Swift SDK
Version compatibility: The Swift SDK is available in SecretSpec 0.18+.
The Swift SDK is a thin Codable wrapper over the same Rust resolver and
versioned C ABI as the other language SDKs. Every provider, fallback chain,
profile, scope, generator, reference, and as_path secret therefore works
without Swift-side resolution logic.
Install (0.18+)
Section titled “Install (0.18+)”In Xcode, choose File → Add Package Dependencies and enter:
https://github.com/cachix/secretspecOr add the package to Package.swift:
dependencies: [ .package( url: "https://github.com/cachix/secretspec", from: "0.18.0" ),],targets: [ .target( name: "MyApp", dependencies: [ .product(name: "SecretSpec", package: "secretspec"), ] ),]The package supports macOS 12 or later on Intel and Apple silicon. Its checksummed XCFramework contains the native Rust resolver, so consumers need neither Rust nor a separately installed SecretSpec library. SecretSpec is a development-workflow secrets manager with filesystem, process, and desktop credential-store integrations; the SDK does not target iOS, watchOS, tvOS, or visionOS.
Quick start
Section titled “Quick start”import SecretSpec
func quickStart() throws {
let resolved = try SecretSpec.builder()
.withProvider("keyring://")
.withProfile("production")
.withReason("boot web app")
.load()
defer { try? resolved.close() }
print(resolved.provider, resolved.profile)
print(resolved.secrets["DATABASE_URL"]?.get() ?? "")
try resolved.setAsEnvironment()
}
get() returns the inline value, or the readable file path for an as_path
secret. A missing required secret throws MissingRequiredError; its missing
property contains the unresolved names. Other failures throw
SecretSpecError, whose kind property is a stable error category:
import SecretSpec
func handleErrors() {
do {
let resolved = try SecretSpec.builder().load()
defer { try? resolved.close() }
// Use resolved.
} catch let error as MissingRequiredError {
print("Missing:", error.missing.joined(separator: ", "))
} catch let error as SecretSpecError {
print("\(error.kind): \(error.message)")
} catch {
print(error)
}
}
A one-shot form is also available:
import SecretSpec
func oneShot() throws {
let resolved = try SecretSpec.resolve(
provider: "keyring://",
profile: "production",
reason: "boot web app"
)
try resolved.close()
}
Scopes
Section titled “Scopes”Use withScope("api") to resolve only a named [scopes.api] subset. The
selected name is available through resolved.scope and report.scope:
import SecretSpec
func scopes() throws {
let resolved = try SecretSpec.builder().withScope("api").load()
try resolved.close()
}
Value-free preflight
Section titled “Value-free preflight”report() returns the inventory view exposed by secretspec check --json. It
never carries values. A missing required secret appears with
status == "missing_required" rather than throwing, so an incomplete
deployment can still be inspected.
import SecretSpec
func report() throws {
let report = try SecretSpec.builder()
.withProfile("production")
.withReason("deployment preflight")
.report()
for secret in report.secrets {
print("\(secret.name): \(secret.status)")
}
}
Typed access
Section titled “Typed access”Generate an idiomatic Swift model from the manifest schema:
$ secretspec schema | \ quicktype -s schema --top-level AppSecrets --lang swift -o AppSecrets.swiftThen decode the SDK’s flat field map:
import Foundation
import SecretSpec
private struct AppSecrets: Decodable {
let databaseURL: String
private enum CodingKeys: String, CodingKey {
case databaseURL = "DATABASE_URL"
}
}
func typedAccess(resolved: Resolved) throws {
let typed = try JSONDecoder().decode(
AppSecrets.self,
from: resolved.fieldsJSON()
)
print(typed.databaseURL)
}
The schema models successful resolution: required, defaulted, and generated secrets are non-nullable, and profile schemas include inherited default-profile fields.
Files (as_path)
Section titled “Files (as_path)”File-shaped secrets are materialized as mode-0400 temporary files. Call
resolved.close() after the last consumer finishes with those paths.
Resolved also performs best-effort cleanup when it is deinitialized, but
explicit cleanup gives deterministic lifetime and reports filesystem errors.