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Rust

PKCS11 Get Token Info

See more PKCS11 Examples

Example showing how to discover the readers (slots) and smart cards and tokens available through a vendor's PKCS11 Cryptoki module, and get token information for each.

Chilkat Rust Downloads

Rust

// This example requires the Chilkat API to have been previously unlocked.
// See Global Unlock Sample for sample code.

// Note: Chilkat's PKCS11 implementation runs on Windows, Linux, Mac OS X, and other supported operating systems.

let pkcs11 = chilkat::Pkcs11::new();

// Specify the vendor's Cryptoki module DLL / shared lib.
// The following PKCS11 driver DLL is for the WatchData ProxKey USB token. 
// You would use your smartcard/token vendor's PKCS11 driver DLL.
pkcs11.set_shared_lib_path("SignatureP11.dll");

if pkcs11.initialize().is_err() {
    println!("{}", pkcs11.last_error_text());
    return;
}

// Call Discover to discover what's available.
// Indicate that we only want to return slots (readers) where tokens (or smart cards) are present.
let only_tokens_present = true;
let json = chilkat::JsonObject::new();
if pkcs11.discover(only_tokens_present, &json).is_err() {
    println!("{}", pkcs11.last_error_text());
    return;
}

json.set_emit_compact(false);
println!("{}", json.emit().unwrap_or_default());

// Sample JSON output.
// Code for parsing this JSON is shown below..

// {
//   "cryptokiVersion": {
//     "major": 2,
//     "minor": 10
//   },
//   "manufacturerID": "WatchData",
//   "libraryDescription": "PKCS#11 cryptoki module",
//   "libraryVersion": {
//     "major": 3,
//     "minor": 10
//   },
//   "slot": [
//     {
//       "id": 16385,
//       "slotDescription": "Watchdata IC CARD Reader/Writer",
//       "manufacturerID": "Watchdata",
//       "tokenPresent": true,
//       "removableDevice": true,
//       "hardwareSlot": true,
//       "hardwareVersion": {
//         "major": 1,
//         "minor": 0
//       },
//       "firmwareVersion": {
//         "major": 1,
//         "minor": 0
//       },
//       "token": {
//         "label": "WD PROXKey",
//         "manufacturerID": "Watchdata Corp.",
//         "model": "TimeCos/PK",
//         "serialNumber": "WD05376504",
//         "flags": [
//           "CKF_RNG",
//           "CKF_LOGIN_REQUIRED",
//           "CKF_USER_PIN_INITIALIZED",
//           "CKF_DUAL_CRYPTO_OPERATIONS",
//           "CKF_TOKEN_INITIALIZED"
//         ],
//         "maxSessionCount": 0,
//         "sessionCount": 0,
//         "maxRwSessionCount": 0,
//         "rwSessionCount": 0,
//         "maxPinLen": 32,
//         "minPinLen": 6,
//         "totalPublicMemory": 61440,
//         "freePublicMemory": 70144,
//         "totalPrivateMemory": 61440,
//         "freePrivateMemory": 70144,
//         "hardwareVersion": {
//           "major": 2,
//           "minor": 1
//         },
//         "firmwareVersion": {
//           "major": 0,
//           "minor": 0
//         },
//         "utcTime": "2024011509254600",
//         "mechanism": [
//           "CKM_RSA_PKCS_KEY_PAIR_GEN",
//           "CKM_EC_KEY_PAIR_GEN",
//           "CKM_DES_KEY_GEN",
//           "80000001",
//           "8000000B",
//           "CKM_AES_KEY_GEN",
//           "CKM_DES2_KEY_GEN",
//           "CKM_DES3_KEY_GEN",
//           "CKM_RSA_PKCS",
//           "CKM_RSA_X_509",
//           "CKM_ECDSA",
//           "CKM_ECDSA_SHA1",
//           "CKM_MD2_RSA_PKCS",
//           "CKM_MD5_RSA_PKCS",
//           "CKM_SHA1_RSA_PKCS",
//           "CKM_SHA256_RSA_PKCS",
//           "CKM_DES_ECB",
//           "CKM_DES_CBC",
//           "CKM_DES_CBC_PAD",
//           "80000002",
//           "CKM_CPK_ECDSA",
//           "CKM_CPK_ECDSA_SHA1",
//           "8000000C",
//           "8000000D",
//           "8000000E",
//           "CKM_AES_ECB",
//           "CKM_AES_CBC",
//           "CKM_AES_CBC_PAD",
//           "CKM_DES3_ECB",
//           "CKM_DES3_CBC",
//           "CKM_DES3_CBC_PAD",
//           "CKM_SHA_1",
//           "CKM_SHA_1_HMAC",
//           "CKM_SHA_1_HMAC_GENERAL",
//           "CKM_SHA256",
//           "CKM_SHA256_HMAC",
//           "CKM_SHA256_HMAC_GENERAL",
//           "CKM_MD2",
//           "CKM_MD2_HMAC",
//           "CKM_MD2_HMAC_GENERAL",
//           "CKM_MD5",
//           "CKM_MD5_HMAC",
//           "CKM_MD5_HMAC_GENERAL",
//           "CKM_SSL3_PRE_MASTER_KEY_GEN",
//           "CKM_SSL3_MASTER_KEY_DERIVE",
//           "CKM_SSL3_KEY_AND_MAC_DERIVE",
//           "CKM_SSL3_MD5_MAC",
//           "CKM_SSL3_SHA1_MAC"
//         ],
//         "rsa": {
//           "minKeySize": 1024,
//           "maxKeySize": 4096
//         }
//       }
//     }
//   ]
// }

// Use this online tool to generate parsing code from sample JSON: 
// Generate Parsing Code from JSON

let mut j: i32 = 0;
let mut count_j: i32 = 0;

// Use this online tool to generate parsing code from sample JSON: 
// Generate Parsing Code from JSON

let cryptoki_version_major = json.int_of("cryptokiVersion.major");
let cryptoki_version_minor = json.int_of("cryptokiVersion.minor");
let mut manufacturer_id = json.string_of("manufacturerID").unwrap_or_default();
let library_description = json.string_of("libraryDescription").unwrap_or_default();
let library_version_major = json.int_of("libraryVersion.major");
let library_version_minor = json.int_of("libraryVersion.minor");
let mut i = 0;
let count_i = json.size_of_array("slot");
while i < count_i {
    json.set_i(i);
    let _ = json.int_of("slot[i].id");
    let _ = json.string_of("slot[i].slotDescription").unwrap_or_default();
    manufacturer_id = json.string_of("slot[i].manufacturerID").unwrap_or_default();
    let _ = json.bool_of("slot[i].tokenPresent");
    let _ = json.bool_of("slot[i].removableDevice");
    let _ = json.bool_of("slot[i].hardwareSlot");
    let _ = json.int_of("slot[i].hardwareVersion.major");
    let _ = json.int_of("slot[i].hardwareVersion.minor");
    let _ = json.int_of("slot[i].firmwareVersion.major");
    let _ = json.int_of("slot[i].firmwareVersion.minor");
    let _ = json.string_of("slot[i].token.label").unwrap_or_default();
    let _ = json.string_of("slot[i].token.manufacturerID").unwrap_or_default();
    let _ = json.string_of("slot[i].token.model").unwrap_or_default();
    let _ = json.string_of("slot[i].token.serialNumber").unwrap_or_default();
    let _ = json.int_of("slot[i].token.maxSessionCount");
    let _ = json.int_of("slot[i].token.sessionCount");
    let _ = json.int_of("slot[i].token.maxRwSessionCount");
    let _ = json.int_of("slot[i].token.rwSessionCount");
    let _ = json.int_of("slot[i].token.maxPinLen");
    let _ = json.int_of("slot[i].token.minPinLen");
    let _ = json.int_of("slot[i].token.totalPublicMemory");
    let _ = json.int_of("slot[i].token.freePublicMemory");
    let _ = json.int_of("slot[i].token.totalPrivateMemory");
    let _ = json.int_of("slot[i].token.freePrivateMemory");
    let _ = json.int_of("slot[i].token.hardwareVersion.major");
    let _ = json.int_of("slot[i].token.hardwareVersion.minor");
    let _ = json.int_of("slot[i].token.firmwareVersion.major");
    let _ = json.int_of("slot[i].token.firmwareVersion.minor");
    let _ = json.string_of("slot[i].token.utcTime").unwrap_or_default();
    let _ = json.int_of("slot[i].token.rsa.minKeySize");
    let _ = json.int_of("slot[i].token.rsa.maxKeySize");

    // The following token flag strings are possible:

    // CKF_RNG: has random # generator

    // CKF_WRITE_PROTECTED: token is write-protected

    // CKF_LOGIN_REQUIRED:user must login

    // CKF_USER_PIN_INITIALIZED:normal user's PIN is set

    // CKF_RESTORE_KEY_NOT_NEEDED: Every time the state of cryptographic operations of a session is
    //    successfully saved, all keys needed to continue those operations are stored in the state

    // CKF_CLOCK_ON_TOKEN: The token has some sort of clock.  The time on the clock is returned in the slot[i].token.utcTime

    // CKF_PROTECTED_AUTHENTICATION_PATH: There is some way for the user to login without sending a PIN through the Cryptoki library itself

    // CKF_DUAL_CRYPTO_OPERATIONS: A single session with the token can perform dual simultaneous cryptographic operations
    //    (digest and encrypt; decrypt and digest; sign and encrypt; and decrypt and sign)

    // CKF_TOKEN_INITIALIZED: The token has been initialized.

    // CKF_SECONDARY_AUTHENTICATION: The token supports secondary authentication for private key objects.

    // CKF_USER_PIN_COUNT_LOW: An incorrect user login PIN has been entered at least once since the last successful authentication.

    // CKF_USER_PIN_FINAL_TRY: Supplying an incorrect user PIN will it to become locked.

    // CKF_USER_PIN_LOCKED: The user PIN has been locked. User login to the token is not possible.

    // CKF_USER_PIN_TO_BE_CHANGED: The user PIN value is the default value set by token initialization or manufacturing,
    //    or the PIN has been expired by the card.

    // CKF_SO_PIN_COUNT_LOW: An incorrect SO login PIN has been entered at least once since the last successful authentication.

    // CKF_SO_PIN_FINAL_TRY: Supplying an incorrect SO PIN will it to become locked.

    // CKF_SO_PIN_LOCKED: The SO PIN has been locked. SO login to the token is not possible.

    // CKF_SO_PIN_TO_BE_CHANGED: The SO PIN value is the default value set by token initialization or manufacturing,
    //    or the PIN has been expired by the card.

    // To see if particular flags are present:
    let a_flags = json.array_of("slot[i].token.flags").unwrap();
    if a_flags.find_string("CKF_USER_PIN_LOCKED", true) >= 0 {
        println!("The token is locked.");
    }

    if a_flags.find_string("CKF_RNG", true) >= 0 {
        println!("The token has a random number generator.");
    }

    // ...

    // To iterate over all flags..
    j = 0;
    count_j = json.size_of_array("slot[i].token.flags");
    while j < count_j {
        json.set_j(j);
        let _ = json.string_of("slot[i].token.flags[j]").unwrap_or_default();
        j = j + 1;
    }

    j = 0;
    count_j = json.size_of_array("slot[i].token.mechanism");
    while j < count_j {
        json.set_j(j);
        let _ = json.string_of("slot[i].token.mechanism[j]").unwrap_or_default();
        j = j + 1;
    }

    i = i + 1;
}