Files
sdk/runtime/lib/double.cc
T
2011-12-22 22:03:35 +00:00

249 lines
7.9 KiB
C++

// Copyright (c) 2011, the Dart project authors. Please see the AUTHORS file
// for details. All rights reserved. Use of this source code is governed by a
// BSD-style license that can be found in the LICENSE file.
#include <math.h>
#include "vm/bootstrap_natives.h"
#include "vm/bigint_operations.h"
#include "vm/double_conversion.h"
#include "vm/exceptions.h"
#include "vm/native_entry.h"
#include "vm/object.h"
namespace dart {
DEFINE_NATIVE_ENTRY(Double_doubleFromInteger, 2) {
ASSERT(AbstractTypeArguments::CheckedHandle(arguments->At(0)).IsNull());
const Integer& value = Integer::CheckedHandle(arguments->At(1));
const Double& result = Double::Handle(Double::New(value.AsDoubleValue()));
arguments->SetReturn(result);
}
DEFINE_NATIVE_ENTRY(Double_add, 2) {
double left = Double::CheckedHandle(arguments->At(0)).value();
GET_NATIVE_ARGUMENT(Double, right_object, arguments->At(1));
double right = right_object.value();
const Double& result = Double::Handle(Double::New(left + right));
arguments->SetReturn(result);
}
DEFINE_NATIVE_ENTRY(Double_sub, 2) {
double left = Double::CheckedHandle(arguments->At(0)).value();
GET_NATIVE_ARGUMENT(Double, right_object, arguments->At(1));
double right = right_object.value();
const Double& result = Double::Handle(Double::New(left - right));
arguments->SetReturn(result);
}
DEFINE_NATIVE_ENTRY(Double_mul, 2) {
double left = Double::CheckedHandle(arguments->At(0)).value();
GET_NATIVE_ARGUMENT(Double, right_object, arguments->At(1));
double right = right_object.value();
const Double& result = Double::Handle(Double::New(left * right));
arguments->SetReturn(result);
}
DEFINE_NATIVE_ENTRY(Double_div, 2) {
double left = Double::CheckedHandle(arguments->At(0)).value();
GET_NATIVE_ARGUMENT(Double, right_object, arguments->At(1));
double right = right_object.value();
const Double& result = Double::Handle(Double::New(left / right));
arguments->SetReturn(result);
}
DEFINE_NATIVE_ENTRY(Double_trunc_div, 2) {
double left = Double::CheckedHandle(arguments->At(0)).value();
GET_NATIVE_ARGUMENT(Double, right_object, arguments->At(1));
double right = right_object.value();
const Double& result = Double::Handle(Double::New(trunc(left / right)));
arguments->SetReturn(result);
}
DEFINE_NATIVE_ENTRY(Double_modulo, 2) {
double left = Double::CheckedHandle(arguments->At(0)).value();
GET_NATIVE_ARGUMENT(Double, right_object, arguments->At(1));
double right = right_object.value();
double remainder = fmod(left, right);
if (remainder == 0.0) {
// We explicitely switch to the positive 0.0 (just in case it was negative).
remainder = +0.0;
} else if (remainder < 0) {
if (right < 0) {
remainder -= right;
} else {
remainder += right;
}
}
const Double& result = Double::Handle(Double::New(remainder));
arguments->SetReturn(result);
}
DEFINE_NATIVE_ENTRY(Double_remainder, 2) {
double left = Double::CheckedHandle(arguments->At(0)).value();
GET_NATIVE_ARGUMENT(Double, right_object, arguments->At(1));
double right = right_object.value();
const Double& result = Double::Handle(Double::New(fmod(left, right)));
arguments->SetReturn(result);
}
DEFINE_NATIVE_ENTRY(Double_greaterThan, 2) {
const Double& left = Double::CheckedHandle(arguments->At(0));
GET_NATIVE_ARGUMENT(Double, right, arguments->At(1));
bool result = right.IsNull() ? false : (left.value() > right.value());
arguments->SetReturn(Bool::Handle(Bool::Get(result)));
}
DEFINE_NATIVE_ENTRY(Double_greaterThanFromInteger, 2) {
const Double& right = Double::CheckedHandle(arguments->At(0));
GET_NATIVE_ARGUMENT(Integer, left, arguments->At(1));
const Bool& result = Bool::Handle(Bool::Get(
left.AsDoubleValue() > right.value()));
arguments->SetReturn(result);
}
DEFINE_NATIVE_ENTRY(Double_equal, 2) {
const Double& left = Double::CheckedHandle(arguments->At(0));
GET_NATIVE_ARGUMENT(Double, right, arguments->At(1));
bool result = right.IsNull() ? false : (left.value() == right.value());
arguments->SetReturn(Bool::Handle(Bool::Get(result)));
}
DEFINE_NATIVE_ENTRY(Double_equalToInteger, 2) {
const Double& left = Double::CheckedHandle(arguments->At(0));
GET_NATIVE_ARGUMENT(Integer, right, arguments->At(1));
const Bool& result =
Bool::Handle(Bool::Get(left.value() == right.AsDoubleValue()));
arguments->SetReturn(result);
}
DEFINE_NATIVE_ENTRY(Double_round, 1) {
const Double& arg = Double::CheckedHandle(arguments->At(0));
arguments->SetReturn(Double::Handle(Double::New(round(arg.value()))));
}
DEFINE_NATIVE_ENTRY(Double_floor, 1) {
const Double& arg = Double::CheckedHandle(arguments->At(0));
arguments->SetReturn(Double::Handle(Double::New(floor(arg.value()))));
}
DEFINE_NATIVE_ENTRY(Double_ceil, 1) {
const Double& arg = Double::CheckedHandle(arguments->At(0));
arguments->SetReturn(Double::Handle(Double::New(ceil(arg.value()))));
}
DEFINE_NATIVE_ENTRY(Double_truncate, 1) {
const Double& arg = Double::CheckedHandle(arguments->At(0));
arguments->SetReturn(Double::Handle(Double::New(trunc(arg.value()))));
}
DEFINE_NATIVE_ENTRY(Double_pow, 2) {
const double operand = Double::CheckedHandle(arguments->At(0)).value();
GET_NATIVE_ARGUMENT(Double, exponent_object, arguments->At(1));
const double exponent = exponent_object.value();
arguments->SetReturn(Double::Handle(Double::New(pow(operand, exponent))));
}
#if defined(TARGET_OS_MACOS)
// MAC OSX math library produces old style cast warning.
#pragma GCC diagnostic ignored "-Wold-style-cast"
#endif
DEFINE_NATIVE_ENTRY(Double_toInt, 1) {
const Double& arg = Double::CheckedHandle(arguments->At(0));
if (isinf(arg.value()) || isnan(arg.value())) {
GrowableArray<const Object*> args;
args.Add(&String::ZoneHandle(String::New(
"Infinity or NaN toInt")));
Exceptions::ThrowByType(Exceptions::kBadNumberFormat, args);
}
double result = trunc(arg.value());
if ((Smi::kMinValue <= result) && (result <= Smi::kMaxValue)) {
arguments->SetReturn(Smi::Handle(Smi::New(static_cast<intptr_t>(result))));
} else if ((Mint::kMinValue <= result) && (result <= Mint::kMaxValue)) {
arguments->SetReturn(Mint::Handle(Mint::New(static_cast<int64_t>(result))));
} else {
arguments->SetReturn(
Bigint::Handle(BigintOperations::NewFromDouble(result)));
}
}
DEFINE_NATIVE_ENTRY(Double_toStringAsFixed, 2) {
const Double& arg = Double::CheckedHandle(arguments->At(0));
GET_NATIVE_ARGUMENT(Smi, fraction_digits, arguments->At(1));
double d = arg.value();
int fraction_digits_value = fraction_digits.Value();
String& result = String::Handle();
bool succeeded = DoubleToStringAsFixed(d, fraction_digits_value, result);
if (!succeeded) {
GrowableArray<const Object*> args;
args.Add(&String::ZoneHandle(String::New(
"Illegal arguments to double.toStringAsFixed")));
Exceptions::ThrowByType(Exceptions::kIllegalArgument, args);
}
arguments->SetReturn(result);
}
DEFINE_NATIVE_ENTRY(Double_toStringAsExponential, 2) {
UNIMPLEMENTED();
}
DEFINE_NATIVE_ENTRY(Double_toStringAsPrecision, 2) {
UNIMPLEMENTED();
}
DEFINE_NATIVE_ENTRY(Double_isInfinite, 1) {
const Double& arg = Double::CheckedHandle(arguments->At(0));
if (isinf(arg.value())) {
arguments->SetReturn(Bool::Handle(Bool::True()));
} else {
arguments->SetReturn(Bool::Handle(Bool::False()));
}
}
DEFINE_NATIVE_ENTRY(Double_isNaN, 1) {
const Double& arg = Double::CheckedHandle(arguments->At(0));
if (isnan(arg.value())) {
arguments->SetReturn(Bool::Handle(Bool::True()));
} else {
arguments->SetReturn(Bool::Handle(Bool::False()));
}
}
DEFINE_NATIVE_ENTRY(Double_isNegative, 1) {
const Double& arg = Double::CheckedHandle(arguments->At(0));
// Include negative zero, infinity.
if (signbit(arg.value()) && !isnan(arg.value())) {
arguments->SetReturn(Bool::Handle(Bool::True()));
} else {
arguments->SetReturn(Bool::Handle(Bool::False()));
}
}
// Add here only functions using/referring to old-style casts.
} // namespace dart