非常教程

Ruby 2.4参考手册

OpenSSL

OpenSSL::OCSP::CertificateId

家长:对象

OpenSSL :: OCSP :: CertificateId 向 CA 标识证书,以便执行状态检查。

公共类方法

OpenSSL :: OCSP :: CertificateId.new(subject,issuer,digest = nil)→certificate_id 显示源代码

OpenSSL::OCSP::CertificateId.new(der_string) → certificate_id

创建一个新的 OpenSSL :: OCSP :: CertificateId 对于给定的subjectissuerX509 证书。在digest被用于计算证书ID和必须是 OpenSSL 的::文摘实例。

如果只给出一个参数,则将其解码为证书 ID 的 DER 表示。

static VALUE
ossl_ocspcid_initialize(int argc, VALUE *argv, VALUE self)
{
    OCSP_CERTID *id, *newid;
    VALUE subject, issuer, digest;

    GetOCSPCertId(self, id);
    if (rb_scan_args(argc, argv, "12", &subject, &issuer, &digest) == 1) {
        VALUE arg;
        const unsigned char *p;

        arg = ossl_to_der_if_possible(subject);
        StringValue(arg);
        p = (unsigned char *)RSTRING_PTR(arg);
        newid = d2i_OCSP_CERTID(NULL, &p, RSTRING_LEN(arg));
        if (!newid)
            ossl_raise(eOCSPError, "d2i_OCSP_CERTID");
    }
    else {
        X509 *x509s, *x509i;
        const EVP_MD *md;

        x509s = GetX509CertPtr(subject); /* NO NEED TO DUP */
        x509i = GetX509CertPtr(issuer); /* NO NEED TO DUP */
        md = !NIL_P(digest) ? GetDigestPtr(digest) : NULL;

        newid = OCSP_cert_to_id(md, x509s, x509i);
        if (!newid)
            ossl_raise(eOCSPError, "OCSP_cert_to_id");
    }

    SetOCSPCertId(self, newid);
    OCSP_CERTID_free(id);

    return self;
}

公共实例方法

cmp(其他)→true 或 false 显示源

如果它们相同,则将此证书 ID 与其other进行比较并返回true。

static VALUE
ossl_ocspcid_cmp(VALUE self, VALUE other)
{
    OCSP_CERTID *id, *id2;
    int result;

    GetOCSPCertId(self, id);
    SafeGetOCSPCertId(other, id2);
    result = OCSP_id_cmp(id, id2);

    return (result == 0) ? Qtrue : Qfalse;
}

cmp_issuer(其他)→true 或 false 显示来源

如果它们相同,则将此证书ID的颁发者与其other如果它们相同,则将此证书ID的颁发者与其相比较并返回 true。

static VALUE
ossl_ocspcid_cmp_issuer(VALUE self, VALUE other)
{
    OCSP_CERTID *id, *id2;
    int result;

    GetOCSPCertId(self, id);
    SafeGetOCSPCertId(other, id2);
    result = OCSP_id_issuer_cmp(id, id2);

    return (result == 0) ? Qtrue : Qfalse;
}

hash_algorithm→String 显示源

返回用于生成 issuerNameHash 和 issuerKeyHash 值的散列算法的 ln(长名称)。

static VALUE
ossl_ocspcid_get_hash_algorithm(VALUE self)
{
    OCSP_CERTID *id;
    ASN1_OBJECT *oid;
    BIO *out;

    GetOCSPCertId(self, id);
    OCSP_id_get0_info(NULL, &oid, NULL, NULL, id);

    if (!(out = BIO_new(BIO_s_mem())))
        ossl_raise(eOCSPError, "BIO_new");

    if (!i2a_ASN1_OBJECT(out, oid)) {
        BIO_free(out);
        ossl_raise(eOCSPError, "i2a_ASN1_OBJECT");
    }
    return ossl_membio2str(out);
}

issuer_key_hash→字符串显示源

返回此证书 ID 的 issuerKeyHash,即发行者公钥的哈希。

static VALUE
ossl_ocspcid_get_issuer_key_hash(VALUE self)
{
    OCSP_CERTID *id;
    ASN1_OCTET_STRING *key_hash;
    VALUE ret;

    GetOCSPCertId(self, id);
    OCSP_id_get0_info(NULL, NULL, &key_hash, NULL, id);

    ret = rb_str_new(NULL, key_hash->length * 2);
    ossl_bin2hex(key_hash->data, RSTRING_PTR(ret), key_hash->length);

    return ret;
}

issuer_name_hash→字符串显示源

返回此证书 ID 的 issuerNameHash,这是使用 hashAlgorithm 计算的颁发者专有名称的哈希。

static VALUE
ossl_ocspcid_get_issuer_name_hash(VALUE self)
{
    OCSP_CERTID *id;
    ASN1_OCTET_STRING *name_hash;
    VALUE ret;

    GetOCSPCertId(self, id);
    OCSP_id_get0_info(&name_hash, NULL, NULL, NULL, id);

    ret = rb_str_new(NULL, name_hash->length * 2);
    ossl_bin2hex(name_hash->data, RSTRING_PTR(ret), name_hash->length);

    return ret;
}

serial → Integer(串行→整数)显示源

返回正在请求状态的证书的序列号。

static VALUE
ossl_ocspcid_get_serial(VALUE self)
{
    OCSP_CERTID *id;
    ASN1_INTEGER *serial;

    GetOCSPCertId(self, id);
    OCSP_id_get0_info(NULL, NULL, NULL, &serial, id);

    return asn1integer_to_num(serial);
}

to_der→ String 显示源

将此证书标识符编码为 DER 编码的字符串。

static VALUE
ossl_ocspcid_to_der(VALUE self)
{
    OCSP_CERTID *id;
    VALUE str;
    long len;
    unsigned char *p;

    GetOCSPCertId(self, id);
    if ((len = i2d_OCSP_CERTID(id, NULL)) <= 0)
        ossl_raise(eOCSPError, NULL);
    str = rb_str_new(0, len);
    p = (unsigned char *)RSTRING_PTR(str);
    if (i2d_OCSP_CERTID(id, &p) <= 0)
        ossl_raise(eOCSPError, NULL);
    ossl_str_adjust(str, p);

    return str;
}

OpenSSL相关

1.OpenSSL::ASN1
2.OpenSSL::ASN1::ASN1Data
3.OpenSSL::ASN1::ASN1Error
4.OpenSSL::ASN1::Constructive
5.OpenSSL::ASN1::ObjectId
6.OpenSSL::ASN1::Primitive
7.OpenSSL::BN
8.OpenSSL::BNError
9.OpenSSL::Buffering
10.OpenSSL::Cipher
11.OpenSSL::Cipher::Cipher
12.OpenSSL::Config
13.OpenSSL::ConfigError
14.OpenSSL::Digest
15.OpenSSL::Digest::DigestError
16.OpenSSL::Engine
17.OpenSSL::Engine::EngineError
18.OpenSSL::ExtConfig
19.OpenSSL::HMAC
20.OpenSSL::HMACError
21.OpenSSL::Netscape
22.OpenSSL::Netscape::SPKI
23.OpenSSL::Netscape::SPKIError
24.OpenSSL::OCSP
25.OpenSSL::OCSP::BasicResponse
26.OpenSSL::OCSP::OCSPError
27.OpenSSL::OCSP::Request
28.OpenSSL::OCSP::Response
29.OpenSSL::OCSP::SingleResponse
30.OpenSSL::OpenSSLError
31.OpenSSL::PKCS12
32.OpenSSL::PKCS5
33.OpenSSL::PKCS5::PKCS5Error
34.OpenSSL::PKCS7
35.OpenSSL::PKCS7::RecipientInfo
36.OpenSSL::PKCS7::SignerInfo
37.OpenSSL::PKey
38.OpenSSL::PKey::DH
39.OpenSSL::PKey::DHError
40.OpenSSL::PKey::DSA
41.OpenSSL::PKey::DSAError
42.OpenSSL::PKey::EC
43.OpenSSL::PKey::EC::Group
44.OpenSSL::PKey::EC::Point
45.OpenSSL::PKey::PKey
46.OpenSSL::PKey::PKeyError
47.OpenSSL::PKey::RSA
48.OpenSSL::PKey::RSAError
49.OpenSSL::Random
50.OpenSSL::SSL
51.OpenSSL::SSL::Session
52.OpenSSL::SSL::SocketForwarder
53.OpenSSL::SSL::SSLContext
54.OpenSSL::SSL::SSLError
55.OpenSSL::SSL::SSLServer
56.OpenSSL::SSL::SSLSocket
57.OpenSSL::X509::Attribute
58.OpenSSL::X509::Certificate
59.OpenSSL::X509::CRL
60.OpenSSL::X509::Extension
61.OpenSSL::X509::ExtensionFactory
62.OpenSSL::X509::Name
63.OpenSSL::X509::Name::RFC2253DN
64.OpenSSL::X509::Request
65.OpenSSL::X509::Revoked
66.OpenSSL::X509::Store
67.OpenSSL::X509::StoreContext
Ruby 2.4

Ruby 是一种面向对象、命令式、函数式、动态的通用编程语言,是世界上最优美而巧妙的语言。

主页 https://www.ruby-lang.org/
源码 https://github.com/ruby/ruby
版本 2.4
发布版本 2.4.1

Ruby 2.4目录

1.缩略 | Abbrev
2.ARGF
3.数组 | Array
4.Base64
5.基本对象 | BasicObject
6.基准测试 | Benchmark
7.BigDecimal
8.绑定 | Binding
9.CGI
10.类 | Class
11.比较 | Comparable
12.负责 | Complex
13.计算续体 | Continuation
14.覆盖 | Coverage
15.CSV
16.日期 | Date
17.日期时间 | DateTime
18.DBM
19.代理 | Delegator
20.摘要 | Digest
21.Dir
22.DRb
23.编码 | Encoding
24.枚举 | Enumerable
25.枚举 | Enumerator
26.ENV
27.ERB
28.错误 | Errors
29.Etc
30.期望值 | Exception
31.错误类 | FalseClass
32.Fiber
33.Fiddle
34.文件 | File
35.文件实用程序 | FileUtils
36.查找 | Find
37.浮点 | Float
38.Forwardable
39.GC
40.GDBM
41.GetoptLong
42.Hash
43.Integer
44.IO
45.IPAddr
46.JSON
47.Kernel
48.语言 | 3Language
49.记录 | Logger
50.编排 | Marshal
51.MatchData
52.数学 | Math
53.矩阵 | Matrix
54.方法 | Method
55.模型 | Module
56.监控 | Monitor
57. 互斥 | Mutex
58.Net
59.Net::FTP
60.Net::HTTP
61.Net::IMAP
62.Net::SMTP
63.NilClass
64.数字 | Numeric
65.对象 | Object
66.ObjectSpace
67.Observable
68.Open3
69.OpenSSL
70.OpenStruct
71.OpenURI
72.OptionParser
73.路径名 | Pathname
74.完整输出 | PrettyPrint
75.Prime
76.Proc
77.过程 | Process
78.PStore
79.PTY
80.队列 | Queue
81.随机 | Random
82.范围 | Range
83.合理的 | Rational
84.Readline
85.Regexp
86.Resolv
87.Ripper
88.RubyVM
89.Scanf
90.SDBM
91.SecureRandom
92.Set
93.Shell
94.信号 | Signal
95.Singleton
96.套接字 | Socket
97.字符串 | String
98.StringIO
99.StringScanner
100.结构 | Struct