Policy evaluation at scale needs to be able to set memory limits
so that a bad policy does not hog memory or to ensure that
policy evaluation itself does not use too much memory which could
cause other components to suffer.
This PR introduces capability to set and enforce global memory limits.
It also lays the groundwork for enabling per evaluation limits in future.
Once a global memory limit is set, Regorus maintains per thread counters
to track memory activity (allocation, deallocation) of a thread.
These counters are periodically flushed to global memory counters.
Per thread counters avoid the contention that updating global counters
on each alloc/free would cause.
Policy evaluation periodically checks these counters and raises errors
if allocated memory has exceeded the configured limit.
Currently memory limit capability is exposed only to FFI and C#.
Also update mimalloc to v2.2.6
Signed-off-by: Anand Krishnamoorthi <anakrish@microsoft.com>
Lints are added (deny) at crate level.
In each offending file, the failing lints are explicitly allowed.
Each file will be fixed in subsequent PRs.
Signed-off-by: Anand Krishnamoorthi <anakrish@microsoft.com>
- ensure both run-to-completion and suspendable rule execution stop evaluating
bodies once one succeeds so later else branches are skipped
- test cases
Signed-off-by: Anand Krishnamoorthi <anakrish@microsoft.com>
- treat set subtraction in RVM the same as the interpreter by supporting
Value::Set operands in sub_values
- emit internal-only builtin names for set union/intersection and register
handlers so compiled bytecode resolves without exposing new Rego builtins
- add regression coverage for literal set difference/intersection
(x/y from failure.rego) in tests/rvm/rego/cases/sets.yaml
Signed-off-by: Anand Krishnamoorthi <anakrish@microsoft.com>
- emit AssertCondition for equality-only assignment plans (outside soft-assert mode) so rules like `0 = 1` fail under the VM just like the interpreter
- let comprehension bodies consume assertion failures by advancing or exiting their iteration context, both in run-to-completion and suspendable execution
Signed-off-by: Anand Krishnamoorthi <anakrish@microsoft.com>
Mirror interpreter implementation:
- use builtins::must_cache to determine whether builtin must be cached.
- reuse cached value when applicable
- clear the VM’s builtin cache whenever execution state resets to avoid leaking values across runs
- add a YAML regression for rand.intn set comprehensions and re-enable the rand cases in the OPA test suite
Signed-off-by: Anand Krishnamoorthi <anakrish@microsoft.com>
code fixes:
- compiler: add `is_var_bound_in_current_scope` and use it in destructuring so
only the innermost scope blocks rebinding while still catching duplicates
within that block.
- rvm: treat `not` over undefined operands as a successful negation to match
interpreter semantics.
tests/aci:
migrate YAML cases to `data.policy.rule` queries with `{x: …}`
bindings, expand the harness to run interpreter plus RVM (with optional
skipping), align results to the binding format, add readable timing output,
and support a `--filter` flag for targeting cases.
Signed-off-by: Anand Krishnamoorthi <anakrish@microsoft.com>
* feat!: add Rego Virtual Machine (RVM) implementation
This commit introduces a register-based virtual machine for executing Rego
policies with bytecode-style instructions. Unlike the existing tree-walking
interpreter, the RVM compiles policies into instruction sequences that operate
on virtual registers, offering better performance and optimization potential.
Core Components:
Instruction Set Architecture:
- Define instruction types for data operations, control flow, and builtins
- Implement instruction parameter encoding and display formatting
- Add instruction parser with comprehensive test coverage
Virtual Machine Engine:
- Register-based execution model with program counter management
- Loop execution supporting iterators, comprehensions, and quantifiers
- Function call handling with argument evaluation and context management
- Rule evaluation with default value resolution and virtual data support
- Arithmetic and comparison operation implementations
Program Representation:
- Program listing builder with instruction sequencing
- Rule tree construction for organizing policy rules
- Binary and JSON serialization for compiled programs
- Recompilation support for program modification
Testing Infrastructure:
- Extensive YAML test suites covering all VM features
- Rust unit tests for VM execution and instruction parsing
- Test suites for loops, comprehensions, builtins, and control flow
BREAKING CHANGE: Introduces new VM execution path alongside interpreter
Signed-off-by: Anand Krishnamoorthi <anakrish@microsoft.com>
* docs: add detailed RVM architecture references
Introduce architecture.md explaining program artifacts, serialization, and runtime subsystems.
Document the full opcode catalog in instruction-set.md, including operands, parameter tables, and outcomes.
Walk through execution flow, stacks, and operational guidance in vm-runtime.md, tying the runtime to the new architecture docs.
Signed-off-by: Anand Krishnamoorthi <anakrish@microsoft.com>
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Signed-off-by: Anand Krishnamoorthi <anakrish@microsoft.com>