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1346 lines
47 KiB
1346 lines
47 KiB
/*
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* Copyright (C) 2016 The Android Open Source Project
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*
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* Licensed under the Apache License, Version 2.0 (the "License");
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* you may not use this file except in compliance with the License.
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* You may obtain a copy of the License at
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*
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* http://www.apache.org/licenses/LICENSE-2.0
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*
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* Unless required by applicable law or agreed to in writing, software
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* distributed under the License is distributed on an "AS IS" BASIS,
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* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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* See the License for the specific language governing permissions and
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* limitations under the License.
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*/
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// Don't edit this file! It is auto-generated by frameworks/rs/api/generate.sh.
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/*
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* rs_allocation_create.rsh: Allocation Creation Functions
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*
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* The functions below can be used to create Allocations from a Script.
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*
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* These functions can be called directly or indirectly from an invokable
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* function. If some control-flow path can result in a call to these functions
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* from a RenderScript kernel function, a compiler error will be generated.
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*/
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#ifndef RENDERSCRIPT_RS_ALLOCATION_CREATE_RSH
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#define RENDERSCRIPT_RS_ALLOCATION_CREATE_RSH
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/*
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* rsCreateElement: Creates an rs_element object of the specified data type
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*
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* Creates an rs_element object of the specified data type. The data kind of
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* the Element will be set to RS_KIND_USER and vector_width will be set to 1,
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* indicating non-vector.
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*
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* Parameters:
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* data_type: Data type of the Element
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*/
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#if (defined(RS_VERSION) && (RS_VERSION >= 24))
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extern rs_element __attribute__((overloadable))
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rsCreateElement(rs_data_type data_type);
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#endif
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/*
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* rsCreateVectorElement: Creates an rs_element object of the specified data type and vector width
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*
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* Creates an rs_element object of the specified data type and vector width.
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* Value of vector_width must be 2, 3 or 4. The data kind of the Element will
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* be set to RS_KIND_USER.
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*
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* Parameters:
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* data_type: Data type of the Element
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* vector_width: Vector width (either 2, 3, or 4)
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*/
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#if (defined(RS_VERSION) && (RS_VERSION >= 24))
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extern rs_element __attribute__((overloadable))
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rsCreateVectorElement(rs_data_type data_type, uint32_t vector_width);
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#endif
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/*
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* rsCreatePixelElement: Creates an rs_element object of the specified data type and data kind
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*
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* Creates an rs_element object of the specified data type and data kind. The
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* vector_width of the Element will be set to 1, indicating non-vector.
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*
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* Parameters:
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* data_type: Data type of the Element
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* data_kind: Data kind of the Element
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*/
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#if (defined(RS_VERSION) && (RS_VERSION >= 24))
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extern rs_element __attribute__((overloadable))
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rsCreatePixelElement(rs_data_type data_type, rs_data_kind data_kind);
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#endif
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/*
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* rsCreateType: Creates an rs_type object with the specified Element and shape attributes
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*
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* Creates an rs_type object with the specified Element and shape attributes.
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*
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* dimX specifies the size of the X dimension.
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*
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* dimY, if present and non-zero, indicates that the Y dimension is present and
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* indicates its size.
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*
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* dimZ, if present and non-zero, indicates that the Z dimension is present and
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* indicates its size.
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*
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* mipmaps indicates the presence of level of detail (LOD).
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*
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* faces indicates the presence of cubemap faces.
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*
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* yuv_format indicates the associated YUV format (or RS_YUV_NONE).
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*
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* Parameters:
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* element: Element to be associated with the Type
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* dimX: Size along the X dimension
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* dimY: Size along the Y dimension
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* dimZ: Size along the Z dimension
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* mipmaps: Flag indicating if the Type has a mipmap chain
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* faces: Flag indicating if the Type is a cubemap
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* yuv_format: YUV layout for the Type
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*/
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#if (defined(RS_VERSION) && (RS_VERSION >= 24))
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extern rs_type __attribute__((overloadable))
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rsCreateType(rs_element element, uint32_t dimX, uint32_t dimY, uint32_t dimZ, bool mipmaps,
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bool faces, rs_yuv_format yuv_format);
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#endif
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#if (defined(RS_VERSION) && (RS_VERSION >= 24))
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extern rs_type __attribute__((overloadable))
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rsCreateType(rs_element element, uint32_t dimX, uint32_t dimY, uint32_t dimZ);
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#endif
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#if (defined(RS_VERSION) && (RS_VERSION >= 24))
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extern rs_type __attribute__((overloadable))
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rsCreateType(rs_element element, uint32_t dimX, uint32_t dimY);
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#endif
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#if (defined(RS_VERSION) && (RS_VERSION >= 24))
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extern rs_type __attribute__((overloadable))
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rsCreateType(rs_element element, uint32_t dimX);
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#endif
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/*
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* rsCreateAllocation: Create an rs_allocation object of given Type.
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*
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* Creates an rs_allocation object of the given Type and usage.
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*
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* RS_ALLOCATION_USAGE_SCRIPT and RS_ALLOCATION_USAGE_GRAPHICS_TEXTURE are the
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* only supported usage flags for Allocations created from within a RenderScript
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* Script.
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*
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* You can also use rsCreateAllocation_ wrapper functions to directly
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* create Allocations of scalar and vector numerical types without creating
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* intermediate rs_element or rs_type objects.
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*
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* E.g. rsCreateAllocation_int4() returns an Allocation of int4 data type of
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* specified dimensions.
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*
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* Parameters:
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* type: Type of the Allocation
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* usage: Usage flag for the allocation
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*/
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#if (defined(RS_VERSION) && (RS_VERSION >= 24))
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extern rs_allocation __attribute__((overloadable))
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rsCreateAllocation(rs_type type, uint32_t usage);
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#endif
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#if (defined(RS_VERSION) && (RS_VERSION >= 24))
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extern rs_allocation __attribute__((overloadable))
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rsCreateAllocation(rs_type type);
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#endif
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#if (defined(RS_VERSION) && (RS_VERSION >= 24))
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static inline rs_allocation __attribute__((overloadable))
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rsCreateAllocation_half(uint32_t dimX, uint32_t dimY, uint32_t dimZ) {
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rs_element e = rsCreateElement(RS_TYPE_FLOAT_16);
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rs_type t = rsCreateType(e, dimX, dimY, dimZ);
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return rsCreateAllocation(t);
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}
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#endif
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#if (defined(RS_VERSION) && (RS_VERSION >= 24))
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static inline rs_allocation __attribute__((overloadable))
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rsCreateAllocation_float(uint32_t dimX, uint32_t dimY, uint32_t dimZ) {
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rs_element e = rsCreateElement(RS_TYPE_FLOAT_32);
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rs_type t = rsCreateType(e, dimX, dimY, dimZ);
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return rsCreateAllocation(t);
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}
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#endif
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#if (defined(RS_VERSION) && (RS_VERSION >= 24))
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static inline rs_allocation __attribute__((overloadable))
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rsCreateAllocation_double(uint32_t dimX, uint32_t dimY, uint32_t dimZ) {
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rs_element e = rsCreateElement(RS_TYPE_FLOAT_64);
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rs_type t = rsCreateType(e, dimX, dimY, dimZ);
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return rsCreateAllocation(t);
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}
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#endif
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#if (defined(RS_VERSION) && (RS_VERSION >= 24))
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static inline rs_allocation __attribute__((overloadable))
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rsCreateAllocation_char(uint32_t dimX, uint32_t dimY, uint32_t dimZ) {
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rs_element e = rsCreateElement(RS_TYPE_SIGNED_8);
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rs_type t = rsCreateType(e, dimX, dimY, dimZ);
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return rsCreateAllocation(t);
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}
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#endif
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#if (defined(RS_VERSION) && (RS_VERSION >= 24))
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static inline rs_allocation __attribute__((overloadable))
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rsCreateAllocation_uchar(uint32_t dimX, uint32_t dimY, uint32_t dimZ) {
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rs_element e = rsCreateElement(RS_TYPE_UNSIGNED_8);
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rs_type t = rsCreateType(e, dimX, dimY, dimZ);
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return rsCreateAllocation(t);
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}
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#endif
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#if (defined(RS_VERSION) && (RS_VERSION >= 24))
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static inline rs_allocation __attribute__((overloadable))
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rsCreateAllocation_short(uint32_t dimX, uint32_t dimY, uint32_t dimZ) {
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rs_element e = rsCreateElement(RS_TYPE_SIGNED_16);
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rs_type t = rsCreateType(e, dimX, dimY, dimZ);
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return rsCreateAllocation(t);
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}
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#endif
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#if (defined(RS_VERSION) && (RS_VERSION >= 24))
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static inline rs_allocation __attribute__((overloadable))
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rsCreateAllocation_ushort(uint32_t dimX, uint32_t dimY, uint32_t dimZ) {
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rs_element e = rsCreateElement(RS_TYPE_UNSIGNED_16);
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rs_type t = rsCreateType(e, dimX, dimY, dimZ);
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return rsCreateAllocation(t);
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}
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#endif
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#if (defined(RS_VERSION) && (RS_VERSION >= 24))
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static inline rs_allocation __attribute__((overloadable))
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rsCreateAllocation_int(uint32_t dimX, uint32_t dimY, uint32_t dimZ) {
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rs_element e = rsCreateElement(RS_TYPE_SIGNED_32);
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rs_type t = rsCreateType(e, dimX, dimY, dimZ);
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return rsCreateAllocation(t);
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}
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#endif
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#if (defined(RS_VERSION) && (RS_VERSION >= 24))
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static inline rs_allocation __attribute__((overloadable))
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rsCreateAllocation_uint(uint32_t dimX, uint32_t dimY, uint32_t dimZ) {
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rs_element e = rsCreateElement(RS_TYPE_UNSIGNED_32);
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rs_type t = rsCreateType(e, dimX, dimY, dimZ);
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return rsCreateAllocation(t);
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}
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#endif
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#if (defined(RS_VERSION) && (RS_VERSION >= 24))
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static inline rs_allocation __attribute__((overloadable))
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rsCreateAllocation_long(uint32_t dimX, uint32_t dimY, uint32_t dimZ) {
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rs_element e = rsCreateElement(RS_TYPE_SIGNED_64);
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rs_type t = rsCreateType(e, dimX, dimY, dimZ);
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return rsCreateAllocation(t);
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}
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#endif
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#if (defined(RS_VERSION) && (RS_VERSION >= 24))
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static inline rs_allocation __attribute__((overloadable))
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rsCreateAllocation_ulong(uint32_t dimX, uint32_t dimY, uint32_t dimZ) {
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rs_element e = rsCreateElement(RS_TYPE_UNSIGNED_64);
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rs_type t = rsCreateType(e, dimX, dimY, dimZ);
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return rsCreateAllocation(t);
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}
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#endif
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#if (defined(RS_VERSION) && (RS_VERSION >= 24))
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static inline rs_allocation __attribute__((overloadable))
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rsCreateAllocation_half2(uint32_t dimX, uint32_t dimY, uint32_t dimZ) {
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rs_element e = rsCreateVectorElement(RS_TYPE_FLOAT_16, 2);
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rs_type t = rsCreateType(e, dimX, dimY, dimZ);
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return rsCreateAllocation(t);
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}
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#endif
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#if (defined(RS_VERSION) && (RS_VERSION >= 24))
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static inline rs_allocation __attribute__((overloadable))
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rsCreateAllocation_half3(uint32_t dimX, uint32_t dimY, uint32_t dimZ) {
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rs_element e = rsCreateVectorElement(RS_TYPE_FLOAT_16, 3);
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rs_type t = rsCreateType(e, dimX, dimY, dimZ);
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return rsCreateAllocation(t);
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}
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#endif
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#if (defined(RS_VERSION) && (RS_VERSION >= 24))
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static inline rs_allocation __attribute__((overloadable))
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rsCreateAllocation_half4(uint32_t dimX, uint32_t dimY, uint32_t dimZ) {
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rs_element e = rsCreateVectorElement(RS_TYPE_FLOAT_16, 4);
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rs_type t = rsCreateType(e, dimX, dimY, dimZ);
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return rsCreateAllocation(t);
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}
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#endif
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#if (defined(RS_VERSION) && (RS_VERSION >= 24))
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static inline rs_allocation __attribute__((overloadable))
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rsCreateAllocation_float2(uint32_t dimX, uint32_t dimY, uint32_t dimZ) {
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rs_element e = rsCreateVectorElement(RS_TYPE_FLOAT_32, 2);
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rs_type t = rsCreateType(e, dimX, dimY, dimZ);
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return rsCreateAllocation(t);
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}
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#endif
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#if (defined(RS_VERSION) && (RS_VERSION >= 24))
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static inline rs_allocation __attribute__((overloadable))
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rsCreateAllocation_float3(uint32_t dimX, uint32_t dimY, uint32_t dimZ) {
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rs_element e = rsCreateVectorElement(RS_TYPE_FLOAT_32, 3);
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rs_type t = rsCreateType(e, dimX, dimY, dimZ);
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return rsCreateAllocation(t);
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}
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#endif
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#if (defined(RS_VERSION) && (RS_VERSION >= 24))
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static inline rs_allocation __attribute__((overloadable))
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rsCreateAllocation_float4(uint32_t dimX, uint32_t dimY, uint32_t dimZ) {
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rs_element e = rsCreateVectorElement(RS_TYPE_FLOAT_32, 4);
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rs_type t = rsCreateType(e, dimX, dimY, dimZ);
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return rsCreateAllocation(t);
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}
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#endif
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#if (defined(RS_VERSION) && (RS_VERSION >= 24))
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static inline rs_allocation __attribute__((overloadable))
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rsCreateAllocation_double2(uint32_t dimX, uint32_t dimY, uint32_t dimZ) {
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rs_element e = rsCreateVectorElement(RS_TYPE_FLOAT_64, 2);
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rs_type t = rsCreateType(e, dimX, dimY, dimZ);
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return rsCreateAllocation(t);
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}
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#endif
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#if (defined(RS_VERSION) && (RS_VERSION >= 24))
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static inline rs_allocation __attribute__((overloadable))
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rsCreateAllocation_double3(uint32_t dimX, uint32_t dimY, uint32_t dimZ) {
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rs_element e = rsCreateVectorElement(RS_TYPE_FLOAT_64, 3);
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rs_type t = rsCreateType(e, dimX, dimY, dimZ);
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return rsCreateAllocation(t);
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}
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#endif
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#if (defined(RS_VERSION) && (RS_VERSION >= 24))
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static inline rs_allocation __attribute__((overloadable))
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rsCreateAllocation_double4(uint32_t dimX, uint32_t dimY, uint32_t dimZ) {
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rs_element e = rsCreateVectorElement(RS_TYPE_FLOAT_64, 4);
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rs_type t = rsCreateType(e, dimX, dimY, dimZ);
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return rsCreateAllocation(t);
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}
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#endif
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#if (defined(RS_VERSION) && (RS_VERSION >= 24))
|
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static inline rs_allocation __attribute__((overloadable))
|
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rsCreateAllocation_char2(uint32_t dimX, uint32_t dimY, uint32_t dimZ) {
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rs_element e = rsCreateVectorElement(RS_TYPE_SIGNED_8, 2);
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rs_type t = rsCreateType(e, dimX, dimY, dimZ);
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return rsCreateAllocation(t);
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}
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|
#endif
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#if (defined(RS_VERSION) && (RS_VERSION >= 24))
|
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static inline rs_allocation __attribute__((overloadable))
|
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rsCreateAllocation_char3(uint32_t dimX, uint32_t dimY, uint32_t dimZ) {
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rs_element e = rsCreateVectorElement(RS_TYPE_SIGNED_8, 3);
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|
rs_type t = rsCreateType(e, dimX, dimY, dimZ);
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return rsCreateAllocation(t);
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|
}
|
|
#endif
|
|
|
|
#if (defined(RS_VERSION) && (RS_VERSION >= 24))
|
|
static inline rs_allocation __attribute__((overloadable))
|
|
rsCreateAllocation_char4(uint32_t dimX, uint32_t dimY, uint32_t dimZ) {
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|
rs_element e = rsCreateVectorElement(RS_TYPE_SIGNED_8, 4);
|
|
rs_type t = rsCreateType(e, dimX, dimY, dimZ);
|
|
return rsCreateAllocation(t);
|
|
}
|
|
#endif
|
|
|
|
#if (defined(RS_VERSION) && (RS_VERSION >= 24))
|
|
static inline rs_allocation __attribute__((overloadable))
|
|
rsCreateAllocation_uchar2(uint32_t dimX, uint32_t dimY, uint32_t dimZ) {
|
|
rs_element e = rsCreateVectorElement(RS_TYPE_UNSIGNED_8, 2);
|
|
rs_type t = rsCreateType(e, dimX, dimY, dimZ);
|
|
return rsCreateAllocation(t);
|
|
}
|
|
#endif
|
|
|
|
#if (defined(RS_VERSION) && (RS_VERSION >= 24))
|
|
static inline rs_allocation __attribute__((overloadable))
|
|
rsCreateAllocation_uchar3(uint32_t dimX, uint32_t dimY, uint32_t dimZ) {
|
|
rs_element e = rsCreateVectorElement(RS_TYPE_UNSIGNED_8, 3);
|
|
rs_type t = rsCreateType(e, dimX, dimY, dimZ);
|
|
return rsCreateAllocation(t);
|
|
}
|
|
#endif
|
|
|
|
#if (defined(RS_VERSION) && (RS_VERSION >= 24))
|
|
static inline rs_allocation __attribute__((overloadable))
|
|
rsCreateAllocation_uchar4(uint32_t dimX, uint32_t dimY, uint32_t dimZ) {
|
|
rs_element e = rsCreateVectorElement(RS_TYPE_UNSIGNED_8, 4);
|
|
rs_type t = rsCreateType(e, dimX, dimY, dimZ);
|
|
return rsCreateAllocation(t);
|
|
}
|
|
#endif
|
|
|
|
#if (defined(RS_VERSION) && (RS_VERSION >= 24))
|
|
static inline rs_allocation __attribute__((overloadable))
|
|
rsCreateAllocation_short2(uint32_t dimX, uint32_t dimY, uint32_t dimZ) {
|
|
rs_element e = rsCreateVectorElement(RS_TYPE_SIGNED_16, 2);
|
|
rs_type t = rsCreateType(e, dimX, dimY, dimZ);
|
|
return rsCreateAllocation(t);
|
|
}
|
|
#endif
|
|
|
|
#if (defined(RS_VERSION) && (RS_VERSION >= 24))
|
|
static inline rs_allocation __attribute__((overloadable))
|
|
rsCreateAllocation_short3(uint32_t dimX, uint32_t dimY, uint32_t dimZ) {
|
|
rs_element e = rsCreateVectorElement(RS_TYPE_SIGNED_16, 3);
|
|
rs_type t = rsCreateType(e, dimX, dimY, dimZ);
|
|
return rsCreateAllocation(t);
|
|
}
|
|
#endif
|
|
|
|
#if (defined(RS_VERSION) && (RS_VERSION >= 24))
|
|
static inline rs_allocation __attribute__((overloadable))
|
|
rsCreateAllocation_short4(uint32_t dimX, uint32_t dimY, uint32_t dimZ) {
|
|
rs_element e = rsCreateVectorElement(RS_TYPE_SIGNED_16, 4);
|
|
rs_type t = rsCreateType(e, dimX, dimY, dimZ);
|
|
return rsCreateAllocation(t);
|
|
}
|
|
#endif
|
|
|
|
#if (defined(RS_VERSION) && (RS_VERSION >= 24))
|
|
static inline rs_allocation __attribute__((overloadable))
|
|
rsCreateAllocation_ushort2(uint32_t dimX, uint32_t dimY, uint32_t dimZ) {
|
|
rs_element e = rsCreateVectorElement(RS_TYPE_UNSIGNED_16, 2);
|
|
rs_type t = rsCreateType(e, dimX, dimY, dimZ);
|
|
return rsCreateAllocation(t);
|
|
}
|
|
#endif
|
|
|
|
#if (defined(RS_VERSION) && (RS_VERSION >= 24))
|
|
static inline rs_allocation __attribute__((overloadable))
|
|
rsCreateAllocation_ushort3(uint32_t dimX, uint32_t dimY, uint32_t dimZ) {
|
|
rs_element e = rsCreateVectorElement(RS_TYPE_UNSIGNED_16, 3);
|
|
rs_type t = rsCreateType(e, dimX, dimY, dimZ);
|
|
return rsCreateAllocation(t);
|
|
}
|
|
#endif
|
|
|
|
#if (defined(RS_VERSION) && (RS_VERSION >= 24))
|
|
static inline rs_allocation __attribute__((overloadable))
|
|
rsCreateAllocation_ushort4(uint32_t dimX, uint32_t dimY, uint32_t dimZ) {
|
|
rs_element e = rsCreateVectorElement(RS_TYPE_UNSIGNED_16, 4);
|
|
rs_type t = rsCreateType(e, dimX, dimY, dimZ);
|
|
return rsCreateAllocation(t);
|
|
}
|
|
#endif
|
|
|
|
#if (defined(RS_VERSION) && (RS_VERSION >= 24))
|
|
static inline rs_allocation __attribute__((overloadable))
|
|
rsCreateAllocation_int2(uint32_t dimX, uint32_t dimY, uint32_t dimZ) {
|
|
rs_element e = rsCreateVectorElement(RS_TYPE_SIGNED_32, 2);
|
|
rs_type t = rsCreateType(e, dimX, dimY, dimZ);
|
|
return rsCreateAllocation(t);
|
|
}
|
|
#endif
|
|
|
|
#if (defined(RS_VERSION) && (RS_VERSION >= 24))
|
|
static inline rs_allocation __attribute__((overloadable))
|
|
rsCreateAllocation_int3(uint32_t dimX, uint32_t dimY, uint32_t dimZ) {
|
|
rs_element e = rsCreateVectorElement(RS_TYPE_SIGNED_32, 3);
|
|
rs_type t = rsCreateType(e, dimX, dimY, dimZ);
|
|
return rsCreateAllocation(t);
|
|
}
|
|
#endif
|
|
|
|
#if (defined(RS_VERSION) && (RS_VERSION >= 24))
|
|
static inline rs_allocation __attribute__((overloadable))
|
|
rsCreateAllocation_int4(uint32_t dimX, uint32_t dimY, uint32_t dimZ) {
|
|
rs_element e = rsCreateVectorElement(RS_TYPE_SIGNED_32, 4);
|
|
rs_type t = rsCreateType(e, dimX, dimY, dimZ);
|
|
return rsCreateAllocation(t);
|
|
}
|
|
#endif
|
|
|
|
#if (defined(RS_VERSION) && (RS_VERSION >= 24))
|
|
static inline rs_allocation __attribute__((overloadable))
|
|
rsCreateAllocation_uint2(uint32_t dimX, uint32_t dimY, uint32_t dimZ) {
|
|
rs_element e = rsCreateVectorElement(RS_TYPE_UNSIGNED_32, 2);
|
|
rs_type t = rsCreateType(e, dimX, dimY, dimZ);
|
|
return rsCreateAllocation(t);
|
|
}
|
|
#endif
|
|
|
|
#if (defined(RS_VERSION) && (RS_VERSION >= 24))
|
|
static inline rs_allocation __attribute__((overloadable))
|
|
rsCreateAllocation_uint3(uint32_t dimX, uint32_t dimY, uint32_t dimZ) {
|
|
rs_element e = rsCreateVectorElement(RS_TYPE_UNSIGNED_32, 3);
|
|
rs_type t = rsCreateType(e, dimX, dimY, dimZ);
|
|
return rsCreateAllocation(t);
|
|
}
|
|
#endif
|
|
|
|
#if (defined(RS_VERSION) && (RS_VERSION >= 24))
|
|
static inline rs_allocation __attribute__((overloadable))
|
|
rsCreateAllocation_uint4(uint32_t dimX, uint32_t dimY, uint32_t dimZ) {
|
|
rs_element e = rsCreateVectorElement(RS_TYPE_UNSIGNED_32, 4);
|
|
rs_type t = rsCreateType(e, dimX, dimY, dimZ);
|
|
return rsCreateAllocation(t);
|
|
}
|
|
#endif
|
|
|
|
#if (defined(RS_VERSION) && (RS_VERSION >= 24))
|
|
static inline rs_allocation __attribute__((overloadable))
|
|
rsCreateAllocation_long2(uint32_t dimX, uint32_t dimY, uint32_t dimZ) {
|
|
rs_element e = rsCreateVectorElement(RS_TYPE_SIGNED_64, 2);
|
|
rs_type t = rsCreateType(e, dimX, dimY, dimZ);
|
|
return rsCreateAllocation(t);
|
|
}
|
|
#endif
|
|
|
|
#if (defined(RS_VERSION) && (RS_VERSION >= 24))
|
|
static inline rs_allocation __attribute__((overloadable))
|
|
rsCreateAllocation_long3(uint32_t dimX, uint32_t dimY, uint32_t dimZ) {
|
|
rs_element e = rsCreateVectorElement(RS_TYPE_SIGNED_64, 3);
|
|
rs_type t = rsCreateType(e, dimX, dimY, dimZ);
|
|
return rsCreateAllocation(t);
|
|
}
|
|
#endif
|
|
|
|
#if (defined(RS_VERSION) && (RS_VERSION >= 24))
|
|
static inline rs_allocation __attribute__((overloadable))
|
|
rsCreateAllocation_long4(uint32_t dimX, uint32_t dimY, uint32_t dimZ) {
|
|
rs_element e = rsCreateVectorElement(RS_TYPE_SIGNED_64, 4);
|
|
rs_type t = rsCreateType(e, dimX, dimY, dimZ);
|
|
return rsCreateAllocation(t);
|
|
}
|
|
#endif
|
|
|
|
#if (defined(RS_VERSION) && (RS_VERSION >= 24))
|
|
static inline rs_allocation __attribute__((overloadable))
|
|
rsCreateAllocation_ulong2(uint32_t dimX, uint32_t dimY, uint32_t dimZ) {
|
|
rs_element e = rsCreateVectorElement(RS_TYPE_UNSIGNED_64, 2);
|
|
rs_type t = rsCreateType(e, dimX, dimY, dimZ);
|
|
return rsCreateAllocation(t);
|
|
}
|
|
#endif
|
|
|
|
#if (defined(RS_VERSION) && (RS_VERSION >= 24))
|
|
static inline rs_allocation __attribute__((overloadable))
|
|
rsCreateAllocation_ulong3(uint32_t dimX, uint32_t dimY, uint32_t dimZ) {
|
|
rs_element e = rsCreateVectorElement(RS_TYPE_UNSIGNED_64, 3);
|
|
rs_type t = rsCreateType(e, dimX, dimY, dimZ);
|
|
return rsCreateAllocation(t);
|
|
}
|
|
#endif
|
|
|
|
#if (defined(RS_VERSION) && (RS_VERSION >= 24))
|
|
static inline rs_allocation __attribute__((overloadable))
|
|
rsCreateAllocation_ulong4(uint32_t dimX, uint32_t dimY, uint32_t dimZ) {
|
|
rs_element e = rsCreateVectorElement(RS_TYPE_UNSIGNED_64, 4);
|
|
rs_type t = rsCreateType(e, dimX, dimY, dimZ);
|
|
return rsCreateAllocation(t);
|
|
}
|
|
#endif
|
|
|
|
#if (defined(RS_VERSION) && (RS_VERSION >= 24))
|
|
static inline rs_allocation __attribute__((overloadable))
|
|
rsCreateAllocation_half(uint32_t dimX, uint32_t dimY) {
|
|
rs_element e = rsCreateElement(RS_TYPE_FLOAT_16);
|
|
rs_type t = rsCreateType(e, dimX, dimY);
|
|
return rsCreateAllocation(t);
|
|
}
|
|
#endif
|
|
|
|
#if (defined(RS_VERSION) && (RS_VERSION >= 24))
|
|
static inline rs_allocation __attribute__((overloadable))
|
|
rsCreateAllocation_float(uint32_t dimX, uint32_t dimY) {
|
|
rs_element e = rsCreateElement(RS_TYPE_FLOAT_32);
|
|
rs_type t = rsCreateType(e, dimX, dimY);
|
|
return rsCreateAllocation(t);
|
|
}
|
|
#endif
|
|
|
|
#if (defined(RS_VERSION) && (RS_VERSION >= 24))
|
|
static inline rs_allocation __attribute__((overloadable))
|
|
rsCreateAllocation_double(uint32_t dimX, uint32_t dimY) {
|
|
rs_element e = rsCreateElement(RS_TYPE_FLOAT_64);
|
|
rs_type t = rsCreateType(e, dimX, dimY);
|
|
return rsCreateAllocation(t);
|
|
}
|
|
#endif
|
|
|
|
#if (defined(RS_VERSION) && (RS_VERSION >= 24))
|
|
static inline rs_allocation __attribute__((overloadable))
|
|
rsCreateAllocation_char(uint32_t dimX, uint32_t dimY) {
|
|
rs_element e = rsCreateElement(RS_TYPE_SIGNED_8);
|
|
rs_type t = rsCreateType(e, dimX, dimY);
|
|
return rsCreateAllocation(t);
|
|
}
|
|
#endif
|
|
|
|
#if (defined(RS_VERSION) && (RS_VERSION >= 24))
|
|
static inline rs_allocation __attribute__((overloadable))
|
|
rsCreateAllocation_uchar(uint32_t dimX, uint32_t dimY) {
|
|
rs_element e = rsCreateElement(RS_TYPE_UNSIGNED_8);
|
|
rs_type t = rsCreateType(e, dimX, dimY);
|
|
return rsCreateAllocation(t);
|
|
}
|
|
#endif
|
|
|
|
#if (defined(RS_VERSION) && (RS_VERSION >= 24))
|
|
static inline rs_allocation __attribute__((overloadable))
|
|
rsCreateAllocation_short(uint32_t dimX, uint32_t dimY) {
|
|
rs_element e = rsCreateElement(RS_TYPE_SIGNED_16);
|
|
rs_type t = rsCreateType(e, dimX, dimY);
|
|
return rsCreateAllocation(t);
|
|
}
|
|
#endif
|
|
|
|
#if (defined(RS_VERSION) && (RS_VERSION >= 24))
|
|
static inline rs_allocation __attribute__((overloadable))
|
|
rsCreateAllocation_ushort(uint32_t dimX, uint32_t dimY) {
|
|
rs_element e = rsCreateElement(RS_TYPE_UNSIGNED_16);
|
|
rs_type t = rsCreateType(e, dimX, dimY);
|
|
return rsCreateAllocation(t);
|
|
}
|
|
#endif
|
|
|
|
#if (defined(RS_VERSION) && (RS_VERSION >= 24))
|
|
static inline rs_allocation __attribute__((overloadable))
|
|
rsCreateAllocation_int(uint32_t dimX, uint32_t dimY) {
|
|
rs_element e = rsCreateElement(RS_TYPE_SIGNED_32);
|
|
rs_type t = rsCreateType(e, dimX, dimY);
|
|
return rsCreateAllocation(t);
|
|
}
|
|
#endif
|
|
|
|
#if (defined(RS_VERSION) && (RS_VERSION >= 24))
|
|
static inline rs_allocation __attribute__((overloadable))
|
|
rsCreateAllocation_uint(uint32_t dimX, uint32_t dimY) {
|
|
rs_element e = rsCreateElement(RS_TYPE_UNSIGNED_32);
|
|
rs_type t = rsCreateType(e, dimX, dimY);
|
|
return rsCreateAllocation(t);
|
|
}
|
|
#endif
|
|
|
|
#if (defined(RS_VERSION) && (RS_VERSION >= 24))
|
|
static inline rs_allocation __attribute__((overloadable))
|
|
rsCreateAllocation_long(uint32_t dimX, uint32_t dimY) {
|
|
rs_element e = rsCreateElement(RS_TYPE_SIGNED_64);
|
|
rs_type t = rsCreateType(e, dimX, dimY);
|
|
return rsCreateAllocation(t);
|
|
}
|
|
#endif
|
|
|
|
#if (defined(RS_VERSION) && (RS_VERSION >= 24))
|
|
static inline rs_allocation __attribute__((overloadable))
|
|
rsCreateAllocation_ulong(uint32_t dimX, uint32_t dimY) {
|
|
rs_element e = rsCreateElement(RS_TYPE_UNSIGNED_64);
|
|
rs_type t = rsCreateType(e, dimX, dimY);
|
|
return rsCreateAllocation(t);
|
|
}
|
|
#endif
|
|
|
|
#if (defined(RS_VERSION) && (RS_VERSION >= 24))
|
|
static inline rs_allocation __attribute__((overloadable))
|
|
rsCreateAllocation_half2(uint32_t dimX, uint32_t dimY) {
|
|
rs_element e = rsCreateVectorElement(RS_TYPE_FLOAT_16, 2);
|
|
rs_type t = rsCreateType(e, dimX, dimY);
|
|
return rsCreateAllocation(t);
|
|
}
|
|
#endif
|
|
|
|
#if (defined(RS_VERSION) && (RS_VERSION >= 24))
|
|
static inline rs_allocation __attribute__((overloadable))
|
|
rsCreateAllocation_half3(uint32_t dimX, uint32_t dimY) {
|
|
rs_element e = rsCreateVectorElement(RS_TYPE_FLOAT_16, 3);
|
|
rs_type t = rsCreateType(e, dimX, dimY);
|
|
return rsCreateAllocation(t);
|
|
}
|
|
#endif
|
|
|
|
#if (defined(RS_VERSION) && (RS_VERSION >= 24))
|
|
static inline rs_allocation __attribute__((overloadable))
|
|
rsCreateAllocation_half4(uint32_t dimX, uint32_t dimY) {
|
|
rs_element e = rsCreateVectorElement(RS_TYPE_FLOAT_16, 4);
|
|
rs_type t = rsCreateType(e, dimX, dimY);
|
|
return rsCreateAllocation(t);
|
|
}
|
|
#endif
|
|
|
|
#if (defined(RS_VERSION) && (RS_VERSION >= 24))
|
|
static inline rs_allocation __attribute__((overloadable))
|
|
rsCreateAllocation_float2(uint32_t dimX, uint32_t dimY) {
|
|
rs_element e = rsCreateVectorElement(RS_TYPE_FLOAT_32, 2);
|
|
rs_type t = rsCreateType(e, dimX, dimY);
|
|
return rsCreateAllocation(t);
|
|
}
|
|
#endif
|
|
|
|
#if (defined(RS_VERSION) && (RS_VERSION >= 24))
|
|
static inline rs_allocation __attribute__((overloadable))
|
|
rsCreateAllocation_float3(uint32_t dimX, uint32_t dimY) {
|
|
rs_element e = rsCreateVectorElement(RS_TYPE_FLOAT_32, 3);
|
|
rs_type t = rsCreateType(e, dimX, dimY);
|
|
return rsCreateAllocation(t);
|
|
}
|
|
#endif
|
|
|
|
#if (defined(RS_VERSION) && (RS_VERSION >= 24))
|
|
static inline rs_allocation __attribute__((overloadable))
|
|
rsCreateAllocation_float4(uint32_t dimX, uint32_t dimY) {
|
|
rs_element e = rsCreateVectorElement(RS_TYPE_FLOAT_32, 4);
|
|
rs_type t = rsCreateType(e, dimX, dimY);
|
|
return rsCreateAllocation(t);
|
|
}
|
|
#endif
|
|
|
|
#if (defined(RS_VERSION) && (RS_VERSION >= 24))
|
|
static inline rs_allocation __attribute__((overloadable))
|
|
rsCreateAllocation_double2(uint32_t dimX, uint32_t dimY) {
|
|
rs_element e = rsCreateVectorElement(RS_TYPE_FLOAT_64, 2);
|
|
rs_type t = rsCreateType(e, dimX, dimY);
|
|
return rsCreateAllocation(t);
|
|
}
|
|
#endif
|
|
|
|
#if (defined(RS_VERSION) && (RS_VERSION >= 24))
|
|
static inline rs_allocation __attribute__((overloadable))
|
|
rsCreateAllocation_double3(uint32_t dimX, uint32_t dimY) {
|
|
rs_element e = rsCreateVectorElement(RS_TYPE_FLOAT_64, 3);
|
|
rs_type t = rsCreateType(e, dimX, dimY);
|
|
return rsCreateAllocation(t);
|
|
}
|
|
#endif
|
|
|
|
#if (defined(RS_VERSION) && (RS_VERSION >= 24))
|
|
static inline rs_allocation __attribute__((overloadable))
|
|
rsCreateAllocation_double4(uint32_t dimX, uint32_t dimY) {
|
|
rs_element e = rsCreateVectorElement(RS_TYPE_FLOAT_64, 4);
|
|
rs_type t = rsCreateType(e, dimX, dimY);
|
|
return rsCreateAllocation(t);
|
|
}
|
|
#endif
|
|
|
|
#if (defined(RS_VERSION) && (RS_VERSION >= 24))
|
|
static inline rs_allocation __attribute__((overloadable))
|
|
rsCreateAllocation_char2(uint32_t dimX, uint32_t dimY) {
|
|
rs_element e = rsCreateVectorElement(RS_TYPE_SIGNED_8, 2);
|
|
rs_type t = rsCreateType(e, dimX, dimY);
|
|
return rsCreateAllocation(t);
|
|
}
|
|
#endif
|
|
|
|
#if (defined(RS_VERSION) && (RS_VERSION >= 24))
|
|
static inline rs_allocation __attribute__((overloadable))
|
|
rsCreateAllocation_char3(uint32_t dimX, uint32_t dimY) {
|
|
rs_element e = rsCreateVectorElement(RS_TYPE_SIGNED_8, 3);
|
|
rs_type t = rsCreateType(e, dimX, dimY);
|
|
return rsCreateAllocation(t);
|
|
}
|
|
#endif
|
|
|
|
#if (defined(RS_VERSION) && (RS_VERSION >= 24))
|
|
static inline rs_allocation __attribute__((overloadable))
|
|
rsCreateAllocation_char4(uint32_t dimX, uint32_t dimY) {
|
|
rs_element e = rsCreateVectorElement(RS_TYPE_SIGNED_8, 4);
|
|
rs_type t = rsCreateType(e, dimX, dimY);
|
|
return rsCreateAllocation(t);
|
|
}
|
|
#endif
|
|
|
|
#if (defined(RS_VERSION) && (RS_VERSION >= 24))
|
|
static inline rs_allocation __attribute__((overloadable))
|
|
rsCreateAllocation_uchar2(uint32_t dimX, uint32_t dimY) {
|
|
rs_element e = rsCreateVectorElement(RS_TYPE_UNSIGNED_8, 2);
|
|
rs_type t = rsCreateType(e, dimX, dimY);
|
|
return rsCreateAllocation(t);
|
|
}
|
|
#endif
|
|
|
|
#if (defined(RS_VERSION) && (RS_VERSION >= 24))
|
|
static inline rs_allocation __attribute__((overloadable))
|
|
rsCreateAllocation_uchar3(uint32_t dimX, uint32_t dimY) {
|
|
rs_element e = rsCreateVectorElement(RS_TYPE_UNSIGNED_8, 3);
|
|
rs_type t = rsCreateType(e, dimX, dimY);
|
|
return rsCreateAllocation(t);
|
|
}
|
|
#endif
|
|
|
|
#if (defined(RS_VERSION) && (RS_VERSION >= 24))
|
|
static inline rs_allocation __attribute__((overloadable))
|
|
rsCreateAllocation_uchar4(uint32_t dimX, uint32_t dimY) {
|
|
rs_element e = rsCreateVectorElement(RS_TYPE_UNSIGNED_8, 4);
|
|
rs_type t = rsCreateType(e, dimX, dimY);
|
|
return rsCreateAllocation(t);
|
|
}
|
|
#endif
|
|
|
|
#if (defined(RS_VERSION) && (RS_VERSION >= 24))
|
|
static inline rs_allocation __attribute__((overloadable))
|
|
rsCreateAllocation_short2(uint32_t dimX, uint32_t dimY) {
|
|
rs_element e = rsCreateVectorElement(RS_TYPE_SIGNED_16, 2);
|
|
rs_type t = rsCreateType(e, dimX, dimY);
|
|
return rsCreateAllocation(t);
|
|
}
|
|
#endif
|
|
|
|
#if (defined(RS_VERSION) && (RS_VERSION >= 24))
|
|
static inline rs_allocation __attribute__((overloadable))
|
|
rsCreateAllocation_short3(uint32_t dimX, uint32_t dimY) {
|
|
rs_element e = rsCreateVectorElement(RS_TYPE_SIGNED_16, 3);
|
|
rs_type t = rsCreateType(e, dimX, dimY);
|
|
return rsCreateAllocation(t);
|
|
}
|
|
#endif
|
|
|
|
#if (defined(RS_VERSION) && (RS_VERSION >= 24))
|
|
static inline rs_allocation __attribute__((overloadable))
|
|
rsCreateAllocation_short4(uint32_t dimX, uint32_t dimY) {
|
|
rs_element e = rsCreateVectorElement(RS_TYPE_SIGNED_16, 4);
|
|
rs_type t = rsCreateType(e, dimX, dimY);
|
|
return rsCreateAllocation(t);
|
|
}
|
|
#endif
|
|
|
|
#if (defined(RS_VERSION) && (RS_VERSION >= 24))
|
|
static inline rs_allocation __attribute__((overloadable))
|
|
rsCreateAllocation_ushort2(uint32_t dimX, uint32_t dimY) {
|
|
rs_element e = rsCreateVectorElement(RS_TYPE_UNSIGNED_16, 2);
|
|
rs_type t = rsCreateType(e, dimX, dimY);
|
|
return rsCreateAllocation(t);
|
|
}
|
|
#endif
|
|
|
|
#if (defined(RS_VERSION) && (RS_VERSION >= 24))
|
|
static inline rs_allocation __attribute__((overloadable))
|
|
rsCreateAllocation_ushort3(uint32_t dimX, uint32_t dimY) {
|
|
rs_element e = rsCreateVectorElement(RS_TYPE_UNSIGNED_16, 3);
|
|
rs_type t = rsCreateType(e, dimX, dimY);
|
|
return rsCreateAllocation(t);
|
|
}
|
|
#endif
|
|
|
|
#if (defined(RS_VERSION) && (RS_VERSION >= 24))
|
|
static inline rs_allocation __attribute__((overloadable))
|
|
rsCreateAllocation_ushort4(uint32_t dimX, uint32_t dimY) {
|
|
rs_element e = rsCreateVectorElement(RS_TYPE_UNSIGNED_16, 4);
|
|
rs_type t = rsCreateType(e, dimX, dimY);
|
|
return rsCreateAllocation(t);
|
|
}
|
|
#endif
|
|
|
|
#if (defined(RS_VERSION) && (RS_VERSION >= 24))
|
|
static inline rs_allocation __attribute__((overloadable))
|
|
rsCreateAllocation_int2(uint32_t dimX, uint32_t dimY) {
|
|
rs_element e = rsCreateVectorElement(RS_TYPE_SIGNED_32, 2);
|
|
rs_type t = rsCreateType(e, dimX, dimY);
|
|
return rsCreateAllocation(t);
|
|
}
|
|
#endif
|
|
|
|
#if (defined(RS_VERSION) && (RS_VERSION >= 24))
|
|
static inline rs_allocation __attribute__((overloadable))
|
|
rsCreateAllocation_int3(uint32_t dimX, uint32_t dimY) {
|
|
rs_element e = rsCreateVectorElement(RS_TYPE_SIGNED_32, 3);
|
|
rs_type t = rsCreateType(e, dimX, dimY);
|
|
return rsCreateAllocation(t);
|
|
}
|
|
#endif
|
|
|
|
#if (defined(RS_VERSION) && (RS_VERSION >= 24))
|
|
static inline rs_allocation __attribute__((overloadable))
|
|
rsCreateAllocation_int4(uint32_t dimX, uint32_t dimY) {
|
|
rs_element e = rsCreateVectorElement(RS_TYPE_SIGNED_32, 4);
|
|
rs_type t = rsCreateType(e, dimX, dimY);
|
|
return rsCreateAllocation(t);
|
|
}
|
|
#endif
|
|
|
|
#if (defined(RS_VERSION) && (RS_VERSION >= 24))
|
|
static inline rs_allocation __attribute__((overloadable))
|
|
rsCreateAllocation_uint2(uint32_t dimX, uint32_t dimY) {
|
|
rs_element e = rsCreateVectorElement(RS_TYPE_UNSIGNED_32, 2);
|
|
rs_type t = rsCreateType(e, dimX, dimY);
|
|
return rsCreateAllocation(t);
|
|
}
|
|
#endif
|
|
|
|
#if (defined(RS_VERSION) && (RS_VERSION >= 24))
|
|
static inline rs_allocation __attribute__((overloadable))
|
|
rsCreateAllocation_uint3(uint32_t dimX, uint32_t dimY) {
|
|
rs_element e = rsCreateVectorElement(RS_TYPE_UNSIGNED_32, 3);
|
|
rs_type t = rsCreateType(e, dimX, dimY);
|
|
return rsCreateAllocation(t);
|
|
}
|
|
#endif
|
|
|
|
#if (defined(RS_VERSION) && (RS_VERSION >= 24))
|
|
static inline rs_allocation __attribute__((overloadable))
|
|
rsCreateAllocation_uint4(uint32_t dimX, uint32_t dimY) {
|
|
rs_element e = rsCreateVectorElement(RS_TYPE_UNSIGNED_32, 4);
|
|
rs_type t = rsCreateType(e, dimX, dimY);
|
|
return rsCreateAllocation(t);
|
|
}
|
|
#endif
|
|
|
|
#if (defined(RS_VERSION) && (RS_VERSION >= 24))
|
|
static inline rs_allocation __attribute__((overloadable))
|
|
rsCreateAllocation_long2(uint32_t dimX, uint32_t dimY) {
|
|
rs_element e = rsCreateVectorElement(RS_TYPE_SIGNED_64, 2);
|
|
rs_type t = rsCreateType(e, dimX, dimY);
|
|
return rsCreateAllocation(t);
|
|
}
|
|
#endif
|
|
|
|
#if (defined(RS_VERSION) && (RS_VERSION >= 24))
|
|
static inline rs_allocation __attribute__((overloadable))
|
|
rsCreateAllocation_long3(uint32_t dimX, uint32_t dimY) {
|
|
rs_element e = rsCreateVectorElement(RS_TYPE_SIGNED_64, 3);
|
|
rs_type t = rsCreateType(e, dimX, dimY);
|
|
return rsCreateAllocation(t);
|
|
}
|
|
#endif
|
|
|
|
#if (defined(RS_VERSION) && (RS_VERSION >= 24))
|
|
static inline rs_allocation __attribute__((overloadable))
|
|
rsCreateAllocation_long4(uint32_t dimX, uint32_t dimY) {
|
|
rs_element e = rsCreateVectorElement(RS_TYPE_SIGNED_64, 4);
|
|
rs_type t = rsCreateType(e, dimX, dimY);
|
|
return rsCreateAllocation(t);
|
|
}
|
|
#endif
|
|
|
|
#if (defined(RS_VERSION) && (RS_VERSION >= 24))
|
|
static inline rs_allocation __attribute__((overloadable))
|
|
rsCreateAllocation_ulong2(uint32_t dimX, uint32_t dimY) {
|
|
rs_element e = rsCreateVectorElement(RS_TYPE_UNSIGNED_64, 2);
|
|
rs_type t = rsCreateType(e, dimX, dimY);
|
|
return rsCreateAllocation(t);
|
|
}
|
|
#endif
|
|
|
|
#if (defined(RS_VERSION) && (RS_VERSION >= 24))
|
|
static inline rs_allocation __attribute__((overloadable))
|
|
rsCreateAllocation_ulong3(uint32_t dimX, uint32_t dimY) {
|
|
rs_element e = rsCreateVectorElement(RS_TYPE_UNSIGNED_64, 3);
|
|
rs_type t = rsCreateType(e, dimX, dimY);
|
|
return rsCreateAllocation(t);
|
|
}
|
|
#endif
|
|
|
|
#if (defined(RS_VERSION) && (RS_VERSION >= 24))
|
|
static inline rs_allocation __attribute__((overloadable))
|
|
rsCreateAllocation_ulong4(uint32_t dimX, uint32_t dimY) {
|
|
rs_element e = rsCreateVectorElement(RS_TYPE_UNSIGNED_64, 4);
|
|
rs_type t = rsCreateType(e, dimX, dimY);
|
|
return rsCreateAllocation(t);
|
|
}
|
|
#endif
|
|
|
|
#if (defined(RS_VERSION) && (RS_VERSION >= 24))
|
|
static inline rs_allocation __attribute__((overloadable))
|
|
rsCreateAllocation_half(uint32_t dimX) {
|
|
rs_element e = rsCreateElement(RS_TYPE_FLOAT_16);
|
|
rs_type t = rsCreateType(e, dimX);
|
|
return rsCreateAllocation(t);
|
|
}
|
|
#endif
|
|
|
|
#if (defined(RS_VERSION) && (RS_VERSION >= 24))
|
|
static inline rs_allocation __attribute__((overloadable))
|
|
rsCreateAllocation_float(uint32_t dimX) {
|
|
rs_element e = rsCreateElement(RS_TYPE_FLOAT_32);
|
|
rs_type t = rsCreateType(e, dimX);
|
|
return rsCreateAllocation(t);
|
|
}
|
|
#endif
|
|
|
|
#if (defined(RS_VERSION) && (RS_VERSION >= 24))
|
|
static inline rs_allocation __attribute__((overloadable))
|
|
rsCreateAllocation_double(uint32_t dimX) {
|
|
rs_element e = rsCreateElement(RS_TYPE_FLOAT_64);
|
|
rs_type t = rsCreateType(e, dimX);
|
|
return rsCreateAllocation(t);
|
|
}
|
|
#endif
|
|
|
|
#if (defined(RS_VERSION) && (RS_VERSION >= 24))
|
|
static inline rs_allocation __attribute__((overloadable))
|
|
rsCreateAllocation_char(uint32_t dimX) {
|
|
rs_element e = rsCreateElement(RS_TYPE_SIGNED_8);
|
|
rs_type t = rsCreateType(e, dimX);
|
|
return rsCreateAllocation(t);
|
|
}
|
|
#endif
|
|
|
|
#if (defined(RS_VERSION) && (RS_VERSION >= 24))
|
|
static inline rs_allocation __attribute__((overloadable))
|
|
rsCreateAllocation_uchar(uint32_t dimX) {
|
|
rs_element e = rsCreateElement(RS_TYPE_UNSIGNED_8);
|
|
rs_type t = rsCreateType(e, dimX);
|
|
return rsCreateAllocation(t);
|
|
}
|
|
#endif
|
|
|
|
#if (defined(RS_VERSION) && (RS_VERSION >= 24))
|
|
static inline rs_allocation __attribute__((overloadable))
|
|
rsCreateAllocation_short(uint32_t dimX) {
|
|
rs_element e = rsCreateElement(RS_TYPE_SIGNED_16);
|
|
rs_type t = rsCreateType(e, dimX);
|
|
return rsCreateAllocation(t);
|
|
}
|
|
#endif
|
|
|
|
#if (defined(RS_VERSION) && (RS_VERSION >= 24))
|
|
static inline rs_allocation __attribute__((overloadable))
|
|
rsCreateAllocation_ushort(uint32_t dimX) {
|
|
rs_element e = rsCreateElement(RS_TYPE_UNSIGNED_16);
|
|
rs_type t = rsCreateType(e, dimX);
|
|
return rsCreateAllocation(t);
|
|
}
|
|
#endif
|
|
|
|
#if (defined(RS_VERSION) && (RS_VERSION >= 24))
|
|
static inline rs_allocation __attribute__((overloadable))
|
|
rsCreateAllocation_int(uint32_t dimX) {
|
|
rs_element e = rsCreateElement(RS_TYPE_SIGNED_32);
|
|
rs_type t = rsCreateType(e, dimX);
|
|
return rsCreateAllocation(t);
|
|
}
|
|
#endif
|
|
|
|
#if (defined(RS_VERSION) && (RS_VERSION >= 24))
|
|
static inline rs_allocation __attribute__((overloadable))
|
|
rsCreateAllocation_uint(uint32_t dimX) {
|
|
rs_element e = rsCreateElement(RS_TYPE_UNSIGNED_32);
|
|
rs_type t = rsCreateType(e, dimX);
|
|
return rsCreateAllocation(t);
|
|
}
|
|
#endif
|
|
|
|
#if (defined(RS_VERSION) && (RS_VERSION >= 24))
|
|
static inline rs_allocation __attribute__((overloadable))
|
|
rsCreateAllocation_long(uint32_t dimX) {
|
|
rs_element e = rsCreateElement(RS_TYPE_SIGNED_64);
|
|
rs_type t = rsCreateType(e, dimX);
|
|
return rsCreateAllocation(t);
|
|
}
|
|
#endif
|
|
|
|
#if (defined(RS_VERSION) && (RS_VERSION >= 24))
|
|
static inline rs_allocation __attribute__((overloadable))
|
|
rsCreateAllocation_ulong(uint32_t dimX) {
|
|
rs_element e = rsCreateElement(RS_TYPE_UNSIGNED_64);
|
|
rs_type t = rsCreateType(e, dimX);
|
|
return rsCreateAllocation(t);
|
|
}
|
|
#endif
|
|
|
|
#if (defined(RS_VERSION) && (RS_VERSION >= 24))
|
|
static inline rs_allocation __attribute__((overloadable))
|
|
rsCreateAllocation_half2(uint32_t dimX) {
|
|
rs_element e = rsCreateVectorElement(RS_TYPE_FLOAT_16, 2);
|
|
rs_type t = rsCreateType(e, dimX);
|
|
return rsCreateAllocation(t);
|
|
}
|
|
#endif
|
|
|
|
#if (defined(RS_VERSION) && (RS_VERSION >= 24))
|
|
static inline rs_allocation __attribute__((overloadable))
|
|
rsCreateAllocation_half3(uint32_t dimX) {
|
|
rs_element e = rsCreateVectorElement(RS_TYPE_FLOAT_16, 3);
|
|
rs_type t = rsCreateType(e, dimX);
|
|
return rsCreateAllocation(t);
|
|
}
|
|
#endif
|
|
|
|
#if (defined(RS_VERSION) && (RS_VERSION >= 24))
|
|
static inline rs_allocation __attribute__((overloadable))
|
|
rsCreateAllocation_half4(uint32_t dimX) {
|
|
rs_element e = rsCreateVectorElement(RS_TYPE_FLOAT_16, 4);
|
|
rs_type t = rsCreateType(e, dimX);
|
|
return rsCreateAllocation(t);
|
|
}
|
|
#endif
|
|
|
|
#if (defined(RS_VERSION) && (RS_VERSION >= 24))
|
|
static inline rs_allocation __attribute__((overloadable))
|
|
rsCreateAllocation_float2(uint32_t dimX) {
|
|
rs_element e = rsCreateVectorElement(RS_TYPE_FLOAT_32, 2);
|
|
rs_type t = rsCreateType(e, dimX);
|
|
return rsCreateAllocation(t);
|
|
}
|
|
#endif
|
|
|
|
#if (defined(RS_VERSION) && (RS_VERSION >= 24))
|
|
static inline rs_allocation __attribute__((overloadable))
|
|
rsCreateAllocation_float3(uint32_t dimX) {
|
|
rs_element e = rsCreateVectorElement(RS_TYPE_FLOAT_32, 3);
|
|
rs_type t = rsCreateType(e, dimX);
|
|
return rsCreateAllocation(t);
|
|
}
|
|
#endif
|
|
|
|
#if (defined(RS_VERSION) && (RS_VERSION >= 24))
|
|
static inline rs_allocation __attribute__((overloadable))
|
|
rsCreateAllocation_float4(uint32_t dimX) {
|
|
rs_element e = rsCreateVectorElement(RS_TYPE_FLOAT_32, 4);
|
|
rs_type t = rsCreateType(e, dimX);
|
|
return rsCreateAllocation(t);
|
|
}
|
|
#endif
|
|
|
|
#if (defined(RS_VERSION) && (RS_VERSION >= 24))
|
|
static inline rs_allocation __attribute__((overloadable))
|
|
rsCreateAllocation_double2(uint32_t dimX) {
|
|
rs_element e = rsCreateVectorElement(RS_TYPE_FLOAT_64, 2);
|
|
rs_type t = rsCreateType(e, dimX);
|
|
return rsCreateAllocation(t);
|
|
}
|
|
#endif
|
|
|
|
#if (defined(RS_VERSION) && (RS_VERSION >= 24))
|
|
static inline rs_allocation __attribute__((overloadable))
|
|
rsCreateAllocation_double3(uint32_t dimX) {
|
|
rs_element e = rsCreateVectorElement(RS_TYPE_FLOAT_64, 3);
|
|
rs_type t = rsCreateType(e, dimX);
|
|
return rsCreateAllocation(t);
|
|
}
|
|
#endif
|
|
|
|
#if (defined(RS_VERSION) && (RS_VERSION >= 24))
|
|
static inline rs_allocation __attribute__((overloadable))
|
|
rsCreateAllocation_double4(uint32_t dimX) {
|
|
rs_element e = rsCreateVectorElement(RS_TYPE_FLOAT_64, 4);
|
|
rs_type t = rsCreateType(e, dimX);
|
|
return rsCreateAllocation(t);
|
|
}
|
|
#endif
|
|
|
|
#if (defined(RS_VERSION) && (RS_VERSION >= 24))
|
|
static inline rs_allocation __attribute__((overloadable))
|
|
rsCreateAllocation_char2(uint32_t dimX) {
|
|
rs_element e = rsCreateVectorElement(RS_TYPE_SIGNED_8, 2);
|
|
rs_type t = rsCreateType(e, dimX);
|
|
return rsCreateAllocation(t);
|
|
}
|
|
#endif
|
|
|
|
#if (defined(RS_VERSION) && (RS_VERSION >= 24))
|
|
static inline rs_allocation __attribute__((overloadable))
|
|
rsCreateAllocation_char3(uint32_t dimX) {
|
|
rs_element e = rsCreateVectorElement(RS_TYPE_SIGNED_8, 3);
|
|
rs_type t = rsCreateType(e, dimX);
|
|
return rsCreateAllocation(t);
|
|
}
|
|
#endif
|
|
|
|
#if (defined(RS_VERSION) && (RS_VERSION >= 24))
|
|
static inline rs_allocation __attribute__((overloadable))
|
|
rsCreateAllocation_char4(uint32_t dimX) {
|
|
rs_element e = rsCreateVectorElement(RS_TYPE_SIGNED_8, 4);
|
|
rs_type t = rsCreateType(e, dimX);
|
|
return rsCreateAllocation(t);
|
|
}
|
|
#endif
|
|
|
|
#if (defined(RS_VERSION) && (RS_VERSION >= 24))
|
|
static inline rs_allocation __attribute__((overloadable))
|
|
rsCreateAllocation_uchar2(uint32_t dimX) {
|
|
rs_element e = rsCreateVectorElement(RS_TYPE_UNSIGNED_8, 2);
|
|
rs_type t = rsCreateType(e, dimX);
|
|
return rsCreateAllocation(t);
|
|
}
|
|
#endif
|
|
|
|
#if (defined(RS_VERSION) && (RS_VERSION >= 24))
|
|
static inline rs_allocation __attribute__((overloadable))
|
|
rsCreateAllocation_uchar3(uint32_t dimX) {
|
|
rs_element e = rsCreateVectorElement(RS_TYPE_UNSIGNED_8, 3);
|
|
rs_type t = rsCreateType(e, dimX);
|
|
return rsCreateAllocation(t);
|
|
}
|
|
#endif
|
|
|
|
#if (defined(RS_VERSION) && (RS_VERSION >= 24))
|
|
static inline rs_allocation __attribute__((overloadable))
|
|
rsCreateAllocation_uchar4(uint32_t dimX) {
|
|
rs_element e = rsCreateVectorElement(RS_TYPE_UNSIGNED_8, 4);
|
|
rs_type t = rsCreateType(e, dimX);
|
|
return rsCreateAllocation(t);
|
|
}
|
|
#endif
|
|
|
|
#if (defined(RS_VERSION) && (RS_VERSION >= 24))
|
|
static inline rs_allocation __attribute__((overloadable))
|
|
rsCreateAllocation_short2(uint32_t dimX) {
|
|
rs_element e = rsCreateVectorElement(RS_TYPE_SIGNED_16, 2);
|
|
rs_type t = rsCreateType(e, dimX);
|
|
return rsCreateAllocation(t);
|
|
}
|
|
#endif
|
|
|
|
#if (defined(RS_VERSION) && (RS_VERSION >= 24))
|
|
static inline rs_allocation __attribute__((overloadable))
|
|
rsCreateAllocation_short3(uint32_t dimX) {
|
|
rs_element e = rsCreateVectorElement(RS_TYPE_SIGNED_16, 3);
|
|
rs_type t = rsCreateType(e, dimX);
|
|
return rsCreateAllocation(t);
|
|
}
|
|
#endif
|
|
|
|
#if (defined(RS_VERSION) && (RS_VERSION >= 24))
|
|
static inline rs_allocation __attribute__((overloadable))
|
|
rsCreateAllocation_short4(uint32_t dimX) {
|
|
rs_element e = rsCreateVectorElement(RS_TYPE_SIGNED_16, 4);
|
|
rs_type t = rsCreateType(e, dimX);
|
|
return rsCreateAllocation(t);
|
|
}
|
|
#endif
|
|
|
|
#if (defined(RS_VERSION) && (RS_VERSION >= 24))
|
|
static inline rs_allocation __attribute__((overloadable))
|
|
rsCreateAllocation_ushort2(uint32_t dimX) {
|
|
rs_element e = rsCreateVectorElement(RS_TYPE_UNSIGNED_16, 2);
|
|
rs_type t = rsCreateType(e, dimX);
|
|
return rsCreateAllocation(t);
|
|
}
|
|
#endif
|
|
|
|
#if (defined(RS_VERSION) && (RS_VERSION >= 24))
|
|
static inline rs_allocation __attribute__((overloadable))
|
|
rsCreateAllocation_ushort3(uint32_t dimX) {
|
|
rs_element e = rsCreateVectorElement(RS_TYPE_UNSIGNED_16, 3);
|
|
rs_type t = rsCreateType(e, dimX);
|
|
return rsCreateAllocation(t);
|
|
}
|
|
#endif
|
|
|
|
#if (defined(RS_VERSION) && (RS_VERSION >= 24))
|
|
static inline rs_allocation __attribute__((overloadable))
|
|
rsCreateAllocation_ushort4(uint32_t dimX) {
|
|
rs_element e = rsCreateVectorElement(RS_TYPE_UNSIGNED_16, 4);
|
|
rs_type t = rsCreateType(e, dimX);
|
|
return rsCreateAllocation(t);
|
|
}
|
|
#endif
|
|
|
|
#if (defined(RS_VERSION) && (RS_VERSION >= 24))
|
|
static inline rs_allocation __attribute__((overloadable))
|
|
rsCreateAllocation_int2(uint32_t dimX) {
|
|
rs_element e = rsCreateVectorElement(RS_TYPE_SIGNED_32, 2);
|
|
rs_type t = rsCreateType(e, dimX);
|
|
return rsCreateAllocation(t);
|
|
}
|
|
#endif
|
|
|
|
#if (defined(RS_VERSION) && (RS_VERSION >= 24))
|
|
static inline rs_allocation __attribute__((overloadable))
|
|
rsCreateAllocation_int3(uint32_t dimX) {
|
|
rs_element e = rsCreateVectorElement(RS_TYPE_SIGNED_32, 3);
|
|
rs_type t = rsCreateType(e, dimX);
|
|
return rsCreateAllocation(t);
|
|
}
|
|
#endif
|
|
|
|
#if (defined(RS_VERSION) && (RS_VERSION >= 24))
|
|
static inline rs_allocation __attribute__((overloadable))
|
|
rsCreateAllocation_int4(uint32_t dimX) {
|
|
rs_element e = rsCreateVectorElement(RS_TYPE_SIGNED_32, 4);
|
|
rs_type t = rsCreateType(e, dimX);
|
|
return rsCreateAllocation(t);
|
|
}
|
|
#endif
|
|
|
|
#if (defined(RS_VERSION) && (RS_VERSION >= 24))
|
|
static inline rs_allocation __attribute__((overloadable))
|
|
rsCreateAllocation_uint2(uint32_t dimX) {
|
|
rs_element e = rsCreateVectorElement(RS_TYPE_UNSIGNED_32, 2);
|
|
rs_type t = rsCreateType(e, dimX);
|
|
return rsCreateAllocation(t);
|
|
}
|
|
#endif
|
|
|
|
#if (defined(RS_VERSION) && (RS_VERSION >= 24))
|
|
static inline rs_allocation __attribute__((overloadable))
|
|
rsCreateAllocation_uint3(uint32_t dimX) {
|
|
rs_element e = rsCreateVectorElement(RS_TYPE_UNSIGNED_32, 3);
|
|
rs_type t = rsCreateType(e, dimX);
|
|
return rsCreateAllocation(t);
|
|
}
|
|
#endif
|
|
|
|
#if (defined(RS_VERSION) && (RS_VERSION >= 24))
|
|
static inline rs_allocation __attribute__((overloadable))
|
|
rsCreateAllocation_uint4(uint32_t dimX) {
|
|
rs_element e = rsCreateVectorElement(RS_TYPE_UNSIGNED_32, 4);
|
|
rs_type t = rsCreateType(e, dimX);
|
|
return rsCreateAllocation(t);
|
|
}
|
|
#endif
|
|
|
|
#if (defined(RS_VERSION) && (RS_VERSION >= 24))
|
|
static inline rs_allocation __attribute__((overloadable))
|
|
rsCreateAllocation_long2(uint32_t dimX) {
|
|
rs_element e = rsCreateVectorElement(RS_TYPE_SIGNED_64, 2);
|
|
rs_type t = rsCreateType(e, dimX);
|
|
return rsCreateAllocation(t);
|
|
}
|
|
#endif
|
|
|
|
#if (defined(RS_VERSION) && (RS_VERSION >= 24))
|
|
static inline rs_allocation __attribute__((overloadable))
|
|
rsCreateAllocation_long3(uint32_t dimX) {
|
|
rs_element e = rsCreateVectorElement(RS_TYPE_SIGNED_64, 3);
|
|
rs_type t = rsCreateType(e, dimX);
|
|
return rsCreateAllocation(t);
|
|
}
|
|
#endif
|
|
|
|
#if (defined(RS_VERSION) && (RS_VERSION >= 24))
|
|
static inline rs_allocation __attribute__((overloadable))
|
|
rsCreateAllocation_long4(uint32_t dimX) {
|
|
rs_element e = rsCreateVectorElement(RS_TYPE_SIGNED_64, 4);
|
|
rs_type t = rsCreateType(e, dimX);
|
|
return rsCreateAllocation(t);
|
|
}
|
|
#endif
|
|
|
|
#if (defined(RS_VERSION) && (RS_VERSION >= 24))
|
|
static inline rs_allocation __attribute__((overloadable))
|
|
rsCreateAllocation_ulong2(uint32_t dimX) {
|
|
rs_element e = rsCreateVectorElement(RS_TYPE_UNSIGNED_64, 2);
|
|
rs_type t = rsCreateType(e, dimX);
|
|
return rsCreateAllocation(t);
|
|
}
|
|
#endif
|
|
|
|
#if (defined(RS_VERSION) && (RS_VERSION >= 24))
|
|
static inline rs_allocation __attribute__((overloadable))
|
|
rsCreateAllocation_ulong3(uint32_t dimX) {
|
|
rs_element e = rsCreateVectorElement(RS_TYPE_UNSIGNED_64, 3);
|
|
rs_type t = rsCreateType(e, dimX);
|
|
return rsCreateAllocation(t);
|
|
}
|
|
#endif
|
|
|
|
#if (defined(RS_VERSION) && (RS_VERSION >= 24))
|
|
static inline rs_allocation __attribute__((overloadable))
|
|
rsCreateAllocation_ulong4(uint32_t dimX) {
|
|
rs_element e = rsCreateVectorElement(RS_TYPE_UNSIGNED_64, 4);
|
|
rs_type t = rsCreateType(e, dimX);
|
|
return rsCreateAllocation(t);
|
|
}
|
|
#endif
|
|
|
|
#endif // RENDERSCRIPT_RS_ALLOCATION_CREATE_RSH
|