902624f557
"In fact, the f(void) style has been called an "abomination" by Bjarne Stroustrup, the creator of C++, Dennis Ritchie, the co-creator of C, and Doug McIlroy, head of the research department where Unix was born."
344 lines
5.7 KiB
C++
344 lines
5.7 KiB
C++
#ifndef YAP_PACKAGES_CLPBN_HORUS_INDEXER_H_
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#define YAP_PACKAGES_CLPBN_HORUS_INDEXER_H_
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#include <vector>
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#include <algorithm>
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#include <numeric>
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#include "Util.h"
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namespace Horus {
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class Indexer {
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public:
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Indexer (const Ranges& ranges, bool calcOffsets = true);
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void increment();
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void incrementDimension (size_t dim);
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void incrementExceptDimension (size_t dim);
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Indexer& operator++();
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operator size_t() const;
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unsigned operator[] (size_t dim) const;
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bool valid() const;
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void reset();
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void resetDimension (size_t dim);
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size_t size() const;
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private:
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void calculateOffsets();
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friend std::ostream& operator<< (std::ostream&, const Indexer&);
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size_t index_;
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Ranges indices_;
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const Ranges& ranges_;
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size_t size_;
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std::vector<size_t> offsets_;
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DISALLOW_COPY_AND_ASSIGN (Indexer);
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};
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inline
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Indexer::Indexer (const Ranges& ranges, bool calcOffsets)
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: index_(0), indices_(ranges.size(), 0), ranges_(ranges),
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size_(Util::sizeExpected (ranges))
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{
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if (calcOffsets) {
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calculateOffsets();
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}
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}
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inline void
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Indexer::increment()
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{
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for (size_t i = ranges_.size(); i-- > 0; ) {
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indices_[i] ++;
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if (indices_[i] != ranges_[i]) {
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break;
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} else {
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indices_[i] = 0;
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}
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}
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index_ ++;
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}
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inline void
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Indexer::incrementDimension (size_t dim)
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{
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assert (dim < ranges_.size());
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assert (ranges_.size() == offsets_.size());
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assert (indices_[dim] < ranges_[dim]);
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indices_[dim] ++;
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index_ += offsets_[dim];
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}
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inline void
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Indexer::incrementExceptDimension (size_t dim)
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{
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assert (ranges_.size() == offsets_.size());
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for (size_t i = ranges_.size(); i-- > 0; ) {
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if (i != dim) {
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indices_[i] ++;
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index_ += offsets_[i];
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if (indices_[i] != ranges_[i]) {
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return;
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} else {
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indices_[i] = 0;
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index_ -= offsets_[i] * ranges_[i];
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}
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}
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}
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index_ = size_;
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}
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inline Indexer&
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Indexer::operator++()
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{
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increment();
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return *this;
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}
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inline
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Indexer::operator size_t() const
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{
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return index_;
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}
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inline unsigned
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Indexer::operator[] (size_t dim) const
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{
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assert (valid());
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assert (dim < ranges_.size());
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return indices_[dim];
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}
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inline bool
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Indexer::valid() const
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{
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return index_ < size_;
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}
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inline void
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Indexer::reset()
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{
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index_ = 0;
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std::fill (indices_.begin(), indices_.end(), 0);
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}
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inline void
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Indexer::resetDimension (size_t dim)
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{
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indices_[dim] = 0;
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index_ -= offsets_[dim] * ranges_[dim];
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}
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inline size_t
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Indexer::size() const
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{
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return size_ ;
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}
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inline void
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Indexer::calculateOffsets()
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{
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size_t prod = 1;
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offsets_.resize (ranges_.size());
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for (size_t i = ranges_.size(); i-- > 0; ) {
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offsets_[i] = prod;
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prod *= ranges_[i];
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}
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}
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class MapIndexer {
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public:
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MapIndexer (const Ranges& ranges, const std::vector<bool>& mask);
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MapIndexer (const Ranges& ranges, size_t dim);
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template <typename T>
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MapIndexer (
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const std::vector<T>& allArgs,
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const Ranges& allRanges,
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const std::vector<T>& wantedArgs,
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const Ranges& wantedRanges);
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MapIndexer& operator++();
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operator size_t() const;
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unsigned operator[] (size_t dim) const;
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bool valid() const;
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void reset();
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private:
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friend std::ostream& operator<< (std::ostream&, const MapIndexer&);
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size_t index_;
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Ranges indices_;
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const Ranges& ranges_;
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bool valid_;
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std::vector<size_t> offsets_;
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DISALLOW_COPY_AND_ASSIGN (MapIndexer);
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};
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inline
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MapIndexer::MapIndexer (
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const Ranges& ranges,
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const std::vector<bool>& mask)
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: index_(0), indices_(ranges.size(), 0), ranges_(ranges),
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valid_(true)
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{
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size_t prod = 1;
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offsets_.resize (ranges.size(), 0);
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for (size_t i = ranges.size(); i-- > 0; ) {
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if (mask[i]) {
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offsets_[i] = prod;
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prod *= ranges[i];
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}
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}
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assert (ranges.size() == mask.size());
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}
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inline
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MapIndexer::MapIndexer (const Ranges& ranges, size_t dim)
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: index_(0), indices_(ranges.size(), 0), ranges_(ranges),
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valid_(true)
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{
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size_t prod = 1;
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offsets_.resize (ranges.size(), 0);
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for (size_t i = ranges.size(); i-- > 0; ) {
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if (i != dim) {
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offsets_[i] = prod;
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prod *= ranges[i];
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}
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}
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}
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template <typename T> inline
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MapIndexer::MapIndexer (
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const std::vector<T>& allArgs,
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const Ranges& allRanges,
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const std::vector<T>& wantedArgs,
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const Ranges& wantedRanges)
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: index_(0), indices_(allArgs.size(), 0), ranges_(allRanges),
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valid_(true)
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{
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size_t prod = 1;
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std::vector<size_t> offsets (wantedRanges.size());
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for (size_t i = wantedRanges.size(); i-- > 0; ) {
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offsets[i] = prod;
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prod *= wantedRanges[i];
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}
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offsets_.reserve (allArgs.size());
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for (size_t i = 0; i < allArgs.size(); i++) {
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size_t idx = Util::indexOf (wantedArgs, allArgs[i]);
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offsets_.push_back (idx != wantedArgs.size() ? offsets[idx] : 0);
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}
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}
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inline MapIndexer&
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MapIndexer::operator++()
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{
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assert (valid_);
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for (size_t i = ranges_.size(); i-- > 0; ) {
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indices_[i] ++;
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index_ += offsets_[i];
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if (indices_[i] != ranges_[i]) {
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return *this;
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} else {
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indices_[i] = 0;
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index_ -= offsets_[i] * ranges_[i];
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}
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}
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valid_ = false;
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return *this;
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}
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inline
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MapIndexer::operator size_t() const
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{
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assert (valid());
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return index_;
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}
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inline unsigned
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MapIndexer::operator[] (size_t dim) const
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{
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assert (valid());
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assert (dim < ranges_.size());
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return indices_[dim];
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}
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inline bool
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MapIndexer::valid() const
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{
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return valid_;
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}
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inline void
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MapIndexer::reset()
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{
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index_ = 0;
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std::fill (indices_.begin(), indices_.end(), 0);
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}
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} // namespace Horus
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#endif // YAP_PACKAGES_CLPBN_HORUS_INDEXER_H_
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