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f3b66682f2
* src/graph.C (Graph::getReachable): Only add a child format to only viewable formats if the child or parent has a viewer. Previously a child format was also added when there was no viewer at all. * lib/configure.py (checkFormatEntries): add text2, text3 and text4 formats (checkConverterEntries): add ps2ascii , pstotext and catdvi converters git-svn-id: svn://svn.lyx.org/lyx/lyx-devel/trunk@14528 a592a061-630c-0410-9148-cb99ea01b6c8
199 lines
3.7 KiB
C
199 lines
3.7 KiB
C
/**
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* \file graph.C
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* This file is part of LyX, the document processor.
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* Licence details can be found in the file COPYING.
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*
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* \author Dekel Tsur
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*
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* Full author contact details are available in file CREDITS.
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*/
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#include <config.h>
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#include "graph.h"
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#include "format.h"
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#include <algorithm>
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using std::vector;
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using std::reverse;
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int Graph::bfs_init(int s, bool clear_visited)
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{
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if (s < 0)
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return s;
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Q_ = std::queue<int>();
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if (clear_visited)
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fill(visited_.begin(), visited_.end(), false);
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if (visited_[s] == false) {
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Q_.push(s);
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visited_[s] = true;
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}
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return s;
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}
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vector<int> const
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Graph::getReachableTo(int target, bool clear_visited)
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{
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vector<int> result;
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int const s = bfs_init(target, clear_visited);
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if (s < 0)
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return result;
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while (!Q_.empty()) {
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int const i = Q_.front();
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Q_.pop();
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if (i != s || formats.get(target).name() != "lyx") {
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result.push_back(i);
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}
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vector<int>::iterator it = vertices_[i].in_vertices.begin();
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vector<int>::iterator end = vertices_[i].in_vertices.end();
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for (; it != end; ++it) {
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if (!visited_[*it]) {
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visited_[*it] = true;
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Q_.push(*it);
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}
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}
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}
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return result;
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}
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vector<int> const
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Graph::getReachable(int from, bool only_viewable,
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bool clear_visited)
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{
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vector<int> result;
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if (bfs_init(from, clear_visited) < 0)
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return result;
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while (!Q_.empty()) {
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int const i = Q_.front();
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Q_.pop();
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Format const & format = formats.get(i);
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if (!only_viewable || !format.viewer().empty())
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result.push_back(i);
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else if (format.isChildFormat()) {
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Format const * const parent =
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formats.getFormat(format.parentFormat());
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if (parent && !parent->viewer().empty())
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result.push_back(i);
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}
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vector<int>::const_iterator cit =
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vertices_[i].out_vertices.begin();
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vector<int>::const_iterator end =
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vertices_[i].out_vertices.end();
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for (; cit != end; ++cit)
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if (!visited_[*cit]) {
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visited_[*cit] = true;
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Q_.push(*cit);
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}
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}
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return result;
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}
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bool Graph::isReachable(int from, int to)
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{
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if (from == to)
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return true;
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int const s = bfs_init(from);
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if (s < 0 || to < 0)
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return false;
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while (!Q_.empty()) {
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int const i = Q_.front();
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Q_.pop();
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if (i == to)
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return true;
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vector<int>::const_iterator cit =
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vertices_[i].out_vertices.begin();
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vector<int>::const_iterator end =
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vertices_[i].out_vertices.end();
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for (; cit != end; ++cit) {
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if (!visited_[*cit]) {
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visited_[*cit] = true;
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Q_.push(*cit);
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}
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}
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}
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return false;
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}
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Graph::EdgePath const
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Graph::getPath(int from, int t)
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{
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EdgePath path;
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if (from == t)
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return path;
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int const s = bfs_init(from);
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if (s < 0 || t < 0)
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return path;
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vector<int> prev_edge(formats.size());
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vector<int> prev_vertex(formats.size());
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bool found = false;
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while (!Q_.empty()) {
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int const i = Q_.front();
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Q_.pop();
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if (i == t) {
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found = true;
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break;
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}
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vector<int>::const_iterator beg =
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vertices_[i].out_vertices.begin();
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vector<int>::const_iterator cit = beg;
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vector<int>::const_iterator end =
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vertices_[i].out_vertices.end();
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for (; cit != end; ++cit)
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if (!visited_[*cit]) {
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int const j = *cit;
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visited_[j] = true;
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Q_.push(j);
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int const k = cit - beg;
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prev_edge[j] = vertices_[i].out_edges[k];
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prev_vertex[j] = i;
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}
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}
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if (!found)
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return path;
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while (t != s) {
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path.push_back(prev_edge[t]);
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t = prev_vertex[t];
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}
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reverse(path.begin(), path.end());
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return path;
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}
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void Graph::init(int size)
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{
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vertices_ = vector<Vertex>(size);
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visited_.resize(size);
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numedges_ = 0;
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}
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void Graph::addEdge(int s, int t)
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{
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vertices_[t].in_vertices.push_back(s);
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vertices_[s].out_vertices.push_back(t);
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vertices_[s].out_edges.push_back(numedges_++);
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}
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vector<Graph::Vertex> Graph::vertices_;
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