Introduces `GlobalFunctionRegistry` and `GlobalAnalyzedRegistry` type
aliases to clarify the usage of `HashMap`s for storing global functions
and their analyzed versions. This change also refactors the
`LambdaCollector` and `Optimizer` to use these new aliases, improving
code readability and maintainability.
The Binder and its helper functions have been updated to accept and
propagate a `Diagnostics` struct. This allows for better error reporting
during the binding phase, enabling the compiler to continue processing
even after encountering errors and collect all issues before halting.
The `BoundKind::Error` node and `StaticType::Error` are introduced as
"poison" nodes/types. These nodes indicate that an error occurred during
compilation, preventing further valid processing of that specific AST
fragment but allowing the compiler to continue with other parts of the
code.
The `Parser` has also been updated to return a `Diagnostics` struct,
enabling it to report errors during the initial parsing stage while
still attempting to build a partial AST. This adheres to the same error
recovery strategy.
Introduces type specialization for reactive pipeline nodes and their
data buffers. This eliminates the overhead of generic `Value` enums and
`SharedValueSeries` when dealing with known scalar or record types.
The architecture shifts buffer instantiation from the VM to the runtime
(RTL), leveraging type information from the AST. A new `out_type` field
is added to `BoundKind::Pipe` to store the static type of the pipeline's
output, determined by the type checker.
This enables the creation of specialized `RingBuffer<T>` and
`SharedRecordSeries` (for Struct-of-Arrays layout) when the output type
is known, significantly improving memory usage and processing speed for
time-series data, especially in financial analysis.
Introduces a new `Pipe` node to the Abstract Syntax Tree (AST).
This node represents a functional composition pattern, allowing
for chaining of operations.
The changes include:
- Defining the `Pipe` variant in `BoundKind` and `UntypedKind`.
- Implementing parsing logic for the `pipe` keyword.
- Adding handling for the `Pipe` node in various compiler passes
(analyzer, binder, captures, dumper, macros, optimizer, TCO,
type checker).
- Including a placeholder implementation for `Pipe` execution in the
VM.
- Updating integration tests to use the new `pipe` syntax.
This commit refactors the internal representation of `BoundKind::Record`
to store a `RecordLayout` and a `Vec` of values, rather than a `Vec` of
key-value pairs. This change simplifies the representation and improves
efficiency by decoupling the record's structure from its specific values
during compilation and analysis.
The `RecordLayout` now defines the structure of the record, and the
values are stored in a separate vector, ordered according to the layout.
This allows for better optimization and type checking, as the record's
shape is explicitly defined and immutable once created.
The `SubstitutionMap::new_inner()` method provides a more robust way to
create nested substitution maps, ensuring that only global substitutions
are inherited. This prevents potential issues with overlapping local and
upvalue addresses in nested scopes, such as during lambda inlining.
This change also includes:
- A new `try_fold_record` method in `folder.rs` to optimize record
literals into constant values.
- Updates to `inliner.rs` to recognize `Value::Record` for inlining.
- Various test cases to verify record optimization and constant folding.
Introduces a new `RecordLayout` system for efficient and type-safe
record handling.
Key changes:
- `RecordLayout` struct with `O(1)` field lookup using FMap
optimization.
- Field accessors (`.name`) are now first-class callable values.
- Parser recognizes dot-prefixed identifiers as field accessors.
- Binder and TypeChecker handle field accessors.
- Optimizer transforms field accessor calls into specialized `GetField`
nodes.
- VM executes `GetField` efficiently by directly accessing record
values.
- Adds a new `records.myc` example showcasing record features.
- Improves comparison logic for records to use pointer equality for
layout.
Removes unused `flatten_tuple` function from optimizer utilities. The
functionality was moved to the `Folder` struct, making it more
contextually appropriate. This change streamlines the utility module and
improves code organization.
Remove redundant tuple flattening logic in `map_params_to_args`. The
existing logic for iterating through tuple elements already correctly
handles nested tuples and records by recursively calling
`map_params_to_args`.
Introduces the `Inliner` struct to encapsulate logic related to value
and function inlining. This improves code organization and readability
within the optimizer engine.
Key changes include:
- Moving `is_inlinable_value` to the `Inliner` struct.
- Extracting beta-reduction preparation logic into
`Inliner::prepare_beta_reduction`.
- Moving parameter slot collection to
`Inliner::collect_parameter_slots`.
- Introducing `flatten_tuple` to a new `utils` module, used by both
`Folder` and `Inliner`.
Extract common AST manipulation and folding logic into a new Folder
struct. This improves code organization and reusability. The Optimizer
now delegates these tasks to the Folder.
This commit reorganizes the optimizer code by creating a new `optimizer`
module. The `Optimizer` struct and its related logic remain in
`optimizer/optimizer.rs`, while `SubstitutionMap` and `UsageInfo` are
moved to `optimizer/substitution_map.rs`.
This change improves code organization and makes it easier to manage the
optimizer's components.