Mirror of BoringSSL (grpc依赖)
https://boringssl.googlesource.com/boringssl
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250 lines
8.9 KiB
250 lines
8.9 KiB
5 years ago
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/* Copyright (c) 2019, Google Inc.
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*
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* Permission to use, copy, modify, and/or distribute this software for any
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* purpose with or without fee is hereby granted, provided that the above
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* copyright notice and this permission notice appear in all copies.
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*
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* THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES
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* WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF
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* MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY
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* SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES
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* WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN ACTION
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* OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF OR IN
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* CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE. */
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#ifndef OPENSSL_HEADER_TRUST_TOKEN_INTERNAL_H
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#define OPENSSL_HEADER_TRUST_TOKEN_INTERNAL_H
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#include <openssl/base.h>
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#include <openssl/ec.h>
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#include <openssl/ec_key.h>
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#include <openssl/nid.h>
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#include "../fipsmodule/ec/internal.h"
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#include <openssl/trust_token.h>
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#if defined(__cplusplus)
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extern "C" {
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#endif
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// PMBTokens.
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//
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// PMBTokens is described in https://eprint.iacr.org/2020/072/20200324:214215
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// and provides anonymous tokens with private metadata. We implement the
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// construction with validity verification, described in appendix H,
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// construction 6.
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// PMBTOKEN_NONCE_SIZE is the size of nonces used as part of the PMBToken
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// protocol.
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#define PMBTOKEN_NONCE_SIZE 64
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typedef struct {
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// TODO(https://crbug.com/boringssl/334): These should store |EC_PRECOMP| so
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// that |TRUST_TOKEN_finish_issuance| can use |ec_point_mul_scalar_precomp|.
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EC_AFFINE pub0;
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EC_AFFINE pub1;
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EC_AFFINE pubs;
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} PMBTOKEN_CLIENT_KEY;
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typedef struct {
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EC_SCALAR x0;
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EC_SCALAR y0;
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EC_SCALAR x1;
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EC_SCALAR y1;
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EC_SCALAR xs;
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EC_SCALAR ys;
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EC_AFFINE pub0;
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EC_PRECOMP pub0_precomp;
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EC_AFFINE pub1;
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EC_PRECOMP pub1_precomp;
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EC_AFFINE pubs;
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EC_PRECOMP pubs_precomp;
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} PMBTOKEN_ISSUER_KEY;
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// PMBTOKEN_PRETOKEN represents the intermediate state a client keeps during a
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// PMBToken issuance operation.
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typedef struct pmb_pretoken_st {
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uint8_t t[PMBTOKEN_NONCE_SIZE];
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EC_SCALAR r;
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EC_AFFINE Tp;
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} PMBTOKEN_PRETOKEN;
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// PMBTOKEN_PRETOKEN_free releases the memory associated with |token|.
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OPENSSL_EXPORT void PMBTOKEN_PRETOKEN_free(PMBTOKEN_PRETOKEN *token);
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DEFINE_STACK_OF(PMBTOKEN_PRETOKEN)
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// The following functions implement the corresponding |TRUST_TOKENS_METHOD|
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// functions for |TRUST_TOKENS_experiment_v1|'s PMBTokens construction which
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// uses P-384.
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//
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// We use P-384 instead of our usual choice of P-256. See Appendix I which
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// describes two attacks which may affect smaller curves. In particular, p-1 for
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// P-256 is smooth, giving a low complexity for the p-1 attack. P-384's p-1 has
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// a 281-bit prime factor,
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// 3055465788140352002733946906144561090641249606160407884365391979704929268480326390471.
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// This lower-bounds the p-1 attack at O(2^140). The p+1 attack is lower-bounded
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// by O(p^(1/3)) or O(2^128), so we do not need to check the smoothness of p+1.
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int pmbtoken_exp1_generate_key(CBB *out_private, CBB *out_public);
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int pmbtoken_exp1_client_key_from_bytes(PMBTOKEN_CLIENT_KEY *key,
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const uint8_t *in, size_t len);
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int pmbtoken_exp1_issuer_key_from_bytes(PMBTOKEN_ISSUER_KEY *key,
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const uint8_t *in, size_t len);
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STACK_OF(PMBTOKEN_PRETOKEN) * pmbtoken_exp1_blind(CBB *cbb, size_t count);
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int pmbtoken_exp1_sign(const PMBTOKEN_ISSUER_KEY *key, CBB *cbb, CBS *cbs,
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size_t num_requested, size_t num_to_issue,
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uint8_t private_metadata);
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STACK_OF(TRUST_TOKEN) *
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pmbtoken_exp1_unblind(const PMBTOKEN_CLIENT_KEY *key,
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const STACK_OF(PMBTOKEN_PRETOKEN) * pretokens,
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CBS *cbs, size_t count, uint32_t key_id);
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int pmbtoken_exp1_read(const PMBTOKEN_ISSUER_KEY *key,
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uint8_t out_nonce[PMBTOKEN_NONCE_SIZE],
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uint8_t *out_private_metadata, const uint8_t *token,
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size_t token_len);
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// pmbtoken_exp1_get_h_for_testing returns H in uncompressed coordinates. This
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// function is used to confirm H was computed as expected.
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OPENSSL_EXPORT int pmbtoken_exp1_get_h_for_testing(uint8_t out[97]);
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// Trust Tokens internals.
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struct trust_token_method_st {
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// generate_key generates a fresh keypair and writes their serialized
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// forms into |out_private| and |out_public|. It returns one on success and
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// zero on failure.
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int (*generate_key)(CBB *out_private, CBB *out_public);
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// client_key_from_bytes decodes a client key from |in| and sets |key|
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// to the resulting key. It returns one on success and zero
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// on failure.
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int (*client_key_from_bytes)(PMBTOKEN_CLIENT_KEY *key, const uint8_t *in,
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size_t len);
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// issuer_key_from_bytes decodes a issuer key from |in| and sets |key|
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// to the resulting key. It returns one on success and zero
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// on failure.
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int (*issuer_key_from_bytes)(PMBTOKEN_ISSUER_KEY *key, const uint8_t *in,
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size_t len);
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// blind generates a new issuance request for |count| tokens. On
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// success, it returns a newly-allocated |STACK_OF(PMBTOKEN_PRETOKEN)| and
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// writes a request to the issuer to |cbb|. On failure, it returns NULL. The
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// |STACK_OF(PMBTOKEN_PRETOKEN)|s should be passed to |pmbtoken_unblind| when
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// the server responds.
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//
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// This function implements the AT.Usr0 operation.
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STACK_OF(PMBTOKEN_PRETOKEN) *(*blind)(CBB *cbb, size_t count);
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// sign parses a request for |num_requested| tokens from |cbs| and
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// issues |num_to_issue| tokens with |key| and a private metadata value of
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// |private_metadata|. It then writes the response to |cbb|. It returns one on
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// success and zero on failure.
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//
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// This function implements the AT.Sig operation.
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int (*sign)(const PMBTOKEN_ISSUER_KEY *key, CBB *cbb, CBS *cbs,
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size_t num_requested, size_t num_to_issue,
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uint8_t private_metadata);
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// unblind processes an issuance response for |count| tokens from |cbs|
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// and unblinds the signed tokens. |pretokens| are the pre-tokens returned
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// from the corresponding |blind| call. On success, the function returns a
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// newly-allocated |STACK_OF(TRUST_TOKEN)| containing the resulting tokens.
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// Each token's serialization will have |key_id| prepended. Otherwise, it
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// returns NULL.
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//
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// This function implements the AT.Usr1 operation.
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STACK_OF(TRUST_TOKEN) *
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(*unblind)(const PMBTOKEN_CLIENT_KEY *key,
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const STACK_OF(PMBTOKEN_PRETOKEN) * pretokens, CBS *cbs,
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size_t count, uint32_t key_id);
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// read parses a PMBToken from |token| and verifies it using |key|. On
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// success, it returns one and stores the nonce and private metadata bit in
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// |out_nonce| and |*out_private_metadata|. Otherwise, it returns zero. Note
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// that, unlike the output of |unblind|, |token| does not have a
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// four-byte key ID prepended.
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int (*read)(const PMBTOKEN_ISSUER_KEY *key,
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uint8_t out_nonce[PMBTOKEN_NONCE_SIZE],
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uint8_t *out_private_metadata, const uint8_t *token,
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size_t token_len);
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};
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// Structure representing a single Trust Token public key with the specified ID.
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struct trust_token_client_key_st {
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uint32_t id;
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PMBTOKEN_CLIENT_KEY key;
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};
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// Structure representing a single Trust Token private key with the specified
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// ID.
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struct trust_token_issuer_key_st {
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uint32_t id;
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PMBTOKEN_ISSUER_KEY key;
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};
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struct trust_token_client_st {
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const TRUST_TOKEN_METHOD *method;
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// max_batchsize is the maximum supported batchsize.
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uint16_t max_batchsize;
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// keys is the set of public keys that are supported by the client for
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// issuance/redemptions.
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struct trust_token_client_key_st keys[3];
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// num_keys is the number of keys currently configured.
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size_t num_keys;
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// pretokens is the intermediate state during an active issuance.
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STACK_OF(PMBTOKEN_PRETOKEN)* pretokens;
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// srr_key is the public key used to verify the signature of the SRR.
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EVP_PKEY *srr_key;
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};
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struct trust_token_issuer_st {
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const TRUST_TOKEN_METHOD *method;
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// max_batchsize is the maximum supported batchsize.
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uint16_t max_batchsize;
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// keys is the set of private keys that are supported by the issuer for
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// issuance/redemptions. The public metadata is an index into this list of
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// keys.
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struct trust_token_issuer_key_st keys[3];
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// num_keys is the number of keys currently configured.
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size_t num_keys;
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// srr_key is the private key used to sign the SRR.
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EVP_PKEY *srr_key;
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// metadata_key is the secret material used to encode the private metadata bit
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// in the SRR.
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uint8_t *metadata_key;
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size_t metadata_key_len;
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};
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#if defined(__cplusplus)
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} // extern C
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extern "C++" {
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BSSL_NAMESPACE_BEGIN
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BORINGSSL_MAKE_DELETER(PMBTOKEN_PRETOKEN, PMBTOKEN_PRETOKEN_free)
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BSSL_NAMESPACE_END
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} // extern C++
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#endif
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#endif // OPENSSL_HEADER_TRUST_TOKEN_INTERNAL_H
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