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182 lines
6.0 KiB
182 lines
6.0 KiB
4 months ago
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/*
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* Copyright (C) 2009 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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#ifndef ANDROID_STRUCTURED_ELEMENT_H
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#define ANDROID_STRUCTURED_ELEMENT_H
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#include "rsComponent.h"
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#include "rsUtils.h"
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#include "rsInternalDefines.h"
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#include "rsObjectBase.h"
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#include <vector>
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// ---------------------------------------------------------------------------
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namespace android {
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namespace renderscript {
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/*****************************************************************************
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* CAUTION
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*
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* Any layout changes for this class may require a corresponding change to be
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* made to frameworks/compile/libbcc/lib/ScriptCRT/rs_core.c, which contains
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* a partial copy of the information below.
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*
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*****************************************************************************/
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// An element is a group of Components that occupies one cell in a structure.
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class Element : public ObjectBase {
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public:
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struct Hal {
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mutable void *drv;
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struct State {
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RsDataType dataType;
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RsDataKind dataKind;
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uint32_t vectorSize;
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uint32_t elementSizeBytes;
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// Subelements
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const Element **fields;
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uint32_t *fieldArraySizes;
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const char **fieldNames;
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uint32_t *fieldNameLengths;
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uint32_t *fieldOffsetBytes;
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uint32_t fieldsCount;
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};
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State state;
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};
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Hal mHal;
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void operator delete(void* ptr);
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uint32_t getGLType() const;
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uint32_t getGLFormat() const;
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size_t getSizeBitsUnpadded() const;
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size_t getSizeBytesUnpadded() const {
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return (getSizeBitsUnpadded() + 7) >> 3;
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}
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size_t getSizeBits() const;
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size_t getSizeBytes() const {
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return (getSizeBits() + 7) >> 3;
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}
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size_t getFieldOffsetBits(uint32_t componentNumber) const {
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return mFields[componentNumber].offsetBits;
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}
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size_t getFieldOffsetBytes(uint32_t componentNumber) const {
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return mFields[componentNumber].offsetBits >> 3;
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}
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size_t getFieldOffsetBytesUnpadded(uint32_t componentNumber) const {
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return mFields[componentNumber].offsetBitsUnpadded >> 3;
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}
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uint32_t getFieldCount() const {return mFieldCount;}
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const Element * getField(uint32_t idx) const {return mFields[idx].e.get();}
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const char * getFieldName(uint32_t idx) const {return mFields[idx].name;}
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uint32_t getFieldArraySize(uint32_t idx) const {return mFields[idx].arraySize;}
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const Component & getComponent() const {return mComponent;}
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RsDataType getType() const {return mComponent.getType();}
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RsDataKind getKind() const {return mComponent.getKind();}
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uint32_t getBits() const {return mBits;}
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uint32_t getBitsUnpadded() const {return mBitsUnpadded;}
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uint32_t getVectorSize() const {return mComponent.getVectorSize();}
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void dumpLOGV(const char *prefix) const;
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virtual void serialize(Context *rsc, OStream *stream) const;
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virtual RsA3DClassID getClassId() const { return RS_A3D_CLASS_ID_ELEMENT; }
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static Element *createFromStream(Context *rsc, IStream *stream);
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static ObjectBaseRef<const Element> createRef(Context *rsc,
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RsDataType dt,
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RsDataKind dk,
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bool isNorm,
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uint32_t vecSize);
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static ObjectBaseRef<const Element> createRef(Context *rsc, size_t count,
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const Element **,
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const char **,
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const size_t * lengths,
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const uint32_t *asin);
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static const Element* create(Context *rsc,
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RsDataType dt,
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RsDataKind dk,
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bool isNorm,
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uint32_t vecSize) {
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ObjectBaseRef<const Element> elem = createRef(rsc, dt, dk, isNorm, vecSize);
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elem->incUserRef();
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return elem.get();
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}
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static const Element* create(Context *rsc, size_t count,
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const Element **ein,
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const char **nin,
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const size_t * lengths = nullptr,
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const uint32_t *asin = nullptr) {
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ObjectBaseRef<const Element> elem = createRef(rsc, count, ein, nin, lengths, asin);
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elem->incUserRef();
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return elem.get();
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}
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void incRefs(const void *) const;
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void decRefs(const void *) const;
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virtual void callUpdateCacheObject(const Context *rsc, void *dstObj) const;
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bool getHasReferences() const {return mHasReference;}
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protected:
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// deallocate any components that are part of this element.
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void clear();
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typedef struct {
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const char *name;
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ObjectBaseRef<const Element> e;
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uint32_t offsetBits;
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uint32_t offsetBitsUnpadded;
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uint32_t arraySize;
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} ElementField_t;
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ElementField_t *mFields;
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size_t mFieldCount;
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bool mHasReference;
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virtual ~Element();
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explicit Element(Context *);
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Component mComponent;
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uint32_t mBitsUnpadded;
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uint32_t mBits;
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void compute();
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virtual void preDestroy() const;
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};
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class ElementState {
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public:
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ElementState();
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~ElementState();
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// Cache of all existing elements.
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std::vector<Element *> mElements;
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};
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} // namespace renderscript
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} // namespace android
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#endif //ANDROID_STRUCTURED_ELEMENT_H
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