mirror of
https://github.com/beefytech/Beef.git
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Basic fuzzy search for autocomplete
This commit is contained in:
parent
195c705a46
commit
f9f53eb97b
7 changed files with 347 additions and 20 deletions
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@ -382,6 +382,7 @@ namespace IDE.ui
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public String mEntryInsert;
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public String mDocumentation;
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public Image mIcon;
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public List<uint8> mMatchIndices;
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public float Y
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{
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@ -401,7 +402,31 @@ namespace IDE.ui
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g.Draw(mIcon, 0, 0);
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g.SetFont(IDEApp.sApp.mCodeFont);
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g.DrawString(mEntryDisplay, GS!(20), 0);
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float offset = GS!(20);
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// TODO(FUZZY): this is not unicode compatible
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for(int i < mEntryDisplay.Length)
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{
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char8 c = mEntryDisplay[i];
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if(mMatchIndices.Contains((uint8)i))
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{
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g.PushColor(.Blue);
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}
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else
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{
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g.PushColor(.White);
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}
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g.DrawString(.(&c, 1), offset, 0);
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offset += IDEApp.sApp.mCodeFont.GetWidth(.(&c, 1));
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g.PopColor();
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}
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//g.DrawString(mEntryDisplay, GS!(20), 0);
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}
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}
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@ -603,7 +628,7 @@ namespace IDE.ui
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}*/
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}
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public void AddEntry(StringView entryType, StringView entryDisplay, Image icon, StringView entryInsert = default, StringView documentation = default)
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public void AddEntry(StringView entryType, StringView entryDisplay, Image icon, StringView entryInsert = default, StringView documentation = default, List<uint8> matchIndices = null)
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{
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var entryWidget = new:mAlloc EntryWidget();
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entryWidget.mAutoCompleteListWidget = this;
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@ -614,6 +639,9 @@ namespace IDE.ui
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if (!documentation.IsEmpty)
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entryWidget.mDocumentation = new:mAlloc String(documentation);
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entryWidget.mIcon = icon;
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// TODO(FUZZY): There may be a better way
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if (matchIndices != null && !matchIndices.IsEmpty)
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entryWidget.mMatchIndices = new:mAlloc List<uint8>(matchIndices.GetEnumerator());
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UpdateEntry(entryWidget, mEntryList.Count);
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mEntryList.Add(entryWidget);
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@ -1981,9 +2009,9 @@ namespace IDE.ui
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InvokeWidget oldInvokeWidget = null;
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String selectString = null;
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List<uint8> matchIndices = new:ScopedAlloc! .(256);
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for (var entryView in info.Split('\n'))
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{
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Image entryIcon = null;
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StringView entryType = StringView(entryView);
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int tabPos = entryType.IndexOf('\t');
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@ -1993,13 +2021,34 @@ namespace IDE.ui
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entryDisplay = StringView(entryView, tabPos + 1);
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entryType = StringView(entryType, 0, tabPos);
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}
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StringView matches = default;
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int matchesPos = entryDisplay.IndexOf('\x02');
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matchIndices.Clear();
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if (matchesPos != -1)
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{
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matches = StringView(entryDisplay, matchesPos + 1);
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entryDisplay = StringView(entryDisplay, 0, matchesPos);
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for(var sub in matches.Split(','))
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{
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if(sub == "X")
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break;
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var result = int64.Parse(sub, .HexNumber);
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Debug.Assert((result case .Ok(let value)) && value <= uint8.MaxValue);
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// TODO(FUZZY): we could save start and length instead of single chars
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matchIndices.Add((uint8)result.Value);
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}
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}
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StringView documentation = default;
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int docPos = entryDisplay.IndexOf('\x03');
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int docPos = matches.IndexOf('\x03');
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if (docPos != -1)
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{
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documentation = StringView(entryDisplay, docPos + 1);
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entryDisplay = StringView(entryDisplay, 0, docPos);
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documentation = StringView(matches, docPos + 1);
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matches = StringView(matches, 0, docPos);
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}
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StringView entryInsert = default;
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@ -2128,7 +2177,7 @@ namespace IDE.ui
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if (!mInvokeOnly)
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{
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mIsFixit |= entryType == "fixit";
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mAutoCompleteListWidget.AddEntry(entryType, entryDisplay, entryIcon, entryInsert, documentation);
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mAutoCompleteListWidget.AddEntry(entryType, entryDisplay, entryIcon, entryInsert, documentation, matchIndices);
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}
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}
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}
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@ -6,6 +6,9 @@
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#include "BfFixits.h"
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#include "BfResolvedTypeUtils.h"
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#define FTS_FUZZY_MATCH_IMPLEMENTATION
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#include "FtsFuzzyMatch.h"
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#pragma warning(disable:4996)
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using namespace llvm;
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@ -25,16 +28,16 @@ AutoCompleteBase::~AutoCompleteBase()
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Clear();
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}
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AutoCompleteEntry* AutoCompleteBase::AddEntry(const AutoCompleteEntry& entry, const StringImpl& filter)
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AutoCompleteEntry* AutoCompleteBase::AddEntry(AutoCompleteEntry& entry, const StringImpl& filter)
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{
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if ((!DoesFilterMatch(entry.mDisplay, filter.c_str())) || (entry.mNamePrefixCount < 0))
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if ((!DoesFilterMatch(entry.mDisplay, filter.c_str(), entry.mScore, entry.mMatches, sizeof(entry.mMatches))) || (entry.mNamePrefixCount < 0))
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return NULL;
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return AddEntry(entry);
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}
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AutoCompleteEntry* AutoCompleteBase::AddEntry(const AutoCompleteEntry& entry, const char* filter)
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AutoCompleteEntry* AutoCompleteBase::AddEntry(AutoCompleteEntry& entry, const char* filter)
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{
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if ((!DoesFilterMatch(entry.mDisplay, filter)) || (entry.mNamePrefixCount < 0))
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if ((!DoesFilterMatch(entry.mDisplay, filter, entry.mScore, entry.mMatches, sizeof(entry.mMatches))) || (entry.mNamePrefixCount < 0))
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return NULL;
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return AddEntry(entry);
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}
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@ -60,7 +63,7 @@ AutoCompleteEntry* AutoCompleteBase::AddEntry(const AutoCompleteEntry& entry)
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return insertedEntry;
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}
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bool AutoCompleteBase::DoesFilterMatch(const char* entry, const char* filter)
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bool AutoCompleteBase::DoesFilterMatch(const char* entry, const char* filter, int& score, uint8* matches, int maxMatches)
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{
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if (mIsGetDefinition)
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{
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@ -73,12 +76,28 @@ bool AutoCompleteBase::DoesFilterMatch(const char* entry, const char* filter)
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if (!mIsAutoComplete)
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return false;
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if (filter[0] == 0)
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if (filter[0] == '\0')
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{
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// Kinda dirty
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matches[0] = UINT8_MAX;
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matches[1] = 0;
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return true;
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}
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int filterLen = (int)strlen(filter);
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int entryLen = (int)strlen(entry);
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if (filterLen > entryLen)
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{
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// Kinda dirty
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matches[0] = UINT8_MAX;
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matches[1] = 0;
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return false;
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}
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// TODO: also do matches (but probably optimize them)
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return fts::fuzzy_match(filter, entry, score, matches, maxMatches);
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/*
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bool hasUnderscore = false;
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bool checkInitials = filterLen > 1;
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for (int i = 0; i < (int)filterLen; i++)
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@ -126,6 +145,7 @@ bool AutoCompleteBase::DoesFilterMatch(const char* entry, const char* filter)
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return false;
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*(initialStrP++) = 0;
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return strnicmp(filter, initialStr, filterLen) == 0;
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*/
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}
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void AutoCompleteBase::Clear()
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@ -550,7 +570,9 @@ void BfAutoComplete::AddTypeDef(BfTypeDef* typeDef, const StringImpl& filter, bo
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return;
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}
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if (!DoesFilterMatch(name.c_str(), filter.c_str()))
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int score;
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uint8 matches[256];
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if (!DoesFilterMatch(name.c_str(), filter.c_str(), score, matches, sizeof(matches)))
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return;
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auto type = mModule->ResolveTypeDef(typeDef, BfPopulateType_Declaration);
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@ -1128,8 +1150,10 @@ void BfAutoComplete::AddExtensionMethods(BfTypeInstance* targetType, BfTypeInsta
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if (methodInstance == NULL)
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continue;
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int score;
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uint8 matches[256];
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// Do filter match first- may be cheaper than generic validation
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if (!DoesFilterMatch(methodDef->mName.c_str(), filter.c_str()))
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if (!DoesFilterMatch(methodDef->mName.c_str(), filter.c_str(), score, matches, sizeof(matches)))
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continue;
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auto thisType = methodInstance->GetParamType(0);
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@ -16,6 +16,8 @@ public:
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const char* mDisplay;
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const char* mDocumentation;
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int8 mNamePrefixCount;
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int mScore;
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uint8 mMatches[256];
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public:
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AutoCompleteEntry()
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@ -29,6 +31,7 @@ public:
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mDisplay = display;
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mDocumentation = NULL;
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mNamePrefixCount = 0;
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mScore = 0;
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}
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AutoCompleteEntry(const char* entryType, const StringImpl& display)
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@ -37,6 +40,7 @@ public:
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mDisplay = display.c_str();
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mDocumentation = NULL;
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mNamePrefixCount = 0;
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mScore = 0;
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}
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AutoCompleteEntry(const char* entryType, const StringImpl& display, int namePrefixCount)
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mDisplay = display.c_str();
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mDocumentation = NULL;
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mNamePrefixCount = (int8)namePrefixCount;
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mScore = 0;
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}
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bool operator==(const AutoCompleteEntry& other) const
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@ -100,9 +105,9 @@ public:
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int mInsertStartIdx;
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int mInsertEndIdx;
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bool DoesFilterMatch(const char* entry, const char* filter);
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AutoCompleteEntry* AddEntry(const AutoCompleteEntry& entry, const StringImpl& filter);
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AutoCompleteEntry* AddEntry(const AutoCompleteEntry& entry, const char* filter);
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bool DoesFilterMatch(const char* entry, const char* filter, int& score, uint8* matches, int maxMatches);
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AutoCompleteEntry* AddEntry(AutoCompleteEntry& entry, const StringImpl& filter);
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AutoCompleteEntry* AddEntry(AutoCompleteEntry& entry, const char* filter);
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AutoCompleteEntry* AddEntry(const AutoCompleteEntry& entry);
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AutoCompleteBase();
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@ -8007,7 +8007,9 @@ void BfCompiler::GenerateAutocompleteInfo()
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}
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std::sort(entries.begin(), entries.end(), [](AutoCompleteEntry* lhs, AutoCompleteEntry* rhs)
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{
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return stricmp(lhs->mDisplay, rhs->mDisplay) < 0;
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// TODO(FUZZY): SORT BY Score
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return lhs->mScore > rhs->mScore;
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//return stricmp(lhs->mDisplay, rhs->mDisplay) < 0;
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});
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String docString;
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@ -8022,6 +8024,28 @@ void BfCompiler::GenerateAutocompleteInfo()
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autoCompleteResultString += '@';
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autoCompleteResultString += String(entry->mDisplay);
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// TODO(FUZZY): OUTPUT
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// TODO(FUZZY): this is not really efficient
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autoCompleteResultString += "\x02";
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for (int i = 0; i < 256; i++)
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{
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int match = entry->mMatches[i];
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// no more matches after this
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if (match == 0 && i != 0)
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break;
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// Need max 3 chars (largest Hex (FF) + '\0')
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char buffer[3];
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_itoa_s(match, buffer, 16);
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autoCompleteResultString += String(buffer);
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autoCompleteResultString += ",";
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}
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autoCompleteResultString += "X";
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if (entry->mDocumentation != NULL)
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{
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autoCompleteResultString += '\x03';
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223
IDEHelper/Compiler/FtsFuzzyMatch.h
Normal file
223
IDEHelper/Compiler/FtsFuzzyMatch.h
Normal file
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@ -0,0 +1,223 @@
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// LICENSE
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//
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// This software is dual-licensed to the public domain and under the following
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// license: you are granted a perpetual, irrevocable license to copy, modify,
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// publish, and distribute this file as you see fit.
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//
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// VERSION
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// 0.2.0 (2017-02-18) Scored matches perform exhaustive search for best score
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// 0.1.0 (2016-03-28) Initial release
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//
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// AUTHOR
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// Forrest Smith
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//
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// NOTES
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// Compiling
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// You MUST add '#define FTS_FUZZY_MATCH_IMPLEMENTATION' before including this header in ONE source file to create implementation.
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//
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// fuzzy_match_simple(...)
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// Returns true if each character in pattern is found sequentially within str
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//
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// fuzzy_match(...)
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// Returns true if pattern is found AND calculates a score.
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// Performs exhaustive search via recursion to find all possible matches and match with highest score.
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// Scores values have no intrinsic meaning. Possible score range is not normalized and varies with pattern.
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// Recursion is limited internally (default=10) to prevent degenerate cases (pattern="aaaaaa" str="aaaaaaaaaaaaaaaaaaaaaaaaaaaaaa")
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// Uses uint8_t for match indices. Therefore patterns are limited to 256 characters.
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// Score system should be tuned for YOUR use case. Words, sentences, file names, or method names all prefer different tuning.
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#ifndef FTS_FUZZY_MATCH_H
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#define FTS_FUZZY_MATCH_H
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#include <cstdint> // uint8_t
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#include <ctype.h> // ::tolower, ::toupper
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#include <cstring> // memcpy
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#include <cstdio>
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// Public interface
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namespace fts {
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static bool fuzzy_match_simple(char const* pattern, char const* str);
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static bool fuzzy_match(char const* pattern, char const* str, int& outScore);
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static bool fuzzy_match(char const* pattern, char const* str, int& outScore, uint8_t* matches, int maxMatches);
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}
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#ifdef FTS_FUZZY_MATCH_IMPLEMENTATION
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namespace fts {
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// Forward declarations for "private" implementation
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namespace fuzzy_internal {
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static bool fuzzy_match_recursive(const char* pattern, const char* str, int& outScore, const char* strBegin,
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uint8_t const* srcMatches, uint8_t* newMatches, int maxMatches, int nextMatch,
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int& recursionCount, int recursionLimit);
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}
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// Public interface
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static bool fuzzy_match_simple(char const* pattern, char const* str) {
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while (*pattern != '\0' && *str != '\0') {
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if (tolower(*pattern) == tolower(*str))
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++pattern;
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++str;
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}
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return *pattern == '\0' ? true : false;
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}
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static bool fuzzy_match(char const* pattern, char const* str, int& outScore) {
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uint8_t matches[256];
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return fuzzy_match(pattern, str, outScore, matches, sizeof(matches));
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}
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static bool fuzzy_match(char const* pattern, char const* str, int& outScore, uint8_t* matches, int maxMatches) {
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int recursionCount = 0;
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int recursionLimit = 10;
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return fuzzy_internal::fuzzy_match_recursive(pattern, str, outScore, str, nullptr, matches, maxMatches, 0, recursionCount, recursionLimit);
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}
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// Private implementation
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static bool fuzzy_internal::fuzzy_match_recursive(const char* pattern, const char* str, int& outScore,
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const char* strBegin, uint8_t const* srcMatches, uint8_t* matches, int maxMatches,
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int nextMatch, int& recursionCount, int recursionLimit)
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{
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// Count recursions
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++recursionCount;
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if (recursionCount >= recursionLimit)
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return false;
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// Detect end of strings
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if (*pattern == '\0' || *str == '\0')
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return false;
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// Recursion params
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bool recursiveMatch = false;
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uint8_t bestRecursiveMatches[256];
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int bestRecursiveScore = 0;
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// Loop through pattern and str looking for a match
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bool first_match = true;
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while (*pattern != '\0' && *str != '\0') {
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// Found match
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if (tolower(*pattern) == tolower(*str)) {
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// Supplied matches buffer was too short
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if (nextMatch >= maxMatches)
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return false;
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// "Copy-on-Write" srcMatches into matches
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if (first_match && srcMatches) {
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memcpy(matches, srcMatches, nextMatch);
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first_match = false;
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}
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// Recursive call that "skips" this match
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uint8_t recursiveMatches[256];
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int recursiveScore;
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if (fuzzy_match_recursive(pattern, str + 1, recursiveScore, strBegin, matches, recursiveMatches, sizeof(recursiveMatches), nextMatch, recursionCount, recursionLimit)) {
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// Pick best recursive score
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if (!recursiveMatch || recursiveScore > bestRecursiveScore) {
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memcpy(bestRecursiveMatches, recursiveMatches, 256);
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bestRecursiveScore = recursiveScore;
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}
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recursiveMatch = true;
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}
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// Advance
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matches[nextMatch++] = (uint8_t)(str - strBegin);
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// Clear the next char so that we know which match is the last one
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matches[nextMatch + 1] = 0;
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++pattern;
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}
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++str;
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}
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// Determine if full pattern was matched
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bool matched = *pattern == '\0' ? true : false;
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// Calculate score
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if (matched) {
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const int sequential_bonus = 15; // bonus for adjacent matches
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const int separator_bonus = 30; // bonus if match occurs after a separator
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const int camel_bonus = 30; // bonus if match is uppercase and prev is lower
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const int first_letter_bonus = 15; // bonus if the first letter is matched
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const int leading_letter_penalty = -5; // penalty applied for every letter in str before the first match
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const int max_leading_letter_penalty = -15; // maximum penalty for leading letters
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const int unmatched_letter_penalty = -1; // penalty for every letter that doesn't matter
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// Iterate str to end
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while (*str != '\0')
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++str;
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||||
|
||||
// Initialize score
|
||||
outScore = 100;
|
||||
|
||||
// Apply leading letter penalty
|
||||
int penalty = leading_letter_penalty * matches[0];
|
||||
if (penalty < max_leading_letter_penalty)
|
||||
penalty = max_leading_letter_penalty;
|
||||
outScore += penalty;
|
||||
|
||||
// Apply unmatched penalty
|
||||
int unmatched = (int)(str - strBegin) - nextMatch;
|
||||
outScore += unmatched_letter_penalty * unmatched;
|
||||
|
||||
// Apply ordering bonuses
|
||||
for (int i = 0; i < nextMatch; ++i) {
|
||||
uint8_t currIdx = matches[i];
|
||||
|
||||
if (i > 0) {
|
||||
uint8_t prevIdx = matches[i - 1];
|
||||
|
||||
// Sequential
|
||||
if (currIdx == (prevIdx + 1))
|
||||
outScore += sequential_bonus;
|
||||
}
|
||||
|
||||
// Check for bonuses based on neighbor character value
|
||||
if (currIdx > 0) {
|
||||
// Camel case
|
||||
char neighbor = strBegin[currIdx - 1];
|
||||
char curr = strBegin[currIdx];
|
||||
if (::islower(neighbor) && ::isupper(curr))
|
||||
outScore += camel_bonus;
|
||||
|
||||
// Separator
|
||||
bool neighborSeparator = neighbor == '_' || neighbor == ' ';
|
||||
if (neighborSeparator)
|
||||
outScore += separator_bonus;
|
||||
}
|
||||
else {
|
||||
// First letter
|
||||
outScore += first_letter_bonus;
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
// Return best result
|
||||
if (recursiveMatch && (!matched || bestRecursiveScore > outScore)) {
|
||||
// Recursive score is better than "this"
|
||||
memcpy(matches, bestRecursiveMatches, maxMatches);
|
||||
outScore = bestRecursiveScore;
|
||||
return true;
|
||||
}
|
||||
else if (matched) {
|
||||
// "this" score is better than recursive
|
||||
return true;
|
||||
}
|
||||
else {
|
||||
// no match
|
||||
return false;
|
||||
}
|
||||
}
|
||||
} // namespace fts
|
||||
|
||||
#endif // FTS_FUZZY_MATCH_IMPLEMENTATION
|
||||
|
||||
#endif // FTS_FUZZY_MATCH_H
|
|
@ -400,6 +400,7 @@
|
|||
<ClInclude Include="Compiler\BfUtil.h" />
|
||||
<ClInclude Include="Compiler\BfVarDeclChecker.h" />
|
||||
<ClInclude Include="Compiler\CeMachine.h" />
|
||||
<ClInclude Include="Compiler\FtsFuzzyMatch.h" />
|
||||
<ClInclude Include="Compiler\MemReporter.h" />
|
||||
<ClInclude Include="DbgMiniDump.h" />
|
||||
<ClInclude Include="Debugger.h" />
|
||||
|
|
|
@ -399,5 +399,6 @@
|
|||
<ClInclude Include="Compiler\CeMachine.h">
|
||||
<Filter>Compiler</Filter>
|
||||
</ClInclude>
|
||||
<ClInclude Include="Compiler\FtsFuzzyMatch.h" />
|
||||
</ItemGroup>
|
||||
</Project>
|
Loading…
Add table
Add a link
Reference in a new issue