Commit graph

15 commits

Author SHA1 Message Date
Andreas Kling
4046f65ae7 LibJS: Treat class definition parts as strict
Record the generator's strictness for each emitted bytecode
instruction, instead of applying the executable's final strictness to
every instruction during assembly. This lets class heritage and
computed element names run with strict assignment semantics inside
sloppy scripts.

Also create the class self-binding as a strict immutable binding,
matching ClassDefinitionEvaluation, and cover strict class heritage and
computed names in the runtime tests.
2026-05-22 01:56:57 +02:00
Andreas Kling
a5ba300186 LibJS: Split dynamic environment lookups from coordinates
Add separate bytecode instructions for environment lookups that must
stay dynamic, such as eval- and with-sensitive scopes. Keep the
coordinate variants for eagerly resolved declarative environments so
their operands can be treated as immutable at runtime.

This removes cached-coordinate mutation from the interpreter paths and
updates the bytecode expectations for the new dynamic lookup opcodes.
2026-05-18 20:35:14 +02:00
Andreas Kling
1ce4242b4b LibJS: Store bytecode cache indexes instead of pointers
Store compact cache indexes in bytecode instructions instead of raw
pointers to the executable cache vectors. This keeps the instruction
stream independent from heap addresses and removes pointer fixups when
materializing cached bytecode.

Resolve the mutable cache pointers at execution time from the current
Executable. Bytecode test expectations are updated for the smaller cache
operands and resulting instruction offsets.
2026-05-18 20:35:14 +02:00
Martin Chrástek
29dc4df4e5 LibJS: Fix var declarations in direct eval inside catch blocks
The Annex B.3.4 spec change requires distinguishing
catch clause environments from other lexical environments
when checking for var/let conflicts in eval, which is now tracked
via a flag on DeclarativeEnvironment and propagated through the
CreateLexicalEnvironment bytecode instruction from the Rust codegen.
2026-05-15 10:01:08 +02:00
Andreas Kling
21cbfb3cb1 LibJS: Drop source ranges from bytecode source maps
Store source map locations as bytecode offset, line, and column.
Runtime consumers only emit the start line and column, so source end
positions and source text offsets do not need to be carried through
Executable source maps, bytecode cache serialization, or the Rust FFI.

Keep SourceCode's internal position cache able to track source text
offsets so callers can still translate source offsets to line and
column pairs when needed. Hash dump-bytecode IDs from the name, first
source position, and bytecode size instead of source slices that need
end offsets.

Bump the bytecode cache format version for the slimmer serialized
source map entry shape.
2026-05-14 09:41:03 +02:00
Andreas Kling
51758f3022 LibJS: Make bytecode register allocator O(1)
Generator::allocate_register used to scan the free pool to find the
lowest-numbered register and then Vec::remove it, making every
allocation O(n) in the size of the pool. When loading https://x.com/
on my Linux machine, we spent ~800ms in this function alone!

This logic only existed to match the C++ register allocation ordering
while transitioning from C++ to Rust in the LibJS compiler, so now
we can simply get rid of it and make it instant. :^)

So drop the "always hand out the lowest-numbered free register" policy
and use the pool as a plain LIFO stack. Pushing and popping the back
of the Vec are both O(1), and peak register usage is unchanged since
the policy only affects which specific register gets reused, not how
aggressively.
2026-04-21 13:59:55 +02:00
Andreas Kling
c301a21960 LibJS: Skip preserving zero-argument call callees
The callee and this-value preservation copies only matter while later
argument expressions are still being evaluated. For zero-argument calls
there is nothing left to clobber them, so we can keep the original
operand and let the interpreter load it directly.

This removes the hot Mov arg0->reg pattern from zero-argument local
calls and reduces register pressure.
2026-04-13 18:29:43 +02:00
Andreas Kling
3a08f7b95f LibJS: Drop dead entry GetLexicalEnvironment loads
Teach the Rust bytecode generator to treat the synthetic entry
GetLexicalEnvironment as a removable prologue load.

We still model reg4 as the saved entry lexical environment during
codegen, but assemble() now deletes that load when no emitted
instruction refers to the saved environment register. This keeps the
semantics of unwinding and environment restoration intact while letting
empty functions and other simple bodies start at their first real
instruction.
2026-04-13 18:29:43 +02:00
Andreas Kling
bc4379983f LibJS: Improve bytecode executable dump format
Add a metadata header showing register count, block count, local
variable names, and the constants table. Resolve jump targets to
block labels (e.g. "block1") instead of raw hex addresses, and add
visual separation between basic blocks.

Make identifier and property key formatting more concise by using
backtick quoting and showing base_identifier as a trailing
parenthetical hint that joins the base and property names.

Generate a stable name for each executable by hashing the source
text it covers (stable across codegen changes). Named functions
show as "foo$9beb91ec", anonymous ones as "$43362f3f". Also show
the source filename, line, and column.
2026-03-20 00:51:23 -05:00
InvalidUsernameException
1d011f432b Tests/LibJS: Rebaseline bytecode tests with trailing newline diff
These tests pass when running them normally, but they produce a diff
when rebaselining. We should probably find out where this is coming
from, but for now just rebaseline all affected tests to make bytecode
diffs of upcoming commits clean.
2026-03-08 15:01:07 +01:00
Andreas Kling
54a1a66112 LibJS: Store cache pointers directly in bytecode instructions
Instead of storing a u32 index into a cache vector and looking up the
cache at runtime through a chain of dependent loads (load Executable*,
load vector data pointer, multiply index, add), store the actual cache
pointer as a u64 directly in the instruction stream.

A fixup pass (Executable::fixup_cache_pointers()) runs after Executable
construction in both the Rust and C++ pipelines, walking the bytecode
and replacing each index with the corresponding pointer.

The cache pointer type is encoded in Bytecode.def (e.g.
PropertyLookupCache*, GlobalVariableCache*) so the fixup switch is
auto-generated by the Python Op code generator, making it impossible
to forget updating the fixup when adding new cached instructions.

This eliminates 3-4 dependent loads on every inline cache access in
both the C++ interpreter and the assembly interpreter.
2026-03-08 10:27:13 +01:00
Andreas Kling
234203ed9b LibJS: Ensure deterministic ordering in scope analysis and codegen
The scope collector uses HashMaps for identifier groups and variables,
which means their iteration order is non-deterministic. This causes
local variable indices and function declaration instantiation (FDI)
bytecode to vary between runs.

Fix this by sorting identifier group keys alphabetically before
assigning local variable indices, and sorting vars_to_initialize by
name before emitting FDI bytecode.

Also make register allocation deterministic by always picking the
lowest-numbered free register instead of whichever one happens to be
at the end of the free list.

This is preparation for bringing in a new source->bytecode pipeline
written in Rust. Checking for regressions is significantly easier
if we can expect identical output from both pipelines.
2026-02-24 09:39:42 +01:00
Andreas Kling
ec2f4e4a7b LibJS: Wire NewClass to ClassBlueprint
Replace the ClassExpression const& reference in the NewClass
instruction with a u32 class_blueprint_index. The interpreter now
reads from the ClassBlueprint stored on the Executable and calls
construct_class() instead of the AST-based create_class_constructor().

Literal field initializers (numbers, booleans, null, strings, negated
numbers) are used directly in construct_class() without creating an
ECMAScriptFunctionObject, avoiding function creation overhead for
common field patterns like `x = 0` or `name = "hello"`.

Set class_field_initializer_name on SharedFunctionInstanceData at
codegen time for statically-known field keys (identifiers, private
identifiers, string literals, and numeric literals). For computed
keys, the name is set at runtime in construct_class().

ClassExpression AST nodes are no longer referenced from bytecode.
2026-02-11 23:57:41 +01:00
Andreas Kling
029708b2cf Tests: Rebaseline bytecode tests after handler/finalizer collapse
The exception handler dump format changed from showing both handler
and finalizer offsets to showing only a single handler offset.
2026-02-09 16:35:39 +01:00
Andreas Kling
7f89158d20 LibJS: Replace implicit environment stack with explicit registers
Replace the saved_lexical_environments stack in ExecutionContextRareData
with explicit register-based environment tracking. Environments are now
stored in registers and restored via SetLexicalEnvironment, making the
environment flow visible in bytecode.

Key changes:
- Add GetLexicalEnvironment and SetLexicalEnvironment opcodes
- CreateLexicalEnvironment takes explicit parent and dst operands
- EnterObjectEnvironment stores new environment in a dst register
- NewClass takes an explicit class_environment operand
- Remove LeaveLexicalEnvironment opcode (instead: SetLexicalEnvironment)
- Remove saved_lexical_environments from ExecutionContextRareData
- Use a reserved register for the saved lexical environment to avoid
  dominance issues with lazily-emitted GetLexicalEnvironment
2026-02-09 16:35:39 +01:00