storage-admin.ts561 lines · main
| 1 | import { ValidationError } from '@briven/shared'; |
| 2 | import { and, eq, inArray, isNull, sql } from 'drizzle-orm'; |
| 3 | |
| 4 | import { getDb } from '../db/client.js'; |
| 5 | import { runInProjectDatabase } from '../db/data-plane.js'; |
| 6 | import { projectFiles, projects, storageKeys, tierStorageCaps, type ProjectTier } from '../db/schema.js'; |
| 7 | import { log } from '../lib/logger.js'; |
| 8 | import { TIERS } from './tiers.js'; |
| 9 | // NOTE: `listProjectsForUser` (from ./projects.js) is imported LAZILY inside |
| 10 | // listMyStorageUsage — NOT statically here. projects.js pulls the full |
| 11 | // data-plane surface (dropProjectDatabase/provisionProjectDatabase), which the |
| 12 | // enforcement unit test stubs out with a minimal mock that only exposes |
| 13 | // runInProjectDatabase. A static import would make loading this module fail |
| 14 | // under that mock; a dynamic import keeps the module load clean while the |
| 15 | // runtime behaviour is identical. |
| 16 | |
| 17 | /** |
| 18 | * Storage admin (sprint plan Sprint 4). |
| 19 | * |
| 20 | * DoltGres can't report byte sizes (pg_total_relation_size returns 0 — see |
| 21 | * services/usage.ts), so the operator dashboard measures what DoltGres CAN |
| 22 | * count: the number of user tables and the total row count across them. |
| 23 | * |
| 24 | * Phase 1 = read-only usage truth. Per-project / per-tier limits + flagging |
| 25 | * arrive in Phase 2; the admin web page in Phase 3; enforcement (blocking) is |
| 26 | * a deferred Phase 4. v1 NEVER blocks a customer — it only surfaces usage. |
| 27 | */ |
| 28 | |
| 29 | export interface ProjectRowCount { |
| 30 | /** Total rows summed across every user table (excludes _briven_* bookkeeping). */ |
| 31 | readonly rowCount: number; |
| 32 | /** Number of user tables (excludes _briven_*). */ |
| 33 | readonly tableCount: number; |
| 34 | } |
| 35 | |
| 36 | /** |
| 37 | * Count tables + total rows in a project's OWN DoltGres database. |
| 38 | * |
| 39 | * One connection, one transaction: list the user tables from the catalog (the |
| 40 | * same pg_class filter getStorageUsage uses — proven on DoltGres), then run a |
| 41 | * plain COUNT(*) per table and sum in JS. COUNT(*) and the pg_class listing are |
| 42 | * both DoltGres-safe; no pg_total_relation_size / generate_series. |
| 43 | * |
| 44 | * Returns zeros (never throws) when the project DB isn't provisioned yet or a |
| 45 | * count fails — the dashboard renders that as "—" naturally, exactly like |
| 46 | * getStorageUsage. |
| 47 | * |
| 48 | * N+1 COUNT queries per project is acceptable at current scale (few projects, |
| 49 | * few tables). If table counts grow large, move this behind the hourly usage |
| 50 | * aggregator (a periodic snapshot) — flagged in the plan's Notes. |
| 51 | */ |
| 52 | export async function getProjectRowCount(projectId: string): Promise<ProjectRowCount> { |
| 53 | try { |
| 54 | return await runInProjectDatabase(projectId, async (tx) => { |
| 55 | const tables = (await tx.unsafe(` |
| 56 | SELECT c.relname AS name |
| 57 | FROM pg_class c |
| 58 | JOIN pg_namespace n ON n.oid = c.relnamespace |
| 59 | WHERE n.nspname = 'public' |
| 60 | AND c.relkind IN ('r', 'p') -- ordinary + partitioned tables |
| 61 | AND left(c.relname, 8) <> '_briven_' |
| 62 | `)) as Array<{ name: string }>; |
| 63 | |
| 64 | let rowCount = 0; |
| 65 | for (const t of tables) { |
| 66 | // t.name comes from the system catalog (not user input); quote it so |
| 67 | // mixed-case / reserved names still resolve. |
| 68 | const counted = (await tx.unsafe( |
| 69 | `SELECT COUNT(*)::bigint AS n FROM "${t.name}"`, |
| 70 | )) as Array<{ n: string }>; |
| 71 | rowCount += counted[0] ? Number.parseInt(counted[0].n, 10) : 0; |
| 72 | } |
| 73 | return { rowCount, tableCount: tables.length }; |
| 74 | }); |
| 75 | } catch (err) { |
| 76 | log.warn('project_row_count_failed', { |
| 77 | projectId, |
| 78 | message: err instanceof Error ? err.message : String(err), |
| 79 | }); |
| 80 | return { rowCount: 0, tableCount: 0 }; |
| 81 | } |
| 82 | } |
| 83 | |
| 84 | /* ── Tier storage caps (DB-backed, admin-editable — Phase 2) ─────────────── */ |
| 85 | |
| 86 | export interface StorageCap { |
| 87 | readonly maxRows: number; |
| 88 | readonly maxTables: number; |
| 89 | } |
| 90 | |
| 91 | /** |
| 92 | * The Free/Pro/Team caps from `tier_storage_caps`. Read fresh each call (only |
| 93 | * the admin page + the per-project flag math hit it; not a hot path) so an |
| 94 | * edit takes effect immediately. |
| 95 | */ |
| 96 | export async function getTierStorageCaps(): Promise<Record<ProjectTier, StorageCap>> { |
| 97 | const db = getDb(); |
| 98 | const rows = await db.select().from(tierStorageCaps); |
| 99 | const out = {} as Record<ProjectTier, StorageCap>; |
| 100 | for (const r of rows) { |
| 101 | out[r.tier] = { maxRows: Number(r.maxRows), maxTables: Number(r.maxTables) }; |
| 102 | } |
| 103 | return out; |
| 104 | } |
| 105 | |
| 106 | function assertNonNegInt(value: number, field: string): void { |
| 107 | if (!Number.isInteger(value) || value < 0) { |
| 108 | throw new ValidationError(`${field} must be a non-negative whole number`, { field, value }); |
| 109 | } |
| 110 | } |
| 111 | |
| 112 | /** Update one tier's caps. Takes effect immediately — no redeploy. */ |
| 113 | export async function updateTierStorageCap( |
| 114 | tier: ProjectTier, |
| 115 | caps: StorageCap, |
| 116 | actorId: string | null, |
| 117 | ): Promise<void> { |
| 118 | assertNonNegInt(caps.maxRows, 'maxRows'); |
| 119 | assertNonNegInt(caps.maxTables, 'maxTables'); |
| 120 | const db = getDb(); |
| 121 | await db |
| 122 | .update(tierStorageCaps) |
| 123 | .set({ maxRows: caps.maxRows, maxTables: caps.maxTables, updatedAt: new Date(), updatedBy: actorId }) |
| 124 | .where(eq(tierStorageCaps.tier, tier)); |
| 125 | } |
| 126 | |
| 127 | /** |
| 128 | * Set (or clear) a single project's storage override. Pass null for a field to |
| 129 | * clear it — the project then inherits its tier cap for that field. |
| 130 | */ |
| 131 | export async function setProjectStorageLimit( |
| 132 | projectId: string, |
| 133 | limit: { maxRows: number | null; maxTables: number | null }, |
| 134 | _actorId: string | null, |
| 135 | ): Promise<void> { |
| 136 | if (limit.maxRows != null) assertNonNegInt(limit.maxRows, 'maxRows'); |
| 137 | if (limit.maxTables != null) assertNonNegInt(limit.maxTables, 'maxTables'); |
| 138 | const db = getDb(); |
| 139 | await db |
| 140 | .update(projects) |
| 141 | .set({ storageMaxRows: limit.maxRows, storageMaxTables: limit.maxTables, updatedAt: new Date() }) |
| 142 | .where(eq(projects.id, projectId)); |
| 143 | } |
| 144 | |
| 145 | /* ── Over-limit flag math (pure — unit tested) ───────────────────────────── */ |
| 146 | |
| 147 | export interface LimitFlags { |
| 148 | readonly overRows: boolean; |
| 149 | readonly overTables: boolean; |
| 150 | readonly overLimit: boolean; |
| 151 | } |
| 152 | |
| 153 | /** |
| 154 | * Pure over-limit decision. "At the cap" is NOT over (strictly greater than). |
| 155 | * Extracted so the flag math is unit-tested without a database. |
| 156 | */ |
| 157 | export function evaluateStorageLimit(input: { |
| 158 | rowCount: number; |
| 159 | tableCount: number; |
| 160 | maxRows: number; |
| 161 | maxTables: number; |
| 162 | }): LimitFlags { |
| 163 | const overRows = input.rowCount > input.maxRows; |
| 164 | const overTables = input.tableCount > input.maxTables; |
| 165 | return { overRows, overTables, overLimit: overRows || overTables }; |
| 166 | } |
| 167 | |
| 168 | /* ── Usage list with over-limit flagging (Phase 2) ───────────────────────── */ |
| 169 | |
| 170 | export interface ProjectStorageUsage { |
| 171 | readonly id: string; |
| 172 | readonly name: string; |
| 173 | readonly tier: ProjectTier; |
| 174 | readonly tableCount: number; |
| 175 | readonly rowCount: number; |
| 176 | /** Effective caps = per-project override ?? tier cap. */ |
| 177 | readonly maxRows: number; |
| 178 | readonly maxTables: number; |
| 179 | /** True when the per-project override is set (vs inheriting the tier cap). */ |
| 180 | readonly hasOverride: boolean; |
| 181 | /** Enforcement mode: 'flag' (measure-only) or 'block' (refuse over-cap writes). */ |
| 182 | readonly enforcement: EnforcementMode; |
| 183 | readonly overRows: boolean; |
| 184 | readonly overTables: boolean; |
| 185 | readonly overLimit: boolean; |
| 186 | } |
| 187 | |
| 188 | /** |
| 189 | * Usage for every live project, with effective caps + over-limit flags — drives |
| 190 | * the admin storage page. Counts run in parallel across projects (each hits a |
| 191 | * different project DB pool). v1 only FLAGS (overLimit); enforcement/blocking is |
| 192 | * the deferred Phase 4. |
| 193 | */ |
| 194 | export async function listStorageUsage(): Promise<readonly ProjectStorageUsage[]> { |
| 195 | const db = getDb(); |
| 196 | const caps = await getTierStorageCaps(); |
| 197 | const rows = await db |
| 198 | .select({ |
| 199 | id: projects.id, |
| 200 | name: projects.name, |
| 201 | tier: projects.tier, |
| 202 | storageMaxRows: projects.storageMaxRows, |
| 203 | storageMaxTables: projects.storageMaxTables, |
| 204 | storageEnforcementMode: projects.storageEnforcementMode, |
| 205 | }) |
| 206 | .from(projects) |
| 207 | .where(isNull(projects.deletedAt)); |
| 208 | |
| 209 | return Promise.all( |
| 210 | rows.map(async (p) => { |
| 211 | const { rowCount, tableCount } = await getProjectRowCount(p.id); |
| 212 | // Missing tier cap (shouldn't happen post-seed) → Infinity = never over. |
| 213 | const tierCap = caps[p.tier] ?? { maxRows: Infinity, maxTables: Infinity }; |
| 214 | const maxRows = p.storageMaxRows ?? tierCap.maxRows; |
| 215 | const maxTables = p.storageMaxTables ?? tierCap.maxTables; |
| 216 | const flags = evaluateStorageLimit({ rowCount, tableCount, maxRows, maxTables }); |
| 217 | return { |
| 218 | id: p.id, |
| 219 | name: p.name, |
| 220 | tier: p.tier, |
| 221 | tableCount, |
| 222 | rowCount, |
| 223 | maxRows, |
| 224 | maxTables, |
| 225 | hasOverride: p.storageMaxRows != null || p.storageMaxTables != null, |
| 226 | enforcement: p.storageEnforcementMode === 'block' ? 'block' : 'flag', |
| 227 | ...flags, |
| 228 | }; |
| 229 | }), |
| 230 | ); |
| 231 | } |
| 232 | |
| 233 | /* ── Object-storage (S3/file) usage mirror (read-only) ───────────────────── */ |
| 234 | |
| 235 | export interface ObjectStorageUsage { |
| 236 | readonly id: string; |
| 237 | readonly name: string; |
| 238 | readonly tier: ProjectTier; |
| 239 | /** SUM of non-deleted project_files.size_bytes (TEXT → number in SQL). */ |
| 240 | readonly usedBytes: number; |
| 241 | /** Tier storage byte cap (TIERS[tier].storageBytes). */ |
| 242 | readonly capBytes: number; |
| 243 | /** File-recovery window in days (TIERS[tier].storageRecoveryDays). */ |
| 244 | readonly recoveryDays: number; |
| 245 | /** Count of active (not-revoked) storage_keys for the project. */ |
| 246 | readonly keyCount: number; |
| 247 | readonly over: boolean; |
| 248 | } |
| 249 | |
| 250 | /** |
| 251 | * Read-only object-storage mirror for the admin storage page. Additive to the |
| 252 | * DoltGres row/table view above: this reports each live project's S3 file usage |
| 253 | * (sum of non-deleted project_files bytes) against its tier byte cap, its |
| 254 | * recovery window, and its active storage-key count. |
| 255 | * |
| 256 | * Uses the SAME project source as listStorageUsage (so the same projects, with |
| 257 | * their tier, appear) and TWO grouped aggregate queries — one over project_files, |
| 258 | * one over storage_keys — joined to the project list in JS via Maps. No per- |
| 259 | * project queries. size_bytes is TEXT, so it's cast to numeric in SQL and read |
| 260 | * back as a number (missing project → 0). |
| 261 | */ |
| 262 | export async function listObjectStorageUsage(): Promise<readonly ObjectStorageUsage[]> { |
| 263 | const db = getDb(); |
| 264 | |
| 265 | const rows = await db |
| 266 | .select({ id: projects.id, name: projects.name, tier: projects.tier }) |
| 267 | .from(projects) |
| 268 | .where(isNull(projects.deletedAt)); |
| 269 | |
| 270 | // Grouped SUM of non-deleted file bytes per project (size_bytes is TEXT). |
| 271 | const byteRows = await db |
| 272 | .select({ |
| 273 | projectId: projectFiles.projectId, |
| 274 | usedBytes: sql<number>`coalesce(sum(cast(${projectFiles.sizeBytes} as bigint)), 0)::bigint`, |
| 275 | }) |
| 276 | .from(projectFiles) |
| 277 | .where(isNull(projectFiles.deletedAt)) |
| 278 | .groupBy(projectFiles.projectId); |
| 279 | const bytesByProject = new Map<string, number>(); |
| 280 | for (const r of byteRows) bytesByProject.set(r.projectId, Number(r.usedBytes) || 0); |
| 281 | |
| 282 | // Grouped count of active (not-revoked) storage keys per project. |
| 283 | const keyRows = await db |
| 284 | .select({ |
| 285 | projectId: storageKeys.projectId, |
| 286 | keyCount: sql<number>`count(*)::int`, |
| 287 | }) |
| 288 | .from(storageKeys) |
| 289 | .where(isNull(storageKeys.revokedAt)) |
| 290 | .groupBy(storageKeys.projectId); |
| 291 | const keysByProject = new Map<string, number>(); |
| 292 | for (const r of keyRows) keysByProject.set(r.projectId, Number(r.keyCount) || 0); |
| 293 | |
| 294 | return rows.map((p) => { |
| 295 | const usedBytes = bytesByProject.get(p.id) ?? 0; |
| 296 | const capBytes = TIERS[p.tier].storageBytes; |
| 297 | return { |
| 298 | id: p.id, |
| 299 | name: p.name, |
| 300 | tier: p.tier, |
| 301 | usedBytes, |
| 302 | capBytes, |
| 303 | recoveryDays: TIERS[p.tier].storageRecoveryDays, |
| 304 | keyCount: keysByProject.get(p.id) ?? 0, |
| 305 | over: usedBytes > capBytes, |
| 306 | }; |
| 307 | }); |
| 308 | } |
| 309 | |
| 310 | /* ── Per-user object-storage usage (dashboard "S3 bucket" home) ──────────── */ |
| 311 | |
| 312 | export interface MyStorageUsage { |
| 313 | readonly id: string; |
| 314 | readonly name: string; |
| 315 | readonly tier: ProjectTier; |
| 316 | /** SUM of non-deleted project_files.size_bytes (TEXT → number in SQL). */ |
| 317 | readonly usedBytes: number; |
| 318 | /** Tier storage byte cap (TIERS[tier].storageBytes). */ |
| 319 | readonly capBytes: number; |
| 320 | /** Count of active (not-revoked) storage_keys for the project. */ |
| 321 | readonly keyCount: number; |
| 322 | readonly over: boolean; |
| 323 | } |
| 324 | |
| 325 | /** |
| 326 | * The signed-in user's object-storage usage across every project they belong |
| 327 | * to — the cross-project "S3 bucket" dashboard home. The user-scoped mirror of |
| 328 | * listObjectStorageUsage: same two grouped aggregate queries (file bytes + |
| 329 | * active key count), but restricted to the caller's own project ids via |
| 330 | * listProjectsForUser (org- OR project-scoped membership). Never leaks another |
| 331 | * user's project. Returns [] when the user has no projects. |
| 332 | */ |
| 333 | export async function listMyStorageUsage( |
| 334 | userId: string, |
| 335 | ): Promise<readonly MyStorageUsage[]> { |
| 336 | const { listProjectsForUser } = await import('./projects.js'); |
| 337 | const mine = await listProjectsForUser(userId); |
| 338 | if (mine.length === 0) return []; |
| 339 | const ids = mine.map((p) => p.id); |
| 340 | const db = getDb(); |
| 341 | |
| 342 | // Grouped SUM of non-deleted file bytes per project, restricted to the |
| 343 | // user's project ids (size_bytes is TEXT → cast to bigint in SQL). |
| 344 | const byteRows = await db |
| 345 | .select({ |
| 346 | projectId: projectFiles.projectId, |
| 347 | usedBytes: sql<number>`coalesce(sum(cast(${projectFiles.sizeBytes} as bigint)), 0)::bigint`, |
| 348 | }) |
| 349 | .from(projectFiles) |
| 350 | .where(and(isNull(projectFiles.deletedAt), inArray(projectFiles.projectId, ids))) |
| 351 | .groupBy(projectFiles.projectId); |
| 352 | const bytesByProject = new Map<string, number>(); |
| 353 | for (const r of byteRows) bytesByProject.set(r.projectId, Number(r.usedBytes) || 0); |
| 354 | |
| 355 | // Grouped count of active (not-revoked) storage keys per project. |
| 356 | const keyRows = await db |
| 357 | .select({ |
| 358 | projectId: storageKeys.projectId, |
| 359 | keyCount: sql<number>`count(*)::int`, |
| 360 | }) |
| 361 | .from(storageKeys) |
| 362 | .where(and(isNull(storageKeys.revokedAt), inArray(storageKeys.projectId, ids))) |
| 363 | .groupBy(storageKeys.projectId); |
| 364 | const keysByProject = new Map<string, number>(); |
| 365 | for (const r of keyRows) keysByProject.set(r.projectId, Number(r.keyCount) || 0); |
| 366 | |
| 367 | return mine.map((p) => { |
| 368 | const usedBytes = bytesByProject.get(p.id) ?? 0; |
| 369 | const capBytes = TIERS[p.tier].storageBytes; |
| 370 | return { |
| 371 | id: p.id, |
| 372 | name: p.name, |
| 373 | tier: p.tier, |
| 374 | usedBytes, |
| 375 | capBytes, |
| 376 | keyCount: keysByProject.get(p.id) ?? 0, |
| 377 | over: usedBytes > capBytes, |
| 378 | }; |
| 379 | }); |
| 380 | } |
| 381 | |
| 382 | /* ── Enforcement ("flag" → "block") — Sprint 4 Phase 4 ───────────────────── */ |
| 383 | |
| 384 | /** |
| 385 | * Per-project enforcement mode. |
| 386 | * - 'flag' (default, safe): measure-only. Over-limit is surfaced in the admin |
| 387 | * dashboard but NEVER blocks a customer write. |
| 388 | * - 'block' (opt-in): once the project is over its effective cap, a new row / |
| 389 | * table / byte write is refused. An admin flips a single project in. |
| 390 | * The enforcement lever fails OPEN throughout: any lookup that can't run is |
| 391 | * treated as "don't block". |
| 392 | */ |
| 393 | export type EnforcementMode = 'flag' | 'block'; |
| 394 | |
| 395 | /** |
| 396 | * In-memory cache of the enforcement mode per project. This is read on the hot |
| 397 | * write path (every studio INSERT / CREATE TABLE / upload), so a fresh control- |
| 398 | * DB round-trip per write would be wasteful — modes change rarely (an admin |
| 399 | * toggle). setProjectEnforcement invalidates the entry so a flip takes effect |
| 400 | * immediately; _resetEnforcementCache clears it wholesale (test hook). |
| 401 | */ |
| 402 | const enforcementCache = new Map<string, EnforcementMode>(); |
| 403 | |
| 404 | /** Test hook — clears the whole enforcement-mode cache. */ |
| 405 | export function _resetEnforcementCache(): void { |
| 406 | enforcementCache.clear(); |
| 407 | } |
| 408 | |
| 409 | /** |
| 410 | * The project's enforcement mode, cached in-memory. Defaults to 'flag' for an |
| 411 | * unknown/absent project (fail-open). Reads the projects row's mode; a second |
| 412 | * call for the same id is served from cache (no re-query). |
| 413 | */ |
| 414 | export async function getProjectEnforcement(projectId: string): Promise<EnforcementMode> { |
| 415 | const cached = enforcementCache.get(projectId); |
| 416 | if (cached !== undefined) return cached; |
| 417 | |
| 418 | const db = getDb(); |
| 419 | const rows = await db |
| 420 | .select({ mode: projects.storageEnforcementMode }) |
| 421 | .from(projects) |
| 422 | .where(eq(projects.id, projectId)) |
| 423 | .limit(1); |
| 424 | const mode: EnforcementMode = rows[0]?.mode === 'block' ? 'block' : 'flag'; |
| 425 | enforcementCache.set(projectId, mode); |
| 426 | return mode; |
| 427 | } |
| 428 | |
| 429 | /** |
| 430 | * Set a project's enforcement mode. Rejects an invalid mode with a |
| 431 | * ValidationError, writes the column, and invalidates the cache entry so the |
| 432 | * next read re-queries. |
| 433 | */ |
| 434 | export async function setProjectEnforcement( |
| 435 | projectId: string, |
| 436 | mode: EnforcementMode, |
| 437 | _actorId: string | null, |
| 438 | ): Promise<void> { |
| 439 | if (mode !== 'flag' && mode !== 'block') { |
| 440 | throw new ValidationError("enforcement mode must be 'flag' or 'block'", { field: 'mode', value: mode }); |
| 441 | } |
| 442 | const db = getDb(); |
| 443 | await db |
| 444 | .update(projects) |
| 445 | .set({ storageEnforcementMode: mode, updatedAt: new Date() }) |
| 446 | .where(eq(projects.id, projectId)); |
| 447 | // Invalidate so the next getProjectEnforcement re-reads the new value. |
| 448 | enforcementCache.delete(projectId); |
| 449 | } |
| 450 | |
| 451 | /** |
| 452 | * Resolve a project's effective row/table caps: per-project override ?? tier |
| 453 | * cap. Returns null when the project row can't be found — the caller treats |
| 454 | * that as fail-open (never block a write we can't reason about). |
| 455 | */ |
| 456 | async function resolveEffectiveCaps( |
| 457 | projectId: string, |
| 458 | ): Promise<{ maxRows: number; maxTables: number } | null> { |
| 459 | const db = getDb(); |
| 460 | const rows = await db |
| 461 | .select({ |
| 462 | tier: projects.tier, |
| 463 | storageMaxRows: projects.storageMaxRows, |
| 464 | storageMaxTables: projects.storageMaxTables, |
| 465 | }) |
| 466 | .from(projects) |
| 467 | .where(eq(projects.id, projectId)) |
| 468 | .limit(1); |
| 469 | const p = rows[0]; |
| 470 | if (!p) return null; // fail-open — unknown project |
| 471 | const caps = await getTierStorageCaps(); |
| 472 | const tierCap = caps[p.tier as ProjectTier] ?? { maxRows: Infinity, maxTables: Infinity }; |
| 473 | return { |
| 474 | maxRows: p.storageMaxRows ?? tierCap.maxRows, |
| 475 | maxTables: p.storageMaxTables ?? tierCap.maxTables, |
| 476 | }; |
| 477 | } |
| 478 | |
| 479 | /** |
| 480 | * Guard a row / table write against the project's storage cap. |
| 481 | * |
| 482 | * 'flag' mode is a pure no-op — it never throws and never counts rows (so the |
| 483 | * project DB is never touched on the hot path when enforcement is off). In |
| 484 | * 'block' mode it resolves the effective cap (override ?? tier), reads the |
| 485 | * current counts, and throws a ValidationError if adding `adding` more would |
| 486 | * exceed the cap (strictly greater than). Fails OPEN — no throw, no count — if |
| 487 | * the project can't be resolved even in block mode. |
| 488 | * |
| 489 | * @param adding how many rows/tables this write adds (default 1; the bulk |
| 490 | * insert path passes the batch length). |
| 491 | */ |
| 492 | export async function assertWithinStorageLimit( |
| 493 | projectId: string, |
| 494 | kind: 'row' | 'table', |
| 495 | adding = 1, |
| 496 | ): Promise<void> { |
| 497 | if ((await getProjectEnforcement(projectId)) !== 'block') return; // flag → no-op |
| 498 | |
| 499 | const caps = await resolveEffectiveCaps(projectId); |
| 500 | if (!caps) return; // fail-open — unknown project |
| 501 | |
| 502 | const { rowCount, tableCount } = await getProjectRowCount(projectId); |
| 503 | if (kind === 'row') { |
| 504 | if (rowCount + adding > caps.maxRows) { |
| 505 | throw new ValidationError( |
| 506 | `storage limit reached: adding ${adding} row(s) would exceed the ${caps.maxRows}-row cap (currently ${rowCount})`, |
| 507 | { field: 'rows', current: rowCount, adding, cap: caps.maxRows }, |
| 508 | ); |
| 509 | } |
| 510 | } else { |
| 511 | if (tableCount + adding > caps.maxTables) { |
| 512 | throw new ValidationError( |
| 513 | `storage limit reached: adding ${adding} table(s) would exceed the ${caps.maxTables}-table cap (currently ${tableCount})`, |
| 514 | { field: 'tables', current: tableCount, adding, cap: caps.maxTables }, |
| 515 | ); |
| 516 | } |
| 517 | } |
| 518 | } |
| 519 | |
| 520 | /** |
| 521 | * Guard an S3/object upload against the project's tier BYTE cap. 'flag' → no-op. |
| 522 | * 'block' → throw a ValidationError when current object bytes + additionalBytes |
| 523 | * exceeds the tier byte cap (TIERS[tier].storageBytes — the SAME cap |
| 524 | * listObjectStorageUsage flags against). Fails OPEN if it can't resolve. |
| 525 | * |
| 526 | * Reuses the current-bytes computation from listObjectStorageUsage: SUM of |
| 527 | * non-deleted project_files.size_bytes for the one project. |
| 528 | */ |
| 529 | export async function assertWithinByteLimit( |
| 530 | projectId: string, |
| 531 | additionalBytes: number, |
| 532 | ): Promise<void> { |
| 533 | if ((await getProjectEnforcement(projectId)) !== 'block') return; // flag → no-op |
| 534 | |
| 535 | const db = getDb(); |
| 536 | const rows = await db |
| 537 | .select({ tier: projects.tier }) |
| 538 | .from(projects) |
| 539 | .where(eq(projects.id, projectId)) |
| 540 | .limit(1); |
| 541 | const p = rows[0]; |
| 542 | if (!p) return; // fail-open — unknown project |
| 543 | const capBytes = TIERS[p.tier as ProjectTier]?.storageBytes; |
| 544 | if (capBytes == null) return; // fail-open — no cap resolvable |
| 545 | |
| 546 | // Same grouped SUM listObjectStorageUsage uses, scoped to this one project. |
| 547 | const byteRows = await db |
| 548 | .select({ |
| 549 | usedBytes: sql<number>`coalesce(sum(cast(${projectFiles.sizeBytes} as bigint)), 0)::bigint`, |
| 550 | }) |
| 551 | .from(projectFiles) |
| 552 | .where(and(isNull(projectFiles.deletedAt), eq(projectFiles.projectId, projectId))); |
| 553 | const usedBytes = Number(byteRows[0]?.usedBytes) || 0; |
| 554 | |
| 555 | if (usedBytes + additionalBytes > capBytes) { |
| 556 | throw new ValidationError( |
| 557 | `storage limit reached: this ${additionalBytes}-byte upload would exceed the project's ${capBytes}-byte cap (currently ${usedBytes})`, |
| 558 | { field: 'bytes', current: usedBytes, adding: additionalBytes, cap: capBytes }, |
| 559 | ); |
| 560 | } |
| 561 | } |