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a_bitstr.c
(5.34 KB)
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a_d2i_fp.c
(6.33 KB)
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a_digest.c
(1.52 KB)
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a_dup.c
(1.51 KB)
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a_gentm.c
(2.12 KB)
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a_i2d_fp.c
(2.25 KB)
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a_int.c
(16.55 KB)
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a_mbstr.c
(9.55 KB)
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a_object.c
(10.16 KB)
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a_octet.c
(813 B)
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a_print.c
(2.14 KB)
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a_sign.c
(7.08 KB)
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a_strex.c
(17.37 KB)
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a_strnid.c
(5.95 KB)
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a_time.c
(14.91 KB)
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a_type.c
(3.51 KB)
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a_utctm.c
(2.23 KB)
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a_utf8.c
(5.89 KB)
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a_verify.c
(4.92 KB)
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ameth_lib.c
(14.51 KB)
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asn1_err.c
(18.92 KB)
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asn1_gen.c
(22.63 KB)
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asn1_item_list.c
(1.06 KB)
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asn1_item_list.h
(5.5 KB)
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asn1_lib.c
(9.38 KB)
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asn1_local.h
(3.27 KB)
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asn1_par.c
(13 KB)
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asn_mime.c
(27.92 KB)
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asn_moid.c
(2.46 KB)
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asn_mstbl.c
(3.43 KB)
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asn_pack.c
(1.59 KB)
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bio_asn1.c
(11.09 KB)
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bio_ndef.c
(5.29 KB)
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build.info
(837 B)
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charmap.h
(1.41 KB)
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charmap.pl
(3.58 KB)
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d2i_pr.c
(3.64 KB)
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d2i_pu.c
(2.01 KB)
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evp_asn1.c
(2.89 KB)
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f_int.c
(3.94 KB)
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f_string.c
(3.44 KB)
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i2d_pr.c
(1006 B)
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i2d_pu.c
(1.05 KB)
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n_pkey.c
(1.89 KB)
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nsseq.c
(1.11 KB)
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p5_pbe.c
(2.52 KB)
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p5_pbev2.c
(6 KB)
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p5_scrypt.c
(7.76 KB)
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p8_pkey.c
(2.53 KB)
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standard_methods.h
(1.35 KB)
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t_bitst.c
(1.56 KB)
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t_pkey.c
(2.52 KB)
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t_spki.c
(1.75 KB)
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tasn_dec.c
(36.99 KB)
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tasn_enc.c
(18.86 KB)
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tasn_fre.c
(5.34 KB)
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tasn_new.c
(8.95 KB)
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tasn_prn.c
(14.63 KB)
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tasn_scn.c
(1.37 KB)
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tasn_typ.c
(2.94 KB)
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tasn_utl.c
(6.64 KB)
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tbl_standard.h
(2.7 KB)
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x_algor.c
(3.31 KB)
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x_bignum.c
(4.05 KB)
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x_info.c
(895 B)
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x_int64.c
(7.83 KB)
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x_long.c
(5.42 KB)
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x_pkey.c
(1.12 KB)
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x_sig.c
(1.05 KB)
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x_spki.c
(961 B)
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x_val.c
(636 B)
Editing: tasn_fre.c
/* * Copyright 2000-2016 The OpenSSL Project Authors. All Rights Reserved. * * Licensed under the OpenSSL license (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 */ #include <stddef.h> #include <openssl/asn1.h> #include <openssl/asn1t.h> #include <openssl/objects.h> #include "asn1_local.h" /* Free up an ASN1 structure */ void ASN1_item_free(ASN1_VALUE *val, const ASN1_ITEM *it) { asn1_item_embed_free(&val, it, 0); } void ASN1_item_ex_free(ASN1_VALUE **pval, const ASN1_ITEM *it) { asn1_item_embed_free(pval, it, 0); } void asn1_item_embed_free(ASN1_VALUE **pval, const ASN1_ITEM *it, int embed) { const ASN1_TEMPLATE *tt = NULL, *seqtt; const ASN1_EXTERN_FUNCS *ef; const ASN1_AUX *aux = it->funcs; ASN1_aux_cb *asn1_cb; int i; if (!pval) return; if ((it->itype != ASN1_ITYPE_PRIMITIVE) && !*pval) return; if (aux && aux->asn1_cb) asn1_cb = aux->asn1_cb; else asn1_cb = 0; switch (it->itype) { case ASN1_ITYPE_PRIMITIVE: if (it->templates) asn1_template_free(pval, it->templates); else asn1_primitive_free(pval, it, embed); break; case ASN1_ITYPE_MSTRING: asn1_primitive_free(pval, it, embed); break; case ASN1_ITYPE_CHOICE: if (asn1_cb) { i = asn1_cb(ASN1_OP_FREE_PRE, pval, it, NULL); if (i == 2) return; } i = asn1_get_choice_selector(pval, it); if ((i >= 0) && (i < it->tcount)) { ASN1_VALUE **pchval; tt = it->templates + i; pchval = asn1_get_field_ptr(pval, tt); asn1_template_free(pchval, tt); } if (asn1_cb) asn1_cb(ASN1_OP_FREE_POST, pval, it, NULL); if (embed == 0) { OPENSSL_free(*pval); *pval = NULL; } break; case ASN1_ITYPE_EXTERN: ef = it->funcs; if (ef && ef->asn1_ex_free) ef->asn1_ex_free(pval, it); break; case ASN1_ITYPE_NDEF_SEQUENCE: case ASN1_ITYPE_SEQUENCE: if (asn1_do_lock(pval, -1, it) != 0) /* if error or ref-counter > 0 */ return; if (asn1_cb) { i = asn1_cb(ASN1_OP_FREE_PRE, pval, it, NULL); if (i == 2) return; } asn1_enc_free(pval, it); /* * If we free up as normal we will invalidate any ANY DEFINED BY * field and we won't be able to determine the type of the field it * defines. So free up in reverse order. */ tt = it->templates + it->tcount; for (i = 0; i < it->tcount; i++) { ASN1_VALUE **pseqval; tt--; seqtt = asn1_do_adb(pval, tt, 0); if (!seqtt) continue; pseqval = asn1_get_field_ptr(pval, seqtt); asn1_template_free(pseqval, seqtt); } if (asn1_cb) asn1_cb(ASN1_OP_FREE_POST, pval, it, NULL); if (embed == 0) { OPENSSL_free(*pval); *pval = NULL; } break; } } void asn1_template_free(ASN1_VALUE **pval, const ASN1_TEMPLATE *tt) { int embed = tt->flags & ASN1_TFLG_EMBED; ASN1_VALUE *tval; if (embed) { tval = (ASN1_VALUE *)pval; pval = &tval; } if (tt->flags & ASN1_TFLG_SK_MASK) { STACK_OF(ASN1_VALUE) *sk = (STACK_OF(ASN1_VALUE) *)*pval; int i; for (i = 0; i < sk_ASN1_VALUE_num(sk); i++) { ASN1_VALUE *vtmp = sk_ASN1_VALUE_value(sk, i); asn1_item_embed_free(&vtmp, ASN1_ITEM_ptr(tt->item), embed); } sk_ASN1_VALUE_free(sk); *pval = NULL; } else { asn1_item_embed_free(pval, ASN1_ITEM_ptr(tt->item), embed); } } void asn1_primitive_free(ASN1_VALUE **pval, const ASN1_ITEM *it, int embed) { int utype; /* Special case: if 'it' is a primitive with a free_func, use that. */ if (it) { const ASN1_PRIMITIVE_FUNCS *pf = it->funcs; if (embed) { if (pf && pf->prim_clear) { pf->prim_clear(pval, it); return; } } else if (pf && pf->prim_free) { pf->prim_free(pval, it); return; } } /* Special case: if 'it' is NULL, free contents of ASN1_TYPE */ if (!it) { ASN1_TYPE *typ = (ASN1_TYPE *)*pval; utype = typ->type; pval = &typ->value.asn1_value; if (!*pval) return; } else if (it->itype == ASN1_ITYPE_MSTRING) { utype = -1; if (!*pval) return; } else { utype = it->utype; if ((utype != V_ASN1_BOOLEAN) && !*pval) return; } switch (utype) { case V_ASN1_OBJECT: ASN1_OBJECT_free((ASN1_OBJECT *)*pval); break; case V_ASN1_BOOLEAN: if (it) *(ASN1_BOOLEAN *)pval = it->size; else *(ASN1_BOOLEAN *)pval = -1; return; case V_ASN1_NULL: break; case V_ASN1_ANY: asn1_primitive_free(pval, NULL, 0); OPENSSL_free(*pval); break; default: asn1_string_embed_free((ASN1_STRING *)*pval, embed); break; } *pval = NULL; }
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