77b3f3aeee
This enables checking all text to see if it either represents a valid reference or is a word in docs/spelling.txt . Expressions are checked for validity as well. There are a few shortcuts (marked with TODO): - typedefs aren't resolved, so cheats are added for SkVector and SkIVector. - operator overload detection is incomplete - constructor detection is incomplete - formula definitions aren't detected Found and fixed a bunch of spelling, usage, and incorrect or obsolete references. A few comment changes are needed in include/core to get this to work, mostly centered around recent SkPaint/SkFont edits. TBR=reed@google.com Docs-Preview: https://skia.org/?cl=167541 Bug: skia: Change-Id: I2e0d5990105c5a8482b0c0d3e50fd0b330996dd6 Reviewed-on: https://skia-review.googlesource.com/c/167541 Reviewed-by: Cary Clark <caryclark@skia.org> Auto-Submit: Cary Clark <caryclark@skia.org> Commit-Queue: Cary Clark <caryclark@skia.org>
318 lines
11 KiB
C++
318 lines
11 KiB
C++
/*
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* Copyright 2018 Google Inc.
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*
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* Use of this source code is governed by a BSD-style license that can be
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* found in the LICENSE file.
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*/
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#ifndef mdOut_DEFINED
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#define mdOut_DEFINED
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#include "parserCommon.h"
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class IncludeParser;
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class MdOut : public ParserCommon {
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public:
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struct SubtopicDescriptions {
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string fSingular;
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string fPlural;
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string fOneLiner;
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string fDetails;
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};
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MdOut(BmhParser& bmh, IncludeParser& inc) : ParserCommon()
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, fBmhParser(bmh)
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, fIncludeParser(inc) {
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this->reset();
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this->addPopulators();
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fBmhParser.setUpGlobalSubstitutes();
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}
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bool buildReferences(const char* docDir, const char* mdOutDirOrFile);
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bool buildStatus(const char* docDir, const char* mdOutDir);
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void checkAnchors();
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private:
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enum class TableState {
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kNone,
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kRow,
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kColumn,
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};
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struct AnchorDef {
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string fDef;
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MarkType fMarkType;
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};
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struct DefinedState {
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DefinedState(const MdOut& mdOut, const char* refStart, const char* refEnd,
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Resolvable resolvable)
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: fBmhParser(&mdOut.fBmhParser)
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, fNames(mdOut.fNames)
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, fGlobals(&mdOut.fBmhParser.fGlobalNames)
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, fLastDef(mdOut.fLastDef)
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, fMethod(mdOut.fMethod)
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, fSubtopic(mdOut.fSubtopic)
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, fRoot(mdOut.fRoot)
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, fRefStart(refStart)
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, fRefEnd(refEnd)
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, fResolvable(resolvable)
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, fInProgress(mdOut.fInProgress) {
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TextParser matrixParser(fLastDef->fFileName, refStart, refEnd, fLastDef->fLineCount);
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const char* bracket = matrixParser.anyOf("|=\n");
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fInMatrix = bracket && ('|' == bracket[0] || '=' == bracket[0]);
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}
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void backup() {
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fPriorWord = fBack2Word;
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fPriorLink = "";
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fPriorSeparator = "";
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fSeparator = fBack2Separator;
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}
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bool findEnd(const char* start) {
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do {
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while (fEnd < fRefEnd && (isalnum(fEnd[0]) || '-' == fEnd[0] || '_' == fEnd[0])) {
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++fEnd;
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}
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if (fEnd + 1 >= fRefEnd || '/' != fEnd[0] || start == fEnd || !isalpha(fEnd[-1])
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|| !isalpha(fEnd[1])) {
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break; // stop unless pattern is xxx/xxx as in I/O
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}
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++fEnd; // skip slash
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} while (true);
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while (start != fEnd && '-' == fEnd[-1]) {
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--fEnd;
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}
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return start == fEnd;
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}
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bool findLink(string ref, string* linkPtr, bool addParens);
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bool findLink(string ref, string* linkPtr, unordered_map<string, Definition*>& map);
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bool hasWordSpace(string wordSpace) const;
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void setLink();
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string nextSeparator(const char* start) {
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fBack2Separator = fPriorSeparator;
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fPriorSeparator = fSeparator;
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fEnd = start;
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return fBack2Separator;
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}
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const char* nextWord() {
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fBack2Word = fPriorWord;
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fPriorWord = fWord;
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fPriorLink = fLink;
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return fEnd;
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}
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bool phraseContinues(string phrase, string* priorWord, string* priorLink) const;
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void setLower() {
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fAddParens = false;
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bool allLower = std::all_of(fWord.begin(), fWord.end(), [](char c) {
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return islower(c);
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});
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bool hasParens = fEnd + 2 <= fRefEnd && "()" == string(fEnd, 2);
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if (hasParens) {
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if (allLower) {
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fWord += "()";
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fEnd += 2;
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}
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} else if (allLower) {
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fAddParens = true;
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}
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}
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bool setPriorSpaceWord(const char** startPtr) {
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if (!fPriorSpace) {
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return false;
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}
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string phrase = fPriorWord + fWord;
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if (this->phraseContinues(phrase, &fPriorWord, &fPriorLink)) {
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*startPtr = fEnd;
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return true;
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}
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fPriorWord = fPriorWord.substr(0, fPriorWord.length() - 1);
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return false;
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}
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void skipParens() {
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if ("()" == fSeparator.substr(0, 2)) {
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string funcRef = fPriorWord + "()";
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if (this->findLink(funcRef, &fPriorLink, false)) {
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fPriorWord = funcRef;
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fSeparator = fSeparator.substr(2);
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}
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}
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}
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const char* skipWhiteSpace() {
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const char* start = fSeparatorStart;
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bool whiteSpace = start < fRefEnd && ' ' >= start[0];
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while (start < fRefEnd && !isalpha(start[0])) {
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whiteSpace &= ' ' >= start[0];
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++start;
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}
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fPriorSpace = false;
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fSeparator = string(fSeparatorStart, start - fSeparatorStart);
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if ("" != fPriorWord && whiteSpace) {
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string wordSpace = fPriorWord + ' ';
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if (this->hasWordSpace(wordSpace)) {
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fPriorWord = wordSpace;
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fPriorSpace = true;
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}
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}
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return start;
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}
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string fRef;
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string fBack2Word;
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string fBack2Separator;
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string fPriorWord;
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string fPriorLink;
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string fPriorSeparator;
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string fWord;
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string fLink;
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string fSeparator;
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string fMethodName;
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BmhParser* fBmhParser;
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const NameMap* fNames;
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const NameMap* fGlobals;
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const Definition* fLastDef;
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const Definition* fMethod;
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const Definition* fSubtopic;
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const Definition* fPriorDef;
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const RootDefinition* fRoot;
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const char* fSeparatorStart;
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const char* fRefStart;
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const char* fRefEnd;
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const char* fEnd;
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Resolvable fResolvable;
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bool fAddParens;
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bool fInMatrix;
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bool fInProgress;
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bool fPriorSpace;
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};
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void addCodeBlock(const Definition* def, string& str) const;
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void addPopulators();
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string addReferences(const char* start, const char* end, Resolvable );
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string anchorDef(string def, string name);
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string anchorLocalRef(string ref, string name);
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string anchorRef(string def, string name);
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bool buildRefFromFile(const char* fileName, const char* outDir);
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bool checkParamReturnBody(const Definition* def);
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Definition* checkParentsForMatch(Definition* test, string ref) const;
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void childrenOut(Definition* def, const char* contentStart);
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Definition* csParent();
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const Definition* findParamType();
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string getMemberTypeName(const Definition* def, string* memberType);
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static bool HasDetails(const Definition* def);
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void htmlOut(string );
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bool isDefined(DefinedState& s);
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const Definition* isDefined(const TextParser& , Resolvable );
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string linkName(const Definition* ) const;
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void markTypeOut(Definition* , const Definition** prior);
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void mdHeaderOut(int depth) { mdHeaderOutLF(depth, 2); }
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void mdHeaderOutLF(int depth, int lf);
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void parameterHeaderOut(TextParser& paramParser, const Definition** prior, Definition* def);
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void parameterTrailerOut();
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bool parseFromFile(const char* path) override { return true; }
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void populateOne(Definition* def,
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unordered_map<string, RootDefinition::SubtopicContents>& populator);
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void populateTables(const Definition* def, RootDefinition* );
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SubtopicDescriptions& populator(string key) {
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auto entry = fPopulators.find(key);
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// FIXME: this should have been detected earlier
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SkASSERT(fPopulators.end() != entry);
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return entry->second;
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}
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void reset() override {
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INHERITED::resetCommon();
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fEnumClass = nullptr;
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fMethod = nullptr;
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fRoot = nullptr;
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fSubtopic = nullptr;
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fLastParam = nullptr;
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fTableState = TableState::kNone;
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fAddRefFailed = false;
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fHasFiddle = false;
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fInDescription = false;
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fInList = false;
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fResolveAndIndent = false;
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fLiteralAndIndent = false;
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fLastDef = nullptr;
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fParamEnd = nullptr;
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fInProgress = false;
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}
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Resolvable resolvable(const Definition* definition) const {
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MarkType markType = definition->fMarkType;
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if (MarkType::kCode == markType) {
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for (auto child : definition->fChildren) {
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if (MarkType::kLiteral == child->fMarkType) {
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return Resolvable::kLiteral;
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}
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}
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}
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if ((MarkType::kExample == markType
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|| MarkType::kFunction == markType) && fHasFiddle) {
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return Resolvable::kNo;
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}
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return BmhParser::kMarkProps[(int) markType].fResolve;
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}
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void resolveOut(const char* start, const char* end, Resolvable );
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void returnHeaderOut(const Definition** prior, Definition* def);
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void rowOut(string col1, const Definition* col2);
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void rowOut(const char * name, string description, bool literalName);
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void subtopicOut(string name);
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void subtopicsOut(Definition* def);
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void subtopicOut(string key, const vector<Definition*>& data, const Definition* csParent,
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const Definition* topicParent, bool showClones);
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bool subtopicRowOut(string keyName, const Definition* entry);
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void summaryOut(const Definition* def, MarkType , string name);
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string tableDataCodeDef(const Definition* def);
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string tableDataCodeDef(string def, string name);
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string tableDataCodeLocalRef(string name);
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string tableDataCodeLocalRef(string ref, string name);
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string tableDataCodeRef(const Definition* ref);
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string tableDataCodeRef(string ref, string name);
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void writeSubtopicTableHeader(string key);
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vector<const Definition*> fClassStack;
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unordered_map<string, vector<AnchorDef> > fAllAnchorDefs;
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unordered_map<string, vector<string> > fAllAnchorRefs;
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NameMap* fNames;
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BmhParser& fBmhParser;
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IncludeParser& fIncludeParser;
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const Definition* fEnumClass;
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const Definition* fLastDef;
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Definition* fMethod;
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RootDefinition* fRoot; // used in generating populated tables; always struct or class
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RootDefinition* fSubtopic; // used in resolving symbols
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const Definition* fLastParam;
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TableState fTableState;
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unordered_map<string, SubtopicDescriptions> fPopulators;
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unordered_map<string, string> fPhraseParams;
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const char* fParamEnd;
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bool fAddRefFailed;
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bool fHasFiddle;
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bool fInDescription; // FIXME: for now, ignore unfound camelCase in description since it may
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// be defined in example which at present cannot be linked to
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bool fInList;
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bool fLiteralAndIndent;
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bool fResolveAndIndent;
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bool fOddRow;
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bool fHasDetails;
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bool fInProgress;
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typedef ParserCommon INHERITED;
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};
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#endif
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