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Problem: The magic globals `it`, `describe`, etc., are more trouble than they are worth. - Hooking into `after_each` requires `getfenv()` hacks. - They confuse luals/emmylua, because the top-level `.luarc.json` isn't merged with `test/.luarc.json` (apparently a luals limitation?) - They totally defeat discoverability because the user just has to "know" about the various magic symbols. So they harm DX, which means they serve no purpose at all. Solution: - Expose the test API from `testutil`, so tests can call `t.it()`, `t.describe()`, etc., in the conventional way. - Drop `getfenv()` hacks. - Drop the `setfenv()` injection in `load_chunk`. - Drop `test/_meta.lua`.
572 lines
16 KiB
Lua
572 lines
16 KiB
Lua
local t = require('test.unit.testutil')
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local describe = t.describe
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local itp = t.gen_itp(t.it)
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local to_cstr = t.to_cstr
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local get_str = t.ffi.string
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local eq = t.eq
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local NULL = t.NULL
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local buffer = t.cimport('./src/nvim/buffer.h')
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local globals = t.cimport('./src/nvim/globals.h')
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local stl = t.cimport('./src/nvim/statusline.h')
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local grid = t.cimport('./src/nvim/grid.h')
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describe('build_stl_str_hl', function()
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local buffer_byte_size = 120
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local STL_INITIAL_ITEMS = 20
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local output_buffer = ''
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-- This function builds the statusline
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--
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-- @param arg Optional arguments are:
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-- .pat The statusline format string
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-- .fillchar The fill character used in the statusline
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-- .maximum_cell_count The number of cells available in the statusline
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local function build_stl_str_hl(arg)
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output_buffer = to_cstr(string.rep(' ', buffer_byte_size))
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local pat = arg.pat or ''
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local fillchar = arg.fillchar or ' '
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local maximum_cell_count = arg.maximum_cell_count or buffer_byte_size
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if type(fillchar) == type('') then
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fillchar = grid.schar_from_str(fillchar)
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end
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return stl.build_stl_str_hl(
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globals.curwin,
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output_buffer,
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buffer_byte_size,
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to_cstr(pat),
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-1,
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0,
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fillchar,
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maximum_cell_count,
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NULL,
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NULL,
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NULL,
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NULL
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)
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end
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-- Use this function to simplify testing the comparison between
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-- the format string and the resulting statusline.
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--
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-- @param description The description of what the test should be doing
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-- @param statusline_cell_count The number of cells available in the statusline
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-- @param input_stl The format string for the statusline
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-- @param expected_stl The expected result string for the statusline
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--
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-- @param arg Options can be placed in an optional dict as the last parameter
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-- .expected_cell_count The expected number of cells build_stl_str_hl will return
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-- .expected_byte_length The expected byte length of the string (defaults to byte length of expected_stl)
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-- .file_name The name of the file to be tested (useful in %f type tests)
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-- .fillchar The character that will be used to fill any 'extra' space in the stl
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local function statusline_test(description, statusline_cell_count, input_stl, expected_stl, arg)
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-- arg is the optional parameter
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-- so we either fill in option with arg or an empty dict
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local option = arg or {}
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local fillchar = option.fillchar or ' '
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local expected_cell_count = option.expected_cell_count or statusline_cell_count
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local expected_byte_length = option.expected_byte_length or #expected_stl
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itp(description, function()
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if option.file_name then
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buffer.setfname(globals.curbuf, to_cstr(option.file_name), NULL, 1)
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else
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buffer.setfname(globals.curbuf, nil, NULL, 1)
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end
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local result_cell_count = build_stl_str_hl {
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pat = input_stl,
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maximum_cell_count = statusline_cell_count,
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fillchar = fillchar,
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}
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local output_str = get_str(output_buffer, expected_byte_length + 1)
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eq(expected_stl, output_str:sub(1, -2))
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eq('\0', output_str:sub(-1), 'output string must be NUL-terminated')
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eq(expected_cell_count, result_cell_count)
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end)
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end
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-- expression testing
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statusline_test('expands expression', 2, '%!expand(20+1)', '21')
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statusline_test('expands broken expression to itself', 11, '%!expand(20+1', 'expand(20+1')
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-- file name testing
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statusline_test('prints no file name', 10, '%f', '[No Name]', { expected_cell_count = 9 })
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statusline_test(
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'prints the relative file name',
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30,
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'%f',
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'test/unit/buffer_spec.lua',
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{ file_name = 'test/unit/buffer_spec.lua', expected_cell_count = 25 }
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)
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statusline_test(
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'prints the full file name',
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40,
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'%F',
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'/test/unit/buffer_spec.lua',
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{ file_name = '/test/unit/buffer_spec.lua', expected_cell_count = 26 }
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)
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-- fillchar testing
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statusline_test('handles `!` as a fillchar', 10, 'abcde%=', 'abcde!!!!!', { fillchar = '!' })
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statusline_test('handles `~` as a fillchar', 10, '%=abcde', '~~~~~abcde', { fillchar = '~' })
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statusline_test(
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'puts fillchar `!` in between text',
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10,
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'abc%=def',
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'abc!!!!def',
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{ fillchar = '!' }
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)
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statusline_test(
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'puts fillchar `~` in between text',
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10,
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'abc%=def',
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'abc~~~~def',
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{ fillchar = '~' }
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)
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statusline_test(
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'puts fillchar `━` in between text',
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10,
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'abc%=def',
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'abc━━━━def',
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{ fillchar = '━' }
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)
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statusline_test('handles zero-fillchar as a space', 10, 'abcde%=', 'abcde ', { fillchar = 0 })
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statusline_test(
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'prints the tail file name',
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80,
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'%t',
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'buffer_spec.lua',
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{ file_name = 'test/unit/buffer_spec.lua', expected_cell_count = 15 }
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)
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-- standard text testing
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statusline_test(
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'copies plain text',
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80,
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'this is a test',
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'this is a test',
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{ expected_cell_count = 14 }
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)
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-- line number testing
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statusline_test('prints the buffer number', 80, '%n', '1', { expected_cell_count = 1 })
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statusline_test(
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'prints the current line number in the buffer',
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80,
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'%l',
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'0',
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{ expected_cell_count = 1 }
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)
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statusline_test(
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'prints the number of lines in the buffer',
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80,
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'%L',
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'1',
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{ expected_cell_count = 1 }
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)
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-- truncation testing
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statusline_test(
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'truncates when standard text pattern is too long',
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10,
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'0123456789abcde',
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'<6789abcde'
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)
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statusline_test('truncates when using =', 10, 'abcdef%=ghijkl', 'abcdef<jkl')
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statusline_test('truncates centered text when using ==', 10, 'abcde%=gone%=fghij', 'abcde<ghij')
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statusline_test('respects the `<` marker', 10, 'abc%<defghijkl', 'abc<ghijkl')
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statusline_test('truncates at `<` with one `=`, test 1', 10, 'abc%<def%=ghijklmno', 'abc<jklmno')
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statusline_test('truncates at `<` with one `=`, test 2', 10, 'abcdef%=ghijkl%<mno', 'abcdefghi>')
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statusline_test('truncates at `<` with one `=`, test 3', 10, 'abc%<def%=ghij', 'abcdefghij')
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statusline_test('truncates at `<` with one `=`, test 4', 10, 'abc%<def%=ghijk', 'abc<fghijk')
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statusline_test('truncates at `<` with many `=`, test 5', 10, 'ab%<cdef%=g%=h%=ijk', 'ab<efghijk')
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statusline_test('truncates at the first `<`', 10, 'abc%<def%<ghijklm', 'abc<hijklm')
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statusline_test('ignores trailing %', 3, 'abc%', 'abc')
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-- alignment testing with fillchar
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local function statusline_test_align(
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description,
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statusline_cell_count,
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input_stl,
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expected_stl,
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arg
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)
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arg = arg or {}
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statusline_test(
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description .. ' without fillchar',
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statusline_cell_count,
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input_stl,
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expected_stl:gsub('%~', ' '),
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arg
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)
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arg.fillchar = '!'
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statusline_test(
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description .. ' with fillchar `!`',
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statusline_cell_count,
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input_stl,
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expected_stl:gsub('%~', '!'),
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arg
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)
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arg.fillchar = '━'
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statusline_test(
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description .. ' with fillchar `━`',
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statusline_cell_count,
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input_stl,
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expected_stl:gsub('%~', '━'),
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arg
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)
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end
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statusline_test_align('right aligns when using =', 20, 'neo%=vim', 'neo~~~~~~~~~~~~~~vim')
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statusline_test_align(
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'centers text when using %=text%=',
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20,
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'abc%=neovim%=def',
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'abc~~~~neovim~~~~def'
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)
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statusline_test_align(
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'handles uneven spacing in the buffer when using %=text%=',
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20,
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'abc%=neo_vim%=def',
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'abc~~~neo_vim~~~~def'
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)
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statusline_test_align(
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'produces approximately equal spaces even with non-equal sides when using =',
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20,
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'foobar%=test%=baz',
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'foobar~~~test~~~~baz'
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)
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statusline_test_align(
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'produces approximately equal spaces even with longer right side when using =',
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20,
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'a%=test%=longtext',
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'a~~~test~~~~longtext'
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)
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statusline_test_align(
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'handles an empty left side when using ==',
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20,
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'%=test%=baz',
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'~~~~~~test~~~~~~~baz'
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)
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statusline_test_align(
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'handles an empty right side when using ==',
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20,
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'foobar%=test%=',
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'foobar~~~~~test~~~~~'
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)
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statusline_test_align('handles consecutive empty ==', 20, '%=%=test%=', '~~~~~~~~~~test~~~~~~')
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statusline_test_align('handles an = alone', 20, '%=', '~~~~~~~~~~~~~~~~~~~~')
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statusline_test_align(
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'right aligns text when it is alone with =',
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20,
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'%=foo',
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'~~~~~~~~~~~~~~~~~foo'
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)
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statusline_test_align(
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'left aligns text when it is alone with =',
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20,
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'foo%=',
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'foo~~~~~~~~~~~~~~~~~'
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)
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statusline_test_align(
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'approximately centers text when using %=text%=',
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21,
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'abc%=neovim%=def',
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'abc~~~~neovim~~~~~def'
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)
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statusline_test_align(
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'completely fills the buffer when using %=text%=',
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21,
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'abc%=neo_vim%=def',
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'abc~~~~neo_vim~~~~def'
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)
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statusline_test_align(
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'produces equal spacing even with non-equal sides when using =',
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21,
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'foobar%=test%=baz',
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'foobar~~~~test~~~~baz'
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)
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statusline_test_align(
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'produces equal spacing even with longer right side when using =',
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21,
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'a%=test%=longtext',
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'a~~~~test~~~~longtext'
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)
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statusline_test_align(
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'handles an empty left side when using ==',
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21,
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'%=test%=baz',
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'~~~~~~~test~~~~~~~baz'
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)
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statusline_test_align(
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'handles an empty right side when using ==',
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21,
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'foobar%=test%=',
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'foobar~~~~~test~~~~~~'
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)
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statusline_test_align(
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'quadrants the text when using 3 %=',
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40,
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'abcd%=n%=eovim%=ef',
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'abcd~~~~~~~~~n~~~~~~~~~eovim~~~~~~~~~~ef'
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)
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statusline_test_align(
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'works well with %t',
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40,
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'%t%=right_aligned',
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'buffer_spec.lua~~~~~~~~~~~~right_aligned',
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{ file_name = 'test/unit/buffer_spec.lua' }
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)
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statusline_test_align(
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'works well with %t and regular text',
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40,
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'l%=m_l %t m_r%=r',
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'l~~~~~~~m_l buffer_spec.lua m_r~~~~~~~~r',
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{ file_name = 'test/unit/buffer_spec.lua' }
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)
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statusline_test_align(
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'works well with %=, %t, %L, and %l',
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40,
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'%t %= %L %= %l',
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'buffer_spec.lua ~~~~~~~~~ 1 ~~~~~~~~~~ 0',
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{ file_name = 'test/unit/buffer_spec.lua' }
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)
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statusline_test_align(
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'quadrants the text when using 3 %=',
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41,
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'abcd%=n%=eovim%=ef',
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'abcd~~~~~~~~~n~~~~~~~~~eovim~~~~~~~~~~~ef'
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)
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statusline_test_align(
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'works well with %t',
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41,
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'%t%=right_aligned',
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'buffer_spec.lua~~~~~~~~~~~~~right_aligned',
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{ file_name = 'test/unit/buffer_spec.lua' }
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)
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statusline_test_align(
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'works well with %t and regular text',
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41,
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'l%=m_l %t m_r%=r',
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'l~~~~~~~~m_l buffer_spec.lua m_r~~~~~~~~r',
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{ file_name = 'test/unit/buffer_spec.lua' }
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)
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statusline_test_align(
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'works well with %=, %t, %L, and %l',
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41,
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'%t %= %L %= %l',
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'buffer_spec.lua ~~~~~~~~~~ 1 ~~~~~~~~~~ 0',
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{ file_name = 'test/unit/buffer_spec.lua' }
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)
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statusline_test_align(
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'works with 10 %=',
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50,
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'aaaa%=b%=c%=d%=e%=fg%=hi%=jk%=lmnop%=qrstuv%=wxyz',
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'aaaa~~b~~c~~d~~e~~fg~~hi~~jk~~lmnop~~qrstuv~~~wxyz'
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)
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-- item group testing
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statusline_test_align(
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'right aligns in right aligned groups',
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30,
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'%5(%l%), %5.(%l%), %5.5(%l%), %5.10(%l%)',
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'~~~~0, ~~~~0, ~~~~0, ~~~~0',
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{ expected_cell_count = 26 }
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)
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statusline_test_align(
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'left aligns in left aligned groups',
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30,
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'%-5(%l%), %-5.(%l%), %-5.5(%l%), %-5.10(%l%)',
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'0~~~~, 0~~~~, 0~~~~, 0~~~~',
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{ expected_cell_count = 26 }
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)
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statusline_test_align(
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'expands at %= in item groups according to minwid',
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60,
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'%10(neo%=vim%), %10.(neo%=vim%), %10.10(neo%=vim%), %10.20(neo%=vim%)',
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'neo~~~~vim, neo~~~~vim, neo~~~~vim, neo~~~~vim',
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{ expected_cell_count = 46 }
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)
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statusline_test_align(
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'expands at %= in item groups with normal items',
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60,
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'%10(%L%=%l,%c%), %10(%=%L%=%l,%c%=%), %10(x%=%L%=%l,%c%=y%)',
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'1~~~~~~0,0, ~~1~~0,0~~, x~1~0,0~~y',
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{ expected_cell_count = 34 }
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)
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statusline_test_align(
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'expands at %= in nested item groups and top-level',
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29,
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'%21(foo%=%7(x%=y%=z%)%=bar%)%=%5(a%=b%=c%)',
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'foo~~~~x~~y~~z~~~~bar~~~a~b~c'
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)
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statusline_test(
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'ignores unexpanded %= in item groups when expanding at top-level',
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20,
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'%4(%L%=neo%)vim',
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'1neovim',
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{ expected_cell_count = 7 }
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)
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statusline_test(
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'ignores truncated %= in item groups when expanding at top-level',
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20,
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'%10.10(%<hidden%=%f%)TEST',
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'<_spec.luaTEST',
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{ file_name = 'test/unit/buffer_spec.lua', expected_cell_count = 14 }
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)
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statusline_test(
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'ignores %= in hidden item groups when expanding at top-level',
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20,
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'%(hidden%=%h%)TEST',
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'TEST',
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{ expected_cell_count = 4 }
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)
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statusline_test(
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'truncates item groups according to maxwid',
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30,
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'%.5(1234567%), %2.5(1234567%), %5.5(1234567%)',
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'<4567, <4567, <4567',
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{ expected_cell_count = 19 }
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)
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statusline_test(
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'truncates at first normal item in item groups',
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30,
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'%.15(path: %f%)',
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'path: <spec.lua',
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{ file_name = 'test/unit/buffer_spec.lua', expected_cell_count = 15 }
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)
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statusline_test(
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'truncates at %< in item groups',
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60,
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'%.15(%<path: %f%), %.15(path: %<%f%), %.15(path: %f%<%)',
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'<uffer_spec.lua, path: <spec.lua, path: test/uni>',
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{ file_name = 'test/unit/buffer_spec.lua', expected_cell_count = 49 }
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)
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statusline_test(
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'truncates at %< in nested item groups and top-level',
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40,
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'%.24(trim both ends: %<%.17(%f%<%)%), path: %<%f',
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'trim both ends: <buffer>, path: <pec.lua',
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{ file_name = 'test/unit/buffer_spec.lua' }
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)
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statusline_test(
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'ignores unused %< in item groups when truncating at top-level',
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25,
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'%.6(%L%< test%) file: %<%f',
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'1 test file: <er_spec.lua',
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{ file_name = 'test/unit/buffer_spec.lua' }
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)
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|
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statusline_test(
|
||
'ignores second %< in item groups when truncating at top-level',
|
||
32,
|
||
'%.15(file: %<%f%<%), file: %<%f',
|
||
'file: <spec.lua, file: <spec.lua',
|
||
{ file_name = 'test/unit/buffer_spec.lua' }
|
||
)
|
||
|
||
statusline_test(
|
||
'ignores %< in hidden item groups when truncating at top-level',
|
||
15,
|
||
'%.15(hidden%<%)%f%<',
|
||
'test/unit/buff>',
|
||
{ file_name = 'test/unit/buffer_spec.lua' }
|
||
)
|
||
|
||
-- stl item testing
|
||
local tabline = ''
|
||
for i = 1, 1000 do
|
||
tabline = tabline .. (i % 2 == 0 and '%#TabLineSel#' or '%#TabLineFill#') .. tostring(i % 2)
|
||
end
|
||
statusline_test('handles a large amount of any items', 20, tabline, '<1010101010101010101') -- Should not show any error
|
||
statusline_test(
|
||
'handles a larger amount of = than stl initial item',
|
||
20,
|
||
('%='):rep(STL_INITIAL_ITEMS * 5),
|
||
' '
|
||
) -- Should not show any error
|
||
statusline_test(
|
||
'handles many extra characters',
|
||
20,
|
||
'a' .. ('a'):rep(STL_INITIAL_ITEMS * 5),
|
||
'<aaaaaaaaaaaaaaaaaaa'
|
||
) -- Does not show any error
|
||
statusline_test(
|
||
'handles many extra characters and flags',
|
||
20,
|
||
'a' .. ('%=a'):rep(STL_INITIAL_ITEMS * 2),
|
||
'a<aaaaaaaaaaaaaaaaaa'
|
||
) -- Should not show any error
|
||
|
||
-- multi-cell character testing
|
||
statusline_test(
|
||
'returns reduced width after truncating top-level from the left at multicell character',
|
||
5,
|
||
'12🙂345',
|
||
'<345',
|
||
{ expected_cell_count = 4 }
|
||
)
|
||
statusline_test(
|
||
'returns reduced width after truncating top-level from the right at multicell character',
|
||
5,
|
||
'123🙂45%<',
|
||
'123>',
|
||
{ expected_cell_count = 4 }
|
||
)
|
||
statusline_test_align(
|
||
'compensates with fillchar to reach minwid after truncating item group at multicell character',
|
||
100,
|
||
'%.5(12🙂345%), %4.5(12🙂345%), %5.5(12🙂345%), %-5.5(12🙂345%), %50.5(12🙂345%), %.5(123🙂%L%<%), %4.5(123🙂%L%<%), %5.5(123🙂%L%<%), %-5.5(123🙂%L%<%), %50.5(123🙂%L%<%)',
|
||
'<345, <345, <345~, <345~, <345~, 123>, 123>, 123>~, 123>~, 123>~',
|
||
{ expected_cell_count = 64 }
|
||
)
|
||
|
||
-- multi-byte testing
|
||
statusline_test('handles multibyte characters', 10, 'Ĉ%=x', 'Ĉ x')
|
||
statusline_test(
|
||
'handles multibyte characters and different fillchars',
|
||
10,
|
||
'Ą%=mid%=end',
|
||
'Ą@mid@@end',
|
||
{ fillchar = '@' }
|
||
)
|
||
for _, fillchar in ipairs({ '-', '±', '━', '𝕚' }) do
|
||
local minwid = math.floor(2147483647 / #fillchar) + 10000 -- this supposes 4-byte integers
|
||
itp("doesn't crash due to integer overflow with fillchar " .. fillchar, function()
|
||
build_stl_str_hl {
|
||
pat = '%' .. tostring(minwid) .. '(%)',
|
||
maximum_cell_count = 10,
|
||
fillchar = fillchar,
|
||
}
|
||
end)
|
||
end
|
||
|
||
-- escaping % testing
|
||
statusline_test('handles escape of %', 4, 'abc%%', 'abc%')
|
||
statusline_test('case where escaped % does not fit', 3, 'abc%%abcabc', '<bc')
|
||
statusline_test('escaped % is first', 1, '%%', '%')
|
||
end)
|