read_image_pixel( void *imageData, image_descriptor *ima
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break;
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}
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case CL_HALF_FLOAT:
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{
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cl_ushort *dPtr = (cl_ushort *)ptr;
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for( i = 0; i < get_format_channel_count( format ); i++ )
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case CL_HALF_FLOAT: {
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cl_half *dPtr = (cl_half *)ptr;
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for (i = 0; i < get_format_channel_count(format); i++)
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tempData[i] = (T)cl_half_to_float(dPtr[i]);
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break;
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}
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@@ -639,17 +638,18 @@ protected:
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size_t mVecSize;
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};
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extern cl_ushort convert_float_to_half(float f);
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extern int DetectFloatToHalfRoundingMode( cl_command_queue ); // Returns CL_SUCCESS on success
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extern cl_half convert_float_to_half(float f);
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extern int DetectFloatToHalfRoundingMode(
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cl_command_queue); // Returns CL_SUCCESS on success
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// sign bit: don't care, exponent: maximum value, significand: non-zero
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static int inline is_half_nan( cl_ushort half ){ return ( half & 0x7fff ) > 0x7c00; }
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static int inline is_half_nan(cl_half half) { return (half & 0x7fff) > 0x7c00; }
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// sign bit: don't care, exponent: zero, significand: non-zero
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static int inline is_half_denorm( cl_ushort half ){ return IsHalfSubnormal( half ); }
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static int inline is_half_denorm(cl_half half) { return IsHalfSubnormal(half); }
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// sign bit: don't care, exponent: zero, significand: zero
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static int inline is_half_zero( cl_ushort half ){ return ( half & 0x7fff ) == 0; }
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static int inline is_half_zero(cl_half half) { return (half & 0x7fff) == 0; }
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extern double sRGBmap(float fc);
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@@ -554,8 +554,8 @@ static int verify_write_float( void *ptr1, void *ptr2, int n )
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static int verify_write_half( void *ptr1, void *ptr2, int n )
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{
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int i;
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cl_ushort *inptr = (cl_ushort *)ptr1;
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cl_ushort *outptr = (cl_ushort *)ptr2;
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cl_half *inptr = (cl_half *)ptr1;
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cl_half *outptr = (cl_half *)ptr2;
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for ( i = 0; i < n; i++ ){
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if ( outptr[i] != inptr[i] )
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@@ -210,42 +210,42 @@ CheckD(cl_uint jid, cl_uint tid, void *userInfo)
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return ret;
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}
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static cl_ushort float2half_rte(float f)
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static cl_half float2half_rte(float f)
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{
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return cl_half_from_float(f, CL_HALF_RTE);
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}
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static cl_ushort float2half_rtz(float f)
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static cl_half float2half_rtz(float f)
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{
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return cl_half_from_float(f, CL_HALF_RTZ);
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}
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static cl_ushort float2half_rtp(float f)
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static cl_half float2half_rtp(float f)
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{
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return cl_half_from_float(f, CL_HALF_RTP);
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}
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static cl_ushort float2half_rtn(float f)
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static cl_half float2half_rtn(float f)
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{
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return cl_half_from_float(f, CL_HALF_RTN);
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}
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static cl_ushort double2half_rte(double f)
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static cl_half double2half_rte(double f)
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{
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return cl_half_from_double(f, CL_HALF_RTE);
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}
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static cl_ushort double2half_rtz(double f)
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static cl_half double2half_rtz(double f)
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{
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return cl_half_from_double(f, CL_HALF_RTZ);
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}
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static cl_ushort double2half_rtp(double f)
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static cl_half double2half_rtp(double f)
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{
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return cl_half_from_double(f, CL_HALF_RTP);
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}
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static cl_ushort double2half_rtn(double f)
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static cl_half double2half_rtn(double f)
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{
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return cl_half_from_double(f, CL_HALF_RTN);
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}
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@@ -696,30 +696,30 @@ int Test_vStoreHalf_private( cl_device_id device, f2h referenceFunc, d2h doubleR
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ComputeReferenceInfoF fref;
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fref.x = (float *)gIn_single;
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fref.r = (cl_ushort *)gOut_half_reference;
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fref.r = (cl_half *)gOut_half_reference;
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fref.f = referenceFunc;
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fref.lim = blockCount;
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fref.count = (blockCount + threadCount - 1) / threadCount;
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CheckResultInfoF fchk;
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fchk.x = (const float *)gIn_single;
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fchk.r = (const cl_ushort *)gOut_half_reference;
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fchk.s = (const cl_ushort *)gOut_half;
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fchk.r = (const cl_half *)gOut_half_reference;
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fchk.s = (const cl_half *)gOut_half;
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fchk.f = referenceFunc;
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fchk.lim = blockCount;
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fchk.count = (blockCount + threadCount - 1) / threadCount;
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ComputeReferenceInfoD dref;
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dref.x = (double *)gIn_double;
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dref.r = (cl_ushort *)gOut_half_reference_double;
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dref.r = (cl_half *)gOut_half_reference_double;
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dref.f = doubleReferenceFunc;
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dref.lim = blockCount;
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dref.count = (blockCount + threadCount - 1) / threadCount;
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CheckResultInfoD dchk;
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dchk.x = (const double *)gIn_double;
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dchk.r = (const cl_ushort *)gOut_half_reference_double;
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dchk.s = (const cl_ushort *)gOut_half;
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dchk.r = (const cl_half *)gOut_half_reference_double;
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dchk.s = (const cl_half *)gOut_half;
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dchk.f = doubleReferenceFunc;
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dchk.lim = blockCount;
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dchk.count = (blockCount + threadCount - 1) / threadCount;
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@@ -764,7 +764,9 @@ int Test_vStoreHalf_private( cl_device_id device, f2h referenceFunc, d2h doubleR
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cl_uint pattern = 0xdeaddead;
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memset_pattern4( gOut_half, &pattern, BUFFER_SIZE/2);
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error = clEnqueueWriteBuffer(gQueue, gOutBuffer_half, CL_FALSE, 0, count * sizeof(cl_ushort), gOut_half, 0, NULL, NULL);
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error = clEnqueueWriteBuffer(gQueue, gOutBuffer_half, CL_FALSE,
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0, count * sizeof(cl_half),
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gOut_half, 0, NULL, NULL);
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if (error) {
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vlog_error( "Failure in clWriteArray\n" );
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gFailCount++;
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@@ -779,7 +781,9 @@ int Test_vStoreHalf_private( cl_device_id device, f2h referenceFunc, d2h doubleR
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goto exit;
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}
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error = clEnqueueReadBuffer(gQueue, gOutBuffer_half, CL_TRUE, 0, count * sizeof(cl_ushort), gOut_half, 0, NULL, NULL);
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error = clEnqueueReadBuffer(gQueue, gOutBuffer_half, CL_TRUE, 0,
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count * sizeof(cl_half), gOut_half,
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0, NULL, NULL);
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if (error) {
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vlog_error( "Failure in clReadArray\n" );
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gFailCount++;
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@@ -795,7 +799,9 @@ int Test_vStoreHalf_private( cl_device_id device, f2h referenceFunc, d2h doubleR
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if (gTestDouble) {
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memset_pattern4( gOut_half, &pattern, BUFFER_SIZE/2);
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error = clEnqueueWriteBuffer(gQueue, gOutBuffer_half, CL_FALSE, 0, count * sizeof(cl_ushort), gOut_half, 0, NULL, NULL);
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error = clEnqueueWriteBuffer(
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gQueue, gOutBuffer_half, CL_FALSE, 0,
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count * sizeof(cl_half), gOut_half, 0, NULL, NULL);
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if (error) {
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vlog_error( "Failure in clWriteArray\n" );
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gFailCount++;
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@@ -810,7 +816,9 @@ int Test_vStoreHalf_private( cl_device_id device, f2h referenceFunc, d2h doubleR
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goto exit;
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}
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error = clEnqueueReadBuffer(gQueue, gOutBuffer_half, CL_TRUE, 0, count * sizeof(cl_ushort), gOut_half, 0, NULL, NULL);
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error = clEnqueueReadBuffer(
|
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gQueue, gOutBuffer_half, CL_TRUE, 0,
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count * sizeof(cl_half), gOut_half, 0, NULL, NULL);
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if (error) {
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vlog_error( "Failure in clReadArray\n" );
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gFailCount++;
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@@ -1285,30 +1293,30 @@ int Test_vStoreaHalf_private( cl_device_id device, f2h referenceFunc, d2h double
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ComputeReferenceInfoF fref;
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fref.x = (float *)gIn_single;
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fref.r = (cl_ushort *)gOut_half_reference;
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fref.r = (cl_half *)gOut_half_reference;
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fref.f = referenceFunc;
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fref.lim = blockCount;
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fref.count = (blockCount + threadCount - 1) / threadCount;
|
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|
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CheckResultInfoF fchk;
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fchk.x = (const float *)gIn_single;
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fchk.r = (const cl_ushort *)gOut_half_reference;
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fchk.s = (const cl_ushort *)gOut_half;
|
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fchk.r = (const cl_half *)gOut_half_reference;
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fchk.s = (const cl_half *)gOut_half;
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fchk.f = referenceFunc;
|
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fchk.lim = blockCount;
|
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fchk.count = (blockCount + threadCount - 1) / threadCount;
|
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|
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ComputeReferenceInfoD dref;
|
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dref.x = (double *)gIn_double;
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dref.r = (cl_ushort *)gOut_half_reference_double;
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dref.r = (cl_half *)gOut_half_reference_double;
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dref.f = doubleReferenceFunc;
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dref.lim = blockCount;
|
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dref.count = (blockCount + threadCount - 1) / threadCount;
|
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|
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CheckResultInfoD dchk;
|
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dchk.x = (const double *)gIn_double;
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dchk.r = (const cl_ushort *)gOut_half_reference_double;
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dchk.s = (const cl_ushort *)gOut_half;
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dchk.r = (const cl_half *)gOut_half_reference_double;
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dchk.s = (const cl_half *)gOut_half;
|
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dchk.f = doubleReferenceFunc;
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dchk.lim = blockCount;
|
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dchk.count = (blockCount + threadCount - 1) / threadCount;
|
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@@ -1353,7 +1361,9 @@ int Test_vStoreaHalf_private( cl_device_id device, f2h referenceFunc, d2h double
|
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cl_uint pattern = 0xdeaddead;
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memset_pattern4(gOut_half, &pattern, BUFFER_SIZE/2);
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|
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error = clEnqueueWriteBuffer(gQueue, gOutBuffer_half, CL_FALSE, 0, count * sizeof(cl_ushort), gOut_half, 0, NULL, NULL);
|
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error = clEnqueueWriteBuffer(gQueue, gOutBuffer_half, CL_FALSE,
|
||||
0, count * sizeof(cl_half),
|
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gOut_half, 0, NULL, NULL);
|
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if (error) {
|
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vlog_error( "Failure in clWriteArray\n" );
|
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gFailCount++;
|
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@@ -1368,7 +1378,9 @@ int Test_vStoreaHalf_private( cl_device_id device, f2h referenceFunc, d2h double
|
||||
goto exit;
|
||||
}
|
||||
|
||||
error = clEnqueueReadBuffer(gQueue, gOutBuffer_half, CL_TRUE, 0, count * sizeof(cl_ushort), gOut_half, 0, NULL, NULL);
|
||||
error = clEnqueueReadBuffer(gQueue, gOutBuffer_half, CL_TRUE, 0,
|
||||
count * sizeof(cl_half), gOut_half,
|
||||
0, NULL, NULL);
|
||||
if (error) {
|
||||
vlog_error( "Failure in clReadArray\n" );
|
||||
gFailCount++;
|
||||
@@ -1384,7 +1396,9 @@ int Test_vStoreaHalf_private( cl_device_id device, f2h referenceFunc, d2h double
|
||||
if (gTestDouble) {
|
||||
memset_pattern4(gOut_half, &pattern, BUFFER_SIZE/2);
|
||||
|
||||
error = clEnqueueWriteBuffer(gQueue, gOutBuffer_half, CL_FALSE, 0, count * sizeof(cl_ushort), gOut_half, 0, NULL, NULL);
|
||||
error = clEnqueueWriteBuffer(
|
||||
gQueue, gOutBuffer_half, CL_FALSE, 0,
|
||||
count * sizeof(cl_half), gOut_half, 0, NULL, NULL);
|
||||
if (error) {
|
||||
vlog_error( "Failure in clWriteArray\n" );
|
||||
gFailCount++;
|
||||
@@ -1399,7 +1413,9 @@ int Test_vStoreaHalf_private( cl_device_id device, f2h referenceFunc, d2h double
|
||||
goto exit;
|
||||
}
|
||||
|
||||
error = clEnqueueReadBuffer(gQueue, gOutBuffer_half, CL_TRUE, 0, count * sizeof(cl_ushort), gOut_half, 0, NULL, NULL);
|
||||
error = clEnqueueReadBuffer(
|
||||
gQueue, gOutBuffer_half, CL_TRUE, 0,
|
||||
count * sizeof(cl_half), gOut_half, 0, NULL, NULL);
|
||||
if (error) {
|
||||
vlog_error( "Failure in clReadArray\n" );
|
||||
gFailCount++;
|
||||
|
||||
@@ -472,8 +472,18 @@ int test_write_image_1D( cl_device_id device, cl_context context, cl_command_que
|
||||
log_error( " Error: %f %f %f %f\n", errors[0], errors[1], errors[2], errors[3] );
|
||||
break;
|
||||
case CL_HALF_FLOAT:
|
||||
log_error( " Expected: 0x%4.4x 0x%4.4x 0x%4.4x 0x%4.4x\n", ((cl_ushort*)resultBuffer)[0], ((cl_ushort*)resultBuffer)[1], ((cl_ushort*)resultBuffer)[2], ((cl_ushort*)resultBuffer)[3] );
|
||||
log_error( " Actual: 0x%4.4x 0x%4.4x 0x%4.4x 0x%4.4x\n", ((cl_ushort*)resultPtr)[0], ((cl_ushort*)resultPtr)[1], ((cl_ushort*)resultPtr)[2], ((cl_ushort*)resultPtr)[3] );
|
||||
log_error(" Expected: 0x%4.4x "
|
||||
"0x%4.4x 0x%4.4x 0x%4.4x\n",
|
||||
((cl_half *)resultBuffer)[0],
|
||||
((cl_half *)resultBuffer)[1],
|
||||
((cl_half *)resultBuffer)[2],
|
||||
((cl_half *)resultBuffer)[3]);
|
||||
log_error(" Actual: 0x%4.4x "
|
||||
"0x%4.4x 0x%4.4x 0x%4.4x\n",
|
||||
((cl_half *)resultPtr)[0],
|
||||
((cl_half *)resultPtr)[1],
|
||||
((cl_half *)resultPtr)[2],
|
||||
((cl_half *)resultPtr)[3]);
|
||||
log_error( " Ulps: %f %f %f %f\n", errors[0], errors[1], errors[2], errors[3] );
|
||||
break;
|
||||
case CL_UNSIGNED_INT32:
|
||||
|
||||
@@ -491,8 +491,18 @@ int test_write_image_1D_array( cl_device_id device, cl_context context, cl_comma
|
||||
log_error( " Error: %f %f %f %f\n", errors[0], errors[1], errors[2], errors[3] );
|
||||
break;
|
||||
case CL_HALF_FLOAT:
|
||||
log_error( " Expected: 0x%4.4x 0x%4.4x 0x%4.4x 0x%4.4x\n", ((cl_ushort*)resultBuffer)[0], ((cl_ushort*)resultBuffer)[1], ((cl_ushort*)resultBuffer)[2], ((cl_ushort*)resultBuffer)[3] );
|
||||
log_error( " Actual: 0x%4.4x 0x%4.4x 0x%4.4x 0x%4.4x\n", ((cl_ushort*)resultPtr)[0], ((cl_ushort*)resultPtr)[1], ((cl_ushort*)resultPtr)[2], ((cl_ushort*)resultPtr)[3] );
|
||||
log_error(" Expected: 0x%4.4x "
|
||||
"0x%4.4x 0x%4.4x 0x%4.4x\n",
|
||||
((cl_half *)resultBuffer)[0],
|
||||
((cl_half *)resultBuffer)[1],
|
||||
((cl_half *)resultBuffer)[2],
|
||||
((cl_half *)resultBuffer)[3]);
|
||||
log_error(" Actual: 0x%4.4x "
|
||||
"0x%4.4x 0x%4.4x 0x%4.4x\n",
|
||||
((cl_half *)resultPtr)[0],
|
||||
((cl_half *)resultPtr)[1],
|
||||
((cl_half *)resultPtr)[2],
|
||||
((cl_half *)resultPtr)[3]);
|
||||
log_error( " Ulps: %f %f %f %f\n", errors[0], errors[1], errors[2], errors[3] );
|
||||
break;
|
||||
case CL_UNSIGNED_INT32:
|
||||
|
||||
@@ -514,8 +514,20 @@ int test_write_image_2D_array( cl_device_id device, cl_context context, cl_comma
|
||||
log_error( " Error: %f %f %f %f\n", errors[0], errors[1], errors[2], errors[3] );
|
||||
break;
|
||||
case CL_HALF_FLOAT:
|
||||
log_error( " Expected: 0x%4.4x 0x%4.4x 0x%4.4x 0x%4.4x\n", ((cl_ushort*)resultBuffer)[0], ((cl_ushort*)resultBuffer)[1], ((cl_ushort*)resultBuffer)[2], ((cl_ushort*)resultBuffer)[3] );
|
||||
log_error( " Actual: 0x%4.4x 0x%4.4x 0x%4.4x 0x%4.4x\n", ((cl_ushort*)resultPtr)[0], ((cl_ushort*)resultPtr)[1], ((cl_ushort*)resultPtr)[2], ((cl_ushort*)resultPtr)[3] );
|
||||
log_error(
|
||||
" Expected: 0x%4.4x 0x%4.4x "
|
||||
"0x%4.4x 0x%4.4x\n",
|
||||
((cl_half *)resultBuffer)[0],
|
||||
((cl_half *)resultBuffer)[1],
|
||||
((cl_half *)resultBuffer)[2],
|
||||
((cl_half *)resultBuffer)[3]);
|
||||
log_error(
|
||||
" Actual: 0x%4.4x 0x%4.4x "
|
||||
"0x%4.4x 0x%4.4x\n",
|
||||
((cl_half *)resultPtr)[0],
|
||||
((cl_half *)resultPtr)[1],
|
||||
((cl_half *)resultPtr)[2],
|
||||
((cl_half *)resultPtr)[3]);
|
||||
log_error( " Ulps: %f %f %f %f\n", errors[0], errors[1], errors[2], errors[3] );
|
||||
break;
|
||||
case CL_UNSIGNED_INT32:
|
||||
|
||||
@@ -521,8 +521,20 @@ int test_write_image_3D( cl_device_id device, cl_context context, cl_command_que
|
||||
log_error( " Error: %f %f %f %f\n", errors[0], errors[1], errors[2], errors[3] );
|
||||
break;
|
||||
case CL_HALF_FLOAT:
|
||||
log_error( " Expected: 0x%4.4x 0x%4.4x 0x%4.4x 0x%4.4x\n", ((cl_ushort*)resultBuffer)[0], ((cl_ushort*)resultBuffer)[1], ((cl_ushort*)resultBuffer)[2], ((cl_ushort*)resultBuffer)[3] );
|
||||
log_error( " Actual: 0x%4.4x 0x%4.4x 0x%4.4x 0x%4.4x\n", ((cl_ushort*)resultPtr)[0], ((cl_ushort*)resultPtr)[1], ((cl_ushort*)resultPtr)[2], ((cl_ushort*)resultPtr)[3] );
|
||||
log_error(
|
||||
" Expected: 0x%4.4x 0x%4.4x "
|
||||
"0x%4.4x 0x%4.4x\n",
|
||||
((cl_half *)resultBuffer)[0],
|
||||
((cl_half *)resultBuffer)[1],
|
||||
((cl_half *)resultBuffer)[2],
|
||||
((cl_half *)resultBuffer)[3]);
|
||||
log_error(
|
||||
" Actual: 0x%4.4x 0x%4.4x "
|
||||
"0x%4.4x 0x%4.4x\n",
|
||||
((cl_half *)resultPtr)[0],
|
||||
((cl_half *)resultPtr)[1],
|
||||
((cl_half *)resultPtr)[2],
|
||||
((cl_half *)resultPtr)[3]);
|
||||
log_error( " Ulps: %f %f %f %f\n", errors[0], errors[1], errors[2], errors[3] );
|
||||
break;
|
||||
case CL_UNSIGNED_INT32:
|
||||
|
||||
@@ -538,8 +538,18 @@ int test_write_image( cl_device_id device, cl_context context, cl_command_queue
|
||||
log_error( " Error: %f %f %f %f\n", errors[0], errors[1], errors[2], errors[3] );
|
||||
break;
|
||||
case CL_HALF_FLOAT:
|
||||
log_error( " Expected: 0x%4.4x 0x%4.4x 0x%4.4x 0x%4.4x\n", ((cl_ushort*)resultBuffer)[0], ((cl_ushort*)resultBuffer)[1], ((cl_ushort*)resultBuffer)[2], ((cl_ushort*)resultBuffer)[3] );
|
||||
log_error( " Actual: 0x%4.4x 0x%4.4x 0x%4.4x 0x%4.4x\n", ((cl_ushort*)resultPtr)[0], ((cl_ushort*)resultPtr)[1], ((cl_ushort*)resultPtr)[2], ((cl_ushort*)resultPtr)[3] );
|
||||
log_error(" Expected: 0x%4.4x "
|
||||
"0x%4.4x 0x%4.4x 0x%4.4x\n",
|
||||
((cl_half *)resultBuffer)[0],
|
||||
((cl_half *)resultBuffer)[1],
|
||||
((cl_half *)resultBuffer)[2],
|
||||
((cl_half *)resultBuffer)[3]);
|
||||
log_error(" Actual: 0x%4.4x "
|
||||
"0x%4.4x 0x%4.4x 0x%4.4x\n",
|
||||
((cl_half *)resultPtr)[0],
|
||||
((cl_half *)resultPtr)[1],
|
||||
((cl_half *)resultPtr)[2],
|
||||
((cl_half *)resultPtr)[3]);
|
||||
log_error( " Ulps: %f %f %f %f\n", errors[0], errors[1], errors[2], errors[3] );
|
||||
break;
|
||||
case CL_UNSIGNED_INT32:
|
||||
|
||||
@@ -361,8 +361,8 @@ static int verify_readwrite_half(void *ptr1, void *ptr2, int n)
|
||||
{
|
||||
int i;
|
||||
int sum_input = 0, sum_output = 0;
|
||||
cl_ushort *inptr = (cl_ushort *)ptr1;
|
||||
cl_ushort *outptr = (cl_ushort *)ptr2;
|
||||
cl_half *inptr = (cl_half *)ptr1;
|
||||
cl_half *outptr = (cl_half *)ptr2;
|
||||
|
||||
for(i = 0; i < n; i++)
|
||||
{
|
||||
|
||||
@@ -551,8 +551,8 @@ static int verify_write_float( void *ptr1, void *ptr2, int n )
|
||||
static int verify_write_half( void *ptr1, void *ptr2, int n )
|
||||
{
|
||||
int i;
|
||||
cl_ushort *inptr = (cl_ushort *)ptr1;
|
||||
cl_ushort *outptr = (cl_ushort *)ptr2;
|
||||
cl_half *inptr = (cl_half *)ptr1;
|
||||
cl_half *outptr = (cl_half *)ptr2;
|
||||
|
||||
for( i = 0; i < n; i++ ){
|
||||
if( outptr[i] != inptr[i] )
|
||||
|
||||
Reference in New Issue
Block a user