2004-09-01 22:55:40 +00:00
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//===- llvm/ADT/STLExtras.h - Useful STL related functions ------*- C++ -*-===//
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2005-04-21 20:19:05 +00:00
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//
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2003-10-20 19:46:57 +00:00
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// The LLVM Compiler Infrastructure
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//
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2007-12-29 19:59:42 +00:00
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// This file is distributed under the University of Illinois Open Source
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// License. See LICENSE.TXT for details.
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2005-04-21 20:19:05 +00:00
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//
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2003-10-20 19:46:57 +00:00
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//===----------------------------------------------------------------------===//
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2001-06-21 05:25:51 +00:00
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//
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// This file contains some templates that are useful if you are working with the
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// STL at all.
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//
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2009-01-02 05:01:22 +00:00
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// No library is required when using these functions.
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2001-06-21 05:25:51 +00:00
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//
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//===----------------------------------------------------------------------===//
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2004-09-01 22:55:40 +00:00
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#ifndef LLVM_ADT_STLEXTRAS_H
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#define LLVM_ADT_STLEXTRAS_H
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2001-06-21 05:25:51 +00:00
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2014-03-09 11:20:17 +00:00
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#include "llvm/Support/Compiler.h"
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2009-02-20 22:20:18 +00:00
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#include <cstddef> // for std::size_t
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2009-11-19 16:08:04 +00:00
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#include <cstdlib> // for qsort
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2001-06-21 05:25:51 +00:00
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#include <functional>
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2009-08-27 06:41:46 +00:00
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#include <iterator>
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2014-03-09 11:20:17 +00:00
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#include <memory>
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2003-11-23 03:50:31 +00:00
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#include <utility> // for std::pair
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2001-06-21 05:25:51 +00:00
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2003-11-11 22:41:34 +00:00
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namespace llvm {
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2001-06-27 23:32:12 +00:00
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//===----------------------------------------------------------------------===//
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// Extra additions to <functional>
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//===----------------------------------------------------------------------===//
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2012-04-20 20:05:28 +00:00
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template<class Ty>
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struct identity : public std::unary_function<Ty, Ty> {
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Ty &operator()(Ty &self) const {
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return self;
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}
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const Ty &operator()(const Ty &self) const {
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return self;
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}
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};
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2009-08-09 03:36:59 +00:00
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template<class Ty>
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struct less_ptr : public std::binary_function<Ty, Ty, bool> {
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bool operator()(const Ty* left, const Ty* right) const {
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return *left < *right;
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}
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};
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2004-07-21 08:38:06 +00:00
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template<class Ty>
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struct greater_ptr : public std::binary_function<Ty, Ty, bool> {
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bool operator()(const Ty* left, const Ty* right) const {
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return *right < *left;
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}
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};
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2014-05-06 01:44:26 +00:00
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/// An efficient, type-erasing, non-owning reference to a callable. This is
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/// intended for use as the type of a function parameter that is not used
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/// after the function in question returns.
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///
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/// This class does not own the callable, so it is not in general safe to store
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/// a function_ref.
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template<typename Fn> class function_ref;
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#if LLVM_HAS_VARIADIC_TEMPLATES
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template<typename Ret, typename ...Params>
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class function_ref<Ret(Params...)> {
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2014-05-23 01:22:46 +00:00
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Ret (*callback)(intptr_t callable, Params ...params);
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intptr_t callable;
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2014-05-06 01:44:26 +00:00
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template<typename Callable>
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2014-05-23 01:22:46 +00:00
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static Ret callback_fn(intptr_t callable, Params ...params) {
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2014-05-06 01:44:26 +00:00
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return (*reinterpret_cast<Callable*>(callable))(
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std::forward<Params>(params)...);
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}
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public:
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2014-11-12 02:06:08 +00:00
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template <typename Callable>
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function_ref(Callable &&callable,
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typename std::enable_if<
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!std::is_same<typename std::remove_reference<Callable>::type,
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function_ref>::value>::type * = nullptr)
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2014-05-06 01:44:26 +00:00
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: callback(callback_fn<typename std::remove_reference<Callable>::type>),
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2014-05-23 01:22:46 +00:00
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callable(reinterpret_cast<intptr_t>(&callable)) {}
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2014-05-06 01:44:26 +00:00
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Ret operator()(Params ...params) const {
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return callback(callable, std::forward<Params>(params)...);
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}
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};
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#else
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template<typename Ret>
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class function_ref<Ret()> {
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2014-05-23 01:22:46 +00:00
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Ret (*callback)(intptr_t callable);
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intptr_t callable;
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2014-05-06 01:44:26 +00:00
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template<typename Callable>
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2014-05-23 01:22:46 +00:00
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static Ret callback_fn(intptr_t callable) {
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2014-05-06 01:44:26 +00:00
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return (*reinterpret_cast<Callable*>(callable))();
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}
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public:
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template<typename Callable>
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2014-11-12 03:28:57 +00:00
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function_ref(Callable &&callable,
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typename std::enable_if<
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!std::is_same<typename std::remove_reference<Callable>::type,
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function_ref>::value>::type * = nullptr)
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2014-05-06 01:44:26 +00:00
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: callback(callback_fn<typename std::remove_reference<Callable>::type>),
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2014-05-23 01:22:46 +00:00
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callable(reinterpret_cast<intptr_t>(&callable)) {}
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2014-05-06 01:44:26 +00:00
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Ret operator()() const { return callback(callable); }
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};
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template<typename Ret, typename Param1>
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class function_ref<Ret(Param1)> {
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2014-05-23 01:22:46 +00:00
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Ret (*callback)(intptr_t callable, Param1 param1);
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intptr_t callable;
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2014-05-06 01:44:26 +00:00
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template<typename Callable>
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2014-05-23 01:22:46 +00:00
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static Ret callback_fn(intptr_t callable, Param1 param1) {
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2014-05-06 01:44:26 +00:00
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return (*reinterpret_cast<Callable*>(callable))(
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std::forward<Param1>(param1));
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}
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public:
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template<typename Callable>
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2014-11-12 03:28:57 +00:00
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function_ref(Callable &&callable,
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typename std::enable_if<
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!std::is_same<typename std::remove_reference<Callable>::type,
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function_ref>::value>::type * = nullptr)
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2014-05-06 01:44:26 +00:00
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: callback(callback_fn<typename std::remove_reference<Callable>::type>),
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2014-05-23 01:22:46 +00:00
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callable(reinterpret_cast<intptr_t>(&callable)) {}
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2014-05-06 01:44:26 +00:00
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Ret operator()(Param1 param1) {
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return callback(callable, std::forward<Param1>(param1));
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}
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};
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template<typename Ret, typename Param1, typename Param2>
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class function_ref<Ret(Param1, Param2)> {
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2014-05-23 01:22:46 +00:00
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Ret (*callback)(intptr_t callable, Param1 param1, Param2 param2);
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intptr_t callable;
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2014-05-06 01:44:26 +00:00
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template<typename Callable>
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2014-05-23 01:22:46 +00:00
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static Ret callback_fn(intptr_t callable, Param1 param1, Param2 param2) {
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2014-05-06 01:44:26 +00:00
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return (*reinterpret_cast<Callable*>(callable))(
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std::forward<Param1>(param1),
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std::forward<Param2>(param2));
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}
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public:
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template<typename Callable>
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2014-11-12 03:28:57 +00:00
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function_ref(Callable &&callable,
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typename std::enable_if<
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!std::is_same<typename std::remove_reference<Callable>::type,
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function_ref>::value>::type * = nullptr)
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2014-05-06 01:44:26 +00:00
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: callback(callback_fn<typename std::remove_reference<Callable>::type>),
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2014-05-23 01:22:46 +00:00
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callable(reinterpret_cast<intptr_t>(&callable)) {}
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2014-05-06 01:44:26 +00:00
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Ret operator()(Param1 param1, Param2 param2) {
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return callback(callable,
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std::forward<Param1>(param1),
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std::forward<Param2>(param2));
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}
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};
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template<typename Ret, typename Param1, typename Param2, typename Param3>
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class function_ref<Ret(Param1, Param2, Param3)> {
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2014-05-23 01:22:46 +00:00
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Ret (*callback)(intptr_t callable, Param1 param1, Param2 param2, Param3 param3);
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intptr_t callable;
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2014-05-06 01:44:26 +00:00
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template<typename Callable>
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2014-05-23 01:22:46 +00:00
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static Ret callback_fn(intptr_t callable, Param1 param1, Param2 param2,
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2014-05-06 01:44:26 +00:00
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Param3 param3) {
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return (*reinterpret_cast<Callable*>(callable))(
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std::forward<Param1>(param1),
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std::forward<Param2>(param2),
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std::forward<Param3>(param3));
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}
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public:
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template<typename Callable>
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2014-11-12 03:28:57 +00:00
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function_ref(Callable &&callable,
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typename std::enable_if<
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!std::is_same<typename std::remove_reference<Callable>::type,
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function_ref>::value>::type * = nullptr)
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2014-05-06 01:44:26 +00:00
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: callback(callback_fn<typename std::remove_reference<Callable>::type>),
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2014-05-23 01:22:46 +00:00
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callable(reinterpret_cast<intptr_t>(&callable)) {}
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2014-05-06 01:44:26 +00:00
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Ret operator()(Param1 param1, Param2 param2, Param3 param3) {
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return callback(callable,
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std::forward<Param1>(param1),
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std::forward<Param2>(param2),
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std::forward<Param3>(param3));
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}
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};
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#endif
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2001-07-02 01:09:41 +00:00
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// deleter - Very very very simple method that is used to invoke operator
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2005-04-21 20:19:05 +00:00
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// delete on something. It is used like this:
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2001-07-02 01:09:41 +00:00
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//
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2002-04-28 16:18:32 +00:00
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// for_each(V.begin(), B.end(), deleter<Interval>);
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2001-07-02 01:09:41 +00:00
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//
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2005-04-21 20:19:05 +00:00
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template <class T>
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2012-06-20 08:39:33 +00:00
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inline void deleter(T *Ptr) {
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2005-04-21 20:19:05 +00:00
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delete Ptr;
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2001-07-02 01:09:41 +00:00
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}
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2001-06-21 05:25:51 +00:00
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//===----------------------------------------------------------------------===//
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// Extra additions to <iterator>
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//===----------------------------------------------------------------------===//
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// mapped_iterator - This is a simple iterator adapter that causes a function to
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// be dereferenced whenever operator* is invoked on the iterator.
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//
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template <class RootIt, class UnaryFunc>
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class mapped_iterator {
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RootIt current;
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2001-09-07 16:30:28 +00:00
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UnaryFunc Fn;
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2001-06-21 05:25:51 +00:00
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public:
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2002-01-20 22:54:45 +00:00
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typedef typename std::iterator_traits<RootIt>::iterator_category
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2001-06-21 05:25:51 +00:00
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iterator_category;
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2002-01-20 22:54:45 +00:00
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typedef typename std::iterator_traits<RootIt>::difference_type
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2001-06-21 05:25:51 +00:00
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difference_type;
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typedef typename UnaryFunc::result_type value_type;
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2002-10-13 19:30:44 +00:00
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typedef void pointer;
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//typedef typename UnaryFunc::result_type *pointer;
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2001-06-21 05:25:51 +00:00
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typedef void reference; // Can't modify value returned by fn
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typedef RootIt iterator_type;
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typedef mapped_iterator<RootIt, UnaryFunc> _Self;
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2007-05-03 18:32:10 +00:00
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inline const RootIt &getCurrent() const { return current; }
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2008-10-16 00:12:39 +00:00
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inline const UnaryFunc &getFunc() const { return Fn; }
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2001-06-21 05:25:51 +00:00
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2001-09-07 16:30:28 +00:00
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inline explicit mapped_iterator(const RootIt &I, UnaryFunc F)
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: current(I), Fn(F) {}
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2001-06-21 05:25:51 +00:00
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2005-04-21 20:19:05 +00:00
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inline value_type operator*() const { // All this work to do this
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2001-09-07 16:30:28 +00:00
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return Fn(*current); // little change
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2001-06-21 05:25:51 +00:00
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}
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_Self& operator++() { ++current; return *this; }
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_Self& operator--() { --current; return *this; }
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_Self operator++(int) { _Self __tmp = *this; ++current; return __tmp; }
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_Self operator--(int) { _Self __tmp = *this; --current; return __tmp; }
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2008-10-16 00:12:39 +00:00
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_Self operator+ (difference_type n) const {
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return _Self(current + n, Fn);
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}
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2001-06-21 05:25:51 +00:00
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_Self& operator+= (difference_type n) { current += n; return *this; }
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2008-10-16 00:12:39 +00:00
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_Self operator- (difference_type n) const {
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return _Self(current - n, Fn);
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}
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2001-06-21 05:25:51 +00:00
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_Self& operator-= (difference_type n) { current -= n; return *this; }
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2005-04-21 20:19:05 +00:00
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reference operator[](difference_type n) const { return *(*this + n); }
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2001-06-21 05:25:51 +00:00
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2002-01-20 22:54:45 +00:00
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inline bool operator!=(const _Self &X) const { return !operator==(X); }
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2001-06-21 05:25:51 +00:00
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inline bool operator==(const _Self &X) const { return current == X.current; }
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inline bool operator< (const _Self &X) const { return current < X.current; }
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inline difference_type operator-(const _Self &X) const {
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return current - X.current;
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}
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};
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template <class _Iterator, class Func>
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2005-04-21 20:19:05 +00:00
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inline mapped_iterator<_Iterator, Func>
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2001-06-21 05:25:51 +00:00
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operator+(typename mapped_iterator<_Iterator, Func>::difference_type N,
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const mapped_iterator<_Iterator, Func>& X) {
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2008-10-16 00:12:39 +00:00
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return mapped_iterator<_Iterator, Func>(X.getCurrent() - N, X.getFunc());
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2001-06-21 05:25:51 +00:00
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}
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// map_iterator - Provide a convenient way to create mapped_iterators, just like
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// make_pair is useful for creating pairs...
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//
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template <class ItTy, class FuncTy>
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inline mapped_iterator<ItTy, FuncTy> map_iterator(const ItTy &I, FuncTy F) {
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2001-09-07 16:30:28 +00:00
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return mapped_iterator<ItTy, FuncTy>(I, F);
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2001-06-21 05:25:51 +00:00
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}
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2003-11-05 05:58:26 +00:00
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//===----------------------------------------------------------------------===//
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|
// Extra additions to <utility>
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|
//===----------------------------------------------------------------------===//
|
|
|
|
|
2013-08-24 12:54:27 +00:00
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|
|
/// \brief Function object to check whether the first component of a std::pair
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/// compares less than the first component of another std::pair.
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struct less_first {
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template <typename T> bool operator()(const T &lhs, const T &rhs) const {
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|
|
return lhs.first < rhs.first;
|
|
|
|
}
|
|
|
|
};
|
|
|
|
|
|
|
|
/// \brief Function object to check whether the second component of a std::pair
|
|
|
|
/// compares less than the second component of another std::pair.
|
|
|
|
struct less_second {
|
|
|
|
template <typename T> bool operator()(const T &lhs, const T &rhs) const {
|
|
|
|
return lhs.second < rhs.second;
|
|
|
|
}
|
|
|
|
};
|
|
|
|
|
2007-09-07 04:06:50 +00:00
|
|
|
//===----------------------------------------------------------------------===//
|
2008-12-01 06:49:59 +00:00
|
|
|
// Extra additions for arrays
|
2007-09-07 04:06:50 +00:00
|
|
|
//===----------------------------------------------------------------------===//
|
|
|
|
|
|
|
|
/// Find the length of an array.
|
2014-04-12 16:15:53 +00:00
|
|
|
template <class T, std::size_t N>
|
|
|
|
LLVM_CONSTEXPR inline size_t array_lengthof(T (&)[N]) {
|
2007-09-07 04:06:50 +00:00
|
|
|
return N;
|
|
|
|
}
|
|
|
|
|
2014-04-23 22:44:11 +00:00
|
|
|
/// Adapt std::less<T> for array_pod_sort.
|
2008-12-01 16:50:01 +00:00
|
|
|
template<typename T>
|
2012-06-20 08:39:33 +00:00
|
|
|
inline int array_pod_sort_comparator(const void *P1, const void *P2) {
|
2014-04-23 22:44:11 +00:00
|
|
|
if (std::less<T>()(*reinterpret_cast<const T*>(P1),
|
|
|
|
*reinterpret_cast<const T*>(P2)))
|
2008-12-01 16:50:01 +00:00
|
|
|
return -1;
|
2014-04-23 22:44:11 +00:00
|
|
|
if (std::less<T>()(*reinterpret_cast<const T*>(P2),
|
|
|
|
*reinterpret_cast<const T*>(P1)))
|
2008-12-01 16:50:01 +00:00
|
|
|
return 1;
|
|
|
|
return 0;
|
2008-12-01 06:49:59 +00:00
|
|
|
}
|
2009-01-09 19:25:42 +00:00
|
|
|
|
2012-11-16 21:33:35 +00:00
|
|
|
/// get_array_pod_sort_comparator - This is an internal helper function used to
|
2008-12-01 21:11:25 +00:00
|
|
|
/// get type deduction of T right.
|
|
|
|
template<typename T>
|
2012-11-16 21:33:35 +00:00
|
|
|
inline int (*get_array_pod_sort_comparator(const T &))
|
2008-12-01 21:11:25 +00:00
|
|
|
(const void*, const void*) {
|
|
|
|
return array_pod_sort_comparator<T>;
|
|
|
|
}
|
|
|
|
|
2008-12-01 06:49:59 +00:00
|
|
|
|
|
|
|
/// array_pod_sort - This sorts an array with the specified start and end
|
|
|
|
/// extent. This is just like std::sort, except that it calls qsort instead of
|
|
|
|
/// using an inlined template. qsort is slightly slower than std::sort, but
|
|
|
|
/// most sorts are not performance critical in LLVM and std::sort has to be
|
|
|
|
/// template instantiated for each type, leading to significant measured code
|
|
|
|
/// bloat. This function should generally be used instead of std::sort where
|
|
|
|
/// possible.
|
|
|
|
///
|
|
|
|
/// This function assumes that you have simple POD-like types that can be
|
2014-04-23 22:44:11 +00:00
|
|
|
/// compared with std::less and can be moved with memcpy. If this isn't true,
|
2008-12-01 16:50:01 +00:00
|
|
|
/// you should use std::sort.
|
2008-12-01 06:49:59 +00:00
|
|
|
///
|
|
|
|
/// NOTE: If qsort_r were portable, we could allow a custom comparator and
|
|
|
|
/// default to std::less.
|
|
|
|
template<class IteratorTy>
|
2012-06-20 08:39:33 +00:00
|
|
|
inline void array_pod_sort(IteratorTy Start, IteratorTy End) {
|
2008-12-01 06:49:59 +00:00
|
|
|
// Don't dereference start iterator of empty sequence.
|
2008-12-01 21:11:25 +00:00
|
|
|
if (Start == End) return;
|
|
|
|
qsort(&*Start, End-Start, sizeof(*Start),
|
2012-11-16 21:33:35 +00:00
|
|
|
get_array_pod_sort_comparator(*Start));
|
2008-12-01 06:49:59 +00:00
|
|
|
}
|
2009-01-09 19:25:42 +00:00
|
|
|
|
2013-09-22 14:09:50 +00:00
|
|
|
template <class IteratorTy>
|
|
|
|
inline void array_pod_sort(
|
|
|
|
IteratorTy Start, IteratorTy End,
|
|
|
|
int (*Compare)(
|
|
|
|
const typename std::iterator_traits<IteratorTy>::value_type *,
|
|
|
|
const typename std::iterator_traits<IteratorTy>::value_type *)) {
|
2009-11-15 19:52:43 +00:00
|
|
|
// Don't dereference start iterator of empty sequence.
|
|
|
|
if (Start == End) return;
|
2013-09-22 14:09:50 +00:00
|
|
|
qsort(&*Start, End - Start, sizeof(*Start),
|
|
|
|
reinterpret_cast<int (*)(const void *, const void *)>(Compare));
|
2009-11-15 19:52:43 +00:00
|
|
|
}
|
2012-04-20 20:05:28 +00:00
|
|
|
|
2010-03-12 17:45:06 +00:00
|
|
|
//===----------------------------------------------------------------------===//
|
|
|
|
// Extra additions to <algorithm>
|
|
|
|
//===----------------------------------------------------------------------===//
|
|
|
|
|
|
|
|
/// For a container of pointers, deletes the pointers and then clears the
|
|
|
|
/// container.
|
|
|
|
template<typename Container>
|
|
|
|
void DeleteContainerPointers(Container &C) {
|
|
|
|
for (typename Container::iterator I = C.begin(), E = C.end(); I != E; ++I)
|
|
|
|
delete *I;
|
|
|
|
C.clear();
|
|
|
|
}
|
|
|
|
|
|
|
|
/// In a container of pairs (usually a map) whose second element is a pointer,
|
|
|
|
/// deletes the second elements and then clears the container.
|
|
|
|
template<typename Container>
|
|
|
|
void DeleteContainerSeconds(Container &C) {
|
|
|
|
for (typename Container::iterator I = C.begin(), E = C.end(); I != E; ++I)
|
|
|
|
delete I->second;
|
|
|
|
C.clear();
|
|
|
|
}
|
|
|
|
|
2014-03-09 11:20:17 +00:00
|
|
|
//===----------------------------------------------------------------------===//
|
|
|
|
// Extra additions to <memory>
|
|
|
|
//===----------------------------------------------------------------------===//
|
|
|
|
|
|
|
|
#if LLVM_HAS_VARIADIC_TEMPLATES
|
|
|
|
|
2014-03-09 12:12:23 +00:00
|
|
|
// Implement make_unique according to N3656.
|
|
|
|
|
|
|
|
/// \brief Constructs a `new T()` with the given args and returns a
|
|
|
|
/// `unique_ptr<T>` which owns the object.
|
2014-03-09 11:20:17 +00:00
|
|
|
///
|
2014-03-09 12:12:23 +00:00
|
|
|
/// Example:
|
2014-03-09 11:20:17 +00:00
|
|
|
///
|
2014-03-09 12:12:23 +00:00
|
|
|
/// auto p = make_unique<int>();
|
|
|
|
/// auto p = make_unique<std::tuple<int, int>>(0, 1);
|
2014-03-09 11:20:17 +00:00
|
|
|
template <class T, class... Args>
|
|
|
|
typename std::enable_if<!std::is_array<T>::value, std::unique_ptr<T>>::type
|
|
|
|
make_unique(Args &&... args) {
|
|
|
|
return std::unique_ptr<T>(new T(std::forward<Args>(args)...));
|
|
|
|
}
|
|
|
|
|
2014-03-09 12:12:23 +00:00
|
|
|
/// \brief Constructs a `new T[n]` with the given args and returns a
|
|
|
|
/// `unique_ptr<T[]>` which owns the object.
|
|
|
|
///
|
|
|
|
/// \param n size of the new array.
|
|
|
|
///
|
|
|
|
/// Example:
|
|
|
|
///
|
|
|
|
/// auto p = make_unique<int[]>(2); // value-initializes the array with 0's.
|
2014-03-09 11:20:17 +00:00
|
|
|
template <class T>
|
|
|
|
typename std::enable_if<std::is_array<T>::value && std::extent<T>::value == 0,
|
|
|
|
std::unique_ptr<T>>::type
|
|
|
|
make_unique(size_t n) {
|
|
|
|
return std::unique_ptr<T>(new typename std::remove_extent<T>::type[n]());
|
|
|
|
}
|
|
|
|
|
2014-03-09 12:12:23 +00:00
|
|
|
/// This function isn't used and is only here to provide better compile errors.
|
2014-03-09 11:20:17 +00:00
|
|
|
template <class T, class... Args>
|
|
|
|
typename std::enable_if<std::extent<T>::value != 0>::type
|
|
|
|
make_unique(Args &&...) LLVM_DELETED_FUNCTION;
|
|
|
|
|
|
|
|
#else
|
|
|
|
|
|
|
|
template <class T>
|
|
|
|
typename std::enable_if<!std::is_array<T>::value, std::unique_ptr<T>>::type
|
|
|
|
make_unique() {
|
|
|
|
return std::unique_ptr<T>(new T());
|
|
|
|
}
|
|
|
|
|
|
|
|
template <class T, class Arg1>
|
|
|
|
typename std::enable_if<!std::is_array<T>::value, std::unique_ptr<T>>::type
|
|
|
|
make_unique(Arg1 &&arg1) {
|
|
|
|
return std::unique_ptr<T>(new T(std::forward<Arg1>(arg1)));
|
|
|
|
}
|
|
|
|
|
|
|
|
template <class T, class Arg1, class Arg2>
|
|
|
|
typename std::enable_if<!std::is_array<T>::value, std::unique_ptr<T>>::type
|
|
|
|
make_unique(Arg1 &&arg1, Arg2 &&arg2) {
|
|
|
|
return std::unique_ptr<T>(
|
|
|
|
new T(std::forward<Arg1>(arg1), std::forward<Arg2>(arg2)));
|
|
|
|
}
|
|
|
|
|
|
|
|
template <class T, class Arg1, class Arg2, class Arg3>
|
|
|
|
typename std::enable_if<!std::is_array<T>::value, std::unique_ptr<T>>::type
|
|
|
|
make_unique(Arg1 &&arg1, Arg2 &&arg2, Arg3 &&arg3) {
|
|
|
|
return std::unique_ptr<T>(new T(std::forward<Arg1>(arg1),
|
|
|
|
std::forward<Arg2>(arg2),
|
|
|
|
std::forward<Arg3>(arg3)));
|
|
|
|
}
|
|
|
|
|
|
|
|
template <class T, class Arg1, class Arg2, class Arg3, class Arg4>
|
|
|
|
typename std::enable_if<!std::is_array<T>::value, std::unique_ptr<T>>::type
|
|
|
|
make_unique(Arg1 &&arg1, Arg2 &&arg2, Arg3 &&arg3, Arg4 &&arg4) {
|
|
|
|
return std::unique_ptr<T>(
|
|
|
|
new T(std::forward<Arg1>(arg1), std::forward<Arg2>(arg2),
|
|
|
|
std::forward<Arg3>(arg3), std::forward<Arg4>(arg4)));
|
|
|
|
}
|
|
|
|
|
|
|
|
template <class T, class Arg1, class Arg2, class Arg3, class Arg4, class Arg5>
|
|
|
|
typename std::enable_if<!std::is_array<T>::value, std::unique_ptr<T>>::type
|
|
|
|
make_unique(Arg1 &&arg1, Arg2 &&arg2, Arg3 &&arg3, Arg4 &&arg4, Arg5 &&arg5) {
|
|
|
|
return std::unique_ptr<T>(
|
|
|
|
new T(std::forward<Arg1>(arg1), std::forward<Arg2>(arg2),
|
|
|
|
std::forward<Arg3>(arg3), std::forward<Arg4>(arg4),
|
|
|
|
std::forward<Arg5>(arg5)));
|
|
|
|
}
|
|
|
|
|
|
|
|
template <class T, class Arg1, class Arg2, class Arg3, class Arg4, class Arg5,
|
|
|
|
class Arg6>
|
|
|
|
typename std::enable_if<!std::is_array<T>::value, std::unique_ptr<T>>::type
|
|
|
|
make_unique(Arg1 &&arg1, Arg2 &&arg2, Arg3 &&arg3, Arg4 &&arg4, Arg5 &&arg5,
|
|
|
|
Arg6 &&arg6) {
|
|
|
|
return std::unique_ptr<T>(
|
|
|
|
new T(std::forward<Arg1>(arg1), std::forward<Arg2>(arg2),
|
|
|
|
std::forward<Arg3>(arg3), std::forward<Arg4>(arg4),
|
|
|
|
std::forward<Arg5>(arg5), std::forward<Arg6>(arg6)));
|
|
|
|
}
|
|
|
|
|
|
|
|
template <class T, class Arg1, class Arg2, class Arg3, class Arg4, class Arg5,
|
|
|
|
class Arg6, class Arg7>
|
|
|
|
typename std::enable_if<!std::is_array<T>::value, std::unique_ptr<T>>::type
|
|
|
|
make_unique(Arg1 &&arg1, Arg2 &&arg2, Arg3 &&arg3, Arg4 &&arg4, Arg5 &&arg5,
|
|
|
|
Arg6 &&arg6, Arg7 &&arg7) {
|
|
|
|
return std::unique_ptr<T>(
|
|
|
|
new T(std::forward<Arg1>(arg1), std::forward<Arg2>(arg2),
|
|
|
|
std::forward<Arg3>(arg3), std::forward<Arg4>(arg4),
|
|
|
|
std::forward<Arg5>(arg5), std::forward<Arg6>(arg6),
|
|
|
|
std::forward<Arg7>(arg7)));
|
|
|
|
}
|
|
|
|
|
|
|
|
template <class T, class Arg1, class Arg2, class Arg3, class Arg4, class Arg5,
|
|
|
|
class Arg6, class Arg7, class Arg8>
|
|
|
|
typename std::enable_if<!std::is_array<T>::value, std::unique_ptr<T>>::type
|
|
|
|
make_unique(Arg1 &&arg1, Arg2 &&arg2, Arg3 &&arg3, Arg4 &&arg4, Arg5 &&arg5,
|
|
|
|
Arg6 &&arg6, Arg7 &&arg7, Arg8 &&arg8) {
|
|
|
|
return std::unique_ptr<T>(
|
|
|
|
new T(std::forward<Arg1>(arg1), std::forward<Arg2>(arg2),
|
|
|
|
std::forward<Arg3>(arg3), std::forward<Arg4>(arg4),
|
|
|
|
std::forward<Arg5>(arg5), std::forward<Arg6>(arg6),
|
|
|
|
std::forward<Arg7>(arg7), std::forward<Arg8>(arg8)));
|
|
|
|
}
|
|
|
|
|
|
|
|
template <class T, class Arg1, class Arg2, class Arg3, class Arg4, class Arg5,
|
|
|
|
class Arg6, class Arg7, class Arg8, class Arg9>
|
|
|
|
typename std::enable_if<!std::is_array<T>::value, std::unique_ptr<T>>::type
|
|
|
|
make_unique(Arg1 &&arg1, Arg2 &&arg2, Arg3 &&arg3, Arg4 &&arg4, Arg5 &&arg5,
|
|
|
|
Arg6 &&arg6, Arg7 &&arg7, Arg8 &&arg8, Arg9 &&arg9) {
|
|
|
|
return std::unique_ptr<T>(
|
|
|
|
new T(std::forward<Arg1>(arg1), std::forward<Arg2>(arg2),
|
|
|
|
std::forward<Arg3>(arg3), std::forward<Arg4>(arg4),
|
|
|
|
std::forward<Arg5>(arg5), std::forward<Arg6>(arg6),
|
|
|
|
std::forward<Arg7>(arg7), std::forward<Arg8>(arg8),
|
|
|
|
std::forward<Arg9>(arg9)));
|
|
|
|
}
|
|
|
|
|
|
|
|
template <class T, class Arg1, class Arg2, class Arg3, class Arg4, class Arg5,
|
|
|
|
class Arg6, class Arg7, class Arg8, class Arg9, class Arg10>
|
|
|
|
typename std::enable_if<!std::is_array<T>::value, std::unique_ptr<T>>::type
|
|
|
|
make_unique(Arg1 &&arg1, Arg2 &&arg2, Arg3 &&arg3, Arg4 &&arg4, Arg5 &&arg5,
|
|
|
|
Arg6 &&arg6, Arg7 &&arg7, Arg8 &&arg8, Arg9 &&arg9, Arg10 &&arg10) {
|
|
|
|
return std::unique_ptr<T>(
|
|
|
|
new T(std::forward<Arg1>(arg1), std::forward<Arg2>(arg2),
|
|
|
|
std::forward<Arg3>(arg3), std::forward<Arg4>(arg4),
|
|
|
|
std::forward<Arg5>(arg5), std::forward<Arg6>(arg6),
|
|
|
|
std::forward<Arg7>(arg7), std::forward<Arg8>(arg8),
|
|
|
|
std::forward<Arg9>(arg9), std::forward<Arg10>(arg10)));
|
|
|
|
}
|
|
|
|
|
|
|
|
template <class T>
|
|
|
|
typename std::enable_if<std::is_array<T>::value &&std::extent<T>::value == 0,
|
|
|
|
std::unique_ptr<T>>::type
|
|
|
|
make_unique(size_t n) {
|
|
|
|
return std::unique_ptr<T>(new typename std::remove_extent<T>::type[n]());
|
|
|
|
}
|
|
|
|
|
|
|
|
#endif
|
|
|
|
|
2014-08-29 22:05:31 +00:00
|
|
|
struct FreeDeleter {
|
|
|
|
void operator()(void* v) {
|
|
|
|
::free(v);
|
|
|
|
}
|
|
|
|
};
|
|
|
|
|
2014-05-14 01:08:28 +00:00
|
|
|
template<typename First, typename Second>
|
|
|
|
struct pair_hash {
|
|
|
|
size_t operator()(const std::pair<First, Second> &P) const {
|
|
|
|
return std::hash<First>()(P.first) * 31 + std::hash<Second>()(P.second);
|
|
|
|
}
|
|
|
|
};
|
|
|
|
|
2003-11-11 22:41:34 +00:00
|
|
|
} // End llvm namespace
|
|
|
|
|
2001-06-21 05:25:51 +00:00
|
|
|
#endif
|