| Index: test/cctest/wasm/test-wasm-interpreter-entry.cc
|
| diff --git a/test/cctest/wasm/test-wasm-interpreter-entry.cc b/test/cctest/wasm/test-wasm-interpreter-entry.cc
|
| new file mode 100644
|
| index 0000000000000000000000000000000000000000..a5588e0391cfbf4c8f0b6ac16dabd7e2499e44fa
|
| --- /dev/null
|
| +++ b/test/cctest/wasm/test-wasm-interpreter-entry.cc
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| @@ -0,0 +1,231 @@
|
| +// Copyright 2017 the V8 project authors. All rights reserved.
|
| +// Use of this source code is governed by a BSD-style license that can be
|
| +// found in the LICENSE file.
|
| +
|
| +#include <cstdint>
|
| +
|
| +#include "src/wasm/wasm-macro-gen.h"
|
| +#include "src/wasm/wasm-objects.h"
|
| +
|
| +#include "test/cctest/cctest.h"
|
| +#include "test/cctest/compiler/value-helper.h"
|
| +#include "test/cctest/wasm/wasm-run-utils.h"
|
| +
|
| +using namespace v8::internal;
|
| +using namespace v8::internal::wasm;
|
| +namespace debug = v8::debug;
|
| +
|
| +/**
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| + * We test the interface from Wasm compiled code to the Wasm interpreter by
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| + * building a module with two functions. The external function is called from
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| + * this test, and will be compiled code. It takes its arguments and passes them
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| + * on to the internal function, which will be redirected to the interpreter.
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| + * If the internal function has an i64 parameter, is has to be replaced by two
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| + * i32 parameters on the external function.
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| + * The internal function just converts all its arguments to f64, sums them up
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| + * and returns the sum.
|
| + */
|
| +namespace {
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| +
|
| +template <typename T>
|
| +class ArgPassingHelper {
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| + public:
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| + ArgPassingHelper(WasmRunnerBase& runner, WasmFunctionCompiler& inner_compiler,
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| + std::initializer_list<uint8_t> bytes_inner_function,
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| + std::initializer_list<uint8_t> bytes_outer_function,
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| + const T& expected_lambda)
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| + : isolate_(runner.main_isolate()),
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| + expected_lambda_(expected_lambda),
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| + debug_info_(WasmInstanceObject::GetOrCreateDebugInfo(
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| + runner.module().instance_object())) {
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| + std::vector<uint8_t> inner_code{bytes_inner_function};
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| + inner_compiler.Build(inner_code.data(),
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| + inner_code.data() + inner_code.size());
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| +
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| + std::vector<uint8_t> outer_code{bytes_outer_function};
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| + runner.Build(outer_code.data(), outer_code.data() + outer_code.size());
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| +
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| + WasmDebugInfo::RedirectToInterpreter(debug_info_,
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| + inner_compiler.function_index());
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| + main_fun_wrapper_ = runner.module().WrapCode(runner.function_index());
|
| + }
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| +
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| + template <typename... Args>
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| + void CheckCall(Args... args) {
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| + Handle<Object> arg_objs[] = {isolate_->factory()->NewNumber(args)...};
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| +
|
| + uint64_t num_interpreted_before = debug_info_->NumInterpretedCalls();
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| + Handle<Object> global(isolate_->context()->global_object(), isolate_);
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| + MaybeHandle<Object> retval = Execution::Call(
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| + isolate_, main_fun_wrapper_, global, arraysize(arg_objs), arg_objs);
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| + uint64_t num_interpreted_after = debug_info_->NumInterpretedCalls();
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| + // Check that we really went through the interpreter.
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| + CHECK_EQ(num_interpreted_before + 1, num_interpreted_after);
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| + // Check the result.
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| + double result = retval.ToHandleChecked()->Number();
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| + double expected = expected_lambda_(args...);
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| + CHECK_DOUBLE_EQ(expected, result);
|
| + }
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| +
|
| + private:
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| + Isolate* isolate_;
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| + T expected_lambda_;
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| + Handle<WasmDebugInfo> debug_info_;
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| + Handle<JSFunction> main_fun_wrapper_;
|
| +};
|
| +
|
| +template <typename T>
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| +static ArgPassingHelper<T> GetHelper(
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| + WasmRunnerBase& runner, WasmFunctionCompiler& inner_compiler,
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| + std::initializer_list<uint8_t> bytes_inner_function,
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| + std::initializer_list<uint8_t> bytes_outer_function,
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| + const T& expected_lambda) {
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| + return ArgPassingHelper<T>(runner, inner_compiler, bytes_inner_function,
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| + bytes_outer_function, expected_lambda);
|
| +}
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| +
|
| +} // namespace
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| +
|
| +TEST(TestArgumentPassing_int32) {
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| + WasmRunner<int32_t, int32_t> runner(kExecuteCompiled);
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| + WasmFunctionCompiler& f2 = runner.NewFunction<int32_t, int32_t>();
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| +
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| + auto helper = GetHelper(
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| + runner, f2,
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| + {// Return 2*<0> + 1.
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| + WASM_I32_ADD(WASM_I32_MUL(WASM_I32V_1(2), WASM_GET_LOCAL(0)), WASM_ONE)},
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| + {// Call f2 with param <0>.
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| + WASM_GET_LOCAL(0), WASM_CALL_FUNCTION0(f2.function_index())},
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| + [](int32_t a) { return 2 * a + 1; });
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| +
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| + std::vector<int32_t> test_values = compiler::ValueHelper::int32_vector();
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| + for (int32_t v : test_values) helper.CheckCall(v);
|
| +}
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| +
|
| +TEST(TestArgumentPassing_int64) {
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| + WasmRunner<double, int32_t, int32_t> runner(kExecuteCompiled);
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| + WasmFunctionCompiler& f2 = runner.NewFunction<double, int64_t>();
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| +
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| + auto helper = GetHelper(
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| + runner, f2,
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| + {// Return (double)<0>.
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| + WASM_F64_SCONVERT_I64(WASM_GET_LOCAL(0))},
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| + {// Call f2 with param (<0> | (<1> << 32)).
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| + WASM_I64_IOR(WASM_I64_UCONVERT_I32(WASM_GET_LOCAL(0)),
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| + WASM_I64_SHL(WASM_I64_UCONVERT_I32(WASM_GET_LOCAL(1)),
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| + WASM_I64V_1(32))),
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| + WASM_CALL_FUNCTION0(f2.function_index())},
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| + [](int32_t a, int32_t b) {
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| + int64_t a64 = static_cast<int64_t>(a) & 0xffffffff;
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| + int64_t b64 = static_cast<int64_t>(b) << 32;
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| + return static_cast<double>(a64 | b64);
|
| + });
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| +
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| + std::vector<int32_t> test_values_i32 = compiler::ValueHelper::int32_vector();
|
| + for (int32_t v1 : test_values_i32) {
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| + for (int32_t v2 : test_values_i32) {
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| + helper.CheckCall(v1, v2);
|
| + }
|
| + }
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| +
|
| + std::vector<int64_t> test_values_i64 = compiler::ValueHelper::int64_vector();
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| + for (int64_t v : test_values_i64) {
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| + int32_t v1 = static_cast<int32_t>(v);
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| + int32_t v2 = static_cast<int32_t>(v >> 32);
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| + helper.CheckCall(v1, v2);
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| + helper.CheckCall(v2, v1);
|
| + }
|
| +}
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| +
|
| +TEST(TestArgumentPassing_float_double) {
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| + WasmRunner<double, float> runner(kExecuteCompiled);
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| + WasmFunctionCompiler& f2 = runner.NewFunction<double, float>();
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| +
|
| + auto helper = GetHelper(
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| + runner, f2,
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| + {// Return 2*(double)<0> + 1.
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| + WASM_F64_ADD(
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| + WASM_F64_MUL(WASM_F64(2), WASM_F64_CONVERT_F32(WASM_GET_LOCAL(0))),
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| + WASM_F64(1))},
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| + {// Call f2 with param <0>.
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| + WASM_GET_LOCAL(0), WASM_CALL_FUNCTION0(f2.function_index())},
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| + [](float f) { return 2. * static_cast<double>(f) + 1.; });
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| +
|
| + std::vector<float> test_values = compiler::ValueHelper::float32_vector();
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| + for (float f : test_values) helper.CheckCall(f);
|
| +}
|
| +
|
| +TEST(TestArgumentPassing_double_double) {
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| + WasmRunner<double, double, double> runner(kExecuteCompiled);
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| + WasmFunctionCompiler& f2 = runner.NewFunction<double, double, double>();
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| +
|
| + auto helper = GetHelper(runner, f2,
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| + {// Return <0> + <1>.
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| + WASM_F64_ADD(WASM_GET_LOCAL(0), WASM_GET_LOCAL(1))},
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| + {// Call f2 with params <0>, <1>.
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| + WASM_GET_LOCAL(0), WASM_GET_LOCAL(1),
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| + WASM_CALL_FUNCTION0(f2.function_index())},
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| + [](double a, double b) { return a + b; });
|
| +
|
| + std::vector<double> test_values = compiler::ValueHelper::float64_vector();
|
| + for (double d1 : test_values) {
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| + for (double d2 : test_values) {
|
| + helper.CheckCall(d1, d2);
|
| + }
|
| + }
|
| +}
|
| +
|
| +TEST(TestArgumentPassing_AllTypes) {
|
| + // The second and third argument will be combined to an i64.
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| + WasmRunner<double, int, int, int, float, double> runner(kExecuteCompiled);
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| + WasmFunctionCompiler& f2 =
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| + runner.NewFunction<double, int, int64_t, float, double>();
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| +
|
| + auto helper = GetHelper(
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| + runner, f2,
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| + {
|
| + // Convert all arguments to double, add them and return the sum.
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| + WASM_F64_ADD( // <0+1+2> + <3>
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| + WASM_F64_ADD( // <0+1> + <2>
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| + WASM_F64_ADD( // <0> + <1>
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| + WASM_F64_SCONVERT_I32(
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| + WASM_GET_LOCAL(0)), // <0> to double
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| + WASM_F64_SCONVERT_I64(
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| + WASM_GET_LOCAL(1))), // <1> to double
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| + WASM_F64_CONVERT_F32(WASM_GET_LOCAL(2))), // <2> to double
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| + WASM_GET_LOCAL(3)) // <3>
|
| + },
|
| + {WASM_GET_LOCAL(0), // first arg
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| + WASM_I64_IOR(WASM_I64_UCONVERT_I32(WASM_GET_LOCAL(1)), // second arg
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| + WASM_I64_SHL(WASM_I64_UCONVERT_I32(WASM_GET_LOCAL(2)),
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| + WASM_I64V_1(32))),
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| + WASM_GET_LOCAL(3), // third arg
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| + WASM_GET_LOCAL(4), // fourth arg
|
| + WASM_CALL_FUNCTION0(f2.function_index())},
|
| + [](int32_t a, int32_t b, int32_t c, float d, double e) {
|
| + return 0. + a + (static_cast<int64_t>(b) & 0xffffffff) +
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| + ((static_cast<int64_t>(c) & 0xffffffff) << 32) + d + e;
|
| + });
|
| +
|
| + auto CheckCall = [&](int32_t a, int64_t b, float c, double d) {
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| + int32_t b0 = static_cast<int32_t>(b);
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| + int32_t b1 = static_cast<int32_t>(b >> 32);
|
| + helper.CheckCall(a, b0, b1, c, d);
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| + helper.CheckCall(a, b1, b0, c, d);
|
| + };
|
| +
|
| + std::vector<int32_t> test_values_i32 = compiler::ValueHelper::int32_vector();
|
| + std::vector<int64_t> test_values_i64 = compiler::ValueHelper::int64_vector();
|
| + std::vector<float> test_values_f32 = compiler::ValueHelper::float32_vector();
|
| + std::vector<double> test_values_f64 = compiler::ValueHelper::float64_vector();
|
| + size_t max_len =
|
| + std::max(std::max(test_values_i32.size(), test_values_i64.size()),
|
| + std::max(test_values_f32.size(), test_values_f64.size()));
|
| + for (size_t i = 0; i < max_len; ++i) {
|
| + int32_t i32 = test_values_i32[i % test_values_i32.size()];
|
| + int64_t i64 = test_values_i64[i % test_values_i64.size()];
|
| + float f32 = test_values_f32[i % test_values_f32.size()];
|
| + double f64 = test_values_f64[i % test_values_f64.size()];
|
| + CheckCall(i32, i64, f32, f64);
|
| + }
|
| +}
|
|
|