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https://github.com/golang/go
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a12cc76b85
Remove the input type option. Now everything behaves as "symbol". We don't use the "text" or "filename" input types, and I don't foresee us using them. Removing them simplifies the code a bit, but simplifies the tests a lot. It was tedious to make changes to the matcher logic because you had to fret over test failure details that didn't actually matter because we didn't use that functionality. Change-Id: I651debde9e63ee283d7bc3ad718d22f4b9a127c0 Reviewed-on: https://go-review.googlesource.com/c/tools/+/202637 Reviewed-by: Rebecca Stambler <rstambler@golang.org> Run-TryBot: Rebecca Stambler <rstambler@golang.org> TryBot-Result: Gobot Gobot <gobot@golang.org>
169 lines
4.4 KiB
Go
169 lines
4.4 KiB
Go
// Copyright 2019 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 fuzzy
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import (
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"unicode"
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)
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// RuneRole specifies the role of a rune in the context of an input.
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type RuneRole byte
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const (
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// RNone specifies a rune without any role in the input (i.e., whitespace/non-ASCII).
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RNone RuneRole = iota
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// RSep specifies a rune with the role of segment separator.
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RSep
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// RTail specifies a rune which is a lower-case tail in a word in the input.
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RTail
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// RUCTail specifies a rune which is an upper-case tail in a word in the input.
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RUCTail
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// RHead specifies a rune which is the first character in a word in the input.
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RHead
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)
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// RuneRoles detects the roles of each byte rune in an input string and stores it in the output
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// slice. The rune role depends on the input type. Stops when it parsed all the runes in the string
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// or when it filled the output. If output is nil, then it gets created.
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func RuneRoles(str string, reuse []RuneRole) []RuneRole {
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var output []RuneRole
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if cap(reuse) < len(str) {
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output = make([]RuneRole, 0, len(str))
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} else {
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output = reuse[:0]
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}
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prev, prev2 := rtNone, rtNone
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for i := 0; i < len(str); i++ {
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r := rune(str[i])
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role := RNone
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curr := rtLower
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if str[i] <= unicode.MaxASCII {
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curr = runeType(rt[str[i]] - '0')
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}
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if curr == rtLower {
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if prev == rtNone || prev == rtPunct {
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role = RHead
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} else {
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role = RTail
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}
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} else if curr == rtUpper {
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role = RHead
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if prev == rtUpper {
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// This and previous characters are both upper case.
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if i+1 == len(str) {
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// This is last character, previous was also uppercase -> this is UCTail
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// i.e., (current char is C): aBC / BC / ABC
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role = RUCTail
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}
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}
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} else if curr == rtPunct {
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switch r {
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case '.', ':':
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role = RSep
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}
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}
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if curr != rtLower {
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if i > 1 && output[i-1] == RHead && prev2 == rtUpper && (output[i-2] == RHead || output[i-2] == RUCTail) {
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// The previous two characters were uppercase. The current one is not a lower case, so the
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// previous one can't be a HEAD. Make it a UCTail.
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// i.e., (last char is current char - B must be a UCTail): ABC / ZABC / AB.
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output[i-1] = RUCTail
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}
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}
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output = append(output, role)
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prev2 = prev
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prev = curr
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}
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return output
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}
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type runeType byte
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const (
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rtNone runeType = iota
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rtPunct
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rtLower
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rtUpper
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)
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const rt = "00000000000000000000000000000000000000000000001122222222221000000333333333333333333333333330000002222222222222222222222222200000"
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// LastSegment returns the substring representing the last segment from the input, where each
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// byte has an associated RuneRole in the roles slice. This makes sense only for inputs of Symbol
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// or Filename type.
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func LastSegment(input string, roles []RuneRole) string {
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// Exclude ending separators.
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end := len(input) - 1
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for end >= 0 && roles[end] == RSep {
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end--
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}
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if end < 0 {
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return ""
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}
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start := end - 1
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for start >= 0 && roles[start] != RSep {
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start--
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}
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return input[start+1 : end+1]
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}
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// ToLower transforms the input string to lower case, which is stored in the output byte slice.
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// The lower casing considers only ASCII values - non ASCII values are left unmodified.
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// Stops when parsed all input or when it filled the output slice. If output is nil, then it gets
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// created.
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func ToLower(input string, reuse []byte) []byte {
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output := reuse
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if cap(reuse) < len(input) {
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output = make([]byte, len(input))
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}
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for i := 0; i < len(input); i++ {
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r := rune(input[i])
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if r <= unicode.MaxASCII {
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if 'A' <= r && r <= 'Z' {
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r += 'a' - 'A'
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}
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}
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output[i] = byte(r)
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}
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return output[:len(input)]
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}
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// WordConsumer defines a consumer for a word delimited by the [start,end) byte offsets in an input
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// (start is inclusive, end is exclusive).
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type WordConsumer func(start, end int)
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// Words find word delimiters in an input based on its bytes' mappings to rune roles. The offset
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// delimiters for each word are fed to the provided consumer function.
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func Words(roles []RuneRole, consume WordConsumer) {
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var wordStart int
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for i, r := range roles {
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switch r {
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case RUCTail, RTail:
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case RHead, RNone, RSep:
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if i != wordStart {
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consume(wordStart, i)
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}
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wordStart = i
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if r != RHead {
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// Skip this character.
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wordStart = i + 1
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}
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}
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}
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if wordStart != len(roles) {
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consume(wordStart, len(roles))
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}
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}
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