Actually I didn't have all the latest code loaded in the open image. There is more, hold your breath: testSymbolNumbers #(('#1' 1) ('#12' 12) ('#12.3' 12.3) ('# 1' 1) ('##1' 1) ('#"bar"1' 1)) do: [ :pair | tree := RBParser parseExpression: pair first. self assert: tree value = pair second. self assert: tree start > 1. self assert: tree stop = pair first size ] On 29 April 2010 21:12, Lukas Renggli <renggli@gmail.com> wrote:
# "helllooo" foo
prints #foo
is this correct?
Probably not, but the standard compiler accepts it. So I had to patch the parser of the refactoring engine to accept a whole series of degraded constructs. Below a small collection of tests documenting some of these strange things:
testSymbolLiteral     | tree |     #(('# foo' #foo) ('#"bar"foo' #foo) ('##foo' #foo) ('###foo' #foo) ('#foo:' #foo:) ('#foo::' #'foo::') ('#foo::bar' #'foo::bar') ('#foo::bar:' #'foo::bar:') ('#foo::bar::' #'foo::bar::')) do: [ :pair |         tree := RBParser parseExpression: pair first.         self assert: tree value = pair second.         self assert: tree start = 1.         self assert: tree stop = pair first size ]
testStatements     | tree |     #(('' 0 0) ('.' 0 1) ('| bar |' 0 0) ('| bar | .' 0 1) ('| bar | ..' 0 2) ('foo. bar' 2 1) ('foo. bar.' 2 2) ('foo. bar. .' 2 3) ('. foo. bar' 2 2)) do: [ :each |         tree := RBParser parseExpression: each first.         self assert: tree statements size = each second.         self assert: tree periods size = each last ]
testNumberParsing     | numbers node |     numbers := #(('1' 1) ('-1' -1) ('123' 123) ('123' 123) ('-123' -123) ('1.1' 1.1) ('-1.1' -1.1) ('1.23' 1.23) ('-1.23' -1.23) ('1e3' 1e3) ('1d3' 1d3) ('1q3' 1q3) ('-1e3' -1e3) ('1e-3' 1e-3) ('-1e-3' -1e-3) ('2r1e8'  2r1e8) ('-2r1e8' -2r1e8) ('2r1e-8' 2r1e-8) ('-2r1e-8' -2r1e-8) ('0.50s2' 0.50s2) ('0.500s3' 0.500s3) ('0.050s3' 0.050s3)).     numbers do: [ :spec |         node := RBParser parseExpression: spec first.         self assert: node token source = spec first.         self assert: node value = spec second ]
Lukas
-- Lukas Renggli www.lukas-renggli.ch
-- Lukas Renggli www.lukas-renggli.ch