mirror of
https://github.com/xomboverlord/ldc.git
synced 2026-01-12 02:43:14 +01:00
Removed use of dyn_cast, llvm no compiles without exceptions and rtti by default. We do need exceptions for the libconfig stuff, but rtti isn't necessary (anymore). Debug info needs to be rewritten, as in LLVM 2.7 the format has completely changed. To have something to look at while rewriting, the old code has been wrapped inside #ifndef DISABLE_DEBUG_INFO , this means that you have to define this to compile at the moment. Updated tango 0.99.9 patch to include updated EH runtime code, which is needed for LLVM 2.7 as well.
1076 lines
34 KiB
C++
1076 lines
34 KiB
C++
#include "gen/llvm.h"
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#include "mtype.h"
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#include "module.h"
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#include "dsymbol.h"
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#include "aggregate.h"
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#include "declaration.h"
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#include "init.h"
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#include "gen/irstate.h"
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#include "gen/tollvm.h"
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#include "gen/llvmhelpers.h"
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#include "gen/arrays.h"
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#include "gen/runtime.h"
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#include "gen/logger.h"
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#include "gen/dvalue.h"
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#include "ir/irmodule.h"
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#include "gen/cl_options.h"
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//////////////////////////////////////////////////////////////////////////////////////////
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const LLStructType* DtoArrayType(Type* arrayTy)
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{
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assert(arrayTy->nextOf());
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const LLType* elemty = DtoType(arrayTy->nextOf());
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if (elemty == LLType::getVoidTy(gIR->context()))
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elemty = LLType::getInt8Ty(gIR->context());
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return LLStructType::get(gIR->context(), DtoSize_t(), getPtrToType(elemty), NULL);
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}
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const LLStructType* DtoArrayType(const LLType* t)
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{
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return LLStructType::get(gIR->context(), DtoSize_t(), getPtrToType(t), NULL);
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}
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//////////////////////////////////////////////////////////////////////////////////////////
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const LLArrayType* DtoStaticArrayType(Type* t)
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{
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t = t->toBasetype();
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assert(t->ty == Tsarray);
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TypeSArray* tsa = (TypeSArray*)t;
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Type* tnext = tsa->nextOf();
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const LLType* elemty = DtoType(tnext);
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if (elemty == LLType::getVoidTy(gIR->context()))
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elemty = LLType::getInt8Ty(gIR->context());
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return LLArrayType::get(elemty, tsa->dim->toUInteger());
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}
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//////////////////////////////////////////////////////////////////////////////////////////
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void DtoSetArrayToNull(LLValue* v)
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{
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Logger::println("DtoSetArrayToNull");
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LOG_SCOPE;
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assert(isaPointer(v));
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const LLType* t = v->getType()->getContainedType(0);
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DtoStore(LLConstant::getNullValue(t), v);
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}
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//////////////////////////////////////////////////////////////////////////////////////////
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void DtoArrayInit(Loc& loc, DValue* array, DValue* value)
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{
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Logger::println("DtoArrayInit");
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LOG_SCOPE;
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LLValue* dim = DtoArrayLen(array);
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LLValue* ptr = DtoArrayPtr(array);
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LLValue* val;
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// give slices and complex values storage (and thus an address to pass)
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if (value->isSlice())
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{
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val = DtoAlloca(value->getType(), ".tmpparam");
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DVarValue lval(value->getType(), val);
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DtoAssign(loc, &lval, value);
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}
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else
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{
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val = value->getRVal();
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}
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assert(val);
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// prepare runtime call
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LLSmallVector<LLValue*, 4> args;
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args.push_back(ptr);
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args.push_back(dim);
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args.push_back(val);
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// determine the right runtime function to call
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const char* funcname = NULL;
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Type* arrayelemty = array->getType()->nextOf()->toBasetype();
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Type* valuety = value->getType()->toBasetype();
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// lets first optimize all zero initializations down to a memset.
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// this simplifies codegen later on as llvm null's have no address!
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if (isaConstant(val) && isaConstant(val)->isNullValue())
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{
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size_t X = getTypePaddedSize(val->getType());
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LLValue* nbytes = gIR->ir->CreateMul(dim, DtoConstSize_t(X), ".nbytes");
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DtoMemSetZero(ptr, nbytes);
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return;
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}
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// if not a zero initializer, call the appropriate runtime function!
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switch (arrayelemty->ty)
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{
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case Tbool:
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val = gIR->ir->CreateZExt(val, LLType::getInt8Ty(gIR->context()), ".bool");
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// fall through
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case Tvoid:
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case Tchar:
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case Tint8:
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case Tuns8:
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Logger::println("Using memset for array init");
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DtoMemSet(ptr, val, dim);
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return;
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case Twchar:
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case Tint16:
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case Tuns16:
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funcname = "_d_array_init_i16";
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break;
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case Tdchar:
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case Tint32:
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case Tuns32:
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funcname = "_d_array_init_i32";
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break;
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case Tint64:
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case Tuns64:
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funcname = "_d_array_init_i64";
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break;
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case Tfloat32:
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case Timaginary32:
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funcname = "_d_array_init_float";
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break;
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case Tfloat64:
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case Timaginary64:
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funcname = "_d_array_init_double";
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break;
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case Tfloat80:
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case Timaginary80:
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funcname = "_d_array_init_real";
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break;
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case Tcomplex32:
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funcname = "_d_array_init_cfloat";
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break;
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case Tcomplex64:
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funcname = "_d_array_init_cdouble";
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break;
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case Tcomplex80:
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funcname = "_d_array_init_creal";
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break;
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case Tpointer:
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case Tclass:
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funcname = "_d_array_init_pointer";
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args[0] = DtoBitCast(args[0], getPtrToType(getVoidPtrType()));
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args[2] = DtoBitCast(args[2], getVoidPtrType());
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break;
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// this currently acts as a kind of fallback for all the bastards...
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// FIXME: this is probably too slow.
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case Tstruct:
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case Tdelegate:
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case Tarray:
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case Tsarray:
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funcname = "_d_array_init_mem";
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assert(arrayelemty == valuety && "ArrayInit doesn't work on elem-initialized static arrays");
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args[0] = DtoBitCast(args[0], getVoidPtrType());
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args[2] = DtoBitCast(args[2], getVoidPtrType());
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args.push_back(DtoConstSize_t(getTypePaddedSize(DtoTypeNotVoid(arrayelemty))));
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break;
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default:
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error("unhandled array init: %s = %s", array->getType()->toChars(), value->getType()->toChars());
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assert(0 && "unhandled array init");
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}
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if (Logger::enabled())
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{
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Logger::cout() << "ptr = " << *args[0] << std::endl;
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Logger::cout() << "dim = " << *args[1] << std::endl;
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Logger::cout() << "val = " << *args[2] << std::endl;
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}
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LLFunction* fn = LLVM_D_GetRuntimeFunction(gIR->module, funcname);
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assert(fn);
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if (Logger::enabled())
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Logger::cout() << "calling array init function: " << *fn <<'\n';
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LLCallSite call = gIR->CreateCallOrInvoke(fn, args.begin(), args.end());
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call.setCallingConv(llvm::CallingConv::C);
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}
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//////////////////////////////////////////////////////////////////////////////////////////
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void DtoSetArray(LLValue* arr, LLValue* dim, LLValue* ptr)
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{
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Logger::println("SetArray");
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assert(isaStruct(arr->getType()->getContainedType(0)));
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DtoStore(dim, DtoGEPi(arr,0,0));
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DtoStore(ptr, DtoGEPi(arr,0,1));
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}
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//////////////////////////////////////////////////////////////////////////////////////////
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LLConstant* DtoConstArrayInitializer(ArrayInitializer* arrinit)
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{
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Logger::println("DtoConstArrayInitializer: %s | %s", arrinit->toChars(), arrinit->type->toChars());
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LOG_SCOPE;
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assert(arrinit->value.dim == arrinit->index.dim);
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// get base array type
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Type* arrty = arrinit->type->toBasetype();
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size_t arrlen = arrinit->dim;
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// for statis arrays, dmd does not include any trailing default
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// initialized elements in the value/index lists
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if (arrty->ty == Tsarray)
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{
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TypeSArray* tsa = (TypeSArray*)arrty;
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arrlen = (size_t)tsa->dim->toInteger();
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}
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// make sure the number of initializers is sane
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if (arrinit->index.dim > arrlen || arrinit->dim > arrlen)
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{
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error(arrinit->loc, "too many initializers, %u, for array[%zu]", arrinit->index.dim, arrlen);
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fatal();
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}
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// get elem type
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Type* elemty = arrty->nextOf();
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const LLType* llelemty = DtoTypeNotVoid(elemty);
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// true if array elements differ in type, can happen with array of unions
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bool mismatch = false;
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// allocate room for initializers
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std::vector<LLConstant*> initvals(arrlen, NULL);
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// go through each initializer, they're not sorted by index by the frontend
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size_t j = 0;
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for (size_t i = 0; i < arrinit->index.dim; i++)
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{
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// get index
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Expression* idx = (Expression*)arrinit->index.data[i];
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// idx can be null, then it's just the next element
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if (idx)
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j = idx->toInteger();
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assert(j < arrlen);
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// get value
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Initializer* val = (Initializer*)arrinit->value.data[i];
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assert(val);
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// error check from dmd
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if (initvals[j] != NULL)
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{
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error(arrinit->loc, "duplicate initialization for index %zu", j);
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}
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LLConstant* c = DtoConstInitializer(val->loc, elemty, val);
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assert(c);
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if (c->getType() != llelemty)
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mismatch = true;
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initvals[j] = c;
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j++;
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}
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// die now if there was errors
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if (global.errors)
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fatal();
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// fill out any null entries still left with default values
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// element default initializer
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LLConstant* defelem = DtoConstExpInit(arrinit->loc, elemty, elemty->defaultInit(arrinit->loc));
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bool mismatch2 = (defelem->getType() != llelemty);
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for (size_t i = 0; i < arrlen; i++)
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{
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if (initvals[i] != NULL)
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continue;
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initvals[i] = defelem;
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if (mismatch2)
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mismatch = true;
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}
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LLConstant* constarr;
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if (mismatch)
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constarr = LLConstantStruct::get(gIR->context(), initvals, false); // FIXME should this pack?
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else
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constarr = LLConstantArray::get(LLArrayType::get(llelemty, arrlen), initvals);
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// std::cout << "constarr: " << *constarr << std::endl;
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// if the type is a static array, we're done
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if (arrty->ty == Tsarray)
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return constarr;
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// for dynamic array we need to make a global with the data, so we have a pointer for the dynamic array
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// Important: don't make the gvar constant, since this const initializer might
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// be used as an initializer for a static T[] - where modifying contents is allowed.
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LLGlobalVariable* gvar = new LLGlobalVariable(*gIR->module, constarr->getType(), false, LLGlobalValue::InternalLinkage, constarr, ".constarray");
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LLConstant* idxs[2] = { DtoConstUint(0), DtoConstUint(0) };
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LLConstant* gep = llvm::ConstantExpr::getGetElementPtr(gvar,idxs,2);
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gep = llvm::ConstantExpr::getBitCast(gvar, getPtrToType(llelemty));
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return DtoConstSlice(DtoConstSize_t(arrlen),gep);
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}
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//////////////////////////////////////////////////////////////////////////////////////////
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static LLValue* get_slice_ptr(DSliceValue* e, LLValue*& sz)
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{
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assert(e->len != 0);
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const LLType* t = e->ptr->getType()->getContainedType(0);
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sz = gIR->ir->CreateMul(DtoConstSize_t(getTypePaddedSize(t)), e->len, "tmp");
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return DtoBitCast(e->ptr, getVoidPtrType());
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}
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void DtoArrayCopySlices(DSliceValue* dst, DSliceValue* src)
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{
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Logger::println("ArrayCopySlices");
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LLValue *sz1,*sz2;
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LLValue* dstarr = get_slice_ptr(dst,sz1);
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LLValue* srcarr = get_slice_ptr(src,sz2);
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if (global.params.useAssert || global.params.useArrayBounds)
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{
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LLValue* fn = LLVM_D_GetRuntimeFunction(gIR->module, "_d_array_slice_copy");
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gIR->CreateCallOrInvoke4(fn, dstarr, sz1, srcarr, sz2);
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}
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else
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{
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DtoMemCpy(dstarr, srcarr, sz1);
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}
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}
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void DtoArrayCopyToSlice(DSliceValue* dst, DValue* src)
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{
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Logger::println("ArrayCopyToSlice");
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LLValue* sz1;
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LLValue* dstarr = get_slice_ptr(dst,sz1);
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LLValue* srcarr = DtoBitCast(DtoArrayPtr(src), getVoidPtrType());
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const LLType* arrayelemty = DtoTypeNotVoid(src->getType()->nextOf()->toBasetype());
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LLValue* sz2 = gIR->ir->CreateMul(DtoConstSize_t(getTypePaddedSize(arrayelemty)), DtoArrayLen(src), "tmp");
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if (global.params.useAssert || global.params.useArrayBounds)
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{
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LLValue* fn = LLVM_D_GetRuntimeFunction(gIR->module, "_d_array_slice_copy");
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gIR->CreateCallOrInvoke4(fn, dstarr, sz1, srcarr, sz2);
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}
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else
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{
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DtoMemCpy(dstarr, srcarr, sz1);
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}
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}
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//////////////////////////////////////////////////////////////////////////////////////////
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void DtoStaticArrayCopy(LLValue* dst, LLValue* src)
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{
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Logger::println("StaticArrayCopy");
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size_t n = getTypePaddedSize(dst->getType()->getContainedType(0));
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DtoMemCpy(dst, src, DtoConstSize_t(n));
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}
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//////////////////////////////////////////////////////////////////////////////////////////
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LLConstant* DtoConstSlice(LLConstant* dim, LLConstant* ptr)
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{
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LLConstant* values[2] = { dim, ptr };
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return LLConstantStruct::get(gIR->context(), values, 2, false);
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}
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//////////////////////////////////////////////////////////////////////////////////////////
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static bool isInitialized(Type* et) {
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// Strip static array types from element type
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Type* bt = et->toBasetype();
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while (bt->ty == Tsarray) {
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et = bt->nextOf();
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bt = et->toBasetype();
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}
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// If it's a typedef with "= void" initializer then don't initialize.
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if (et->ty == Ttypedef) {
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Logger::println("Typedef: %s", et->toChars());
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TypedefDeclaration* tdd = ((TypeTypedef*)et)->sym;
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if (tdd && tdd->init && tdd->init->isVoidInitializer())
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return false;
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}
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// Otherwise, it's always initialized.
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return true;
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}
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//////////////////////////////////////////////////////////////////////////////////////////
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DSliceValue* DtoNewDynArray(Loc& loc, Type* arrayType, DValue* dim, bool defaultInit)
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{
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Logger::println("DtoNewDynArray : %s", arrayType->toChars());
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LOG_SCOPE;
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// typeinfo arg
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LLValue* arrayTypeInfo = DtoTypeInfoOf(arrayType);
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// dim arg
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assert(DtoType(dim->getType()) == DtoSize_t());
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LLValue* arrayLen = dim->getRVal();
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// get runtime function
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Type* eltType = arrayType->toBasetype()->nextOf();
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if (defaultInit && !isInitialized(eltType))
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defaultInit = false;
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bool zeroInit = eltType->isZeroInit();
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const char* fnname = defaultInit ? (zeroInit ? "_d_newarrayT" : "_d_newarrayiT") : "_d_newarrayvT";
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LLFunction* fn = LLVM_D_GetRuntimeFunction(gIR->module, fnname);
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// call allocator
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LLValue* newptr = gIR->CreateCallOrInvoke2(fn, arrayTypeInfo, arrayLen, ".gc_mem").getInstruction();
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// cast to wanted type
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const LLType* dstType = DtoType(arrayType)->getContainedType(1);
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if (newptr->getType() != dstType)
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newptr = DtoBitCast(newptr, dstType, ".gc_mem");
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if (Logger::enabled())
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Logger::cout() << "final ptr = " << *newptr << '\n';
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return new DSliceValue(arrayType, arrayLen, newptr);
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}
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//////////////////////////////////////////////////////////////////////////////////////////
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DSliceValue* DtoNewMulDimDynArray(Loc& loc, Type* arrayType, DValue** dims, size_t ndims, bool defaultInit)
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{
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Logger::println("DtoNewMulDimDynArray : %s", arrayType->toChars());
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LOG_SCOPE;
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// typeinfo arg
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LLValue* arrayTypeInfo = DtoTypeInfoOf(arrayType);
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// get value type
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Type* vtype = arrayType->toBasetype();
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for (size_t i=0; i<ndims; ++i)
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vtype = vtype->nextOf();
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// get runtime function
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bool zeroInit = vtype->isZeroInit();
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if (defaultInit && !isInitialized(vtype))
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defaultInit = false;
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const char* fnname = defaultInit ? (zeroInit ? "_d_newarraymT" : "_d_newarraymiT") : "_d_newarraymvT";
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LLFunction* fn = LLVM_D_GetRuntimeFunction(gIR->module, fnname);
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// build dims
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LLValue* dimsArg = DtoArrayAlloca(Type::tsize_t, ndims, ".newdims");
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LLValue* firstDim = NULL;
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for (size_t i=0; i<ndims; ++i)
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{
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LLValue* dim = dims[i]->getRVal();
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if (!firstDim) firstDim = dim;
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DtoStore(dim, DtoGEPi1(dimsArg, i));
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}
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// call allocator
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LLValue* newptr = gIR->CreateCallOrInvoke3(fn, arrayTypeInfo, DtoConstSize_t(ndims), dimsArg, ".gc_mem").getInstruction();
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// cast to wanted type
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const LLType* dstType = DtoType(arrayType)->getContainedType(1);
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if (newptr->getType() != dstType)
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newptr = DtoBitCast(newptr, dstType, ".gc_mem");
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if (Logger::enabled())
|
|
Logger::cout() << "final ptr = " << *newptr << '\n';
|
|
|
|
assert(firstDim);
|
|
return new DSliceValue(arrayType, firstDim, newptr);
|
|
}
|
|
|
|
//////////////////////////////////////////////////////////////////////////////////////////
|
|
DSliceValue* DtoResizeDynArray(Type* arrayType, DValue* array, DValue* newdim)
|
|
{
|
|
Logger::println("DtoResizeDynArray : %s", arrayType->toChars());
|
|
LOG_SCOPE;
|
|
|
|
assert(array);
|
|
assert(newdim);
|
|
assert(arrayType);
|
|
assert(arrayType->toBasetype()->ty == Tarray);
|
|
|
|
// decide on what runtime function to call based on whether the type is zero initialized
|
|
bool zeroInit = arrayType->toBasetype()->nextOf()->isZeroInit();
|
|
|
|
// call runtime
|
|
LLFunction* fn = LLVM_D_GetRuntimeFunction(gIR->module, zeroInit ? "_d_arraysetlengthT" : "_d_arraysetlengthiT" );
|
|
|
|
LLSmallVector<LLValue*,4> args;
|
|
args.push_back(DtoTypeInfoOf(arrayType));
|
|
args.push_back(newdim->getRVal());
|
|
args.push_back(DtoArrayLen(array));
|
|
|
|
LLValue* arrPtr = DtoArrayPtr(array);
|
|
if (Logger::enabled())
|
|
Logger::cout() << "arrPtr = " << *arrPtr << '\n';
|
|
args.push_back(DtoBitCast(arrPtr, fn->getFunctionType()->getParamType(3), "tmp"));
|
|
|
|
LLValue* newptr = gIR->CreateCallOrInvoke(fn, args.begin(), args.end(), ".gc_mem").getInstruction();
|
|
if (newptr->getType() != arrPtr->getType())
|
|
newptr = DtoBitCast(newptr, arrPtr->getType(), ".gc_mem");
|
|
|
|
return new DSliceValue(arrayType, newdim->getRVal(), newptr);
|
|
}
|
|
|
|
//////////////////////////////////////////////////////////////////////////////////////////
|
|
void DtoCatAssignElement(Loc& loc, Type* arrayType, DValue* array, Expression* exp)
|
|
{
|
|
Logger::println("DtoCatAssignElement");
|
|
LOG_SCOPE;
|
|
|
|
assert(array);
|
|
|
|
LLValue *valueToAppend = makeLValue(loc, exp->toElem(gIR));
|
|
|
|
LLFunction* fn = LLVM_D_GetRuntimeFunction(gIR->module, "_d_arrayappendcT");
|
|
LLSmallVector<LLValue*,3> args;
|
|
args.push_back(DtoTypeInfoOf(arrayType));
|
|
args.push_back(DtoBitCast(array->getLVal(), getVoidPtrType()));
|
|
args.push_back(DtoBitCast(valueToAppend, getVoidPtrType()));
|
|
|
|
gIR->CreateCallOrInvoke(fn, args.begin(), args.end(), ".appendedArray");
|
|
}
|
|
|
|
//////////////////////////////////////////////////////////////////////////////////////////
|
|
DSliceValue* DtoCatAssignArray(DValue* arr, Expression* exp)
|
|
{
|
|
Logger::println("DtoCatAssignArray");
|
|
LOG_SCOPE;
|
|
|
|
DValue* e = exp->toElem(gIR);
|
|
|
|
llvm::Value *len1, *len2, *src1, *src2, *res;
|
|
|
|
len1 = DtoArrayLen(arr);
|
|
len2 = DtoArrayLen(e);
|
|
res = gIR->ir->CreateAdd(len1,len2,"tmp");
|
|
|
|
DValue* newdim = new DImValue(Type::tsize_t, res);
|
|
DSliceValue* slice = DtoResizeDynArray(arr->getType(), arr, newdim);
|
|
|
|
src1 = slice->ptr;
|
|
src2 = DtoArrayPtr(e);
|
|
|
|
// advance ptr
|
|
src1 = gIR->ir->CreateGEP(src1,len1,"tmp");
|
|
|
|
// memcpy
|
|
LLValue* elemSize = DtoConstSize_t(getTypePaddedSize(src2->getType()->getContainedType(0)));
|
|
LLValue* bytelen = gIR->ir->CreateMul(len2, elemSize, "tmp");
|
|
DtoMemCpy(src1,src2,bytelen);
|
|
|
|
return slice;
|
|
}
|
|
|
|
//////////////////////////////////////////////////////////////////////////////////////////
|
|
DSliceValue* DtoCatArrays(Type* type, Expression* exp1, Expression* exp2)
|
|
{
|
|
Logger::println("DtoCatArrays");
|
|
LOG_SCOPE;
|
|
|
|
Type* t1 = exp1->type->toBasetype();
|
|
Type* t2 = exp2->type->toBasetype();
|
|
|
|
assert(t1->ty == Tarray || t1->ty == Tsarray);
|
|
assert(t2->ty == Tarray || t2->ty == Tsarray);
|
|
|
|
DValue* e1 = exp1->toElem(gIR);
|
|
DValue* e2 = exp2->toElem(gIR);
|
|
|
|
llvm::Value *len1, *len2, *src1, *src2, *res;
|
|
|
|
len1 = DtoArrayLen(e1);
|
|
len2 = DtoArrayLen(e2);
|
|
res = gIR->ir->CreateAdd(len1,len2,"tmp");
|
|
|
|
DValue* lenval = new DImValue(Type::tsize_t, res);
|
|
DSliceValue* slice = DtoNewDynArray(exp1->loc, type, lenval, false);
|
|
LLValue* mem = slice->ptr;
|
|
|
|
src1 = DtoArrayPtr(e1);
|
|
src2 = DtoArrayPtr(e2);
|
|
|
|
// first memcpy
|
|
LLValue* elemSize = DtoConstSize_t(getTypePaddedSize(src1->getType()->getContainedType(0)));
|
|
LLValue* bytelen = gIR->ir->CreateMul(len1, elemSize, "tmp");
|
|
DtoMemCpy(mem,src1,bytelen);
|
|
|
|
// second memcpy
|
|
mem = gIR->ir->CreateGEP(mem,len1,"tmp");
|
|
bytelen = gIR->ir->CreateMul(len2, elemSize, "tmp");
|
|
DtoMemCpy(mem,src2,bytelen);
|
|
|
|
return slice;
|
|
}
|
|
|
|
//////////////////////////////////////////////////////////////////////////////////////////
|
|
DSliceValue* DtoCatArrayElement(Type* type, Expression* exp1, Expression* exp2)
|
|
{
|
|
Logger::println("DtoCatArrayElement");
|
|
LOG_SCOPE;
|
|
|
|
Type* t1 = exp1->type->toBasetype();
|
|
Type* t2 = exp2->type->toBasetype();
|
|
|
|
DValue* e1 = exp1->toElem(gIR);
|
|
DValue* e2 = exp2->toElem(gIR);
|
|
|
|
llvm::Value *len1, *src1, *res;
|
|
|
|
// handle prefix case, eg. int~int[]
|
|
if (t2->nextOf() && t1 == t2->nextOf()->toBasetype())
|
|
{
|
|
len1 = DtoArrayLen(e2);
|
|
res = gIR->ir->CreateAdd(len1,DtoConstSize_t(1),"tmp");
|
|
|
|
DValue* lenval = new DImValue(Type::tsize_t, res);
|
|
DSliceValue* slice = DtoNewDynArray(exp1->loc, type, lenval, false);
|
|
LLValue* mem = slice->ptr;
|
|
|
|
DVarValue* memval = new DVarValue(e1->getType(), mem);
|
|
DtoAssign(exp1->loc, memval, e1);
|
|
|
|
src1 = DtoArrayPtr(e2);
|
|
|
|
mem = gIR->ir->CreateGEP(mem,DtoConstSize_t(1),"tmp");
|
|
|
|
LLValue* elemSize = DtoConstSize_t(getTypePaddedSize(src1->getType()->getContainedType(0)));
|
|
LLValue* bytelen = gIR->ir->CreateMul(len1, elemSize, "tmp");
|
|
DtoMemCpy(mem,src1,bytelen);
|
|
|
|
|
|
return slice;
|
|
}
|
|
// handle suffix case, eg. int[]~int
|
|
else
|
|
{
|
|
len1 = DtoArrayLen(e1);
|
|
res = gIR->ir->CreateAdd(len1,DtoConstSize_t(1),"tmp");
|
|
|
|
DValue* lenval = new DImValue(Type::tsize_t, res);
|
|
DSliceValue* slice = DtoNewDynArray(exp1->loc, type, lenval, false);
|
|
LLValue* mem = slice->ptr;
|
|
|
|
src1 = DtoArrayPtr(e1);
|
|
|
|
LLValue* elemSize = DtoConstSize_t(getTypePaddedSize(src1->getType()->getContainedType(0)));
|
|
LLValue* bytelen = gIR->ir->CreateMul(len1, elemSize, "tmp");
|
|
DtoMemCpy(mem,src1,bytelen);
|
|
|
|
mem = gIR->ir->CreateGEP(mem,len1,"tmp");
|
|
DVarValue* memval = new DVarValue(e2->getType(), mem);
|
|
DtoAssign(exp1->loc, memval, e2);
|
|
|
|
return slice;
|
|
}
|
|
}
|
|
|
|
//////////////////////////////////////////////////////////////////////////////////////////
|
|
// helper for eq and cmp
|
|
static LLValue* DtoArrayEqCmp_impl(Loc& loc, const char* func, DValue* l, DValue* r, bool useti)
|
|
{
|
|
Logger::println("comparing arrays");
|
|
LLFunction* fn = LLVM_D_GetRuntimeFunction(gIR->module, func);
|
|
assert(fn);
|
|
|
|
// find common dynamic array type
|
|
Type* commonType = l->getType()->toBasetype()->nextOf()->arrayOf();
|
|
|
|
// cast static arrays to dynamic ones, this turns them into DSliceValues
|
|
Logger::println("casting to dynamic arrays");
|
|
l = DtoCastArray(loc, l, commonType);
|
|
r = DtoCastArray(loc, r, commonType);
|
|
|
|
LLValue* lmem;
|
|
LLValue* rmem;
|
|
LLSmallVector<LLValue*, 3> args;
|
|
|
|
// get values, reinterpret cast to void[]
|
|
lmem = DtoAggrPaint(l->getRVal(), DtoArrayType(LLType::getInt8Ty(gIR->context())));
|
|
args.push_back(lmem);
|
|
|
|
rmem = DtoAggrPaint(r->getRVal(), DtoArrayType(LLType::getInt8Ty(gIR->context())));
|
|
args.push_back(rmem);
|
|
|
|
// pass array typeinfo ?
|
|
if (useti) {
|
|
Type* t = l->getType();
|
|
LLValue* tival = DtoTypeInfoOf(t);
|
|
// DtoTypeInfoOf only does declare, not enough in this case :/
|
|
t->vtinfo->codegen(Type::sir);
|
|
|
|
#if 0
|
|
if (Logger::enabled())
|
|
Logger::cout() << "typeinfo decl: " << *tival << '\n';
|
|
#endif
|
|
|
|
args.push_back(DtoBitCast(tival, fn->getFunctionType()->getParamType(2)));
|
|
}
|
|
|
|
LLCallSite call = gIR->CreateCallOrInvoke(fn, args.begin(), args.end(), "tmp");
|
|
|
|
return call.getInstruction();
|
|
}
|
|
|
|
//////////////////////////////////////////////////////////////////////////////////////////
|
|
LLValue* DtoArrayEquals(Loc& loc, TOK op, DValue* l, DValue* r)
|
|
{
|
|
LLValue* res = DtoArrayEqCmp_impl(loc, "_adEq", l, r, true);
|
|
res = gIR->ir->CreateICmpNE(res, DtoConstInt(0), "tmp");
|
|
if (op == TOKnotequal)
|
|
res = gIR->ir->CreateNot(res, "tmp");
|
|
|
|
return res;
|
|
}
|
|
|
|
//////////////////////////////////////////////////////////////////////////////////////////
|
|
LLValue* DtoArrayCompare(Loc& loc, TOK op, DValue* l, DValue* r)
|
|
{
|
|
LLValue* res = 0;
|
|
|
|
llvm::ICmpInst::Predicate cmpop;
|
|
bool skip = false;
|
|
|
|
switch(op)
|
|
{
|
|
case TOKlt:
|
|
case TOKul:
|
|
cmpop = llvm::ICmpInst::ICMP_SLT;
|
|
break;
|
|
case TOKle:
|
|
case TOKule:
|
|
cmpop = llvm::ICmpInst::ICMP_SLE;
|
|
break;
|
|
case TOKgt:
|
|
case TOKug:
|
|
cmpop = llvm::ICmpInst::ICMP_SGT;
|
|
break;
|
|
case TOKge:
|
|
case TOKuge:
|
|
cmpop = llvm::ICmpInst::ICMP_SGE;
|
|
break;
|
|
case TOKue:
|
|
cmpop = llvm::ICmpInst::ICMP_EQ;
|
|
break;
|
|
case TOKlg:
|
|
cmpop = llvm::ICmpInst::ICMP_NE;
|
|
break;
|
|
case TOKleg:
|
|
skip = true;
|
|
res = LLConstantInt::getTrue(gIR->context());
|
|
break;
|
|
case TOKunord:
|
|
skip = true;
|
|
res = LLConstantInt::getFalse(gIR->context());
|
|
break;
|
|
|
|
default:
|
|
assert(0);
|
|
}
|
|
|
|
if (!skip)
|
|
{
|
|
Type* t = l->getType()->toBasetype()->nextOf()->toBasetype();
|
|
if (t->ty == Tchar)
|
|
res = DtoArrayEqCmp_impl(loc, "_adCmpChar", l, r, false);
|
|
else
|
|
res = DtoArrayEqCmp_impl(loc, "_adCmp", l, r, true);
|
|
res = gIR->ir->CreateICmp(cmpop, res, DtoConstInt(0), "tmp");
|
|
}
|
|
|
|
assert(res);
|
|
return res;
|
|
}
|
|
|
|
//////////////////////////////////////////////////////////////////////////////////////////
|
|
LLValue* DtoArrayCastLength(LLValue* len, const LLType* elemty, const LLType* newelemty)
|
|
{
|
|
Logger::println("DtoArrayCastLength");
|
|
LOG_SCOPE;
|
|
|
|
assert(len);
|
|
assert(elemty);
|
|
assert(newelemty);
|
|
|
|
size_t esz = getTypePaddedSize(elemty);
|
|
size_t nsz = getTypePaddedSize(newelemty);
|
|
if (esz == nsz)
|
|
return len;
|
|
|
|
LLSmallVector<LLValue*, 3> args;
|
|
args.push_back(len);
|
|
args.push_back(LLConstantInt::get(DtoSize_t(), esz, false));
|
|
args.push_back(LLConstantInt::get(DtoSize_t(), nsz, false));
|
|
|
|
LLFunction* fn = LLVM_D_GetRuntimeFunction(gIR->module, "_d_array_cast_len");
|
|
return gIR->CreateCallOrInvoke(fn, args.begin(), args.end(), "tmp").getInstruction();
|
|
}
|
|
|
|
//////////////////////////////////////////////////////////////////////////////////////////
|
|
LLValue* DtoDynArrayIs(TOK op, DValue* l, DValue* r)
|
|
{
|
|
LLValue *len1, *ptr1, *len2, *ptr2;
|
|
|
|
assert(l);
|
|
assert(r);
|
|
|
|
// compare lengths
|
|
len1 = DtoArrayLen(l);
|
|
len2 = DtoArrayLen(r);
|
|
LLValue* b1 = gIR->ir->CreateICmpEQ(len1,len2,"tmp");
|
|
|
|
// compare pointers
|
|
ptr1 = DtoArrayPtr(l);
|
|
ptr2 = DtoArrayPtr(r);
|
|
LLValue* b2 = gIR->ir->CreateICmpEQ(ptr1,ptr2,"tmp");
|
|
|
|
// combine
|
|
LLValue* res = gIR->ir->CreateAnd(b1,b2,"tmp");
|
|
|
|
// return result
|
|
return (op == TOKnotidentity) ? gIR->ir->CreateNot(res) : res;
|
|
}
|
|
|
|
//////////////////////////////////////////////////////////////////////////////////////////
|
|
LLValue* DtoArrayLen(DValue* v)
|
|
{
|
|
Logger::println("DtoArrayLen");
|
|
LOG_SCOPE;
|
|
|
|
Type* t = v->getType()->toBasetype();
|
|
if (t->ty == Tarray) {
|
|
if (DSliceValue* s = v->isSlice())
|
|
return s->len;
|
|
else if (v->isNull())
|
|
return DtoConstSize_t(0);
|
|
else if (v->isLVal())
|
|
return DtoLoad(DtoGEPi(v->getLVal(), 0,0), ".len");
|
|
return gIR->ir->CreateExtractValue(v->getRVal(), 0, ".len");
|
|
}
|
|
else if (t->ty == Tsarray) {
|
|
assert(!v->isSlice());
|
|
assert(!v->isNull());
|
|
LLValue* rv = v->getRVal();
|
|
const LLArrayType* t = isaArray(rv->getType()->getContainedType(0));
|
|
assert(t);
|
|
return DtoConstSize_t(t->getNumElements());
|
|
}
|
|
assert(0 && "unsupported array for len");
|
|
return 0;
|
|
}
|
|
|
|
//////////////////////////////////////////////////////////////////////////////////////////
|
|
LLValue* DtoArrayPtr(DValue* v)
|
|
{
|
|
Logger::println("DtoArrayPtr");
|
|
LOG_SCOPE;
|
|
|
|
Type* t = v->getType()->toBasetype();
|
|
if (t->ty == Tarray) {
|
|
if (DSliceValue* s = v->isSlice())
|
|
return s->ptr;
|
|
else if (v->isNull())
|
|
return getNullPtr(getPtrToType(DtoType(t->nextOf())));
|
|
else if (v->isLVal())
|
|
return DtoLoad(DtoGEPi(v->getLVal(), 0,1), ".ptr");
|
|
return gIR->ir->CreateExtractValue(v->getRVal(), 1, ".ptr");
|
|
}
|
|
else if (t->ty == Tsarray) {
|
|
assert(!v->isSlice());
|
|
assert(!v->isNull());
|
|
return DtoGEPi(v->getRVal(), 0,0);
|
|
}
|
|
assert(0);
|
|
return 0;
|
|
}
|
|
|
|
//////////////////////////////////////////////////////////////////////////////////////////
|
|
DValue* DtoCastArray(Loc& loc, DValue* u, Type* to)
|
|
{
|
|
Logger::println("DtoCastArray");
|
|
LOG_SCOPE;
|
|
|
|
const LLType* tolltype = DtoType(to);
|
|
|
|
Type* totype = to->toBasetype();
|
|
Type* fromtype = u->getType()->toBasetype();
|
|
if (fromtype->ty != Tarray && fromtype->ty != Tsarray) {
|
|
error(loc, "can't cast %s to %s", u->getType()->toChars(), to->toChars());
|
|
fatal();
|
|
}
|
|
|
|
LLValue* rval;
|
|
LLValue* rval2;
|
|
bool isslice = false;
|
|
|
|
if (Logger::enabled())
|
|
Logger::cout() << "from array or sarray" << '\n';
|
|
|
|
if (totype->ty == Tpointer) {
|
|
if (Logger::enabled())
|
|
Logger::cout() << "to pointer" << '\n';
|
|
rval = DtoArrayPtr(u);
|
|
if (rval->getType() != tolltype)
|
|
rval = gIR->ir->CreateBitCast(rval, tolltype, "tmp");
|
|
}
|
|
else if (totype->ty == Tarray) {
|
|
if (Logger::enabled())
|
|
Logger::cout() << "to array" << '\n';
|
|
|
|
const LLType* ptrty = DtoArrayType(totype)->getContainedType(1);
|
|
const LLType* ety = DtoTypeNotVoid(fromtype->nextOf());
|
|
|
|
if (fromtype->ty == Tsarray) {
|
|
LLValue* uval = u->getRVal();
|
|
|
|
if (Logger::enabled())
|
|
Logger::cout() << "uvalTy = " << *uval->getType() << '\n';
|
|
|
|
assert(isaPointer(uval->getType()));
|
|
const LLArrayType* arrty = isaArray(uval->getType()->getContainedType(0));
|
|
|
|
if(arrty->getNumElements()*fromtype->nextOf()->size() % totype->nextOf()->size() != 0)
|
|
{
|
|
error(loc, "invalid cast from '%s' to '%s', the element sizes don't line up", fromtype->toChars(), totype->toChars());
|
|
fatal();
|
|
}
|
|
|
|
rval2 = LLConstantInt::get(DtoSize_t(), arrty->getNumElements(), false);
|
|
if (fromtype->nextOf()->size() != totype->nextOf()->size())
|
|
rval2 = DtoArrayCastLength(rval2, ety, ptrty->getContainedType(0));
|
|
rval = DtoBitCast(uval, ptrty);
|
|
}
|
|
else {
|
|
rval2 = DtoArrayLen(u);
|
|
if (fromtype->nextOf()->size() != totype->nextOf()->size())
|
|
rval2 = DtoArrayCastLength(rval2, ety, ptrty->getContainedType(0));
|
|
|
|
rval = DtoArrayPtr(u);
|
|
rval = DtoBitCast(rval, ptrty);
|
|
}
|
|
isslice = true;
|
|
}
|
|
else if (totype->ty == Tsarray) {
|
|
if (Logger::enabled())
|
|
Logger::cout() << "to sarray" << '\n';
|
|
|
|
size_t tosize = ((TypeSArray*)totype)->dim->toInteger();
|
|
|
|
if (fromtype->ty == Tsarray) {
|
|
LLValue* uval = u->getRVal();
|
|
|
|
if (Logger::enabled())
|
|
Logger::cout() << "uvalTy = " << *uval->getType() << '\n';
|
|
|
|
assert(isaPointer(uval->getType()));
|
|
const LLArrayType* arrty = isaArray(uval->getType()->getContainedType(0));
|
|
|
|
/*if(arrty->getNumElements()*fromtype->nextOf()->size() != tosize*totype->nextOf()->size())
|
|
{
|
|
error(loc, "invalid cast from '%s' to '%s', the sizes are not the same", fromtype->toChars(), totype->toChars());
|
|
fatal();
|
|
}*/
|
|
|
|
rval = DtoBitCast(uval, getPtrToType(tolltype));
|
|
}
|
|
else {
|
|
size_t i = (tosize * totype->nextOf()->size() - 1) / fromtype->nextOf()->size();
|
|
DConstValue index(Type::tsize_t, DtoConstSize_t(i));
|
|
DtoArrayBoundsCheck(loc, u, &index, false);
|
|
|
|
rval = DtoArrayPtr(u);
|
|
rval = DtoBitCast(rval, getPtrToType(tolltype));
|
|
}
|
|
}
|
|
else if (totype->ty == Tbool) {
|
|
// return (arr.ptr !is null)
|
|
LLValue* ptr = DtoArrayPtr(u);
|
|
LLConstant* nul = getNullPtr(ptr->getType());
|
|
rval = gIR->ir->CreateICmpNE(ptr, nul, "tmp");
|
|
}
|
|
else {
|
|
assert(0);
|
|
}
|
|
|
|
if (isslice) {
|
|
Logger::println("isslice");
|
|
return new DSliceValue(to, rval2, rval);
|
|
}
|
|
|
|
return new DImValue(to, rval);
|
|
}
|
|
|
|
//////////////////////////////////////////////////////////////////////////////////////////
|
|
void DtoArrayBoundsCheck(Loc& loc, DValue* arr, DValue* index, bool isslice)
|
|
{
|
|
Type* arrty = arr->getType()->toBasetype();
|
|
assert((arrty->ty == Tsarray || arrty->ty == Tarray) &&
|
|
"Can only array bounds check for static or dynamic arrays");
|
|
|
|
// static arrays could get static checks for static indices
|
|
// but shouldn't since it might be generic code that's never executed
|
|
|
|
// runtime check
|
|
|
|
llvm::BasicBlock* oldend = gIR->scopeend();
|
|
llvm::BasicBlock* failbb = llvm::BasicBlock::Create(gIR->context(), "arrayboundscheckfail", gIR->topfunc(), oldend);
|
|
llvm::BasicBlock* okbb = llvm::BasicBlock::Create(gIR->context(), "arrayboundsok", gIR->topfunc(), oldend);
|
|
|
|
llvm::ICmpInst::Predicate cmpop = isslice ? llvm::ICmpInst::ICMP_ULE : llvm::ICmpInst::ICMP_ULT;
|
|
LLValue* cond = gIR->ir->CreateICmp(cmpop, index->getRVal(), DtoArrayLen(arr), "boundscheck");
|
|
gIR->ir->CreateCondBr(cond, okbb, failbb);
|
|
|
|
// set up failbb to call the array bounds error runtime function
|
|
|
|
gIR->scope() = IRScope(failbb, okbb);
|
|
|
|
std::vector<LLValue*> args;
|
|
|
|
// file param
|
|
// we might be generating for an imported template function
|
|
Module* funcmodule = gIR->func()->decl->getModule();
|
|
const char* cur_file = funcmodule->srcfile->name->toChars();
|
|
if (loc.filename && strcmp(loc.filename, cur_file) != 0)
|
|
{
|
|
args.push_back(DtoConstString(loc.filename));
|
|
}
|
|
else
|
|
{
|
|
IrModule* irmod = getIrModule(funcmodule);
|
|
args.push_back(DtoLoad(irmod->fileName));
|
|
}
|
|
|
|
// line param
|
|
LLConstant* c = DtoConstUint(loc.linnum);
|
|
args.push_back(c);
|
|
|
|
// call
|
|
llvm::Function* errorfn = LLVM_D_GetRuntimeFunction(gIR->module, "_d_array_bounds");
|
|
gIR->CreateCallOrInvoke(errorfn, args.begin(), args.end());
|
|
|
|
// the function does not return
|
|
gIR->ir->CreateUnreachable();
|
|
|
|
// if ok, proceed in okbb
|
|
gIR->scope() = IRScope(okbb, oldend);
|
|
}
|