mirror of
https://github.com/neovim/neovim.git
synced 2024-12-25 13:45:15 -07:00
2c937d723d
Co-authored-by: Christian Clason <c.clason@uni-graz.at> Co-authored-by: Riley Bruins <ribru17@hotmail.com> Co-authored-by: zeertzjq <zeertzjq@outlook.com>
363 lines
13 KiB
Lua
363 lines
13 KiB
Lua
local t = require('test.unit.testutil')
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local itp = t.gen_itp(it)
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local ffi = t.ffi
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local eq = t.eq
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local to_cstr = t.to_cstr
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local lib = t.cimport(
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'./src/nvim/mbyte.h',
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'./src/nvim/charset.h',
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'./src/nvim/grid.h',
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'./src/nvim/option_vars.h'
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)
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describe('mbyte', function()
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-- Convert from bytes to string
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local function to_string(bytes)
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local s = {}
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for i = 1, #bytes do
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s[i] = string.char(bytes[i])
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end
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return table.concat(s)
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end
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before_each(function() end)
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itp('utf_ptr2char', function()
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-- For strings with length 1 the first byte is returned.
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for c = 0, 255 do
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eq(c, lib.utf_ptr2char(to_string({ c, 0 })))
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end
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-- Some ill formed byte sequences that should not be recognized as UTF-8
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-- First byte: 0xc0 or 0xc1
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-- Second byte: 0x80 .. 0xbf
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--eq(0x00c0, lib.utf_ptr2char(to_string({0xc0, 0x80})))
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--eq(0x00c1, lib.utf_ptr2char(to_string({0xc1, 0xbf})))
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--
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-- Sequences with more than four bytes
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end)
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for n = 0, 0xF do
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itp(('utf_char2bytes for chars 0x%x - 0x%x'):format(n * 0x1000, n * 0x1000 + 0xFFF), function()
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local char_p = ffi.typeof('char[?]')
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for c = n * 0x1000, n * 0x1000 + 0xFFF do
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local p = char_p(4, 0)
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lib.utf_char2bytes(c, p)
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eq(c, lib.utf_ptr2char(p))
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eq(lib.vim_iswordc(c), lib.vim_iswordp(p))
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end
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end)
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end
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describe('utfc_ptr2schar', function()
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local function test_seq(seq)
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local firstc = ffi.new('int[1]')
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local buf = ffi.new('char[32]')
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lib.schar_get(buf, lib.utfc_ptr2schar(to_string(seq), firstc))
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local str = ffi.string(buf)
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if 1 > 2 then -- for debugging
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local tabel = {}
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for i = 1, #str do
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table.insert(tabel, string.format('0x%02x', string.byte(str, i)))
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end
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print('{ ' .. table.concat(tabel, ', ') .. ' }')
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io.stdout:flush()
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end
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return { str, firstc[0] }
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end
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local function byte(val)
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return { string.char(val), val }
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end
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itp('1-byte sequences', function()
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eq({ '', 0 }, test_seq { 0 })
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for c = 1, 127 do
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eq(byte(c), test_seq { c })
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end
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for c = 128, 255 do
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eq({ '', c }, test_seq { c })
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end
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end)
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itp('2-byte sequences', function()
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-- No combining characters
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eq(byte(0x7f), test_seq { 0x7f, 0x7f })
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-- No combining characters
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eq(byte(0x7f), test_seq { 0x7f, 0x80 })
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-- No UTF-8 sequence
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eq({ '', 0xc2 }, test_seq { 0xc2, 0x7f })
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-- One UTF-8 character
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eq({ '\xc2\x80', 0x80 }, test_seq { 0xc2, 0x80 })
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-- No UTF-8 sequence
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eq({ '', 0xc2 }, test_seq { 0xc2, 0xc0 })
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end)
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itp('3-byte sequences', function()
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-- No second UTF-8 character
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eq(byte(0x7f), test_seq { 0x7f, 0x80, 0x80 })
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-- No combining character
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eq(byte(0x7f), test_seq { 0x7f, 0xc2, 0x80 })
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-- Combining character is U+0300
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eq({ '\x29\xcc\x80', 0x29 }, test_seq { 0x29, 0xcc, 0x80 })
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-- invalid start byte for combining
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eq({ '\x7f', 0x7f }, test_seq { 0x7f, 0xcc, 0x80 })
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-- No UTF-8 sequence
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eq({ '', 0xc2 }, test_seq { 0xc2, 0x7f, 0xcc })
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-- Incomplete combining character
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eq({ '\xc2\x80', 0x80 }, test_seq { 0xc2, 0x80, 0xcc })
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-- One UTF-8 character (composing only)
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eq({ ' \xe2\x83\x90', 0x20d0 }, test_seq { 0xe2, 0x83, 0x90 })
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end)
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itp('4-byte sequences', function()
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-- No following combining character
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eq(byte(0x7f), test_seq { 0x7f, 0x7f, 0xcc, 0x80 })
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eq(byte(0x29), test_seq { 0x29, 0x29, 0xcc, 0x80 })
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-- No second UTF-8 character
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eq(byte(0x7f), test_seq { 0x7f, 0xc2, 0xcc, 0x80 })
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-- Combining character U+0300
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eq({ '\x29\xcc\x80', 0x29 }, test_seq { 0x29, 0xcc, 0x80, 0xcc })
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-- No UTF-8 sequence
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eq({ '', 0xc2 }, test_seq { 0xc2, 0x7f, 0xcc, 0x80 })
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-- No following UTF-8 character
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eq({ '\xc2\x80', 0x80 }, test_seq { 0xc2, 0x80, 0xcc, 0xcc })
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-- Combining character U+0301
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eq({ '\xc2\xbc\xcc\x81', 0xbc }, test_seq { 0xc2, 0xbc, 0xcc, 0x81 })
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-- U+0080 : not a valid start char
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eq({ '\xc2\x80', 0x80 }, test_seq { 0xc2, 0x80, 0xcc, 0x81 })
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-- One UTF-8 character
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eq({ '\xf4\x80\x80\x80', 0x100000 }, test_seq { 0xf4, 0x80, 0x80, 0x80 })
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end)
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itp('5+-byte sequences', function()
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-- No following combining character
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eq(byte(0x7f), test_seq { 0x7f, 0x7f, 0xcc, 0x80, 0x80 })
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-- No second UTF-8 character
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eq(byte(0x7f), test_seq { 0x7f, 0xc2, 0xcc, 0x80, 0x80 })
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-- Combining character U+0300
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eq({ '\x29\xcc\x80', 0x29 }, test_seq { 0x29, 0xcc, 0x80, 0xcc, 0x00 })
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-- Combining characters U+0300 and U+0301
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eq({ '\x29\xcc\x80\xcc\x81', 0x29 }, test_seq { 0x29, 0xcc, 0x80, 0xcc, 0x81 })
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-- Combining characters U+0300, U+0301, U+0302
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eq(
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{ '\x29\xcc\x80\xcc\x81\xcc\x82', 0x29 },
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test_seq { 0x29, 0xcc, 0x80, 0xcc, 0x81, 0xcc, 0x82 }
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)
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-- Combining characters U+0300, U+0301, U+0302, U+0303
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eq(
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{ '\x29\xcc\x80\xcc\x81\xcc\x82\xcc\x83', 0x29 },
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test_seq { 0x29, 0xcc, 0x80, 0xcc, 0x81, 0xcc, 0x82, 0xcc, 0x83 }
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)
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-- Combining characters U+0300, U+0301, U+0302, U+0303, U+0304
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eq(
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{ '\x29\xcc\x80\xcc\x81\xcc\x82\xcc\x83\xcc\x84', 0x29 },
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test_seq { 0x29, 0xcc, 0x80, 0xcc, 0x81, 0xcc, 0x82, 0xcc, 0x83, 0xcc, 0x84 }
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)
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-- Combining characters U+0300, U+0301, U+0302, U+0303, U+0304, U+0305
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eq(
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{ '\x29\xcc\x80\xcc\x81\xcc\x82\xcc\x83\xcc\x84\xcc\x85', 0x29 },
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test_seq { 0x29, 0xcc, 0x80, 0xcc, 0x81, 0xcc, 0x82, 0xcc, 0x83, 0xcc, 0x84, 0xcc, 0x85 }
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)
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-- Combining characters U+0300, U+0301, U+0302, U+0303, U+0304, U+0305, U+0306
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eq(
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{ '\x29\xcc\x80\xcc\x81\xcc\x82\xcc\x83\xcc\x84\xcc\x85\xcc\x86', 0x29 },
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test_seq {
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0x29,
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0xcc,
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0x80,
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0xcc,
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0x81,
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0xcc,
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0x82,
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0xcc,
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0x83,
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0xcc,
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0x84,
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0xcc,
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0x85,
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0xcc,
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0x86,
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}
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)
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-- Only three following combining characters U+0300, U+0301, U+0302
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eq(
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{ '\x29\xcc\x80\xcc\x81\xcc\x82', 0x29 },
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test_seq { 0x29, 0xcc, 0x80, 0xcc, 0x81, 0xcc, 0x82, 0xc2, 0x80, 0xcc, 0x84, 0xcc, 0x85 }
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)
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-- No UTF-8 sequence
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eq({ '', 0xc2 }, test_seq { 0xc2, 0x7f, 0xcc, 0x80, 0x80 })
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-- No following UTF-8 character
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eq({ '\xc2\xbc', 0xbc }, test_seq { 0xc2, 0xbc, 0xcc, 0xcc, 0x80 })
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-- Combining character U+0301
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eq({ '\xc2\xbc\xcc\x81', 0xbc }, test_seq { 0xc2, 0xbc, 0xcc, 0x81, 0x7f })
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-- Combining character U+0301
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eq({ '\xc2\xbc\xcc\x81', 0xbc }, test_seq { 0xc2, 0xbc, 0xcc, 0x81, 0xcc })
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-- One UTF-8 character
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eq({ '\xf4\x80\x80\x80', 0x100000 }, test_seq { 0xf4, 0x80, 0x80, 0x80, 0x7f })
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-- One UTF-8 character
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eq({ '\xf4\x80\x80\x80', 0x100000 }, test_seq { 0xf4, 0x80, 0x80, 0x80, 0x80 })
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-- One UTF-8 character
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eq({ '\xf4\x80\x80\x80', 0x100000 }, test_seq { 0xf4, 0x80, 0x80, 0x80, 0xcc })
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-- Combining characters U+1AB0 and U+0301
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eq(
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{ '\xf4\x80\x80\x80\xe1\xaa\xb0\xcc\x81', 0x100000 },
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test_seq { 0xf4, 0x80, 0x80, 0x80, 0xe1, 0xaa, 0xb0, 0xcc, 0x81 }
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)
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end)
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end)
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describe('utf_cp_bounds_len', function()
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local tests = {
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{
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name = 'for valid string',
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str = 'iÀiiⱠiⱠⱠ𐀀i',
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offsets = {
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b = { 0, 0, 1, 0, 0, 0, 1, 2, 0, 0, 1, 2, 0, 1, 2, 0, 1, 2, 3, 0 },
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e = { 1, 2, 1, 1, 1, 3, 2, 1, 1, 3, 2, 1, 3, 2, 1, 4, 3, 2, 1, 1 },
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},
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},
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{
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name = 'for string with incomplete sequence',
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str = 'i\xC3iÀⱠiÀ\xE2\xB1Ⱡ\xF0\x90\x80',
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offsets = {
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b = { 0, 0, 0, 0, 1, 0, 1, 2, 0, 0, 1, 0, 0, 0, 1, 2, 0, 0, 0 },
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e = { 1, 1, 1, 2, 1, 3, 2, 1, 1, 2, 1, 1, 1, 3, 2, 1, 1, 1, 1 },
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},
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},
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{
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name = 'for string with trailing bytes after multibyte',
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str = 'iÀ\xA0Ⱡ\xA0Ⱡ𐀀\xA0i',
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offsets = {
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b = { 0, 0, 1, 0, 0, 1, 2, 0, 0, 1, 2, 0, 1, 2, 3, 0, 0 },
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e = { 1, 2, 1, 1, 3, 2, 1, 1, 3, 2, 1, 4, 3, 2, 1, 1, 1 },
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},
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},
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}
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for _, test in ipairs(tests) do
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itp(test.name, function()
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local cstr = to_cstr(test.str)
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local b_offsets, e_offsets = {}, {}
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for i = 1, #test.str do
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local result = lib.utf_cp_bounds_len(cstr, cstr + i - 1, #test.str - (i - 1))
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table.insert(b_offsets, result.begin_off)
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table.insert(e_offsets, result.end_off)
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end
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eq(test.offsets, { b = b_offsets, e = e_offsets })
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end)
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end
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itp('does not read before start', function()
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local str = '𐀀'
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local expected_offsets = { b = { 0, 0, 0 }, e = { 1, 1, 1 } }
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local cstr = to_cstr(str) + 1
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local b_offsets, e_offsets = {}, {}
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for i = 1, 3 do
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local result = lib.utf_cp_bounds_len(cstr, cstr + i - 1, 3 - (i - 1))
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table.insert(b_offsets, result.begin_off)
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table.insert(e_offsets, result.end_off)
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end
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eq(expected_offsets, { b = b_offsets, e = e_offsets })
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end)
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itp('does not read past the end', function()
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local str = '𐀀'
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local expected_offsets = { b = { 0, 0, 0 }, e = { 1, 1, 1 } }
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local cstr = to_cstr(str)
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local b_offsets, e_offsets = {}, {}
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for i = 1, 3 do
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local result = lib.utf_cp_bounds_len(cstr, cstr + i - 1, 3 - (i - 1))
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table.insert(b_offsets, result.begin_off)
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table.insert(e_offsets, result.end_off)
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end
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eq(expected_offsets, { b = b_offsets, e = e_offsets })
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end)
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end)
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itp('utf_head_off', function()
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local function check(str, expected_glyphs)
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local len = #str
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local cstr = to_cstr(str)
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local breaks = { 0 } -- SOT
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local pos = 0
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local mb_glyphs = {}
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while pos < len do
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local clen = lib.utfc_ptr2len(cstr + pos)
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if clen == 0 then
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eq(0, string.byte(str, pos + 1)) -- only NUL bytes can has length zery
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clen = 1 -- but skip it, otherwise we get stuck
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end
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if clen > 1 then
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table.insert(mb_glyphs, string.sub(str, pos + 1, pos + clen))
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end
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pos = pos + clen
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table.insert(breaks, pos)
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end
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eq(breaks[#breaks], len) -- include EOT as break
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-- we could also send in breaks, but this is more human readable
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eq(mb_glyphs, expected_glyphs)
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for i = 1, #breaks - 1 do
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local start, next = breaks[i], breaks[i + 1]
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for p = start, next - 1 do
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eq(p - start, lib.utf_head_off(cstr, cstr + p))
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end
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end
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eq(0, lib.utf_head_off(cstr, cstr + len)) -- NUL byte is safe
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end
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-- stylua doesn't like ZWJ chars..
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-- stylua: ignore start
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check('hej och hå 🧑🌾!', { 'å', '🧑🌾' })
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-- emoji (various kinds of combinations, use g8 to see them)
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check("🏳️⚧️🧑🌾❤️😂🏴☠️", {"🏳️⚧️", "🧑🌾", "❤️", "😂", "🏴☠️"})
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check('🏳️⚧️xy🧑🌾\r❤️😂å🏴☠️', { '🏳️⚧️', '🧑🌾', '❤️', '😂', 'å', '🏴☠️', '' })
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check('🏳️⚧️\000🧑🌾\000❤️\000😂\000å\000🏴☠️\000', { '🏳️⚧️', '🧑🌾', '❤️', '😂', 'å', '🏴☠️', '' })
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check('\195🏳️⚧️\198🧑🌾\165❤️\168\195😂\255🏴☠️\129\165', { '🏳️⚧️', '🧑🌾', '❤️', '😂', '🏴☠️', '' })
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check('🇦🅱️ 🇦🇽 🇦🇨🇦 🇲🇽🇹🇱',{'🇦', '🅱️', '🇦🇽', '🇦🇨', '🇦', '🇲🇽', '🇹🇱'})
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check('🏴🏴', {'🏴', '🏴'})
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check('å\165ü\195aëq\168β\000\169本\255', {'å', 'ü', 'ë', 'β', '本'})
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lib.p_arshape = true -- default
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check('سلام', { 'س', 'لا', 'م' })
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lib.p_arshape = false
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check('سلام', { 'س', 'ل', 'ا', 'م' })
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check('L̓̉̑̒̌̚ơ̗̌̒̄̀ŕ̈̈̎̐̕è̇̅̄̄̐m̖̟̟̅̄̚', {'L̓̉̑̒̌̚', 'ơ̗̌̒̄̀', 'ŕ̈̈̎̐̕', 'è̇̅̄̄̐', 'm̖̟̟̅̄̚'})
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-- stylua: ignore end
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end)
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describe('utf_fold', function()
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itp('does not crash with surrogates #30527', function()
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eq(0xddfb, lib.utf_fold(0xddfb)) -- low surrogate, invalid as a character
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eq(0xd800, lib.utf_fold(0xd800)) -- high surrogate, invalid as a character
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end)
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itp("doesn't crash on invalid codepoints", function()
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eq(9000000, lib.utf_fold(9000000))
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eq(0, lib.utf_fold(0))
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end)
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end)
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end)
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