This commit introduces the `DefDestructure` bound kind and modifies the
binder, analyzer, type checker, and VM to support destructuring in `def`
statements. This allows for pattern matching on the right-hand side of a
`def` to bind multiple variables.
The parser has been updated to accept patterns in `def` statements. The
binder now handles `UntypedKind::Def` with a `target` pattern, rather
than a simple `name`. This enables destructuring.
The `Gemini.md` documentation has been updated to include a new rule for
incremental development.
The `again` keyword is introduced to facilitate explicit recursive
function calls.
It is restricted to tail-call positions to prevent dead code and ensure
TCO
optimization. Type checking is enhanced to validate argument types
against
function parameters.
The Analyzer has been refactored to decorate `TypedNode`s with their
purity and recursion status. This involves creating a new `AnalyzedNode`
type and a `NodeMetrics` struct to hold this information. The `Analyzer`
now returns an `AnalyzedNode` instead of a separate `Analysis` struct.
This change lays the groundwork for future optimizations and analysis
passes.
The `is_tail` field on the `BoundKind::Call` node was an intermediate
representation for tail-call optimization and is no longer needed as a
distinct field. The TCO pass now embeds this information directly into
the `RuntimeMetadata` of the `ExecNode`, which is the VM's internal AST.
This simplifies the `BoundKind::Call` structure and removes redundant
information.
The `TailCall` variant has been merged into `Call` by adding an
`is_tail` boolean field. This simplifies the AST by reducing the number
of node variants and makes it easier to handle tail call optimization.
The `tco.rs` module is responsible for setting this flag when a call
occurs in tail position.
Implement PartialEq for BoundKind to allow for structural equality
checks during optimization. This enables the optimizer to terminate
early when a node no longer changes.
Also, implement PartialEq for Value to facilitate comparisons between
different Value variants.
This commit renames `Map` to `Record` and updates all related AST nodes,
binders, type checkers, and runtime values to reflect this change. This
is a semantic change to better align with common programming language
terminology.
Introduce `BoundKind::Parameter` to represent function parameters.
Modify `Binder` to correctly handle parameters within lambda
definitions, ensuring they are only defined within function scopes.
Update `LambdaCollector` to register the body of lambdas as templates
for global definitions.
Adjust `Dumper` to accurately represent lambda parameters.
Update `Specializer` and `TCO` to handle the new `BoundKind::Parameter`.
Refactor `Call` and `TailCall` to use a single `args` node, often a
tuple.
Adjust type signatures in RTL to use `StaticType::Tuple` for function
parameters.
The `Get`, `DefLocal`, and `DefGlobal` bound kinds now store the symbol
name associated with the variable. This information is useful for
debugging and provides more context in the compiled output.
Introduces the `TypeChecker` struct and its associated `TypeContext` for
performing static type analysis on the abstract syntax tree.
This change includes:
- A new `type_checker.rs` module.
- Integration of `TypeChecker` into the `Environment::compile` method.
- Updates to `Environment` to manage global types.
- Renaming `bound_nodes.rs`'s `BoundNode` to `TypedNode` to reflect its
type-checked nature.
- Refinements in binder and macro expansion to accommodate type
information.
The Binder has been refactored to simplify its internal types and reduce
redundancy.
Key changes include:
- Removed StaticType from LocalInfo, as it's not strictly needed for the
binder.
- Simplified `define` in CompilerScope to not take a StaticType.
- Removed StaticType from upvalues in FunctionCompiler.
- Adjusted global mappings to store only the index, not the type.
- Updated BoundKind to use a generic type parameter `T` for metadata,
defaulting to `()` for untyped bound nodes.
- Introduced `BoundNode` and `TypedNode` type aliases for clarity.
- Minor adjustments to dumper and VM to accommodate the new generic
BoundKind.
This commit introduces support for AST macros and templates, enabling
users to define and use custom, reusable components within the visual
DSL.
Key changes include:
- A new `MacroRegistry` to manage macro definitions.
- A `MacroExpander` to process macro calls and expand templates.
- A `MacroEvaluator` trait for evaluating expressions during expansion.
- The `Expansion` node in `BoundKind` to preserve the original macro
call and its expanded form for debugging.
- Updates to the `Binder`, `Dumper`, and `UpvalueAnalyzer` to handle the
new macro constructs.
- New examples demonstrating various macro functionalities like
`unless`, splicing, and nested macros.
Introduce a `debug_mode` flag to the `Environment` and a new `run_debug`
method. This method uses a `TracingObserver` to log the VM's execution
flow, including node evaluation and scope state changes. This allows for
detailed inspection of script execution.
The `BoundKind` enum now also includes a `display_name` method for
better log readability.
The `UpvalueAnalyzer` now correctly identifies which lambdas capture
which variable declarations, rather than just marking declarations that
need boxing. This information is stored in a `capture_map`.
The `Binder` has been updated to use this new `capture_map` instead of a
`HashSet` of boxed declarations. The `DefLocal` node in `bound_nodes.rs`
now stores a `captured_by` field, which is a list of lambda identities
that capture the local variable.
A new `dumper` module has been added to provide a human-readable
representation of the bound AST, including information about captured
variables.
The `VM` has been updated to use the `captured_by` field to determine if
a local variable needs to be stored in a `Cell`, rather than relying on
a boolean `is_boxed` flag.
An example script `extreme_capture.myc` has been added to test deep
nesting and variable capture.
A new "Dump AST" button has been added to the UI, which uses the new
`Dumper` to display the bound AST.
The binder now uses an `UpvalueAnalyzer` to identify local variables
that are captured by nested functions. These identified variables are
marked with `is_boxed: true` during `DefLocal` node creation. The VM
then uses this flag to wrap such variables in a `Value::Cell` (using
`Rc<RefCell<_>>`) to ensure they can be mutated across function calls.
feat: Introduce boxing for captured variables
Add UpvalueAnalyzer to identify variables captured by nested lambdas.
Modify Binder to use the analyzer and mark captured local variables for
boxing.
Update BoundKind::DefLocal to include an `is_boxed` flag.
Update VM to box captured variables when they are defined.
Add tests for upvalue capture detection.
This commit introduces support for tuple and map literals in the AST.
Tuples are now represented by `UntypedKind::Tuple` and maps by
`UntypedKind::Map`.
The `Binder` has been updated to correctly handle these new node types
and infer their types.
The `VM` now also supports evaluating tuple and map literals.
This commit replaces `Arc<Mutex<T>>` with `Rc<RefCell<T>>` for managing
shared mutable state within the AST and VM. This change is primarily an
internal refactoring to leverage Rust's standard library more
effectively for single-threaded scenarios, improving performance by
avoiding the overhead of mutexes.
The following types and their usage have been updated:
- `Environment.global_names` and `Environment.global_values`
- `Binder.globals`
- `bound_nodes::BoundKind::Lambda.body` (now `Rc<Node>`)
- `ast::types::NodeIdentity` (now `Rc<NodeIdentity>`)
- `ast::types::Value::List`, `Value::Record`, `Value::Function`,
`Value::Object`, `Value::Cell`
- `ast::nodes::Scope` and `ast::nodes::Context`
- `ast::vm::Closure.function_node` and `Closure.upvalues`
- `ast::vm::VM.globals`
This change does not alter the external behavior of the library but
streamlines internal data management.
This commit introduces `StaticType` and enhances the `Binder` to perform
basic type checking during the binding phase.
Key changes include:
- **`StaticType` enum:** Represents static types such as `Any`, `Void`,
`Bool`, `Int`, `Float`, `Text`, `List`, `Record`, and `Function`.
- **`Node<K, T>`:** The generic `Node` now includes a `ty` field to
store its inferred static type.
- **Binder enhancements:**
- `CompilerScope` now stores `LocalInfo` containing the variable's
slot and `StaticType`.
- `FunctionCompiler` stores upvalues with their associated
`StaticType`.
- `Binder::bind` now returns `Node<BoundKind, StaticType>`,
propagating type information.
- Type checking is added for `If` conditions and `Assign`
operations.
- `Def` nodes now infer and store the type of the defined variable.
- **`Value::static_type()`:** A new method to determine the `StaticType`
of a `Value`.
- **Environment modifications:** `global_names` now stores `(u32,
StaticType)` to associate global variables with their types.
- **Parser modifications:** The `ty` field of nodes is initialized to
`()` by default.
- **VM modifications:** `VM::run` and `VM::eval` now operate on
`Node<BoundKind, StaticType>`.
- **Tests:** Added basic evaluation and type error tests.
feat: Add StaticType and type checking
Introduces `StaticType` enum and integrates it into the AST. The binder
now performs type checking during compilation, ensuring that expressions
conform to expected types, especially for control flow structures like
`if`. This lays the groundwork for static type analysis and error
reporting.
Adds a new `Binder` struct that traverses the AST and resolves variable
references to concrete `Address` types (Local, Upvalue, Global). This
information is crucial for the Virtual Machine's execution phase.
Introduces the `BoundKind` enum to represent the AST after binding.
The `VM` is updated to handle `BoundKind` nodes and execute the bound
AST.
It now manages a call stack, local variables, and closures for function
calls and upvalue capturing.
The `Environment` struct is enhanced to manage global variables and
provide
a unified interface for parsing, binding, and executing scripts. It also
includes basic standard library functions.