Added fields to state, to determine capturing group information. 0th group refers to entire match
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37
nfa.go
37
nfa.go
@@ -21,18 +21,22 @@ const (
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)
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type State struct {
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content stateContents // Contents of current state
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isEmpty bool // If it is empty - Union operator and Kleene star states will be empty
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isLast bool // If it is the last state (acept state)
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output []*State // The outputs of the current state ie. the 'outward arrows'. A union operator state will have more than one of these.
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transitions map[int][]*State // Transitions to different states (maps a character (int representation) to a _list of states. This is useful if one character can lead multiple states eg. ab|aa)
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isKleene bool // Identifies whether current node is a 0-state representing Kleene star
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assert assertType // Type of assertion of current node - NONE means that the node doesn't assert anything
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zeroMatchFound bool // Whether or not the state has been used for a zero-length match - only relevant for zero states
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allChars bool // Whether or not the state represents all characters (eg. a 'dot' metacharacter). A 'dot' node doesn't store any contents directly, as it would take up too much space
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except []rune // Only valid if allChars is true - match all characters _except_ the ones in this block. Useful for inverting character classes.
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lookaroundRegex string // Only for lookaround states - Contents of the regex that the lookaround state holds
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lookaroundNFA *State // Holds the NFA of the lookaroundRegex - if it exists
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content stateContents // Contents of current state
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isEmpty bool // If it is empty - Union operator and Kleene star states will be empty
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isLast bool // If it is the last state (acept state)
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output []*State // The outputs of the current state ie. the 'outward arrows'. A union operator state will have more than one of these.
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transitions map[int][]*State // Transitions to different states (maps a character (int representation) to a _list of states. This is useful if one character can lead multiple states eg. ab|aa)
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isKleene bool // Identifies whether current node is a 0-state representing Kleene star
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assert assertType // Type of assertion of current node - NONE means that the node doesn't assert anything
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zeroMatchFound bool // Whether or not the state has been used for a zero-length match - only relevant for zero states
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allChars bool // Whether or not the state represents all characters (eg. a 'dot' metacharacter). A 'dot' node doesn't store any contents directly, as it would take up too much space
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except []rune // Only valid if allChars is true - match all characters _except_ the ones in this block. Useful for inverting character classes.
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lookaroundRegex string // Only for lookaround states - Contents of the regex that the lookaround state holds
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lookaroundNFA *State // Holds the NFA of the lookaroundRegex - if it exists
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lookaroundNumCaptureGroups int // Number of capturing groups if current node is a lookaround
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groupBegin bool // Whether or not the node starts a capturing group
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groupEnd bool // Whether or not the node ends a capturing group
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groupNum int // Which capturing group the node starts / ends
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}
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// Clones the NFA starting from the given state.
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@@ -65,6 +69,9 @@ func cloneStateHelper(state *State, cloneMap map[*State]*State) *State {
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allChars: state.allChars,
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except: append([]rune{}, state.except...),
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lookaroundRegex: state.lookaroundRegex,
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groupEnd: state.groupEnd,
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groupBegin: state.groupBegin,
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groupNum: state.groupNum,
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}
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cloneMap[state] = clone
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for i, s := range state.output {
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@@ -113,17 +120,17 @@ func (s State) checkAssertion(str []rune, idx int) bool {
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// 2. Run it on the test string.
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// 3. Based on the kind of lookaround (and the indices we get), determine what action to take.
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startState := s.lookaroundNFA
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matchIndices := findAllMatches(startState, str)
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matchIndices := findAllMatches(startState, str, startState.lookaroundNumCaptureGroups)
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numMatchesFound := 0
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for _, matchIdx := range matchIndices {
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if s.assert == PLA || s.assert == NLA { // Lookahead - return true (or false) if at least one match starts at the current index
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if matchIdx.startIdx == idx {
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if matchIdx[0].startIdx == idx {
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numMatchesFound++
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}
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}
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if s.assert == PLB || s.assert == NLB { // Lookbehind - return true (or false) if at least one match _ends_ at the current index.
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if matchIdx.endIdx == idx {
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if matchIdx[0].endIdx == idx {
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numMatchesFound++
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}
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}
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