416 lines
18 KiB
HTML
Executable File
416 lines
18 KiB
HTML
Executable File
<?xml version="1.0" ?>
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<!DOCTYPE html PUBLIC "-//W3C//DTD XHTML 1.0 Strict//EN" "http://www.w3.org/TR/xhtml1/DTD/xhtml1-strict.dtd">
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<html xmlns="http://www.w3.org/1999/xhtml">
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<head>
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<title>EVP_MAC</title>
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<meta http-equiv="content-type" content="text/html; charset=utf-8" />
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<link rev="made" href="mailto:root@localhost" />
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</head>
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<body style="background-color: white">
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<!-- INDEX BEGIN -->
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<div name="index">
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<p><a name="__index__"></a></p>
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<ul>
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<li><a href="#name">NAME</a></li>
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<li><a href="#synopsis">SYNOPSIS</a></li>
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<li><a href="#description">DESCRIPTION</a></li>
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<ul>
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<li><a href="#types">Types</a></li>
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<li><a href="#algorithm_implementation_fetching">Algorithm implementation fetching</a></li>
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<li><a href="#context_manipulation_functions">Context manipulation functions</a></li>
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<li><a href="#computing_functions">Computing functions</a></li>
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<li><a href="#information_functions">Information functions</a></li>
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</ul>
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<li><a href="#parameters">PARAMETERS</a></li>
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<li><a href="#return_values">RETURN VALUES</a></li>
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<li><a href="#examples">EXAMPLES</a></li>
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<li><a href="#see_also">SEE ALSO</a></li>
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<li><a href="#history">HISTORY</a></li>
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<li><a href="#copyright">COPYRIGHT</a></li>
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</ul>
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<hr name="index" />
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</div>
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<!-- INDEX END -->
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<p>
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</p>
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<hr />
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<h1><a name="name">NAME</a></h1>
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<p>EVP_MAC, EVP_MAC_fetch, EVP_MAC_up_ref, EVP_MAC_free,
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EVP_MAC_is_a, EVP_MAC_number, EVP_MAC_names_do_all,
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EVP_MAC_provider, EVP_MAC_get_params, EVP_MAC_gettable_params,
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EVP_MAC_CTX, EVP_MAC_CTX_new, EVP_MAC_CTX_free, EVP_MAC_CTX_dup,
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EVP_MAC_CTX_mac, EVP_MAC_CTX_get_params, EVP_MAC_CTX_set_params,
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EVP_MAC_size, EVP_MAC_init, EVP_MAC_update, EVP_MAC_final,
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EVP_MAC_gettable_ctx_params, EVP_MAC_settable_ctx_params,
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EVP_MAC_do_all_provided - EVP MAC routines</p>
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<p>
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</p>
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<hr />
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<h1><a name="synopsis">SYNOPSIS</a></h1>
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<pre>
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#include <openssl/evp.h></pre>
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<pre>
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typedef struct evp_mac_st EVP_MAC;
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typedef struct evp_mac_ctx_st EVP_MAC_CTX;</pre>
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<pre>
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EVP_MAC *EVP_MAC_fetch(OPENSSL_CTX *libctx, const char *algorithm,
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const char *properties);
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int EVP_MAC_up_ref(EVP_MAC *mac);
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void EVP_MAC_free(EVP_MAC *mac);
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int EVP_MAC_is_a(const EVP_MAC *mac, const char *name);
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int EVP_MAC_number(const EVP_MAC *mac);
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void EVP_MAC_names_do_all(const EVP_MAC *mac,
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void (*fn)(const char *name, void *data),
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void *data);
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const OSSL_PROVIDER *EVP_MAC_provider(const EVP_MAC *mac);
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int EVP_MAC_get_params(EVP_MAC *mac, OSSL_PARAM params[]);</pre>
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<pre>
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EVP_MAC_CTX *EVP_MAC_CTX_new(EVP_MAC *mac);
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void EVP_MAC_CTX_free(EVP_MAC_CTX *ctx);
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EVP_MAC_CTX *EVP_MAC_CTX_dup(const EVP_MAC_CTX *src);
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EVP_MAC *EVP_MAC_CTX_mac(EVP_MAC_CTX *ctx);
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int EVP_MAC_CTX_get_params(EVP_MAC_CTX *ctx, OSSL_PARAM params[]);
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int EVP_MAC_CTX_set_params(EVP_MAC_CTX *ctx, const OSSL_PARAM params[]);</pre>
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<pre>
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size_t EVP_MAC_size(EVP_MAC_CTX *ctx);
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int EVP_MAC_init(EVP_MAC_CTX *ctx);
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int EVP_MAC_update(EVP_MAC_CTX *ctx, const unsigned char *data, size_t datalen);
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int EVP_MAC_final(EVP_MAC_CTX *ctx,
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unsigned char *out, size_t *outl, size_t outsize);</pre>
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<pre>
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const OSSL_PARAM *EVP_MAC_gettable_params(const EVP_MAC *mac);
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const OSSL_PARAM *EVP_MAC_gettable_ctx_params(const EVP_MAC *mac);
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const OSSL_PARAM *EVP_MAC_settable_ctx_params(const EVP_MAC *mac);</pre>
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<pre>
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void EVP_MAC_do_all_provided(OPENSSL_CTX *libctx,
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void (*fn)(EVP_MAC *mac, void *arg),
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void *arg);</pre>
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<p>
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</p>
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<hr />
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<h1><a name="description">DESCRIPTION</a></h1>
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<p>These types and functions help the application to calculate MACs of
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different types and with different underlying algorithms if there are
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any.</p>
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<p>MACs are a bit complex insofar that some of them use other algorithms
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for actual computation. HMAC uses a digest, and CMAC uses a cipher.
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Therefore, there are sometimes two contexts to keep track of, one for
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the MAC algorithm itself and one for the underlying computation
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algorithm if there is one.</p>
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<p>To make things less ambiguous, this manual talks about a "context" or
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"MAC context", which is to denote the MAC level context, and about a
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"underlying context", or "computation context", which is to denote the
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context for the underlying computation algorithm if there is one.</p>
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<p>
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</p>
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<h2><a name="types">Types</a></h2>
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<p><strong>EVP_MAC</strong> is a type that holds the implementation of a MAC.</p>
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<p><strong>EVP_MAC_CTX</strong> is a context type that holds internal MAC information
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as well as a reference to a computation context, for those MACs that
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rely on an underlying computation algorithm.</p>
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<p>
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</p>
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<h2><a name="algorithm_implementation_fetching">Algorithm implementation fetching</a></h2>
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<p><code>EVP_MAC_fetch()</code> fetches an implementation of a MAC <em>algorithm</em>, given
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a library context <em>libctx</em> and a set of <em>properties</em>.
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See <em>provider(7)/Fetching algorithms</em> for further information.</p>
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<p>The returned value must eventually be freed with
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<em>EVP_MAC_free(3)</em>.</p>
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<p><code>EVP_MAC_up_ref()</code> increments the reference count of an already fetched
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MAC.</p>
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<p><code>EVP_MAC_free()</code> frees a fetched algorithm.
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NULL is a valid parameter, for which this function is a no-op.</p>
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<p>
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</p>
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<h2><a name="context_manipulation_functions">Context manipulation functions</a></h2>
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<p><code>EVP_MAC_CTX_new()</code> creates a new context for the MAC type <em>mac</em>.
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The created context can then be used with most other functions
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described here.</p>
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<p><code>EVP_MAC_CTX_free()</code> frees the contents of the context, including an
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underlying context if there is one, as well as the context itself.
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NULL is a valid parameter, for which this function is a no-op.</p>
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<p><code>EVP_MAC_CTX_dup()</code> duplicates the <em>src</em> context and returns a newly allocated
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context.</p>
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<p><code>EVP_MAC_CTX_mac()</code> returns the <strong>EVP_MAC</strong> associated with the context
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<em>ctx</em>.</p>
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<p>
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</p>
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<h2><a name="computing_functions">Computing functions</a></h2>
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<p><code>EVP_MAC_init()</code> sets up the underlying context with information given
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through diverse controls.
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This should be called before calling <code>EVP_MAC_update()</code> and
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<code>EVP_MAC_final()</code>.</p>
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<p><code>EVP_MAC_update()</code> adds <em>datalen</em> bytes from <em>data</em> to the MAC input.</p>
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<p><code>EVP_MAC_final()</code> does the final computation and stores the result in
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the memory pointed at by <em>out</em> of size <em>outsize</em>, and sets the number
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of bytes written in <em>*outl</em> at.
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If <em>out</em> is NULL or <em>outsize</em> is too small, then no computation
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is made.
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To figure out what the output length will be and allocate space for it
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dynamically, simply call with <em>out</em> being NULL and <em>outl</em>
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pointing at a valid location, then allocate space and make a second
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call with <em>out</em> pointing at the allocated space.</p>
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<p><code>EVP_MAC_get_params()</code> retrieves details about the implementation
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<em>mac</em>.
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The set of parameters given with <em>params</em> determine exactly what
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parameters should be retrieved.
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Note that a parameter that is unknown in the underlying context is
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simply ignored.</p>
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<p><code>EVP_MAC_CTX_get_params()</code> retrieves chosen parameters, given the
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context <em>ctx</em> and its underlying context.
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The set of parameters given with <em>params</em> determine exactly what
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parameters should be retrieved.
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Note that a parameter that is unknown in the underlying context is
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simply ignored.</p>
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<p><code>EVP_MAC_CTX_set_params()</code> passes chosen parameters to the underlying
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context, given a context <em>ctx</em>.
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The set of parameters given with <em>params</em> determine exactly what
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parameters are passed down.
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Note that a parameter that is unknown in the underlying context is
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simply ignored.
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Also, what happens when a needed parameter isn't passed down is
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defined by the implementation.</p>
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<p><code>EVP_MAC_gettable_params()</code>, <code>EVP_MAC_gettable_ctx_params()</code> and
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<code>EVP_MAC_settable_ctx_params()</code> get a constant <strong>OSSL_PARAM</strong> array that
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describes the retrievable and settable parameters, i.e. parameters that
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can be used with <code>EVP_MAC_get_params()</code>, <code>EVP_MAC_CTX_get_params()</code>
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and <code>EVP_MAC_CTX_set_params()</code>, respectively.
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See <em>OSSL_PARAM(3)</em> for the use of <strong>OSSL_PARAM</strong> as parameter descriptor.</p>
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<p>
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</p>
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<h2><a name="information_functions">Information functions</a></h2>
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<p><code>EVP_MAC_size()</code> returns the MAC output size for the given context.</p>
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<p><code>EVP_MAC_is_a()</code> checks if the given <em>mac</em> is an implementation of an
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algorithm that's identifiable with <em>name</em>.</p>
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<p><code>EVP_MAC_provider()</code> returns the provider that holds the implementation
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of the given <em>mac</em>.</p>
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<p><code>EVP_MAC_do_all_provided()</code> traverses all MAC implemented by all activated
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providers in the given library context <em>libctx</em>, and for each of the
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implementations, calls the given function <em>fn</em> with the implementation method
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and the given <em>arg</em> as argument.</p>
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<p><code>EVP_MAC_number()</code> returns the internal dynamic number assigned to
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<em>mac</em>.</p>
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<p><code>EVP_MAC_names_do_all()</code> traverses all names for <em>mac</em>, and calls
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<em>fn</em> with each name and <em>data</em>.</p>
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<p>
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</p>
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<hr />
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<h1><a name="parameters">PARAMETERS</a></h1>
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<p>Parameters are identified by name as strings, and have an expected
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data type and maximum size.
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OpenSSL has a set of macros for parameter names it expects to see in
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its own MAC implementations.
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Here, we show all three, the OpenSSL macro for the parameter name, the
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name in string form, and a type description.</p>
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<p>The standard parameter names are:</p>
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<dl>
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<dt><strong><a name="key_ossl_mac_param_key_octet_string" class="item">"key" (<strong>OSSL_MAC_PARAM_KEY</strong>) <octet string></a></strong></dt>
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<dd>
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<p>Its value is the MAC key as an array of bytes.</p>
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<p>For MACs that use an underlying computation algorithm, the algorithm
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must be set first, see parameter names "algorithm" below.</p>
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</dd>
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<dt><strong><a name="iv_ossl_mac_param_iv_octet_string" class="item">"iv" (<strong>OSSL_MAC_PARAM_IV</strong>) <octet string></a></strong></dt>
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<dd>
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<p>Some MAC implementations require an IV, this parameter sets the IV.</p>
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</dd>
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<dt><strong><a name="custom_ossl_mac_param_custom_octet_string" class="item">"custom" (<strong>OSSL_MAC_PARAM_CUSTOM</strong>) <octet string></a></strong></dt>
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<dd>
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<p>Some MAC implementations (KMAC, BLAKE2) accept a Customization String,
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this parameter sets the Customization String. The default value is the
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empty string.</p>
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</dd>
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<dt><strong><a name="salt_ossl_mac_param_salt_octet_string" class="item">"salt" (<strong>OSSL_MAC_PARAM_SALT</strong>) <octet string></a></strong></dt>
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<dd>
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<p>This option is used by BLAKE2 MAC.</p>
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</dd>
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<dt><strong><a name="xof_ossl_mac_param_xof_integer" class="item">"xof" (<strong>OSSL_MAC_PARAM_XOF</strong>) <integer></a></strong></dt>
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<dd>
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<p>It's a simple flag, the value 0 or 1 are expected.</p>
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<p>This option is used by KMAC.</p>
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</dd>
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<dt><strong><a name="flags_ossl_mac_param_flags_integer" class="item">"flags" (<strong>OSSL_MAC_PARAM_FLAGS</strong>) <integer></a></strong></dt>
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<dd>
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<p>These will set the MAC flags to the given numbers.
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Some MACs do not support this option.</p>
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</dd>
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<dt><strong><a name="properties_ossl_mac_param_properties_utf8_string" class="item">"properties" (<strong>OSSL_MAC_PARAM_PROPERTIES</strong>) <UTF8 string></a></strong></dt>
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<dt><strong><a name="digest_ossl_mac_param_digest_utf8_string" class="item">"digest" (<strong>OSSL_MAC_PARAM_DIGEST</strong>) <UTF8 string></a></strong></dt>
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<dt><strong><a name="cipher_ossl_mac_param_cipher_utf8_string" class="item">"cipher" (<strong>OSSL_MAC_PARAM_CIPHER</strong>) <UTF8 string></a></strong></dt>
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<dd>
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<p>For MAC implementations that use an underlying computation cipher or
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digest, these parameters set what the algorithm should be.</p>
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<p>The value is always the name of the intended algorithm,
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or the properties.</p>
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<p>Note that not all algorithms may support all digests.
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HMAC does not support variable output length digests such as SHAKE128
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or SHAKE256.</p>
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</dd>
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<dt><strong><a name="size_ossl_mac_param_size_unsigned_integer" class="item">"size" (<strong>OSSL_MAC_PARAM_SIZE</strong>) <unsigned integer></a></strong></dt>
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<dd>
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<p>For MAC implementations that support it, set the output size that
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<code>EVP_MAC_final()</code> should produce.
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The allowed sizes vary between MAC implementations, but must never exceed
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what can be given with a <strong>size_t</strong>.</p>
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</dd>
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</dl>
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<p>All these parameters should be used before the calls to any of
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<code>EVP_MAC_init()</code>, <code>EVP_MAC_update()</code> and <code>EVP_MAC_final()</code> for a full
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computation.
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Anything else may give undefined results.</p>
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<p>
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</p>
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<hr />
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<h1><a name="return_values">RETURN VALUES</a></h1>
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<p><code>EVP_MAC_fetch()</code> returns a pointer to a newly fetched EVP_MAC, or
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NULL if allocation failed.</p>
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<p><code>EVP_MAC_up_ref()</code> returns 1 on success, 0 on error.</p>
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<p><code>EVP_MAC_free()</code> returns nothing at all.</p>
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<p><code>EVP_MAC_is_a()</code> returns 1 if the given method can be identified with
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the given name, otherwise 0.</p>
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<p><code>EVP_MAC_provider()</code> returns a pointer to the provider for the MAC, or
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NULL on error.</p>
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<p><code>EVP_MAC_CTX_new()</code> and <code>EVP_MAC_CTX_dup()</code> return a pointer to a newly
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created EVP_MAC_CTX, or NULL if allocation failed.</p>
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<p><code>EVP_MAC_CTX_free()</code> returns nothing at all.</p>
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<p><code>EVP_MAC_CTX_get_params()</code> and <code>EVP_MAC_CTX_set_params()</code> return 1 on
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success, 0 on error.</p>
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<p><code>EVP_MAC_init()</code>, <code>EVP_MAC_update()</code>, and <code>EVP_MAC_final()</code> return 1 on success, 0
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on error.</p>
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<p><code>EVP_MAC_size()</code> returns the expected output size, or 0 if it isn't
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set.
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If it isn't set, a call to <code>EVP_MAC_init()</code> should get it set.</p>
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<p><code>EVP_MAC_do_all_provided()</code> returns nothing at all.</p>
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<p>
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</p>
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<hr />
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<h1><a name="examples">EXAMPLES</a></h1>
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<pre>
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#include <stdlib.h>
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#include <stdio.h>
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#include <string.h>
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#include <stdarg.h>
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#include <unistd.h></pre>
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<pre>
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#include <openssl/evp.h>
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#include <openssl/err.h>
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#include <openssl/params.h></pre>
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<pre>
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int main() {
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EVP_MAC *mac = EVP_MAC_fetch(NULL, getenv("MY_MAC"), NULL);
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const char *cipher = getenv("MY_MAC_CIPHER");
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const char *digest = getenv("MY_MAC_DIGEST");
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const char *key = getenv("MY_KEY");
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EVP_MAC_CTX *ctx = NULL;</pre>
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<pre>
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unsigned char buf[4096];
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ssize_t read_l;
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size_t final_l;</pre>
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<pre>
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size_t i;</pre>
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<pre>
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OSSL_PARAM params[4];
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size_t params_n = 0;</pre>
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<pre>
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if (cipher != NULL)
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params[params_n++] =
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OSSL_PARAM_construct_utf8_string("cipher", cipher, 0, NULL);
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if (digest != NULL)
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params[params_n++] =
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OSSL_PARAM_construct_utf8_string("digest", digest, 0, NULL);
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params[params_n++] =
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OSSL_PARAM_construct_octet_string("key", key, strlen(key), NULL);
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params[params_n] = OSSL_PARAM_construct_end();</pre>
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<pre>
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if (mac == NULL
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|| key == NULL
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|| (ctx = EVP_MAC_CTX_new(mac)) == NULL
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|| EVP_MAC_CTX_set_params(ctx, params) <= 0)
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goto err;</pre>
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<pre>
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if (!EVP_MAC_init(ctx))
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goto err;</pre>
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<pre>
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while ( (read_l = read(STDIN_FILENO, buf, sizeof(buf))) > 0) {
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if (!EVP_MAC_update(ctx, buf, read_l))
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goto err;
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}</pre>
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<pre>
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if (!EVP_MAC_final(ctx, buf, &final_l))
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goto err;</pre>
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<pre>
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printf("Result: ");
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for (i = 0; i < final_l; i++)
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printf("%02X", buf[i]);
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printf("\n");</pre>
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<pre>
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EVP_MAC_CTX_free(ctx);
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EVP_MAC_free(mac);
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exit(0);</pre>
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<pre>
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err:
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EVP_MAC_CTX_free(ctx);
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EVP_MAC_free(mac);
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fprintf(stderr, "Something went wrong\n");
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ERR_print_errors_fp(stderr);
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exit (1);
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}</pre>
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<p>A run of this program, called with correct environment variables, can
|
|
look like this:</p>
|
|
<pre>
|
|
$ MY_MAC=cmac MY_KEY=secret0123456789 MY_MAC_CIPHER=aes-128-cbc \
|
|
LD_LIBRARY_PATH=. ./foo < foo.c
|
|
Result: C5C06683CD9DDEF904D754505C560A4E</pre>
|
|
<p>(in this example, that program was stored in <em class="file">foo.c</em> and compiled to
|
|
<em class="file">./foo</em>)</p>
|
|
<p>
|
|
</p>
|
|
<hr />
|
|
<h1><a name="see_also">SEE ALSO</a></h1>
|
|
<p><em>property(7)</em>
|
|
<em>OSSL_PARAM(3)</em>,
|
|
<em>EVP_MAC-BLAKE2(7)</em>,
|
|
<em>EVP_MAC-CMAC(7)</em>,
|
|
<em>EVP_MAC-GMAC(7)</em>,
|
|
<em>EVP_MAC-HMAC(7)</em>,
|
|
<em>EVP_MAC-KMAC(7)</em>,
|
|
<em>EVP_MAC-Siphash(7)</em>,
|
|
<em>EVP_MAC-Poly1305(7)</em></p>
|
|
<p>
|
|
</p>
|
|
<hr />
|
|
<h1><a name="history">HISTORY</a></h1>
|
|
<p>These functions were added in OpenSSL 3.0.</p>
|
|
<p>
|
|
</p>
|
|
<hr />
|
|
<h1><a name="copyright">COPYRIGHT</a></h1>
|
|
<p>Copyright 2018-2019 The OpenSSL Project Authors. All Rights Reserved.</p>
|
|
<p>Licensed under the Apache License 2.0 (the "License"). You may not use
|
|
this file except in compliance with the License. You can obtain a copy
|
|
in the file LICENSE in the source distribution or at
|
|
<a href="https://www.openssl.org/source/license.html">https://www.openssl.org/source/license.html</a>.</p>
|
|
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</body>
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</html>
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