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Toshihiro Shimizu 890ddd
Toshihiro Shimizu 890ddd
// TnzCore includes
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#include "tconvert.h"
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// TnzBase includes
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#include "tdoubleparam.h"
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#include "tparamcontainer.h"
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#include "tparamset.h"
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#include "texpression.h"
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#include "tparser.h"
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#include "tfx.h"
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#include "tw/stringtable.h"
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#include "tunit.h"
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// TnzLib includes
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#include "toonz/txsheet.h"
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#include "toonz/txshcell.h"
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#include "toonz/tstageobjectid.h"
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#include "toonz/tstageobject.h"
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#include "toonz/fxdag.h"
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// Boost includes
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#include "boost/noncopyable.hpp"
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// Qt includes
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#include <qstring></qstring>
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#include "toonz/txsheetexpr.h"
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Campbell Barton 40cabe
#include <memory></memory>
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using namespace TSyntax;
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//******************************************************************************
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//    Local namespace  stuff
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//******************************************************************************
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namespace {
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//===================================================================
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class ParamDependencyFinder final : public TSyntax::CalculatorNodeVisitor {
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  TDoubleParam *m_possiblyDependentParam;
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  bool m_found;
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public:
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  ParamDependencyFinder(TDoubleParam *possiblyDependentParam)
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      : m_possiblyDependentParam(possiblyDependentParam), m_found(false) {}
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  void check(TDoubleParam *param) {
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    if (param == m_possiblyDependentParam) m_found = true;
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  }
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  bool found() const { return m_found; }
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};
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//===================================================================
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//
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// Calculator Nodes
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//
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//-------------------------------------------------------------------
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class ParamCalculatorNode final : public CalculatorNode,
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                                  public TParamObserver,
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                                  public boost::noncopyable {
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  TDoubleParamP m_param;
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  std::auto_ptr<calculatornode> m_frame;</calculatornode>
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public:
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  ParamCalculatorNode(Calculator *calculator, const TDoubleParamP ¶m,
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                      std::auto_ptr<calculatornode> frame)</calculatornode>
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      : CalculatorNode(calculator), m_param(param), m_frame(frame) {
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    param->addObserver(this);
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  }
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  ~ParamCalculatorNode() { m_param->removeObserver(this); }
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  double compute(double vars[3]) const override {
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    double value      = m_param->getValue(m_frame->compute(vars) - 1);
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    TMeasure *measure = m_param->getMeasure();
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    if (measure) {
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      const TUnit *unit = measure->getCurrentUnit();
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      if (unit) value   = unit->convertTo(value);
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    }
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    return value;
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  }
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  void accept(TSyntax::CalculatorNodeVisitor &visitor) override {
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    ParamDependencyFinder *pdf =
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        dynamic_cast<paramdependencyfinder *="">(&visitor);</paramdependencyfinder>
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    pdf->check(m_param.getPointer());
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    m_param->accept(visitor);
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  }
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  void onChange(const TParamChange ¶mChange) override {
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    // The referenced parameter changed. This means the parameter owning the
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    // expression this node is part of, changes too.
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    // A param change is thus propagated for this parameter, with the 'keyframe'
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    // parameter turned off - since no keyframe value is actually altered.
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    if (TDoubleParam *ownerParam = getCalculator()->getOwnerParameter()) {
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      const std::set<tparamobserver *=""> &observers = ownerParam->observers();</tparamobserver>
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      TParamChange propagatedChange(ownerParam, 0, 0, false,
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                                    paramChange.m_dragging,
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                                    paramChange.m_undoing);
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      std::set<tparamobserver *="">::const_iterator ot, oEnd = observers.end();</tparamobserver>
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      for (ot = observers.begin(); ot != oEnd; ++ot)
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        (*ot)->onChange(propagatedChange);
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    }
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  }
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};
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//-------------------------------------------------------------------
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class XsheetDrawingCalculatorNode final : public CalculatorNode,
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                                          public boost::noncopyable {
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  TXsheet *m_xsh;
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  int m_columnIndex;
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  std::auto_ptr<calculatornode> m_frame;</calculatornode>
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public:
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  XsheetDrawingCalculatorNode(Calculator *calc, TXsheet *xsh, int columnIndex,
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                              std::auto_ptr<calculatornode> frame)</calculatornode>
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      : CalculatorNode(calc)
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      , m_xsh(xsh)
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      , m_columnIndex(columnIndex)
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      , m_frame(frame) {}
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  double compute(double vars[3]) const override {
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    double f = m_frame->compute(vars);
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    int i    = tfloor(f);
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    f        = f - (double)i;
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    TXshCell cell;
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    cell     = m_xsh->getCell(i, m_columnIndex);
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    int d0   = cell.isEmpty() ? 0 : cell.m_frameId.getNumber();
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    cell     = m_xsh->getCell(i + 1, m_columnIndex);
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    int d1   = cell.isEmpty() ? 0 : cell.m_frameId.getNumber();
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    double d = (1 - f) * d0 + f * d1;
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    return d;
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  }
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  void accept(TSyntax::CalculatorNodeVisitor &) override {}
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};
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//===================================================================
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//
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// Patterns
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//
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//-------------------------------------------------------------------
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class XsheetReferencePattern final : public Pattern {
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  TXsheet *m_xsh;
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public:
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  XsheetReferencePattern(TXsheet *xsh) : m_xsh(xsh) {
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    setDescription(std::string("object.action\nTransformation reference\n") +
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                   "object can be: tab, table, cam<n>, camera<n>, col<n>, "</n></n></n>
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                   "peg<n>, pegbar<n>\n" +</n></n>
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                   "action can be: "
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                   "ns,ew,rot,ang,angle,z,zdepth,sx,sy,sc,scale,scalex,scaley,"
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                   "path,pos,shx,shy");
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  }
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  TStageObjectId matchObjectName(const Token &token) const {
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    std::string s = toLower(token.getText());
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    int len       = (int)s.length(), i, j;
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    for (i = 0; i < len && isascii(s[i]) && isalpha(s[i]); i++) {
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    }
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    if (i == 0) return TStageObjectId::NoneId;
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    std::string a = s.substr(0, i);
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    int index     = 0;
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    for (j = i; j < len && isascii(s[j]) && isdigit(s[j]); j++)
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      index = index * 10 + (s[j] - '0');
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    if (j < len) return TStageObjectId::NoneId;
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    if (i == j) index = -1;
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    if ((a == "table" || a == "tab") && index < 0)
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      return TStageObjectId::TableId;
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    else if (a == "col" && index >= 1)
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      return TStageObjectId::ColumnId(index - 1);
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    else if ((a == "cam" || a == "camera") && index >= 1)
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      return TStageObjectId::CameraId(index - 1);
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    else if ((a == "peg" || a == "pegbar") && index >= 1)
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      return TStageObjectId::PegbarId(index - 1);
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    else
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      return TStageObjectId::NoneId;
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  }
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  TStageObject::Channel matchChannelName(const Token &token) const {
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    std::string s = toLower(token.getText());
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    if (s == "ns")
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      return TStageObject::T_Y;
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    else if (s == "ew")
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      return TStageObject::T_X;
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    else if (s == "rot" || s == "ang" || s == "angle")
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      return TStageObject::T_Angle;
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    else if (s == "z" || s == "zdepth")
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      return TStageObject::T_Z;
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    else if (s == "sx" || s == "scalex" || s == "xscale" || s == "xs" ||
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             s == "sh" || s == "scaleh" || s == "hscale" || s == "hs")
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      return TStageObject::T_ScaleX;
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    else if (s == "sy" || s == "scaley" || s == "yscale" || s == "ys" ||
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             s == "sv" || s == "scalev" || s == "vscale" || s == "vs")
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      return TStageObject::T_ScaleY;
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    else if (s == "sc" || s == "scale")
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      return TStageObject::T_Scale;
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    else if (s == "path" || s == "pos")
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      return TStageObject::T_Path;
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    else if (s == "shearx" || s == "shx" || s == "shearh" || s == "shh")
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      return TStageObject::T_ShearX;
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    else if (s == "sheary" || s == "shy" || s == "shearv" || s == "shv")
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      return TStageObject::T_ShearY;
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    else
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      return TStageObject::T_ChannelCount;
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  }
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  bool expressionExpected(
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      const std::vector<token> &previousTokens) const override {</token>
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    return previousTokens.size() == 4;
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  }
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  bool matchToken(const std::vector<token> &previousTokens,</token>
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                  const Token &token) const override {
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    int i = (int)previousTokens.size();
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    if (i == 0)
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      return matchObjectName(token) != TStageObjectId::NoneId;
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    else if (i == 1 && token.getText() == "." ||
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             i == 3 && token.getText() == "(" ||
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             i == 5 && token.getText() == ")")
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      return true;
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    else if (i == 2) {
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      if (matchChannelName(token) < TStageObject::T_ChannelCount)
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        return true;
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      else
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        return token.getText() == "cell" &&
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               matchObjectName(previousTokens[0]).isColumn();
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    } else
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      return false;
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  }
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  bool isFinished(const std::vector<token> &previousTokens,</token>
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                  const Token &token) const override {
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    return previousTokens.size() >= 6;
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  }
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  bool isComplete(const std::vector<token> &previousTokens,</token>
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                  const Token &token) const override {
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    return previousTokens.size() >= 6 || previousTokens.size() == 3;
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  }
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  TSyntax::TokenType getTokenType(const std::vector<token> &previousTokens,</token>
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                                  const Token &token) const override {
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    return TSyntax::Operator;
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  }
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  void getAcceptableKeywords(
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      std::vector<std::string> &keywords) const override {</std::string>
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    const std::string ks[] = {"table",  "tab", "col",   "cam",
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                              "camera", "peg", "pegbar"};
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    for (int i = 0; i < tArrayCount(ks); i++) keywords.push_back(ks[i]);
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  }
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  void createNode(Calculator *calc, std::vector<calculatornode *=""> &stack,</calculatornode>
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                  const std::vector<token> &tokens) const override {</token>
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    assert(tokens.size() >= 3);
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    std::auto_ptr<calculatornode> frameNode(</calculatornode>
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        (tokens.size() == 6) ? popNode(stack)
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                             : new VariableNode(calc, CalculatorNode::FRAME));
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    TStageObjectId objectId = matchObjectName(tokens[0]);
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    std::string field = toLower(tokens[2].getText());
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    if (field == "cell" || field == "cel" || field == "cels") {
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      int columnIndex = objectId.getIndex();
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      stack.push_back(
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          new XsheetDrawingCalculatorNode(calc, m_xsh, columnIndex, frameNode));
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    } else {
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      TStageObject *object              = m_xsh->getStageObject(objectId);
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      TStageObject::Channel channelName = matchChannelName(tokens[2]);
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      TDoubleParam *channel             = object->getParam(channelName);
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      if (channel)
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        stack.push_back(new ParamCalculatorNode(calc, channel, frameNode));
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    }
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  }
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};
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//-------------------------------------------------------------------
Toshihiro Shimizu 890ddd
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class FxReferencePattern final : public Pattern {
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  TXsheet *m_xsh;
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public:
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  FxReferencePattern(TXsheet *xsh) : m_xsh(xsh) {}
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  TFx *getFx(const Token &token) const {
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    return m_xsh->getFxDag()->getFxById(::to_wstring(toLower(token.getText())));
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  }
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  TParam *getParam(const TFx *fx, const Token &token) const {
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    int i;
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    for (i = 0; i < fx->getParams()->getParamCount(); i++) {
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      TParam *param         = fx->getParams()->getParam(i);
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      std::string paramName = ::to_string(
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          TStringTable::translate(fx->getFxType() + "." + param->getName()));
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      int i = paramName.find(" ");
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      while (i != std::string::npos) {
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        paramName.erase(i, 1);
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        i = paramName.find(" ");
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      }
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      std::string paramNameToCheck = token.getText();
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      if (paramName == paramNameToCheck ||
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          toLower(paramName) == toLower(paramNameToCheck))
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        return param;
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    }
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    return 0;
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  }
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  TParam *getLeafParam(const TFx *fx, const TParamSet *paramSet,
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                       const Token &token) const {
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    int i;
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    for (i = 0; i < paramSet->getParamCount(); i++) {
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      TParam *param         = paramSet->getParam(i).getPointer();
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      std::string paramName = param->getName();
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      int i                 = paramName.find(" ");
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      while (i != std::string::npos) {
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        paramName.erase(i, 1);
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        i = paramName.find(" ");
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      }
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      std::string paramNameToCheck = token.getText();
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      if (paramName == paramNameToCheck ||
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          toLower(paramName) == toLower(paramNameToCheck))
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        return param;
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    }
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    return 0;
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  }
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  std::string getFirstKeyword() const override { return "fx"; }
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  bool expressionExpected(
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      const std::vector<token> &previousTokens) const override {</token>
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    return !previousTokens.empty() && previousTokens.back().getText() == "(";
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  }
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  bool matchToken(const std::vector<token> &previousTokens,</token>
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                  const Token &token) const override {
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    int i         = (int)previousTokens.size();
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    std::string s = toLower(token.getText());
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    if (i == 0 && s == "fx")
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      return true;
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    else if (i == 1)
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      return s == ".";
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    else if (i & 1) {
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      if (previousTokens[i - 2].getText() == "(")
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        return s == ")";
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      else
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        return s == "." || s == "(";
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    } else if (i == 2) {
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      // nome fx
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      return getFx(token) != 0;
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    } else if (i == 4) {
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      TFx *fx = getFx(previousTokens[2]);
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      if (!fx) return false;
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      TParam *param = getParam(fx, token);
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      return !!param;
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    } else if (i == 6) {
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      TFx *fx = getFx(previousTokens[2]);
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      if (!fx) return false;
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      TParam *param       = getParam(fx, previousTokens[4]);
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      TParamSet *paramSet = dynamic_cast<tparamset *="">(param);</tparamset>
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      if (!paramSet) return false;
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      TParam *leafParam = getLeafParam(fx, paramSet, token);
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      return !!param;
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    } else
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      return false;
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  }
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  bool isFinished(const std::vector<token> &previousTokens,</token>
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                  const Token &token) const override {
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    return !previousTokens.empty() && previousTokens.back().getText() == ")";
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  }
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  bool isComplete(const std::vector<token> &previousTokens,</token>
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                  const Token &token) const override {
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    int n = (int)previousTokens.size();
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    return n >= 2 && (n & 1) == 1 && previousTokens[n - 2].getText() != "(";
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  }
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  TSyntax::TokenType getTokenType(const std::vector<token> &previousTokens,</token>
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                                  const Token &token) const override {
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    return TSyntax::Operator;
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  }
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  void createNode(Calculator *calc, std::vector<calculatornode *=""> &stack,</calculatornode>
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                  const std::vector<token> &tokens) const override {</token>
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    int tokenSize = tokens.size();
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    std::auto_ptr<calculatornode> frameNode(</calculatornode>
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        (tokenSize > 0 && tokens.back().getText() == ")")
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            ? popNode(stack)
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            : new VariableNode(calc, CalculatorNode::FRAME));
Shinya Kitaoka 120a6e
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    TFx *fx = getFx(tokens[2]);
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    if (!fx || tokenSize < 4) return;
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    TParamP param = getParam(fx, tokens[4]);
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    if (!param.getPointer()) return;
Shinya Kitaoka 120a6e
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    TDoubleParamP channel;
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    TParamSet *paramSet = dynamic_cast<tparamset *="">(param.getPointer());</tparamset>
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    if (paramSet && tokenSize > 6)
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      channel =
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          dynamic_cast<tdoubleparam *="">(getLeafParam(fx, paramSet, tokens[6]));</tdoubleparam>
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    else
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      channel = param;
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    if (channel.getPointer())
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      stack.push_back(new ParamCalculatorNode(calc, channel, frameNode));
Shinya Kitaoka 120a6e
  }
Toshihiro Shimizu 890ddd
};
Toshihiro Shimizu 890ddd
Toshihiro Shimizu 890ddd
//-------------------------------------------------------------------
Toshihiro Shimizu 890ddd
Shinya Kitaoka d1f6c4
class PlasticVertexPattern final : public Pattern {
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  TXsheet *m_xsh;
Shinya Kitaoka 120a6e
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  /*
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Full pattern layout:
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Shinya Kitaoka 120a6e
vertex ( columnNumber , " vertexName " ) . component (  expr )
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   0   1      2       3 4      5     6 7 8     9     10  11  12
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*/
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  enum Positions {
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    OBJECT,
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    L1,
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    COLUMN_NUMBER,
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    COMMA,
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    QUOTE1,
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    VERTEX_NAME,
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    QUOTE2,
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    R1,
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    SELECTOR,
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    COMPONENT,
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    L2,
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    EXPR,
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    R2,
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    POSITIONS_COUNT
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  };
Toshihiro Shimizu 890ddd
Toshihiro Shimizu 890ddd
public:
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  PlasticVertexPattern(TXsheet *xsh) : m_xsh(xsh) {
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    setDescription(
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        "vertex(columnNumber, \"vertexName\").action\nVertex data\n"
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        "columnNumber must be the number of the column containing the desired "
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        "skeleton\n"
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        "vertexName must be the name of a Plastic Skeleton vertex\n"
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        "action must be one of the parameter names available for a Plastic "
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        "Skeleton vertex");
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  }
Shinya Kitaoka 120a6e
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  std::string getFirstKeyword() const override { return "vertex"; }
Shinya Kitaoka 120a6e
Shinya Kitaoka 38fd86
  bool expressionExpected(
Shinya Kitaoka 38fd86
      const std::vector<token> &previousTokens) const override {</token>
Shinya Kitaoka 120a6e
    return (previousTokens.size() == EXPR);
Shinya Kitaoka 120a6e
  }
Shinya Kitaoka 120a6e
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  bool matchToken(const std::vector<token> &previousTokens,</token>
Shinya Kitaoka 473e70
                  const Token &token) const override {
Shinya Kitaoka 120a6e
    struct {
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      const PlasticVertexPattern *m_this;
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      const SkD *skdp(const Token &columnToken) {
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        int colIdx = columnToken.getIntValue() -
Shinya Kitaoka 120a6e
                     1;  // The first column (1) actually starts at index 0
Shinya Kitaoka 120a6e
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        if (!m_this->m_xsh->isColumnEmpty(colIdx)) {
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          TStageObject *obj =
Shinya Kitaoka 120a6e
              m_this->m_xsh->getStageObject(TStageObjectId::ColumnId(colIdx));
Shinya Kitaoka 120a6e
          assert(obj);
Shinya Kitaoka 120a6e
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          if (const SkDP &skdp = obj->getPlasticSkeletonDeformation())
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            return skdp.getPointer();
Shinya Kitaoka 120a6e
        }
Shinya Kitaoka 120a6e
Shinya Kitaoka 120a6e
        return 0;
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      }
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    } locals = {this};
Shinya Kitaoka 120a6e
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    const std::string &text = token.getText();
Shinya Kitaoka 120a6e
    int pos                 = previousTokens.size();
Shinya Kitaoka 120a6e
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    if (!m_fixedTokens[pos].empty()) return (text == m_fixedTokens[pos]);
Shinya Kitaoka 120a6e
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    switch (pos) {
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    case COLUMN_NUMBER:
Shinya Kitaoka 120a6e
      return (token.getType() == Token::Number && locals.skdp(token));
Shinya Kitaoka 120a6e
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    case VERTEX_NAME:
Shinya Kitaoka 120a6e
      if (const SkD *skdp = locals.skdp(previousTokens[COLUMN_NUMBER])) {
Shinya Kitaoka 120a6e
        const QString &vertexName = QString::fromStdString(text);
Shinya Kitaoka 120a6e
        return (skdp->vertexDeformation(vertexName) != 0);
Shinya Kitaoka 120a6e
      }
Shinya Kitaoka 120a6e
      break;
Shinya Kitaoka 120a6e
Shinya Kitaoka 120a6e
    case COMPONENT:
Shinya Kitaoka 120a6e
      return std::count(m_components,
Shinya Kitaoka 120a6e
                        m_components + sizeof(m_components) / sizeof(Component),
Shinya Kitaoka 120a6e
                        text) > 0;
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    }
Shinya Kitaoka 120a6e
Shinya Kitaoka 120a6e
    return false;
Shinya Kitaoka 120a6e
  }
Shinya Kitaoka 120a6e
Shinya Kitaoka 120a6e
  bool isFinished(const std::vector<token> &previousTokens,</token>
Shinya Kitaoka 473e70
                  const Token &token) const override {
Shinya Kitaoka 120a6e
    return (previousTokens.size() >= POSITIONS_COUNT);
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  }
Shinya Kitaoka 120a6e
Shinya Kitaoka 120a6e
  bool isComplete(const std::vector<token> &previousTokens,</token>
Shinya Kitaoka 473e70
                  const Token &token) const override {
Shinya Kitaoka 120a6e
    return (previousTokens.size() >= POSITIONS_COUNT ||
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            previousTokens.size() == L2);
Shinya Kitaoka 120a6e
  }
Shinya Kitaoka 120a6e
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  TSyntax::TokenType getTokenType(const std::vector<token> &previousTokens,</token>
Shinya Kitaoka 473e70
                                  const Token &token) const override {
Shinya Kitaoka 120a6e
    return TSyntax::Operator;
Shinya Kitaoka 120a6e
  }
Shinya Kitaoka 120a6e
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  void createNode(Calculator *calc, std::vector<calculatornode *=""> &stack,</calculatornode>
Shinya Kitaoka 473e70
                  const std::vector<token> &tokens) const override {</token>
Shinya Kitaoka 120a6e
    assert(tokens.size() > COMPONENT);
Shinya Kitaoka 120a6e
Shinya Kitaoka 120a6e
    std::auto_ptr<calculatornode> frameNode(</calculatornode>
Shinya Kitaoka 120a6e
        (tokens.size() == POSITIONS_COUNT)
Shinya Kitaoka 120a6e
            ? popNode(stack)
Shinya Kitaoka 120a6e
            : new VariableNode(calc, CalculatorNode::FRAME));
Shinya Kitaoka 120a6e
Shinya Kitaoka 120a6e
    int colIdx = tokens[COLUMN_NUMBER].getIntValue() - 1;
Shinya Kitaoka 120a6e
    if (!m_xsh->isColumnEmpty(colIdx)) {
Shinya Kitaoka 120a6e
      TStageObject *obj =
Shinya Kitaoka 120a6e
          m_xsh->getStageObject(TStageObjectId::ColumnId(colIdx));
Shinya Kitaoka 120a6e
      assert(obj);
Shinya Kitaoka 120a6e
Shinya Kitaoka 120a6e
      if (const SkDP &skdp = obj->getPlasticSkeletonDeformation()) {
Shinya Kitaoka 120a6e
        const QString &vertexName =
Shinya Kitaoka 120a6e
            QString::fromStdString(tokens[VERTEX_NAME].getText());
Shinya Kitaoka 120a6e
        if (SkVD *skvd = skdp->vertexDeformation(vertexName)) {
Shinya Kitaoka 120a6e
          const Component *componentsEnd =
Shinya Kitaoka 120a6e
                              m_components +
Shinya Kitaoka 120a6e
                              sizeof(m_components) / sizeof(Component),
Shinya Kitaoka 120a6e
                          *component = std::find(m_components, componentsEnd,
Shinya Kitaoka 120a6e
                                                 tokens[COMPONENT].getText());
Shinya Kitaoka 120a6e
Shinya Kitaoka 120a6e
          if (component != componentsEnd) {
Shinya Kitaoka 120a6e
            const TDoubleParamP ¶m =
Shinya Kitaoka 120a6e
                skvd->m_params[component->m_paramId].getPointer();
Shinya Kitaoka 120a6e
            stack.push_back(new ParamCalculatorNode(calc, param, frameNode));
Shinya Kitaoka 120a6e
          }
Shinya Kitaoka 120a6e
        }
Shinya Kitaoka 120a6e
      }
Shinya Kitaoka 120a6e
    }
Shinya Kitaoka 120a6e
  }
Toshihiro Shimizu 890ddd
Toshihiro Shimizu 890ddd
private:
Shinya Kitaoka 120a6e
  struct Component {
Shinya Kitaoka 120a6e
    std::string m_name;
Shinya Kitaoka 120a6e
    SkVD::Params m_paramId;
Toshihiro Shimizu 890ddd
Shinya Kitaoka 120a6e
    bool operator==(const std::string &name) const { return (m_name == name); }
Shinya Kitaoka 120a6e
  };
Toshihiro Shimizu 890ddd
Toshihiro Shimizu 890ddd
private:
Shinya Kitaoka 120a6e
  static const std::string m_fixedTokens[POSITIONS_COUNT];
Shinya Kitaoka 120a6e
  static const Component m_components[5];
Toshihiro Shimizu 890ddd
};
Toshihiro Shimizu 890ddd
Toshihiro Shimizu 890ddd
const std::string PlasticVertexPattern::m_fixedTokens[POSITIONS_COUNT] = {
Shinya Kitaoka 120a6e
    "vertex", "(", "", ",", "\"", "", "\"", ")", ".", "", "(", "", ")"};
Toshihiro Shimizu 890ddd
Toshihiro Shimizu 890ddd
const PlasticVertexPattern::Component PlasticVertexPattern::m_components[] = {
Shinya Kitaoka 120a6e
    {"ang", SkVD::ANGLE},
Shinya Kitaoka 120a6e
    {"angle", SkVD::ANGLE},
Shinya Kitaoka 120a6e
    {"dist", SkVD::DISTANCE},
Shinya Kitaoka 120a6e
    {"distance", SkVD::DISTANCE},
Shinya Kitaoka 120a6e
    {"so", SkVD::SO}};
Toshihiro Shimizu 890ddd
Shinya Kitaoka 120a6e
}  // namespace
Toshihiro Shimizu 890ddd
Toshihiro Shimizu 890ddd
//******************************************************************************
Toshihiro Shimizu 890ddd
//    API functions
Toshihiro Shimizu 890ddd
//******************************************************************************
Toshihiro Shimizu 890ddd
Shinya Kitaoka 120a6e
TSyntax::Grammar *createXsheetGrammar(TXsheet *xsh) {
Shinya Kitaoka 120a6e
  Grammar *grammar = new Grammar();
Shinya Kitaoka 120a6e
  grammar->addPattern(new XsheetReferencePattern(xsh));
Shinya Kitaoka 120a6e
  grammar->addPattern(new FxReferencePattern(xsh));
Shinya Kitaoka 120a6e
  grammar->addPattern(new PlasticVertexPattern(xsh));
Shinya Kitaoka 120a6e
  return grammar;
Toshihiro Shimizu 890ddd
}
Toshihiro Shimizu 890ddd
Shinya Kitaoka 120a6e
bool dependsOn(TExpression &expr, TDoubleParam *possiblyDependentParam) {
Shinya Kitaoka 120a6e
  ParamDependencyFinder pdf(possiblyDependentParam);
Shinya Kitaoka 120a6e
  expr.accept(pdf);
Shinya Kitaoka 120a6e
  return pdf.found();
Toshihiro Shimizu 890ddd
}
Toshihiro Shimizu 890ddd
Shinya Kitaoka 120a6e
bool dependsOn(TDoubleParam *param, TDoubleParam *possiblyDependentParam) {
Shinya Kitaoka 120a6e
  ParamDependencyFinder pdf(possiblyDependentParam);
Shinya Kitaoka 120a6e
  param->accept(pdf);
Shinya Kitaoka 120a6e
  return pdf.found();
Toshihiro Shimizu 890ddd
}