Add asserts to check for overflow in Score * int multiplication.
There is no overflow in current master, but it would be easy to
create one as the scale of the current eval does not leave many
spare bits. For instance, adding the following unused variables
in master at the end of evaluate() (line 882 of evaluate.cpp)
overflows:
Score s1 = score * 4; // no overflow
Score s2 = score * 5; // overflow
Assertion failed: (eg_value(result) == (i * eg_value(s))),
function operator*, file ./types.h, line 336.
Same md5 checksum as current master for non debug compiles.
No functional change.
This patch tweaks some pawn values to favor flank attacks.
The first part of the patch increases the midgame psqt values of external pawns to launch more attacks (credits to user GuardianRM for this idea), while the second part increases the endgame connection values for pawns on upper ranks.
Passed STC:
LLR: 2.95 (-2.94,2.94) [0.00,4.00]
Total: 34997 W: 6328 L: 6055 D: 22614
and LTC:
LLR: 2.96 (-2.94,2.94) [0.00,4.00]
Total: 13844 W: 1832 L: 1650 D: 10362
Bench: 5884767
Anonymous struct inside anonymous unions are a GCC extension.
This patch uses named structs to stick to the C+11 standard.
Avoids a string of warnings on the Clang compiler.
Non functional change (same bench and same MD5 signature,
so compiled code is exactly the same as in current master)
Rename shift_bb() to shift(), and DELTA_S to SOUTH, etc.
to improve code readability, especially in evaluate.cpp
when they are used together:
old b = shift_bb<DELTA_S>(pos.pieces(PAWN))
new b = shift<SOUTH>(pos.pieces(PAWN))
While there fix some small code style issues.
No functional change.
Use the following transformations:
- to check that A is included in B, testing "(A & ~B) == 0" is faster
than "(A & B) == A"
- to remove the intersection of A and B from A, doing "A &= ~B;" is as
fast as "if (A & B) A &= ~B;" but is simpler.
Overall, the simpler patch version is 0.3% than current master.
No functional change.
Instrumentation shows that in make_score(mg, eg) calls, the mg value is
zero in 25,9% of the calls while the eg value is zero in 36,8% of the
calls.
Swapping the internal fields of mg and eg in the internal
representation of Score allows the compiler to optimize away the shift
in (eg << 16) + mg in more cases, thus resulting in a 0.3% speed-up
overall.
No functional change
Rescales the king danger variables in evaluate_king() to
suppress the KingDanger[] array. This avoids the cost of
the memory accesses to the array and simplifies the non-linear
transformation used.
Full credits to "hxim" for the seminal idea and implementation,
see pull request #786.
https://github.com/official-stockfish/Stockfish/pull/786
Passed STC:
LLR: 2.95 (-2.94,2.94) [-3.00,1.00]
Total: 9649 W: 1829 L: 1689 D: 6131
Passed LTC:
LLR: 2.95 (-2.94,2.94) [-3.00,1.00]
Total: 53494 W: 7254 L: 7178 D: 39062
Bench: 6116200
If the opponent has a cramped position, opening a file often
helps him/her to exchange pieces, so it makes sense to reduce
the space bonus if there are open files.
Credits: Leonardo Ljubičić for the strategic idea, Alain Savard for the
implementation of the open files calculation, "CrunchyNYC" for the
compensation of the numerator.
STC:
LLR: 2.96 (-2.94,2.94) [0.00,5.00]
Total: 49112 W: 9239 L: 8900 D: 30973
LTC:
LLR: 2.95 (-2.94,2.94) [0.00,5.00]
Total: 89415 W: 12014 L: 11601 D: 65800
Bench: 7591630
This greately simplifies usage because hides to the
search the implementation specific CheckInfo.
This is based on the work done by Marco in pull request #716,
implementing on top of it the ideas in the discussion: caching
the calls to slider_blockers() in the CheckInfo structure,
and simplifying the slider_blockers() function by removing its
first parameter.
Compared to master, bench is identical but the number of calls
to slider_blockers() during bench goes down from 22461515 to 18853422,
hopefully being a little bit faster overall.
archlinux, gcc-6
make profile-build ARCH=x86-64-bmi2
50 runs each
bench:
base = 2356320 +/- 981
test = 2403811 +/- 981
diff = 47490 +/- 1828
speedup = 0.0202
P(speedup > 0) = 1.0000
perft 6:
base = 175498484 +/- 429925
test = 183997959 +/- 429925
diff = 8499474 +/- 469401
speedup = 0.0484
P(speedup > 0) = 1.0000
perft 7 (but only 10 runs):
base = 185403228 +/- 468705
test = 188777591 +/- 468705
diff = 3374363 +/- 476687
speedup = 0.0182
P(speedup > 0) = 1.0000
$ ./pyshbench ../Stockfish/master ../Stockfish/test 20
run base test diff
...
base = 2501728 +/- 182034
test = 2532997 +/- 182034
diff = 31268 +/- 5116
speedup = 0.0125
P(speedup > 0) = 1.0000
No functional change.
Give more weight to the pawns number and
the vertical king distance in evaluate_initiative()
Passed STC:
LLR: 2.96 (-2.94,2.94) [0.00,5.00]
Total: 26729 W: 5067 L: 4825 D: 16837
and LTC:
LLR: 2.95 (-2.94,2.94) [0.00,5.00]
Total: 60480 W: 8338 L: 8016 D: 44126
Bench: 8295162
Resolves#594
This change in the Makefile restores the possibility to compile
Stockfish on Mac OS X 10.9 and 10.10 after the C++11 has been merged.
To use the default (fastest) settings, compile with:
make build ARCH=x86-64-modern
To test the clang settings, compile with
make build ARCH=x86-64-modern COMP=clang
Beware that the clang settings may provide a slightly slower (6%)
executable.
Backported from master.
No functional change
Resolves#275
This change in the Makefile restores the possibility to compile
Stockfish on Mac OS X 10.9 and 10.10 after the C++11 has been merged.
To use the default (fastest) settings, compile with:
make build ARCH=x86-64-modern
To test the clang settings, compile with
make build ARCH=x86-64-modern COMP=clang
Beware that the clang settings may provide a slightly slower (6%)
executable.
No functional change
Resolves#275
Use the max_threat() helper function to estimate more precisely the
best hanging piece threat. Also retunes the Threat array using SPSA.
STC
LLR: 2.95 (-2.94,2.94) [-1.50,4.50]
Total: 7598 W: 1596 L: 1468 D: 4534
LTC
LLR: 2.97 (-2.94,2.94) [0.00,6.00]
Total: 7896 W: 1495 L: 1350 D: 5051
Bench: 6816504
Resolves#73
We add a penalty for each pawn which is not protected by another pawn
of the same color.
Passed both short TC
LLR: 2.96 (-2.94,2.94) [-1.50,4.50]
Total: 12107 W: 2411 L: 2272 D: 7424
And long TC
LLR: 2.96 (-2.94,2.94) [0.00,6.00]
Total: 9204 W: 1605 L: 1458 D: 6141
bench: 7682173