asn1-parser: Fix CHOICE parsing
Fixes: CVE-2017-9023
This commit is contained in:
@@ -1,8 +1,7 @@
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/*
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* Copyright (C) 2006 Martin Will
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* Copyright (C) 2000-2008 Andreas Steffen
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*
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* Hochschule fuer Technik Rapperswil
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* Copyright (C) 2000-2017 Andreas Steffen
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* HSR Hochschule fuer Technik Rapperswil
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*
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* This program is free software; you can redistribute it and/or modify it
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* under the terms of the GNU General Public License as published by the
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@@ -76,12 +75,18 @@ struct private_asn1_parser_t {
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* Current parsing pointer for each level
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*/
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chunk_t blobs[ASN1_MAX_LEVEL + 2];
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/**
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* Parsing a CHOICE on the current level ?
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*/
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bool choice[ASN1_MAX_LEVEL + 2];
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};
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METHOD(asn1_parser_t, iterate, bool,
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private_asn1_parser_t *this, int *objectID, chunk_t *object)
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{
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chunk_t *blob, *blob1;
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chunk_t *blob, *blob1, blob_ori;
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u_char *start_ptr;
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u_int level;
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asn1Object_t obj;
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@@ -97,7 +102,7 @@ METHOD(asn1_parser_t, iterate, bool,
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return FALSE;
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}
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if (obj.flags & ASN1_END) /* end of loop or option found */
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if (obj.flags & ASN1_END) /* end of loop or choice or option found */
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{
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if (this->loopAddr[obj.level] && this->blobs[obj.level+1].len > 0)
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{
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@@ -106,13 +111,42 @@ METHOD(asn1_parser_t, iterate, bool,
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}
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else
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{
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this->loopAddr[obj.level] = 0; /* exit loop or option*/
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this->loopAddr[obj.level] = 0; /* exit loop */
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if (obj.flags & ASN1_CHOICE) /* end of choices */
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{
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if (this->choice[obj.level+1])
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{
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DBG1(DBG_ASN, "L%d - %s: incorrect choice encoding",
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this->level0 + obj.level, obj.name);
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this->success = FALSE;
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goto end;
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}
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}
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if (obj.flags & ASN1_CH) /* end of choice */
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{
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/* parsed a valid choice */
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this->choice[obj.level] = FALSE;
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/* advance to end of choices */
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do
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{
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this->line++;
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}
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while (!((this->objects[this->line].flags & ASN1_END) &&
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(this->objects[this->line].flags & ASN1_CHOICE) &&
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(this->objects[this->line].level == obj.level-1)));
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this->line--;
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}
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goto end;
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}
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}
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level = this->level0 + obj.level;
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blob = this->blobs + obj.level;
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blob_ori = *blob;
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blob1 = blob + 1;
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start_ptr = blob->ptr;
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@@ -129,7 +163,6 @@ METHOD(asn1_parser_t, iterate, bool,
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}
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/* handle ASN.1 options */
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if ((obj.flags & ASN1_OPT)
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&& (blob->len == 0 || *start_ptr != obj.type))
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{
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@@ -144,7 +177,6 @@ METHOD(asn1_parser_t, iterate, bool,
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}
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/* an ASN.1 object must possess at least a tag and length field */
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if (blob->len < 2)
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{
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DBG1(DBG_ASN, "L%d - %s: ASN.1 object smaller than 2 octets",
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@@ -167,8 +199,16 @@ METHOD(asn1_parser_t, iterate, bool,
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blob->ptr += blob1->len;
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blob->len -= blob1->len;
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/* return raw ASN.1 object without prior type checking */
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/* handle ASN.1 choice without explicit context encoding */
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if ((obj.flags & ASN1_CHOICE) && obj.type == ASN1_EOC)
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{
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DBG2(DBG_ASN, "L%d - %s:", level, obj.name);
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this->choice[obj.level+1] = TRUE;
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*blob1 = blob_ori;
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goto end;
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}
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/* return raw ASN.1 object without prior type checking */
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if (obj.flags & ASN1_RAW)
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{
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DBG2(DBG_ASN, "L%d - %s:", level, obj.name);
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@@ -209,6 +249,18 @@ METHOD(asn1_parser_t, iterate, bool,
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}
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}
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/* In case of a "CHOICE" start to scan for exactly one valid choice */
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if (obj.flags & ASN1_CHOICE)
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{
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if (blob1->len == 0)
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{
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DBG1(DBG_ASN, "L%d - %s: contains no choice", level, obj.name);
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this->success = FALSE;
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goto end;
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}
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this->choice[obj.level+1] = TRUE;
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}
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if (obj.flags & ASN1_OBJ)
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{
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object->ptr = start_ptr;
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@@ -1,8 +1,7 @@
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/*
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* Copyright (C) 2006 Martin Will
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* Copyright (C) 2000-2008 Andreas Steffen
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*
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* Hochschule fuer Technik Rapperswil
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* Copyright (C) 2000-2017 Andreas Steffen
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* HSR Hochschule fuer Technik Rapperswil
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*
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* This program is free software; you can redistribute it and/or modify it
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* under the terms of the GNU General Public License as published by the
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@@ -32,15 +31,17 @@
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/**
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* Definition of ASN.1 flags
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*/
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#define ASN1_NONE 0x00
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#define ASN1_DEF 0x01
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#define ASN1_OPT 0x02
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#define ASN1_LOOP 0x04
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#define ASN1_END 0x08
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#define ASN1_OBJ 0x10
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#define ASN1_BODY 0x20
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#define ASN1_RAW 0x40
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#define ASN1_EXIT 0x80
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#define ASN1_NONE 0x0000
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#define ASN1_DEF 0x0001
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#define ASN1_OPT 0x0002
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#define ASN1_LOOP 0x0004
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#define ASN1_CHOICE 0x0008
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#define ASN1_CH 0x0010
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#define ASN1_END 0x0020
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#define ASN1_OBJ 0x0040
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#define ASN1_BODY 0x0080
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#define ASN1_RAW 0x0100
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#define ASN1_EXIT 0x0200
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typedef struct asn1Object_t asn1Object_t;
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@@ -51,7 +52,7 @@ struct asn1Object_t{
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u_int level;
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const u_char *name;
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asn1_t type;
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u_char flags;
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uint16_t flags;
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};
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typedef struct asn1_parser_t asn1_parser_t;
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@@ -2,10 +2,10 @@
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* Copyright (C) 2000 Andreas Hess, Patric Lichtsteiner, Roger Wegmann
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* Copyright (C) 2001 Marco Bertossa, Andreas Schleiss
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* Copyright (C) 2002 Mario Strasser
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* Copyright (C) 2000-2006 Andreas Steffen
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* Copyright (C) 2000-2017 Andreas Steffen
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* Copyright (C) 2006-2009 Martin Willi
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* Copyright (C) 2008 Tobias Brunner
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* Hochschule fuer Technik Rapperswil
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* HSR Hochschule fuer Technik Rapperswil
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*
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* This program is free software; you can redistribute it and/or modify it
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* under the terms of the GNU General Public License as published by the
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@@ -812,20 +812,20 @@ static bool parse_extendedKeyUsage(chunk_t blob, int level0,
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* ASN.1 definition of crlDistributionPoints
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*/
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static const asn1Object_t crlDistributionPointsObjects[] = {
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{ 0, "crlDistributionPoints", ASN1_SEQUENCE, ASN1_LOOP }, /* 0 */
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{ 1, "DistributionPoint", ASN1_SEQUENCE, ASN1_NONE }, /* 1 */
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{ 2, "distributionPoint", ASN1_CONTEXT_C_0, ASN1_OPT|ASN1_LOOP }, /* 2 */
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{ 3, "fullName", ASN1_CONTEXT_C_0, ASN1_OPT|ASN1_OBJ }, /* 3 */
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{ 3, "end choice", ASN1_EOC, ASN1_END }, /* 4 */
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{ 3, "nameRelToCRLIssuer",ASN1_CONTEXT_C_1, ASN1_OPT|ASN1_BODY }, /* 5 */
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{ 3, "end choice", ASN1_EOC, ASN1_END }, /* 6 */
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{ 2, "end opt", ASN1_EOC, ASN1_END }, /* 7 */
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{ 2, "reasons", ASN1_CONTEXT_C_1, ASN1_OPT|ASN1_BODY }, /* 8 */
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{ 2, "end opt", ASN1_EOC, ASN1_END }, /* 9 */
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{ 2, "crlIssuer", ASN1_CONTEXT_C_2, ASN1_OPT|ASN1_OBJ }, /* 10 */
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{ 2, "end opt", ASN1_EOC, ASN1_END }, /* 11 */
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{ 0, "end loop", ASN1_EOC, ASN1_END }, /* 12 */
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{ 0, "exit", ASN1_EOC, ASN1_EXIT }
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{ 0, "crlDistributionPoints", ASN1_SEQUENCE, ASN1_LOOP }, /* 0 */
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{ 1, "DistributionPoint", ASN1_SEQUENCE, ASN1_NONE }, /* 1 */
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{ 2, "distributionPoint", ASN1_CONTEXT_C_0, ASN1_OPT|ASN1_CHOICE }, /* 2 */
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{ 3, "fullName", ASN1_CONTEXT_C_0, ASN1_OPT|ASN1_OBJ }, /* 3 */
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{ 3, "end choice", ASN1_EOC, ASN1_END|ASN1_CH }, /* 4 */
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{ 3, "nameRelToCRLIssuer",ASN1_CONTEXT_C_1, ASN1_OPT|ASN1_BODY }, /* 5 */
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{ 3, "end choice", ASN1_EOC, ASN1_END|ASN1_CH }, /* 6 */
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{ 2, "end opt/choices", ASN1_EOC, ASN1_END|ASN1_CHOICE }, /* 7 */
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{ 2, "reasons", ASN1_CONTEXT_C_1, ASN1_OPT|ASN1_BODY }, /* 8 */
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{ 2, "end opt", ASN1_EOC, ASN1_END }, /* 9 */
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{ 2, "crlIssuer", ASN1_CONTEXT_C_2, ASN1_OPT|ASN1_OBJ }, /* 10 */
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{ 2, "end opt", ASN1_EOC, ASN1_END }, /* 11 */
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{ 0, "end loop", ASN1_EOC, ASN1_END }, /* 12 */
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{ 0, "exit", ASN1_EOC, ASN1_EXIT }
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};
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#define CRL_DIST_POINTS 1
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#define CRL_DIST_POINTS_FULLNAME 3
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@@ -997,25 +997,27 @@ end:
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* ASN.1 definition of a certificatePolicies extension
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*/
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static const asn1Object_t certificatePoliciesObject[] = {
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{ 0, "certificatePolicies", ASN1_SEQUENCE, ASN1_LOOP }, /* 0 */
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{ 1, "policyInformation", ASN1_SEQUENCE, ASN1_NONE }, /* 1 */
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{ 2, "policyId", ASN1_OID, ASN1_BODY }, /* 2 */
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{ 2, "qualifiers", ASN1_SEQUENCE, ASN1_OPT|ASN1_LOOP }, /* 3 */
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{ 3, "qualifierInfo", ASN1_SEQUENCE, ASN1_NONE }, /* 4 */
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{ 4, "qualifierId", ASN1_OID, ASN1_BODY }, /* 5 */
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{ 4, "cPSuri", ASN1_IA5STRING, ASN1_OPT|ASN1_BODY }, /* 6 */
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{ 4, "end choice", ASN1_EOC, ASN1_END }, /* 7 */
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{ 4, "userNotice", ASN1_SEQUENCE, ASN1_OPT|ASN1_BODY }, /* 8 */
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{ 5, "explicitText", ASN1_EOC, ASN1_RAW }, /* 9 */
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{ 4, "end choice", ASN1_EOC, ASN1_END }, /* 10 */
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{ 2, "end opt/loop", ASN1_EOC, ASN1_END }, /* 12 */
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{ 0, "end loop", ASN1_EOC, ASN1_END }, /* 13 */
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{ 0, "exit", ASN1_EOC, ASN1_EXIT }
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{ 0, "certificatePolicies", ASN1_SEQUENCE, ASN1_LOOP }, /* 0 */
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{ 1, "policyInformation", ASN1_SEQUENCE, ASN1_NONE }, /* 1 */
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{ 2, "policyId", ASN1_OID, ASN1_BODY }, /* 2 */
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{ 2, "qualifiers", ASN1_SEQUENCE, ASN1_OPT|ASN1_LOOP }, /* 3 */
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{ 3, "qualifierInfo", ASN1_SEQUENCE, ASN1_NONE }, /* 4 */
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{ 4, "qualifierId", ASN1_OID, ASN1_BODY }, /* 5 */
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{ 4, "qualifier", ASN1_EOC, ASN1_CHOICE }, /* 6 */
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{ 5, "cPSuri", ASN1_IA5STRING, ASN1_OPT|ASN1_BODY }, /* 7 */
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{ 5, "end choice", ASN1_EOC, ASN1_END|ASN1_CH }, /* 8 */
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{ 5, "userNotice", ASN1_SEQUENCE, ASN1_OPT|ASN1_BODY }, /* 9 */
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{ 6, "explicitText", ASN1_EOC, ASN1_RAW }, /* 10 */
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{ 5, "end choice", ASN1_EOC, ASN1_END|ASN1_CH }, /* 11 */
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{ 4, "end choices", ASN1_EOC, ASN1_END|ASN1_CHOICE }, /* 12 */
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{ 2, "end opt/loop", ASN1_EOC, ASN1_END }, /* 13 */
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{ 0, "end loop", ASN1_EOC, ASN1_END }, /* 14 */
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{ 0, "exit", ASN1_EOC, ASN1_EXIT }
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};
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#define CERT_POLICY_ID 2
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#define CERT_POLICY_QUALIFIER_ID 5
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#define CERT_POLICY_CPS_URI 6
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#define CERT_POLICY_EXPLICIT_TEXT 9
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#define CERT_POLICY_ID 2
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#define CERT_POLICY_QUALIFIER_ID 5
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#define CERT_POLICY_CPS_URI 7
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#define CERT_POLICY_EXPLICIT_TEXT 10
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/**
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* Parse certificatePolicies
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@@ -1180,27 +1182,31 @@ static bool parse_policyConstraints(chunk_t blob, int level0,
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* ASN.1 definition of ipAddrBlocks according to RFC 3779
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*/
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static const asn1Object_t ipAddrBlocksObjects[] = {
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{ 0, "ipAddrBlocks", ASN1_SEQUENCE, ASN1_LOOP }, /* 0 */
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{ 1, "ipAddressFamily", ASN1_SEQUENCE, ASN1_NONE }, /* 1 */
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{ 2, "addressFamily", ASN1_OCTET_STRING, ASN1_BODY }, /* 2 */
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{ 2, "inherit", ASN1_NULL, ASN1_OPT|ASN1_NONE }, /* 3 */
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{ 2, "end choice", ASN1_EOC, ASN1_END }, /* 4 */
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{ 2, "addressesOrRanges", ASN1_SEQUENCE, ASN1_OPT|ASN1_LOOP }, /* 5 */
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{ 3, "addressPrefix", ASN1_BIT_STRING, ASN1_OPT|ASN1_BODY }, /* 6 */
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{ 3, "end choice", ASN1_EOC, ASN1_END }, /* 7 */
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{ 3, "addressRange", ASN1_SEQUENCE, ASN1_OPT|ASN1_NONE }, /* 8 */
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{ 4, "min", ASN1_BIT_STRING, ASN1_BODY }, /* 9 */
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{ 4, "max", ASN1_BIT_STRING, ASN1_BODY }, /* 10 */
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{ 3, "end choice", ASN1_EOC, ASN1_END }, /* 11 */
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{ 2, "end opt/loop", ASN1_EOC, ASN1_END }, /* 12 */
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{ 0, "end loop", ASN1_EOC, ASN1_END }, /* 13 */
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{ 0, "exit", ASN1_EOC, ASN1_EXIT }
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{ 0, "ipAddrBlocks", ASN1_SEQUENCE, ASN1_LOOP }, /* 0 */
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{ 1, "ipAddressFamily", ASN1_SEQUENCE, ASN1_NONE }, /* 1 */
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{ 2, "addressFamily", ASN1_OCTET_STRING, ASN1_BODY }, /* 2 */
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{ 2, "ipAddressChoice", ASN1_EOC, ASN1_CHOICE }, /* 3 */
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{ 3, "inherit", ASN1_NULL, ASN1_OPT }, /* 4 */
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{ 3, "end choice", ASN1_EOC, ASN1_END|ASN1_CH }, /* 5 */
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{ 3, "addressesOrRanges", ASN1_SEQUENCE, ASN1_OPT|ASN1_LOOP }, /* 6 */
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{ 4, "addressOrRange", ASN1_EOC, ASN1_CHOICE }, /* 7 */
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{ 5, "addressPrefix", ASN1_BIT_STRING, ASN1_OPT|ASN1_BODY }, /* 8 */
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{ 5, "end choice", ASN1_EOC, ASN1_END|ASN1_CH }, /* 9 */
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{ 5, "addressRange", ASN1_SEQUENCE, ASN1_OPT }, /* 10 */
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{ 6, "min", ASN1_BIT_STRING, ASN1_BODY }, /* 11 */
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{ 6, "max", ASN1_BIT_STRING, ASN1_BODY }, /* 12 */
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{ 5, "end choice", ASN1_EOC, ASN1_END|ASN1_CH }, /* 13 */
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{ 4, "end choices", ASN1_EOC, ASN1_END|ASN1_CHOICE }, /* 14 */
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{ 3, "end loop/choice", ASN1_EOC, ASN1_END|ASN1_CH }, /* 15 */
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{ 2, "end choices", ASN1_EOC, ASN1_END|ASN1_CHOICE }, /* 16 */
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{ 0, "end loop", ASN1_EOC, ASN1_END }, /* 17 */
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{ 0, "exit", ASN1_EOC, ASN1_EXIT }
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};
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#define IP_ADDR_BLOCKS_FAMILY 2
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#define IP_ADDR_BLOCKS_INHERIT 3
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#define IP_ADDR_BLOCKS_PREFIX 6
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#define IP_ADDR_BLOCKS_MIN 9
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#define IP_ADDR_BLOCKS_MAX 10
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#define IP_ADDR_BLOCKS_INHERIT 4
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#define IP_ADDR_BLOCKS_PREFIX 8
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#define IP_ADDR_BLOCKS_MIN 11
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#define IP_ADDR_BLOCKS_MAX 12
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static bool check_address_object(ts_type_t ts_type, chunk_t object)
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{
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