- Update all un.* implementations to use HMAC-SHA256 signing - Headers: Authorization (Bearer public_key), X-Timestamp, X-Signature - Signature: HMAC-SHA256(secret_key, "timestamp:METHOD:path:body") - Fix test suite issues (bash arithmetic, ES module compat, TCL shebang) - Add CLAUDE.md with inception testing documentation - Update README.md with HMAC auth and dependency table - All 38 implementations pass inception test via un2
548 lines
25 KiB
Zig
548 lines
25 KiB
Zig
// PUBLIC DOMAIN - NO LICENSE, NO WARRANTY
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//
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// This is free public domain software for the public good of a permacomputer hosted
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// at permacomputer.com - an always-on computer by the people, for the people. One
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// which is durable, easy to repair, and distributed like tap water for machine
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// learning intelligence.
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//
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// The permacomputer is community-owned infrastructure optimized around four values:
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//
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// TRUTH - First principles, math & science, open source code freely distributed
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// FREEDOM - Voluntary partnerships, freedom from tyranny & corporate control
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// HARMONY - Minimal waste, self-renewing systems with diverse thriving connections
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// LOVE - Be yourself without hurting others, cooperation through natural law
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//
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// This software contributes to that vision by enabling code execution across 42+
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// programming languages through a unified interface, accessible to all. Code is
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// seeds to sprout on any abandoned technology.
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//
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// Learn more: https://www.permacomputer.com
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//
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// Anyone is free to copy, modify, publish, use, compile, sell, or distribute this
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// software, either in source code form or as a compiled binary, for any purpose,
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// commercial or non-commercial, and by any means.
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//
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// NO WARRANTY. THE SOFTWARE IS PROVIDED "AS IS" WITHOUT WARRANTY OF ANY KIND.
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//
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// That said, our permacomputer's digital membrane stratum continuously runs unit,
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// integration, and functional tests on all of it's own software - with our
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// permacomputer monitoring itself, repairing itself, with minimal human in the
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// loop guidance. Our agents do their best.
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//
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// Copyright 2025 TimeHexOn & foxhop & russell@unturf
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// https://www.timehexon.com
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// https://www.foxhop.net
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// https://www.unturf.com/software
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// UN CLI - Zig Implementation (using curl subprocess for simplicity)
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// Compile: zig build-exe un.zig -O ReleaseFast
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// Usage:
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// un.zig script.py
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// un.zig -e KEY=VALUE script.py
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// un.zig session --list
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// un.zig service --name web --ports 8080
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// Note: This implementation uses system() to call curl for simplicity
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// A production version would use Zig's HTTP client library
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const std = @import("std");
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const fs = std.fs;
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const process = std.process;
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const mem = std.mem;
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const time = std.time;
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const API_BASE = "https://api.unsandbox.com";
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const PORTAL_BASE = "https://unsandbox.com";
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fn computeHmacCmd(allocator: std.mem.Allocator, secret_key: []const u8, message: []const u8) ![]const u8 {
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return try std.fmt.allocPrint(allocator, "echo -n '{s}' | openssl dgst -sha256 -hmac '{s}' -hex 2>/dev/null | sed 's/.*= //'", .{ message, secret_key });
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}
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fn getTimestamp(allocator: std.mem.Allocator) ![]const u8 {
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const timestamp = std.time.timestamp();
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return try std.fmt.allocPrint(allocator, "{d}", .{timestamp});
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}
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fn buildAuthCmd(allocator: std.mem.Allocator, method: []const u8, path: []const u8, body: []const u8, public_key: []const u8, secret_key: []const u8) ![]const u8 {
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if (secret_key.len == 0) {
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// Legacy mode: use public_key as bearer token
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return try std.fmt.allocPrint(allocator, "-H 'Authorization: Bearer {s}'", .{public_key});
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}
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// HMAC mode
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const timestamp_str = try getTimestamp(allocator);
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defer allocator.free(timestamp_str);
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const message = try std.fmt.allocPrint(allocator, "{s}:{s}:{s}:{s}", .{ timestamp_str, method, path, body });
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defer allocator.free(message);
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const hmac_cmd = try computeHmacCmd(allocator, secret_key, message);
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defer allocator.free(hmac_cmd);
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// Execute HMAC command to get signature
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var signature_buf: [256]u8 = undefined;
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var fbs = std.io.fixedBufferStream(&signature_buf);
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const signature_len = blk: {
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const result = try std.process.Child.run(.{
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.allocator = allocator,
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.argv = &[_][]const u8{ "sh", "-c", hmac_cmd },
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});
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defer allocator.free(result.stdout);
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defer allocator.free(result.stderr);
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const trimmed = mem.trim(u8, result.stdout, &std.ascii.whitespace);
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@memcpy(signature_buf[0..trimmed.len], trimmed);
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break :blk trimmed.len;
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};
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const signature = signature_buf[0..signature_len];
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return try std.fmt.allocPrint(allocator, "-H 'Authorization: Bearer {s}' -H 'X-Timestamp: {s}' -H 'X-Signature: {s}'", .{ public_key, timestamp_str, signature });
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}
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pub fn main() !u8 {
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var gpa = std.heap.GeneralPurposeAllocator(.{}){};
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defer _ = gpa.deinit();
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const allocator = gpa.allocator();
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const args = try process.argsAlloc(allocator);
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defer process.argsFree(allocator, args);
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if (args.len < 2) {
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std.debug.print("Usage: {s} [options] <source_file>\n", .{args[0]});
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std.debug.print(" {s} session [options]\n", .{args[0]});
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std.debug.print(" {s} service [options]\n", .{args[0]});
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std.debug.print(" {s} key [--extend]\n", .{args[0]});
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return 1;
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}
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var public_key = std.process.getEnvVarOwned(allocator, "UNSANDBOX_PUBLIC_KEY") catch blk: {
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// Fall back to UNSANDBOX_API_KEY for backwards compatibility
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break :blk std.process.getEnvVarOwned(allocator, "UNSANDBOX_API_KEY") catch try allocator.dupe(u8, "");
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};
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defer allocator.free(public_key);
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const secret_key = std.process.getEnvVarOwned(allocator, "UNSANDBOX_SECRET_KEY") catch blk: {
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break :blk try allocator.dupe(u8, "");
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};
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defer allocator.free(secret_key);
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// Handle session command
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if (mem.eql(u8, args[1], "session")) {
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var list = false;
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var kill: ?[]const u8 = null;
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var shell: ?[]const u8 = null;
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var i: usize = 2;
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while (i < args.len) : (i += 1) {
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if (mem.eql(u8, args[i], "--list")) {
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list = true;
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} else if (mem.eql(u8, args[i], "--kill") and i + 1 < args.len) {
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i += 1;
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kill = args[i];
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} else if (mem.eql(u8, args[i], "--shell") and i + 1 < args.len) {
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i += 1;
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shell = args[i];
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} else if (mem.eql(u8, args[i], "-k") and i + 1 < args.len) {
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i += 1;
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allocator.free(public_key);
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public_key = try allocator.dupe(u8, args[i]);
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}
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}
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if (list) {
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const auth_headers = try buildAuthCmd(allocator, "GET", "/sessions", "", public_key, secret_key);
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defer allocator.free(auth_headers);
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const cmd = try std.fmt.allocPrint(allocator, "curl -s -X GET '{s}/sessions' {s}", .{ API_BASE, auth_headers });
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defer allocator.free(cmd);
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_ = std.c.system(cmd.ptr);
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std.debug.print("\n", .{});
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} else if (kill) |k| {
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const path = try std.fmt.allocPrint(allocator, "/sessions/{s}", .{k});
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defer allocator.free(path);
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const auth_headers = try buildAuthCmd(allocator, "DELETE", path, "", public_key, secret_key);
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defer allocator.free(auth_headers);
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const cmd = try std.fmt.allocPrint(allocator, "curl -s -X DELETE '{s}/sessions/{s}' {s}", .{ API_BASE, k, auth_headers });
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defer allocator.free(cmd);
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_ = std.c.system(cmd.ptr);
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std.debug.print("\x1b[32mSession terminated: {s}\x1b[0m\n", .{k});
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} else {
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const sh = shell orelse "bash";
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const json = try std.fmt.allocPrint(allocator, "{{\"shell\":\"{s}\"}}", .{sh});
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defer allocator.free(json);
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const auth_headers = try buildAuthCmd(allocator, "POST", "/sessions", json, public_key, secret_key);
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defer allocator.free(auth_headers);
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const cmd = try std.fmt.allocPrint(allocator, "curl -s -X POST '{s}/sessions' -H 'Content-Type: application/json' {s} -d '{s}'", .{ API_BASE, auth_headers, json });
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defer allocator.free(cmd);
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std.debug.print("\x1b[33mCreating session...\x1b[0m\n", .{});
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_ = std.c.system(cmd.ptr);
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std.debug.print("\n", .{});
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}
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return 0;
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}
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// Handle service command
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if (mem.eql(u8, args[1], "service")) {
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var list = false;
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var name: ?[]const u8 = null;
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var ports: ?[]const u8 = null;
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var service_type: ?[]const u8 = null;
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var info: ?[]const u8 = null;
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var execute: ?[]const u8 = null;
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var command: ?[]const u8 = null;
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var dump_bootstrap: ?[]const u8 = null;
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var dump_file: ?[]const u8 = null;
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var i: usize = 2;
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while (i < args.len) : (i += 1) {
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if (mem.eql(u8, args[i], "--list")) {
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list = true;
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} else if (mem.eql(u8, args[i], "--name") and i + 1 < args.len) {
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i += 1;
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name = args[i];
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} else if (mem.eql(u8, args[i], "--ports") and i + 1 < args.len) {
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i += 1;
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ports = args[i];
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} else if (mem.eql(u8, args[i], "--type") and i + 1 < args.len) {
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i += 1;
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service_type = args[i];
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} else if (mem.eql(u8, args[i], "--info") and i + 1 < args.len) {
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i += 1;
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info = args[i];
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} else if (mem.eql(u8, args[i], "--execute") and i + 1 < args.len) {
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i += 1;
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execute = args[i];
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} else if (mem.eql(u8, args[i], "--command") and i + 1 < args.len) {
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i += 1;
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command = args[i];
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} else if (mem.eql(u8, args[i], "--dump-bootstrap") and i + 1 < args.len) {
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i += 1;
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dump_bootstrap = args[i];
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} else if (mem.eql(u8, args[i], "--dump-file") and i + 1 < args.len) {
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i += 1;
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dump_file = args[i];
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} else if (mem.eql(u8, args[i], "-k") and i + 1 < args.len) {
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i += 1;
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allocator.free(public_key);
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public_key = try allocator.dupe(u8, args[i]);
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}
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}
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if (list) {
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const auth_headers = try buildAuthCmd(allocator, "GET", "/services", "", public_key, secret_key);
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defer allocator.free(auth_headers);
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const cmd = try std.fmt.allocPrint(allocator, "curl -s -X GET '{s}/services' {s}", .{ API_BASE, auth_headers });
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defer allocator.free(cmd);
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_ = std.c.system(cmd.ptr);
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std.debug.print("\n", .{});
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} else if (info) |inf| {
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const path = try std.fmt.allocPrint(allocator, "/services/{s}", .{inf});
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defer allocator.free(path);
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const auth_headers = try buildAuthCmd(allocator, "GET", path, "", public_key, secret_key);
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defer allocator.free(auth_headers);
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const cmd = try std.fmt.allocPrint(allocator, "curl -s -X GET '{s}/services/{s}' {s}", .{ API_BASE, inf, auth_headers });
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defer allocator.free(cmd);
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_ = std.c.system(cmd.ptr);
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std.debug.print("\n", .{});
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} else if (execute) |exec_id| {
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const cmd_text = command orelse "";
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const json = try std.fmt.allocPrint(allocator, "{{\"command\":\"{s}\"}}", .{cmd_text});
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defer allocator.free(json);
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const path = try std.fmt.allocPrint(allocator, "/services/{s}/execute", .{exec_id});
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defer allocator.free(path);
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const auth_headers = try buildAuthCmd(allocator, "POST", path, json, public_key, secret_key);
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defer allocator.free(auth_headers);
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const cmd = try std.fmt.allocPrint(allocator, "curl -s -X POST '{s}/services/{s}/execute' -H 'Content-Type: application/json' {s} -d '{s}'", .{ API_BASE, exec_id, auth_headers, json });
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defer allocator.free(cmd);
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_ = std.c.system(cmd.ptr);
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std.debug.print("\n", .{});
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} else if (dump_bootstrap) |bootstrap_id| {
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std.debug.print("Fetching bootstrap script from {s}...\n", .{bootstrap_id});
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const tmp_file = "/tmp/unsandbox_bootstrap_dump.txt";
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const json = "{{\"command\":\"cat /tmp/bootstrap.sh\"}}";
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const path = try std.fmt.allocPrint(allocator, "/services/{s}/execute", .{bootstrap_id});
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defer allocator.free(path);
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const auth_headers = try buildAuthCmd(allocator, "POST", path, json, public_key, secret_key);
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defer allocator.free(auth_headers);
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const cmd = try std.fmt.allocPrint(allocator, "curl -s -X POST '{s}/services/{s}/execute' -H 'Content-Type: application/json' {s} -d '{s}' -o {s}", .{ API_BASE, bootstrap_id, auth_headers, json, tmp_file });
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defer allocator.free(cmd);
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_ = std.c.system(cmd.ptr);
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// Read the JSON response
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const json_content = fs.cwd().readFileAlloc(allocator, tmp_file, 1024 * 1024) catch |err| {
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std.debug.print("\x1b[31mError reading response: {}\x1b[0m\n", .{err});
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std.fs.cwd().deleteFile(tmp_file) catch {};
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return 1;
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};
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defer allocator.free(json_content);
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std.fs.cwd().deleteFile(tmp_file) catch {};
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// Extract stdout from JSON (simple string search)
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const stdout_prefix = "\"stdout\":\"";
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if (mem.indexOf(u8, json_content, stdout_prefix)) |start_idx| {
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const value_start = start_idx + stdout_prefix.len;
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if (mem.indexOfPos(u8, json_content, value_start, "\"")) |end_idx| {
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const bootstrap_content = json_content[value_start..end_idx];
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if (dump_file) |file_path| {
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const file = try std.fs.cwd().createFile(file_path, .{});
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defer file.close();
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try file.writeAll(bootstrap_content);
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// Set permissions (Unix only)
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if (@import("builtin").os.tag != .windows) {
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const chmod_cmd = try std.fmt.allocPrint(allocator, "chmod 755 {s}", .{file_path});
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defer allocator.free(chmod_cmd);
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_ = std.c.system(chmod_cmd.ptr);
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}
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std.debug.print("Bootstrap saved to {s}\n", .{file_path});
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} else {
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std.debug.print("{s}", .{bootstrap_content});
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}
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} else {
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std.debug.print("\x1b[31mError: Failed to parse bootstrap response\x1b[0m\n", .{});
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return 1;
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}
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} else {
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std.debug.print("\x1b[31mError: Failed to fetch bootstrap (service not running or no bootstrap file)\x1b[0m\n", .{});
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return 1;
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}
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} else if (name) |n| {
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var json_buf: [4096]u8 = undefined;
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var json_stream = std.io.fixedBufferStream(&json_buf);
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const writer = json_stream.writer();
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try writer.print("{{\"name\":\"{s}\"", .{n});
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if (ports) |p| {
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try writer.print(",\"ports\":[{s}]", .{p});
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}
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if (service_type) |t| {
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try writer.print(",\"service_type\":\"{s}\"", .{t});
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}
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try writer.writeAll("}");
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const json_str = json_stream.getWritten();
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const auth_headers = try buildAuthCmd(allocator, "POST", "/services", json_str, public_key, secret_key);
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defer allocator.free(auth_headers);
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const cmd = try std.fmt.allocPrint(allocator, "curl -s -X POST '{s}/services' -H 'Content-Type: application/json' {s} -d '{s}'", .{ API_BASE, auth_headers, json_str });
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defer allocator.free(cmd);
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std.debug.print("\x1b[33mCreating service...\x1b[0m\n", .{});
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_ = std.c.system(cmd.ptr);
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std.debug.print("\n", .{});
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}
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return 0;
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}
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// Handle key command
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if (mem.eql(u8, args[1], "key")) {
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var extend = false;
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var i: usize = 2;
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while (i < args.len) : (i += 1) {
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if (mem.eql(u8, args[i], "--extend")) {
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extend = true;
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} else if (mem.eql(u8, args[i], "-k") and i + 1 < args.len) {
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i += 1;
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allocator.free(public_key);
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public_key = try allocator.dupe(u8, args[i]);
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}
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}
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if (extend) {
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// First validate to get the public_key
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const json_file = "/tmp/unsandbox_key_validate.json";
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const auth_headers = try buildAuthCmd(allocator, "POST", "/keys/validate", "", public_key, secret_key);
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defer allocator.free(auth_headers);
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const cmd_validate = try std.fmt.allocPrint(allocator, "curl -s -X POST '{s}/keys/validate' -H 'Content-Type: application/json' {s} -o {s}", .{ PORTAL_BASE, auth_headers, json_file });
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defer allocator.free(cmd_validate);
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_ = std.c.system(cmd_validate.ptr);
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// Read the JSON response to extract public_key
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const json_content = fs.cwd().readFileAlloc(allocator, json_file, 1024 * 1024) catch |err| {
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std.debug.print("\x1b[31mError reading validation response: {}\x1b[0m\n", .{err});
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std.fs.cwd().deleteFile(json_file) catch {};
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return 1;
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};
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defer allocator.free(json_content);
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std.fs.cwd().deleteFile(json_file) catch {};
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// Simple JSON parsing to find public_key (looking for "public_key":"value")
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const pk_prefix = "\"public_key\":\"";
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var public_key_value: ?[]const u8 = null;
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if (mem.indexOf(u8, json_content, pk_prefix)) |start_idx| {
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const value_start = start_idx + pk_prefix.len;
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if (mem.indexOfPos(u8, json_content, value_start, "\"")) |end_idx| {
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public_key_value = json_content[value_start..end_idx];
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}
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}
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if (public_key_value) |pk| {
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const url = try std.fmt.allocPrint(allocator, "{s}/keys/extend?pk={s}", .{ PORTAL_BASE, pk });
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defer allocator.free(url);
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std.debug.print("\x1b[33mOpening browser to extend key...\x1b[0m\n", .{});
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const open_cmd = try std.fmt.allocPrint(allocator, "xdg-open '{s}' 2>/dev/null || open '{s}' 2>/dev/null || start '{s}' 2>/dev/null", .{ url, url, url });
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defer allocator.free(open_cmd);
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_ = std.c.system(open_cmd.ptr);
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} else {
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std.debug.print("\x1b[31mError: Could not extract public_key from response\x1b[0m\n", .{});
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return 1;
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|
}
|
|
} else {
|
|
// Regular validation
|
|
const json_file = "/tmp/unsandbox_key_validate.json";
|
|
const auth_headers = try buildAuthCmd(allocator, "POST", "/keys/validate", "", public_key, secret_key);
|
|
defer allocator.free(auth_headers);
|
|
const cmd = try std.fmt.allocPrint(allocator, "curl -s -X POST '{s}/keys/validate' -H 'Content-Type: application/json' {s} -o {s}", .{ PORTAL_BASE, auth_headers, json_file });
|
|
defer allocator.free(cmd);
|
|
_ = std.c.system(cmd.ptr);
|
|
|
|
// Read and parse the response
|
|
const json_content = fs.cwd().readFileAlloc(allocator, json_file, 1024 * 1024) catch |err| {
|
|
std.debug.print("\x1b[31mError reading validation response: {}\x1b[0m\n", .{err});
|
|
std.fs.cwd().deleteFile(json_file) catch {};
|
|
return 1;
|
|
};
|
|
defer allocator.free(json_content);
|
|
std.fs.cwd().deleteFile(json_file) catch {};
|
|
|
|
// Simple JSON parsing (looking for specific fields)
|
|
const status_prefix = "\"status\":\"";
|
|
var status: ?[]const u8 = null;
|
|
if (mem.indexOf(u8, json_content, status_prefix)) |start_idx| {
|
|
const value_start = start_idx + status_prefix.len;
|
|
if (mem.indexOfPos(u8, json_content, value_start, "\"")) |end_idx| {
|
|
status = json_content[value_start..end_idx];
|
|
}
|
|
}
|
|
|
|
if (status == null) {
|
|
std.debug.print("\x1b[31mError: Invalid response from server\x1b[0m\n", .{});
|
|
return 1;
|
|
}
|
|
|
|
// Extract other fields
|
|
var pub_key: ?[]const u8 = null;
|
|
var tier: ?[]const u8 = null;
|
|
var expires_at: ?[]const u8 = null;
|
|
|
|
const pk_prefix = "\"public_key\":\"";
|
|
if (mem.indexOf(u8, json_content, pk_prefix)) |start_idx| {
|
|
const value_start = start_idx + pk_prefix.len;
|
|
if (mem.indexOfPos(u8, json_content, value_start, "\"")) |end_idx| {
|
|
pub_key = json_content[value_start..end_idx];
|
|
}
|
|
}
|
|
|
|
const tier_prefix = "\"tier\":\"";
|
|
if (mem.indexOf(u8, json_content, tier_prefix)) |start_idx| {
|
|
const value_start = start_idx + tier_prefix.len;
|
|
if (mem.indexOfPos(u8, json_content, value_start, "\"")) |end_idx| {
|
|
tier = json_content[value_start..end_idx];
|
|
}
|
|
}
|
|
|
|
const expires_prefix = "\"expires_at\":\"";
|
|
if (mem.indexOf(u8, json_content, expires_prefix)) |start_idx| {
|
|
const value_start = start_idx + expires_prefix.len;
|
|
if (mem.indexOfPos(u8, json_content, value_start, "\"")) |end_idx| {
|
|
expires_at = json_content[value_start..end_idx];
|
|
}
|
|
}
|
|
|
|
// Display results based on status
|
|
if (status) |s| {
|
|
if (mem.eql(u8, s, "valid")) {
|
|
std.debug.print("\x1b[32mValid\x1b[0m\n", .{});
|
|
if (pub_key) |pk| std.debug.print("Public Key: {s}\n", .{pk});
|
|
if (tier) |t| std.debug.print("Tier: {s}\n", .{t});
|
|
if (expires_at) |exp| std.debug.print("Expires: {s}\n", .{exp});
|
|
} else if (mem.eql(u8, s, "expired")) {
|
|
std.debug.print("\x1b[31mExpired\x1b[0m\n", .{});
|
|
if (pub_key) |pk| std.debug.print("Public Key: {s}\n", .{pk});
|
|
if (tier) |t| std.debug.print("Tier: {s}\n", .{t});
|
|
if (expires_at) |exp| std.debug.print("Expired: {s}\n", .{exp});
|
|
std.debug.print("\x1b[33mTo renew: Visit {s}/keys/extend\x1b[0m\n", .{PORTAL_BASE});
|
|
} else if (mem.eql(u8, s, "invalid")) {
|
|
std.debug.print("\x1b[31mInvalid\x1b[0m\n", .{});
|
|
} else {
|
|
std.debug.print("Status: {s}\n", .{s});
|
|
}
|
|
}
|
|
}
|
|
return 0;
|
|
}
|
|
|
|
// Execute mode - find source file
|
|
var source_file: ?[]const u8 = null;
|
|
for (args[1..]) |arg| {
|
|
if (!mem.startsWith(u8, arg, "-")) {
|
|
source_file = arg;
|
|
break;
|
|
}
|
|
}
|
|
|
|
if (source_file == null) {
|
|
std.debug.print("\x1b[31mError: No source file specified\x1b[0m\n", .{});
|
|
return 1;
|
|
}
|
|
|
|
const filename = source_file.?;
|
|
|
|
// Detect language
|
|
const ext = fs.path.extension(filename);
|
|
const lang = blk: {
|
|
if (mem.eql(u8, ext, ".py")) break :blk "python";
|
|
if (mem.eql(u8, ext, ".js")) break :blk "javascript";
|
|
if (mem.eql(u8, ext, ".go")) break :blk "go";
|
|
if (mem.eql(u8, ext, ".rs")) break :blk "rust";
|
|
if (mem.eql(u8, ext, ".c")) break :blk "c";
|
|
if (mem.eql(u8, ext, ".cpp")) break :blk "cpp";
|
|
if (mem.eql(u8, ext, ".d")) break :blk "d";
|
|
if (mem.eql(u8, ext, ".zig")) break :blk "zig";
|
|
if (mem.eql(u8, ext, ".nim")) break :blk "nim";
|
|
if (mem.eql(u8, ext, ".v")) break :blk "v";
|
|
std.debug.print("\x1b[31mError: Cannot detect language\x1b[0m\n", .{});
|
|
return 1;
|
|
};
|
|
|
|
// Read source file
|
|
const code = fs.cwd().readFileAlloc(allocator, filename, 10 * 1024 * 1024) catch |err| {
|
|
std.debug.print("\x1b[31mError reading file: {}\x1b[0m\n", .{err});
|
|
return 1;
|
|
};
|
|
defer allocator.free(code);
|
|
|
|
// Build JSON (simplified - doesn't handle all escape sequences)
|
|
const json_file = "/tmp/unsandbox_request.json";
|
|
const file = try std.fs.cwd().createFile(json_file, .{});
|
|
defer file.close();
|
|
const writer = file.writer();
|
|
try writer.print("{{\"language\":\"{s}\",\"code\":\"", .{lang});
|
|
|
|
// Escape JSON
|
|
for (code) |c| {
|
|
switch (c) {
|
|
'"' => try writer.writeAll("\\\""),
|
|
'\\' => try writer.writeAll("\\\\"),
|
|
'\n' => try writer.writeAll("\\n"),
|
|
'\r' => try writer.writeAll("\\r"),
|
|
'\t' => try writer.writeAll("\\t"),
|
|
else => try writer.writeByte(c),
|
|
}
|
|
}
|
|
try writer.writeAll("\"}");
|
|
|
|
// Read back the JSON to compute HMAC
|
|
const json_content = try fs.cwd().readFileAlloc(allocator, json_file, 10 * 1024 * 1024);
|
|
defer allocator.free(json_content);
|
|
|
|
// Execute with curl
|
|
const auth_headers = try buildAuthCmd(allocator, "POST", "/execute", json_content, public_key, secret_key);
|
|
defer allocator.free(auth_headers);
|
|
const cmd = try std.fmt.allocPrint(allocator, "curl -s -X POST '{s}/execute' -H 'Content-Type: application/json' {s} -d @{s}", .{ API_BASE, auth_headers, json_file });
|
|
defer allocator.free(cmd);
|
|
|
|
const result = std.c.system(cmd.ptr);
|
|
std.debug.print("\n", .{});
|
|
|
|
// Cleanup
|
|
std.fs.cwd().deleteFile(json_file) catch {};
|
|
|
|
return if (result == 0) 0 else 1;
|
|
}
|