xo-jit: + explicit env for captured function args [wip, not tested]
This commit is contained in:
parent
fdc5d46fd7
commit
d7192c1d97
7 changed files with 991 additions and 220 deletions
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@ -7,6 +7,7 @@ set(SELF_SRCS
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MachPipeline.cpp
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intrinsics.cpp
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activation_record.cpp
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type2llvm.cpp
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)
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xo_add_shared_library4(${SELF_LIB} ${PROJECT_NAME}Targets ${PROJECT_VERSION} 1 ${SELF_SRCS})
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@ -1,6 +1,8 @@
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/* @file MachPipeline.cpp */
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#include "MachPipeline.hpp"
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#include "activation_record.hpp"
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#include "type2llvm.hpp"
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#include <string>
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namespace xo {
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@ -156,187 +158,9 @@ namespace xo {
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return nullptr;
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} /*codegen_constant*/
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namespace {
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/** REMINDER:
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* 1. creation of llvm types is idempotent
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* (duplicate calls will receive the same llvm::Type* pointer)
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* 2. llvm::Types are never deleted.
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**/
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llvm::Type *
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td_to_llvm_type(xo::ref::brw<LlvmContext> llvm_cx, TypeDescr td);
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/** obtain llvm representation for a function type with the same signature as
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* that represented by @p fn_td
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**/
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llvm::FunctionType *
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function_td_to_llvm_type(xo::ref::brw<LlvmContext> llvm_cx,
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TypeDescr fn_td)
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{
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int n_fn_arg = fn_td->n_fn_arg();
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std::vector<llvm::Type *> llvm_argtype_v;
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llvm_argtype_v.reserve(n_fn_arg);
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/** check function args are all known **/
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for (int i = 0; i < n_fn_arg; ++i) {
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TypeDescr arg_td = fn_td->fn_arg(i);
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llvm::Type * llvm_argtype = td_to_llvm_type(llvm_cx, arg_td);
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if (!llvm_argtype)
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return nullptr;
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llvm_argtype_v.push_back(llvm_argtype);
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}
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TypeDescr retval_td = fn_td->fn_retval();
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llvm::Type * llvm_retval = td_to_llvm_type(llvm_cx, retval_td);
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if (!llvm_retval)
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return nullptr;
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auto * llvm_fn_type = llvm::FunctionType::get(llvm_retval,
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llvm_argtype_v,
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false /*!varargs*/);
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return llvm_fn_type;
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}
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llvm::PointerType *
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function_td_to_llvm_fnptr_type(xo::ref::brw<LlvmContext> llvm_cx,
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TypeDescr fn_td)
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{
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auto * llvm_fn_type = function_td_to_llvm_type(llvm_cx, fn_td);
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/** like C: llvm IR doesn't support function-valued variables;
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* it does however support pointer-to-function-valued variables
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**/
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auto * llvm_ptr_type
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= llvm::PointerType::get(llvm_fn_type,
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0 /*numbered address space*/);
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return llvm_ptr_type;
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}
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/**
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* Generate llvm::Type correspoinding to a TypeDescr for a struct.
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**/
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llvm::StructType *
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struct_td_to_llvm_type(xo::ref::brw<LlvmContext> llvm_cx,
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TypeDescr struct_td)
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{
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// see
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// [[https://stackoverflow.com/questions/32299166/accessing-struct-members-and-arrays-of-structs-from-llvm-ir]]
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auto & llvm_cx_ref = llvm_cx->llvm_cx_ref();
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/* note: object pointer ignored for struct types,
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* since number of members is known at compile time
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*/
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int n_member = struct_td->n_child(nullptr /*&object*/);
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/* one type for each struct member */
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std::vector<llvm::Type *> llvm_membertype_v;
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llvm_membertype_v.reserve(n_member);
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for (int i = 0; i < n_member; ++i) {
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StructMember const & sm = struct_td->struct_member(i);
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llvm_membertype_v.push_back(td_to_llvm_type(llvm_cx,
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sm.get_member_td()));
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}
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std::string struct_name = std::string(struct_td->short_name());
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/* structs with names: within an llvmcontext, must be unique
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*
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* We can however compare the offsets recorded in xo::reflect with
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* offsets chosen by llvm, *once we've created the llvm type*
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*
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* Also, we can't guarantee that a c++ type was completely reflected --
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* it's possible one or more members were omitted, in which case
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* it's unlikely at best that llvm chooses the same layout.
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*
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* Instead: tell llvm to make packed struct,
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* and introduce dummy members for padding.
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*
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* A consequence is we have to maintain mapping between llvm's
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* member numbering and xo::reflect's
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*/
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llvm::StructType * llvm_struct_type
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= llvm::StructType::create(llvm_cx_ref,
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llvm_membertype_v,
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llvm::StringRef(struct_name),
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false /*!isPacked*/);
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/* TODO: inspect (how) offsets that llvm is using
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* we need them to match what C++ chose
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*
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* (because we want jitted llvm code to interoperate with
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* C++ library code that has structs)
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*/
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// GetElementPtrInst is interesting,
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// but I think that's for generating code
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return llvm_struct_type;
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} /*struct_td_to_llvm_type*/
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llvm::PointerType *
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pointer_td_to_llvm_type(xo::ref::brw<LlvmContext> llvm_cx,
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TypeDescr pointer_td)
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{
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assert(pointer_td->is_pointer());
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TypeDescr dest_td = pointer_td->fixed_child_td(0);
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llvm::Type * llvm_dest_type = td_to_llvm_type(llvm_cx, dest_td);
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llvm::PointerType * llvm_ptr_type
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= llvm::PointerType::getUnqual(llvm_dest_type);
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return llvm_ptr_type;
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} /*pointer_td_llvm_type*/
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llvm::Type *
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td_to_llvm_type(xo::ref::brw<LlvmContext> llvm_cx, TypeDescr td) {
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auto & llvm_cx_ref = llvm_cx->llvm_cx_ref();
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if (td->is_function()) {
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/* in this context, we're looking for a representation for a value,
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* i.e. something that can be stored in a variable
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*/
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return function_td_to_llvm_fnptr_type(llvm_cx, td);
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} else if (td->is_struct()) {
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return struct_td_to_llvm_type(llvm_cx, td);
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} else if (td->is_pointer()) {
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return pointer_td_to_llvm_type(llvm_cx, td);
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} else if (Reflect::is_native<bool>(td)) {
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return llvm::Type::getInt1Ty(llvm_cx_ref);
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} else if (Reflect::is_native<char>(td)) {
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return llvm::Type::getInt8Ty(llvm_cx_ref);
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} else if (Reflect::is_native<short>(td)) {
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return llvm::Type::getInt16Ty(llvm_cx_ref);
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} else if (Reflect::is_native<int>(td)) {
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return llvm::Type::getInt32Ty(llvm_cx_ref);
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} else if (Reflect::is_native<long>(td)) {
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return llvm::Type::getInt64Ty(llvm_cx_ref);
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} else if (Reflect::is_native<float>(td)) {
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return llvm::Type::getFloatTy(llvm_cx_ref);
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} else if (Reflect::is_native<double>(td)) {
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return llvm::Type::getDoubleTy(llvm_cx_ref);
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} else {
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cerr << "td_to_llvm_type: no llvm type available for T"
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<< xtag("T", td->short_name())
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<< endl;
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return nullptr;
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}
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}
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}
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llvm::Type *
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MachPipeline::codegen_type(TypeDescr td) {
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return td_to_llvm_type(llvm_cx_.borrow(), td);
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return type2llvm::td_to_llvm_type(llvm_cx_.borrow(), td);
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}
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llvm::Function *
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@ -368,7 +192,7 @@ namespace xo {
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TypeDescr fn_td = expr->valuetype();
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llvm::FunctionType * llvm_fn_type
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= function_td_to_llvm_type(llvm_cx_.borrow(), fn_td);
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= type2llvm::function_td_to_llvm_type(llvm_cx_.borrow(), fn_td);
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if (!llvm_fn_type)
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return nullptr;
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@ -577,7 +401,7 @@ namespace xo {
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*/
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llvm::FunctionType * llvm_fn_type
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= function_td_to_llvm_type(this->llvm_cx_, ast_fn_td);
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= type2llvm::function_td_to_llvm_type(this->llvm_cx_, ast_fn_td);
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return ir_builder.CreateCall(llvm_fn_type,
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llvm_fnval,
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@ -586,6 +410,7 @@ namespace xo {
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} /*codegen_apply*/
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#ifdef OBSOLETE
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/* in kaleidoscope7.cpp: CreateEntryBlockAlloca */
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llvm::AllocaInst *
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MachPipeline::create_entry_block_alloca(llvm::Function * llvm_fn,
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@ -603,8 +428,8 @@ namespace xo {
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llvm::IRBuilder<> tmp_ir_builder(&llvm_fn->getEntryBlock(),
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llvm_fn->getEntryBlock().begin());
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llvm::Type * llvm_var_type = td_to_llvm_type(llvm_cx_.borrow(),
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var_type);
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llvm::Type * llvm_var_type = type2llvm::td_to_llvm_type(llvm_cx_.borrow(),
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var_type);
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log && log(xtag("addr(llvm_var_type)", (void*)llvm_var_type));
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if (log) {
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@ -627,6 +452,7 @@ namespace xo {
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return retval;
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} /*create_entry_block_alloca*/
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#endif
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std::vector<ref::brw<Lambda>>
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@ -678,8 +504,8 @@ namespace xo {
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#endif
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llvm::FunctionType * llvm_fn_type
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= function_td_to_llvm_type(llvm_cx_.borrow(),
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lambda->valuetype());
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= type2llvm::function_td_to_llvm_type(llvm_cx_.borrow(),
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lambda->valuetype());
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/* create (initially empty) function */
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fn = llvm::Function::Create(llvm_fn_type,
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@ -734,10 +560,18 @@ namespace xo {
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ir_builder.SetInsertPoint(block);
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/** Actual parameters will need their own activation record.
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* Track its shape here.
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* Track its shape + setup/teardown here.
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**/
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this->env_stack_.push(activation_record(lambda.get()));
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bool ok_flag = this->env_stack_.top().bind_locals(llvm_cx_, llvm_fn, ir_builder);
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if (!ok_flag) {
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this->env_stack_.pop();
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return nullptr;
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}
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#ifdef OBSOLETE
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{
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log && log("lambda: stack size Z", xtag("Z", env_stack_.size()));
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@ -773,6 +607,7 @@ namespace xo {
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++i;
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}
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}
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#endif
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llvm::Value * retval = this->codegen(lambda->body(), ir_builder);
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@ -827,14 +662,16 @@ namespace xo {
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return nullptr;
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}
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llvm::AllocaInst * alloca = env_stack_.top().lookup_var(var->name());
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activation_record & ar = env_stack_.top();
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if (!alloca)
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const runtime_binding_detail * binding = ar.lookup_var(var->name());
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if (!binding)
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return nullptr;
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/* code to load value from stack */
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return ir_builder.CreateLoad(alloca->getAllocatedType(),
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alloca,
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return ir_builder.CreateLoad(binding->llvm_type_,
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binding->llvm_addr_,
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var->name().c_str());
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} /*codegen_variable*/
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@ -1,6 +1,7 @@
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/* @file activation_record.cpp */
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#include "activation_record.hpp"
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#include "type2llvm.hpp"
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#include "xo/indentlog/print/tag.hpp"
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#include <iostream>
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@ -9,7 +10,29 @@ namespace xo {
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using std::cerr;
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using std::endl;
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llvm::AllocaInst *
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activation_record::activation_record(const ref::rp<Lambda> & lm)
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: lambda_{lm},
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binding_v_(lm->n_arg())
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{
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/* populate binding_v_ */
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int n_arg = lm->n_arg();
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binding_v_.resize(n_arg);
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/* next slot# to use in explicit activation record */
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int rt_env_slot = 0;
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for (int i_arg = 0; i_arg < n_arg; ++i_arg) {
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if (lm->is_captured(lm->i_argname(i_arg))) {
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/* local param #i_arg needs a slot in explicit activation record */
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binding_v_[i_arg] = runtime_binding_path::local(rt_env_slot);
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++rt_env_slot;
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} else {
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binding_v_[i_arg] = runtime_binding_path::stackonly();
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}
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}
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} /*ctor*/
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const runtime_binding_detail *
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activation_record::lookup_var(const std::string & x) const {
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auto ix = frame_.find(x);
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@ -21,13 +44,12 @@ namespace xo {
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return nullptr;
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}
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return ix->second;
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return &(ix->second);
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} /*lookup_var*/
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llvm::AllocaInst *
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activation_record::alloc_var(std::size_t j_slot,
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const std::string & x,
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llvm::AllocaInst * alloca)
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const runtime_binding_detail *
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activation_record::alloc_var(const std::string & x,
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const runtime_binding_detail & binding)
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{
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if (frame_.find(x) != frame_.end()) {
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cerr << "activation_record::alloc_var: variable x already present in frame"
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@ -36,14 +58,340 @@ namespace xo {
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return nullptr;
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}
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if (j_slot >= binding_v_.size())
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binding_v_.resize(j_slot + 1);
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frame_[x] = binding;
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binding_v_[j_slot] = runtime_binding_path::local(j_slot);
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frame_[x] = alloca;
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return alloca;
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return &(frame_[x]);
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} /*alloc_var*/
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/* in kaleidoscope7.cpp: CreateEntryBlockAlloca */
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runtime_binding_detail
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activation_record::create_entry_block_alloca(ref::brw<LlvmContext> llvm_cx,
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//const llvm::DataLayout & data_layout,
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llvm::Function * llvm_fn,
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llvm::IRBuilder<> & fn_ir_builder,
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int i_arg,
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const std::string & var_name,
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TypeDescr var_type)
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{
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constexpr bool c_debug_flag = true;
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using xo::scope;
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scope log(XO_DEBUG(c_debug_flag),
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xtag("llvm_fn", (void*)llvm_fn),
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xtag("var_name", var_name),
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xtag("var_type", var_type->short_name()));
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llvm::Type * llvm_var_type = type2llvm::td_to_llvm_type(llvm_cx,
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var_type);
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log && log(xtag("addr(llvm_var_type)", (void*)llvm_var_type));
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if (log) {
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std::string llvm_var_type_str;
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llvm::raw_string_ostream ss(llvm_var_type_str);
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llvm_var_type->print(ss);
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log(xtag("llvm_var_type", llvm_var_type_str));
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}
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if (!llvm_var_type)
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return runtime_binding_detail{}; /*sentinel*/
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llvm::AllocaInst * stackaddr = fn_ir_builder.CreateAlloca(llvm_var_type,
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nullptr,
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var_name);
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log && log(xtag("alloca", (void*)stackaddr),
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xtag("align", stackaddr->getAlign().value())
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//xtag("size", retval->getAllocationSize(data_layout).value())
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);
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return {i_arg, stackaddr, llvm_var_type};
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} /*create_entry_block_alloca*/
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#ifdef NOT_USING
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llvm::AllocaInst *
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activation_record::create_runtime_localenv_alloca(ref::brw<LlvmContext> llvm_cx,
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//const llvm::DataLayout & data_layout,
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llvm::Function * llvm_fn,
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llvm::IRBuilder<> & ir_builder)
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{
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constexpr bool c_debug_flag = true;
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using xo::scope;
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scope log(XO_DEBUG(c_debug_flag),
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xtag("llvm_fn", (void*)llvm_fn));
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llvm::StructType * localenv_llvm_type
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= type2llvm::create_localenv_llvm_type(llvm_cx, lambda_.borrow());
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if (!localenv_llvm_type)
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return nullptr;
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llvm::AllocaInst * retval = ir_builder.CreateAlloca(localenv_llvm_type,
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nullptr /*ArraySize*/,
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"_localenv");
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log && log(xtag("alloca", (void*)retval),
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xtag("align", retval->getAlign().value())
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//xtag("size", retval->getAllocationSize(data_layout).value())
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);
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return retval;
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} /*create_runtime_localenv_alloca*/
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#endif
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llvm::Value *
|
||||
activation_record::runtime_localenv_slot_addr(ref::brw<LlvmContext> llvm_cx,
|
||||
llvm::StructType * localenv_llvm_type,
|
||||
llvm::AllocaInst * localenv_alloca,
|
||||
int i_slot,
|
||||
#ifdef NOT_HERE
|
||||
llvm::Value * llvm_slot_value,
|
||||
#endif
|
||||
llvm::IRBuilder<> & tmp_ir_builder)
|
||||
{
|
||||
llvm::Value * i32_slot
|
||||
= llvm::ConstantInt::get(llvm_cx->llvm_cx_ref(),
|
||||
llvm::APInt(32 /*bits*/,
|
||||
i_slot /*value*/));
|
||||
std::array<llvm::Value*,2> index_v = {
|
||||
{i32_slot /*environment slot #0*/}};
|
||||
|
||||
llvm::Value * llvm_localenv_slot_ptr
|
||||
= tmp_ir_builder.CreateInBoundsGEP(localenv_llvm_type,
|
||||
localenv_alloca,
|
||||
index_v);
|
||||
|
||||
return llvm_localenv_slot_ptr;
|
||||
|
||||
#ifdef NOT_HERE
|
||||
tmp_ir_builder.CreateStore(llvm_value, //llvm_0ptr,
|
||||
llvm_parent_env_ptr);
|
||||
#endif
|
||||
} /*runtime_localenv_slot_addr*/
|
||||
|
||||
bool
|
||||
activation_record::bind_locals(ref::brw<LlvmContext> llvm_cx,
|
||||
//const llvm::DataLayout & data_layout,
|
||||
llvm::Function * llvm_fn,
|
||||
llvm::IRBuilder<> & ir_builder)
|
||||
{
|
||||
constexpr bool c_debug_flag = true;
|
||||
using xo::scope;
|
||||
|
||||
scope log(XO_DEBUG(c_debug_flag),
|
||||
xtag("lambda-name", lambda_->name()));
|
||||
|
||||
llvm::IRBuilder<> tmp_ir_builder(&llvm_fn->getEntryBlock(),
|
||||
llvm_fn->getEntryBlock().begin());
|
||||
|
||||
/* 1st pass: handle stackonly variables
|
||||
*
|
||||
* We presume this must come first,
|
||||
* for subsequent mem2reg optimization pass to consider
|
||||
*/
|
||||
{
|
||||
int i_arg = 0;
|
||||
for (auto & arg : llvm_fn->args()) {
|
||||
std::string arg_name = std::string(arg.getName());
|
||||
|
||||
log && log("nested environment",
|
||||
xtag("i", i_arg),
|
||||
xtag("arg[i]", arg_name),
|
||||
xtag("stackonly(i)", binding_v_[i_arg].is_stackonly()));
|
||||
|
||||
if (binding_v_[i_arg].is_stackonly()) {
|
||||
/* stack location for arg[i] */
|
||||
runtime_binding_detail binding
|
||||
= create_entry_block_alloca(llvm_cx,
|
||||
//data_layout,
|
||||
llvm_fn,
|
||||
tmp_ir_builder,
|
||||
i_arg,
|
||||
arg_name,
|
||||
lambda_->fn_arg(i_arg));
|
||||
|
||||
if (!binding.llvm_addr_)
|
||||
return false;
|
||||
|
||||
/* store on function entry
|
||||
* see codegen_variable() for corresponding load
|
||||
*/
|
||||
ir_builder.CreateStore(&arg, binding.llvm_addr_);
|
||||
|
||||
/* remember stack location for reference + assignment
|
||||
* in lambda body.
|
||||
*
|
||||
*/
|
||||
this->alloc_var(arg_name, binding);
|
||||
}
|
||||
|
||||
++i_arg;
|
||||
}
|
||||
}
|
||||
|
||||
/* REMINDER: all functions need to follow the closure pattern,
|
||||
* to accomodate cases where we don't know until runtime
|
||||
* what kind of function we are invoking.
|
||||
*
|
||||
* This means:
|
||||
* - always represent function in IR by a closure-shaped object
|
||||
*
|
||||
* +-------+
|
||||
* | o---------> native function
|
||||
* +-------+
|
||||
* | o---------> runtime localenv
|
||||
* +-------+ (possibly nullptr)
|
||||
*
|
||||
* We hope to optimize away the closures in cases where we know
|
||||
* their contents at compile time
|
||||
*
|
||||
*/
|
||||
|
||||
/* 2nd pass: handle captured formal parameters */
|
||||
if (lambda_->needs_closure_flag()) {
|
||||
llvm::StructType * localenv_llvm_type
|
||||
= type2llvm::create_localenv_llvm_type(llvm_cx, lambda_.borrow());
|
||||
#ifdef NOT_USING
|
||||
llvm::PointerType * envapiptr_llvm_type
|
||||
= type2llvm::env_api_llvm_ptr_type(llvm_cx);
|
||||
#endif
|
||||
|
||||
if (!localenv_llvm_type)
|
||||
return false;
|
||||
|
||||
/*
|
||||
* runtime localenv: ^
|
||||
* | parent
|
||||
* +-------+ |
|
||||
* parent_env [0] | o-------/
|
||||
* +-------+
|
||||
* unwind_fn [1] | o-------> env * (*)(env*, ctl)
|
||||
* +-------+
|
||||
* arg[i] [2+i] . ... .
|
||||
* . ... .
|
||||
* +-------+
|
||||
*
|
||||
* ctl=0 unwind. finalization for any arg[i] that requires it.
|
||||
* returns nullptr
|
||||
* ctl=1 copy. copy runtime environment to heap destination
|
||||
* and return address of the copy
|
||||
*
|
||||
* arg[] comprises the subset of lambda arg names arg[j] for which
|
||||
* lambda->is_captured(arg[j]) is true
|
||||
*/
|
||||
llvm::AllocaInst * localenv_alloca
|
||||
= tmp_ir_builder.CreateAlloca(localenv_llvm_type,
|
||||
nullptr /*ArraySize*/,
|
||||
"_localenv");
|
||||
|
||||
if (!localenv_alloca)
|
||||
return false;
|
||||
|
||||
/* remember environemnt location.
|
||||
* Will need this if need to copy-to-stack
|
||||
*/
|
||||
this->localenv_alloca_ = localenv_alloca;
|
||||
|
||||
int i_localenv_slot = 0;
|
||||
|
||||
/* store localenv->parent_env */
|
||||
{
|
||||
llvm::Value * slot_addr
|
||||
= runtime_localenv_slot_addr(llvm_cx,
|
||||
localenv_llvm_type,
|
||||
localenv_alloca,
|
||||
i_localenv_slot,
|
||||
//llvm_0ptr,
|
||||
tmp_ir_builder);
|
||||
|
||||
if (!slot_addr)
|
||||
return false;
|
||||
|
||||
++i_localenv_slot;
|
||||
|
||||
/* null pointer for now */
|
||||
/* TODO: get parent environment (from runtime closure created for this function) */
|
||||
llvm::Value * llvm_0ptr
|
||||
= llvm::ConstantPointerNull::get(type2llvm::env_api_llvm_ptr_type(llvm_cx));
|
||||
|
||||
tmp_ir_builder.CreateStore(llvm_0ptr,
|
||||
slot_addr);
|
||||
}
|
||||
|
||||
/* store localenv->unwind_fn */
|
||||
{
|
||||
llvm::Value * slot_addr
|
||||
= runtime_localenv_slot_addr(llvm_cx,
|
||||
localenv_llvm_type,
|
||||
localenv_alloca,
|
||||
i_localenv_slot,
|
||||
//llvm_0ptr,
|
||||
tmp_ir_builder);
|
||||
|
||||
if (!slot_addr)
|
||||
return false;
|
||||
|
||||
++i_localenv_slot;
|
||||
|
||||
/* null function pointer for now */
|
||||
/* TODO: construct unwind function */
|
||||
llvm::Value * llvm_0ptr
|
||||
= (llvm::ConstantPointerNull::get
|
||||
(type2llvm::require_localenv_unwind_llvm_fnptr_type(llvm_cx)));
|
||||
|
||||
tmp_ir_builder.CreateStore(llvm_0ptr,
|
||||
slot_addr);
|
||||
}
|
||||
|
||||
int i_arg = 0;
|
||||
|
||||
for (llvm::Argument & arg : llvm_fn->args()) {
|
||||
std::string arg_name = std::string(arg.getName());
|
||||
|
||||
log && log("nested environment",
|
||||
xtag("i", i_arg),
|
||||
xtag("arg[i]", arg_name),
|
||||
xtag("captured(i)", binding_v_[i_arg].is_captured()));
|
||||
|
||||
if (binding_v_[i_arg].is_captured()) {
|
||||
// do something with runtime-local-env for this llvm_fn
|
||||
|
||||
/* remember stack location for reference + assignment
|
||||
* in lambda body.
|
||||
*
|
||||
*/
|
||||
|
||||
TypeDescr arg_td = lambda_->fn_arg(i_arg);
|
||||
|
||||
llvm::Type * llvm_var_type = type2llvm::td_to_llvm_type(llvm_cx, arg_td);
|
||||
|
||||
llvm::Value * slot_addr
|
||||
= runtime_localenv_slot_addr(llvm_cx,
|
||||
localenv_llvm_type,
|
||||
localenv_alloca,
|
||||
i_localenv_slot,
|
||||
tmp_ir_builder);
|
||||
|
||||
if (!slot_addr)
|
||||
return false;
|
||||
|
||||
++i_localenv_slot;
|
||||
|
||||
tmp_ir_builder.CreateStore(&arg, slot_addr);
|
||||
|
||||
runtime_binding_detail binding = { i_arg, slot_addr, llvm_var_type };
|
||||
|
||||
this->alloc_var(arg_name, binding);
|
||||
}
|
||||
|
||||
++i_arg;
|
||||
}
|
||||
}
|
||||
|
||||
return true;
|
||||
} /*bind_locals*/
|
||||
} /*namespace jit*/
|
||||
} /*namespace xo*/
|
||||
|
||||
|
|
|
|||
305
src/jit/type2llvm.cpp
Normal file
305
src/jit/type2llvm.cpp
Normal file
|
|
@ -0,0 +1,305 @@
|
|||
/* @file type2llvm.cpp */
|
||||
|
||||
#include "type2llvm.hpp"
|
||||
#include "xo/reflect/Reflect.hpp"
|
||||
//#include "xo/reflect/struct/StructMember.hpp"
|
||||
|
||||
namespace xo {
|
||||
using xo::reflect::Reflect;
|
||||
using xo::reflect::TypeDescr;
|
||||
using xo::reflect::StructMember;
|
||||
using std::cerr;
|
||||
using std::endl;
|
||||
|
||||
namespace jit {
|
||||
/** REMINDER:
|
||||
* 1. creation of llvm types is idempotent
|
||||
* (duplicate calls will receive the same llvm::Type* pointer)
|
||||
* 2. llvm::Types are never deleted.
|
||||
**/
|
||||
|
||||
llvm::Type *
|
||||
type2llvm::td_to_llvm_type(xo::ref::brw<LlvmContext> llvm_cx, TypeDescr td) {
|
||||
auto & llvm_cx_ref = llvm_cx->llvm_cx_ref();
|
||||
|
||||
if (td->is_function()) {
|
||||
/* in this context, we're looking for a representation for a value,
|
||||
* i.e. something that can be stored in a variable
|
||||
*/
|
||||
return function_td_to_llvm_fnptr_type(llvm_cx, td);
|
||||
} else if (td->is_struct()) {
|
||||
return struct_td_to_llvm_type(llvm_cx, td);
|
||||
} else if (td->is_pointer()) {
|
||||
return pointer_td_to_llvm_type(llvm_cx, td);
|
||||
} else if (Reflect::is_native<bool>(td)) {
|
||||
return llvm::Type::getInt1Ty(llvm_cx_ref);
|
||||
} else if (Reflect::is_native<char>(td)) {
|
||||
return llvm::Type::getInt8Ty(llvm_cx_ref);
|
||||
} else if (Reflect::is_native<short>(td)) {
|
||||
return llvm::Type::getInt16Ty(llvm_cx_ref);
|
||||
} else if (Reflect::is_native<int>(td)) {
|
||||
return llvm::Type::getInt32Ty(llvm_cx_ref);
|
||||
} else if (Reflect::is_native<long>(td)) {
|
||||
return llvm::Type::getInt64Ty(llvm_cx_ref);
|
||||
} else if (Reflect::is_native<float>(td)) {
|
||||
return llvm::Type::getFloatTy(llvm_cx_ref);
|
||||
} else if (Reflect::is_native<double>(td)) {
|
||||
return llvm::Type::getDoubleTy(llvm_cx_ref);
|
||||
} else {
|
||||
cerr << "td_to_llvm_type: no llvm type available for T"
|
||||
<< xtag("T", td->short_name())
|
||||
<< endl;
|
||||
return nullptr;
|
||||
}
|
||||
} /*td_to_llvm_type*/
|
||||
|
||||
/** obtain llvm representation for a function type with the same signature as
|
||||
* that represented by @p fn_td
|
||||
**/
|
||||
llvm::FunctionType *
|
||||
type2llvm::function_td_to_llvm_type(xo::ref::brw<LlvmContext> llvm_cx,
|
||||
TypeDescr fn_td)
|
||||
{
|
||||
int n_fn_arg = fn_td->n_fn_arg();
|
||||
|
||||
std::vector<llvm::Type *> llvm_argtype_v;
|
||||
llvm_argtype_v.reserve(n_fn_arg);
|
||||
|
||||
/** check function args are all known **/
|
||||
for (int i = 0; i < n_fn_arg; ++i) {
|
||||
TypeDescr arg_td = fn_td->fn_arg(i);
|
||||
|
||||
llvm::Type * llvm_argtype = type2llvm::td_to_llvm_type(llvm_cx, arg_td);
|
||||
|
||||
if (!llvm_argtype)
|
||||
return nullptr;
|
||||
|
||||
llvm_argtype_v.push_back(llvm_argtype);
|
||||
}
|
||||
|
||||
TypeDescr retval_td = fn_td->fn_retval();
|
||||
llvm::Type * llvm_retval = type2llvm::td_to_llvm_type(llvm_cx, retval_td);
|
||||
|
||||
if (!llvm_retval)
|
||||
return nullptr;
|
||||
|
||||
auto * llvm_fn_type = llvm::FunctionType::get(llvm_retval,
|
||||
llvm_argtype_v,
|
||||
false /*!varargs*/);
|
||||
return llvm_fn_type;
|
||||
} /*function_td_to_llvm_type*/
|
||||
|
||||
llvm::PointerType *
|
||||
type2llvm::function_td_to_llvm_fnptr_type(xo::ref::brw<LlvmContext> llvm_cx,
|
||||
TypeDescr fn_td)
|
||||
{
|
||||
auto * llvm_fn_type = function_td_to_llvm_type(llvm_cx, fn_td);
|
||||
|
||||
/** like C: llvm IR doesn't support function-valued variables;
|
||||
* it does however support pointer-to-function-valued variables
|
||||
**/
|
||||
auto * llvm_ptr_type
|
||||
= llvm::PointerType::get(llvm_fn_type,
|
||||
0 /*numbered address space*/);
|
||||
|
||||
return llvm_ptr_type;
|
||||
}
|
||||
|
||||
/**
|
||||
* Generate llvm::Type correspoinding to a TypeDescr for a struct.
|
||||
**/
|
||||
llvm::StructType *
|
||||
type2llvm::struct_td_to_llvm_type(xo::ref::brw<LlvmContext> llvm_cx,
|
||||
TypeDescr struct_td)
|
||||
{
|
||||
// see
|
||||
// [[https://stackoverflow.com/questions/32299166/accessing-struct-members-and-arrays-of-structs-from-llvm-ir]]
|
||||
|
||||
auto & llvm_cx_ref = llvm_cx->llvm_cx_ref();
|
||||
|
||||
/* note: object pointer ignored for struct types,
|
||||
* since number of members is known at compile time
|
||||
*/
|
||||
int n_member = struct_td->n_child(nullptr /*&object*/);
|
||||
|
||||
/* one type for each struct member */
|
||||
std::vector<llvm::Type *> llvm_membertype_v;
|
||||
llvm_membertype_v.reserve(n_member);
|
||||
|
||||
for (int i = 0; i < n_member; ++i) {
|
||||
StructMember const & sm = struct_td->struct_member(i);
|
||||
|
||||
llvm_membertype_v.push_back(type2llvm::td_to_llvm_type(llvm_cx,
|
||||
sm.get_member_td()));
|
||||
}
|
||||
|
||||
std::string struct_name = std::string(struct_td->short_name());
|
||||
|
||||
/* structs with names: within an llvmcontext, must be unique
|
||||
*
|
||||
* We can however compare the offsets recorded in xo::reflect with
|
||||
* offsets chosen by llvm, *once we've created the llvm type*
|
||||
*
|
||||
* Also, we can't guarantee that a c++ type was completely reflected --
|
||||
* it's possible one or more members were omitted, in which case
|
||||
* it's unlikely at best that llvm chooses the same layout.
|
||||
*
|
||||
* Instead: tell llvm to make packed struct,
|
||||
* and introduce dummy members for padding.
|
||||
*
|
||||
* A consequence is we have to maintain mapping between llvm's
|
||||
* member numbering and xo::reflect's
|
||||
*/
|
||||
llvm::StructType * llvm_struct_type
|
||||
= llvm::StructType::create(llvm_cx_ref,
|
||||
llvm_membertype_v,
|
||||
llvm::StringRef(struct_name),
|
||||
false /*!isPacked*/);
|
||||
|
||||
/* TODO: inspect (how) offsets that llvm is using
|
||||
* we need them to match what C++ chose
|
||||
*
|
||||
* (because we want jitted llvm code to interoperate with
|
||||
* C++ library code that has structs)
|
||||
*/
|
||||
|
||||
// GetElementPtrInst is interesting,
|
||||
// but I think that's for generating code
|
||||
|
||||
return llvm_struct_type;
|
||||
} /*struct_td_to_llvm_type*/
|
||||
|
||||
llvm::PointerType *
|
||||
type2llvm::pointer_td_to_llvm_type(xo::ref::brw<LlvmContext> llvm_cx,
|
||||
TypeDescr pointer_td)
|
||||
{
|
||||
assert(pointer_td->is_pointer());
|
||||
|
||||
TypeDescr dest_td = pointer_td->fixed_child_td(0);
|
||||
|
||||
llvm::Type * llvm_dest_type = type2llvm::td_to_llvm_type(llvm_cx, dest_td);
|
||||
|
||||
llvm::PointerType * llvm_ptr_type
|
||||
= llvm::PointerType::getUnqual(llvm_dest_type);
|
||||
|
||||
return llvm_ptr_type;
|
||||
} /*pointer_td_llvm_type*/
|
||||
|
||||
llvm::PointerType *
|
||||
type2llvm::require_localenv_unwind_llvm_fnptr_type(xo::ref::brw<LlvmContext> llvm_cx,
|
||||
llvm::PointerType * envptr_llvm_type)
|
||||
{
|
||||
if (!envptr_llvm_type)
|
||||
envptr_llvm_type = env_api_llvm_ptr_type(llvm_cx);
|
||||
|
||||
std::vector<llvm::Type *> llvm_argtype_v;
|
||||
llvm_argtype_v.reserve(2);
|
||||
|
||||
/* 1st arg is _env_api pointer */
|
||||
llvm_argtype_v.push_back(envptr_llvm_type);
|
||||
|
||||
/* 2nd arg is i32 */
|
||||
llvm_argtype_v.push_back(llvm::Type::getInt32Ty(llvm_cx->llvm_cx_ref()));
|
||||
|
||||
/* return value is _env_api pointer */
|
||||
llvm::Type * retval_llvm_type = envptr_llvm_type;
|
||||
|
||||
/* _env_api* (_env_api*, i32) */
|
||||
auto * unwind_llvm_type
|
||||
= llvm::FunctionType::get(retval_llvm_type,
|
||||
llvm_argtype_v,
|
||||
false /*!varargs*/);
|
||||
|
||||
/* _env_api* (*)(_env_api*, i32) */
|
||||
auto * unwind_llvm_fnptr_type
|
||||
= llvm::PointerType::getUnqual(unwind_llvm_type);
|
||||
|
||||
return unwind_llvm_fnptr_type;
|
||||
} /*require_localenv_unwind_llvm_fnptr_type*/
|
||||
|
||||
llvm::StructType *
|
||||
type2llvm::env_api_llvm_type(xo::ref::brw<LlvmContext> llvm_cx)
|
||||
{
|
||||
/* _env_api: base type for a local environment */
|
||||
llvm::StructType * env_llvm_type
|
||||
= llvm::StructType::get(llvm_cx->llvm_cx_ref(),
|
||||
"_env_api");
|
||||
|
||||
/* _env_api[0]: pointer to a local environment */
|
||||
llvm::PointerType * envptr_llvm_type
|
||||
= llvm::PointerType::getUnqual(env_llvm_type);
|
||||
|
||||
/* _env_api[1]: unwwind/copy function */
|
||||
llvm::PointerType * unwind_llvm_fnptr_type
|
||||
= type2llvm::require_localenv_unwind_llvm_fnptr_type(llvm_cx,
|
||||
envptr_llvm_type);
|
||||
|
||||
/* now supply _env_api members */
|
||||
env_llvm_type->setBody(envptr_llvm_type /*_env_api[0]*/,
|
||||
unwind_llvm_fnptr_type /*_env_api[1]*/);
|
||||
|
||||
return env_llvm_type;
|
||||
} /*env_api_llvm_type*/
|
||||
|
||||
llvm::PointerType *
|
||||
type2llvm::env_api_llvm_ptr_type(xo::ref::brw<LlvmContext> llvm_cx)
|
||||
{
|
||||
llvm::StructType * env_llvm_type = env_api_llvm_type(llvm_cx);
|
||||
|
||||
return llvm::PointerType::getUnqual(env_llvm_type);
|
||||
} /*env_api_llvm_ptr_type*/
|
||||
|
||||
#ifdef NOT_USING
|
||||
llvm::StructType *
|
||||
type2llvm::function_td_to_llvm_closure_type(xo::ref::brw<LlvmContext> llvm_cx,
|
||||
TypeDescr fn_td)
|
||||
{
|
||||
constexpr bool c_debug_flag = true;
|
||||
using xo::scope;
|
||||
|
||||
scope log(XO_DEBUG(c_debug_flag));
|
||||
|
||||
/* closure type doesn't need a name.
|
||||
* (We might find it convenient to give one anyway)
|
||||
*/
|
||||
llvm::StructType * closure_llvm_type
|
||||
= llvm::StructType::get(llvm_cx->llvm_cx_ref());
|
||||
|
||||
llvm::PointerType * parent_llvm_type
|
||||
} /*function_td_to_llvm_fnptr_type*/
|
||||
#endif
|
||||
|
||||
llvm::StructType *
|
||||
type2llvm::create_localenv_llvm_type(xo::ref::brw<LlvmContext> llvm_cx,
|
||||
xo::ref::brw<Lambda> lambda)
|
||||
{
|
||||
llvm::PointerType * parentenvptr_llvm_type = env_api_llvm_ptr_type(llvm_cx);
|
||||
llvm::PointerType * unwind_llvm_fnptr_type
|
||||
= type2llvm::require_localenv_unwind_llvm_fnptr_type(llvm_cx, parentenvptr_llvm_type);
|
||||
|
||||
std::vector<llvm::Type *> member_llvm_type_v;
|
||||
member_llvm_type_v.push_back(parentenvptr_llvm_type);
|
||||
member_llvm_type_v.push_back(unwind_llvm_fnptr_type);
|
||||
|
||||
for (const auto & var : lambda->argv()) {
|
||||
if (lambda->is_captured(var->name())) {
|
||||
/* var needs a slot in localenv_llvm_type for lambda */
|
||||
|
||||
member_llvm_type_v.push_back(td_to_llvm_type(llvm_cx,
|
||||
var->valuetype()));
|
||||
}
|
||||
}
|
||||
|
||||
/* this type doesn't need a name, right? would be "_" + lambda name + "_localenv" */
|
||||
llvm::StructType * localenv_llvm_type
|
||||
= llvm::StructType::get(llvm_cx->llvm_cx_ref());
|
||||
|
||||
localenv_llvm_type->setBody(member_llvm_type_v, false /*!is_packed*/);
|
||||
|
||||
return localenv_llvm_type;
|
||||
} /*create_localenv_llvm_type*/
|
||||
|
||||
} /*namespace jit*/
|
||||
} /*namespace xo*/
|
||||
|
||||
/* end type2llvm.cpp */
|
||||
Loading…
Add table
Add a link
Reference in a new issue