#ifndef wasm_ir_utils_h
#define wasm_ir_utils_h
#include "ir/branch-utils.h"
#include "pass.h"
#include "wasm-builder.h"
#include "wasm-traversal.h"
#include "wasm.h"
namespace wasm {
struct Measurer
: public PostWalker<Measurer, UnifiedExpressionVisitor<Measurer>> {
Index size = 0;
void visitExpression(Expression* curr) { size++; }
static Index measure(Expression* tree) {
Measurer measurer;
measurer.walk(tree);
return measurer.size;
}
static constexpr double BytesPerExpr = 2.5;
};
struct ExpressionAnalyzer {
static bool isResultUsed(ExpressionStack& stack, Function* func);
static bool isResultDropped(ExpressionStack& stack);
static bool isSimple(Break* curr) { return !curr->condition && !curr->value; }
using ExprComparer = std::function<bool(Expression*, Expression*)>;
static bool
flexibleEqual(Expression* left, Expression* right, ExprComparer comparer);
static bool equal(Expression* left, Expression* right) {
auto comparer = [](Expression* left, Expression* right) { return false; };
return flexibleEqual(left, right, comparer);
}
static bool shallowEqual(Expression* left, Expression* right) {
auto comparer = [left, right](Expression* currLeft, Expression* currRight) {
if (currLeft == left && currRight == right) {
return false;
}
return true;
};
return flexibleEqual(left, right, comparer);
}
using ExprHasher = std::function<bool(Expression*, size_t&)>;
static bool nothingHasher(Expression*, size_t&) { return false; }
static size_t flexibleHash(Expression* curr, ExprHasher hasher);
static size_t hash(Expression* curr) {
return flexibleHash(curr, nothingHasher);
}
static size_t shallowHash(Expression* curr);
};
struct ReFinalize
: public WalkerPass<PostWalker<ReFinalize, OverriddenVisitor<ReFinalize>>> {
bool isFunctionParallel() override { return true; }
bool requiresNonNullableLocalFixups() override { return false; }
std::unique_ptr<Pass> create() override {
return std::make_unique<ReFinalize>();
}
ReFinalize() { name = "refinalize"; }
std::unordered_map<Name, std::unordered_set<Type>> breakTypes;
#define DELEGATE(CLASS_TO_VISIT) \
void visit##CLASS_TO_VISIT(CLASS_TO_VISIT* curr);
#include "wasm-delegations.def"
void visitExport(Export* curr);
void visitGlobal(Global* curr);
void visitTable(Table* curr);
void visitElementSegment(ElementSegment* curr);
void visitMemory(Memory* curr);
void visitDataSegment(DataSegment* curr);
void visitTag(Tag* curr);
void visitModule(Module* curr);
private:
void updateBreakValueType(Name name, Type type);
void replaceUntaken(Expression* value, Expression* condition);
};
struct ReFinalizeNode : public OverriddenVisitor<ReFinalizeNode> {
#define DELEGATE(CLASS_TO_VISIT) \
void visit##CLASS_TO_VISIT(CLASS_TO_VISIT* curr) { curr->finalize(); }
#include "wasm-delegations.def"
void visitExport(Export* curr) { WASM_UNREACHABLE("unimp"); }
void visitGlobal(Global* curr) { WASM_UNREACHABLE("unimp"); }
void visitTable(Table* curr) { WASM_UNREACHABLE("unimp"); }
void visitElementSegment(ElementSegment* curr) { WASM_UNREACHABLE("unimp"); }
void visitMemory(Memory* curr) { WASM_UNREACHABLE("unimp"); }
void visitDataSegment(DataSegment* curr) { WASM_UNREACHABLE("unimp"); }
void visitTag(Tag* curr) { WASM_UNREACHABLE("unimp"); }
void visitModule(Module* curr) { WASM_UNREACHABLE("unimp"); }
static void updateStack(ExpressionStack& expressionStack) {
for (int i = int(expressionStack.size()) - 1; i >= 0; i--) {
auto* curr = expressionStack[i];
ReFinalizeNode().visit(curr);
}
}
};
struct AutoDrop : public WalkerPass<ExpressionStackWalker<AutoDrop>> {
bool isFunctionParallel() override { return true; }
std::unique_ptr<Pass> create() override {
return std::make_unique<AutoDrop>();
}
AutoDrop() { name = "autodrop"; }
bool maybeDrop(Expression*& child) {
bool acted = false;
if (child->type.isConcrete()) {
expressionStack.push_back(child);
if (!ExpressionAnalyzer::isResultUsed(expressionStack, getFunction()) &&
!ExpressionAnalyzer::isResultDropped(expressionStack)) {
child = Builder(*getModule()).makeDrop(child);
acted = true;
}
expressionStack.pop_back();
}
return acted;
}
void reFinalize() { ReFinalizeNode::updateStack(expressionStack); }
void visitBlock(Block* curr) {
if (curr->list.size() == 0) {
return;
}
for (Index i = 0; i < curr->list.size() - 1; i++) {
auto* child = curr->list[i];
if (child->type.isConcrete()) {
curr->list[i] = Builder(*getModule()).makeDrop(child);
}
}
if (maybeDrop(curr->list.back())) {
reFinalize();
assert(curr->type == Type::none || curr->type == Type::unreachable);
}
}
void visitIf(If* curr) {
bool acted = false;
if (maybeDrop(curr->ifTrue)) {
acted = true;
}
if (curr->ifFalse) {
if (maybeDrop(curr->ifFalse)) {
acted = true;
}
}
if (acted) {
reFinalize();
assert(curr->type == Type::none);
}
}
void visitTry(Try* curr) {
bool acted = false;
if (maybeDrop(curr->body)) {
acted = true;
}
for (auto* catchBody : curr->catchBodies) {
if (maybeDrop(catchBody)) {
acted = true;
}
}
if (acted) {
reFinalize();
assert(curr->type == Type::none);
}
}
void doWalkFunction(Function* curr) {
ReFinalize().walkFunctionInModule(curr, getModule());
walk(curr->body);
if (curr->getResults() == Type::none && curr->body->type.isConcrete()) {
curr->body = Builder(*getModule()).makeDrop(curr->body);
}
ReFinalize().walkFunctionInModule(curr, getModule());
}
};
struct I64Utilities {
static Expression*
recreateI64(Builder& builder, Expression* low, Expression* high) {
return builder.makeBinary(
OrInt64,
builder.makeUnary(ExtendUInt32, low),
builder.makeBinary(ShlInt64,
builder.makeUnary(ExtendUInt32, high),
builder.makeConst(int64_t(32))));
};
static Expression* recreateI64(Builder& builder, Index low, Index high) {
return recreateI64(builder,
builder.makeLocalGet(low, Type::i32),
builder.makeLocalGet(high, Type::i32));
};
static Expression* getI64High(Builder& builder, Index index) {
return builder.makeUnary(
WrapInt64,
builder.makeBinary(ShrUInt64,
builder.makeLocalGet(index, Type::i64),
builder.makeConst(int64_t(32))));
}
static Expression* getI64Low(Builder& builder, Index index) {
return builder.makeUnary(WrapInt64, builder.makeLocalGet(index, Type::i64));
}
};
}
#endif