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510 lines
21 KiB
510 lines
21 KiB
// Copyright 2014 The Chromium Authors. All rights reserved. |
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// Use of this source code is governed by a BSD-style license that can be |
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// found in the LICENSE file. |
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#ifndef PDFIUM_THIRD_PARTY_BASE_NUMERICS_SAFE_MATH_H_ |
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#define PDFIUM_THIRD_PARTY_BASE_NUMERICS_SAFE_MATH_H_ |
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#include <stddef.h> |
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#include <limits> |
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#include <type_traits> |
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#include "third_party/base/numerics/safe_math_impl.h" |
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namespace pdfium { |
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namespace base { |
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namespace internal { |
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// CheckedNumeric<> implements all the logic and operators for detecting integer |
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// boundary conditions such as overflow, underflow, and invalid conversions. |
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// The CheckedNumeric type implicitly converts from floating point and integer |
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// data types, and contains overloads for basic arithmetic operations (i.e.: +, |
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// -, *, / for all types and %, <<, >>, &, |, ^ for integers). Type promotions |
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// are a slightly modified version of the standard C arithmetic rules with the |
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// two differences being that there is no default promotion to int and bitwise |
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// logical operations always return an unsigned of the wider type. |
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// |
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// You may also use one of the variadic convenience functions, which accept |
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// standard arithmetic or CheckedNumeric types, perform arithmetic operations, |
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// and return a CheckedNumeric result. The supported functions are: |
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// CheckAdd() - Addition. |
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// CheckSub() - Subtraction. |
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// CheckMul() - Multiplication. |
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// CheckDiv() - Division. |
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// CheckMod() - Modulous (integer only). |
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// CheckLsh() - Left integer shift (integer only). |
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// CheckRsh() - Right integer shift (integer only). |
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// CheckAnd() - Bitwise AND (integer only with unsigned result). |
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// CheckOr() - Bitwise OR (integer only with unsigned result). |
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// CheckXor() - Bitwise XOR (integer only with unsigned result). |
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// CheckMax() - Maximum of supplied arguments. |
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// CheckMin() - Minimum of supplied arguments. |
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// |
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// The unary negation, increment, and decrement operators are supported, along |
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// with the following unary arithmetic methods, which return a new |
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// CheckedNumeric as a result of the operation: |
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// Abs() - Absolute value. |
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// UnsignedAbs() - Absolute value as an equal-width unsigned underlying type |
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// (valid for only integral types). |
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// Max() - Returns whichever is greater of the current instance or argument. |
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// The underlying return type is whichever has the greatest magnitude. |
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// Min() - Returns whichever is lowest of the current instance or argument. |
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// The underlying return type is whichever has can represent the lowest |
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// number in the smallest width (e.g. int8_t over unsigned, int over |
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// int8_t, and float over int). |
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// |
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// The following methods convert from CheckedNumeric to standard numeric values: |
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// AssignIfValid() - Assigns the underlying value to the supplied destination |
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// pointer if the value is currently valid and within the range |
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// supported by the destination type. Returns true on success. |
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// **************************************************************************** |
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// * WARNING: All of the following functions return a StrictNumeric, which * |
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// * is valid for comparison and assignment operations, but will trigger a * |
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// * compile failure on attempts to assign to a type of insufficient range. * |
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// **************************************************************************** |
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// IsValid() - Returns true if the underlying numeric value is valid (i.e. has |
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// has not wrapped and is not the result of an invalid conversion). |
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// ValueOrDie() - Returns the underlying value. If the state is not valid this |
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// call will crash on a CHECK. |
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// ValueOrDefault() - Returns the current value, or the supplied default if the |
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// state is not valid (will not trigger a CHECK). |
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// |
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// The following wrapper functions can be used to avoid the template |
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// disambiguator syntax when converting a destination type. |
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// IsValidForType<>() in place of: a.template IsValid<Dst>() |
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// ValueOrDieForType<>() in place of: a.template ValueOrDie() |
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// ValueOrDefaultForType<>() in place of: a.template ValueOrDefault(default) |
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// |
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// The following are general utility methods that are useful for converting |
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// between arithmetic types and CheckedNumeric types: |
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// CheckedNumeric::Cast<Dst>() - Instance method returning a CheckedNumeric |
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// derived from casting the current instance to a CheckedNumeric of |
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// the supplied destination type. |
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// MakeCheckedNum() - Creates a new CheckedNumeric from the underlying type of |
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// the supplied arithmetic, CheckedNumeric, or StrictNumeric type. |
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// |
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// Comparison operations are explicitly not supported because they could result |
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// in a crash on an unexpected CHECK condition. You should use patterns like the |
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// following for comparisons: |
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// CheckedNumeric<size_t> checked_size = untrusted_input_value; |
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// checked_size += HEADER LENGTH; |
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// if (checked_size.IsValid() && checked_size.ValueOrDie() < buffer_size) |
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// Do stuff... |
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template <typename T> |
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class CheckedNumeric { |
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static_assert(std::is_arithmetic<T>::value, |
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"CheckedNumeric<T>: T must be a numeric type."); |
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public: |
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using type = T; |
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constexpr CheckedNumeric() {} |
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// Copy constructor. |
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template <typename Src> |
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constexpr CheckedNumeric(const CheckedNumeric<Src>& rhs) |
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: state_(rhs.state_.value(), rhs.IsValid()) {} |
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template <typename Src> |
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friend class CheckedNumeric; |
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// This is not an explicit constructor because we implicitly upgrade regular |
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// numerics to CheckedNumerics to make them easier to use. |
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template <typename Src> |
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constexpr CheckedNumeric(Src value) // NOLINT(runtime/explicit) |
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: state_(value) { |
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static_assert(std::is_arithmetic<Src>::value, "Argument must be numeric."); |
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} |
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// This is not an explicit constructor because we want a seamless conversion |
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// from StrictNumeric types. |
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template <typename Src> |
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constexpr CheckedNumeric( |
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StrictNumeric<Src> value) // NOLINT(runtime/explicit) |
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: state_(static_cast<Src>(value)) {} |
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// IsValid() - The public API to test if a CheckedNumeric is currently valid. |
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// A range checked destination type can be supplied using the Dst template |
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// parameter. |
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template <typename Dst = T> |
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constexpr bool IsValid() const { |
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return state_.is_valid() && |
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IsValueInRangeForNumericType<Dst>(state_.value()); |
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} |
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// AssignIfValid(Dst) - Assigns the underlying value if it is currently valid |
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// and is within the range supported by the destination type. Returns true if |
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// successful and false otherwise. |
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template <typename Dst> |
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constexpr bool AssignIfValid(Dst* result) const { |
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return IsValid<Dst>() ? ((*result = static_cast<Dst>(state_.value())), true) |
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: false; |
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} |
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// ValueOrDie() - The primary accessor for the underlying value. If the |
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// current state is not valid it will CHECK and crash. |
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// A range checked destination type can be supplied using the Dst template |
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// parameter, which will trigger a CHECK if the value is not in bounds for |
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// the destination. |
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// The CHECK behavior can be overridden by supplying a handler as a |
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// template parameter, for test code, etc. However, the handler cannot access |
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// the underlying value, and it is not available through other means. |
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template <typename Dst = T, class CheckHandler = CheckOnFailure> |
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constexpr StrictNumeric<Dst> ValueOrDie() const { |
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return IsValid<Dst>() ? static_cast<Dst>(state_.value()) |
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: CheckHandler::template HandleFailure<Dst>(); |
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} |
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// ValueOrDefault(T default_value) - A convenience method that returns the |
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// current value if the state is valid, and the supplied default_value for |
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// any other state. |
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// A range checked destination type can be supplied using the Dst template |
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// parameter. WARNING: This function may fail to compile or CHECK at runtime |
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// if the supplied default_value is not within range of the destination type. |
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template <typename Dst = T, typename Src> |
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constexpr StrictNumeric<Dst> ValueOrDefault(const Src default_value) const { |
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return IsValid<Dst>() ? static_cast<Dst>(state_.value()) |
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: checked_cast<Dst>(default_value); |
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} |
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// Returns a checked numeric of the specified type, cast from the current |
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// CheckedNumeric. If the current state is invalid or the destination cannot |
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// represent the result then the returned CheckedNumeric will be invalid. |
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template <typename Dst> |
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constexpr CheckedNumeric<typename UnderlyingType<Dst>::type> Cast() const { |
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return *this; |
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} |
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// This friend method is available solely for providing more detailed logging |
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// in the the tests. Do not implement it in production code, because the |
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// underlying values may change at any time. |
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template <typename U> |
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friend U GetNumericValueForTest(const CheckedNumeric<U>& src); |
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// Prototypes for the supported arithmetic operator overloads. |
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template <typename Src> |
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CheckedNumeric& operator+=(const Src rhs); |
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template <typename Src> |
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CheckedNumeric& operator-=(const Src rhs); |
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template <typename Src> |
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CheckedNumeric& operator*=(const Src rhs); |
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template <typename Src> |
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CheckedNumeric& operator/=(const Src rhs); |
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template <typename Src> |
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CheckedNumeric& operator%=(const Src rhs); |
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template <typename Src> |
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CheckedNumeric& operator<<=(const Src rhs); |
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template <typename Src> |
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CheckedNumeric& operator>>=(const Src rhs); |
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template <typename Src> |
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CheckedNumeric& operator&=(const Src rhs); |
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template <typename Src> |
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CheckedNumeric& operator|=(const Src rhs); |
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template <typename Src> |
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CheckedNumeric& operator^=(const Src rhs); |
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constexpr CheckedNumeric operator-() const { |
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return CheckedNumeric<T>( |
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NegateWrapper(state_.value()), |
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IsValid() && |
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(!std::is_signed<T>::value || std::is_floating_point<T>::value || |
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NegateWrapper(state_.value()) != |
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std::numeric_limits<T>::lowest())); |
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} |
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constexpr CheckedNumeric operator~() const { |
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return CheckedNumeric<decltype(InvertWrapper(T()))>( |
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InvertWrapper(state_.value()), IsValid()); |
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} |
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constexpr CheckedNumeric Abs() const { |
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return CheckedNumeric<T>( |
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AbsWrapper(state_.value()), |
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IsValid() && |
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(!std::is_signed<T>::value || std::is_floating_point<T>::value || |
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AbsWrapper(state_.value()) != std::numeric_limits<T>::lowest())); |
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} |
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template <typename U> |
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constexpr CheckedNumeric<typename MathWrapper<CheckedMaxOp, T, U>::type> Max( |
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const U rhs) const { |
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using R = typename UnderlyingType<U>::type; |
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using result_type = typename MathWrapper<CheckedMaxOp, T, U>::type; |
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// TODO(jschuh): This can be converted to the MathOp version and remain |
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// constexpr once we have C++14 support. |
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return CheckedNumeric<result_type>( |
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static_cast<result_type>( |
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IsGreater<T, R>::Test(state_.value(), Wrapper<U>::value(rhs)) |
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? state_.value() |
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: Wrapper<U>::value(rhs)), |
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state_.is_valid() && Wrapper<U>::is_valid(rhs)); |
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} |
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template <typename U> |
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constexpr CheckedNumeric<typename MathWrapper<CheckedMinOp, T, U>::type> Min( |
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const U rhs) const { |
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using R = typename UnderlyingType<U>::type; |
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using result_type = typename MathWrapper<CheckedMinOp, T, U>::type; |
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// TODO(jschuh): This can be converted to the MathOp version and remain |
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// constexpr once we have C++14 support. |
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return CheckedNumeric<result_type>( |
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static_cast<result_type>( |
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IsLess<T, R>::Test(state_.value(), Wrapper<U>::value(rhs)) |
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? state_.value() |
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: Wrapper<U>::value(rhs)), |
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state_.is_valid() && Wrapper<U>::is_valid(rhs)); |
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} |
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// This function is available only for integral types. It returns an unsigned |
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// integer of the same width as the source type, containing the absolute value |
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// of the source, and properly handling signed min. |
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constexpr CheckedNumeric<typename UnsignedOrFloatForSize<T>::type> |
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UnsignedAbs() const { |
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return CheckedNumeric<typename UnsignedOrFloatForSize<T>::type>( |
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SafeUnsignedAbs(state_.value()), state_.is_valid()); |
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} |
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CheckedNumeric& operator++() { |
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*this += 1; |
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return *this; |
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} |
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CheckedNumeric operator++(int) { |
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CheckedNumeric value = *this; |
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*this += 1; |
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return value; |
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} |
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CheckedNumeric& operator--() { |
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*this -= 1; |
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return *this; |
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} |
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CheckedNumeric operator--(int) { |
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CheckedNumeric value = *this; |
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*this -= 1; |
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return value; |
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} |
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// These perform the actual math operations on the CheckedNumerics. |
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// Binary arithmetic operations. |
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template <template <typename, typename, typename> class M, |
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typename L, |
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typename R> |
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static CheckedNumeric MathOp(const L lhs, const R rhs) { |
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using Math = typename MathWrapper<M, L, R>::math; |
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T result = 0; |
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bool is_valid = |
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Wrapper<L>::is_valid(lhs) && Wrapper<R>::is_valid(rhs) && |
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Math::Do(Wrapper<L>::value(lhs), Wrapper<R>::value(rhs), &result); |
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return CheckedNumeric<T>(result, is_valid); |
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}; |
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// Assignment arithmetic operations. |
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template <template <typename, typename, typename> class M, typename R> |
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CheckedNumeric& MathOp(const R rhs) { |
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using Math = typename MathWrapper<M, T, R>::math; |
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T result = 0; // Using T as the destination saves a range check. |
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bool is_valid = state_.is_valid() && Wrapper<R>::is_valid(rhs) && |
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Math::Do(state_.value(), Wrapper<R>::value(rhs), &result); |
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*this = CheckedNumeric<T>(result, is_valid); |
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return *this; |
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}; |
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private: |
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CheckedNumericState<T> state_; |
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template <typename Src> |
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constexpr CheckedNumeric(Src value, bool is_valid) |
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: state_(value, is_valid) {} |
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// These wrappers allow us to handle state the same way for both |
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// CheckedNumeric and POD arithmetic types. |
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template <typename Src> |
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struct Wrapper { |
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static constexpr bool is_valid(Src) { return true; } |
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static constexpr Src value(Src value) { return value; } |
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}; |
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template <typename Src> |
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struct Wrapper<CheckedNumeric<Src>> { |
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static constexpr bool is_valid(const CheckedNumeric<Src> v) { |
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return v.IsValid(); |
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} |
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static constexpr Src value(const CheckedNumeric<Src> v) { |
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return v.state_.value(); |
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} |
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}; |
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template <typename Src> |
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struct Wrapper<StrictNumeric<Src>> { |
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static constexpr bool is_valid(const StrictNumeric<Src>) { return true; } |
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static constexpr Src value(const StrictNumeric<Src> v) { |
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return static_cast<Src>(v); |
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} |
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}; |
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}; |
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// Convenience functions to avoid the ugly template disambiguator syntax. |
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template <typename Dst, typename Src> |
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constexpr bool IsValidForType(const CheckedNumeric<Src> value) { |
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return value.template IsValid<Dst>(); |
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} |
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template <typename Dst, typename Src> |
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constexpr StrictNumeric<Dst> ValueOrDieForType( |
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const CheckedNumeric<Src> value) { |
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return value.template ValueOrDie<Dst>(); |
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} |
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template <typename Dst, typename Src, typename Default> |
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constexpr StrictNumeric<Dst> ValueOrDefaultForType( |
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const CheckedNumeric<Src> value, |
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const Default default_value) { |
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return value.template ValueOrDefault<Dst>(default_value); |
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} |
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// These variadic templates work out the return types. |
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// TODO(jschuh): Rip all this out once we have C++14 non-trailing auto support. |
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template <template <typename, typename, typename> class M, |
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typename L, |
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typename R, |
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typename... Args> |
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struct ResultType; |
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template <template <typename, typename, typename> class M, |
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typename L, |
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typename R> |
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struct ResultType<M, L, R> { |
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using type = typename MathWrapper<M, L, R>::type; |
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}; |
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template <template <typename, typename, typename> class M, |
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typename L, |
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typename R, |
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typename... Args> |
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struct ResultType { |
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using type = |
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typename ResultType<M, typename ResultType<M, L, R>::type, Args...>::type; |
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}; |
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// Convience wrapper to return a new CheckedNumeric from the provided arithmetic |
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// or CheckedNumericType. |
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template <typename T> |
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constexpr CheckedNumeric<typename UnderlyingType<T>::type> MakeCheckedNum( |
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const T value) { |
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return value; |
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} |
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// These implement the variadic wrapper for the math operations. |
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template <template <typename, typename, typename> class M, |
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typename L, |
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typename R> |
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CheckedNumeric<typename MathWrapper<M, L, R>::type> ChkMathOp(const L lhs, |
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const R rhs) { |
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using Math = typename MathWrapper<M, L, R>::math; |
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return CheckedNumeric<typename Math::result_type>::template MathOp<M>(lhs, |
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rhs); |
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} |
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// General purpose wrapper template for arithmetic operations. |
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template <template <typename, typename, typename> class M, |
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typename L, |
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typename R, |
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typename... Args> |
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CheckedNumeric<typename ResultType<M, L, R, Args...>::type> |
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ChkMathOp(const L lhs, const R rhs, const Args... args) { |
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auto tmp = ChkMathOp<M>(lhs, rhs); |
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return tmp.IsValid() ? ChkMathOp<M>(tmp, args...) |
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: decltype(ChkMathOp<M>(tmp, args...))(tmp); |
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}; |
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// The following macros are just boilerplate for the standard arithmetic |
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// operator overloads and variadic function templates. A macro isn't the nicest |
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// solution, but it beats rewriting these over and over again. |
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#define BASE_NUMERIC_ARITHMETIC_VARIADIC(NAME) \ |
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template <typename L, typename R, typename... Args> \ |
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CheckedNumeric<typename ResultType<Checked##NAME##Op, L, R, Args...>::type> \ |
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Check##NAME(const L lhs, const R rhs, const Args... args) { \ |
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return ChkMathOp<Checked##NAME##Op, L, R, Args...>(lhs, rhs, args...); \ |
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} |
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#define BASE_NUMERIC_ARITHMETIC_OPERATORS(NAME, OP, COMPOUND_OP) \ |
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/* Binary arithmetic operator for all CheckedNumeric operations. */ \ |
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template <typename L, typename R, \ |
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typename std::enable_if<IsCheckedOp<L, R>::value>::type* = \ |
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nullptr> \ |
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CheckedNumeric<typename MathWrapper<Checked##NAME##Op, L, R>::type> \ |
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operator OP(const L lhs, const R rhs) { \ |
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return decltype(lhs OP rhs)::template MathOp<Checked##NAME##Op>(lhs, rhs); \ |
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} \ |
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/* Assignment arithmetic operator implementation from CheckedNumeric. */ \ |
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template <typename L> \ |
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template <typename R> \ |
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CheckedNumeric<L>& CheckedNumeric<L>::operator COMPOUND_OP(const R rhs) { \ |
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return MathOp<Checked##NAME##Op>(rhs); \ |
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} \ |
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/* Variadic arithmetic functions that return CheckedNumeric. */ \ |
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BASE_NUMERIC_ARITHMETIC_VARIADIC(NAME) |
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BASE_NUMERIC_ARITHMETIC_OPERATORS(Add, +, +=) |
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BASE_NUMERIC_ARITHMETIC_OPERATORS(Sub, -, -=) |
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BASE_NUMERIC_ARITHMETIC_OPERATORS(Mul, *, *=) |
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BASE_NUMERIC_ARITHMETIC_OPERATORS(Div, /, /=) |
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BASE_NUMERIC_ARITHMETIC_OPERATORS(Mod, %, %=) |
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BASE_NUMERIC_ARITHMETIC_OPERATORS(Lsh, <<, <<=) |
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BASE_NUMERIC_ARITHMETIC_OPERATORS(Rsh, >>, >>=) |
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BASE_NUMERIC_ARITHMETIC_OPERATORS(And, &, &=) |
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BASE_NUMERIC_ARITHMETIC_OPERATORS(Or, |, |=) |
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BASE_NUMERIC_ARITHMETIC_OPERATORS(Xor, ^, ^=) |
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BASE_NUMERIC_ARITHMETIC_VARIADIC(Max) |
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BASE_NUMERIC_ARITHMETIC_VARIADIC(Min) |
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#undef BASE_NUMERIC_ARITHMETIC_VARIADIC |
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#undef BASE_NUMERIC_ARITHMETIC_OPERATORS |
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// These are some extra StrictNumeric operators to support simple pointer |
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// arithmetic with our result types. Since wrapping on a pointer is always |
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// bad, we trigger the CHECK condition here. |
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template <typename L, typename R> |
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L* operator+(L* lhs, const StrictNumeric<R> rhs) { |
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uintptr_t result = CheckAdd(reinterpret_cast<uintptr_t>(lhs), |
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CheckMul(sizeof(L), static_cast<R>(rhs))) |
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.template ValueOrDie<uintptr_t>(); |
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return reinterpret_cast<L*>(result); |
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} |
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template <typename L, typename R> |
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L* operator-(L* lhs, const StrictNumeric<R> rhs) { |
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uintptr_t result = CheckSub(reinterpret_cast<uintptr_t>(lhs), |
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CheckMul(sizeof(L), static_cast<R>(rhs))) |
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.template ValueOrDie<uintptr_t>(); |
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return reinterpret_cast<L*>(result); |
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} |
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} // namespace internal |
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using internal::CheckedNumeric; |
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using internal::IsValidForType; |
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using internal::ValueOrDieForType; |
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using internal::ValueOrDefaultForType; |
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using internal::MakeCheckedNum; |
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using internal::CheckMax; |
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using internal::CheckMin; |
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using internal::CheckAdd; |
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using internal::CheckSub; |
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using internal::CheckMul; |
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using internal::CheckDiv; |
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using internal::CheckMod; |
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using internal::CheckLsh; |
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using internal::CheckRsh; |
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using internal::CheckAnd; |
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using internal::CheckOr; |
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using internal::CheckXor; |
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|
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} // namespace base |
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} // namespace pdfium |
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#endif // PDFIUM_THIRD_PARTY_BASE_NUMERICS_SAFE_MATH_H_
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