nyx/src/taint/ssa_transfer/inline.rs
Eli Peter 41128177d2
Release/0.5.0 (#35)
* feat: Introduce function-scoped variable interning for state analysis with new tests and fixtures

* feat: Add Phase 26 symbolic execution enhancements with bitwise operator support, abstract interpretation refinements, and new taint analysis tests

* feat: Refine state analysis to handle factory-pattern resource returns with mixed-path tests and leak detection enhancements

* feat: Add Phase 27 debug views with symbolic execution, abstract interpretation, SSA, and call graph viewers; integrate with debug layout and styles

* feat: Add Phase 31 type-qualified symbolic resolution with receiver-based callee disambiguation and testing

* feat: Extend symbolic execution with state iteration, enhanced debug views, and debounced input handling

* feat: Add Phase 13 resource and auth pattern extensions with new tests and fixtures

* feat: Introduce CFG debug graph renderer with compact mode, toolbar, and DAG layout integration

* feat: Add Phase 28 encoding and decoding transform modeling with structural symex enhancements and new taint analysis tests

* feat: Extend abstract interpretation with type facts and constant value tracking in debug views and server logic

* feat: Add linear path handling and witness extraction to symbolic execution with Phase 28 transform mismatch detection

* feat: Refine Go auth and sanitizer handling with enhanced rules, state updates, and benchmark improvements

* feat: Enable auth-state analysis by default and update relevant tests in benchmark config

* test: Update state_tests to reflect default enablement of auth-state analysis and add auth suppression test

* docs: update CHANGELOG.md

* feat: Introduce per-index taint tracking in `HeapState` with `HeapSlot`, overflow handling, and revised SSA transfers

* feat: Introduce C/C++ language labels and refine heap state tracking in SSA transfers

* feat: Implement per-index array slot tracking in symbolic heap with overflow collapse

* feat: Add implicit definition handling for uninitialized declarations in SSA value allocation

* feat: Refactor function parameters and constants for improved clarity and maintainability

* refactor: Reorder module imports and improve formatting for consistency

* refactor: Fix formatting erorrs

* refactor: Fix clippy warnings

* refactor: Fix fmt warnings (again)

* chore: Update dependencies and improve feature configuration

* Add comprehensive tests for undertested modules (#36) (COPILOT)

* Add comprehensive tests for undertested modules

Co-authored-by: elicpeter <54954007+elicpeter@users.noreply.github.com>
Agent-Logs-Url: https://github.com/elicpeter/nyx/sessions/f3fc877e-f386-49ba-9793-fc93d3805083

* Add comprehensive tests for ext, project, walk, and errors modules

Co-authored-by: elicpeter <54954007+elicpeter@users.noreply.github.com>
Agent-Logs-Url: https://github.com/elicpeter/nyx/sessions/f3fc877e-f386-49ba-9793-fc93d3805083

---------

Co-authored-by: copilot-swe-agent[bot] <198982749+Copilot@users.noreply.github.com>
Co-authored-by: elicpeter <54954007+elicpeter@users.noreply.github.com>

* chore: Update dependencies and improve feature configuration

* fix: formatting errors in new tests

* chore: Update license list in about.toml

* chore: made functions input inline

* chore: updated cfg graph to take up the full page

* chore: add Prettier configuration and update code formatting

* Add frontend test suite with Vitest (111 tests) (#37)

* Add Vitest test suite for frontend - 111 tests across utils, components, hooks, and graph utilities

Co-authored-by: elicpeter <54954007+elicpeter@users.noreply.github.com>
Agent-Logs-Url: https://github.com/elicpeter/nyx/sessions/7cf0dba2-ecff-4740-ba4d-92717e74a0b7

* ci: add frontend test step to CI workflow

Co-authored-by: elicpeter <54954007+elicpeter@users.noreply.github.com>
Agent-Logs-Url: https://github.com/elicpeter/nyx/sessions/5bc0ac9f-0a32-4d03-9cb7-7a15aea53fca

---------

Co-authored-by: copilot-swe-agent[bot] <198982749+Copilot@users.noreply.github.com>
Co-authored-by: elicpeter <54954007+elicpeter@users.noreply.github.com>

* chore: simplify array initialization in test files for consistency

* ran typecheck

* feat: add AnalysisWorkspace component and integrate it into CfgViewerPage

* feat: update routing in AppLayout and improve empty state message in ExplorerPage

* feat: enhance scan progress tracking with additional metrics and stages

* feat: update license information and add license check script

* feat: implement cross-file symbolic execution with callee body persistence

* feat: replace dagre graphs with Graphology + ELK + Sigma for more advanced call stack and cfg rendering

* feat: ensure CFG function view is scoped to the selected function, preventing bleed into sibling functions

* feat: enhance resource tracking with proxy method summaries and improve finding extraction

* feat: add terminal function exit detection for accurate resource leak analysis

* feat: add warnings for loops and functions without bodies to improve error recovery

* feat: update lambda expression handling to ensure proper function classification and control flow

* feat: remove bounded formatting/string ops and add JSON.parse sanitizer for improved data handling

* feat: add inline return taint analysis and regression tests for improved security checks

* feat: add engine version management and migration handling for database schema updates

* feat: enhance first_call_ident to skip nested function bodies and add regression tests

* feat: enhance callee name resolution with two-segment normalization and disambiguation

* feat: add cross-file context flags and debug assertions for taint analysis

* feat: refactor taint analysis structure to unify context handling and improve clarity

* feat: enhance dead code elimination to preserve Sink, Source, and Sanitizer labels with new tests

* docs: updated CHANGELOG.md

* fmt: formatting fixes

* fix: fixed frontend formatting and lint warnings

* fix: optimized ci

* fix: optimized ci

* Add comprehensive multi-file test coverage to Nyx (#38)

* Initial checklist for multi-file test suite expansion

Agent-Logs-Url: https://github.com/elicpeter/nyx/sessions/e550cb88-9767-4442-94d4-101bf5bb0e23

Co-authored-by: elicpeter <54954007+elicpeter@users.noreply.github.com>

* Add 12 new multi-file test fixtures with TP/TN/near-miss coverage

Agent-Logs-Url: https://github.com/elicpeter/nyx/sessions/e550cb88-9767-4442-94d4-101bf5bb0e23

Co-authored-by: elicpeter <54954007+elicpeter@users.noreply.github.com>

* deleted root repo

* rebuilt to test for regressions

---------

Co-authored-by: copilot-swe-agent[bot] <198982749+Copilot@users.noreply.github.com>
Co-authored-by: elicpeter <54954007+elicpeter@users.noreply.github.com>
Co-authored-by: elipeter <elicpeter@gmail.com>

* feat: enhance import alias resolution and taint tracking

* feat: implement security hardening with CSRF protection and path validation

* feat: add support for import alias bindings in Python, PHP, and Rust

* feat: enhance CFG analysis modes and improve code readability

* feat: add detection for parameterized SQL queries to enhance security

* feat: add safe internal redirect handling and enhance session destroy validation

* feat: implement security improvements by addressing vulnerabilities in execAsync, session management, and file downloads

* feat: enhance taint detection by adding support for inline source member expressions in call arguments

* feat: implement pre-emission of Source nodes for inline source member expressions in call arguments

* feat: add support for Throw statement in control flow and error handling

* feat: add debug and echo endpoints with potential information leakage

* feat: implement internal redirect suppression and enhance taint detection

* feat: implement module alias tracking for dynamic dispatch in JS/TS

* feat: add authorization analysis module with Express support

* feat: add authorization analysis module with Express support

* feat: add tests for admin guard requirements and clean checks in authorization analysis

* feat: integrate Koa and Fastify frameworks into authorization analysis

* feat: add Flask and Django support to authorization analysis module

* feat: add support for Rails and Sinatra frameworks in authorization analysis

* feat: add support for Axum, ActixWeb, and Rocket frameworks in authorization analysis

* feat: add support for ActixWeb, Axum, and Rocket frameworks in authorization analysis

* feat: add support for Rails and Sinatra in authorization analysis

* chore: add .DS_Store to .gitignore

* refactor: simplify conditional checks and improve readability in multiple files

* refactor: update usage of Option methods for improved clarity and consistency

* refactor: improve code readability by simplifying conditional checks and formatting

* refactor: improve code formatting and readability by simplifying conditional checks

* refactor: simplify conditional checks and improve readability in multiple files

* refactor: simplify conditional checks in axum.rs for improved readability

* feat: add CodeQL analysis configuration for enhanced security scanning

* test: add comprehensive tests for `src/output.rs` SARIF builder (#39)

* chore: start test coverage improvement work

Agent-Logs-Url: https://github.com/elicpeter/nyx/sessions/cd7ff398-134e-4728-a5e7-0353a0744423

Co-authored-by: elicpeter <54954007+elicpeter@users.noreply.github.com>

* test: add comprehensive tests for src/output.rs SARIF builder

Agent-Logs-Url: https://github.com/elicpeter/nyx/sessions/cd7ff398-134e-4728-a5e7-0353a0744423

Co-authored-by: elicpeter <54954007+elicpeter@users.noreply.github.com>

* refactor: improve code formatting and readability in output.rs

---------

Co-authored-by: copilot-swe-agent[bot] <198982749+Copilot@users.noreply.github.com>
Co-authored-by: elicpeter <54954007+elicpeter@users.noreply.github.com>
Co-authored-by: elipeter <elicpeter@gmail.com>

* refactor: improve code formatting and readability in output.rs

* Potential fix for code scanning alert no. 210: Uncontrolled data used in path expression

Co-authored-by: Copilot Autofix powered by AI <62310815+github-advanced-security[bot]@users.noreply.github.com>

* Potential fix for code scanning alert no. 211: Uncontrolled data used in path expression

Co-authored-by: Copilot Autofix powered by AI <62310815+github-advanced-security[bot]@users.noreply.github.com>

* refactor: enhance triage file path handling with improved error management and validation

* refactor: updated func summaries for richer detail

* refactor: update SSA summary extraction to use canonical FuncKey for distinct entries

* refactor: enhance callee metadata structure to support arity, receiver, and qualifier for better overload resolution

* refactor: add support for keyword arguments in function calls and enhance receiver extraction for method-style calls

* refactor: implement new Flask routes for safe and unsafe shell command execution

* refactor: separate receiver handling in SSA operations and enhance taint propagation

* refactor: improve arity handling by using arg_uses for positional argument count and enhance witness scoring for tainted arguments

* refactor: implement auth decorator extraction and classification for multiple languages

* refactor: enhance Rust module path resolution and use map handling for cross-file disambiguation

* refactor: introduce CalleeQuery struct for structured callee resolution and enhance resolver logic

* refactor: implement same-file identity collision handling for `runTask` to ensure correct resolver behavior

* refactor: standardize default struct initialization across multiple files

* feat: add scripts for formatting checks and auto-fixes with test summaries

* refactor: simplify character splitting and enhance namespace qualifier handling

* refactor: improve documentation clarity and enhance code readability in resolver logic

* refactor: replace default struct initialization with explicit field assignments for clarity

* feat: enhance anonymous function naming by deriving context-based bindings

* refactor: streamline match expressions for improved readability and performance

* refactor: streamline match expressions for improved readability and performance

* refactor: replace loop with while let for improved clarity and performance

* feat: add SSA constant propagation support to analysis context for improved accuracy

* feat: add SSA constant propagation support to analysis context for improved accuracy

* feat: implement shell metacharacter validation and bounded-length checks in Rust analysis

* feat: add static map analysis for command injection suppression and type safety

* refactor: simplify match statements and reduce line breaks for improved readability

* feat(summary): phase 1/5 SinkSite data model for primary sink-location attribution

Introduce SinkSite (file_rel, line, col, snippet, cap) carrying the
primary sink source-location through function summaries. Swap
SsaFuncSummary.param_to_sink and FuncSummary.param_to_sink from a coarse
Cap map to a deduped SmallVec<[SinkSite; 1]> per parameter, with a
backward-compatible cap_sites() helper and serde defaults so pre-phase-1
on-disk rows continue to deserialise cleanly.

Extraction: SinkSiteLocator bundles the tree/bytes/file_rel needed by
extract_ssa_func_summary; ParsedFile::extract_ssa_artifacts wires the
locator in for the persisted pass-1 path, while pass-2 intra-file
transient summaries fall back to cap-only sites (behavior unchanged).
Merge: GlobalSummaries::insert now unions sink sites with
(file_rel, line, col, cap) dedup via shared union_param_sink_sites
helper.

Database: JSON-serialised summary columns carry the new shape
automatically; no schema change needed.

Phase 2 will consume SinkSite in build_taint_diag() to overwrite the
caller-site Finding.line with the callee's sink line when resolved via
summary. Phase 1 keeps behavior unchanged: scanning
tests/benchmark/corpus/rust/cmdi/cmdi_indirect.rs still produces the
same (wrong) line 10 finding.

Adds round-trip tests covering SinkSite solo, SsaFuncSummary with sink
sites, legacy-JSON default handling for both summary types, and merge
dedup.

Co-Authored-By: Claude Opus 4.7 <noreply@anthropic.com>

* feat(taint): phase 2/5 thread SinkSite into SsaTaintEvent and Finding

Plumb Phase 1's SinkSite through the event pipeline into Findings,
no output change yet.  SsaTaintEvent gains `primary_sink_site:
Option<SinkSite>`; when the main or callback sink-emission path has
non-empty `param_to_sink_sites`, filter to sites whose
`(line != 0) && (cap ∩ sink_caps != ∅)` and emit one event per
distinct site — the multi-primary collapse keeps each downstream
Finding single-primary.

Resolution: ResolvedSummary and SinkInfo gain mirror
`param_to_sink_sites` fields, populated from `SsaFuncSummary.param_to_sink`
(SSA + callback paths) and `FuncSummary.param_to_sink` (global paths).
Label, local-summary, and interop resolution paths leave the field
empty — they only ever had cap-level info to begin with.

Finding: new `primary_location: Option<SinkLocation>` with
`file_rel/line/col`.  `ssa_events_to_findings` maps
`event.primary_sink_site` → `Finding.primary_location`, filtering
cap-only sites (`line == 0`) to `None` so the (0,0) sentinel never
leaks to formatters.  Dedup key extended with the primary location
so multi-site events aren't collapsed back together.

Invariants (debug_assert!):
* every SinkSite reaching emission has `line != 0 && cap ∩ sink_caps
  != ∅` — enforced by the pick_primary_sink_sites* filters;
* every populated Finding.primary_location has `line != 0` AND
  non-empty `file_rel` — the cap-only → None translation upstream
  guarantees this.

Deliberately independent of `uses_summary`: that flag tracks whether
the *taint chain* used a summary, whereas primary attribution
requires only that the *sink* itself was summary-resolved.  A local
source reaching a cross-file sink produces `uses_summary=false`
alongside a populated primary_location — documented on
Finding.primary_location, covered by
`cross_file_sink_finding_carries_primary_location`.

build_taint_diag, SARIF/JSON/explanation formatters, and the
benchmark scorer remain untouched: finding.line still comes from
`cfg_graph[finding.sink]`, so cmdi_indirect.rs still reports line 10
and the benchmark's rs-cmdi-003 row still shows FN in the LOC column.

Tests: `cross_file_sink_finding_carries_primary_location` (proves
plumbing via a synthetic FuncSummary carrying a SinkSite at 42:5) and
`cross_file_sink_cap_only_site_leaves_primary_location_none`
(regression guard against cap-only sites surfacing).  All 1566 lib
tests + integration tests pass.

Co-Authored-By: Claude Opus 4.7 (1M context) <noreply@anthropic.com>

* feat(output): phase 3/5 consume primary sink location in diag + SARIF

When a finding's primary_location (populated in phase 2 from a callee
summary's SinkSite) names the dangerous instruction inside a callee
body, attribute the diagnostic line to that location instead of the
caller's call site. The call site is demoted to a Call step in
flow_steps, and a synthetic Sink step at the primary location is
appended so analysts still see the full trace.

Changes:
- Add scan_root parameter to build_taint_diag so file_rel can be
  resolved back to an absolute path via a shared resolve_file_rel
  helper. Empty file_rel (single-file scans where namespace == "")
  resolves to the file under analysis.
- Extend SinkLocation with snippet, carried from the upstream
  SinkSite so the formatter needs no second file read.
- Relax the ssa_events_to_findings debug_assert to allow empty
  file_rel, which is valid when scan root equals the file itself.
- SARIF: emit data-flow as codeFlows[0].threadFlows[0].locations[];
  locations[0] already reflects the primary sink position via the
  updated diag line/col.

Acceptance: scan on tests/benchmark/corpus/rust/cmdi/cmdi_indirect.rs
now reports line 5 (Command::new) as the primary sink, with the call
site at line 10 visible in flow_steps.

Two expect.json fixtures updated (must_match line_range widened):
- javascript/taint/context_sensitive_call: 12-14 -> 7-14 (line 8 is
  the real sink inside run()).
- rust/cfg/closure_async: 10-10 -> 10-11 (line 11 is Command::new
  inside the closure).

Co-Authored-By: Claude Opus 4.7 (1M context) <noreply@anthropic.com>

* feat(bench): phase 4/5 validate primary sink attribution across corpus

Extend the benchmark scorer and ground truth to lock in phase 3's
primary-location behavior, and add fixtures that exercise the new
capability end-to-end.

Scorer (tests/benchmark_test.rs):
- Add optional `expected_call_site_lines: Option<Vec<[usize; 2]>>` on
  Case. When present, score_location_level additionally requires at
  least one flow_step in the finding's evidence trace to fall within
  ±2 of the call-site range. When absent, the check is skipped —
  fully forward-compatible with existing fixtures.
- Retain ±2 tolerance on expected_sink_lines (compared against the
  now-primary Diag.line post-phase-3).

Ground truth edits:
- rs-cmdi-cross-001: expected_sink_lines [8,8] -> [9,9]. Line 8 is the
  transform::wrap call site (a cross-file propagator, not a sink);
  line 9 is Command::new, the real sink. The ±2 tolerance happened to
  mask this stale attribution but it was semantically wrong — phase 4
  is the right time to correct it. Also adds expected_call_site_lines
  [8,8] so the new field is exercised on an existing cross-file case.
- rs-cmdi-003: adds expected_call_site_lines [10,10] (run_cmd call).
  This fixture's sink (Command::new inside run_cmd at line 5) was the
  motivating case for phases 1-3; adding the call-site assertion
  guards against regression to caller-line attribution.

New fixtures:
- rust/cmdi/cmdi_indirect_multisink.rs (rs-cmdi-009): helper run_both
  takes two tainted params and invokes two Command sinks on
  consecutive lines. Locks in that primary line lands inside the
  helper (lines 5-6), not at the caller (line 12). Notes document
  that SinkSite is currently one-per-callee so both findings today
  collapse onto the first sink; expected_sink_lines=[5,6] and
  expected_call_site_lines=[12,12] stay valid either way.
- python/cmdi/cross_indirect_sink/{app.py,helper.py} (py-cmdi-cross-
  004): sink os.system lives in helper.py (cross-file), caller in
  app.py reads env source and calls run_cmd. Verifies phase 3's
  cross-file primary attribution: Diag.path = helper.py, Diag.line =
  5, with app.py:7 recorded in flow_steps as a Call step.

Acceptance:
- `cargo test --test benchmark_test -- --ignored --nocapture` passes.
- rs-cmdi-003 is TP/TP/TP (the target flip FN->TP at LOC). All
  pre-existing TP/TP/TP fixtures remain TP/TP/TP; 2 new fixtures are
  TP/TP/TP.
- Aggregate rule-level: TP=158 FP=10 FN=1 TN=97, P=0.940 R=0.994
  F1=0.966 on the 266-case corpus (was TP=156 FP=10 FN=1 TN=97 on
  264 pre-phase-4, delta is the +2 new cases both resolving TP).
- Full `cargo test` green (1566 lib tests + all integration tests).

Co-Authored-By: Claude Opus 4.7 (1M context) <noreply@anthropic.com>

* feat(taint): phase 5/5 lock Finding.primary_location contract via regression test

Add a regression test in src/taint/ssa_transfer.rs that wires up a synthetic
SsaFuncSummary with a SinkSite at other.rs:42:10 and drives the three
emission stages (pick_primary_sink_sites → emit_ssa_taint_events →
ssa_events_to_findings) against a minimal caller SSA body.  Asserts the
resulting Finding.primary_location is exactly that triple.

The existing integration tests in src/taint/tests.rs cover the coarse
FuncSummary path end-to-end through analyse_file.  This test locks in the
lower-level SSA-side plumbing so a future refactor that silently drops the
site between pick → emit → findings fails here rather than only at the
benchmark layer.

Also refreshes tests/benchmark/results/latest.json (timestamp only; rs-cmdi-003
remains TP/TP/TP and the aggregate P/R/F1 are unchanged from phase 4).

Closes the primary sink-location attribution feature (phases 1-5/5):
* Phase 1 — SinkSite data model on summaries.
* Phase 2 — SinkSite threaded into SsaTaintEvent and Finding.
* Phase 3 — diag + SARIF consume primary_location.
* Phase 4 — benchmark validates primary_call_site_lines across corpus.
* Phase 5 — regression test locks the event→finding contract.

Co-Authored-By: Claude Opus 4.7 (1M context) <noreply@anthropic.com>

* refactor: clean up formatting and improve readability in multiple files

* refactor: simplify type definition for deduplication key in findings

* test(harness): add must_not_match expectation for FP regression guards

Extends ExpectedFinding with must_not_match field that asserts a
diagnostic must NOT fire — presence is a hard failure. Non-consuming
scan so it coexists with must_match entries on the same rule_id.
Adds forbidden_violations accumulator and updates summary line.

Co-Authored-By: Claude Opus 4.7 (1M context) <noreply@anthropic.com>

* feat(regression): update expectations to ensure must_not_match for various taint and resource leak rules

* feat: implement auto-seeding for JS/TS handler parameters to enhance taint tracking

* feat: update switch statement handling to improve control flow analysis

* feat: implement promisify alias handling for JS/TS to enhance taint tracking

* feat: enhance taint tracking by refining expectation handling and adding mode filtering

* feat: refine SQL handling in stream processing and enhance auto-seeding for handler parameters

* feat: update taint tracking rules to enforce full mode matching and improve flow analysis

* feat: enhance Ruby subshell handling to improve taint tracking and flow analysis

* feat: update xss_response expectations to refine taint flow analysis and enhance regression guarding

* feat: refine framework detection and update expectation handling for Echo and Sinatra

* feat: implement max_count for taint tracking expectations and deduplicate findings

* feat: add strict_unexpected handling for taint-unsanitised-flow in expectation files

* feat: enhance deduplication of taint-unsanitised-flow findings by collapsing based on line and severity

* feat: add strict_unexpected handling for taint-unsanitised-flow in multiple expectation files

* feat: add structural invariant checks for SSA bodies

* feat: ensure deterministic phi emission order using BTreeSet

* feat: enhance handling of terminators to ensure authoritative flow through successor edges

* feat: enhance Goto terminator handling to ensure all successors are marked executable

* feat: refactor code for improved readability and organization

* feat: simplify predicate checks and enhance readability in SSA handling

* feat: implement per-file parse timeout and enhance file size handling

* feat: migrate analysis engine toggles from environment variables to configuration file

* feat: remove unnecessary whitespace in hostile_input_tests.rs

* feat: remove unnecessary whitespace in hostile_input_tests.rs

* feat: update dependencies and enhance documentation on language maturity

* feat: enhance security headers and improve request body limits

* feat: implement sink capability bits for deduplication and enhance evidence tagging

* feat: implement dynamic activation handling for gated sinks and enhance validation logic

* feat: enhance configuration documentation and clarify inline analysis cache behavior

* feat: implement panic recovery during analysis to continue scans past errors

* feat: add expectations configuration for taint analysis and performance metrics

* feat: enhance error handling and logging during file reading and mutex locking

* feat: add cross-file body loading tests and plumbing for CF-1 phase

* feat: implement cross-file k=1 context-sensitive inline taint analysis with new tests and fixtures

* feat: implement indexed-scan parity in cross-file inline analysis with new dropdown and copy functionality

* feat: enhance classification span handling in CFG and AST for improved source attribution

* feat: add new Express routes for handling user input and telemetry data

* feat: implement ternary expression handling in CFG with diamond structure for JS/TS

* feat: implement Phase CF-3 abstract-domain transfer channels in summaries

* feat: add support for string-prefix transfer in cross-file calls and update tests

* docs: reduce RESULTS.md doc size

* feat: implement Phase CF-4 per-return-path summary decomposition with tests

* feat: update parameter handling in pass1 and refactor SsaFuncSummary initialization

* feat: implement Phase CF-5 for cross-file SCC joint fixed-point convergence with new flags and tests

* feat: implement Phase CF-6 with parameter-granularity points-to summaries and associated tests

* refactor: update comments and documentation for clarity and consistency

* style: format code for consistency and readability

* refactor: simplify verdict handling and improve edge checking logic

* refactor: optimize path and identifier collection by avoiding unnecessary cloning

* chore: update Cargo.toml for Rust version 1.85 and add ignored files; modify CHANGELOG and README for clarity on state analysis defaults

* refactor: update documentation and improve clarity in configuration files

* refactor: update documentation and improve clarity in configuration files

* feat: add JS/TS pass-2 convergence tests and expectations configuration

* feat: add Phase 5 regression tests for inline cache origin attribution and update related logic

* feat: implement Phase 7 deduplication and alternative path linking for taint findings

* feat: implement structural DFS index for anonymous functions and update naming conventions

* feat: add Phase 8 regression tests for container-element taint in JS and Python

* feat: add engine-depth profiles and explain-engine option for CLI

* feat: update expectations and add new README fixtures for multi-file scan regression

* feat: implement Phase 11 callback-alias and factory patterns with regression tests

* feat: implement Terminator::Switch for multi-way dispatch and add regression tests

* feat: add real-CVE benchmark fixtures for CVE-2023-48022, CVE-2019-14939, and CVE-2023-26159 with corresponding patched variants

* refactor: extract cfg and ssa_transfer to submodules

* refactor: cargo fmt

* refactor: remove unnecessary blank line in cfg_tests.rs

* refactor: remove unnecessary planning file

* chore: update Rust version to 1.88 and bump dependencies in Cargo files

* feat: enhance triage UI with new layout and controls, update README for clarity

* feat: enhance triage UI with new layout and controls, update README for clarity

* chore: remove outdated section from README for version 0.5.0

* docs: improve clarity and consistency in README content

* chore: add "GPL-3.0-or-later" to license options in about.toml

* chore: update license handling in about.toml and check-licenses.mjs

* style: format code for improved readability in TriagePage component

* style: format code for improved readability in TriagePage component

* chore: enhance license handling and improve body_id scoping in seed lookup

* feat: introduce owner and parent body IDs for enhanced seed scoping

* feat: implement direction-aware engine provenance with new CLI flag for strict CI gating

* feat: add Undef SSA operation for improved control-flow handling

* style: improve code formatting for consistency and readability in multiple files

* feat: add 16-function chain SCC across multiple files for enhanced analysis

* style: simplify code formatting for improved readability in multiple files

* fix: update CapHitReason default implementation and improve README clarity

* docs: enhance README with detailed explanations of taint analysis and limitations

* docs: refine README for clarity and consistency in taint analysis section

* style: improve code formatting for better readability in NewScanModal and scans

* fix: update cargo-about command to use --offline for deterministic license generation

* fix: update cargo-about command to use --offline for deterministic license generation

* ci: add step to prime cargo registry cache for deterministic license generation

* feat: add support for non-sink collections in authorization analysis

* feat: enhance authorization checks with row-level ownership equality and binding tracking

* feat: implement self-scoped user handling and enhance ownership checks

* refactor: simplify assertions and formatting in authorization analysis tests

* fix: normalize line endings in THIRDPARTY-LICENSES.html generation and update README with AI disclosure

* docs: update AI disclosure section for clarity and conciseness

* feat: add AI Contribution Policy and update contributing guidelines for AI assistance disclosure

* feat: enhance authorization analysis with SSA-derived variable type classification

* feat: implement auth_finding_to_diag function for enhanced security diagnostics

* feat: add args_value_refs to CallSite struct for enhanced argument tracking

* feat: add args_value_refs to CallSite struct for enhanced argument tracking

* feat: add direction-aware engine provenance with LossDirection classification and new CLI flag

* feat: simplify strip_cap_from_call_args call by removing unnecessary line breaks

* feat: enhance error message handling in cli_validation_tests for better Windows compatibility

* feat: optimize release profile settings in Cargo.toml and update CodeQL configuration

* feat: enhance release build process with SBOM generation and SLSA provenance

* feat: update actions/checkout and actions/setup-node to v6, enhance CLI options, and improve auth-check summaries

* feat: introduce PathFact handling for path safety checks and rejection logic

* feat: introduce PathFact handling for path safety checks and rejection logic

* feat: update benchmark data and enhance path sanitization logic with new safety checks

* feat: document AI assistance in frontend UI development and human review process

* feat: add return path facts for enhanced path safety checks and update documentation

* chore: update release date for version 0.5.0 in CHANGELOG.md

* chore: clean up ci.yml by removing outdated comments and clarifying steps

* feat: implement cross-language path sanitizers and validators for enhanced security

* feat: enhance SSA value usage tracking by including block terminators and improve path safety checks

* feat: enhance switch statement handling by adding per-case path constraints and support for exclusive cases

* refactor: simplify conditional formatting and improve code readability in executor and lower modules

* feat: add vulnerable examples for various languages demonstrating authentication and sanitization issues

* feat: enhance actor context recognition for self-actor identifiers and add support for global non-sink receivers

* feat: enhance actor context recognition for self-actor identifiers and add support for global non-sink receivers

* feat: add transform classifiers for Java, Go, and Ruby with corresponding tests

* refactor: clarify comments on reassign-to-constant idiom and sink behavior in guards.rs

---------

Co-authored-by: Copilot <198982749+Copilot@users.noreply.github.com>
Co-authored-by: Copilot Autofix powered by AI <62310815+github-advanced-security[bot]@users.noreply.github.com>
Co-authored-by: Claude Opus 4.7 <noreply@anthropic.com>
2026-04-25 17:59:11 -04:00

367 lines
17 KiB
Rust

//! Context-sensitive inline analysis — cache, body, and attribution types.
//!
//! Extracted from the monolithic `ssa_transfer.rs`. Contains:
//! * [`ArgTaintSig`] — compact per-arg cap signature used as a cache key.
//! * [`InlineResult`] / [`CachedInlineShape`] / [`ReturnShape`] — the
//! callsite-adapted and callsite-agnostic inline-analysis result types.
//! * [`InlineCache`] — the shared cache map keyed by
//! `(FuncKey, ArgTaintSig)`.
//! * [`CrossFileNodeMeta`] / [`CalleeSsaBody`] — the serde-able bodies
//! persisted to SQLite for cross-file context-sensitive analysis.
//! * [`populate_node_meta`] / [`rebuild_body_graph`] — bookkeeping for
//! cross-file body proxy CFGs.
//!
//! The implementation functions (`inline_analyse_callee`,
//! `apply_cached_shape`, `extract_inline_return_taint`) remain in the
//! parent `mod.rs` because they depend tightly on the block worklist, the
//! `run_ssa_taint_full` entry point, and the callee-resolution pipeline.
//!
//! # Cache key scope and origin attribution
//!
//! The inline-analysis cache below ([`InlineCache`]) is keyed by
//! `(FuncKey, ArgTaintSig)`, where [`ArgTaintSig`] encodes **per-arg
//! capability bits only** — not the identity of the source
//! [`crate::taint::domain::TaintOrigin`]s that produced those caps. The
//! stored value ([`CachedInlineShape`]) captures **only the structural**
//! shape of the callee's return taint: return caps, callee-internal
//! origins (from `Source` ops inside the callee body), and per-parameter
//! provenance flags that record which formal parameters contributed to
//! the return. Caller-specific origin identity is *not* stored — it is
//! re-attributed at cache-apply time from the current call site's
//! argument taint.
use crate::labels::Cap;
use crate::ssa::ir::{SsaBody, Terminator};
use crate::summary::ssa_summary::PathFactReturnEntry;
use crate::symbol::FuncKey;
use crate::taint::domain::{TaintOrigin, VarTaint};
use petgraph::graph::NodeIndex;
use smallvec::SmallVec;
use std::collections::HashMap;
/// Maximum SSA blocks in a callee body before skipping inline analysis.
pub(super) const MAX_INLINE_BLOCKS: usize = 500;
/// Compact cache key: per-arg-position cap bits (sorted, non-empty only).
///
/// Two calls with identical `ArgTaintSig` produce identical inline results
/// for soundness purposes (return caps, callee-internal sink activations).
/// Origin identity is **not** part of the key — see the module-level note
/// above on origin-attribution non-determinism.
#[derive(Clone, Debug, PartialEq, Eq, Hash)]
pub(crate) struct ArgTaintSig(pub(super) SmallVec<[(usize, u16); 4]>);
/// Call-site-adapted result of inline-analyzing a callee.
///
/// Constructed fresh per call site by `apply_cached_shape` from a stored
/// [`CachedInlineShape`]; carries origins that point to the *current*
/// caller's source chain, not to whichever caller first populated the
/// cache entry.
#[derive(Clone, Debug)]
pub(crate) struct InlineResult {
/// Taint on the return value after inline analysis.
pub(super) return_taint: Option<VarTaint>,
/// PathFact on the return value after inline analysis.
///
/// Non-top when the callee's body provably narrows the
/// [`crate::abstract_interp::PathFact`] of the value it returns (for
/// example, a `sanitize_path(s) -> Option<String>` helper that
/// early-returns on `s.contains("..")` / `s.starts_with('/')`). At
/// apply time the caller sets its call-result SSA value's PathFact to
/// this narrowed fact, so downstream FILE_IO sinks see the sanitised
/// axis regardless of whether a named label-rule exists for the
/// helper. Top when the callee produces no narrowing — matches
/// pre-PathFact behaviour exactly.
pub(super) return_path_fact: crate::abstract_interp::PathFact,
/// Per-return-path decomposition of [`Self::return_path_fact`].
///
/// Non-empty when the callee has ≥2 distinct return blocks whose
/// predicate gates differ. Match-arm-sensitive callers pick the
/// entry whose `variant_inner_fact` matches the arm binding's
/// variant; path-resolvable callers may refuse infeasible entries.
/// Callers unable to distinguish paths still consult
/// [`Self::return_path_fact`] (the join of all entries) and see
/// pre-decomposition behaviour.
#[allow(dead_code)]
pub(super) return_path_facts: SmallVec<[PathFactReturnEntry; 2]>,
}
/// Structural (callsite-agnostic) summary of an inline-analyzed callee.
///
/// Stored in [`InlineCache`] in place of a fully-attributed `InlineResult`.
/// Origin-identity information that depends on the caller's argument chain
/// is *not* kept here; instead, [`ReturnShape::param_provenance`]
/// records which callee parameter positions contributed seed taint to the
/// return, and the actual caller origins are re-unioned in at apply time.
///
/// `None` means "this callee produced no return taint for the given
/// argument shape". A cached `None` is still a meaningful result — it
/// short-circuits re-analysis on subsequent calls with matching caps.
#[derive(Clone, Debug)]
pub(crate) struct CachedInlineShape(pub(super) Option<ReturnShape>);
/// Structural parts of a non-trivial inline-analysis result.
///
/// Split from the full [`VarTaint`] so that cached entries can be re-used
/// across call sites with matching arg-cap signatures but differing source
/// origins. See the module-level note above on origin attribution.
#[derive(Clone, Debug)]
pub(crate) struct ReturnShape {
/// Return value caps (cap bits only — structural).
pub(super) caps: Cap,
/// Origins produced **inside the callee body** (e.g. `Source` op fired
/// in the callee). `node` is set to a placeholder; at apply time the
/// caller remaps it to its own call-site NodeIndex. `source_span` is
/// stable (from the callee CFG) and preserved as-is.
pub(super) internal_origins: SmallVec<[TaintOrigin; 2]>,
/// Bit i set = callee's `Param(i)` seed taint reached the return value.
/// At apply time, caller's argument origins at matching positions are
/// unioned into the applied `VarTaint`. Params beyond index 63 are
/// dropped (matching `SmallBitSet` semantics); the capped case is rare
/// and still yields cap-correct results.
pub(super) param_provenance: u64,
/// Whether the receiver (`SelfParam`) seed taint flowed to the return.
pub(super) receiver_provenance: bool,
/// Whether the applied `VarTaint` should be tagged `uses_summary`.
pub(super) uses_summary: bool,
/// PathFact of the return value observed from the callee's exit
/// abstract state. Cache-safe because the callee is inline-analysed
/// with [`crate::abstract_interp::PathFact::top`] Param seeds — the
/// resulting fact describes the callee's intrinsic narrowing (e.g.
/// the `Some` arm of a `sanitize(..) -> Option<String>` body
/// proves `dotdot = No`) and does not depend on caller-side
/// narrowing of the argument's PathFact. Top when the callee does
/// not narrow.
pub(super) return_path_fact: crate::abstract_interp::PathFact,
/// Per-return-path [`PathFact`] decomposition of the return value.
///
/// Populated alongside [`Self::return_path_fact`] when the callee
/// has ≥2 distinct return blocks with different predicate gates.
/// Cache-safe for the same reason as `return_path_fact`: entries
/// describe callee-intrinsic narrowing under Top-seeded Params.
/// Empty when no per-path distinction was observed.
pub(super) return_path_facts: SmallVec<[PathFactReturnEntry; 2]>,
}
impl CachedInlineShape {
/// Cap bits of the return value, or zero if this shape records "no
/// return taint". Used by [`inline_cache_fingerprint`].
fn return_caps_bits(&self) -> u16 {
self.0.as_ref().map(|s| s.caps.bits()).unwrap_or(0)
}
}
/// Cache for context-sensitive inline analysis results.
///
/// Keyed by the callee's canonical [`FuncKey`] rather than a bare function
/// name so that same-name definitions (e.g. two `process/1` methods on
/// different classes in the same file) never share or overwrite each
/// other's cache entries. Values are stored as [`CachedInlineShape`]; see
/// the module-level note above for why origins are stripped from the
/// cache value and re-attributed at apply time.
pub(crate) type InlineCache = HashMap<(FuncKey, ArgTaintSig), CachedInlineShape>;
/// Drop every entry from an inline cache, marking the start of a new
/// convergence epoch.
///
/// Cross-file SCC fixed-point iteration runs pass 2 repeatedly until the
/// merged summaries stop changing. Between iterations the callee-summary
/// inputs to inline analysis may have changed, so results cached under a
/// stale snapshot must not leak into the next iteration — otherwise the
/// engine could converge to a non-fixed-point (reporting a taint result
/// that would not reproduce on a fresh run of the same file order).
///
/// The per-file inline cache is already reconstructed fresh at the top of
/// each [`crate::taint::analyse_file`] call, so in the current code this
/// call is effectively a no-op plumbing hook. Keeping the method (instead
/// of relying on ambient re-construction) makes the lifecycle explicit for
/// any future refactor that moves the cache up into the SCC orchestrator.
#[allow(dead_code)] // semantic hook; used by tests and future shared-cache refactor
pub(crate) fn inline_cache_clear_epoch(cache: &mut InlineCache) {
cache.clear();
}
/// Set-equal fingerprint of an inline cache, used by the SCC orchestrator
/// to detect when cross-file inline analysis has reached a fixed point
/// alongside summary convergence.
///
/// Returns a `HashMap` mapping each `(FuncKey, ArgTaintSig)` cache key to
/// the return-value capability bits of its inline result. `HashMap`
/// equality is set-equal (unordered), so two caches with the same entries
/// compare equal regardless of insertion order.
///
/// Origins are intentionally omitted — they are non-deterministic across
/// callers with identical caps (see the module-level note on origin
/// attribution) and would cause the fingerprint to oscillate without
/// reflecting a real precision change.
#[allow(dead_code)] // observability hook; used by tests and future shared-cache refactor
pub(crate) fn inline_cache_fingerprint(
cache: &InlineCache,
) -> HashMap<(FuncKey, ArgTaintSig), u16> {
cache
.iter()
.map(|(k, v)| (k.clone(), v.return_caps_bits()))
.collect()
}
/// CFG node metadata embedded in cross-file callee bodies.
///
/// ## Why a full [`crate::cfg::NodeInfo`] lives here
///
/// An earlier variant carried only the two fields the symex executor reads
/// (`bin_op`, `labels`). That was sufficient for symex but not for the
/// taint engine, which reads ~20 fields off `cfg[inst.cfg_node]` across
/// `transfer_inst`, `collect_block_events`, `compute_succ_states`, and
/// helpers (callee name, `arg_uses`, `arg_callees`, `call_ordinal`,
/// `outer_callee`, `kwargs`, `arg_string_literals`, `ast.span`,
/// `ast.enclosing_func`, `condition_*`, `all_args_literal`, `catch_param`,
/// `parameterized_query`, `in_defer`, `cast_target_type`, `string_prefix`,
/// `taint.uses`, `taint.defines`, `taint.extra_defines`,
/// `taint.const_text`, …). Rather than shuttling each of those through a
/// `CfgView` accessor at every callsite, we store a full serde-able
/// [`crate::cfg::NodeInfo`] snapshot here so the indexed-scan path can
/// rehydrate an equivalent `Cfg` on load (see [`rebuild_body_graph`]).
/// Both scan paths then feed the same `&Cfg` into the taint engine, and
/// cross-file inline fires regardless of whether the body came from pass
/// 1 or from SQLite.
#[derive(Clone, Debug, Default, PartialEq, Eq, serde::Serialize, serde::Deserialize)]
pub struct CrossFileNodeMeta {
/// Full `NodeInfo` snapshot for this body-local NodeIndex.
pub info: crate::cfg::NodeInfo,
}
/// Pre-lowered and optimized SSA body for a function,
/// ready for context-sensitive re-analysis with different argument taint.
///
/// For intra-file use, `node_meta` is empty and the original CFG is used.
/// For cross-file persistence, `node_meta` carries the minimal CFG
/// metadata needed by the symex executor.
#[derive(Clone, Debug, serde::Serialize, serde::Deserialize)]
pub struct CalleeSsaBody {
pub ssa: SsaBody,
pub opt: crate::ssa::OptimizeResult,
pub param_count: usize,
/// Per-NodeIndex CFG metadata for cross-file bodies.
/// Empty for intra-file bodies (the original CFG is used instead).
#[serde(default, skip_serializing_if = "std::collections::HashMap::is_empty")]
pub node_meta: std::collections::HashMap<u32, CrossFileNodeMeta>,
/// The body's own CFG graph. Populated for intra-file bodies so that
/// inline analysis can reference the correct graph (per-body CFGs have
/// body-local NodeIndex spaces). `None` for cross-file deserialized
/// bodies.
#[serde(skip)]
pub body_graph: Option<crate::cfg::Cfg>,
}
/// Populate `node_meta` from the original CFG for cross-file persistence.
///
/// Returns `true` if all referenced NodeIndex values were resolved
/// successfully. Returns `false` if any node was out of bounds (body is
/// ineligible for cross-file use).
pub fn populate_node_meta(body: &mut CalleeSsaBody, cfg: &crate::cfg::Cfg) -> bool {
// Collect every NodeIndex this body references, then snapshot each one's
// NodeInfo into `node_meta`. Done in two passes so the inner loop can
// mutate `body.node_meta` without borrow-checker conflicts on
// `body.ssa.blocks`.
//
// `Terminator::Branch.cond` must be captured as well: it is consumed by
// `compute_succ_states` via `cfg[*cond]`, so without it the synthesized
// cross-file proxy CFG (`rebuild_body_graph`) ends up too small whenever
// the callee body has any conditional branch whose `cond` index sits
// past the maximum `inst.cfg_node` index — inline analysis then panics
// with an out-of-bounds index.
let mut referenced: Vec<NodeIndex> = Vec::new();
for block in &body.ssa.blocks {
for inst in block.phis.iter().chain(block.body.iter()) {
referenced.push(inst.cfg_node);
}
if let Terminator::Branch { cond, .. } = &block.terminator {
referenced.push(*cond);
}
}
for node in referenced {
let idx = node.index() as u32;
if body.node_meta.contains_key(&idx) {
continue;
}
if node.index() >= cfg.node_count() {
return false;
}
let info = cfg[node].clone();
body.node_meta.insert(idx, CrossFileNodeMeta { info });
}
true
}
/// Synthesize a proxy [`crate::cfg::Cfg`] from `node_meta` so the taint
/// engine can index `cfg[inst.cfg_node]` uniformly on the indexed-scan
/// path.
///
/// When the callee body was loaded from SQLite, `body_graph` is `None`
/// (it is `#[serde(skip)]`), but `node_meta` carries a full
/// [`crate::cfg::NodeInfo`] for every referenced NodeIndex (see
/// [`populate_node_meta`]). This helper rebuilds a petgraph `Cfg` with
/// nodes at exactly the right NodeIndex positions so the taint engine's
/// existing indexing works without change.
///
/// Returns `true` if a proxy graph was freshly installed. Idempotent:
/// subsequent calls are cheap no-ops once `body_graph` is `Some`. No-op
/// for intra-file bodies (which arrive with `body_graph` already set and
/// `node_meta` empty).
pub fn rebuild_body_graph(body: &mut CalleeSsaBody) -> bool {
if body.body_graph.is_some() {
return false;
}
if body.node_meta.is_empty() {
return false;
}
// Determine the maximum NodeIndex referenced by the SSA so the
// synthesized graph has an entry at every position the engine may
// index. We fill any unreferenced intermediate indices with
// `NodeInfo::default()`.
//
// Walks both instruction `cfg_node`s and `Terminator::Branch.cond` —
// the latter is read by `compute_succ_states` via `cfg[*cond]`, so
// missing it produces an OOB panic when a conditional branch's cond
// node has a higher index than any `inst.cfg_node` in the body.
let mut max_idx: u32 = 0;
for block in &body.ssa.blocks {
for inst in block.phis.iter().chain(block.body.iter()) {
let idx = inst.cfg_node.index() as u32;
if idx > max_idx {
max_idx = idx;
}
}
if let Terminator::Branch { cond, .. } = &block.terminator {
let idx = cond.index() as u32;
if idx > max_idx {
max_idx = idx;
}
}
}
// Also consider node_meta keys — they should be a subset of the
// SSA-referenced indices, but be defensive.
for &k in body.node_meta.keys() {
if k > max_idx {
max_idx = k;
}
}
use petgraph::graph::Graph;
let mut graph: crate::cfg::Cfg = Graph::new();
// petgraph allocates sequential NodeIndex values. Insert placeholders
// up to and including max_idx.
for i in 0..=max_idx {
let info = body
.node_meta
.get(&i)
.map(|m| m.info.clone())
.unwrap_or_default();
graph.add_node(info);
}
// Edges are not consulted by the taint engine during inline analysis
// (control flow comes from `SsaBlock::preds`/`succs` and
// `SsaBlock::terminator`), so we leave the graph edge-free.
body.body_graph = Some(graph);
true
}