2020-05-04 23:26:07 +08:00
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/*
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2021-02-18 22:57:13 +08:00
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* Copyright 2020-2021 The OpenSSL Project Authors. All Rights Reserved.
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2020-05-04 23:26:07 +08:00
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*
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* Licensed under the Apache License 2.0 (the "License"). You may not use
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* this file except in compliance with the License. You can obtain a copy
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* in the file LICENSE in the source distribution or at
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* https://www.openssl.org/source/license.html
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*/
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/*
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* A filtering provider for test purposes. We pass all calls through to the
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* default provider except where we want other behaviour for a test.
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*/
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#include <string.h>
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#include <openssl/core.h>
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#include <openssl/provider.h>
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#include <openssl/crypto.h>
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2020-09-25 08:19:19 +08:00
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#include "testutil.h"
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#include "filterprov.h"
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2020-05-04 23:26:07 +08:00
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#define MAX_FILTERS 10
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#define MAX_ALG_FILTERS 5
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struct filter_prov_globals_st {
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2020-10-15 17:55:50 +08:00
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OSSL_LIB_CTX *libctx;
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2020-05-04 23:26:07 +08:00
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OSSL_PROVIDER *deflt;
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struct {
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int operation;
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OSSL_ALGORITHM alg[MAX_ALG_FILTERS + 1];
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} dispatch[MAX_FILTERS];
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int num_dispatch;
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2021-02-09 09:55:59 +08:00
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int no_cache;
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2020-09-25 08:19:19 +08:00
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unsigned long int query_count;
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int error;
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2020-05-04 23:26:07 +08:00
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};
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static struct filter_prov_globals_st ourglobals;
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static struct filter_prov_globals_st *get_globals(void)
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{
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/*
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2020-10-15 17:55:50 +08:00
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* Ideally we'd like to store this in the OSSL_LIB_CTX so that we can have
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2020-05-04 23:26:07 +08:00
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* more than one instance of the filter provider at a time. But for now we
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* just make it simple.
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*/
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return &ourglobals;
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}
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2020-06-21 07:19:16 +08:00
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static OSSL_FUNC_provider_gettable_params_fn filter_gettable_params;
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static OSSL_FUNC_provider_get_params_fn filter_get_params;
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static OSSL_FUNC_provider_query_operation_fn filter_query;
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2020-09-25 08:19:19 +08:00
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static OSSL_FUNC_provider_unquery_operation_fn filter_unquery;
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2020-06-21 07:19:16 +08:00
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static OSSL_FUNC_provider_teardown_fn filter_teardown;
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2020-05-04 23:26:07 +08:00
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static const OSSL_PARAM *filter_gettable_params(void *provctx)
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{
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struct filter_prov_globals_st *globs = get_globals();
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return OSSL_PROVIDER_gettable_params(globs->deflt);
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}
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static int filter_get_params(void *provctx, OSSL_PARAM params[])
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{
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struct filter_prov_globals_st *globs = get_globals();
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return OSSL_PROVIDER_get_params(globs->deflt, params);
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}
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2020-05-19 06:37:18 +08:00
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static int filter_get_capabilities(void *provctx, const char *capability,
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OSSL_CALLBACK *cb, void *arg)
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{
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struct filter_prov_globals_st *globs = get_globals();
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return OSSL_PROVIDER_get_capabilities(globs->deflt, capability, cb, arg);
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}
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2020-05-04 23:26:07 +08:00
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static const OSSL_ALGORITHM *filter_query(void *provctx,
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int operation_id,
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int *no_cache)
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{
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struct filter_prov_globals_st *globs = get_globals();
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int i;
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2020-09-25 08:19:19 +08:00
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globs->query_count++;
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2020-05-04 23:26:07 +08:00
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for (i = 0; i < globs->num_dispatch; i++) {
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if (globs->dispatch[i].operation == operation_id) {
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2021-02-09 09:55:59 +08:00
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*no_cache = globs->no_cache;
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2020-05-04 23:26:07 +08:00
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return globs->dispatch[i].alg;
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}
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}
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/* No filter set, so pass it down to the chained provider */
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return OSSL_PROVIDER_query_operation(globs->deflt, operation_id, no_cache);
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}
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2020-09-25 08:19:19 +08:00
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static void filter_unquery(void *provctx, int operation_id,
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const OSSL_ALGORITHM *algs)
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{
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struct filter_prov_globals_st *globs = get_globals();
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int i;
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if (!TEST_ulong_gt(globs->query_count, 0))
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globs->error = 1;
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else
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globs->query_count--;
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for (i = 0; i < globs->num_dispatch; i++)
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if (globs->dispatch[i].alg == algs)
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return;
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OSSL_PROVIDER_unquery_operation(globs->deflt, operation_id, algs);
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}
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2020-05-04 23:26:07 +08:00
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static void filter_teardown(void *provctx)
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{
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struct filter_prov_globals_st *globs = get_globals();
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OSSL_PROVIDER_unload(globs->deflt);
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2020-10-15 17:55:50 +08:00
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OSSL_LIB_CTX_free(globs->libctx);
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2020-09-25 08:19:19 +08:00
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memset(globs, 0, sizeof(*globs));
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2020-05-04 23:26:07 +08:00
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}
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/* Functions we provide to the core */
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static const OSSL_DISPATCH filter_dispatch_table[] = {
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{ OSSL_FUNC_PROVIDER_GETTABLE_PARAMS, (void (*)(void))filter_gettable_params },
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{ OSSL_FUNC_PROVIDER_GET_PARAMS, (void (*)(void))filter_get_params },
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{ OSSL_FUNC_PROVIDER_QUERY_OPERATION, (void (*)(void))filter_query },
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2020-09-25 08:19:19 +08:00
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{ OSSL_FUNC_PROVIDER_UNQUERY_OPERATION, (void (*)(void))filter_unquery },
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2020-05-19 06:37:18 +08:00
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{ OSSL_FUNC_PROVIDER_GET_CAPABILITIES, (void (*)(void))filter_get_capabilities },
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2020-05-04 23:26:07 +08:00
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{ OSSL_FUNC_PROVIDER_TEARDOWN, (void (*)(void))filter_teardown },
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2023-04-19 22:08:22 +08:00
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OSSL_DISPATCH_END
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2020-05-04 23:26:07 +08:00
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};
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int filter_provider_init(const OSSL_CORE_HANDLE *handle,
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const OSSL_DISPATCH *in,
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const OSSL_DISPATCH **out,
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void **provctx)
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{
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memset(&ourglobals, 0, sizeof(ourglobals));
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2020-10-15 17:55:50 +08:00
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ourglobals.libctx = OSSL_LIB_CTX_new();
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2020-05-04 23:26:07 +08:00
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if (ourglobals.libctx == NULL)
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goto err;
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ourglobals.deflt = OSSL_PROVIDER_load(ourglobals.libctx, "default");
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if (ourglobals.deflt == NULL)
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goto err;
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*provctx = OSSL_PROVIDER_get0_provider_ctx(ourglobals.deflt);
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*out = filter_dispatch_table;
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return 1;
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err:
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OSSL_PROVIDER_unload(ourglobals.deflt);
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2020-10-15 17:55:50 +08:00
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OSSL_LIB_CTX_free(ourglobals.libctx);
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2020-05-04 23:26:07 +08:00
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return 0;
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}
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/*
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* Set a filter for the given operation id. The filter string is a colon
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* separated list of algorithms that will be made available by this provider.
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* Anything not in the filter will be suppressed. If a filter is not set for
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* a given operation id then all algorithms are made available.
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*/
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int filter_provider_set_filter(int operation, const char *filterstr)
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{
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int no_cache = 0;
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int algnum = 0, last = 0, ret = 0;
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struct filter_prov_globals_st *globs = get_globals();
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size_t namelen;
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char *filterstrtmp = OPENSSL_strdup(filterstr);
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char *name, *sep;
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const OSSL_ALGORITHM *provalgs = OSSL_PROVIDER_query_operation(globs->deflt,
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operation,
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&no_cache);
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const OSSL_ALGORITHM *algs;
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if (filterstrtmp == NULL)
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goto err;
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/* Nothing to filter */
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if (provalgs == NULL)
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goto err;
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if (globs->num_dispatch >= MAX_FILTERS)
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goto err;
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2020-11-25 21:13:24 +08:00
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for (name = filterstrtmp; !last; name = (sep == NULL ? NULL : sep + 1)) {
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2020-05-04 23:26:07 +08:00
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sep = strstr(name, ":");
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if (sep != NULL)
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*sep = '\0';
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else
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last = 1;
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namelen = strlen(name);
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for (algs = provalgs; algs->algorithm_names != NULL; algs++) {
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const char *found = strstr(algs->algorithm_names, name);
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if (found == NULL)
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continue;
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if (found[namelen] != '\0' && found[namelen] != ':')
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continue;
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if (found != algs->algorithm_names && found[-1] != ':')
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continue;
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/* We found a match */
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if (algnum >= MAX_ALG_FILTERS)
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goto err;
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globs->dispatch[globs->num_dispatch].alg[algnum++] = *algs;
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break;
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}
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if (algs->algorithm_names == NULL) {
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/* No match found */
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goto err;
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}
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}
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globs->dispatch[globs->num_dispatch].operation = operation;
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2021-02-09 09:55:59 +08:00
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globs->no_cache = no_cache;
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2020-05-04 23:26:07 +08:00
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globs->num_dispatch++;
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ret = 1;
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err:
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2020-09-25 08:19:19 +08:00
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OSSL_PROVIDER_unquery_operation(globs->deflt, operation, provalgs);
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2020-05-04 23:26:07 +08:00
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OPENSSL_free(filterstrtmp);
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return ret;
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}
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2020-09-25 08:19:19 +08:00
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/*
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* Test if a filter provider is in a clean finishing state.
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* If it is return 1, otherwise return 0.
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*/
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int filter_provider_check_clean_finish(void)
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{
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struct filter_prov_globals_st *globs = get_globals();
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return TEST_ulong_eq(globs->query_count, 0) && !globs->error;
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}
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