Dsa Rust Reference Documentation
Dsa
Current Version: 11.6.1
Chilkat.Dsa
Create DSA key pairs and parameters for workflows that still require
DSA-based signing or verification.
Load and save private or public DSA keys in DER, PEM, encrypted PEM,
XML, component-based, and OpenSSL-compatible formats.
Create DSA signatures over message digests using a loaded private key
and the appropriate encoded hash input.
Verify DSA signatures using a public key, encoded hash, and signature
data.
Access DSA parameters and key components as hex-encoded SSH1-format
bignums for low-level interoperability scenarios.
Work with encoded hashes and signatures when applications need hex,
Base64, or other textual representations of binary values.
For an extended overview, see
Dsa Class Overview.
Generate, import, export, sign, and verify DSA keys and signatures.
Chilkat.Dsa is the Chilkat class for DSA key generation,
DSA key import/export, DSA hash signing, and DSA signature verification.
It supports private and public keys in DER, PEM, encrypted PEM, XML,
explicit component, and OpenSSL parameter workflows. It also exposes DSA key
components as hex-encoded SSH1-format bignums and provides helpers for
working with encoded hashes and signatures.
Generate DSA keys
Import and export keys
Sign hashes
Verify signatures
Key components
Encoded data helpers
Dsa to sign the hash with the private key or
verify the signature with the public key. For new protocol designs, consider
whether a more modern signature algorithm is preferred; use this class when
DSA is required for compatibility.
Object Creation
// Cargo.toml:
// [dependencies]
// chilkat = "11.6"
use chilkat::Dsa;
// Once per process, before any other Chilkat call:
chilkat::unlock_bundle("Anything for 30-day trial")?; // shorthand for Global::new().unlock_bundle(..)
let dsa = Dsa::new();
// ... the native object is freed when `dsa` goes out of scope.Creates the underlying native Chilkat object (Dsa also implements Default). Every method takes &self, so the object never needs to be declared mut. A Dsa is Send but not Sync: it may be moved to another thread, but a reference to it cannot be shared between threads at the same time.
The native object is freed when the Dsa is dropped — when it goes out of scope, or explicitly with drop(dsa). There is no Dispose method to call.
Errors
Methods that can fail return chilkat::Result<T>, which is Result<T, chilkat::Error>: a method whose only outcome is success or failure returns Result<()>, a method producing a string or an object returns Result<String> or Result<Dsa>. The error carries the object's LastErrorText at the time of the failure (Error::last_error_text), the class and method names, and implements std::error::Error, so ? works in any function returning chilkat::Result or a Box<dyn Error>. Properties never fail, and methods that answer a question (has_..., is_..., ...) return a plain bool.
match dsa.some_method(...) {
Ok(value) => println!("{value:?}"),
Err(e) => eprintln!("{}", e.last_error_text()),
}
Properties
DebugLogFilePath
pub fn debug_log_file_path(&self) -> String
pub fn set_debug_log_file_path(&self, value: &str)
If set to a file path, this property logs the LastErrorText of each Chilkat method or property call to the specified file. This logging helps identify the context and history of Chilkat calls leading up to any crash or hang, aiding in debugging.
Enabling the VerboseLogging property provides more detailed information. This property is mainly used for debugging rare instances where a Chilkat method call causes a hang or crash, which should generally not happen.
Possible causes of hangs include:
- A timeout property set to 0, indicating an infinite timeout.
- A hang occurring within an event callback in the application code.
- An internal bug in the Chilkat code causing the hang.
GroupSize
pub fn group_size(&self) -> i32
pub fn set_group_size(&self, value: i32)
Specifies the size, in bits, of the DSA subgroup parameter Q used by the legacy GenKey method. The default is 160. This also determines the natural size of the DSA signature components r and s.
Applications should normally leave this property at its default. When an explicit standards-era (L, N) parameter pair is required, use GenKey2, where L is the bit length of P and N is the bit length of Q.
HexG
Returns the DSA domain parameter G, the generator of the subgroup of order Q modulo P.
The returned text is a hexadecimal encoding of Chilkat's SSH1-format bignum representation, which includes a two-byte bit-length prefix followed by the unsigned integer bytes.
topHexP
Returns the DSA domain parameter P, the large prime modulus.
The returned text is a hexadecimal encoding of Chilkat's SSH1-format bignum representation, which includes a two-byte bit-length prefix followed by the unsigned integer bytes.
topHexQ
Returns the DSA domain parameter Q, a prime divisor of P - 1. The bit length of Q is commonly written as N and determines the range of the private value X and signature components r and s.
The returned text is a hexadecimal encoding of Chilkat's SSH1-format bignum representation, which includes a two-byte bit-length prefix followed by the unsigned integer bytes.
topHexX
Returns the DSA private value X. It is present only when the object contains a private key and satisfies 0 < X < Q.
The returned text is a hexadecimal encoding of Chilkat's SSH1-format bignum representation, which includes a two-byte bit-length prefix followed by the unsigned integer bytes.
X can create signatures as the key owner. Do not log, transmit, or persist this value unless it is protected as private-key material.HexY
Returns the DSA public value Y, where Y = GX mod P. It is available when either a public or private DSA key is loaded.
The returned text is a hexadecimal encoding of Chilkat's SSH1-format bignum representation, which includes a two-byte bit-length prefix followed by the unsigned integer bytes.
topLastErrorHtml
Provides HTML-formatted information about the last called method or property. If a method call fails or behaves unexpectedly, check this property for details. Note that information is available regardless of the method call's success.
topLastErrorText
Provides plain text information about the last called method or property. If a method call fails or behaves unexpectedly, check this property for details. Note that information is available regardless of the method call's success.
LastErrorXml
Provides XML-formatted information about the last called method or property. If a method call fails or behaves unexpectedly, check this property for details. Note that information is available regardless of the method call's success.
topLastMethodSuccess
pub fn last_method_success(&self) -> bool
pub fn set_last_method_success(&self, value: bool)
Indicates the success or failure of the most recent method call: true means success, false means failure. This property remains unchanged by property setters or getters. This method is present to address challenges in checking for null or Nothing returns in certain programming languages. Note: This property does not apply to methods that return integer values or to boolean-returning methods where the boolean does not indicate success or failure.
UncommonOptions
pub fn uncommon_options(&self) -> String
pub fn set_uncommon_options(&self, value: &str)
Reserved for uncommon or compatibility-specific options. The default is the empty string, and applications should normally leave this property unchanged unless Chilkat documentation or support identifies a specific keyword required for the target system.
topVerboseLogging
pub fn verbose_logging(&self) -> bool
pub fn set_verbose_logging(&self, value: bool)
If set to true, then the contents of LastErrorText (or LastErrorXml, or LastErrorHtml) may contain more verbose information. The default value is false. Verbose logging should only be used for debugging. The potentially large quantity of logged information may adversely affect peformance.
Version
Methods
FromDerBd
Loads a DSA private key from the DER bytes contained in the BinData object passed in . Returns bdtrue on successful decoding.
BinData content contains secret key material and should be cleared or released when no longer needed.Returns Ok(()) for success, Err(chilkat::Error) for failure.
FromDerFile
Loads a DSA private key from the DER-encoded file specified by . Returns pathtrue when the file is read and decoded successfully; otherwise returns false.
LastErrorText when loading fails.Returns Ok(()) for success, Err(chilkat::Error) for failure.
FromEncryptedPem
Loads a DSA private key from the PEM text in . pem_data supplies the password when the PEM is encrypted. If the PEM is unencrypted, the password is ignored and the key is loaded normally.password
Returns true on success and false if the PEM cannot be decoded, the password is incorrect, or the contained key is not a supported DSA private key.
Returns Ok(()) for success, Err(chilkat::Error) for failure.
FromPem
Loads an unencrypted DSA private key from the PEM text in . On success, the object contains the private key and its corresponding public components.pem_data
FromEncryptedPem when password-protected PEM is available.Returns Ok(()) for success, Err(chilkat::Error) for failure.
FromPublicDerBd
Loads a DSA public key from the DER bytes contained in the BinData object passed in . The resulting key can verify signatures but cannot sign.bd
Returns Ok(()) for success, Err(chilkat::Error) for failure.
FromPublicDerFile
Loads a DSA public key from the DER-encoded file specified by . Returns pathtrue when the file is read and decoded successfully; otherwise returns false.
Returns Ok(()) for success, Err(chilkat::Error) for failure.
FromPublicPem
Loads a DSA public key from the PEM text in . Returns pem_datatrue when the PEM contains a supported DSA public key and is decoded successfully.
Returns Ok(()) for success, Err(chilkat::Error) for failure.
FromXml
Loads a DSA public or private key from the XML text in . The XML content determines whether the resulting object contains public components only or also includes the private value xml_keyX.
X, it contains the complete private key and must be protected accordingly.Returns Ok(()) for success, Err(chilkat::Error) for failure.
GenKey
Generates a new DSA key pair with a P size of bits. num_bits must be at least 1024 and a multiple of 64. This legacy method uses the subgroup size selected by num_bitsGroupSize, whose default is 160 bits.
For explicit standard parameter pairs such as (2048, 224) or (3072, 256), use GenKey2.
Returns Ok(()) for success, Err(chilkat::Error) for failure.
GenKey2
Generates a new DSA key pair using an explicit (L, N) parameter-size combination. is key_len_bitsL, the bit length of the prime modulus P. is mod_len_bitsN, the bit length of the subgroup prime Q.
| L | N | Historical FIPS 186-4 combination |
|---|---|---|
1024 | 160 | Legacy |
2048 | 224 or 256 | Supported parameter pairs |
3072 | 256 | Largest listed pair |
Returns Ok(()) for success, Err(chilkat::Error) for failure.
GenKeyFromParamsDerBd
Generates a new DSA key pair from OpenSSL-style DSA parameters stored as DER bytes in the BinData object passed in .bd
The supplied data contains DSA domain parameters P, Q, and G, not an existing private key. Chilkat validates or imports those parameters and generates a fresh private value X and corresponding public value Y.
Returns Ok(()) for success, Err(chilkat::Error) for failure.
GenKeyFromParamsDerFile
Generates a new DSA key pair from the OpenSSL-style DER DSA-parameters file specified by .path
The supplied data contains DSA domain parameters P, Q, and G, not an existing private key. Chilkat validates or imports those parameters and generates a fresh private value X and corresponding public value Y.
Returns true when the parameters are loaded and a key pair is generated successfully.
Returns Ok(()) for success, Err(chilkat::Error) for failure.
GenKeyFromParamsPem
Generates a new DSA key pair from OpenSSL-style DSA parameters supplied as PEM text in .pem
The supplied data contains DSA domain parameters P, Q, and G, not an existing private key. Chilkat validates or imports those parameters and generates a fresh private value X and corresponding public value Y.
Returns Ok(()) for success, Err(chilkat::Error) for failure.
GenKeyFromParamsPemFile
Generates a new DSA key pair from the OpenSSL-style PEM DSA-parameters file specified by .path
The supplied data contains DSA domain parameters P, Q, and G, not an existing private key. Chilkat validates or imports those parameters and generates a fresh private value X and corresponding public value Y.
A typical parameter file is PEM-armored with a BEGIN DSA PARAMETERS header. The newly generated private key can be exported with the applicable To* methods.
Returns Ok(()) for success, Err(chilkat::Error) for failure.
GenKeyFromPQG
Generates a new DSA private/public key pair using the preselected domain parameters P, Q, and G supplied in , p_hex, and q_hex.g_hex
Each argument is hexadecimal text in Chilkat's SSH1-format bignum representation. Chilkat generates a fresh private value X and derives Y; the supplied values are domain parameters, not an existing key pair.
Returns Ok(()) for success, Err(chilkat::Error) for failure.
GetEncodedHash
Returns the current Hash bytes encoded according to . Use encodinghex or base64.
This method does not compute a hash; it only converts the bytes already stored in the Hash property to text.
Returns Err(chilkat::Error) on failure.
GetEncodedSignature
Returns the current Signature bytes encoded according to . Use encodinghex or base64.
After a successful SignHash call, the returned bytes are the ASN.1 DER-encoded DSA signature containing the integers r and s.
Returns Err(chilkat::Error) on failure.
LoadText
Loads the entire file specified by and returns its contents as text using the legacy ANSI character encoding.path
Returns Err(chilkat::Error) on failure.
SaveText
Writes to the file specified by str_to_save using the legacy ANSI character encoding. Returns pathtrue on success.
Returns Ok(()) for success, Err(chilkat::Error) for failure.
SetEncodedHash
Decodes using the encoding named by encoded_hash and stores the resulting bytes in the encodingHash property. Use hex or base64.
The decoded value must be the already-computed message digest that will be signed by SignHash or checked by Verify.
Returns Ok(()) for success, Err(chilkat::Error) for failure.
SetEncodedSignature
Decodes the signature text in using the encoding named by encoded_sig and stores the resulting bytes in the encodingSignature property. Use hex or base64.
The decoded bytes are expected to contain the ASN.1 DER-encoded DSA signature. Set the corresponding Hash and public key before calling Verify.
Returns Ok(()) for success, Err(chilkat::Error) for failure.
SetEncodedSignatureRS
Builds the DSA signature from separately encoded r and s integer values. identifies the encoding used by both encoding and encoded_r; use encoded_shex or base64.
On success, Signature contains the ASN.1 DER SEQUENCE of the two integers and is ready for use with Verify.
Returns Ok(()) for success, Err(chilkat::Error) for failure.
SetKeyExplicit
Loads a DSA private key from explicitly supplied components. is the size of group_size_in_bytesQ in bytes. , p_hex, q_hex, and g_hex provide x_hexP, Q, G, and the private value X, respectively.
The corresponding public value Y = GX mod P is derived from the private key.
xHex contains the private key. Do not expose it in logs or transmit it over an unprotected channel.Returns Ok(()) for success, Err(chilkat::Error) for failure.
SetPubKeyExplicit
Loads a DSA public key from explicitly supplied components. is the size of group_size_in_bytesQ in bytes. , p_hex, q_hex, and g_hex provide y_hexP, Q, G, and the public value Y, respectively.
The resulting object can verify DSA signatures but cannot create them.
Returns Ok(()) for success, Err(chilkat::Error) for failure.
SignHash
Creates a DSA signature over the digest currently stored in Hash. A DSA private key must be loaded, and the digest must be set directly or with SetEncodedHash before this method is called.
On success, Signature contains an ASN.1 DER-encoded sequence of the DSA values r and s. Retrieve it with GetEncodedSignature or read the Signature property.
Returns Ok(()) for success, Err(chilkat::Error) for failure.
ToDerBd
Writes the DER-encoded DSA private key to the BinData object passed in . Returns bdtrue on success.
Returns Ok(()) for success, Err(chilkat::Error) for failure.
ToDerFile
Writes the loaded DSA private key to the DER file specified by . Returns pathtrue on success.
Returns Ok(()) for success, Err(chilkat::Error) for failure.
ToEncryptedPem
Returns the loaded DSA private key as password-encrypted PEM text using as the password.password
Returns Err(chilkat::Error) on failure.
ToPem
Returns the loaded DSA private key as unencrypted PEM text.
ToEncryptedPem when password protection is required.Returns Err(chilkat::Error) on failure.
ToPublicDerFile
Writes the public portion of the loaded DSA key to the DER file specified by . Returns pathtrue on success.
Returns Ok(()) for success, Err(chilkat::Error) for failure.
ToPublicPem
Returns the public portion of the loaded DSA key as PEM text. Public-key PEM may be distributed to parties that need to verify signatures; it does not contain the private value X.
Returns Err(chilkat::Error) on failure.
ToXml
Returns the loaded DSA key as XML. Set to b_public_onlytrue to export public components only. Set it to false to include the private component when a private key is loaded.
b_public_only is false, the XML can contain the private value X. Protect it as private-key material.Returns Err(chilkat::Error) on failure.
Verify
Verifies the DSA signature currently stored in Signature against the digest stored in Hash, using the loaded public key. Both values must be set before calling this method.
Returns true only when the signature is valid. A false result can indicate an invalid signature, malformed input, an incompatible key, or another operational error; inspect LastErrorText when the reason matters.
Returns Ok(()) for success, Err(chilkat::Error) for failure.
VerifyKey
Checks the mathematical validity and internal consistency of the DSA public or private key currently loaded in the object. Returns true when the key parameters and available key components pass validation.
This does not establish who owns the key, whether the key came from a trusted source, or whether it is suitable for a particular protocol.