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# frozen_string_literal: true
begin
require 'ripper'
require 'test/unit'
module TestRipper; end
rescue LoadError
end
class TestRipper::Lexer < Test::Unit::TestCase
def test_nested_dedent_heredoc
bug = '[ruby-core:80977] [Bug #13536]'
str = <<~'E'
<<~"D"
#{
<<~"B"
this must be a valid ruby
B
}
D
E
assert_equal(str, Ripper.tokenize(str).join(""), bug)
str = <<~'E'
<<~"D"
#{
<<~"B"
this must be a valid ruby
B
}
D
E
assert_equal(str, Ripper.tokenize(str).join(""), bug)
end
def test_embedded_expr_in_heredoc
src = <<~'E'
<<~B
#{1}
B
E
expect = %I[
on_heredoc_beg
on_nl
on_ignored_sp
on_embexpr_beg
on_int
on_embexpr_end
on_tstring_content
on_heredoc_end
]
assert_equal expect, Ripper.lex(src).map {|e| e[1]}
end
def test_space_after_expr_in_heredoc
src = <<~'E'
<<~B
#{1} a
B
E
expect = %I[
on_heredoc_beg
on_nl
on_ignored_sp
on_embexpr_beg
on_int
on_embexpr_end
on_tstring_content
on_heredoc_end
]
assert_equal expect, Ripper.lex(src).map {|e| e[1]}
end
def test_expr_at_beginning_in_heredoc
src = <<~'E'
<<~B
a
#{1}
B
E
expect = %I[
on_heredoc_beg
on_nl
on_tstring_content
on_embexpr_beg
on_int
on_embexpr_end
on_tstring_content
on_heredoc_end
]
assert_equal expect, Ripper.lex(src).map {|e| e[1]}
end
def test_slice
assert_equal "string\#{nil}\n",
Ripper.slice(%(<<HERE\nstring\#{nil}\nHERE), "heredoc_beg .*? nl $(.*?) heredoc_end", 1)
end
def state(name)
Ripper::Lexer::State.new(Ripper.const_get(name))
end
def test_state_after_ivar
assert_equal [[1,0],:on_ivar,"@a",state(:EXPR_END)], Ripper.lex("@a").last
assert_equal [[1,1],:on_ivar,"@a",state(:EXPR_ENDFN)], Ripper.lex(":@a").last
assert_equal [[1,1],:on_int,"1",state(:EXPR_END)], Ripper.lex("@1").last
assert_equal [[1,2],:on_int,"1",state(:EXPR_END)], Ripper.lex(":@1").last
end
def test_state_after_cvar
assert_equal [[1,0],:on_cvar,"@@a",state(:EXPR_END)], Ripper.lex("@@a").last
assert_equal [[1,1],:on_cvar,"@@a",state(:EXPR_ENDFN)], Ripper.lex(":@@a").last
assert_equal [[1,2],:on_int,"1",state(:EXPR_END)], Ripper.lex("@@1").last
assert_equal [[1,3],:on_int,"1",state(:EXPR_END)], Ripper.lex(":@@1").last
end
def test_token_aftr_error_heredoc
code = "<<A.upcase\n"
result = Ripper::Lexer.new(code).scan
message = proc {result.pretty_inspect}
expected = [
[[1, 0], :on_heredoc_beg, "<<A", state(:EXPR_BEG)],
[[1, 2], :compile_error, "A", state(:EXPR_BEG), "can't find string \"A\" anywhere before EOF"],
[[1, 3], :on_period, ".", state(:EXPR_DOT)],
[[1, 4], :on_ident, "upcase", state(:EXPR_ARG)],
[[1, 10], :on_nl, "\n", state(:EXPR_BEG)],
]
pos = 0
expected.each_with_index do |ex, i|
s = result[i]
assert_equal ex, s.to_a, message
if pos > s.pos[1]
assert_equal pos, s.pos[1] + s.tok.bytesize, message
else
assert_equal pos, s.pos[1], message
pos += s.tok.bytesize
end
end
assert_equal pos, code.bytesize
assert_equal expected.size, result.size
end
def test_trailing_on_embexpr_end
# This is useful for scanning a template engine literal `{ foo, bar: baz }`
# whose body inside brackes works like trailing method arguments, like Haml.
token = Ripper.lex("a( foo, bar: baz }").last
assert_equal [[1, 17], :on_embexpr_end, "}", state(:EXPR_ARG)], token
end
def test_raise_errors_keyword
assert_raise(SyntaxError) { Ripper.tokenize('def req(true) end', raise_errors: true) }
assert_raise(SyntaxError) { Ripper.tokenize('def req(true) end', raise_errors: true) }
end
def test_tokenize_with_syntax_error
assert_equal "end", Ripper.tokenize("def req(true) end").last
end
def test_lex_with_syntax_error
assert_equal [[1, 14], :on_kw, "end", state(:EXPR_END)], Ripper.lex("def req(true) end").last
end
end
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