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* Cull extraneous whitespace.Paul Phillips2013-09-181-1/+1
| | | | | | | | | | | | | | | | | | | | | One last flurry with the broom before I leave you slobs to code in your own filth. Eliminated all the trailing whitespace I could manage, with special prejudice reserved for the test cases which depended on the preservation of trailing whitespace. Was reminded I cannot figure out how to eliminate the trailing space on the "scala> " prompt in repl transcripts. At least reduced the number of such empty prompts by trimming transcript code on the way in. Routed ConsoleReporter's "printMessage" through a trailing whitespace stripping method which might help futureproof against the future of whitespace diseases. Deleted the up-to-40 lines of trailing whitespace found in various library files. It seems like only yesterday we performed whitespace surgery on the whole repo. Clearly it doesn't stick very well. I suggest it would work better to enforce a few requirements on the way in.
* SI-7003 Partest redirects stderr to log fileSom Snytt2013-05-251-0/+4
| | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | Some scalac output is on stderr, and it's useful to see that in the log file, especially for debugging. Adds a line filter for logs, specified as "filter: pattern" in the test source. Backslashes are made forward only when detected as paths. Test alignments: Deprecations which do not pertain to the system under test are corrected in the obvious way. When testing deprecated API, suppress warnings by deprecating the Test object. Check files are updated with useful true warnings, instead of running under -nowarn. Language feature imports as required, instead of running under -language. Language feature not required, such as casual use of postfix. Heed useful warning. Ignore broken warnings. (Rarely, -nowarn.) Inliner warnings pop up under -optimise only, so for now, just filter them out where they occur. Debug output from the test required an update.
* SI-7285 Fix match analysis with nested objects.Jason Zaugg2013-03-231-4/+1
| | | | | | | | | | | | | | | | | | | The fix for SI-6146 introduced `nestedMemberType` to enumerate sealed subtypes based on the (prefixed) type of the scrutinee and the symbols of its sealed subclasses. That method needed to widen `ThisType(modSym)`s to `ModuleTypeRef(modSym)` before calling `asSeenFrom`. However, this could lead to confused in the match analysis, which sees `ModuleTypeRef` as distinct from singleton types on the same modules (after all, they aren't =:=). Spurious warnings ensued. This commit makes two changes: - conditionally re-narrow the result of `asSeenFrom` in `nestedMemberType`. - present `a.b.SomeModule.type` as `SomeModule` in warnings emitted by the pattern matcher.
* Expand test for SI-6124 to demonstrate cause of SI-7285.Jason Zaugg2013-03-231-2/+12
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* SI-6146 More accurate prefixes for sealed subtypes.Jason Zaugg2013-02-071-0/+52
When analysing exhaustivity/reachability of type tests and equality tests, the pattern matcher must construct a set of sealed subtypes based on the prefix of the static type of and the set of sealed descendent symbols of that type. Previously, it was using `memberType` for this purpose. In simple cases, this is sufficient: scala> class C { class I1; object O { class I2 } }; object D extends C defined class C defined module D scala> typeOf[D.type] memberType typeOf[C#I1].typeSymbol res0: u.Type = D.I1 But, as reported in this bug, it fails when there is an additional level of nesting: scala> typeOf[D.type] memberType typeOf[c.O.I2 forSome { val c: C }].typeSymbol res5: u.Type = C.O.I2 This commit introduces `nestedMemberType`, which uses `memberType` recursively up the prefix chain prefix chain. scala> nestedMemberType(typeOf[c.O.I2 forSome { val c: C }].typeSymbol, typeOf[D.type], typeOf[C].typeSymbol) res6: u.Type = D.O.Id