| Commit message (Collapse) | Author | Age | Files | Lines |
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ProfileInfo
llvm-svn: 11309
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llvm-svn: 11308
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eventually allow Passes to use profiling information to direct them.
llvm-svn: 11294
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getElementTypes() is gone.
llvm-svn: 11228
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llvm-svn: 11179
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removeDeadNodes is called, only call it at the end of the pass being run.
This saves 1.3 seconds running DSA on 177.mesa (5.3->4.0s), which is
pretty big. This is only possible because of the automatic garbage
collection done on forwarding nodes.
llvm-svn: 11178
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llvm-svn: 11177
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llvm-svn: 11176
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DSGraphs while they are forwarding. When the last reference to the forwarding
node is dropped, the forwarding node is autodeleted. This should simplify
removeTriviallyDead nodes, and is only (efficiently) possible because we are
using an ilist of dsnodes now.
llvm-svn: 11175
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G == 0
llvm-svn: 11174
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llvm-svn: 11173
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llvm-svn: 11171
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Rename stats from dsnode -> dsa
Add a new stat
llvm-svn: 11167
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llvm-svn: 11166
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llvm-svn: 11157
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complete rewrite of load-vn will make it a bit faster. This changes speeds up
the gcse pass (which uses load-vn) from 25.45s to 0.42s on the testcase in
PR209.
I've also verified that this gives the exact same results as the old one.
llvm-svn: 11132
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which causes big reindentation. While I'm at it, I fix the fixme by removing
some dead code.
llvm-svn: 11131
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llvm-svn: 11130
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llvm-svn: 11128
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llvm-svn: 11126
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fixes the crash in 176.gcc.
llvm-svn: 11033
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llvm-svn: 11027
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llvm-svn: 11024
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llvm-svn: 11022
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llvm-svn: 11021
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llvm-svn: 11015
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llvm-svn: 11006
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llvm-svn: 11005
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llvm-svn: 11001
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llvm-svn: 11000
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moving it to the start of removeDeadNodes. This speeds up DSA by 2s on perlbmk
from 41s
llvm-svn: 10999
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scalar
map. This saves 5s in the TD pass, from 22->17s on perlbmk
llvm-svn: 10998
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iterate over
the globals directly. This doesn't save any substantial time, however, because the
globals graph only contains globals!
llvm-svn: 10997
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function to find the globals, iterate over all of the globals directly. This
speeds the function up from 14s to 6.3s on perlbmk, reducing DSA time from
53->46s.
llvm-svn: 10996
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timers by default
llvm-svn: 10993
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This reduces the number of nodes allocated, then immediately merged and DNE'd
from 2193852 to 1298049. unfortunately this only speeds DSA up by ~1.5s (of
53s), because it's spending most of its time waddling through the scalar map :(
llvm-svn: 10992
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Also, use RC::merge when possible, reducing the number of nodes allocated, then immediately merged away from 2985444 to 2193852 on perlbmk.
llvm-svn: 10991
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You gotta love spurious
llvm-svn: 10990
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llvm-svn: 10989
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it to be off. If it looks like it's completely unnecessary after testing, I
will remove it completely (which is the hope).
* Callers of the DSNode "copy ctor" can not choose to not copy links.
* Make node collapsing not create a garbage node in some cases, avoiding a
memory allocation, and a subsequent DNE.
* When merging types, allow two functions of different types to be merged
without collapsing.
* Use DSNodeHandle::isNull more often instead of DSNodeHandle::getNode() == 0,
as it is much more efficient.
*** Implement the new, more efficient reachability cloner class
In addition to only cloning nodes that are reachable from interesting
roots, this also fixes the huge inefficiency we had where we cloned lots
of nodes, only to merge them away immediately after they were cloned.
Now we only actually allocate a node if there isn't one to merge it into.
* Eliminate the now-obsolete cloneReachable* and clonePartiallyInto methods
* Rewrite updateFromGlobalsGraph to use the reachability cloner
* Rewrite mergeInGraph to use the reachability cloner
* Disable the scalar map scanning code in removeTriviallyDeadNodes. In large
SCC's, this is extremely expensive. We need a better data structure for the
scalar map, because we really want to scan the unique node handles, not ALL
of the scalars.
* Remove the incorrect SANER_CODE_FOR_CHECKING_IF_ALL_REFERRERS_ARE_FROM_SCALARMAP code.
* Move the code for eliminating integer nodes from the trivially dead
eliminator to the dead node eliminator.
* removeDeadNodes no longer uses removeTriviallyDeadNodes, as it contains a
superset of the node removal power.
* Only futz around with the globals graph in removeDeadNodes if it is modified
llvm-svn: 10987
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efficient in the case where a function calls into the same graph multiple times
(ie, it either contains multiple calls to the same function, or multiple calls
to functions in the same SCC graph)
llvm-svn: 10986
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llvm-svn: 10985
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llvm-svn: 10984
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cloneReachableSubgraph, though this support is currently disabled.
llvm-svn: 10970
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map was only used to implement a marginal GlobalsGraph optimization, and it
actually slows the analysis down (due to the overhead of keeping it), so just
eliminate it entirely.
llvm-svn: 10955
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llvm-svn: 10954
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llvm-svn: 10953
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in terms of it.
Though clonePartiallyInto is not cloning partial graphs yet, this change
dramatically speeds up inlining of graphs with many scalars. For example,
this change speeds up the BU pass on 253.perlbmk from 69s to 36s, because
it avoids iteration over the scalar map, which can get pretty large.
llvm-svn: 10951
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llvm-svn: 10948
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llvm-svn: 10781
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