It has been a long time coming that FEX no longer needed to leak IR
implementation details to the frontend, this was legacy due to IR CI and
various other problems.
Now that the last bits of IR leaking has been removed, move everything
that we can internally to the implementation.
We still have a couple of minor details in the exposed IR.h to the
frontend, but these are limited to a few enums and some thunking struct
information rather than all the implementation details.
No functional change with this, just moving headers around.
FEXCore includes was including an FHU header which would result in
compilation failure for external projects trying to link to libFEXCore.
Moves it over to fix this, it was the only FHU usage in FEXCore/include
NFC
This is no longer necessary to be part of the public API. Moves the
header internally.
Needed to pass through `IsAddressInCodeBuffer` from CPUBackend through
the Context object, but otherwise no functional change.
In the old case:
* if we take the branch, 1 instruction
* if we don't take the branch, 3 instruction
* branch predictor fun
* 3 instructions of icache pressure
In the new case:
* unconditionally 2 instructions
* no branch predictor dependence
* 2 instructions of icache pressure
This should not be non-neglibly worse, and it simplifies things for RA.
Signed-off-by: Alyssa Rosenzweig <alyssa@rosenzweig.io>
exhaustively checked against the Intel pseudocode since this is tricky:
def intel(AL, CF, AF):
old_AL = AL
old_CF = CF
CF = False
if (AL & 0x0F) > 9 or AF:
Borrow = AL < 6
AL = (AL - 6) & 0xff
CF = old_CF or Borrow
AF = True
else:
AF = False
if (old_AL > 0x99) or old_CF:
AL = (AL - 0x60) & 0xff
CF = True
return (AL & 0xff, CF, AF)
def fex(AL, CF, AF):
AF = AF | ((AL & 0xf) > 9)
CF = CF | (AL > 0x99)
NewCF = CF | (AF if (AL < 6) else CF)
AL = (AL - 6) if AF else AL
AL = (AL - 0x60) if CF else AL
return (AL & 0xff, NewCF, AF)
for AL in range(256):
for CF in [False, True]:
for AF in [False, True]:
ref = intel(AL, CF, AF)
test = fex(AL, CF, AF)
print(AL, "CF" if CF else "", "AF" if AF else "", ref, test)
assert(ref == test)
Signed-off-by: Alyssa Rosenzweig <alyssa@rosenzweig.io>
Based on https://www.righto.com/2023/01/
New implementation is branchless, which is theoretically easier to RA. It's also
massively simpler which is good for a demon opcode.
Signed-off-by: Alyssa Rosenzweig <alyssa@rosenzweig.io>
In 64-bit mode, the LOOP instruction's RCX register usage is 64-bit or
32-bit.
In 32-bit mode, the LOOP instruction's RCX register usage is 32-bit or
16-bit.
FEX wasn't handling the 16-bit case at all which was causing the LOOP
instruction to effectively always operate at 32-bit size. Now this is
correctly supported, and it also stops treating the operation as 64-bit.
Take e.g a forward rep movsb copy from addr 0 to 1, the expected
behaviour since this is a bytewise copy is:
before: aaabbbb...
after: aaaaaaa...
but by copying in 32-byte chunks we end up with:
after: aaaabbbb...
due to the self overwrites not occuring within a single 32 bit copy.
When TSO is disabled, vector LDP/STP can be used for a two
instruction 32 byte memory copy which is significantly faster than the
current byte-by-byte copy. Performing two such copies directly after
oneanother also marginally increases copy speed for all sizes >=64.
I was looking at some other JIT overheads and this cropped up as some
overhead. Instead of materializing a constant using mov+movk+movk+movk,
load it from the named vector constant array.
In a micro-benchmark this improved performance by 34%.
In bytemark this improved on subbench by 0.82%
Missed this instruction when implementing rdtscp. Returns the same ID
result in a register just like rdtscp, but without the cycle counter
results. Doesn't touch any flags just like rdtscp.
x86 has a few prefetch instructions.
- prefetch - One of two classic 3DNow! instructions
- Prefetch in to L1 data cache
- prefetchw - One of two classic 3DNow! instructions
- Implies prefetch in to L1 data cache
- Prefetch cacheline with intent to write and exclusive ownership
- prefetchnta
- Prefetch non-temporal data in respect to /all/ cache levels
- Assumes inclusive caches?
- prefetch{t0,t1,t2}
- Prefetch data with respect to each cache level
- T0 = L1 and higher
- T1 = L2 and higher
- T2 = L3 and higher
**Some silly duplicates**
- prefetchwt1
- Duplicate of prefetchw but explicitly L1 data cache
- prefetch_exclusive
- Duplicate of prefetch
God Of War 2018 uses prefetchw as a hint for exclusive ownership of the
cacheline in some very aggressive spin-loops. Let's implement the
operations to help it along.
can help a lot of x86 code because x86 is 2-address and a64 is 3-address, so x86
ends up with piles of movs that end up dead after translation
It's not a win across the board because our RA isn't aware of tied registers so
sometimes we regress moves. But it's a win on average, and the RA bits can be
improved with time.
Signed-off-by: Alyssa Rosenzweig <alyssa@rosenzweig.io>