/snap/node/11691/include/node/openssl
NameSizeModeActions
archs/-0755rm
aes.h33110644editdlrm
asn1.h940644editdlrm
asn1err.h51690644editdlrm
asn1t.h960644editdlrm
asn1t_asm.h24870644editdlrm
asn1t_no-asm.h27770644editdlrm
asn1_asm.h24680644editdlrm
asn1_no-asm.h27560644editdlrm
async.h30190644editdlrm
asyncerr.h7390644editdlrm
bio.h920644editdlrm
bioerr.h23550644editdlrm
bio_asm.h24490644editdlrm
bio_no-asm.h27350644editdlrm
blowfish.h21360644editdlrm
bn.h223090644editdlrm
bnerr.h13290644editdlrm
bn_conf.h1000644editdlrm
bn_conf_asm.h25060644editdlrm
bn_conf_no-asm.h27980644editdlrm
buffer.h15910644editdlrm
buffererr.h5870644editdlrm
byteorder.h84440644editdlrm
camellia.h32660644editdlrm
cast.h18800644editdlrm
cmac.h14490644editdlrm
cmp.h920644editdlrm
cmperr.h48210644editdlrm
cmp_asm.h24490644editdlrm
cmp_no-asm.h27350644editdlrm
cmp_util.h16270644editdlrm
cms.h920644editdlrm
cmserr.h45470644editdlrm
cms_asm.h24490644editdlrm
cms_no-asm.h27350644editdlrm
comp.h940644editdlrm
comperr.h10020644editdlrm
comp_asm.h24680644editdlrm
comp_no-asm.h27560644editdlrm
conf.h940644editdlrm
conferr.h16970644editdlrm
configuration.h1120644editdlrm
configuration_asm.h26390644editdlrm
configuration_no-asm.h29450644editdlrm
conftypes.h11760644editdlrm
conf_api.h13280644editdlrm
conf_asm.h24680644editdlrm
conf_no-asm.h27560644editdlrm
core.h78200644editdlrm
core_dispatch.h469320644editdlrm
core_names.h1060644editdlrm
core_names_asm.h25820644editdlrm
core_names_no-asm.h28820644editdlrm
core_object.h10470644editdlrm
crmf.h940644editdlrm
crmferr.h18580644editdlrm
crmf_asm.h24680644editdlrm
crmf_no-asm.h27560644editdlrm
crypto.h980644editdlrm
cryptoerr.h19860644editdlrm
cryptoerr_legacy.h480190644editdlrm
crypto_asm.h25060644editdlrm
crypto_no-asm.h27980644editdlrm
ct.h900644editdlrm
cterr.h12410644editdlrm
ct_asm.h24300644editdlrm
ct_no-asm.h27140644editdlrm
decoder.h49070644editdlrm
decodererr.h7400644editdlrm
des.h77640644editdlrm
dh.h130250644editdlrm
dherr.h17020644editdlrm
dsa.h109820644editdlrm
dsaerr.h11640644editdlrm
dso_conf.h1020644editdlrm
dso_conf_asm.h25250644editdlrm
dso_conf_no-asm.h28190644editdlrm
dtls1.h12390644editdlrm
ebcdic.h10250644editdlrm
ec.h623130644editdlrm
ecdh.h3610644editdlrm
ecdsa.h3610644editdlrm
ecerr.h33590644editdlrm
encoder.h45700644editdlrm
encodererr.h7410644editdlrm
engine.h375360644editdlrm
engineerr.h20340644editdlrm
err.h920644editdlrm
err_asm.h24490644editdlrm
err_no-asm.h27350644editdlrm
ess.h920644editdlrm
esserr.h9820644editdlrm
ess_asm.h24490644editdlrm
ess_no-asm.h27350644editdlrm
evp.h949530644editdlrm
evperr.h55280644editdlrm
e_os2.h84450644editdlrm
e_ostime.h11470644editdlrm
fipskey.h1000644editdlrm
fipskey_asm.h25250644editdlrm
fipskey_no-asm.h28190644editdlrm
fips_names.h16380644editdlrm
hmac.h18920644editdlrm
hpke.h60810644editdlrm
http.h47170644editdlrm
httperr.h18920644editdlrm
idea.h22850644editdlrm
indicator.h8180644editdlrm
kdf.h49380644editdlrm
kdferr.h4800644editdlrm
lhash.h960644editdlrm
lhash_asm.h24870644editdlrm
lhash_no-asm.h27770644editdlrm
macros.h107510644editdlrm
md2.h13360644editdlrm
md4.h16100644editdlrm
md5.h16080644editdlrm
mdc2.h13120644editdlrm
ml_kem.h9590644editdlrm
modes.h81350644editdlrm
objects.h75670644editdlrm
objectserr.h6860644editdlrm
obj_mac.h2895250644editdlrm
ocsp.h940644editdlrm
ocsperr.h16360644editdlrm
ocsp_asm.h24680644editdlrm
ocsp_no-asm.h27560644editdlrm
opensslconf.h5100644editdlrm
opensslconf_asm.h69290644editdlrm
opensslv.h1020644editdlrm
opensslv_asm.h25440644editdlrm
opensslv_no-asm.h28400644editdlrm
ossl_typ.h5610644editdlrm
params.h70600644editdlrm
param_build.h23630644editdlrm
param_names.h1080644editdlrm
param_names_asm.h26200644editdlrm
param_names_no-asm.h29240644editdlrm
pem.h226670644editdlrm
pem2.h5230644editdlrm
pemerr.h18360644editdlrm
pkcs7.h960644editdlrm
pkcs7err.h22420644editdlrm
pkcs7_asm.h24870644editdlrm
pkcs7_no-asm.h27770644editdlrm
pkcs12.h980644editdlrm
pkcs12err.h14270644editdlrm
pkcs12_asm.h25060644editdlrm
pkcs12_no-asm.h27980644editdlrm
proverr.h64140644editdlrm
provider.h33830644editdlrm
prov_ssl.h9690644editdlrm
quic.h21010644editdlrm
rand.h40580644editdlrm
randerr.h24860644editdlrm
rc2.h17710644editdlrm
rc4.h10750644editdlrm
rc5.h21460644editdlrm
ripemd.h15370644editdlrm
rsa.h222750644editdlrm
rsaerr.h38610644editdlrm
safestack.h1040644editdlrm
safestack_asm.h25630644editdlrm
safestack_no-asm.h28610644editdlrm
seed.h36110644editdlrm
self_test.h47200644editdlrm
sha.h44040644editdlrm
srp.h920644editdlrm
srp_asm.h24490644editdlrm
srp_no-asm.h27350644editdlrm
srtp.h18880644editdlrm
ssl.h920644editdlrm
ssl2.h6250644editdlrm
ssl3.h127480644editdlrm
sslerr.h154130644editdlrm
sslerr_legacy.h182690644editdlrm
ssl_asm.h24490644editdlrm
ssl_no-asm.h27350644editdlrm
stack.h31220644editdlrm
store.h140080644editdlrm
storeerr.h17020644editdlrm
symhacks.h11020644editdlrm
thread.h8650644editdlrm
tls1.h633210644editdlrm
trace.h108230644editdlrm
ts.h194190644editdlrm
tserr.h20770644editdlrm
txt_db.h16350644editdlrm
types.h73540644editdlrm
ui.h900644editdlrm
uierr.h10620644editdlrm
ui_asm.h24300644editdlrm
ui_no-asm.h27140644editdlrm
whrlpool.h16810644editdlrm
x509.h940644editdlrm
x509err.h23160644editdlrm
x509v3.h980644editdlrm
x509v3err.h35780644editdlrm
x509v3_asm.h25060644editdlrm
x509v3_no-asm.h27980644editdlrm
x509_acert.h1060644editdlrm
x509_acert_asm.h25820644editdlrm
x509_acert_no-asm.h28820644editdlrm
x509_asm.h24680644editdlrm
x509_no-asm.h27560644editdlrm
x509_vfy.h1020644editdlrm
x509_vfy_asm.h25440644editdlrm
x509_vfy_no-asm.h28400644editdlrm
Edit: /snap/node/11691/include/node/openssl/core.h (7820B)
/* * Copyright 2019-2023 The OpenSSL Project Authors. All Rights Reserved. * * 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 * https://www.openssl.org/source/license.html */ #ifndef OPENSSL_CORE_H #define OPENSSL_CORE_H #pragma once #include #include #ifdef __cplusplus extern "C" { #endif /*- * Base types * ---------- * * These are the types that the OpenSSL core and providers have in common * to communicate data between them. */ /* Opaque handles to be used with core upcall functions from providers */ typedef struct ossl_core_handle_st OSSL_CORE_HANDLE; typedef struct openssl_core_ctx_st OPENSSL_CORE_CTX; typedef struct ossl_core_bio_st OSSL_CORE_BIO; /* * Dispatch table element. function_id numbers and the functions are defined * in core_dispatch.h, see macros with 'OSSL_CORE_MAKE_FUNC' in their names. * * An array of these is always terminated by function_id == 0 */ struct ossl_dispatch_st { int function_id; void (*function)(void); }; #define OSSL_DISPATCH_END \ { 0, NULL } /* * Other items, essentially an int<->pointer map element. * * We make this type distinct from OSSL_DISPATCH to ensure that dispatch * tables remain tables with function pointers only. * * This is used whenever we need to pass things like a table of error reason * codes <-> reason string maps, ... * * Usage determines which field works as key if any, rather than field order. * * An array of these is always terminated by id == 0 && ptr == NULL */ struct ossl_item_st { unsigned int id; void *ptr; }; /* * Type to tie together algorithm names, property definition string and * the algorithm implementation in the form of a dispatch table. * * An array of these is always terminated by algorithm_names == NULL */ struct ossl_algorithm_st { const char *algorithm_names; /* key */ const char *property_definition; /* key */ const OSSL_DISPATCH *implementation; const char *algorithm_description; }; /* * Type to pass object data in a uniform way, without exposing the object * structure. * * An array of these is always terminated by key == NULL */ struct ossl_param_st { const char *key; /* the name of the parameter */ unsigned int data_type; /* declare what kind of content is in buffer */ void *data; /* value being passed in or out */ size_t data_size; /* data size */ size_t return_size; /* returned content size */ }; /* Currently supported OSSL_PARAM data types */ /* * OSSL_PARAM_INTEGER and OSSL_PARAM_UNSIGNED_INTEGER * are arbitrary length and therefore require an arbitrarily sized buffer, * since they may be used to pass numbers larger than what is natively * available. * * The number must be buffered in native form, i.e. MSB first on B_ENDIAN * systems and LSB first on L_ENDIAN systems. This means that arbitrary * native integers can be stored in the buffer, just make sure that the * buffer size is correct and the buffer itself is properly aligned (for * example by having the buffer field point at a C integer). */ #define OSSL_PARAM_INTEGER 1 #define OSSL_PARAM_UNSIGNED_INTEGER 2 /*- * OSSL_PARAM_REAL * is a C binary floating point values in native form and alignment. */ #define OSSL_PARAM_REAL 3 /*- * OSSL_PARAM_UTF8_STRING * is a printable string. It is expected to be printed as it is. */ #define OSSL_PARAM_UTF8_STRING 4 /*- * OSSL_PARAM_OCTET_STRING * is a string of bytes with no further specification. It is expected to be * printed as a hexdump. */ #define OSSL_PARAM_OCTET_STRING 5 /*- * OSSL_PARAM_UTF8_PTR * is a pointer to a printable string. It is expected to be printed as it is. * * The difference between this and OSSL_PARAM_UTF8_STRING is that only pointers * are manipulated for this type. * * This is more relevant for parameter requests, where the responding * function doesn't need to copy the data to the provided buffer, but * sets the provided buffer to point at the actual data instead. * * WARNING! Using these is FRAGILE, as it assumes that the actual * data and its location are constant. * * EXTRA WARNING! If you are not completely sure you most likely want * to use the OSSL_PARAM_UTF8_STRING type. */ #define OSSL_PARAM_UTF8_PTR 6 /*- * OSSL_PARAM_OCTET_PTR * is a pointer to a string of bytes with no further specification. It is * expected to be printed as a hexdump. * * The difference between this and OSSL_PARAM_OCTET_STRING is that only pointers * are manipulated for this type. * * This is more relevant for parameter requests, where the responding * function doesn't need to copy the data to the provided buffer, but * sets the provided buffer to point at the actual data instead. * * WARNING! Using these is FRAGILE, as it assumes that the actual * data and its location are constant. * * EXTRA WARNING! If you are not completely sure you most likely want * to use the OSSL_PARAM_OCTET_STRING type. */ #define OSSL_PARAM_OCTET_PTR 7 /* * Typedef for the thread stop handling callback. Used both internally and by * providers. * * Providers may register for notifications about threads stopping by * registering a callback to hear about such events. Providers register the * callback using the OSSL_FUNC_CORE_THREAD_START function in the |in| dispatch * table passed to OSSL_provider_init(). The arg passed back to a provider will * be the provider side context object. */ typedef void (*OSSL_thread_stop_handler_fn)(void *arg); /*- * Provider entry point * -------------------- * * This function is expected to be present in any dynamically loadable * provider module. By definition, if this function doesn't exist in a * module, that module is not an OpenSSL provider module. */ /*- * |handle| pointer to opaque type OSSL_CORE_HANDLE. This can be used * together with some functions passed via |in| to query data. * |in| is the array of functions that the Core passes to the provider. * |out| will be the array of base functions that the provider passes * back to the Core. * |provctx| a provider side context object, optionally created if the * provider needs it. This value is passed to other provider * functions, notably other context constructors. */ typedef int(OSSL_provider_init_fn)(const OSSL_CORE_HANDLE *handle, const OSSL_DISPATCH *in, const OSSL_DISPATCH **out, void **provctx); #ifdef __VMS #pragma names save #pragma names uppercase, truncated #endif OPENSSL_EXPORT OSSL_provider_init_fn OSSL_provider_init; #ifdef __VMS #pragma names restore #endif /* * Generic callback function signature. * * The expectation is that any provider function that wants to offer * a callback / hook can do so by taking an argument with this type, * as well as a pointer to caller-specific data. When calling the * callback, the provider function can populate an OSSL_PARAM array * with data of its choice and pass that in the callback call, along * with the caller data argument. * * libcrypto may use the OSSL_PARAM array to create arguments for an * application callback it knows about. */ typedef int(OSSL_CALLBACK)(const OSSL_PARAM params[], void *arg); typedef int(OSSL_INOUT_CALLBACK)(const OSSL_PARAM in_params[], OSSL_PARAM out_params[], void *arg); /* * Passphrase callback function signature * * This is similar to the generic callback function above, but adds a * result parameter. */ typedef int(OSSL_PASSPHRASE_CALLBACK)(char *pass, size_t pass_size, size_t *pass_len, const OSSL_PARAM params[], void *arg); #ifdef __cplusplus } #endif #endif