mirror of
https://git.lyx.org/repos/lyx.git
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4203d759ad
git-svn-id: svn://svn.lyx.org/lyx/lyx-devel/trunk@1642 a592a061-630c-0410-9148-cb99ea01b6c8
277 lines
5.3 KiB
C
277 lines
5.3 KiB
C
#include <config.h>
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#ifdef __GNUG__
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#pragma implementation
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#endif
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#include "math_matrixinset.h"
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#include "math_rowst.h"
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#include "math_xiter.h"
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#include "support/LOstream.h"
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using std::ostream;
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extern int number_of_newlines;
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MathMatrixInset::MathMatrixInset(int m, int n, short st)
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: MathParInset(st, "array", LM_OT_MATRIX), nc_(m), nr_(0), ws_(m),
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v_align_(0), h_align_(nc_, 'c'), row_(0)
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{
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flag = 15;
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if (n > 0) {
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row_ = new MathedRowSt(nc_ + 1);
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MathedXIter it(this);
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for (int j = 1; j < n; ++j) it.addRow();
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nr_ = n;
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if (nr_ == 1 && nc_ > 1) {
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for (int j = 0; j < nc_ - 1; ++j)
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it.insert('T', LM_TC_TAB);
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}
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} else if (n < 0) {
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row_ = new MathedRowSt(nc_ + 1);
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nr_ = 1;
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}
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}
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MathMatrixInset::MathMatrixInset(MathMatrixInset const & mt)
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: MathParInset(mt.GetStyle(), mt.GetName(), mt.GetType()),
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nc_(mt.nc_), nr_(0), ws_(mt.nc_),
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v_align_(mt.v_align_), h_align_(mt.h_align_)
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{
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array = mt.GetData();
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if (mt.row_ != 0) {
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MathedRowSt * ro = 0;
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MathedRowSt * mrow = mt.row_;
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while (mrow) {
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MathedRowSt * r = new MathedRowSt(nc_ + 1);
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r->setNumbered(mrow->isNumbered());
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//if (mrow->label)
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r->setLabel(mrow->getLabel());
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if (!ro)
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row_ = r;
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else
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ro->setNext(r);
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mrow = mrow->getNext();
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ro = r;
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++nr_;
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}
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} else
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row_ = 0;
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flag = mt.flag;
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}
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MathMatrixInset::~MathMatrixInset()
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{
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MathedRowSt * r = row_;
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while (r) {
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MathedRowSt * q = r->getNext();
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delete r;
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r = q;
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}
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}
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MathedInset * MathMatrixInset::Clone()
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{
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return new MathMatrixInset(*this);
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}
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void MathMatrixInset::SetAlign(char vv, string const & hh)
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{
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v_align_ = vv;
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h_align_ = hh.substr(0, nc_); // usr just h_align = hh; perhaps
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}
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// Check the number of tabs and crs
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void MathMatrixInset::setData(MathedArray const & a)
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{
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array = a;
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MathedIter it(&array);
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int nn = nc_ - 1;
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nr_ = 1;
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// count tabs per row
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while (it.OK()) {
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if (it.IsTab()) {
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if (nn < 0) {
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it.Delete();
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continue;
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} else {
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// it.Next();
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--nn;
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}
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}
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if (it.IsCR()) {
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while (nn > 0) {
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it.insert(' ', LM_TC_TAB);
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--nn;
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}
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nn = nc_ - 1;
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++nr_;
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}
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it.Next();
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}
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it.Reset();
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// Automatically inserts tabs around bops
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// DISABLED because it's very easy to insert tabs
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}
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void MathMatrixInset::draw(Painter & pain, int x, int baseline)
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{
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MathParInset::draw(pain, x, baseline);
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}
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void MathMatrixInset::Metrics()
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{
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if (!row_) {
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// lyxerr << " MIDA ";
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MathedXIter it(this);
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row_ = it.adjustVerticalSt();
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}
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// Clean the arrays
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MathedRowSt * cxrow = row_;
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while (cxrow) {
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for (int i = 0; i <= nc_; ++i)
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cxrow->setTab(i, 0);
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cxrow = cxrow->getNext();
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}
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// Basic metrics
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MathParInset::Metrics();
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if (nc_ <= 1 && !row_->getNext()) {
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row_->ascent(ascent);
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row_->descent(descent);
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}
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// Vertical positions of each row
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cxrow = row_;
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MathedRowSt * cprow = 0;
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int h = 0;
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while (cxrow) {
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for (int i = 0; i < nc_; ++i) {
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if (cxrow == row_ || ws_[i] < cxrow->getTab(i))
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ws_[i] = cxrow->getTab(i);
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if (cxrow->getNext() == 0 && ws_[i] == 0)
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ws_[i] = df_width;
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}
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cxrow->setBaseline((cxrow == row_) ?
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cxrow->ascent() :
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cxrow->ascent() + cprow->descent()
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+ MATH_ROWSEP + cprow->getBaseline());
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h += cxrow->ascent() + cxrow->descent() + MATH_ROWSEP;
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cprow = cxrow;
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cxrow = cxrow->getNext();
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}
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int const hl = Descent();
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h -= MATH_ROWSEP;
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// Compute vertical align
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switch (v_align_) {
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case 't':
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ascent = row_->getBaseline();
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break;
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case 'b':
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ascent = h - hl;
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break;
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default:
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ascent = (row_->getNext()) ? h / 2 : h - hl;
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break;
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}
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descent = h - ascent + 2;
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// Increase ws_[i] for 'R' columns (except the first one)
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for (int i = 1; i < nc_; ++i)
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if (h_align_[i] == 'R')
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ws_[i] += 10 * df_width;
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// Increase ws_[i] for 'C' column
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if (h_align_[0] == 'C')
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if (ws_[0] < 7 * workWidth / 8)
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ws_[0] = 7 * workWidth / 8;
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// Adjust local tabs
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cxrow = row_;
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width = MATH_COLSEP;
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while (cxrow) {
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int rg = MATH_COLSEP;
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int lf = 0;
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for (int i = 0; i < nc_; ++i) {
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bool isvoid = false;
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if (cxrow->getTab(i) <= 0) {
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cxrow->setTab(i, df_width);
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isvoid = true;
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}
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switch (h_align_[i]) {
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case 'l':
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lf = 0;
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break;
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case 'c':
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lf = (ws_[i] - cxrow->getTab(i))/2;
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break;
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case 'r':
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case 'R':
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lf = ws_[i] - cxrow->getTab(i);
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break;
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case 'C':
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if (cxrow == row_)
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lf = 0;
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else if (!cxrow->getNext())
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lf = ws_[i] - cxrow->getTab(i);
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else
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lf = (ws_[i] - cxrow->getTab(i))/2;
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break;
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}
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int const ww = (isvoid) ? lf : lf + cxrow->getTab(i);
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cxrow->setTab(i, lf + rg);
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rg = ws_[i] - ww + MATH_COLSEP;
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if (cxrow == row_)
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width += ws_[i] + MATH_COLSEP;
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}
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cxrow->setBaseline(cxrow->getBaseline() - ascent);
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cxrow = cxrow->getNext();
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}
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}
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void MathMatrixInset::Write(ostream & os, bool fragile)
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{
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if (GetType() == LM_OT_MATRIX) {
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if (fragile)
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os << "\\protect";
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os << "\\begin{"
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<< name
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<< '}';
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if (v_align_ == 't' || v_align_ == 'b') {
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os << '['
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<< char(v_align_)
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<< ']';
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}
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os << '{'
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<< h_align_
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<< "}\n";
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++number_of_newlines;
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}
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MathParInset::Write(os, fragile);
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if (GetType() == LM_OT_MATRIX){
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os << "\n";
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if (fragile)
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os << "\\protect";
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os << "\\end{"
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<< name
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<< '}';
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++number_of_newlines;
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}
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}
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