tftsr-devops_investigation/node_modules/@tootallnate/quickjs-emscripten/dist/memory.js
Shaun Arman 8839075805 feat: initial implementation of TFTSR IT Triage & RCA application
Implements Phases 1-8 of the TFTSR implementation plan.

Rust backend (Tauri 2.x, src-tauri/):
- Multi-provider AI: OpenAI-compatible, Anthropic, Gemini, Mistral, Ollama
- PII detection engine: 11 regex patterns with overlap resolution
- SQLCipher AES-256 encrypted database with 10 versioned migrations
- 28 Tauri IPC commands for triage, analysis, document, and system ops
- Ollama: hardware probe, model recommendations, pull/delete with events
- RCA and blameless post-mortem Markdown document generators
- PDF export via printpdf
- Audit log: SHA-256 hash of every external data send
- Integration stubs for Confluence, ServiceNow, Azure DevOps (v0.2)

Frontend (React 18 + TypeScript + Vite, src/):
- 9 pages: full triage workflow NewIssue→LogUpload→Triage→Resolution→RCA→Postmortem→History+Settings
- 7 components: ChatWindow, TriageProgress, PiiDiffViewer, DocEditor, HardwareReport, ModelSelector, UI primitives
- 3 Zustand stores: session, settings (persisted), history
- Type-safe tauriCommands.ts matching Rust backend types exactly
- 8 IT domain system prompts (Linux, Windows, Network, K8s, DB, Virt, HW, Obs)

DevOps:
- .woodpecker/test.yml: rustfmt, clippy, cargo test, tsc, vitest on every push
- .woodpecker/release.yml: linux/amd64 + linux/arm64 builds, Gogs release upload

Verified:
- cargo check: zero errors
- tsc --noEmit: zero errors
- vitest run: 13/13 unit tests passing

Co-Authored-By: Claude Sonnet 4.6 (1M context) <noreply@anthropic.com>
2026-03-14 22:36:25 -05:00

41 lines
1.7 KiB
JavaScript

"use strict";
Object.defineProperty(exports, "__esModule", { value: true });
exports.ModuleMemory = void 0;
const lifetime_1 = require("./lifetime");
/**
* @private
*/
class ModuleMemory {
constructor(module) {
this.module = module;
}
toPointerArray(handleArray) {
const typedArray = new Int32Array(handleArray.map((handle) => handle.value));
const numBytes = typedArray.length * typedArray.BYTES_PER_ELEMENT;
const ptr = this.module._malloc(numBytes);
var heapBytes = new Uint8Array(this.module.HEAPU8.buffer, ptr, numBytes);
heapBytes.set(new Uint8Array(typedArray.buffer));
return new lifetime_1.Lifetime(ptr, undefined, (ptr) => this.module._free(ptr));
}
newMutablePointerArray(length) {
const zeros = new Int32Array(new Array(length).fill(0));
const numBytes = zeros.length * zeros.BYTES_PER_ELEMENT;
const ptr = this.module._malloc(numBytes);
const typedArray = new Int32Array(this.module.HEAPU8.buffer, ptr, length);
typedArray.set(zeros);
return new lifetime_1.Lifetime({ typedArray, ptr }, undefined, (value) => this.module._free(value.ptr));
}
newHeapCharPointer(string) {
const numBytes = this.module.lengthBytesUTF8(string) + 1;
const ptr = this.module._malloc(numBytes);
this.module.stringToUTF8(string, ptr, numBytes);
return new lifetime_1.Lifetime(ptr, undefined, (value) => this.module._free(value));
}
consumeHeapCharPointer(ptr) {
const str = this.module.UTF8ToString(ptr);
this.module._free(ptr);
return str;
}
}
exports.ModuleMemory = ModuleMemory;
//# sourceMappingURL=memory.js.map