340 lines
10 KiB
C++
340 lines
10 KiB
C++
/***************************************************************************
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*
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* 26.accumulate.cpp - test exercising 26.4.1 [lib.accumulate]
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*
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* $Id: 26.accumulate.cpp 510970 2007-02-23 14:57:45Z faridz $
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*
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***************************************************************************
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*
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* Licensed to the Apache Software Foundation (ASF) under one or more
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* contributor license agreements. See the NOTICE file distributed
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* with this work for additional information regarding copyright
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* ownership. The ASF licenses this file to you under the Apache
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* License, Version 2.0 (the "License"); you may not use this file
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* except in compliance with the License. You may obtain a copy of
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* the License at
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*
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* http://www.apache.org/licenses/LICENSE-2.0
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*
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* Unless required by applicable law or agreed to in writing, software
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* distributed under the License is distributed on an "AS IS" BASIS,
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* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or
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* implied. See the License for the specific language governing
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* permissions and limitations under the License.
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*
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* Copyright 2006 Rogue Wave Software.
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*
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**************************************************************************/
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#include <numeric> // for accumulate
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#include <cstddef> // for size_t
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#include <alg_test.h>
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#include <rw_value.h> // for UserClass
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#include <driver.h> // for rw_test()
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/**************************************************************************/
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// plus-assign
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template <class T>
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struct plus_asgn: T
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{
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plus_asgn& operator+= (const plus_asgn& rhs) {
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unused = rhs.unused;
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return *this;
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}
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private:
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// unused member prevents bogus HP aCC warnings (see Onyx #23561)
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int unused;
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};
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_RWSTD_NAMESPACE (std) {
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// disable explicit instantiation for compilers (like MSVC)
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// that can't handle it
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#ifndef _RWSTD_NO_EXPLICIT_INSTANTIATION
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template
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plus_asgn<assign<base<cpy_ctor> > >
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accumulate (InputIter<plus_asgn<assign<base<cpy_ctor> > > >,
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InputIter<plus_asgn<assign<base<cpy_ctor> > > >,
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plus_asgn<assign<base<cpy_ctor> > >);
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template
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assign<base<cpy_ctor> >
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accumulate (InputIter<assign<base<cpy_ctor> > >,
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InputIter<assign<base<cpy_ctor> > >,
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assign<base<cpy_ctor> >,
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binary_func<assign<base<cpy_ctor> > >);
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#endif // _RWSTD_NO_EXPLICIT_INSTANTIATION
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} // namespace std
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/**************************************************************************/
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struct Y: public UserClass
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{
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// number of times the object's += operator has been invoked,
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// regardless of whether the operation threw an exception or not
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std::size_t n_op_plus_assign_;
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static std::size_t n_total_op_plus_assign_; // ... += operators ...
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// class thrown from the respective functions
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struct OpPlusAssign: Exception { };
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// throw object's `id' wrapped in the appropriate struct when the
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// corresponding n_total_xxx_ counter reaches the value pointed to
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// by the respective pointer below
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static std::size_t* op_plus_assign_throw_ptr_;
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// objects to which the pointers above initally point
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static std::size_t op_plus_assign_throw_count_;
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Y (): UserClass () { /* empty */ }
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Y (const Y &rhs): UserClass (rhs) { /* empty */ }
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Y& operator+= (const Y& rhs) {
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// verify id validity and uniqueness
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RW_ASSERT (id_ && id_ <= id_gen_);
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RW_ASSERT (rhs.id_ && rhs.id_ <= id_gen_);
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RW_ASSERT (this == &rhs || id_ != rhs.id_);
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// increment the number of times each distinct object
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// has been used as the argument to operator+=
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// (do so even if the function throws an exception below)
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++n_op_plus_assign_;
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if (this != &rhs)
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++_RWSTD_CONST_CAST (Y*, &rhs)->n_op_plus_assign_;
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// increment the total number of invocations of the operator
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// (do so even if the function throws an exception below)
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++n_total_op_plus_assign_;
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#ifndef _RWSTD_NO_EXCEPTIONS
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// throw an exception if the number of calls
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// to operator== reaches the given value
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if ( op_plus_assign_throw_ptr_
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&& n_total_op_plus_assign_ == *op_plus_assign_throw_ptr_) {
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OpPlusAssign ex;
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ex.id_ = id_;
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throw ex;
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}
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#endif // _RWSTD_NO_EXCEPTIONS
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data_.val_ += rhs.data_.val_;
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return *this;
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}
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};
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/* static */ std::size_t Y::n_total_op_plus_assign_;
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/* static */ std::size_t* Y::op_plus_assign_throw_ptr_ =
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&Y::op_plus_assign_throw_count_;
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/* static */ std::size_t Y::op_plus_assign_throw_count_ =
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std::size_t (-1);
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/**************************************************************************/
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template <class T>
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struct conv_to_T
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{
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static conv_to_T make (T val) {
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return conv_to_T (val);
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}
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// strictly convertible to a T value
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operator T () const {
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return val_;
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}
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private:
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// not (publicly) Default-Constructible
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conv_to_T (T val): val_ (val) { }
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void operator= (conv_to_T); // not Assignable
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void operator!() const; // not defined
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T val_;
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};
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/**************************************************************************/
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struct Accumulator
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{
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static std::size_t funcalls_;
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// dummy arguments provided to prevent the class from being
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// default constructible and implicit conversion from int
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Accumulator (int /* dummy */, int /* dummy */) {
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funcalls_ = 0;
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}
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// return a type convertible to Y
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conv_to_T<Y> operator() (const Y &x, const Y &y) /* non-const */ {
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++funcalls_;
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Y res (x);
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res.data_.val_ += y.data_.val_;
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return conv_to_T<Y>::make (res);
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}
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private:
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void operator= (Accumulator&); // not assignable
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};
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std::size_t Accumulator::funcalls_;
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/**************************************************************************/
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// exercises accumulate (26.4.1)
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template <class T, class InputIterator, class BinaryOp>
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void test_accumulate (const std::size_t N,
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const InputIterator &it,
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const T*,
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const BinaryOp *op)
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{
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const char* const itname = type_name (it, (T*)0);
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const char* const tname = "Y";
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const char* const opname = "BinaryOperation";
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rw_info (0, 0, 0, "std::accumulate (%s, %1$s, %s%{?}, %s%{;})",
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itname, tname, 0 != op, opname);
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// construct initial T
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const T init;
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int sum = init.data_.val_;
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T::gen_ = gen_seq;
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T* const buf = new T [N];
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for (std::size_t i = 0; i != N; ++i) {
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T* const buf_end = buf + i;
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const InputIterator first (buf, buf, buf_end);
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const InputIterator last (buf_end, buf, buf_end);
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BinaryOp bin_op (0, 0);
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const T res = op ?
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std::accumulate (first, last, init, bin_op)
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: std::accumulate (first, last, init);
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// verify the result 26.4.1, p1
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bool success = sum == res.data_.val_;
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rw_assert (success, 0, __LINE__,
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"step %zu: accumulate <%s, %s%{?}, %s%{;}> "
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"= %d, expected %d",
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i + 1, itname, tname, 0 != op, opname, res.data_.val_, sum);
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sum += buf [i].data_.val_;
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if (!success)
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break;
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}
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delete[] buf;
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}
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/**************************************************************************/
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/* extern */ int rw_opt_nloops = 256; // --nloops
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/* extern */ int rw_opt_no_binary_op; // --no-binary_op
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/* extern */ int rw_opt_no_input_iter; // --no-InputIterator
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/* extern */ int rw_opt_no_fwd_iter; // --no-ForwardIterator
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/* extern */ int rw_opt_no_bidir_iter; // --no-BidirectionalIterator
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/* extern */ int rw_opt_no_rnd_iter; // --no-RandomAccessIterator
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/**************************************************************************/
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template <class T, class BinaryOp>
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void test_accumulate (const std::size_t N,
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const T*,
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const BinaryOp *op)
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{
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static const InputIter<T> input_iter (0, 0, 0);
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static const ConstFwdIter<T> fwd_iter (0, 0, 0);
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static const ConstBidirIter<T> bidir_iter (0, 0, 0);
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static const ConstRandomAccessIter<T> rand_iter (0, 0, 0);
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rw_info (0, 0, 0,
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"template <class %s, class %s%{?}, class %s%{;}> "
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"%2$s std::accumulate (%1$s, %1$s, %2$s%{?}, %s%{;})",
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"InputIterator", "T", 0 != op, "BinaryOperation",
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0 != op, "BinaryOperation");
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if (rw_opt_no_input_iter) {
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rw_note (0, 0, __LINE__, "InputIterator test disabled");
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}
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else {
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test_accumulate (N, input_iter, (T*)0, op);
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}
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if (rw_opt_no_fwd_iter) {
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rw_note (0, 0, __LINE__, "ForwardIterator test disabled");
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}
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else {
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test_accumulate (N, fwd_iter, (T*)0, op);
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}
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if (rw_opt_no_bidir_iter) {
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rw_note (0, 0, __LINE__, "BidirectionalIterator test disabled");
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}
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else {
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test_accumulate (N, bidir_iter, (T*)0, op);
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}
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if (rw_opt_no_rnd_iter) {
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rw_note (0, 0, __LINE__, "RandomAccessIterator test disabled");
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}
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else {
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test_accumulate (N, rand_iter, (T*)0, op);
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}
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}
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/**************************************************************************/
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static int
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run_test (int, char*[])
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{
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const std::size_t N = std::size_t (rw_opt_nloops);
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test_accumulate (N, (Y*)0, (Accumulator*)0);
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if (rw_opt_no_binary_op)
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rw_note (0, 0, 0, "accumulate with binary operation test disabled");
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else
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test_accumulate (N, (Y*)0, (Accumulator*)1);
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return 0;
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}
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/**************************************************************************/
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int main (int argc, char *argv[])
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{
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return rw_test (argc, argv, __FILE__,
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"lib.accumulate",
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0 /* no comment */, run_test,
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"|-nloops#0 " // must be non-negative
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"|-no-binary_op#"
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"|-no-InputIterator# "
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"|-no-ForwardIterator# "
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"|-no-BidirectionalIterator# "
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"|-no-RandomAccessIterator#",
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&rw_opt_nloops,
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&rw_opt_no_binary_op,
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&rw_opt_no_input_iter,
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&rw_opt_no_fwd_iter,
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&rw_opt_no_bidir_iter,
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&rw_opt_no_rnd_iter);
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}
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