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|
--!A cross-platform build utility based on Lua
--
-- Licensed under the Apache License, Version 2.0 (the "License");
-- you may not use this file except in compliance with the License.
-- You may obtain a copy of the License at
--
-- http://www.apache.org/licenses/LICENSE-2.0
--
-- Unless required by applicable law or agreed to in writing, software
-- distributed under the License is distributed on an "AS IS" BASIS,
-- WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
-- See the License for the specific language governing permissions and
-- limitations under the License.
--
-- Copyright (C) 2015-present, TBOOX Open Source Group.
--
-- @author ruki
-- @file string.lua
--
-- define module: string
local string = string or {}
-- load modules
local deprecated = require("base/deprecated")
local serialize = require("base/serialize")
local bit = require("base/bit")
-- save original interfaces
string._dump = string._dump or string.dump
string._trim = string._trim or string.trim
string._split = string._split or string.split
string._lastof = string._lastof or string.lastof
-- find the last substring with the given pattern
function string:lastof(pattern, plain)
-- is plain text? use the native implementation
if plain then
return string._lastof(self, pattern)
end
-- find the last substring
local curr = 0
repeat
local next = self:find(pattern, curr + 1, plain)
if next then
curr = next
end
until (not next)
-- found?
if curr > 0 then
return curr
end
end
-- split string with the given substring/characters
--
-- pattern match and ignore empty string
-- ("1\n\n2\n3"):split('\n') => 1, 2, 3
-- ("abc123123xyz123abc"):split('123') => abc, xyz, abc
-- ("abc123123xyz123abc"):split('[123]+') => abc, xyz, abc
--
-- plain match and ignore empty string
-- ("1\n\n2\n3"):split('\n', {plain = true}) => 1, 2, 3
-- ("abc123123xyz123abc"):split('123', {plain = true}) => abc, xyz, abc
--
-- pattern match and contains empty string
-- ("1\n\n2\n3"):split('\n', {strict = true}) => 1, , 2, 3
-- ("abc123123xyz123abc"):split('123', {strict = true}) => abc, , xyz, abc
-- ("abc123123xyz123abc"):split('[123]+', {strict = true}) => abc, xyz, abc
--
-- plain match and contains empty string
-- ("1\n\n2\n3"):split('\n', {plain = true, strict = true}) => 1, , 2, 3
-- ("abc123123xyz123abc"):split('123', {plain = true, strict = true}) => abc, , xyz, abc
--
-- limit split count
-- ("1\n\n2\n3"):split('\n', {limit = 2}) => 1, 2\n3
-- ("1.2.3.4.5"):split('%.', {limit = 3}) => 1, 2, 3.4.5
--
function string:split(delimiter, opt)
if #delimiter == 0 then
os.raise("string.split(%s, \"\") use empty delimiter", self)
end
local limit, plain, strict
if opt then
limit = opt.limit
plain = opt.plain
strict = opt.strict
end
if plain then
return string._split(self, delimiter, strict, limit)
end
local start = 1
local result = {}
local pos, epos = self:find(delimiter, start, plain)
while pos do
local substr = self:sub(start, pos - 1)
if (#substr > 0) or strict then
if limit and limit > 0 and #result + 1 >= limit then
break
end
table.insert(result, substr)
end
start = epos + 1
pos, epos = self:find(delimiter, start, plain)
end
if start <= #self then
table.insert(result, self:sub(start))
elseif strict and (not limit or #result < limit) then
if start == #self + 1 then
table.insert(result, "")
end
end
return result
end
-- trim the spaces
function string:trim(trimchars)
return string._trim(self, trimchars, 0)
end
-- trim the left spaces
function string:ltrim(trimchars)
return string._trim(self, trimchars, -1)
end
-- trim the right spaces
function string:rtrim(trimchars)
return string._trim(self, trimchars, 1)
end
-- encode: ' ', '=', '\"', '<'
function string:encode()
return (self:gsub("[%s=\"<]", function (w) return string.format("%%%x", w:byte()) end))
end
-- decode: ' ', '=', '\"'
function string:decode()
return (self:gsub("%%(%x%x)", function (w) return string.char(tonumber(w, 16)) end))
end
-- replace text
function string:replace(old, new, opt)
if opt and opt.plain then
local b, e = self:find(old, 1, true)
if b == nil then
return self, 0
else
local str, count = self:sub(e + 1):replace(old, new, opt)
return (self:sub(1, b - 1) .. new .. str), count + 1
end
else
return self:gsub(old, new)
end
end
-- try to format
function string.tryformat(format, ...)
local ok, str = pcall(string.format, format, ...)
if ok then
return str
else
return tostring(format)
end
end
-- case-insensitive pattern-matching
--
-- print(("src/dadasd.C"):match(string.ipattern("sR[cd]/.*%.c", true)))
-- print(("src/dadasd.C"):match(string.ipattern("src/.*%.c", true)))
--
-- print(string.ipattern("sR[cd]/.*%.c"))
-- [sS][rR][cd]/.*%.[cC]
--
-- print(string.ipattern("sR[cd]/.*%.c", true))
-- [sS][rR][cCdD]/.*%.[cC]
--
function string.ipattern(pattern, brackets)
local tmp = {}
local i = 1
while i <= #pattern do
-- get current charactor
local char = pattern:sub(i, i)
-- escape?
if char == '%' then
tmp[#tmp + 1] = char
i = i + 1
char = pattern:sub(i,i)
tmp[#tmp + 1] = char
-- '%bxy'? add next 2 chars
if char == 'b' then
tmp[#tmp + 1] = pattern:sub(i + 1, i + 2)
i = i + 2
end
-- brackets?
elseif char == '[' then
tmp[#tmp + 1] = char
i = i + 1
while i <= #pattern do
char = pattern:sub(i, i)
if char == '%' then
tmp[#tmp + 1] = char
tmp[#tmp + 1] = pattern:sub(i + 1, i + 1)
i = i + 1
elseif char:match("%a") then
tmp[#tmp + 1] = not brackets and char or char:lower() .. char:upper()
else
tmp[#tmp + 1] = char
end
if char == ']' then break end
i = i + 1
end
-- letter, [aA]
elseif char:match("%a") then
tmp[#tmp + 1] = '[' .. char:lower() .. char:upper() .. ']'
else
tmp[#tmp + 1] = char
end
i = i + 1
end
return table.concat(tmp)
end
-- @deprecated
-- dump to string from the given object (more readable)
--
-- @param deflate deflate empty characters
--
-- @return string, errors
--
function string.dump(object, deflate)
deprecated.add("utils.dump() or string.serialize()", "string.dump()")
return string.serialize(object, deflate)
end
-- serialize to string from the given object
--
-- @param opt serialize options
-- e.g. { strip = true, binary = false, indent = true }
--
-- @return string, errors
--
function string.serialize(object, opt)
return serialize.save(object, opt)
end
-- deserialize string to object
--
-- @param str the serialized string
--
-- @return object, errors
--
function string:deserialize()
return serialize.load(self)
end
-- unicode character width in the given index
function string:wcwidth(idx)
-- based on Markus Kuhn's implementation of wcswidth()
-- https://www.cl.cam.ac.uk/~mgk25/ucs/wcwidth.c
local non_spacing =
{
{0x0300, 0x036F}, {0x0483, 0x0486}, {0x0488, 0x0489},
{0x0591, 0x05BD}, {0x05BF, 0x05BF}, {0x05C1, 0x05C2},
{0x05C4, 0x05C5}, {0x05C7, 0x05C7}, {0x0600, 0x0603},
{0x0610, 0x0615}, {0x064B, 0x065E}, {0x0670, 0x0670},
{0x06D6, 0x06E4}, {0x06E7, 0x06E8}, {0x06EA, 0x06ED},
{0x070F, 0x070F}, {0x0711, 0x0711}, {0x0730, 0x074A},
{0x07A6, 0x07B0}, {0x07EB, 0x07F3}, {0x0901, 0x0902},
{0x093C, 0x093C}, {0x0941, 0x0948}, {0x094D, 0x094D},
{0x0951, 0x0954}, {0x0962, 0x0963}, {0x0981, 0x0981},
{0x09BC, 0x09BC}, {0x09C1, 0x09C4}, {0x09CD, 0x09CD},
{0x09E2, 0x09E3}, {0x0A01, 0x0A02}, {0x0A3C, 0x0A3C},
{0x0A41, 0x0A42}, {0x0A47, 0x0A48}, {0x0A4B, 0x0A4D},
{0x0A70, 0x0A71}, {0x0A81, 0x0A82}, {0x0ABC, 0x0ABC},
{0x0AC1, 0x0AC5}, {0x0AC7, 0x0AC8}, {0x0ACD, 0x0ACD},
{0x0AE2, 0x0AE3}, {0x0B01, 0x0B01}, {0x0B3C, 0x0B3C},
{0x0B3F, 0x0B3F}, {0x0B41, 0x0B43}, {0x0B4D, 0x0B4D},
{0x0B56, 0x0B56}, {0x0B82, 0x0B82}, {0x0BC0, 0x0BC0},
{0x0BCD, 0x0BCD}, {0x0C3E, 0x0C40}, {0x0C46, 0x0C48},
{0x0C4A, 0x0C4D}, {0x0C55, 0x0C56}, {0x0CBC, 0x0CBC},
{0x0CBF, 0x0CBF}, {0x0CC6, 0x0CC6}, {0x0CCC, 0x0CCD},
{0x0CE2, 0x0CE3}, {0x0D41, 0x0D43}, {0x0D4D, 0x0D4D},
{0x0DCA, 0x0DCA}, {0x0DD2, 0x0DD4}, {0x0DD6, 0x0DD6},
{0x0E31, 0x0E31}, {0x0E34, 0x0E3A}, {0x0E47, 0x0E4E},
{0x0EB1, 0x0EB1}, {0x0EB4, 0x0EB9}, {0x0EBB, 0x0EBC},
{0x0EC8, 0x0ECD}, {0x0F18, 0x0F19}, {0x0F35, 0x0F35},
{0x0F37, 0x0F37}, {0x0F39, 0x0F39}, {0x0F71, 0x0F7E},
{0x0F80, 0x0F84}, {0x0F86, 0x0F87}, {0x0F90, 0x0F97},
{0x0F99, 0x0FBC}, {0x0FC6, 0x0FC6}, {0x102D, 0x1030},
{0x1032, 0x1032}, {0x1036, 0x1037}, {0x1039, 0x1039},
{0x1058, 0x1059}, {0x1160, 0x11FF}, {0x135F, 0x135F},
{0x1712, 0x1714}, {0x1732, 0x1734}, {0x1752, 0x1753},
{0x1772, 0x1773}, {0x17B4, 0x17B5}, {0x17B7, 0x17BD},
{0x17C6, 0x17C6}, {0x17C9, 0x17D3}, {0x17DD, 0x17DD},
{0x180B, 0x180D}, {0x18A9, 0x18A9}, {0x1920, 0x1922},
{0x1927, 0x1928}, {0x1932, 0x1932}, {0x1939, 0x193B},
{0x1A17, 0x1A18}, {0x1B00, 0x1B03}, {0x1B34, 0x1B34},
{0x1B36, 0x1B3A}, {0x1B3C, 0x1B3C}, {0x1B42, 0x1B42},
{0x1B6B, 0x1B73}, {0x1DC0, 0x1DCA}, {0x1DFE, 0x1DFF},
{0x200B, 0x200F}, {0x202A, 0x202E}, {0x2060, 0x2063},
{0x206A, 0x206F}, {0x20D0, 0x20EF}, {0x302A, 0x302F},
{0x3099, 0x309A}, {0xA806, 0xA806}, {0xA80B, 0xA80B},
{0xA825, 0xA826}, {0xFB1E, 0xFB1E}, {0xFE00, 0xFE0F},
{0xFE20, 0xFE23}, {0xFEFF, 0xFEFF}, {0xFFF9, 0xFFFB},
{0x10A01, 0x10A03}, {0x10A05, 0x10A06}, {0x10A0C, 0x10A0F},
{0x10A38, 0x10A3A}, {0x10A3F, 0x10A3F}, {0x1D167, 0x1D169},
{0x1D173, 0x1D182}, {0x1D185, 0x1D18B}, {0x1D1AA, 0x1D1AD},
{0x1D242, 0x1D244}, {0xE0001, 0xE0001}, {0xE0020, 0xE007F},
{0xE0100, 0xE01EF},
}
idx = idx or 1
-- turn codepoint into unicode
local c = self:byte(idx)
local seq = c < 0x80 and 1 or c < 0xE0 and 2 or c < 0xF0 and 3 or
c < 0xF8 and 4 or error("invalid UTF-8 sequence")
local val = seq == 1 and c or bit.band(c, (2^(8 - seq) - 1))
for aux = 2, seq do
c = self:byte(idx + aux - 1)
val = val * 2 ^ 6 + bit.band(c, 0x3F)
end
-- test for 8-bit control characters
if val == 0 then return 0 end
if val < 32 or (val >= 0x7f and val < 0xa0) then
return -1
end
-- binary search in table of non-spacing characters
local min, max = 1, #non_spacing
if val >= non_spacing[1][1] and val <= non_spacing[max][2] then
while max >= min do
local mid = math.floor((min + max) / 2)
if val > non_spacing[mid][2] then
min = mid + 1
elseif val < non_spacing[mid][1] then
max = mid - 1
else
return 0
end
end
end
if val >= 0x1100 and (val <= 0x115f or -- Hangul Jamo init. consonants
val == 0x2329 or val == 0x232a or
(val >= 0x2e80 and val <= 0xa4cf and
val ~= 0x303f) or -- CJK ... Yi
(val >= 0xac00 and val <= 0xd7a3) or -- Hangul Syllables
(val >= 0xf900 and val <= 0xfaff) or -- CJK Compatibility Ideographs
(val >= 0xfe10 and val <= 0xfe19) or -- Vertical forms
(val >= 0xfe30 and val <= 0xfe6f) or -- CJK Compatibility Forms
(val >= 0xff00 and val <= 0xff60) or -- Fullwidth Forms
(val >= 0xffe0 and val <= 0xffe6) or
(val >= 0x20000 and val <= 0x2fffd) or
(val >= 0x30000 and val <= 0x3fffd)) then
return 2
end
return 1
end
-- unicode string width in given start index
function string:wcswidth(idx)
local width = 0
idx = idx or 1
while idx <= #self do
if bit.band(self:byte(idx), 0xc0) ~= 0x80 then
width = width + self:wcwidth(idx)
end
idx = idx + 1
end
return width
end
-- compute the Levenshtein distance between two strings
--
-- @param str2 the string to compare against
-- @param opt the options, e.g. {sub = 1, ins = 1, del = 1}
--
-- @return the levenshtein distance
--
function string:levenshtein(str2, opt)
opt = opt or {}
local sub = opt.sub or 1
local ins = opt.ins or 1
local del = opt.del or 1
local str1 = self
local len1 = #str1
local len2 = #str2
if len1 == 0 then
return len2
elseif len2 == 0 then
return len1
elseif str1 == str2 then
return 0
end
local row1 = {}
local row2 = {}
local sub_cost = 0
for i = 1, len2 + 1 do
row1[i] = (i - 1) * ins
end
for i = 1, len1 do
row2[1] = i * del
for j = 1, len2 do
sub_cost = (str1:byte(i) == str2:byte(j)) and 0 or sub
row2[j + 1] = math.min(row1[j + 1] + del, row2[j] + ins, row1[j] + sub_cost)
end
row1, row2 = row2, row1
end
return row1[len2 + 1]
end
-- return module: string
return string
|