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slang_rs_reflection.cpp
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2812 lines (2416 loc) · 102 KB
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/*
* Copyright 2010-2014, The Android Open Source Project
*
* Licensed under the Apache License, Version 2.0 (the "License");
* you may not use this file except in compliance with the License.
* You may obtain a copy of the License at
*
* http://www.apache.org/licenses/LICENSE-2.0
*
* Unless required by applicable law or agreed to in writing, software
* distributed under the License is distributed on an "AS IS" BASIS,
* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
* See the License for the specific language governing permissions and
* limitations under the License.
*/
#include "slang_rs_reflection.h"
#include <sys/stat.h>
#include <cstdarg>
#include <cctype>
#include <algorithm>
#include <sstream>
#include <string>
#include <utility>
#include "llvm/ADT/APFloat.h"
#include "llvm/ADT/StringExtras.h"
#include "os_sep.h"
#include "slang_rs_context.h"
#include "slang_rs_export_var.h"
#include "slang_rs_export_foreach.h"
#include "slang_rs_export_func.h"
#include "slang_rs_export_reduce.h"
#include "slang_rs_reflect_utils.h"
#include "slang_version.h"
#define RS_SCRIPT_CLASS_NAME_PREFIX "ScriptC_"
#define RS_SCRIPT_CLASS_SUPER_CLASS_NAME "ScriptC"
#define RS_TYPE_CLASS_SUPER_CLASS_NAME ".Script.FieldBase"
#define RS_TYPE_ITEM_CLASS_NAME "Item"
#define RS_TYPE_ITEM_SIZEOF_LEGACY "Item.sizeof"
#define RS_TYPE_ITEM_SIZEOF_CURRENT "mElement.getBytesSize()"
#define RS_TYPE_ITEM_BUFFER_NAME "mItemArray"
#define RS_TYPE_ITEM_BUFFER_PACKER_NAME "mIOBuffer"
#define RS_TYPE_ELEMENT_REF_NAME "mElementCache"
#define RS_EXPORT_VAR_INDEX_PREFIX "mExportVarIdx_"
#define RS_EXPORT_VAR_PREFIX "mExportVar_"
#define RS_EXPORT_VAR_ELEM_PREFIX "mExportVarElem_"
#define RS_EXPORT_VAR_DIM_PREFIX "mExportVarDim_"
#define RS_EXPORT_VAR_CONST_PREFIX "const_"
#define RS_ELEM_PREFIX "__"
#define RS_FP_PREFIX "__rs_fp_"
#define RS_RESOURCE_NAME "__rs_resource_name"
#define RS_EXPORT_FUNC_INDEX_PREFIX "mExportFuncIdx_"
#define RS_EXPORT_FOREACH_INDEX_PREFIX "mExportForEachIdx_"
#define RS_EXPORT_REDUCE_INDEX_PREFIX "mExportReduceIdx_"
#define RS_EXPORT_VAR_ALLOCATION_PREFIX "mAlloction_"
#define RS_EXPORT_VAR_DATA_STORAGE_PREFIX "mData_"
#define SAVED_RS_REFERENCE "mRSLocal"
namespace slang {
class RSReflectionJavaElementBuilder {
public:
RSReflectionJavaElementBuilder(const char *ElementBuilderName,
const RSExportRecordType *ERT,
const char *RenderScriptVar,
GeneratedFile *Out, const RSContext *RSContext,
RSReflectionJava *Reflection);
void generate();
private:
void genAddElement(const RSExportType *ET, const std::string &VarName,
unsigned ArraySize);
void genAddStatementStart();
void genAddStatementEnd(const std::string &VarName, unsigned ArraySize);
void genAddPadding(int PaddingSize);
// TODO Will remove later due to field name information is not necessary for
// C-reflect-to-Java
std::string createPaddingField() {
return mPaddingPrefix + llvm::itostr(mPaddingFieldIndex++);
}
const char *mElementBuilderName;
const RSExportRecordType *mERT;
const char *mRenderScriptVar;
GeneratedFile *mOut;
std::string mPaddingPrefix;
int mPaddingFieldIndex;
const RSContext *mRSContext;
RSReflectionJava *mReflection;
};
static const char *GetMatrixTypeName(const RSExportMatrixType *EMT) {
static const char *MatrixTypeJavaNameMap[] = {/* 2x2 */ "Matrix2f",
/* 3x3 */ "Matrix3f",
/* 4x4 */ "Matrix4f",
};
unsigned Dim = EMT->getDim();
if ((Dim - 2) < (sizeof(MatrixTypeJavaNameMap) / sizeof(const char *)))
return MatrixTypeJavaNameMap[EMT->getDim() - 2];
slangAssert(false && "GetMatrixTypeName : Unsupported matrix dimension");
return nullptr;
}
static const char *GetVectorAccessor(unsigned Index) {
static const char *VectorAccessorMap[] = {/* 0 */ "x",
/* 1 */ "y",
/* 2 */ "z",
/* 3 */ "w",
};
slangAssert((Index < (sizeof(VectorAccessorMap) / sizeof(const char *))) &&
"Out-of-bound index to access vector member");
return VectorAccessorMap[Index];
}
static const char *GetPackerAPIName(const RSExportPrimitiveType *EPT) {
static const char *PrimitiveTypePackerAPINameMap[] = {
"addI16", // DataTypeFloat16
"addF32", // DataTypeFloat32
"addF64", // DataTypeFloat64
"addI8", // DataTypeSigned8
"addI16", // DataTypeSigned16
"addI32", // DataTypeSigned32
"addI64", // DataTypeSigned64
"addU8", // DataTypeUnsigned8
"addU16", // DataTypeUnsigned16
"addU32", // DataTypeUnsigned32
"addU64", // DataTypeUnsigned64
"addBoolean", // DataTypeBoolean
"addU16", // DataTypeUnsigned565
"addU16", // DataTypeUnsigned5551
"addU16", // DataTypeUnsigned4444
"addMatrix", // DataTypeRSMatrix2x2
"addMatrix", // DataTypeRSMatrix3x3
"addMatrix", // DataTypeRSMatrix4x4
"addObj", // DataTypeRSElement
"addObj", // DataTypeRSType
"addObj", // DataTypeRSAllocation
"addObj", // DataTypeRSSampler
"addObj", // DataTypeRSScript
"addObj", // DataTypeRSMesh
"addObj", // DataTypeRSPath
"addObj", // DataTypeRSProgramFragment
"addObj", // DataTypeRSProgramVertex
"addObj", // DataTypeRSProgramRaster
"addObj", // DataTypeRSProgramStore
"addObj", // DataTypeRSFont
};
unsigned TypeId = EPT->getType();
if (TypeId < (sizeof(PrimitiveTypePackerAPINameMap) / sizeof(const char *)))
return PrimitiveTypePackerAPINameMap[EPT->getType()];
slangAssert(false && "GetPackerAPIName : Unknown primitive data type");
return nullptr;
}
namespace {
enum {
TypeNameWithConstantArrayBrackets = 0x01,
TypeNameWithRecordElementName = 0x02,
TypeNameC = 0x04, // else Java
TypeNameDefault = TypeNameWithConstantArrayBrackets|TypeNameWithRecordElementName
};
std::string GetTypeName(const RSExportType *ET, unsigned Style = TypeNameDefault) {
switch (ET->getClass()) {
case RSExportType::ExportClassPrimitive: {
const auto ReflectionType =
RSExportPrimitiveType::getRSReflectionType(static_cast<const RSExportPrimitiveType *>(ET));
return (Style & TypeNameC ? ReflectionType->s_name : ReflectionType->java_name);
}
case RSExportType::ExportClassPointer: {
slangAssert(!(Style & TypeNameC) &&
"No need to support C type names for pointer types yet");
const RSExportType *PointeeType =
static_cast<const RSExportPointerType *>(ET)->getPointeeType();
if (PointeeType->getClass() != RSExportType::ExportClassRecord)
return "Allocation";
else
return PointeeType->getElementName();
}
case RSExportType::ExportClassVector: {
const RSExportVectorType *EVT = static_cast<const RSExportVectorType *>(ET);
const auto ReflectionType = EVT->getRSReflectionType(EVT);
std::stringstream VecName;
VecName << (Style & TypeNameC ? ReflectionType->s_name : ReflectionType->rs_java_vector_prefix)
<< EVT->getNumElement();
return VecName.str();
}
case RSExportType::ExportClassMatrix: {
slangAssert(!(Style & TypeNameC) &&
"No need to support C type names for matrix types yet");
return GetMatrixTypeName(static_cast<const RSExportMatrixType *>(ET));
}
case RSExportType::ExportClassConstantArray: {
const RSExportConstantArrayType *CAT =
static_cast<const RSExportConstantArrayType *>(ET);
std::string ElementTypeName = GetTypeName(CAT->getElementType(), Style);
if (Style & TypeNameWithConstantArrayBrackets) {
slangAssert(!(Style & TypeNameC) &&
"No need to support C type names for array types with brackets yet");
ElementTypeName.append("[]");
}
return ElementTypeName;
}
case RSExportType::ExportClassRecord: {
slangAssert(!(Style & TypeNameC) &&
"No need to support C type names for record types yet");
if (Style & TypeNameWithRecordElementName)
return ET->getElementName() + "." RS_TYPE_ITEM_CLASS_NAME;
else
return ET->getName();
}
default: { slangAssert(false && "Unknown class of type"); }
}
return "";
}
std::string GetReduceResultTypeName(const RSExportType *ET) {
switch (ET->getClass()) {
case RSExportType::ExportClassConstantArray: {
const RSExportConstantArrayType *const CAT = static_cast<const RSExportConstantArrayType *>(ET);
return "resultArray" + std::to_string(CAT->getNumElement()) + "_" +
GetTypeName(CAT->getElementType(),
(TypeNameDefault & ~TypeNameWithRecordElementName) | TypeNameC);
}
case RSExportType::ExportClassRecord:
return "resultStruct_" + GetTypeName(ET,
(TypeNameDefault & ~TypeNameWithRecordElementName) | TypeNameC);
default:
return "result_" + GetTypeName(ET, TypeNameDefault | TypeNameC);
}
}
std::string GetReduceResultTypeName(const RSExportReduce *ER) {
return GetReduceResultTypeName(ER->getResultType());
}
} // end anonymous namespace
static const char *GetTypeNullValue(const RSExportType *ET) {
switch (ET->getClass()) {
case RSExportType::ExportClassPrimitive: {
const RSExportPrimitiveType *EPT =
static_cast<const RSExportPrimitiveType *>(ET);
if (EPT->isRSObjectType())
return "null";
else if (EPT->getType() == DataTypeBoolean)
return "false";
else
return "0";
break;
}
case RSExportType::ExportClassPointer:
case RSExportType::ExportClassVector:
case RSExportType::ExportClassMatrix:
case RSExportType::ExportClassConstantArray:
case RSExportType::ExportClassRecord: {
return "null";
break;
}
default: { slangAssert(false && "Unknown class of type"); }
}
return "";
}
static std::string GetBuiltinElementConstruct(const RSExportType *ET) {
if (ET->getClass() == RSExportType::ExportClassPrimitive) {
return std::string("Element.") + ET->getElementName();
} else if (ET->getClass() == RSExportType::ExportClassVector) {
const RSExportVectorType *EVT = static_cast<const RSExportVectorType *>(ET);
if (EVT->getType() == DataTypeFloat32) {
if (EVT->getNumElement() == 2) {
return "Element.F32_2";
} else if (EVT->getNumElement() == 3) {
return "Element.F32_3";
} else if (EVT->getNumElement() == 4) {
return "Element.F32_4";
} else {
slangAssert(false && "Vectors should be size 2, 3, 4");
}
} else if (EVT->getType() == DataTypeUnsigned8) {
if (EVT->getNumElement() == 4)
return "Element.U8_4";
}
} else if (ET->getClass() == RSExportType::ExportClassMatrix) {
const RSExportMatrixType *EMT = static_cast<const RSExportMatrixType *>(ET);
switch (EMT->getDim()) {
case 2:
return "Element.MATRIX_2X2";
case 3:
return "Element.MATRIX_3X3";
case 4:
return "Element.MATRIX_4X4";
default:
slangAssert(false && "Unsupported dimension of matrix");
}
}
// RSExportType::ExportClassPointer can't be generated in a struct.
return "";
}
// If FromIntegerType == DestIntegerType, then Value is returned.
// Otherwise, return a Java expression that zero-extends the value
// Value, assumed to be of type FromIntegerType, to the integer type
// DestIntegerType.
//
// Intended operations:
// byte -> {byte,int,short,long}
// short -> {short,int,long}
// int -> {int,long}
// long -> long
static std::string ZeroExtendValue(const std::string &Value,
const std::string &FromIntegerType,
const std::string &DestIntegerType) {
#ifndef __DISABLE_ASSERTS
// Integer types arranged in increasing order by width
const std::vector<std::string> ValidTypes{"byte", "short", "int", "long"};
auto FromTypeLoc = std::find(ValidTypes.begin(), ValidTypes.end(), FromIntegerType);
auto DestTypeLoc = std::find(ValidTypes.begin(), ValidTypes.end(), DestIntegerType);
// Check that both types are valid.
slangAssert(FromTypeLoc != ValidTypes.end());
slangAssert(DestTypeLoc != ValidTypes.end());
// Check that DestIntegerType is at least as wide as FromIntegerType.
slangAssert(FromTypeLoc - ValidTypes.begin() <= DestTypeLoc - ValidTypes.begin());
#endif
if (FromIntegerType == DestIntegerType) {
return Value;
}
std::string Mask, MaskLiteralType;
if (FromIntegerType == "byte") {
Mask = "0xff";
MaskLiteralType = "int";
} else if (FromIntegerType == "short") {
Mask = "0xffff";
MaskLiteralType = "int";
} else if (FromIntegerType == "int") {
Mask = "0xffffffffL";
MaskLiteralType = "long";
} else {
// long -> long casts should have already been handled.
slangAssert(false && "Unknown integer type");
}
// Cast the mask to the appropriate type.
if (MaskLiteralType != DestIntegerType) {
Mask = "(" + DestIntegerType + ") " + Mask;
}
return "((" + DestIntegerType + ") ((" + Value + ") & " + Mask + "))";
}
/********************** Methods to generate script class **********************/
RSReflectionJava::RSReflectionJava(const RSContext *Context,
std::vector<std::string> *GeneratedFileNames,
const std::string &OutputBaseDirectory,
const std::string &RSSourceFileName,
const std::string &BitCodeFileName,
bool EmbedBitcodeInJava)
: mRSContext(Context), mPackageName(Context->getReflectJavaPackageName()),
mRSPackageName(Context->getRSPackageName()),
mOutputBaseDirectory(OutputBaseDirectory),
mRSSourceFileName(RSSourceFileName), mBitCodeFileName(BitCodeFileName),
mResourceId(RSSlangReflectUtils::JavaClassNameFromRSFileName(
mBitCodeFileName.c_str())),
mScriptClassName(RS_SCRIPT_CLASS_NAME_PREFIX +
RSSlangReflectUtils::JavaClassNameFromRSFileName(
mRSSourceFileName.c_str())),
mEmbedBitcodeInJava(EmbedBitcodeInJava), mNextExportVarSlot(0),
mNextExportFuncSlot(0), mNextExportForEachSlot(0),
mNextExportReduceSlot(0), mLastError(""),
mGeneratedFileNames(GeneratedFileNames), mFieldIndex(0) {
slangAssert(mGeneratedFileNames && "Must supply GeneratedFileNames");
slangAssert(!mPackageName.empty() && mPackageName != "-");
mOutputDirectory = RSSlangReflectUtils::ComputePackagedPath(
OutputBaseDirectory.c_str(), mPackageName.c_str()) +
OS_PATH_SEPARATOR_STR;
// mElement.getBytesSize only exists on JB+
if (mRSContext->getTargetAPI() >= SLANG_JB_TARGET_API) {
mItemSizeof = RS_TYPE_ITEM_SIZEOF_CURRENT;
} else {
mItemSizeof = RS_TYPE_ITEM_SIZEOF_LEGACY;
}
}
bool RSReflectionJava::genScriptClass(const std::string &ClassName,
std::string &ErrorMsg) {
if (!startClass(AM_Public, false, ClassName, RS_SCRIPT_CLASS_SUPER_CLASS_NAME,
ErrorMsg))
return false;
genScriptClassConstructor();
// Reflect exported variables
for (auto I = mRSContext->export_vars_begin(),
E = mRSContext->export_vars_end();
I != E; I++)
genExportVariable(*I);
// Reflect exported forEach functions (only available on ICS+)
if (mRSContext->getTargetAPI() >= SLANG_ICS_TARGET_API) {
for (auto I = mRSContext->export_foreach_begin(),
E = mRSContext->export_foreach_end();
I != E; I++) {
genExportForEach(*I);
}
}
// Reflect exported new-style reduce functions
for (const RSExportType *ResultType : mRSContext->getReduceResultTypes(
// FilterIn
exportableReduce,
// Compare
[](const RSExportType *A, const RSExportType *B)
{ return GetReduceResultTypeName(A) < GetReduceResultTypeName(B); }))
genExportReduceResultType(ResultType);
for (auto I = mRSContext->export_reduce_begin(),
E = mRSContext->export_reduce_end();
I != E; ++I)
genExportReduce(*I);
// Reflect exported functions (invokable)
for (auto I = mRSContext->export_funcs_begin(),
E = mRSContext->export_funcs_end();
I != E; ++I)
genExportFunction(*I);
endClass();
return true;
}
void RSReflectionJava::genScriptClassConstructor() {
std::string className(RSSlangReflectUtils::JavaBitcodeClassNameFromRSFileName(
mRSSourceFileName.c_str()));
// Provide a simple way to reference this object.
mOut.indent() << "private static final String " RS_RESOURCE_NAME " = \""
<< getResourceId() << "\";\n";
// Generate a simple constructor with only a single parameter (the rest
// can be inferred from information we already have).
mOut.indent() << "// Constructor\n";
startFunction(AM_Public, false, nullptr, getClassName(), 1, "RenderScript",
"rs");
const bool haveReduceExportables =
mRSContext->export_reduce_begin() != mRSContext->export_reduce_end();
if (getEmbedBitcodeInJava()) {
// Call new single argument Java-only constructor
mOut.indent() << "super(rs,\n";
mOut.indent() << " " << RS_RESOURCE_NAME ",\n";
mOut.indent() << " " << className << ".getBitCode32(),\n";
mOut.indent() << " " << className << ".getBitCode64());\n";
} else {
// Call alternate constructor with required parameters.
// Look up the proper raw bitcode resource id via the context.
mOut.indent() << "this(rs,\n";
mOut.indent() << " rs.getApplicationContext().getResources(),\n";
mOut.indent() << " rs.getApplicationContext().getResources()."
"getIdentifier(\n";
mOut.indent() << " " RS_RESOURCE_NAME ", \"raw\",\n";
mOut.indent()
<< " rs.getApplicationContext().getPackageName()));\n";
endFunction();
// Alternate constructor (legacy) with 3 original parameters.
startFunction(AM_Public, false, nullptr, getClassName(), 3, "RenderScript",
"rs", "Resources", "resources", "int", "id");
// Call constructor of super class
mOut.indent() << "super(rs, resources, id);\n";
}
// If an exported variable has initial value, reflect it
for (auto I = mRSContext->export_vars_begin(),
E = mRSContext->export_vars_end();
I != E; I++) {
const RSExportVar *EV = *I;
if (!EV->getInit().isUninit()) {
genInitExportVariable(EV->getType(), EV->getName(), EV->getInit());
} else if (EV->getArraySize()) {
// Always create an initial zero-init array object.
mOut.indent() << RS_EXPORT_VAR_PREFIX << EV->getName() << " = new "
<< GetTypeName(EV->getType(), TypeNameDefault & ~TypeNameWithConstantArrayBrackets) << "["
<< EV->getArraySize() << "];\n";
size_t NumInits = EV->getNumInits();
const RSExportConstantArrayType *ECAT =
static_cast<const RSExportConstantArrayType *>(EV->getType());
const RSExportType *ET = ECAT->getElementType();
for (size_t i = 0; i < NumInits; i++) {
std::stringstream Name;
Name << EV->getName() << "[" << i << "]";
genInitExportVariable(ET, Name.str(), EV->getInitArray(i));
}
}
if (mRSContext->getTargetAPI() >= SLANG_JB_TARGET_API) {
genTypeInstance(EV->getType());
}
genFieldPackerInstance(EV->getType());
}
if (haveReduceExportables) {
mOut.indent() << SAVED_RS_REFERENCE << " = rs;\n";
}
// Reflect argument / return types in kernels
for (auto I = mRSContext->export_foreach_begin(),
E = mRSContext->export_foreach_end();
I != E; I++) {
const RSExportForEach *EF = *I;
const RSExportForEach::InTypeVec &InTypes = EF->getInTypes();
for (RSExportForEach::InTypeIter BI = InTypes.begin(), EI = InTypes.end();
BI != EI; BI++) {
if (*BI != nullptr) {
genTypeInstanceFromPointer(*BI);
}
}
const RSExportType *OET = EF->getOutType();
if (OET) {
genTypeInstanceFromPointer(OET);
}
}
for (auto I = mRSContext->export_reduce_begin(),
E = mRSContext->export_reduce_end();
I != E; I++) {
const RSExportReduce *ER = *I;
const RSExportType *RT = ER->getResultType();
slangAssert(RT != nullptr);
if (!exportableReduce(RT))
continue;
genTypeInstance(RT);
const RSExportReduce::InTypeVec &InTypes = ER->getAccumulatorInTypes();
for (RSExportReduce::InTypeIter BI = InTypes.begin(), EI = InTypes.end();
BI != EI; BI++) {
slangAssert(*BI != nullptr);
genTypeInstance(*BI);
}
}
endFunction();
for (std::set<std::string>::iterator I = mTypesToCheck.begin(),
E = mTypesToCheck.end();
I != E; I++) {
mOut.indent() << "private Element " RS_ELEM_PREFIX << *I << ";\n";
}
for (std::set<std::string>::iterator I = mFieldPackerTypes.begin(),
E = mFieldPackerTypes.end();
I != E; I++) {
mOut.indent() << "private FieldPacker " RS_FP_PREFIX << *I << ";\n";
}
if (haveReduceExportables) {
// We save a private copy of rs in order to create temporary
// allocations in the reduce_* entry points.
mOut.indent() << "private RenderScript " << SAVED_RS_REFERENCE << ";\n";
}
}
void RSReflectionJava::genInitBoolExportVariable(const std::string &VarName,
const clang::APValue &Val) {
slangAssert(!Val.isUninit() && "Not a valid initializer");
slangAssert((Val.getKind() == clang::APValue::Int) &&
"Bool type has wrong initial APValue");
mOut.indent() << RS_EXPORT_VAR_PREFIX << VarName << " = ";
mOut << ((Val.getInt().getSExtValue() == 0) ? "false" : "true") << ";\n";
}
void
RSReflectionJava::genInitPrimitiveExportVariable(const std::string &VarName,
const clang::APValue &Val) {
slangAssert(!Val.isUninit() && "Not a valid initializer");
mOut.indent() << RS_EXPORT_VAR_PREFIX << VarName << " = ";
genInitValue(Val, false);
mOut << ";\n";
}
void RSReflectionJava::genInitExportVariable(const RSExportType *ET,
const std::string &VarName,
const clang::APValue &Val) {
slangAssert(!Val.isUninit() && "Not a valid initializer");
switch (ET->getClass()) {
case RSExportType::ExportClassPrimitive: {
const RSExportPrimitiveType *EPT =
static_cast<const RSExportPrimitiveType *>(ET);
if (EPT->getType() == DataTypeBoolean) {
genInitBoolExportVariable(VarName, Val);
} else {
genInitPrimitiveExportVariable(VarName, Val);
}
break;
}
case RSExportType::ExportClassPointer: {
if (!Val.isInt() || Val.getInt().getSExtValue() != 0)
std::cout << "Initializer which is non-NULL to pointer type variable "
"will be ignored\n";
break;
}
case RSExportType::ExportClassVector: {
const RSExportVectorType *EVT = static_cast<const RSExportVectorType *>(ET);
switch (Val.getKind()) {
case clang::APValue::Int:
case clang::APValue::Float: {
for (unsigned i = 0; i < EVT->getNumElement(); i++) {
std::string Name = VarName + "." + GetVectorAccessor(i);
genInitPrimitiveExportVariable(Name, Val);
}
break;
}
case clang::APValue::Vector: {
std::stringstream VecName;
VecName << EVT->getRSReflectionType(EVT)->rs_java_vector_prefix
<< EVT->getNumElement();
mOut.indent() << RS_EXPORT_VAR_PREFIX << VarName << " = new "
<< VecName.str() << "();\n";
unsigned NumElements = std::min(
static_cast<unsigned>(EVT->getNumElement()), Val.getVectorLength());
for (unsigned i = 0; i < NumElements; i++) {
const clang::APValue &ElementVal = Val.getVectorElt(i);
std::string Name = VarName + "." + GetVectorAccessor(i);
genInitPrimitiveExportVariable(Name, ElementVal);
}
break;
}
case clang::APValue::MemberPointer:
case clang::APValue::Uninitialized:
case clang::APValue::ComplexInt:
case clang::APValue::ComplexFloat:
case clang::APValue::LValue:
case clang::APValue::Array:
case clang::APValue::Struct:
case clang::APValue::Union:
case clang::APValue::AddrLabelDiff: {
slangAssert(false && "Unexpected type of value of initializer.");
}
}
break;
}
// TODO(zonr): Resolving initializer of a record (and matrix) type variable
// is complex. It cannot obtain by just simply evaluating the initializer
// expression.
case RSExportType::ExportClassMatrix:
case RSExportType::ExportClassConstantArray:
case RSExportType::ExportClassRecord: {
#if 0
unsigned InitIndex = 0;
const RSExportRecordType *ERT =
static_cast<const RSExportRecordType*>(ET);
slangAssert((Val.getKind() == clang::APValue::Vector) &&
"Unexpected type of initializer for record type variable");
mOut.indent() << RS_EXPORT_VAR_PREFIX << VarName
<< " = new " << ERT->getElementName()
<< "." RS_TYPE_ITEM_CLASS_NAME"();\n";
for (RSExportRecordType::const_field_iterator I = ERT->fields_begin(),
E = ERT->fields_end();
I != E;
I++) {
const RSExportRecordType::Field *F = *I;
std::string FieldName = VarName + "." + F->getName();
if (InitIndex > Val.getVectorLength())
break;
genInitPrimitiveExportVariable(FieldName,
Val.getVectorElt(InitIndex++));
}
#endif
slangAssert(false && "Unsupported initializer for record/matrix/constant "
"array type variable currently");
break;
}
default: { slangAssert(false && "Unknown class of type"); }
}
}
void RSReflectionJava::genExportVariable(const RSExportVar *EV) {
const RSExportType *ET = EV->getType();
mOut.indent() << "private final static int " << RS_EXPORT_VAR_INDEX_PREFIX
<< EV->getName() << " = " << getNextExportVarSlot() << ";\n";
switch (ET->getClass()) {
case RSExportType::ExportClassPrimitive: {
genPrimitiveTypeExportVariable(EV);
break;
}
case RSExportType::ExportClassPointer: {
genPointerTypeExportVariable(EV);
break;
}
case RSExportType::ExportClassVector: {
genVectorTypeExportVariable(EV);
break;
}
case RSExportType::ExportClassMatrix: {
genMatrixTypeExportVariable(EV);
break;
}
case RSExportType::ExportClassConstantArray: {
genConstantArrayTypeExportVariable(EV);
break;
}
case RSExportType::ExportClassRecord: {
genRecordTypeExportVariable(EV);
break;
}
default: { slangAssert(false && "Unknown class of type"); }
}
}
void RSReflectionJava::genExportFunction(const RSExportFunc *EF) {
mOut.indent() << "private final static int " << RS_EXPORT_FUNC_INDEX_PREFIX
<< EF->getName() << " = " << getNextExportFuncSlot() << ";\n";
// invoke_*()
ArgTy Args;
if (EF->hasParam()) {
for (RSExportFunc::const_param_iterator I = EF->params_begin(),
E = EF->params_end();
I != E; I++) {
Args.push_back(
std::make_pair(GetTypeName((*I)->getType()), (*I)->getName()));
}
}
if (mRSContext->getTargetAPI() >= SLANG_M_TARGET_API) {
startFunction(AM_Public, false, "Script.InvokeID",
"getInvokeID_" + EF->getName(), 0);
mOut.indent() << "return createInvokeID(" << RS_EXPORT_FUNC_INDEX_PREFIX
<< EF->getName() << ");\n";
endFunction();
}
startFunction(AM_Public, false, "void",
"invoke_" + EF->getName(/*Mangle=*/false),
// We are using un-mangled name since Java
// supports method overloading.
Args);
if (!EF->hasParam()) {
mOut.indent() << "invoke(" << RS_EXPORT_FUNC_INDEX_PREFIX << EF->getName()
<< ");\n";
} else {
const RSExportRecordType *ERT = EF->getParamPacketType();
std::string FieldPackerName = EF->getName() + "_fp";
if (genCreateFieldPacker(ERT, FieldPackerName.c_str()))
genPackVarOfType(ERT, nullptr, FieldPackerName.c_str());
mOut.indent() << "invoke(" << RS_EXPORT_FUNC_INDEX_PREFIX << EF->getName()
<< ", " << FieldPackerName << ");\n";
}
endFunction();
}
void RSReflectionJava::genPairwiseDimCheck(std::string name0,
std::string name1) {
mOut.indent() << "// Verify dimensions\n";
mOut.indent() << "t0 = " << name0 << ".getType();\n";
mOut.indent() << "t1 = " << name1 << ".getType();\n";
mOut.indent() << "if ((t0.getCount() != t1.getCount()) ||\n";
mOut.indent() << " (t0.getX() != t1.getX()) ||\n";
mOut.indent() << " (t0.getY() != t1.getY()) ||\n";
mOut.indent() << " (t0.getZ() != t1.getZ()) ||\n";
mOut.indent() << " (t0.hasFaces() != t1.hasFaces()) ||\n";
mOut.indent() << " (t0.hasMipmaps() != t1.hasMipmaps())) {\n";
mOut.indent() << " throw new RSRuntimeException(\"Dimension mismatch "
<< "between parameters " << name0 << " and " << name1
<< "!\");\n";
mOut.indent() << "}\n\n";
}
void RSReflectionJava::genNullArrayCheck(const std::string &ArrayName) {
mOut.indent() << "// Verify that \"" << ArrayName << "\" is non-null.\n";
mOut.indent() << "if (" << ArrayName << " == null) {\n";
mOut.indent() << " throw new RSIllegalArgumentException(\"Array \\\""
<< ArrayName << "\\\" is null!\");\n";
mOut.indent() << "}\n";
}
void RSReflectionJava::genVectorLengthCompatibilityCheck(const std::string &ArrayName,
unsigned VecSize) {
mOut.indent() << "// Verify that the array length is a multiple of the vector size.\n";
mOut.indent() << "if (" << ArrayName << ".length % " << std::to_string(VecSize)
<< " != 0) {\n";
mOut.indent() << " throw new RSIllegalArgumentException(\"Array \\\"" << ArrayName
<< "\\\" is not a multiple of " << std::to_string(VecSize)
<< " in length!\");\n";
mOut.indent() << "}\n";
}
void RSReflectionJava::genExportForEach(const RSExportForEach *EF) {
if (EF->isDummyRoot()) {
// Skip reflection for dummy root() kernels. Note that we have to
// advance the next slot number for ForEach, however.
mOut.indent() << "//private final static int "
<< RS_EXPORT_FOREACH_INDEX_PREFIX << EF->getName() << " = "
<< getNextExportForEachSlot() << ";\n";
return;
}
mOut.indent() << "private final static int " << RS_EXPORT_FOREACH_INDEX_PREFIX
<< EF->getName() << " = " << getNextExportForEachSlot()
<< ";\n";
// forEach_*()
ArgTy Args;
bool HasAllocation = false; // at least one in/out allocation?
const RSExportForEach::InVec &Ins = EF->getIns();
const RSExportForEach::InTypeVec &InTypes = EF->getInTypes();
const RSExportType *OET = EF->getOutType();
if (Ins.size() == 1) {
HasAllocation = true;
Args.push_back(std::make_pair("Allocation", "ain"));
} else if (Ins.size() > 1) {
HasAllocation = true;
for (RSExportForEach::InIter BI = Ins.begin(), EI = Ins.end(); BI != EI;
BI++) {
Args.push_back(std::make_pair("Allocation",
"ain_" + (*BI)->getName().str()));
}
}
if (EF->hasOut() || EF->hasReturn()) {
HasAllocation = true;
Args.push_back(std::make_pair("Allocation", "aout"));
}
const RSExportRecordType *ERT = EF->getParamPacketType();
if (ERT) {
for (RSExportForEach::const_param_iterator I = EF->params_begin(),
E = EF->params_end();
I != E; I++) {
Args.push_back(
std::make_pair(GetTypeName((*I)->getType()), (*I)->getName()));
}
}
if (mRSContext->getTargetAPI() >= SLANG_JB_MR1_TARGET_API) {
startFunction(AM_Public, false, "Script.KernelID",
"getKernelID_" + EF->getName(), 0);
// TODO: add element checking
mOut.indent() << "return createKernelID(" << RS_EXPORT_FOREACH_INDEX_PREFIX
<< EF->getName() << ", " << EF->getSignatureMetadata()
<< ", null, null);\n";
endFunction();
}
if (mRSContext->getTargetAPI() >= SLANG_JB_MR2_TARGET_API) {
if (HasAllocation) {
startFunction(AM_Public, false, "void", "forEach_" + EF->getName(), Args);
mOut.indent() << "forEach_" << EF->getName();
mOut << "(";
if (Ins.size() == 1) {
mOut << "ain, ";
} else if (Ins.size() > 1) {
for (RSExportForEach::InIter BI = Ins.begin(), EI = Ins.end(); BI != EI;
BI++) {
mOut << "ain_" << (*BI)->getName().str() << ", ";
}
}
if (EF->hasOut() || EF->hasReturn()) {
mOut << "aout, ";
}
if (EF->hasUsrData()) {
mOut << Args.back().second << ", ";
}
// No clipped bounds to pass in.
mOut << "null);\n";
endFunction();
}
// Add the clipped kernel parameters to the Args list.
Args.push_back(std::make_pair("Script.LaunchOptions", "sc"));
}
startFunction(AM_Public, false, "void", "forEach_" + EF->getName(), Args);
if (InTypes.size() == 1) {
if (InTypes.front() != nullptr) {
genTypeCheck(InTypes.front(), "ain");
}
} else if (InTypes.size() > 1) {
size_t Index = 0;
for (RSExportForEach::InTypeIter BI = InTypes.begin(), EI = InTypes.end();
BI != EI; BI++, ++Index) {
if (*BI != nullptr) {
genTypeCheck(*BI, ("ain_" + Ins[Index]->getName()).str().c_str());
}
}
}
if (OET) {
genTypeCheck(OET, "aout");
}
if (Ins.size() == 1 && (EF->hasOut() || EF->hasReturn())) {
mOut.indent() << "Type t0, t1;";
genPairwiseDimCheck("ain", "aout");
} else if (Ins.size() > 1) {
mOut.indent() << "Type t0, t1;";
std::string In0Name = "ain_" + Ins[0]->getName().str();
for (size_t index = 1; index < Ins.size(); ++index) {
genPairwiseDimCheck(In0Name, "ain_" + Ins[index]->getName().str());
}
if (EF->hasOut() || EF->hasReturn()) {
genPairwiseDimCheck(In0Name, "aout");
}
}
std::string FieldPackerName = EF->getName() + "_fp";
if (ERT) {
if (genCreateFieldPacker(ERT, FieldPackerName.c_str())) {
genPackVarOfType(ERT, nullptr, FieldPackerName.c_str());
}
}
mOut.indent() << "forEach(" << RS_EXPORT_FOREACH_INDEX_PREFIX
<< EF->getName();
if (Ins.size() == 1) {
mOut << ", ain";
} else if (Ins.size() > 1) {
mOut << ", new Allocation[]{ain_" << Ins[0]->getName().str();
for (size_t index = 1; index < Ins.size(); ++index) {
mOut << ", ain_" << Ins[index]->getName().str();
}
mOut << "}";