572 lines
21 KiB
C
572 lines
21 KiB
C
//===----- opencl-c-base.h - OpenCL C language base definitions -----------===//
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//
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// Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
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// See https://llvm.org/LICENSE.txt for license information.
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// SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
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//
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//===----------------------------------------------------------------------===//
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#ifndef _OPENCL_BASE_H_
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#define _OPENCL_BASE_H_
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// built-in scalar data types:
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/**
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* An unsigned 8-bit integer.
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*/
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typedef unsigned char uchar;
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/**
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* An unsigned 16-bit integer.
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*/
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typedef unsigned short ushort;
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/**
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* An unsigned 32-bit integer.
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*/
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typedef unsigned int uint;
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/**
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* An unsigned 64-bit integer.
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*/
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typedef unsigned long ulong;
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/**
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* The unsigned integer type of the result of the sizeof operator. This
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* is a 32-bit unsigned integer if CL_DEVICE_ADDRESS_BITS
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* defined in table 4.3 is 32-bits and is a 64-bit unsigned integer if
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* CL_DEVICE_ADDRESS_BITS is 64-bits.
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*/
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typedef __SIZE_TYPE__ size_t;
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/**
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* A signed integer type that is the result of subtracting two pointers.
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* This is a 32-bit signed integer if CL_DEVICE_ADDRESS_BITS
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* defined in table 4.3 is 32-bits and is a 64-bit signed integer if
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* CL_DEVICE_ADDRESS_BITS is 64-bits.
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*/
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typedef __PTRDIFF_TYPE__ ptrdiff_t;
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/**
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* A signed integer type with the property that any valid pointer to
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* void can be converted to this type, then converted back to pointer
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* to void, and the result will compare equal to the original pointer.
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*/
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typedef __INTPTR_TYPE__ intptr_t;
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/**
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* An unsigned integer type with the property that any valid pointer to
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* void can be converted to this type, then converted back to pointer
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* to void, and the result will compare equal to the original pointer.
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*/
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typedef __UINTPTR_TYPE__ uintptr_t;
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// built-in vector data types:
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typedef char char2 __attribute__((ext_vector_type(2)));
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typedef char char3 __attribute__((ext_vector_type(3)));
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typedef char char4 __attribute__((ext_vector_type(4)));
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typedef char char8 __attribute__((ext_vector_type(8)));
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typedef char char16 __attribute__((ext_vector_type(16)));
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typedef uchar uchar2 __attribute__((ext_vector_type(2)));
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typedef uchar uchar3 __attribute__((ext_vector_type(3)));
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typedef uchar uchar4 __attribute__((ext_vector_type(4)));
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typedef uchar uchar8 __attribute__((ext_vector_type(8)));
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typedef uchar uchar16 __attribute__((ext_vector_type(16)));
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typedef short short2 __attribute__((ext_vector_type(2)));
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typedef short short3 __attribute__((ext_vector_type(3)));
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typedef short short4 __attribute__((ext_vector_type(4)));
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typedef short short8 __attribute__((ext_vector_type(8)));
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typedef short short16 __attribute__((ext_vector_type(16)));
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typedef ushort ushort2 __attribute__((ext_vector_type(2)));
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typedef ushort ushort3 __attribute__((ext_vector_type(3)));
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typedef ushort ushort4 __attribute__((ext_vector_type(4)));
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typedef ushort ushort8 __attribute__((ext_vector_type(8)));
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typedef ushort ushort16 __attribute__((ext_vector_type(16)));
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typedef int int2 __attribute__((ext_vector_type(2)));
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typedef int int3 __attribute__((ext_vector_type(3)));
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typedef int int4 __attribute__((ext_vector_type(4)));
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typedef int int8 __attribute__((ext_vector_type(8)));
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typedef int int16 __attribute__((ext_vector_type(16)));
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typedef uint uint2 __attribute__((ext_vector_type(2)));
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typedef uint uint3 __attribute__((ext_vector_type(3)));
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typedef uint uint4 __attribute__((ext_vector_type(4)));
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typedef uint uint8 __attribute__((ext_vector_type(8)));
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typedef uint uint16 __attribute__((ext_vector_type(16)));
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typedef long long2 __attribute__((ext_vector_type(2)));
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typedef long long3 __attribute__((ext_vector_type(3)));
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typedef long long4 __attribute__((ext_vector_type(4)));
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typedef long long8 __attribute__((ext_vector_type(8)));
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typedef long long16 __attribute__((ext_vector_type(16)));
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typedef ulong ulong2 __attribute__((ext_vector_type(2)));
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typedef ulong ulong3 __attribute__((ext_vector_type(3)));
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typedef ulong ulong4 __attribute__((ext_vector_type(4)));
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typedef ulong ulong8 __attribute__((ext_vector_type(8)));
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typedef ulong ulong16 __attribute__((ext_vector_type(16)));
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typedef float float2 __attribute__((ext_vector_type(2)));
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typedef float float3 __attribute__((ext_vector_type(3)));
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typedef float float4 __attribute__((ext_vector_type(4)));
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typedef float float8 __attribute__((ext_vector_type(8)));
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typedef float float16 __attribute__((ext_vector_type(16)));
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#ifdef cl_khr_fp16
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#pragma OPENCL EXTENSION cl_khr_fp16 : enable
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typedef half half2 __attribute__((ext_vector_type(2)));
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typedef half half3 __attribute__((ext_vector_type(3)));
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typedef half half4 __attribute__((ext_vector_type(4)));
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typedef half half8 __attribute__((ext_vector_type(8)));
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typedef half half16 __attribute__((ext_vector_type(16)));
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#endif
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#ifdef cl_khr_fp64
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#if __OPENCL_C_VERSION__ < CL_VERSION_1_2
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#pragma OPENCL EXTENSION cl_khr_fp64 : enable
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#endif
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typedef double double2 __attribute__((ext_vector_type(2)));
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typedef double double3 __attribute__((ext_vector_type(3)));
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typedef double double4 __attribute__((ext_vector_type(4)));
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typedef double double8 __attribute__((ext_vector_type(8)));
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typedef double double16 __attribute__((ext_vector_type(16)));
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#endif
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#if defined(__OPENCL_CPP_VERSION__) || (__OPENCL_C_VERSION__ >= CL_VERSION_2_0)
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#define NULL ((void*)0)
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#endif
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/**
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* Value of maximum non-infinite single-precision floating-point
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* number.
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*/
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#define MAXFLOAT 0x1.fffffep127f
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/**
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* A positive float constant expression. HUGE_VALF evaluates
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* to +infinity. Used as an error value returned by the built-in
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* math functions.
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*/
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#define HUGE_VALF (__builtin_huge_valf())
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/**
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* A positive double constant expression. HUGE_VAL evaluates
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* to +infinity. Used as an error value returned by the built-in
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* math functions.
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*/
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#define HUGE_VAL (__builtin_huge_val())
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/**
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* A constant expression of type float representing positive or
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* unsigned infinity.
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*/
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#define INFINITY (__builtin_inff())
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/**
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* A constant expression of type float representing a quiet NaN.
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*/
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#define NAN as_float(INT_MAX)
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#define FP_ILOGB0 INT_MIN
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#define FP_ILOGBNAN INT_MAX
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#define FLT_DIG 6
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#define FLT_MANT_DIG 24
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#define FLT_MAX_10_EXP +38
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#define FLT_MAX_EXP +128
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#define FLT_MIN_10_EXP -37
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#define FLT_MIN_EXP -125
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#define FLT_RADIX 2
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#define FLT_MAX 0x1.fffffep127f
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#define FLT_MIN 0x1.0p-126f
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#define FLT_EPSILON 0x1.0p-23f
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#define M_E_F 2.71828182845904523536028747135266250f
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#define M_LOG2E_F 1.44269504088896340735992468100189214f
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#define M_LOG10E_F 0.434294481903251827651128918916605082f
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#define M_LN2_F 0.693147180559945309417232121458176568f
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#define M_LN10_F 2.30258509299404568401799145468436421f
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#define M_PI_F 3.14159265358979323846264338327950288f
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#define M_PI_2_F 1.57079632679489661923132169163975144f
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#define M_PI_4_F 0.785398163397448309615660845819875721f
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#define M_1_PI_F 0.318309886183790671537767526745028724f
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#define M_2_PI_F 0.636619772367581343075535053490057448f
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#define M_2_SQRTPI_F 1.12837916709551257389615890312154517f
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#define M_SQRT2_F 1.41421356237309504880168872420969808f
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#define M_SQRT1_2_F 0.707106781186547524400844362104849039f
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#define DBL_DIG 15
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#define DBL_MANT_DIG 53
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#define DBL_MAX_10_EXP +308
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#define DBL_MAX_EXP +1024
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#define DBL_MIN_10_EXP -307
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#define DBL_MIN_EXP -1021
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#define DBL_RADIX 2
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#define DBL_MAX 0x1.fffffffffffffp1023
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#define DBL_MIN 0x1.0p-1022
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#define DBL_EPSILON 0x1.0p-52
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#define M_E 0x1.5bf0a8b145769p+1
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#define M_LOG2E 0x1.71547652b82fep+0
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#define M_LOG10E 0x1.bcb7b1526e50ep-2
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#define M_LN2 0x1.62e42fefa39efp-1
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#define M_LN10 0x1.26bb1bbb55516p+1
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#define M_PI 0x1.921fb54442d18p+1
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#define M_PI_2 0x1.921fb54442d18p+0
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#define M_PI_4 0x1.921fb54442d18p-1
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#define M_1_PI 0x1.45f306dc9c883p-2
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#define M_2_PI 0x1.45f306dc9c883p-1
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#define M_2_SQRTPI 0x1.20dd750429b6dp+0
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#define M_SQRT2 0x1.6a09e667f3bcdp+0
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#define M_SQRT1_2 0x1.6a09e667f3bcdp-1
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#ifdef cl_khr_fp16
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#define HALF_DIG 3
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#define HALF_MANT_DIG 11
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#define HALF_MAX_10_EXP +4
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#define HALF_MAX_EXP +16
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#define HALF_MIN_10_EXP -4
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#define HALF_MIN_EXP -13
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#define HALF_RADIX 2
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#define HALF_MAX ((0x1.ffcp15h))
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#define HALF_MIN ((0x1.0p-14h))
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#define HALF_EPSILON ((0x1.0p-10h))
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#define M_E_H 2.71828182845904523536028747135266250h
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#define M_LOG2E_H 1.44269504088896340735992468100189214h
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#define M_LOG10E_H 0.434294481903251827651128918916605082h
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#define M_LN2_H 0.693147180559945309417232121458176568h
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#define M_LN10_H 2.30258509299404568401799145468436421h
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#define M_PI_H 3.14159265358979323846264338327950288h
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#define M_PI_2_H 1.57079632679489661923132169163975144h
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#define M_PI_4_H 0.785398163397448309615660845819875721h
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#define M_1_PI_H 0.318309886183790671537767526745028724h
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#define M_2_PI_H 0.636619772367581343075535053490057448h
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#define M_2_SQRTPI_H 1.12837916709551257389615890312154517h
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#define M_SQRT2_H 1.41421356237309504880168872420969808h
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#define M_SQRT1_2_H 0.707106781186547524400844362104849039h
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#endif //cl_khr_fp16
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#define CHAR_BIT 8
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#define SCHAR_MAX 127
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#define SCHAR_MIN (-128)
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#define UCHAR_MAX 255
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#define CHAR_MAX SCHAR_MAX
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#define CHAR_MIN SCHAR_MIN
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#define USHRT_MAX 65535
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#define SHRT_MAX 32767
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#define SHRT_MIN (-32768)
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#define UINT_MAX 0xffffffff
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#define INT_MAX 2147483647
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#define INT_MIN (-2147483647-1)
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#define ULONG_MAX 0xffffffffffffffffUL
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#define LONG_MAX 0x7fffffffffffffffL
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#define LONG_MIN (-0x7fffffffffffffffL-1)
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// OpenCL v1.1 s6.11.8, v1.2 s6.12.8, v2.0 s6.13.8 - Synchronization Functions
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// Flag type and values for barrier, mem_fence, read_mem_fence, write_mem_fence
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typedef uint cl_mem_fence_flags;
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/**
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* Queue a memory fence to ensure correct
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* ordering of memory operations to local memory
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*/
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#define CLK_LOCAL_MEM_FENCE 0x01
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/**
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* Queue a memory fence to ensure correct
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* ordering of memory operations to global memory
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*/
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#define CLK_GLOBAL_MEM_FENCE 0x02
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#if defined(__OPENCL_CPP_VERSION__) || (__OPENCL_C_VERSION__ >= CL_VERSION_2_0)
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typedef enum memory_scope {
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memory_scope_work_item = __OPENCL_MEMORY_SCOPE_WORK_ITEM,
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memory_scope_work_group = __OPENCL_MEMORY_SCOPE_WORK_GROUP,
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memory_scope_device = __OPENCL_MEMORY_SCOPE_DEVICE,
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memory_scope_all_svm_devices = __OPENCL_MEMORY_SCOPE_ALL_SVM_DEVICES,
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#if defined(cl_intel_subgroups) || defined(cl_khr_subgroups)
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memory_scope_sub_group = __OPENCL_MEMORY_SCOPE_SUB_GROUP
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#endif
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} memory_scope;
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/**
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* Queue a memory fence to ensure correct ordering of memory
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* operations between work-items of a work-group to
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* image memory.
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*/
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#define CLK_IMAGE_MEM_FENCE 0x04
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#ifndef ATOMIC_VAR_INIT
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#define ATOMIC_VAR_INIT(x) (x)
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#endif //ATOMIC_VAR_INIT
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#define ATOMIC_FLAG_INIT 0
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// enum values aligned with what clang uses in EmitAtomicExpr()
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typedef enum memory_order
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{
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memory_order_relaxed = __ATOMIC_RELAXED,
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memory_order_acquire = __ATOMIC_ACQUIRE,
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memory_order_release = __ATOMIC_RELEASE,
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memory_order_acq_rel = __ATOMIC_ACQ_REL,
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memory_order_seq_cst = __ATOMIC_SEQ_CST
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} memory_order;
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#endif // defined(__OPENCL_CPP_VERSION__) || (__OPENCL_C_VERSION__ >= CL_VERSION_2_0)
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// OpenCL v1.1 s6.11.3, v1.2 s6.12.14, v2.0 s6.13.14 - Image Read and Write Functions
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// These values need to match the runtime equivalent
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//
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// Addressing Mode.
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//
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#define CLK_ADDRESS_NONE 0
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#define CLK_ADDRESS_CLAMP_TO_EDGE 2
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#define CLK_ADDRESS_CLAMP 4
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#define CLK_ADDRESS_REPEAT 6
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#define CLK_ADDRESS_MIRRORED_REPEAT 8
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//
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// Coordination Normalization
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//
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#define CLK_NORMALIZED_COORDS_FALSE 0
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#define CLK_NORMALIZED_COORDS_TRUE 1
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//
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// Filtering Mode.
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//
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#define CLK_FILTER_NEAREST 0x10
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#define CLK_FILTER_LINEAR 0x20
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#ifdef cl_khr_gl_msaa_sharing
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#pragma OPENCL EXTENSION cl_khr_gl_msaa_sharing : enable
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#endif //cl_khr_gl_msaa_sharing
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//
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// Channel Datatype.
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//
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#define CLK_SNORM_INT8 0x10D0
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#define CLK_SNORM_INT16 0x10D1
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#define CLK_UNORM_INT8 0x10D2
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#define CLK_UNORM_INT16 0x10D3
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#define CLK_UNORM_SHORT_565 0x10D4
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#define CLK_UNORM_SHORT_555 0x10D5
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#define CLK_UNORM_INT_101010 0x10D6
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#define CLK_SIGNED_INT8 0x10D7
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#define CLK_SIGNED_INT16 0x10D8
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#define CLK_SIGNED_INT32 0x10D9
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#define CLK_UNSIGNED_INT8 0x10DA
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#define CLK_UNSIGNED_INT16 0x10DB
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#define CLK_UNSIGNED_INT32 0x10DC
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#define CLK_HALF_FLOAT 0x10DD
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#define CLK_FLOAT 0x10DE
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#define CLK_UNORM_INT24 0x10DF
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// Channel order, numbering must be aligned with cl_channel_order in cl.h
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//
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#define CLK_R 0x10B0
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#define CLK_A 0x10B1
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#define CLK_RG 0x10B2
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#define CLK_RA 0x10B3
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#define CLK_RGB 0x10B4
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#define CLK_RGBA 0x10B5
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#define CLK_BGRA 0x10B6
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#define CLK_ARGB 0x10B7
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#define CLK_INTENSITY 0x10B8
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#define CLK_LUMINANCE 0x10B9
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#define CLK_Rx 0x10BA
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#define CLK_RGx 0x10BB
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#define CLK_RGBx 0x10BC
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#define CLK_DEPTH 0x10BD
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#define CLK_DEPTH_STENCIL 0x10BE
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#if __OPENCL_C_VERSION__ >= CL_VERSION_2_0
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#define CLK_sRGB 0x10BF
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#define CLK_sRGBx 0x10C0
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#define CLK_sRGBA 0x10C1
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#define CLK_sBGRA 0x10C2
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#define CLK_ABGR 0x10C3
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#endif //__OPENCL_C_VERSION__ >= CL_VERSION_2_0
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// OpenCL v2.0 s6.13.16 - Pipe Functions
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#if defined(__OPENCL_CPP_VERSION__) || (__OPENCL_C_VERSION__ >= CL_VERSION_2_0)
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#define CLK_NULL_RESERVE_ID (__builtin_astype(((void*)(__SIZE_MAX__)), reserve_id_t))
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// OpenCL v2.0 s6.13.17 - Enqueue Kernels
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#define CL_COMPLETE 0x0
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#define CL_RUNNING 0x1
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#define CL_SUBMITTED 0x2
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#define CL_QUEUED 0x3
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#define CLK_SUCCESS 0
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#define CLK_ENQUEUE_FAILURE -101
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#define CLK_INVALID_QUEUE -102
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#define CLK_INVALID_NDRANGE -160
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#define CLK_INVALID_EVENT_WAIT_LIST -57
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#define CLK_DEVICE_QUEUE_FULL -161
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#define CLK_INVALID_ARG_SIZE -51
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#define CLK_EVENT_ALLOCATION_FAILURE -100
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#define CLK_OUT_OF_RESOURCES -5
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#define CLK_NULL_QUEUE 0
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#define CLK_NULL_EVENT (__builtin_astype(((void*)(__SIZE_MAX__)), clk_event_t))
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// execution model related definitions
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#define CLK_ENQUEUE_FLAGS_NO_WAIT 0x0
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#define CLK_ENQUEUE_FLAGS_WAIT_KERNEL 0x1
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#define CLK_ENQUEUE_FLAGS_WAIT_WORK_GROUP 0x2
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typedef int kernel_enqueue_flags_t;
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typedef int clk_profiling_info;
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// Profiling info name (see capture_event_profiling_info)
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#define CLK_PROFILING_COMMAND_EXEC_TIME 0x1
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#define MAX_WORK_DIM 3
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typedef struct {
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unsigned int workDimension;
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size_t globalWorkOffset[MAX_WORK_DIM];
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size_t globalWorkSize[MAX_WORK_DIM];
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size_t localWorkSize[MAX_WORK_DIM];
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} ndrange_t;
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#endif // defined(__OPENCL_CPP_VERSION__) || (__OPENCL_C_VERSION__ >= CL_VERSION_2_0)
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#ifdef cl_intel_device_side_avc_motion_estimation
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#pragma OPENCL EXTENSION cl_intel_device_side_avc_motion_estimation : begin
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#define CLK_AVC_ME_MAJOR_16x16_INTEL 0x0
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#define CLK_AVC_ME_MAJOR_16x8_INTEL 0x1
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#define CLK_AVC_ME_MAJOR_8x16_INTEL 0x2
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#define CLK_AVC_ME_MAJOR_8x8_INTEL 0x3
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#define CLK_AVC_ME_MINOR_8x8_INTEL 0x0
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#define CLK_AVC_ME_MINOR_8x4_INTEL 0x1
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#define CLK_AVC_ME_MINOR_4x8_INTEL 0x2
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#define CLK_AVC_ME_MINOR_4x4_INTEL 0x3
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#define CLK_AVC_ME_MAJOR_FORWARD_INTEL 0x0
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#define CLK_AVC_ME_MAJOR_BACKWARD_INTEL 0x1
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#define CLK_AVC_ME_MAJOR_BIDIRECTIONAL_INTEL 0x2
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#define CLK_AVC_ME_PARTITION_MASK_ALL_INTEL 0x0
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#define CLK_AVC_ME_PARTITION_MASK_16x16_INTEL 0x7E
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#define CLK_AVC_ME_PARTITION_MASK_16x8_INTEL 0x7D
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#define CLK_AVC_ME_PARTITION_MASK_8x16_INTEL 0x7B
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#define CLK_AVC_ME_PARTITION_MASK_8x8_INTEL 0x77
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#define CLK_AVC_ME_PARTITION_MASK_8x4_INTEL 0x6F
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#define CLK_AVC_ME_PARTITION_MASK_4x8_INTEL 0x5F
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#define CLK_AVC_ME_PARTITION_MASK_4x4_INTEL 0x3F
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#define CLK_AVC_ME_SLICE_TYPE_PRED_INTEL 0x0
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#define CLK_AVC_ME_SLICE_TYPE_BPRED_INTEL 0x1
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#define CLK_AVC_ME_SLICE_TYPE_INTRA_INTEL 0x2
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#define CLK_AVC_ME_SEARCH_WINDOW_EXHAUSTIVE_INTEL 0x0
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#define CLK_AVC_ME_SEARCH_WINDOW_SMALL_INTEL 0x1
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#define CLK_AVC_ME_SEARCH_WINDOW_TINY_INTEL 0x2
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#define CLK_AVC_ME_SEARCH_WINDOW_EXTRA_TINY_INTEL 0x3
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#define CLK_AVC_ME_SEARCH_WINDOW_DIAMOND_INTEL 0x4
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#define CLK_AVC_ME_SEARCH_WINDOW_LARGE_DIAMOND_INTEL 0x5
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#define CLK_AVC_ME_SEARCH_WINDOW_RESERVED0_INTEL 0x6
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#define CLK_AVC_ME_SEARCH_WINDOW_RESERVED1_INTEL 0x7
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#define CLK_AVC_ME_SEARCH_WINDOW_CUSTOM_INTEL 0x8
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#define CLK_AVC_ME_SAD_ADJUST_MODE_NONE_INTEL 0x0
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#define CLK_AVC_ME_SAD_ADJUST_MODE_HAAR_INTEL 0x2
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#define CLK_AVC_ME_SUBPIXEL_MODE_INTEGER_INTEL 0x0
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#define CLK_AVC_ME_SUBPIXEL_MODE_HPEL_INTEL 0x1
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#define CLK_AVC_ME_SUBPIXEL_MODE_QPEL_INTEL 0x3
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#define CLK_AVC_ME_COST_PRECISION_QPEL_INTEL 0x0
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#define CLK_AVC_ME_COST_PRECISION_HPEL_INTEL 0x1
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#define CLK_AVC_ME_COST_PRECISION_PEL_INTEL 0x2
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#define CLK_AVC_ME_COST_PRECISION_DPEL_INTEL 0x3
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#define CLK_AVC_ME_BIDIR_WEIGHT_QUARTER_INTEL 0x10
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#define CLK_AVC_ME_BIDIR_WEIGHT_THIRD_INTEL 0x15
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#define CLK_AVC_ME_BIDIR_WEIGHT_HALF_INTEL 0x20
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#define CLK_AVC_ME_BIDIR_WEIGHT_TWO_THIRD_INTEL 0x2B
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#define CLK_AVC_ME_BIDIR_WEIGHT_THREE_QUARTER_INTEL 0x30
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#define CLK_AVC_ME_BORDER_REACHED_LEFT_INTEL 0x0
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#define CLK_AVC_ME_BORDER_REACHED_RIGHT_INTEL 0x2
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#define CLK_AVC_ME_BORDER_REACHED_TOP_INTEL 0x4
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#define CLK_AVC_ME_BORDER_REACHED_BOTTOM_INTEL 0x8
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#define CLK_AVC_ME_INTRA_16x16_INTEL 0x0
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#define CLK_AVC_ME_INTRA_8x8_INTEL 0x1
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#define CLK_AVC_ME_INTRA_4x4_INTEL 0x2
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#define CLK_AVC_ME_SKIP_BLOCK_PARTITION_16x16_INTEL 0x0
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#define CLK_AVC_ME_SKIP_BLOCK_PARTITION_8x8_INTEL 0x4000
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#define CLK_AVC_ME_SKIP_BLOCK_16x16_FORWARD_ENABLE_INTEL (0x1 << 24)
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#define CLK_AVC_ME_SKIP_BLOCK_16x16_BACKWARD_ENABLE_INTEL (0x2 << 24)
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#define CLK_AVC_ME_SKIP_BLOCK_16x16_DUAL_ENABLE_INTEL (0x3 << 24)
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#define CLK_AVC_ME_SKIP_BLOCK_8x8_FORWARD_ENABLE_INTEL (0x55 << 24)
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#define CLK_AVC_ME_SKIP_BLOCK_8x8_BACKWARD_ENABLE_INTEL (0xAA << 24)
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#define CLK_AVC_ME_SKIP_BLOCK_8x8_DUAL_ENABLE_INTEL (0xFF << 24)
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#define CLK_AVC_ME_SKIP_BLOCK_8x8_0_FORWARD_ENABLE_INTEL (0x1 << 24)
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#define CLK_AVC_ME_SKIP_BLOCK_8x8_0_BACKWARD_ENABLE_INTEL (0x2 << 24)
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#define CLK_AVC_ME_SKIP_BLOCK_8x8_1_FORWARD_ENABLE_INTEL (0x1 << 26)
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#define CLK_AVC_ME_SKIP_BLOCK_8x8_1_BACKWARD_ENABLE_INTEL (0x2 << 26)
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#define CLK_AVC_ME_SKIP_BLOCK_8x8_2_FORWARD_ENABLE_INTEL (0x1 << 28)
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#define CLK_AVC_ME_SKIP_BLOCK_8x8_2_BACKWARD_ENABLE_INTEL (0x2 << 28)
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#define CLK_AVC_ME_SKIP_BLOCK_8x8_3_FORWARD_ENABLE_INTEL (0x1 << 30)
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#define CLK_AVC_ME_SKIP_BLOCK_8x8_3_BACKWARD_ENABLE_INTEL (0x2 << 30)
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#define CLK_AVC_ME_BLOCK_BASED_SKIP_4x4_INTEL 0x00
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#define CLK_AVC_ME_BLOCK_BASED_SKIP_8x8_INTEL 0x80
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#define CLK_AVC_ME_INTRA_LUMA_PARTITION_MASK_ALL_INTEL 0x0
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#define CLK_AVC_ME_INTRA_LUMA_PARTITION_MASK_16x16_INTEL 0x6
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#define CLK_AVC_ME_INTRA_LUMA_PARTITION_MASK_8x8_INTEL 0x5
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#define CLK_AVC_ME_INTRA_LUMA_PARTITION_MASK_4x4_INTEL 0x3
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#define CLK_AVC_ME_INTRA_NEIGHBOR_LEFT_MASK_ENABLE_INTEL 0x60
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#define CLK_AVC_ME_INTRA_NEIGHBOR_UPPER_MASK_ENABLE_INTEL 0x10
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#define CLK_AVC_ME_INTRA_NEIGHBOR_UPPER_RIGHT_MASK_ENABLE_INTEL 0x8
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#define CLK_AVC_ME_INTRA_NEIGHBOR_UPPER_LEFT_MASK_ENABLE_INTEL 0x4
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#define CLK_AVC_ME_LUMA_PREDICTOR_MODE_VERTICAL_INTEL 0x0
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#define CLK_AVC_ME_LUMA_PREDICTOR_MODE_HORIZONTAL_INTEL 0x1
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#define CLK_AVC_ME_LUMA_PREDICTOR_MODE_DC_INTEL 0x2
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#define CLK_AVC_ME_LUMA_PREDICTOR_MODE_DIAGONAL_DOWN_LEFT_INTEL 0x3
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#define CLK_AVC_ME_LUMA_PREDICTOR_MODE_DIAGONAL_DOWN_RIGHT_INTEL 0x4
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#define CLK_AVC_ME_LUMA_PREDICTOR_MODE_PLANE_INTEL 0x4
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#define CLK_AVC_ME_LUMA_PREDICTOR_MODE_VERTICAL_RIGHT_INTEL 0x5
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#define CLK_AVC_ME_LUMA_PREDICTOR_MODE_HORIZONTAL_DOWN_INTEL 0x6
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#define CLK_AVC_ME_LUMA_PREDICTOR_MODE_VERTICAL_LEFT_INTEL 0x7
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#define CLK_AVC_ME_LUMA_PREDICTOR_MODE_HORIZONTAL_UP_INTEL 0x8
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#define CLK_AVC_ME_CHROMA_PREDICTOR_MODE_DC_INTEL 0x0
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#define CLK_AVC_ME_CHROMA_PREDICTOR_MODE_HORIZONTAL_INTEL 0x1
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#define CLK_AVC_ME_CHROMA_PREDICTOR_MODE_VERTICAL_INTEL 0x2
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#define CLK_AVC_ME_CHROMA_PREDICTOR_MODE_PLANE_INTEL 0x3
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#define CLK_AVC_ME_FRAME_FORWARD_INTEL 0x1
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#define CLK_AVC_ME_FRAME_BACKWARD_INTEL 0x2
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#define CLK_AVC_ME_FRAME_DUAL_INTEL 0x3
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#define CLK_AVC_ME_INTERLACED_SCAN_TOP_FIELD_INTEL 0x0
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#define CLK_AVC_ME_INTERLACED_SCAN_BOTTOM_FIELD_INTEL 0x1
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#define CLK_AVC_ME_INITIALIZE_INTEL 0x0
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#define CLK_AVC_IME_PAYLOAD_INITIALIZE_INTEL 0x0
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#define CLK_AVC_REF_PAYLOAD_INITIALIZE_INTEL 0x0
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#define CLK_AVC_SIC_PAYLOAD_INITIALIZE_INTEL 0x0
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#define CLK_AVC_IME_RESULT_INITIALIZE_INTEL 0x0
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#define CLK_AVC_REF_RESULT_INITIALIZE_INTEL 0x0
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#define CLK_AVC_SIC_RESULT_INITIALIZE_INTEL 0x0
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#define CLK_AVC_IME_RESULT_SINGLE_REFERENCE_STREAMOUT_INITIALIZE_INTEL 0x0
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#define CLK_AVC_IME_RESULT_SINGLE_REFERENCE_STREAMIN_INITIALIZE_INTEL 0x0
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#define CLK_AVC_IME_RESULT_DUAL_REFERENCE_STREAMOUT_INITIALIZE_INTEL 0x0
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#define CLK_AVC_IME_RESULT_DUAL_REFERENCE_STREAMIN_INITIALIZE_INTEL 0x0
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#pragma OPENCL EXTENSION cl_intel_device_side_avc_motion_estimation : end
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#endif // cl_intel_device_side_avc_motion_estimation
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#endif //_OPENCL_BASE_H_
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