зеркало из https://github.com/mozilla/gecko-dev.git
278 строки
8.1 KiB
Plaintext
278 строки
8.1 KiB
Plaintext
[NoInterfaceObject]
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interface GlobalCrypto {
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readonly attribute Crypto crypto;
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};
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//Window implements GlobalCrypto;
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//WorkerGlobalScope implements GlobalCrypto;
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[Exposed=(Window,Worker)]
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interface Crypto {
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readonly attribute SubtleCrypto subtle;
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ArrayBufferView getRandomValues(ArrayBufferView array);
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};
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typedef (object or DOMString) AlgorithmIdentifier;
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typedef AlgorithmIdentifier HashAlgorithmIdentifier;
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dictionary Algorithm {
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required DOMString name;
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};
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dictionary KeyAlgorithm {
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required DOMString name;
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};
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enum KeyType { "public", "private", "secret" };
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enum KeyUsage { "encrypt", "decrypt", "sign", "verify", "deriveKey", "deriveBits", "wrapKey", "unwrapKey" };
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[Exposed=(Window,Worker)]
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interface CryptoKey {
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readonly attribute KeyType type;
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readonly attribute boolean extractable;
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readonly attribute object algorithm;
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readonly attribute object usages;
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};
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enum KeyFormat { "raw", "spki", "pkcs8", "jwk" };
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[Exposed=(Window,Worker)]
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interface SubtleCrypto {
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Promise<any> encrypt(AlgorithmIdentifier algorithm,
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CryptoKey key,
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BufferSource data);
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Promise<any> decrypt(AlgorithmIdentifier algorithm,
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CryptoKey key,
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BufferSource data);
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Promise<any> sign(AlgorithmIdentifier algorithm,
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CryptoKey key,
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BufferSource data);
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Promise<any> verify(AlgorithmIdentifier algorithm,
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CryptoKey key,
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BufferSource signature,
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BufferSource data);
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Promise<any> digest(AlgorithmIdentifier algorithm,
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BufferSource data);
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Promise<any> generateKey(AlgorithmIdentifier algorithm,
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boolean extractable,
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sequence<KeyUsage> keyUsages );
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Promise<any> deriveKey(AlgorithmIdentifier algorithm,
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CryptoKey baseKey,
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AlgorithmIdentifier derivedKeyType,
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boolean extractable,
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sequence<KeyUsage> keyUsages );
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Promise<any> deriveBits(AlgorithmIdentifier algorithm,
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CryptoKey baseKey,
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unsigned long length);
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Promise<any> importKey(KeyFormat format,
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(BufferSource or JsonWebKey) keyData,
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AlgorithmIdentifier algorithm,
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boolean extractable,
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sequence<KeyUsage> keyUsages );
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Promise<any> exportKey(KeyFormat format, CryptoKey key);
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Promise<any> wrapKey(KeyFormat format,
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CryptoKey key,
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CryptoKey wrappingKey,
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AlgorithmIdentifier wrapAlgorithm);
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Promise<any> unwrapKey(KeyFormat format,
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BufferSource wrappedKey,
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CryptoKey unwrappingKey,
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AlgorithmIdentifier unwrapAlgorithm,
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AlgorithmIdentifier unwrappedKeyAlgorithm,
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boolean extractable,
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sequence<KeyUsage> keyUsages );
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};
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dictionary RsaOtherPrimesInfo {
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// The following fields are defined in Section 6.3.2.7 of JSON Web Algorithms
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DOMString r;
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DOMString d;
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DOMString t;
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};
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dictionary JsonWebKey {
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// The following fields are defined in Section 3.1 of JSON Web Key
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DOMString kty;
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DOMString use;
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sequence<DOMString> key_ops;
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DOMString alg;
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// The following fields are defined in JSON Web Key Parameters Registration
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boolean ext;
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// The following fields are defined in Section 6 of JSON Web Algorithms
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DOMString crv;
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DOMString x;
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DOMString y;
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DOMString d;
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DOMString n;
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DOMString e;
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DOMString p;
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DOMString q;
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DOMString dp;
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DOMString dq;
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DOMString qi;
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sequence<RsaOtherPrimesInfo> oth;
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DOMString k;
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};
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typedef Uint8Array BigInteger;
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dictionary CryptoKeyPair {
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CryptoKey publicKey;
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CryptoKey privateKey;
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};
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dictionary RsaKeyGenParams : Algorithm {
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// The length, in bits, of the RSA modulus
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[EnforceRange] required unsigned long modulusLength;
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// The RSA public exponent
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required BigInteger publicExponent;
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};
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dictionary RsaHashedKeyGenParams : RsaKeyGenParams {
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// The hash algorithm to use
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required HashAlgorithmIdentifier hash;
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};
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dictionary RsaKeyAlgorithm : KeyAlgorithm {
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// The length, in bits, of the RSA modulus
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required unsigned long modulusLength;
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// The RSA public exponent
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required BigInteger publicExponent;
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};
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dictionary RsaHashedKeyAlgorithm : RsaKeyAlgorithm {
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// The hash algorithm that is used with this key
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required KeyAlgorithm hash;
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};
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dictionary RsaHashedImportParams {
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// The hash algorithm to use
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required HashAlgorithmIdentifier hash;
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};
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dictionary RsaPssParams : Algorithm {
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// The desired length of the random salt
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[EnforceRange] required unsigned long saltLength;
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};
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dictionary RsaOaepParams : Algorithm {
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// The optional label/application data to associate with the message
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BufferSource label;
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};
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dictionary EcdsaParams : Algorithm {
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// The hash algorithm to use
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required HashAlgorithmIdentifier hash;
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};
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typedef DOMString NamedCurve;
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dictionary EcKeyGenParams : Algorithm {
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// A named curve
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required NamedCurve namedCurve;
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};
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dictionary EcKeyAlgorithm : KeyAlgorithm {
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// The named curve that the key uses
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required NamedCurve namedCurve;
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};
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dictionary EcKeyImportParams : Algorithm {
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// A named curve
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required NamedCurve namedCurve;
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};
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dictionary EcdhKeyDeriveParams : Algorithm {
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// The peer's EC public key.
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required CryptoKey public;
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};
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dictionary AesCtrParams : Algorithm {
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// The initial value of the counter block. counter MUST be 16 bytes
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// (the AES block size). The counter bits are the rightmost length
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// bits of the counter block. The rest of the counter block is for
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// the nonce. The counter bits are incremented using the standard
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// incrementing function specified in NIST SP 800-38A Appendix B.1:
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// the counter bits are interpreted as a big-endian integer and
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// incremented by one.
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required BufferSource counter;
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// The length, in bits, of the rightmost part of the counter block
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// that is incremented.
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[EnforceRange] required octet length;
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};
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dictionary AesKeyAlgorithm : KeyAlgorithm {
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// The length, in bits, of the key.
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required unsigned short length;
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};
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dictionary AesKeyGenParams : Algorithm {
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// The length, in bits, of the key.
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[EnforceRange] required unsigned short length;
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};
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dictionary AesDerivedKeyParams : Algorithm {
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// The length, in bits, of the key.
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[EnforceRange] required unsigned short length;
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};
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dictionary AesCbcParams : Algorithm {
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// The initialization vector. MUST be 16 bytes.
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required BufferSource iv;
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};
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dictionary AesGcmParams : Algorithm {
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// The initialization vector to use. May be up to 2^64-1 bytes long.
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required BufferSource iv;
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// The additional authentication data to include.
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BufferSource additionalData;
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// The desired length of the authentication tag. May be 0 - 128.
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[EnforceRange] octet tagLength;
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};
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dictionary HmacImportParams : Algorithm {
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// The inner hash function to use.
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HashAlgorithmIdentifier hash;
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// The length (in bits) of the key.
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[EnforceRange] unsigned long length;
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};
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dictionary HmacKeyAlgorithm : KeyAlgorithm {
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// The inner hash function to use.
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required KeyAlgorithm hash;
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// The length (in bits) of the key.
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required unsigned long length;
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};
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dictionary HmacKeyGenParams : Algorithm {
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// The inner hash function to use.
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required HashAlgorithmIdentifier hash;
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// The length (in bits) of the key to generate. If unspecified, the
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// recommended length will be used, which is the size of the associated hash function's block
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// size.
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[EnforceRange] unsigned long length;
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};
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dictionary HkdfCtrParams : Algorithm {
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// The algorithm to use with HMAC (e.g.: SHA-256)
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required HashAlgorithmIdentifier hash;
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// A bit string that corresponds to the label that identifies the purpose for the derived keying material.
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required BufferSource label;
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// A bit string that corresponds to the context of the key derivation, as described in Section 5 of [NIST SP800-108]
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required BufferSource context;
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};
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dictionary Pbkdf2Params : Algorithm {
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required BufferSource salt;
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[EnforceRange] required unsigned long iterations;
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required HashAlgorithmIdentifier hash;
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};
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