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10809 Commits

Author SHA1 Message Date
Chris Lattner
e07d786aa6 turn things like:
if (X == 0 || X == 2)

...where the comparisons and branches are in different blocks... into a switch
instruction.  This comes up a lot in various programs, and works well with
the switch/switch merging code I checked earlier.  For example, this testcase:

int switchtest(int C) {
  return C == 0 ? f(123) :
         C == 1 ? f(3123) :
         C == 4 ? f(312) :
         C == 5 ? f(1234): f(444);
}

is converted into this:
        switch int %C, label %cond_false.3 [
                 int 0, label %cond_true.0
                 int 1, label %cond_true.1
                 int 4, label %cond_true.2
                 int 5, label %cond_true.3
        ]

instead of a whole bunch of conditional branches.

Admittedly the code is ugly, and incomplete.  To be complete, we need to add
br -> switch merging and switch -> br merging.  For example, this testcase:

struct foo { int Q, R, Z; };
#define A (X->Q+X->R * 123)
int test(struct foo *X) {
  return A  == 123 ? X1() :
        A == 12321 ? X2():
        (A == 111 || A == 222) ? X3() :
        A == 875 ? X4() : X5();
}

Gets compiled to this:
        switch int %tmp.7, label %cond_false.2 [
                 int 123, label %cond_true.0
                 int 12321, label %cond_true.1
                 int 111, label %cond_true.2
                 int 222, label %cond_true.2
        ]
...
cond_false.2:           ; preds = %entry
        %tmp.52 = seteq int %tmp.7, 875         ; <bool> [#uses=1]
        br bool %tmp.52, label %cond_true.3, label %cond_false.3

where the branch could be folded into the switch.

This kind of thing occurs *ALL OF THE TIME*, especially in programs like
176.gcc, which is a horrible mess of code.  It contains stuff like *shudder*:

#define SWITCH_TAKES_ARG(CHAR) \
  (   (CHAR) == 'D' \
   || (CHAR) == 'U' \
   || (CHAR) == 'o' \
   || (CHAR) == 'e' \
   || (CHAR) == 'u' \
   || (CHAR) == 'I' \
   || (CHAR) == 'm' \
   || (CHAR) == 'L' \
   || (CHAR) == 'A' \
   || (CHAR) == 'h' \
   || (CHAR) == 'z')

and

#define CONST_OK_FOR_LETTER_P(VALUE, C)                 \
  ((C) == 'I' ? SMALL_INTVAL (VALUE)                    \
   : (C) == 'J' ? SMALL_INTVAL (-(VALUE))               \
   : (C) == 'K' ? (unsigned)(VALUE) < 32                \
   : (C) == 'L' ? ((VALUE) & 0xffff) == 0               \
   : (C) == 'M' ? integer_ok_for_set (VALUE)            \
   : (C) == 'N' ? (VALUE) < 0                           \
   : (C) == 'O' ? (VALUE) == 0                          \
   : (C) == 'P' ? (VALUE) >= 0                          \
   : 0)

and

#define LEGITIMIZE_ADDRESS(X,OLDX,MODE,WIN)                     \
{                                                               \
  if (GET_CODE (X) == PLUS && CONSTANT_ADDRESS_P (XEXP (X, 1))) \
    (X) = gen_rtx (PLUS, SImode, XEXP (X, 0),                   \
                   copy_to_mode_reg (SImode, XEXP (X, 1)));     \
  if (GET_CODE (X) == PLUS && CONSTANT_ADDRESS_P (XEXP (X, 0))) \
    (X) = gen_rtx (PLUS, SImode, XEXP (X, 1),                   \
                   copy_to_mode_reg (SImode, XEXP (X, 0)));     \
  if (GET_CODE (X) == PLUS && GET_CODE (XEXP (X, 0)) == MULT)   \
    (X) = gen_rtx (PLUS, SImode, XEXP (X, 1),                   \
                   force_operand (XEXP (X, 0), 0));             \
  if (GET_CODE (X) == PLUS && GET_CODE (XEXP (X, 1)) == MULT)   \
    (X) = gen_rtx (PLUS, SImode, XEXP (X, 0),                   \
                   force_operand (XEXP (X, 1), 0));             \
  if (GET_CODE (X) == PLUS && GET_CODE (XEXP (X, 0)) == PLUS)   \
    (X) = gen_rtx (PLUS, Pmode, force_operand (XEXP (X, 0), NULL_RTX),\
                   XEXP (X, 1));                                \
  if (GET_CODE (X) == PLUS && GET_CODE (XEXP (X, 1)) == PLUS)   \
    (X) = gen_rtx (PLUS, Pmode, XEXP (X, 0),                    \
                   force_operand (XEXP (X, 1), NULL_RTX));      \
  if (GET_CODE (X) == SYMBOL_REF || GET_CODE (X) == CONST       \
           || GET_CODE (X) == LABEL_REF)                        \
    (X) = legitimize_address (flag_pic, X, 0, 0);               \
  if (memory_address_p (MODE, X))                               \
    goto WIN; }

and others.  These macros get used multiple times of course.  These are such
lovely candidates for macros, aren't they?  :)

This code also nicely handles LLVM constructs that look like this:

  if (isa<CastInst>(I))
   ...
  else if (isa<BranchInst>(I))
   ...
  else if (isa<SetCondInst>(I))
   ...
  else if (isa<UnwindInst>(I))
   ...
  else if (isa<VAArgInst>(I))
   ...

where the isa can obviously be a dyn_cast as well.  Switch instructions are a
good thing.

llvm-svn: 11870
2004-02-26 07:13:46 +00:00
Chris Lattner
ac94c441b6 No need to clear the map here, it will always be empty
llvm-svn: 11868
2004-02-26 05:21:21 +00:00
Chris Lattner
2b315a3577 Fix a bug in the densemap that was killing the local allocator, and probably
other clients.  The problem is that the nullVal member was left to the default
constructor to initialize, which for int's does nothing (ie, leaves it unspecified).

To get a zero value, we must use T().  It's C++ wonderful? :)

llvm-svn: 11867
2004-02-26 05:00:15 +00:00
Alkis Evlogimenos
dbac382e2a Remove .micro references as those files no longer exist and add some more recent Makefile additions to the list
llvm-svn: 11866
2004-02-26 04:14:10 +00:00
Chris Lattner
2072f8f14f Fix typeo. grow() cannot shrink storage. clear() should really nuke storage
llvm-svn: 11865
2004-02-26 04:07:12 +00:00
Chris Lattner
9e55e31b2d Fix typo
llvm-svn: 11864
2004-02-26 03:45:03 +00:00
Chris Lattner
7990e4dcd0 The node doesn't have to be _no_ node flags, it just has to be complete and
not have any globals.

llvm-svn: 11863
2004-02-26 03:43:43 +00:00
Chris Lattner
948fffa8a2 Add _more_ functions
llvm-svn: 11862
2004-02-26 03:43:08 +00:00
Chris Lattner
dc004a7269 We have this snazzy link-time optimizer. How about we start using it? This
removes some cruft from 255.vortex, cleaning up after DAE and IPCP, which
do horrible, beautiful, things to vortex.

llvm-svn: 11861
2004-02-26 03:34:30 +00:00
Chris Lattner
6a3796eaf9 Fix some warnings, some of which were spurious, and some of which were real
bugs.  Thanks Brian!

llvm-svn: 11859
2004-02-26 01:20:02 +00:00
Misha Brukman
3d1720cdb9 Instructions to call and return from functions.
llvm-svn: 11858
2004-02-26 00:37:12 +00:00
Brian Gaeke
df334b4e7f One B00g fixed.
llvm-svn: 11857
2004-02-26 00:08:25 +00:00
Alkis Evlogimenos
a198c0148c Temporarily comment out asserts as they break things. I will uncomment
them when all the problem areas are fixed.

llvm-svn: 11855
2004-02-25 23:56:36 +00:00
Alkis Evlogimenos
ea886b1853 Fix typo. I wonder how this actually worked.
llvm-svn: 11854
2004-02-25 23:47:17 +00:00
Alkis Evlogimenos
bca40014e2 Complete the SPEC_ROOT and USE_SPEC to SPEC2000_ROOT and USE_SPEC200 rename.
llvm-svn: 11853
2004-02-25 23:41:32 +00:00
Chris Lattner
9fd0c48f80 Two changes:
1. Functions do not make things incomplete, only variables
 2. Constant global variables no longer need to be marked incomplete, because
    we are guaranteed that the initializer for the global will be in the
    graph we are hacking on now.  This makes resolution of indirect calls happen
    a lot more in the bu pass, supports things like vtables and the C counterparts
    (giant constant arrays of function pointers), etc...

Testcase here: test/Regression/Analysis/DSGraph/constant_globals.ll

llvm-svn: 11852
2004-02-25 23:36:08 +00:00
Chris Lattner
5f39fa8149 New testcase
llvm-svn: 11851
2004-02-25 23:34:04 +00:00
Chris Lattner
7d273bc532 When building local graphs, clone the initializer for constant globals into each
local graph that uses the global.

llvm-svn: 11850
2004-02-25 23:31:02 +00:00
Alkis Evlogimenos
af42cbf42f Fix bugs found with recent addition of assertions in
MRegisterInfo::is{Physical,Virtual}Register.

llvm-svn: 11849
2004-02-25 23:21:52 +00:00
Chris Lattner
9fe3bf296d Simplify the dead node elimination stuff
Make the incompleteness marker faster by looping directly over the globals
instead of over the scalars to find the globals

Fix a bug where we didn't mark a global incomplete if it didn't have any
outgoing edges.  This wouldn't break any current clients but is still wrong.

llvm-svn: 11848
2004-02-25 23:08:00 +00:00
Chris Lattner
a9f67b5ab8 Add a bunch more functions
llvm-svn: 11847
2004-02-25 23:06:40 +00:00
Chris Lattner
d99d965f8c Try harder to get symbol info
llvm-svn: 11846
2004-02-25 23:06:30 +00:00
Brian Gaeke
aba4159be8 Represent va_list in interpreter as a (ec-stack-depth . var-arg-index)
pair, and look up varargs in the execution stack every time, instead of
just pushing iterators (which can be invalidated during callFunction())
around.  (union GenericValue now has a "pair of uints" member, to support
this mechanism.) Fixes Bug 234.

llvm-svn: 11845
2004-02-25 23:01:48 +00:00
Brian Gaeke
4f0a829a68 Great sparc renaming fallout IV: Sparc --> SparcV9.
llvm-svn: 11844
2004-02-25 22:09:36 +00:00
Alkis Evlogimenos
0865239405 Duh, forgot to close the parenthesis.
llvm-svn: 11843
2004-02-25 22:07:14 +00:00
Alkis Evlogimenos
5b45bf1940 Add assert to isPhysicalRegister and isVirtualRegister to fail when
passed the special 'register' 0.

llvm-svn: 11842
2004-02-25 22:04:28 +00:00
Alkis Evlogimenos
2caa729f02 Remove asssert since it is breaking cases that it shouldn't.
llvm-svn: 11841
2004-02-25 22:01:06 +00:00
Alkis Evlogimenos
f1516015af Add DenseMap template and actually use it for for mapping virtual regs
to objects.

llvm-svn: 11840
2004-02-25 21:55:45 +00:00
Chris Lattner
24c4dd56b5 Add a new pass, run internalize first
llvm-svn: 11839
2004-02-25 21:35:13 +00:00
Chris Lattner
0dfe43a53a Add a new pass
llvm-svn: 11838
2004-02-25 21:35:02 +00:00
Chris Lattner
64cbbad38e Add prototype
llvm-svn: 11837
2004-02-25 21:34:51 +00:00
Chris Lattner
2a13dd5706 My faith in programmers has been found to be totally misplaced. One would
assume that if they don't intend to write to a global variable, that they
would mark it as constant.  However, there are people that don't understand
that the compiler can do nice things for them if they give it the information
it needs.

This pass looks for blatently obvious globals that are only ever read from.
Though it uses a trivially simple "alias analysis" of sorts, it is still able
to do amazing things to important benchmarks.  253.perlbmk, for example,
contains several ***GIANT*** function pointer tables that are not marked
constant and should be.  Marking them constant allows the optimizer to turn
a whole bunch of indirect calls into direct calls.  Note that only a link-time
optimizer can do this transformation, but perlbmk does have several strings
and other minor globals that can be marked constant by this pass when run
from GCCAS.

176.gcc has a ton of strings and large tables that are marked constant, both
at compile time (38 of them) and at link time (48 more).  Other benchmarks
give similar results, though it seems like big ones have disproportionally
more than small ones.

This pass is extremely quick and does good things.  I'm going to enable it
in gccas & gccld.  Not bad for 50 SLOC.

llvm-svn: 11836
2004-02-25 21:34:36 +00:00
Misha Brukman
6a13621948 SparcV8 regs are really 32-bit, not 64! Thanks, Chris.
llvm-svn: 11835
2004-02-25 21:03:02 +00:00
Misha Brukman
f12c1e5a55 Clean up the tablegen descriptions for SparcV8.
llvm-svn: 11834
2004-02-25 21:02:21 +00:00
Misha Brukman
c8801eb5be Fix the SparcV8 register definitions that were imported from PPC template.
llvm-svn: 11833
2004-02-25 21:00:05 +00:00
Misha Brukman
a4b3e0f01b SparcV8 has different types of instructions, but F1 is only used for CALL.
llvm-svn: 11832
2004-02-25 20:52:20 +00:00
Brian Gaeke
0f7bfb8ef5 Note that this test is currently expected to fail.
llvm-svn: 11831
2004-02-25 20:34:02 +00:00
Chris Lattner
ccae3f6d60 Add an assertion
llvm-svn: 11830
2004-02-25 19:37:44 +00:00
Chris Lattner
7c05e5d4d8 Fix failures in 099.go due to the cfgsimplify pass creating switch instructions
where there did not used to be any before

llvm-svn: 11829
2004-02-25 19:30:19 +00:00
Brian Gaeke
5166390fd2 SparcV8 skeleton
llvm-svn: 11828
2004-02-25 19:28:19 +00:00
Brian Gaeke
c6de948cd1 Great renaming part II: Sparc --> SparcV9 (also includes command-line options and Makefiles)
llvm-svn: 11827
2004-02-25 19:08:12 +00:00
Brian Gaeke
965df0b91b Great renaming: Sparc --> SparcV9
llvm-svn: 11826
2004-02-25 18:44:15 +00:00
Chris Lattner
4f09004dff Add a bunch more functions used by perlbmk
llvm-svn: 11824
2004-02-25 17:43:20 +00:00
John Criswell
cf4474a67b Updated to use llc to generate CBE code.
llvm-svn: 11823
2004-02-25 17:15:02 +00:00
Chris Lattner
1dfc1b9629 Substantial improvements and cleanups for the release notes. We were missing
a bunch of stuff!  :)

llvm-svn: 11822
2004-02-25 16:36:51 +00:00
Chris Lattner
04f116953d Fix incorrect debug code
llvm-svn: 11821
2004-02-25 15:15:04 +00:00
Chris Lattner
ab9628ad18 Teach the instruction selector how to transform 'array' GEP computations into X86
scaled indexes.  This allows us to compile GEP's like this:

int* %test([10 x { int, { int } }]* %X, int %Idx) {
        %Idx = cast int %Idx to long
        %X = getelementptr [10 x { int, { int } }]* %X, long 0, long %Idx, ubyte 1, ubyte 0
        ret int* %X
}

Into a single address computation:

test:
        mov %EAX, DWORD PTR [%ESP + 4]
        mov %ECX, DWORD PTR [%ESP + 8]
        lea %EAX, DWORD PTR [%EAX + 8*%ECX + 4]
        ret

Before it generated:
test:
        mov %EAX, DWORD PTR [%ESP + 4]
        mov %ECX, DWORD PTR [%ESP + 8]
        shl %ECX, 3
        add %EAX, %ECX
        lea %EAX, DWORD PTR [%EAX + 4]
        ret

This is useful for things like int/float/double arrays, as the indexing can be folded into
the loads&stores, reducing register pressure and decreasing the pressure on the decode unit.
With these changes, I expect our performance on 256.bzip2 and gzip to improve a lot.  On
bzip2 for example, we go from this:

10665 asm-printer           - Number of machine instrs printed
   40 ra-local              - Number of loads/stores folded into instructions
 1708 ra-local              - Number of loads added
 1532 ra-local              - Number of stores added
 1354 twoaddressinstruction - Number of instructions added
 1354 twoaddressinstruction - Number of two-address instructions
 2794 x86-peephole          - Number of peephole optimization performed

to this:
9873 asm-printer           - Number of machine instrs printed
  41 ra-local              - Number of loads/stores folded into instructions
1710 ra-local              - Number of loads added
1521 ra-local              - Number of stores added
 789 twoaddressinstruction - Number of instructions added
 789 twoaddressinstruction - Number of two-address instructions
2142 x86-peephole          - Number of peephole optimization performed

... and these types of instructions are often in tight loops.

Linear scan is also helped, but not as much.  It goes from:

8787 asm-printer           - Number of machine instrs printed
2389 liveintervals         - Number of identity moves eliminated after coalescing
2288 liveintervals         - Number of interval joins performed
3522 liveintervals         - Number of intervals after coalescing
5810 liveintervals         - Number of original intervals
 700 spiller               - Number of loads added
 487 spiller               - Number of stores added
 303 spiller               - Number of register spills
1354 twoaddressinstruction - Number of instructions added
1354 twoaddressinstruction - Number of two-address instructions
 363 x86-peephole          - Number of peephole optimization performed

to:

7982 asm-printer           - Number of machine instrs printed
1759 liveintervals         - Number of identity moves eliminated after coalescing
1658 liveintervals         - Number of interval joins performed
3282 liveintervals         - Number of intervals after coalescing
4940 liveintervals         - Number of original intervals
 635 spiller               - Number of loads added
 452 spiller               - Number of stores added
 288 spiller               - Number of register spills
 789 twoaddressinstruction - Number of instructions added
 789 twoaddressinstruction - Number of two-address instructions
 258 x86-peephole          - Number of peephole optimization performed

Though I'm not complaining about the drop in the number of intervals.  :)

llvm-svn: 11820
2004-02-25 07:00:55 +00:00
Chris Lattner
dccf14825c * Make the previous patch more efficient by not allocating a temporary MachineInstr
to do analysis.

*** FOLD getelementptr instructions into loads and stores when possible,
    making use of some of the crazy X86 addressing modes.

For example, the following C++ program fragment:

struct complex {
    double re, im;
    complex(double r, double i) : re(r), im(i) {}
};
inline complex operator+(const complex& a, const complex& b) {
    return complex(a.re+b.re, a.im+b.im);
}
complex addone(const complex& arg) {
    return arg + complex(1,0);
}

Used to be compiled to:
_Z6addoneRK7complex:
        mov %EAX, DWORD PTR [%ESP + 4]
        mov %ECX, DWORD PTR [%ESP + 8]
***     mov %EDX, %ECX
        fld QWORD PTR [%EDX]
        fld1
        faddp %ST(1)
***     add %ECX, 8
        fld QWORD PTR [%ECX]
        fldz
        faddp %ST(1)
***     mov %ECX, %EAX
        fxch %ST(1)
        fstp QWORD PTR [%ECX]
***     add %EAX, 8
        fstp QWORD PTR [%EAX]
        ret

Now it is compiled to:
_Z6addoneRK7complex:
        mov %EAX, DWORD PTR [%ESP + 4]
        mov %ECX, DWORD PTR [%ESP + 8]
        fld QWORD PTR [%ECX]
        fld1
        faddp %ST(1)
        fld QWORD PTR [%ECX + 8]
        fldz
        faddp %ST(1)
        fxch %ST(1)
        fstp QWORD PTR [%EAX]
        fstp QWORD PTR [%EAX + 8]
        ret

Other programs should see similar improvements, across the board.  Note that
in addition to reducing instruction count, this also reduces register pressure
a lot, always a good thing on X86.  :)

llvm-svn: 11819
2004-02-25 06:13:04 +00:00
Chris Lattner
10d08a2955 Add a helper to create an addressing mode given all of the pieces.
llvm-svn: 11818
2004-02-25 06:01:07 +00:00
Chris Lattner
c0e2bc0250 add an inefficient way of folding structure and constant array indexes together
into a single LEA instruction.  This should improve the code generated for
things like X->A.B.C[12].D.

The bigger benefit is still coming though.  Note that this uses an LEA instruction
instead of an add, giving the register allocator more freedom.  We should probably
never generate ADDri32's.

llvm-svn: 11817
2004-02-25 03:45:50 +00:00