| Commit message (Collapse) | Author | Age | Files | Lines |
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Otherwise, we can end up with a subtle source incompatibility with
the pre-SAM regime. Arguably we should phase out eta expansion to
Function0 as well, but I'll leave that for another day.
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f interp test is junit
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Moves test/files/run/stringinterpolation_macro-run.scala to
the junit test class test/junit/scala/StringContextTest.scala.
Adds a couple of assertions to the test.
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Simplify and correctify calculation of the InnerClass attribute
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The InnerClass attribute needs to contain an entry for every nested
class that is defined or referenced in a class. Details are in a
doc comment in BTypes.scala.
Instead of collecting ClassBTypes of nested classes into a hash map
during code generation, traverse the class before writing it out to
disk. The previous approach was incorrect as soon as the generated
bytecode was modified by the optimzier (DCE, inlining).
Fixes https://github.com/scala/scala-dev/issues/21.
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merge 2.11 to 2.12 Oct 16
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there were merge conflicts in the Eclipse config that I resolved with
--ours. I invite @performantdata to submit a followup PR bringing the
Eclipse stuff into a good state on 2.12.x.
there was a test failure in
test/junit/scala/collection/mutable/OpenHashMapTest.scala
due to the 2.12 compiler emitting the field backing a
private var differently (with an unmangled name). Lukas
says the difference is expected, so I just updated the
code in the test.
there were no other merge conflicts.
% git log --decorate --oneline -1 origin/2.11.x | cat
ae5f0de (origin/HEAD, origin/2.11.x) Merge pull request #4791 from performantdata/issue/9508
% git log --decorate --oneline -1 origin/2.12.x | cat
c99e53e (HEAD -> 2.12.x, origin/2.12.x) Merge pull request #4797 from lrytz/M3-versions
% export MB=$(git merge-base 2.12.x origin/2.11.x)
% echo $MB
42cafa21f3c4a08c6dd34608278f810b6ec2886f
% git log --graph --oneline --decorate $MB...origin/2.11.x | cat
* ae5f0de (origin/HEAD, origin/2.11.x) Merge pull request #4791 from performantdata/issue/9508
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| * 08dca37 (origin/pull/4791) SI-9508 fix classpaths in Eclipse configuration
* | fe76232 Merge pull request #4798 from performantdata/issue/9513
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| * | 9c97a7f (origin/pull/4798) Suppress unneeded import.
| * | 30d704d Document some OpenHashMap internal methods.
| * | 1fb32fc SI-9513 decrement "deleted" count in OpenHashMap.put() when slot reused
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* | 14f875c Merge pull request #4788 from dk14/patch-1
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| * | 42acd55 (origin/pull/4788) explicitly specify insertion-order feature in docs
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* | 68ce049 Merge pull request #4771 from som-snytt/issue/9492-here
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| * | f290962 (origin/pull/4771) SI-9492 Line trimming paste
| * | bc3589d SI-9492 REPL paste here doc
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* | 9834fc8 Merge pull request #4610 from todesking/spec-implicits-remove-obsolete
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| * | 46009b1 (origin/pull/4610) Add view/context-bound parameter ordering rule
| * | 6eba305 Spec: Implicit parameters with context/view bound is allowed since 2.10
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* | d792e35 Merge pull request #4789 from janekdb/2.11.x-param-names-predicates-operations
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| * b19a07e (origin/pull/4789) Rename forall, exists and find predicate and operator params.
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* 648c7a1 Merge pull request #4790 from SethTisue/issue/9501
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| * 40d12f1 (origin/pull/4790) SI-9501 link README to Scala Hacker Guide
* e0b5891 Merge pull request #4786 from performantdata/issue/9506
* 39acad8 (origin/pull/4786) SI-9506 suppress Scala IDE-generated files in the Eclipse project dirs
* 74dc364 SI-9506 suppress Scala IDE-generated files in the Eclipse project dirs
% git merge ae5f0de
Auto-merging src/repl/scala/tools/nsc/interpreter/ILoop.scala
Auto-merging src/library/scala/util/Either.scala
Auto-merging src/library/scala/runtime/Tuple3Zipped.scala
Auto-merging src/library/scala/runtime/Tuple2Zipped.scala
Auto-merging src/library/scala/collection/parallel/ParIterableLike.scala
Auto-merging src/library/scala/collection/immutable/ListMap.scala
Auto-merging src/library/scala/collection/TraversableLike.scala
Auto-merging src/eclipse/test-junit/.classpath
CONFLICT (content): Merge conflict in src/eclipse/test-junit/.classpath
Auto-merging src/eclipse/scaladoc/.classpath
CONFLICT (content): Merge conflict in src/eclipse/scaladoc/.classpath
Auto-merging src/eclipse/scala-compiler/.classpath
Auto-merging src/eclipse/repl/.classpath
CONFLICT (content): Merge conflict in src/eclipse/repl/.classpath
Auto-merging src/eclipse/partest/.classpath
CONFLICT (content): Merge conflict in src/eclipse/partest/.classpath
Auto-merging src/eclipse/interactive/.classpath
Auto-merging README.md
Automatic merge failed; fix conflicts and then commit the result.
% git checkout --ours src/eclipse/partest/.classpath
% git checkout --ours src/eclipse/repl/.classpath
% git checkout --ours src/eclipse/scaladoc/.classpath
% git checkout --ours src/eclipse/test-junit/.classpath
% git add -u
% emacs test/junit/scala/collection/mutable/OpenHashMapTest.scala
% git diff test/junit/scala/collection/mutable/OpenHashMapTest.scala | cat
...
- val field = m.getClass.getDeclaredField("scala$collection$mutable$OpenHashMap$$deleted")
+ val field = m.getClass.getDeclaredField("deleted")
...
% git add -u
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SI-9513 decrement "deleted" count in OpenHashMap.put() when slot reused
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SI-9492 REPL paste here doc
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Simple here documentish syntax for REPL paste.
This makes it easier to paste a block of script
(as opposed to transcript).
It also means you won't accidentally ctl-D out
of the REPL and then out of SBT and then out of
the terminal window.
```
scala> :paste < EOF
// Entering paste mode (EOF to finish)
class C { def c = 42 }
EOF
// Exiting paste mode, now interpreting.
defined class C
scala> new C().c
res0: Int = 42
scala> :paste <| EOF
// Entering paste mode (EOF to finish)
|class D { def d = 42 }
EOF
// Exiting paste mode, now interpreting.
defined class D
scala> new D().d
res1: Int = 42
scala> :quit
```
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Allow annotating individual callsites @inline / @noinline using an
annotation ascription
c.foo(): @inline
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A post-inline request is allowed to refer to a callsite that does not
exist anymore because it was alredy inlined while handling some other
inline request, or because it was DCE'd.
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Clean up inliner test
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When traversing the call graph and collecting inline reqeusts, rule
out callsites that we already know cannot be inlined.
Note that we cannot perform all necessary checks already at this
stage: checks that depend on the callee body (the inlined code) are
deferred until the callsite is actually inlined. The reason is that
the code may change. Example:
@inline final def f = try 1 catch { case _: Throwable => 2 }
@inline final def g = f
def t = println(g)
When collecting inline requests, the body of g invokes the public
method f, so g could be inlined into t. However, once f is inlined
into g, the body of g contains a try-catch block. Now we cannot inline
g into t anymore, because the call stack at the g callsite is
non-empty (the stack is cleared when entering a handler).
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SI-9029 Fix regression in extractor patterns
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Found these in an old review branch of mine.
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The unified treatment of classical and named-based pattern matching
does not correctly handle the generalization of "tuple capture".
By "tuple capture", I mean:
```
scala> object Extractor { def unapply(a: Any): Option[(Int, String)] = Some((1, "2")) }
defined object Extractor
scala> "" match { case Extractor(x: Int, y: String) => }
scala> "" match { case Extractor(xy : (Int, String)) => }
warning: there was one deprecation warning; re-run with -deprecation for details
scala> :warnings
<console>:9: warning: object Extractor expects 2 patterns to hold (Int, String) but crushing into 2-tuple to fit single pattern (SI-6675)
"" match { case Extractor(xy : (Int, String)) => }
^
```
Name based pattern matching, new in Scala 2.11, allows one to
deconstruct the elements that structurally resembles `ProductN`:
```
scala> class P2(val _1: Int, val _2: String)
defined class P2
scala> object Extractor { def unapply(a: Any): Option[P2] = Some(new P2(1, "2")) }
defined object Extractor
scala> "" match { case Extractor(x: Int, y: String) => }
```
However, attempting to extract the `P2` in its entirety leads to
an internal error:
```
scala> "" match { case Extractor(p2: P2) => }
<console>:10: warning: fruitless type test: a value of type (Int, String) cannot also be a P2
"" match { case Extractor(p2: P2) => }
^
<console>:10: error: error during expansion of this match (this is a scalac bug).
The underlying error was: type mismatch;
found : P2
required: (Int, String)
"" match { case Extractor(p2: P2) => }
^
```
Note that this match was legal and warning free in 2.10.
This commit avoids the hard-coded assumption that the "tuple capture"
results in a `TupleN`, and instead keeps track of the product-ish
type from which we extracted the element types. I have also opted not
to limit the deprecation warning to `TupleN` extractors.
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A trio of problems were hampering autocompletion of annotations.
First, given that that annotation is written before the annotated
member, it is very common to end parse incomplete code that has a
floating annotation without an anotatee.
The parser was discarding the annotations (ie, the modifiers) and
emitting an `EmptyTree`.
Second, the presetation compiler was only looking for annotations
in the Modifiers of a member def, but after typechecking annotations
are moved into the symbol.
Third, if an annotation failed to typecheck, it was being discarded
in place of `ErroneousAnnotation`.
This commit:
- modifies the parser to uses a dummy class- or type-def tree,
instead of EmptyTree, which can carry the annotations.
- updates the locator to look in the symbol annotations of the
modifiers contains no annotations.
- uses a separate instance of `ErroneousAnnotation` for each
erroneous annotation, and stores the original tree in its
`original` tree.
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In the code:
```
s"${fooo<CURSOR"
```
The parser treats `fooo` as a interpolator ID for the quote that
we actually intend to end the interpolated string.
Inserting a space (in addition to `__CURSOR__` that we already
patch in to avoid parsing a partial identifier as a keyword),
solves this problem.
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[backport] SI-9375 add synthetic readResolve only for static modules
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For inner modules, the synthetic readResolve method would cause the
module constructor to be invoked on de-serialization in certain
situations. See the discussion in the ticket.
Adds a comprehensive test around serializing and de-serializing
modules.
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Make AnyRefMap serializable
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Typechecking a pattern that defines a pattern type variable
initially assigns abstract type symbol with open type bounds.
Later on, pattern type inference kicks in to sharpen the type
of the variable based on constraints imposed by the expected
type (ie, the type of scrutinee of the pattern.)
However, before inference does this, a `TypeRef` to the abstract
type symbol can be queried for its base type with respect to some
class, which leads to it populating an internal cache. This cache
becomes stale when the underlying symbol has its type mutated.
The repercussions of this meant that a subsequent call to `baseType`
gave the wrong result (`NoType`), which lead to an `asSeenFrom`
operation to miss out of substitution of a type variable. Note the
appearance of `A` in the old type errors in the enclosed test case.
This commit takes an approach similar to 286dafbd to invalidate
caches after the mutation. I've routed both bandaids through the
same first aid kit: I'm sure over time we'll add additional calls
to this method, and additional cache invalidations within it.
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SD-33 Consider methods annotated @CallerSensitive not safe to inline
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Fixes https://github.com/scala/scala-dev/issues/33
Methods annotated `sun.reflect.CallerSensitive` should not be inlined,
their implementation may depend on the call stack.
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Fixes https://github.com/scala/scala-dev/issues/39
When inlining an indyLambda closure instantiation into a class, and
the closure type is serializable, make sure that the target class has
the synthetic `$deserializeLambda$` method.
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Until now, there was no good place to hold various utility functions
that are used acrosss the backend / optimizer.
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Topic/completely 2.11
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Recover part of the identifier that preceded the cursor from the
source, rather than from the name in the `Select` node, which might
contains an encoded name that differs in length from the one in
source.
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I'm pretty sure the `isSynthetic` call added in 854de25ee6 should
instead be `isArtifact`, so that's what I've implemented here.
`isSynthetic` used to also filter out error symbols, which are
created with the flags `SYNTHETIC | IS_ERROR`. I've added an addition
test for `isError`, which was needed to keep the output of
`presentation/scope-completion-import` unchanged.
The checkfile for `presentation/callcc-interpreter` is modified to
add the additional completion proposals: synthetic companion objects.
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When `foo.<TAB>`, assume you don't want to see the inherited members
from Any_ and universally applicable extension methods like
`ensuring`. Hitting <TAB> a second time includes them in the results.
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For the SHIFT-impaired: you can just write everything in lowercase,
(whisper-case?) and we'll try to DWYM.
We treat capital letters that you *do* enter as significant, they
can't match a lower case letter in an identifier.
Modelled after IntellIJ's completion.
I still don't fall into this mode if you enter an exact prefix of
a candidate, but we might consider changing that.
```
scala> classOf[String].typ<TAB>
getAnnotationsByType getComponentType getDeclaredAnnotationsByType getTypeName getTypeParameters
scala> classOf[String].typN<TAB>
scala> classOf[String].getTypeName
res3: String = java.lang.String
scala> def foo(s: str<TAB>
scala> def foo(s: String
String StringBuffer StringBuilder StringCanBuildFrom StringContext StringFormat StringIndexOutOfBoundsException
scala> def foo(s: string<TAB>
scala> def foo(s: String
String StringBuffer StringBuilder StringCanBuildFrom StringContext StringFormat StringIndexOutOfBoundsException
```
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This is just too useful to leave on the cutting room floor.
```
scala> classOf[String].enclo<TAB>
scala> classOf[String].getEnclosing
getEnclosingClass getEnclosingConstructor getEnclosingMethod
scala> classOf[String].simpl<TAB>
scala> classOf[String].getSimpleName
type X = global.TTWD<TAB>
scala> type X = global.TypeTreeWithDeferredRefCheck
```
I revised the API of `matchingResults` as it was clunky to reuse
the filtering on accessibility and term/type-ness while providing
a custom name matcher.
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Trying harder to keep the synthetic interpretter wrapper classes
behind the curtain
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This makes life easier for clients of these APIs, we use this
to avoid passing this around in the wrapper result `TypeMembers`.
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The old implementation is still avaiable under a flag, but we'll
remove it in due course.
Design goal:
- Push as much code in src/interactive as possible to enable reuse
outside of the REPL
- Don't entangle the REPL completion with JLine. The enclosed test
case drives the REPL and autocompletion programatically.
- Don't hard code UI choices, like how to render symbols or
how to filter candidates.
When completion is requested, we wrap the entered code into the
same "interpreter wrapper" synthetic code as is done for regular
execution. We then start a throwaway instance of the presentation
compiler, which takes this as its one and only source file, and
has a classpath formed from the REPL's classpath and the REPL's
output directory (by default, this is in memory).
We can then typecheck the tree, and find the position in the synthetic
source corresponding to the cursor location. This is enough to use
the new completion APIs in the presentation compiler to prepare
a list of candidates.
We go to extra lengths to allow completion of partially typed
identifiers that appear to be keywords, e.g `global.def` should offer
`definitions`.
Two secret handshakes are included; move the the end of the line,
type `// print<TAB>` and you'll see the post-typer tree.
`// typeAt 4 6<TAB>` shows the type of the range position within
the buffer.
The enclosed unit test exercises most of the new functionality.
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Transcript paste mode invites the user to keep typing like
regular paste mode, but really you must enter more transcript.
This matters if the script ends in the middle of incomplete
code that the user wants to complete by hand.
Previously,
```
scala> scala> def f() = {
// Detected repl transcript paste: ctrl-D to finish.
// Replaying 1 commands from transcript.
scala> def f() = {
scala> scala> def f() = {
// Detected repl transcript paste: ctrl-D to finish.
| }
// Replaying 1 commands from transcript.
scala> def f() = {
}
f: ()Unit
```
Now,
```
scala> scala> def f() = {
// Detected repl transcript. Paste more, or ctrl-D to finish.
// Replaying 1 commands from transcript.
scala> def f() = {
| 42
| }
f: ()Int
scala> f()
res0: Int = 42
```
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The classic banner is available under -Dscala.repl.power.banner=classic.
```
scala> :power
Power mode enabled. :phase is at typer.
import scala.tools.nsc._, intp.global._, definitions._
Try :help or completions for vals._ and power._
```
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SI-9388 Fix Range behavior around Int.MaxValue
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terminalElement (the element _after_ the last one!) was used to terminate foreach loops and sums of non-standard instances of Numeric. Unfortunately, this could result in the end wrapping around and hitting the beginning again, making the first element bad.
This patch fixes the behavior by altering the loop to end after the last element is encountered. The particular flavor was chosen out of a few possibilities because it gave the best microbenchmarks on both large and small ranges.
Test written. While testing, a bug was also uncovered in NumericRange, and was also fixed. In brief, the logic around sum is rather complex since division is not unique when you have overflow. Floating point has its own complexities, too.
Also updated incorrect test t4658 that insisted on incorrect answers (?!) and added logic to make sure it at least stays self-consistent, and fixed the range.scala test which used the same wrong (overflow-prone) formula that the Range collection did.
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Fix NPE in PagedSeq.slice at end of seq
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