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Travis seems to be having issues pulling deps, so we'll have to check in the vendor directory and prevent the makefile from trying to regenerate it normally.
145 lines
3.6 KiB
Go
145 lines
3.6 KiB
Go
// Copyright 2012 The Go Authors. All rights reserved.
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// Use of this source code is governed by a BSD-style
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// license that can be found in the LICENSE file.
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package colltab
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import "unicode/utf8"
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// For a description of ContractTrieSet, see text/collate/build/contract.go.
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type ContractTrieSet []struct{ L, H, N, I uint8 }
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// ctScanner is used to match a trie to an input sequence.
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// A contraction may match a non-contiguous sequence of bytes in an input string.
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// For example, if there is a contraction for <a, combining_ring>, it should match
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// the sequence <a, combining_cedilla, combining_ring>, as combining_cedilla does
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// not block combining_ring.
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// ctScanner does not automatically skip over non-blocking non-starters, but rather
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// retains the state of the last match and leaves it up to the user to continue
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// the match at the appropriate points.
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type ctScanner struct {
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states ContractTrieSet
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s []byte
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n int
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index int
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pindex int
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done bool
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}
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type ctScannerString struct {
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states ContractTrieSet
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s string
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n int
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index int
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pindex int
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done bool
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}
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func (t ContractTrieSet) scanner(index, n int, b []byte) ctScanner {
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return ctScanner{s: b, states: t[index:], n: n}
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}
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func (t ContractTrieSet) scannerString(index, n int, str string) ctScannerString {
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return ctScannerString{s: str, states: t[index:], n: n}
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}
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// result returns the offset i and bytes consumed p so far. If no suffix
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// matched, i and p will be 0.
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func (s *ctScanner) result() (i, p int) {
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return s.index, s.pindex
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}
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func (s *ctScannerString) result() (i, p int) {
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return s.index, s.pindex
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}
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const (
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final = 0
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noIndex = 0xFF
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)
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// scan matches the longest suffix at the current location in the input
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// and returns the number of bytes consumed.
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func (s *ctScanner) scan(p int) int {
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pr := p // the p at the rune start
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str := s.s
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states, n := s.states, s.n
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for i := 0; i < n && p < len(str); {
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e := states[i]
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c := str[p]
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// TODO: a significant number of contractions are of a form that
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// cannot match discontiguous UTF-8 in a normalized string. We could let
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// a negative value of e.n mean that we can set s.done = true and avoid
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// the need for additional matches.
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if c >= e.L {
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if e.L == c {
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p++
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if e.I != noIndex {
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s.index = int(e.I)
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s.pindex = p
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}
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if e.N != final {
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i, states, n = 0, states[int(e.H)+n:], int(e.N)
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if p >= len(str) || utf8.RuneStart(str[p]) {
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s.states, s.n, pr = states, n, p
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}
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} else {
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s.done = true
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return p
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}
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continue
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} else if e.N == final && c <= e.H {
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p++
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s.done = true
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s.index = int(c-e.L) + int(e.I)
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s.pindex = p
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return p
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}
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}
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i++
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}
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return pr
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}
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// scan is a verbatim copy of ctScanner.scan.
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func (s *ctScannerString) scan(p int) int {
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pr := p // the p at the rune start
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str := s.s
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states, n := s.states, s.n
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for i := 0; i < n && p < len(str); {
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e := states[i]
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c := str[p]
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// TODO: a significant number of contractions are of a form that
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// cannot match discontiguous UTF-8 in a normalized string. We could let
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// a negative value of e.n mean that we can set s.done = true and avoid
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// the need for additional matches.
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if c >= e.L {
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if e.L == c {
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p++
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if e.I != noIndex {
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s.index = int(e.I)
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s.pindex = p
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}
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if e.N != final {
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i, states, n = 0, states[int(e.H)+n:], int(e.N)
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if p >= len(str) || utf8.RuneStart(str[p]) {
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s.states, s.n, pr = states, n, p
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}
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} else {
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s.done = true
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return p
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}
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continue
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} else if e.N == final && c <= e.H {
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p++
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s.done = true
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s.index = int(c-e.L) + int(e.I)
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s.pindex = p
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return p
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}
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}
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i++
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}
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return pr
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}
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