Add alternate path to DOT_PRODUCT_3/4 for use_fast_dot_product that skips all the status register stuff and just remaps inf to qnan
Add OPCODE_TO_SINGLE to replace the CONVERT_F32_F64 - CONVERT_F64_F32 sequence we used to emit with the idea that a backend could implement a more correct rounding behavior if possible on its arch
Remove some impossible sequences like MUL_HI_I8/I16, MUL_ADD_F32, DIV_V128. These instructions have no equivalent in PPC. Many other instructions are unused/dead code and should be removed to make the x64 backend a better reference for future ones
Add backend_flags to Instr. Basically, flags field that a backend can use for whatever it wants when generating code.
Add backend instr flag to x64 that tells it to not generate code for an instruction. this allows sequences to consume subsequent instructions
Generate actual x64 code for VSL instruction instead of using callnativesafe
Detect repeated COMPARE instructions w/ identical operands and reuse the results in FLAGS if so. this eliminates a ton of garbage compare/set instructions.
If a COMPARE instructions destination is stored to context with no intervening instruction and no additional uses besides the store, do setx [ctx address]
Detect prefetchw and use it in CACHE_CONTROL if prefetch for write is requested instead of doing prefetch to all cache levels
Fixed an accident in an earlier commit by me, VECTOR_DENORMFLUSH was not being emitted at all, so denormal inputs to MUL_ADD_V128 were not becoming zero and outputs from DOT_PRODUCT_X were not either. I believe this introduced a bug into RDR where a wagon wouldnt spawn? (https://discord.com/channels/308194948048486401/308207592482668545/1000443975817252874)
Compute fresx in double precision using RECIP_F64 and then round to single instead of doing (double)(1.0f / (float)value), matching original behavior better
Refactor some of ppc_emit_fpu, much of the InstrEmit function are identical except for whether they round to single or not
Added "tail emitters" to X64Emitter. These are callbacks that get invoked with their label and the X64Emitter after the epilog code. This allows us to move cold code out of the critical path and in the future place constant pools near functions
guest_to_host_thunk/host_to_guest_thunk now gets directly rel32 called, instead of doing a mov
Add X64BackendContext structure, represents data before the start of the PPCContext
Instead of doing branchless sequence, do a compare and jump to tail emitted code for address translation. This makes converting addresses a 3 uop affair in most cases.
Do qnan move for dot product in a tail emitter
Detect whether EFLAGS bits are independent variables for the current cpu (not really detecting it ehe, just checking if zen) and if so generate inc/dec for add/sub 1
Detect whether low 32 bits of membase are 0. If they are then we can use membasereg.cvt32() in place of immediate 0 in many places, particularly in stores
Detect LOAD MODIFY STORE pattern for context variables (currently only done for 64 bit ones) and turn them into modify [context ptr]. This is done for add, sub, and, or, xor, not, neg
Tail emit error handling for TRAP opcodes
Stub out unused trap opcodes like TRAP_TRUE_I32, TRAP_TRUE_I64, TRAP_TRUE_I16 (the call_true/return_true opcodes for these types are also probably unused)
Remove BackpropTruncations. It was poorly written and causes crashes on the game Viva pinata (https://discord.com/channels/308194948048486401/701111856600711208/1000249460451983420)
Use shuffle_ps instead of broadcastss, broadcastss is slower on many intel and amd processors and encodes to the same number of bytes as shuffle_ps
Detect and optimize away PERMUTE with a zero src2 and src3 in constant_propagation_pass instead of in the x64 sequence
For constant PERMUTE, do the Xor/And prior to LoadConstantXmm instead of in the generated code
Simplified code for PERMUTE
Added simplification rule that detects (lzcnt(x) >> log2(bitsizeof_x)) == ( x == 0)
Added set_srcN(value, idx) which can be used to set the nth source of an instruction, which makes more sense than having three different functions that only differ by the field they touch
Added Value::VisitValueOperands for iterating all Value operands an instruction has.
Add BackpropTruncations code to simplification_pass
Changed the (void**) dereferences of raw_context that are done to grab thread_state to instead reference PPCContext and the thread_state field. Moved the thread_state field to the tail of PPCContext.
Moved membase to the tail of PPCContext, since now it is reloaded very infrequently.
Rearranged PPCContext so that the condition registers come first (most accesses to them cant get SSA'd), moved lr and ctr to after gp regs since they are not accessed as much as the main gpregs. This way the most frequently
accessed registers will be accessible via a rel8 displacement instead of rel32 (ideally, we would have only certain CRs at the start, but xenia does pointer arithmetic on CR0's offset to get CRn)
Use alignas(64) to ensure PPCContext's padding
Map PPCContext specially so that the low 32 bits of the context register is 0xE0000000, for the 4k page offset check. Also allocate the page before, so that backends can store their own information that is not relevant to the PPCContext on that page and
reference that data in the generated asm via 8-bit signed displ or 32-bit signed displ. Currently this page is not being utilized, but I plan on stashing some data critical to the x86 backend there
Changed many wrong avx instructions, they worked but they were not intended for the data they operated on, meaning they transferred domains and caused 1-2 cycle stall each time
Added SimdDomain checking/deduction to X64Emitter.
Used SimdDomain code to fix a lot of float/int domain stalls
Use the low 32 bits of the context register instead of constant 0xE0000000 in ComputeAddress
Special path for SELECT_V128 with result of comparison that will use a blend instruction instead of and/or
Many HIR optimizations added in simp pass
A bunch of other stuff running out of time to write this msg
pack local_slot and constant in hir::Value
Instead of loading membase at the start of every function, just load it in HostToGuestThunk
vzeroupper in GuestToHostThunk before calling host function, and in HostToGuestThunk after calling function to prevent AVX dirty state slowdowns. In the future, check if CPU implements AVX as 128x2 and skip if so (https://john-h-k.github.io/VexTransitionPenalties.html)
Remove useless save/restore of ctx pointer, nothing modifies it and it prevents cpus from doing cross-function memory renaming (https://www.agner.org/forum/viewtopic.php?t=41). Could not remove the space on stack because of alignment issues, instead turned it into GUEST_SCRATCH64 which is a temporary that sequences may use
Reorder OpcodeInfo so that name is at offset 0, remove name and add GetOpcodeName function (name is only used for debug code, we are seperating frequently accessed data and rarely accessed data)
Add VECTOR_DENORMFLUSH opcode for handling output to DOT_PRODUCT and other opcodes that implicitly force denormal inputs/outputs to zero, will eventually use for implementing NJM
Rewrite sequences for LOAD_VECTOR_SHL/SHR. The mask with 0xf in it was pointless as all InstrEmit_ functions that create the load shift instructions do that in HIR. The tables are only used for nonzero constant inputs now, which are probably pretty rare. Instead of doing a shift and lookup, a base value is used for both in the constant table and adding/subtracting of the input is done
Reuse result of LoadVectorShl/Shr in InstrEmit_stvlx_, InstrEmit_stvrx_. We were previously calculating it twice which was contributing to the final sequences' fatness. Use OPCODE_SELECT instead of the sequence of or, andnot, and that it was using for merging
Add the proper unconditional denormal input flushing behavior to vfmadd, add it also to vfmsub (making the assumption it has the same behavior)
Remove constant propagation for DOT_PRODUCT_3/4
DOT_PRODUCT_3/4 now returns a vector with all four elements set to the result. (what we were doing before, truncating to float32 and then splatting didnt make any sense)
Add much more correct versions of DOT_PRODUCT_3/4, matching the Xb360's to 1 bit. Still needs work to be a perfect emulation.
Add constant folding for OPCODE_SELECT, OPCODE_INSERT, OPCODE_PERMUTE, OPCODE_SWIZZLE
Remove constant folding for DOT_PRODUCT
Removed the multibyte nop code I committed earlier, it doesnt help us much because nops are only used for debug stuff and its ugly and wouldnt survive in a pr to main
Check for AVX512BMI, use vpermb to shuffle if supported
Added recognition of impossible comparisons via NZM and optimize them away
Recognize (x + -y) and transform to (x - y) for constants
Recognize (~x ) + 1 and transform to -x
Check and transform comparisons if theyre semantically equal to others
Detect comparisons of single-bit values with their only possible non-zero value and transform to true/false tests
Transform ==0 to IS_FALSE, !=0 to IS_TRUE
Truncate to int8 if operand for IS_TRUE/IS_FALSE has a nzm of 1
Reduced code generated for SubDidCarry slightly
Add special case for InstrEmit_srawix if mask == 1
Cut down the code generated for trap instructions, instead of naive or'ing or compare results do a switch and select the best condition
Rerun simplification pass until no changes, as some optimizations will enable others to be done
Enable rel32 call optimization by default
Add special case to TYPE_INT64's EmitAnd for UINT_MAX mask. Do mov32 to 32 if detected to take advantage of implicit zero xt/reg renaming
Add helper function for skipping assignment defs in instr.
Add helper function for checking if an opcode is binary value type
Add several new optimizations to simplificationpass, plus weak NZM calculation code (better full evaluation of Z/NZ will be done later) .
List of optimizations:
If a value is anded with a bitmask that it was already masked against, reuse the old value (this cuts out most FPSCR update garbage, although it does cause a local variable to be allocated for the masked FPSCR and it still repeatedly stores the masked value to the context)
If masking a value that was or'ed against another check whether our mask only considers bits from one value or another. if so, change the operand to the OR input that actually matters
If the only usage of a rotate left's output is an AND against a mask that discards the bits that were rotated in change the opcode to SHIFT_LEFT
If masking against all ones, become an assign.
If XOR or OR against 0, become an assign (additional FPSCR codegen cleanup)
If XOR against all ones, become a NOT
Adding a direct CPUID check to x64_emitter for lzcnt, the version of xbyak we are using is skipping checking for lzcnt on all non-intel cpus, meaning we are generating the much slower bitscan path for AMD cpus.
the emitted asm as rel32 calls. Disabled by default, enabled via
resolve_rel32_guest_calls
detect whether cpu has fast jrcxz, fast loop/loope/loopne
much more thorough LoadConstantXMM
New cvar elide_e0_check that allows the backend to assume accesses via
the SP or TLS register will not cross into 0xe0 range
Add x64 codegen for Vector shift uint8
If has fast jrcxz use for some traptrue/breaktrue instructions
Use phat nops
Add cvar use_fast_dot_product, which uses a four instruction sequence
for both dot product instructions which ought to be equivalent. disabled
by default.
Replace a movzx after setae in both ComputeMemoryAddressOffset and ComputeMemoryAddress with a xor_ of eax prior to the cmp. This reduces the length in bytes of both sequences by 1, and should be a moderate ICache usage reduction thanks to the frequency of these sequences.
`pxor` is a zero-uop register-rename and `gf2p8affineqb dest, zero, int8`
is a very quick single-instruction way to use affine galois
transformations to fill a register with an immediate byte without
touching memory.
`vprolvd` is an almost 1:1 analog with this opcode and can be
conditionally emitted when the host supports AVX512{F,VL}.
Altivec docs say that `vrl{bhw}` masks the lower log2(n) bits of the
element-size.
[vprold](https://www.felixcloutier.com/x86/vprold:vprolvd:vprolq:vprolvq)
modulos the shift-value by the element size in bits, which is the same
as masking the lower log2(n) bits. So `vrlw` maps exactly to `vprold`.
[AltiVec](https://www.nxp.com/docs/en/reference-manual/ALTIVECPEM.pdf)
doc says that it just uses the lower `log2(n)` bits of the shift-amount
rather than the whole element-sized value. So there is no need to handle
an overflow. Also adjusts 64-bit literals to utilize the explicit
`UINT64_C` type.
In the `Int8` case of `VECTOR_SH{R,L}_V128`, when all the values are the
same, then a single-instruction `gf2p8affineqb` can be emitted that does
an int8-based arithmetic-shift, utilizing GF(8) arithmetic.
More info here:
https://wunkolo.github.io/post/2020/11/gf2p8affineqb-int8-shifting/
Also fixes the iteration-type for when detecting if all of the simd
lanes are the same value(was iterating `u16` and not `u8`)
Rather than having a huge list of if-statements that all do the same
thing, this preprocessor allows a more concise pattern to detecting if
the emit-flag is enabled as well as the correlated Xbyak flag that it
needs to check for to before allowing the feature-flag to be emitted.
Also moved the AVX-check to the beginning to early-out rather than do a
bunch of wasted work only to find out last that the host doesn't even
support AVX.
In the `Int8` case of `VECTOR_SHA_V128`, when all the values are the same, then a single-instruction `gf2p8affineqb` can be emitted that does an int8-based arithmetic-shift, utilizing GF(8) arithmetic.
More info here:
https://wunkolo.github.io/post/2020/11/gf2p8affineqb-int8-shifting/
As of now(Dec 2021): Tremont(Lakefield), Jasper Lake, Ice lake, Tigerlake, and Rocket Lake support GNFI.
Rather than having a single bool to conditionally detect haswell-level
instruction features. The granularity is increased with a new
`x64_extension_mask` where individual features within the x64 backend
can be turned on or off in a bit-mask manner. Since we have an ARM
backend on the horizon, I've added this to the new `x64`
configuration-group rather than `CPU`. This new pattern will hopefully
allow for testing to be more targetted to certain processor features and
allows the user to determine if they want certain features to be enabled
or disabled(such as avoiding BMI2 on certain AMD processors due to
pdep/pext being incredibly slow). The default configuration is to detect
and utilize all available features.
This addresses a JIT-issue in the case that the `src1` and `dest`
register are both the same. This issue only happens in the "generic"
x86 path but not in the BMI1-accelerated path.
Thanks Rick for the extensive debugging help.
When `src1` and `dest` were the same, then the `addc` instruction at
`82099A08` in title `584108FF` might emit the following assembly:
```
.text:82099A08 andc r11, r10, r11
|
| Jitted
|
V
00000000A0011B15 mov rbx,r10
00000000A0011B18 not rbx
00000000A0011B1B and rbx,rbx
```
This was due to the src1 operand and the destination register being the
same, which used to call the "else" case in the x64 emitter when it
needs to be handled explicitly due to register aliasing/allocation.
Addresses issue #1945
Fix the the case where src1 is constant and src2 is non-constant causing
an assert due to trying to call `.constant()` on the src2 operand.
Interfaces with an issue Gliniak was encountering where title `4D53082D`
encounters an assert. Also includes a BMI1-acceleration in the 64-bit
case where a temporary register is needed(the `and` x86 instruction only
supports immediate constants up to 32-bits).
In the case of having two register operands for `AndNot`, the `andn` instruction can be used when the host supports `BMI1`. `andn` only supports 32-bit and 64-bit operands, so some register up-casting is needed.
The `BMI1 feature` fits into the current pattern of `use_haswell_instructions` as BMI1 was only introduced in haswell.
Also moved the aliases to the end of the enum rather than interleave it with the bit definitions.
Implements the detection of some baseline `AVX512` subsets and some common aliases into `X64EmitterFeatureFlags`.
So far, `AVX512{F,VL,BW,DQ}` are the only subsets of `AVX512` that are detected with this PR since I anticipate these are the ones that will actually be used a lot in the x64 backend. Some aliases are also implemented such as `kX64EmitAVX512Ortho` which is `AVX512F` and `AVX512VL` combined which are the two subsets of AVX512 required to allow for `AVX512` operations upon `ymm` and `xmm` registers.
These aliases can possibly be collapsed since we could just always require `AVX512VL` to be supported to allow for _any_ kind of `AVX512` to be used since we will practically always want to use `AVX512` on `xmm` registers at the very least as there is no use-case where we want to use the 512-bit `zmm` registers exclusively.
Rather than using `n * 1024 * 1024`, this adds a convenient `_MiB`/`_KiB` user-literal to the new `literals.h` header to concisely describe units of memory in a much more readable way. Any other useful literals can be added to this header. These literals exist in the `xe::literals` namespace so they are opt-in, similar to `std::chrono` literals, and require a `using namespace xe::literals` statement to utilize it within the current scope.
I've done a pass through the codebase to replace trivial instances of `1024 * 1024 * ...` expressions being used but avoided anything that added additional casting complexity from `size_t` to `uint32_t` and such to keep this commit concise.
Just checking if the resulting mask is non-zero means we cannot allow this function to check for multiple features in parallel. A hypothetical computer that supports FMA but not AVX2 will return `true` if you try to call `IsFeatureEnabled(kX64EmitFMA | kX64EmitAVX2)`. We should make sure all the masked flags return `true` rather than check for non-zero.
This is ramping up to allow for particular subsets of AVX512 to be checked for in parallel with a single function call.
shm_unlink(name) is the proper way to close a shared memory in linux.
Prior to this, xenia was creating and not cleaning up shared memory handle
which would accumulate in /dev/shm. shm_unlink is the proper way of doing
this.
Add filename to CloseFileMappingHandle signature.
Add simple test to open and close.