xmlparse.c 207 KB

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  1. /* Copyright (c) 1998, 1999, 2000 Thai Open Source Software Center Ltd
  2. See the file COPYING for copying permission.
  3. cd4063469a95eab9a93001afb109e3dee122cdda4635bbec36257fc01c327348 (2.2.2+)
  4. */
  5. #if !defined(_GNU_SOURCE)
  6. # define _GNU_SOURCE 1 /* syscall prototype */
  7. #endif
  8. #include <stddef.h>
  9. #include <string.h> /* memset(), memcpy() */
  10. #include <assert.h>
  11. #include <limits.h> /* UINT_MAX */
  12. #include <stdio.h> /* fprintf */
  13. #include <stdlib.h> /* getenv */
  14. #ifdef _WIN32
  15. #define getpid GetCurrentProcessId
  16. #else
  17. #include <sys/time.h> /* gettimeofday() */
  18. #include <sys/types.h> /* getpid() */
  19. #include <unistd.h> /* getpid() */
  20. #endif
  21. #define XML_BUILDING_EXPAT 1
  22. #ifdef _WIN32
  23. #include "winconfig.h"
  24. #elif defined(HAVE_EXPAT_CONFIG_H)
  25. #include <expat_config.h>
  26. #endif /* ndef _WIN32 */
  27. #include "ascii.h"
  28. #include "expat.h"
  29. #include "siphash.h"
  30. #if defined(HAVE_GETRANDOM) || defined(HAVE_SYSCALL_GETRANDOM)
  31. # include <errno.h>
  32. # if defined(HAVE_GETRANDOM)
  33. # include <sys/random.h> /* getrandom */
  34. # else
  35. # include <unistd.h> /* syscall */
  36. # include <sys/syscall.h> /* SYS_getrandom */
  37. # endif
  38. #endif /* defined(HAVE_GETRANDOM) || defined(HAVE_SYSCALL_GETRANDOM) */
  39. #if defined(HAVE_ARC4RANDOM_BUF) && defined(HAVE_LIBBSD)
  40. # include <bsd/stdlib.h>
  41. #endif
  42. #if !defined(HAVE_GETRANDOM) && !defined(HAVE_SYSCALL_GETRANDOM) \
  43. && !defined(HAVE_ARC4RANDOM_BUF) && !defined(_WIN32) \
  44. && !defined(XML_POOR_ENTROPY)
  45. # error \
  46. You do not have support for any sources of high quality entropy \
  47. enabled. For end user security, that is probably not what you want. \
  48. \
  49. Your options include: \
  50. * Linux + glibc >=2.25 (getrandom): HAVE_GETRANDOM, \
  51. * Linux + glibc <2.25 (syscall SYS_getrandom): HAVE_SYSCALL_GETRANDOM, \
  52. * BSD / macOS (arc4random_buf): HAVE_ARC4RANDOM_BUF, \
  53. * libbsd (arc4random_buf): HAVE_ARC4RANDOM_BUF + HAVE_LIBBSD, \
  54. * Windows (RtlGenRandom): _WIN32. \
  55. \
  56. If insist on not using any of these, bypass this error by defining \
  57. XML_POOR_ENTROPY; you have been warned. \
  58. \
  59. For CMake, one way to pass the define is: \
  60. cmake -DCMAKE_C_FLAGS="-pipe -O2 -DHAVE_SYSCALL_GETRANDOM" . \
  61. \
  62. If you have reasons to patch this detection code away or need changes \
  63. to the build system, please open a bug. Thank you!
  64. #endif
  65. #ifdef XML_UNICODE
  66. #define XML_ENCODE_MAX XML_UTF16_ENCODE_MAX
  67. #define XmlConvert XmlUtf16Convert
  68. #define XmlGetInternalEncoding XmlGetUtf16InternalEncoding
  69. #define XmlGetInternalEncodingNS XmlGetUtf16InternalEncodingNS
  70. #define XmlEncode XmlUtf16Encode
  71. /* Using pointer subtraction to convert to integer type. */
  72. #define MUST_CONVERT(enc, s) (!(enc)->isUtf16 || (((char *)(s) - (char *)NULL) & 1))
  73. typedef unsigned short ICHAR;
  74. #else
  75. #define XML_ENCODE_MAX XML_UTF8_ENCODE_MAX
  76. #define XmlConvert XmlUtf8Convert
  77. #define XmlGetInternalEncoding XmlGetUtf8InternalEncoding
  78. #define XmlGetInternalEncodingNS XmlGetUtf8InternalEncodingNS
  79. #define XmlEncode XmlUtf8Encode
  80. #define MUST_CONVERT(enc, s) (!(enc)->isUtf8)
  81. typedef char ICHAR;
  82. #endif
  83. #ifndef XML_NS
  84. #define XmlInitEncodingNS XmlInitEncoding
  85. #define XmlInitUnknownEncodingNS XmlInitUnknownEncoding
  86. #undef XmlGetInternalEncodingNS
  87. #define XmlGetInternalEncodingNS XmlGetInternalEncoding
  88. #define XmlParseXmlDeclNS XmlParseXmlDecl
  89. #endif
  90. #ifdef XML_UNICODE
  91. #ifdef XML_UNICODE_WCHAR_T
  92. #define XML_T(x) (const wchar_t)x
  93. #define XML_L(x) L ## x
  94. #else
  95. #define XML_T(x) (const unsigned short)x
  96. #define XML_L(x) x
  97. #endif
  98. #else
  99. #define XML_T(x) x
  100. #define XML_L(x) x
  101. #endif
  102. /* Round up n to be a multiple of sz, where sz is a power of 2. */
  103. #define ROUND_UP(n, sz) (((n) + ((sz) - 1)) & ~((sz) - 1))
  104. /* Handle the case where memmove() doesn't exist. */
  105. #ifndef HAVE_MEMMOVE
  106. #ifdef HAVE_BCOPY
  107. #define memmove(d,s,l) bcopy((s),(d),(l))
  108. #else
  109. #error memmove does not exist on this platform, nor is a substitute available
  110. #endif /* HAVE_BCOPY */
  111. #endif /* HAVE_MEMMOVE */
  112. #include "internal.h"
  113. #include "xmltok.h"
  114. #include "xmlrole.h"
  115. typedef const XML_Char *KEY;
  116. typedef struct {
  117. KEY name;
  118. } NAMED;
  119. typedef struct {
  120. NAMED **v;
  121. unsigned char power;
  122. size_t size;
  123. size_t used;
  124. const XML_Memory_Handling_Suite *mem;
  125. } HASH_TABLE;
  126. static size_t
  127. keylen(KEY s);
  128. static void
  129. copy_salt_to_sipkey(XML_Parser parser, struct sipkey * key);
  130. /* For probing (after a collision) we need a step size relative prime
  131. to the hash table size, which is a power of 2. We use double-hashing,
  132. since we can calculate a second hash value cheaply by taking those bits
  133. of the first hash value that were discarded (masked out) when the table
  134. index was calculated: index = hash & mask, where mask = table->size - 1.
  135. We limit the maximum step size to table->size / 4 (mask >> 2) and make
  136. it odd, since odd numbers are always relative prime to a power of 2.
  137. */
  138. #define SECOND_HASH(hash, mask, power) \
  139. ((((hash) & ~(mask)) >> ((power) - 1)) & ((mask) >> 2))
  140. #define PROBE_STEP(hash, mask, power) \
  141. ((unsigned char)((SECOND_HASH(hash, mask, power)) | 1))
  142. typedef struct {
  143. NAMED **p;
  144. NAMED **end;
  145. } HASH_TABLE_ITER;
  146. #define INIT_TAG_BUF_SIZE 32 /* must be a multiple of sizeof(XML_Char) */
  147. #define INIT_DATA_BUF_SIZE 1024
  148. #define INIT_ATTS_SIZE 16
  149. #define INIT_ATTS_VERSION 0xFFFFFFFF
  150. #define INIT_BLOCK_SIZE 1024
  151. #define INIT_BUFFER_SIZE 1024
  152. #define EXPAND_SPARE 24
  153. typedef struct binding {
  154. struct prefix *prefix;
  155. struct binding *nextTagBinding;
  156. struct binding *prevPrefixBinding;
  157. const struct attribute_id *attId;
  158. XML_Char *uri;
  159. int uriLen;
  160. int uriAlloc;
  161. } BINDING;
  162. typedef struct prefix {
  163. const XML_Char *name;
  164. BINDING *binding;
  165. } PREFIX;
  166. typedef struct {
  167. const XML_Char *str;
  168. const XML_Char *localPart;
  169. const XML_Char *prefix;
  170. int strLen;
  171. int uriLen;
  172. int prefixLen;
  173. } TAG_NAME;
  174. /* TAG represents an open element.
  175. The name of the element is stored in both the document and API
  176. encodings. The memory buffer 'buf' is a separately-allocated
  177. memory area which stores the name. During the XML_Parse()/
  178. XMLParseBuffer() when the element is open, the memory for the 'raw'
  179. version of the name (in the document encoding) is shared with the
  180. document buffer. If the element is open across calls to
  181. XML_Parse()/XML_ParseBuffer(), the buffer is re-allocated to
  182. contain the 'raw' name as well.
  183. A parser re-uses these structures, maintaining a list of allocated
  184. TAG objects in a free list.
  185. */
  186. typedef struct tag {
  187. struct tag *parent; /* parent of this element */
  188. const char *rawName; /* tagName in the original encoding */
  189. int rawNameLength;
  190. TAG_NAME name; /* tagName in the API encoding */
  191. char *buf; /* buffer for name components */
  192. char *bufEnd; /* end of the buffer */
  193. BINDING *bindings;
  194. } TAG;
  195. typedef struct {
  196. const XML_Char *name;
  197. const XML_Char *textPtr;
  198. int textLen; /* length in XML_Chars */
  199. int processed; /* # of processed bytes - when suspended */
  200. const XML_Char *systemId;
  201. const XML_Char *base;
  202. const XML_Char *publicId;
  203. const XML_Char *notation;
  204. XML_Bool open;
  205. XML_Bool is_param;
  206. XML_Bool is_internal; /* true if declared in internal subset outside PE */
  207. } ENTITY;
  208. typedef struct {
  209. enum XML_Content_Type type;
  210. enum XML_Content_Quant quant;
  211. const XML_Char * name;
  212. int firstchild;
  213. int lastchild;
  214. int childcnt;
  215. int nextsib;
  216. } CONTENT_SCAFFOLD;
  217. #define INIT_SCAFFOLD_ELEMENTS 32
  218. typedef struct block {
  219. struct block *next;
  220. int size;
  221. XML_Char s[1];
  222. } BLOCK;
  223. typedef struct {
  224. BLOCK *blocks;
  225. BLOCK *freeBlocks;
  226. const XML_Char *end;
  227. XML_Char *ptr;
  228. XML_Char *start;
  229. const XML_Memory_Handling_Suite *mem;
  230. } STRING_POOL;
  231. /* The XML_Char before the name is used to determine whether
  232. an attribute has been specified. */
  233. typedef struct attribute_id {
  234. XML_Char *name;
  235. PREFIX *prefix;
  236. XML_Bool maybeTokenized;
  237. XML_Bool xmlns;
  238. } ATTRIBUTE_ID;
  239. typedef struct {
  240. const ATTRIBUTE_ID *id;
  241. XML_Bool isCdata;
  242. const XML_Char *value;
  243. } DEFAULT_ATTRIBUTE;
  244. typedef struct {
  245. unsigned long version;
  246. unsigned long hash;
  247. const XML_Char *uriName;
  248. } NS_ATT;
  249. typedef struct {
  250. const XML_Char *name;
  251. PREFIX *prefix;
  252. const ATTRIBUTE_ID *idAtt;
  253. int nDefaultAtts;
  254. int allocDefaultAtts;
  255. DEFAULT_ATTRIBUTE *defaultAtts;
  256. } ELEMENT_TYPE;
  257. typedef struct {
  258. HASH_TABLE generalEntities;
  259. HASH_TABLE elementTypes;
  260. HASH_TABLE attributeIds;
  261. HASH_TABLE prefixes;
  262. STRING_POOL pool;
  263. STRING_POOL entityValuePool;
  264. /* false once a parameter entity reference has been skipped */
  265. XML_Bool keepProcessing;
  266. /* true once an internal or external PE reference has been encountered;
  267. this includes the reference to an external subset */
  268. XML_Bool hasParamEntityRefs;
  269. XML_Bool standalone;
  270. #ifdef XML_DTD
  271. /* indicates if external PE has been read */
  272. XML_Bool paramEntityRead;
  273. HASH_TABLE paramEntities;
  274. #endif /* XML_DTD */
  275. PREFIX defaultPrefix;
  276. /* === scaffolding for building content model === */
  277. XML_Bool in_eldecl;
  278. CONTENT_SCAFFOLD *scaffold;
  279. unsigned contentStringLen;
  280. unsigned scaffSize;
  281. unsigned scaffCount;
  282. int scaffLevel;
  283. int *scaffIndex;
  284. } DTD;
  285. typedef struct open_internal_entity {
  286. const char *internalEventPtr;
  287. const char *internalEventEndPtr;
  288. struct open_internal_entity *next;
  289. ENTITY *entity;
  290. int startTagLevel;
  291. XML_Bool betweenDecl; /* WFC: PE Between Declarations */
  292. } OPEN_INTERNAL_ENTITY;
  293. typedef enum XML_Error PTRCALL Processor(XML_Parser parser,
  294. const char *start,
  295. const char *end,
  296. const char **endPtr);
  297. static Processor prologProcessor;
  298. static Processor prologInitProcessor;
  299. static Processor contentProcessor;
  300. static Processor cdataSectionProcessor;
  301. #ifdef XML_DTD
  302. static Processor ignoreSectionProcessor;
  303. static Processor externalParEntProcessor;
  304. static Processor externalParEntInitProcessor;
  305. static Processor entityValueProcessor;
  306. static Processor entityValueInitProcessor;
  307. #endif /* XML_DTD */
  308. static Processor epilogProcessor;
  309. static Processor errorProcessor;
  310. static Processor externalEntityInitProcessor;
  311. static Processor externalEntityInitProcessor2;
  312. static Processor externalEntityInitProcessor3;
  313. static Processor externalEntityContentProcessor;
  314. static Processor internalEntityProcessor;
  315. static enum XML_Error
  316. handleUnknownEncoding(XML_Parser parser, const XML_Char *encodingName);
  317. static enum XML_Error
  318. processXmlDecl(XML_Parser parser, int isGeneralTextEntity,
  319. const char *s, const char *next);
  320. static enum XML_Error
  321. initializeEncoding(XML_Parser parser);
  322. static enum XML_Error
  323. doProlog(XML_Parser parser, const ENCODING *enc, const char *s,
  324. const char *end, int tok, const char *next, const char **nextPtr,
  325. XML_Bool haveMore);
  326. static enum XML_Error
  327. processInternalEntity(XML_Parser parser, ENTITY *entity,
  328. XML_Bool betweenDecl);
  329. static enum XML_Error
  330. doContent(XML_Parser parser, int startTagLevel, const ENCODING *enc,
  331. const char *start, const char *end, const char **endPtr,
  332. XML_Bool haveMore);
  333. static enum XML_Error
  334. doCdataSection(XML_Parser parser, const ENCODING *, const char **startPtr,
  335. const char *end, const char **nextPtr, XML_Bool haveMore);
  336. #ifdef XML_DTD
  337. static enum XML_Error
  338. doIgnoreSection(XML_Parser parser, const ENCODING *, const char **startPtr,
  339. const char *end, const char **nextPtr, XML_Bool haveMore);
  340. #endif /* XML_DTD */
  341. static void
  342. freeBindings(XML_Parser parser, BINDING *bindings);
  343. static enum XML_Error
  344. storeAtts(XML_Parser parser, const ENCODING *, const char *s,
  345. TAG_NAME *tagNamePtr, BINDING **bindingsPtr);
  346. static enum XML_Error
  347. addBinding(XML_Parser parser, PREFIX *prefix, const ATTRIBUTE_ID *attId,
  348. const XML_Char *uri, BINDING **bindingsPtr);
  349. static int
  350. defineAttribute(ELEMENT_TYPE *type, ATTRIBUTE_ID *, XML_Bool isCdata,
  351. XML_Bool isId, const XML_Char *dfltValue, XML_Parser parser);
  352. static enum XML_Error
  353. storeAttributeValue(XML_Parser parser, const ENCODING *, XML_Bool isCdata,
  354. const char *, const char *, STRING_POOL *);
  355. static enum XML_Error
  356. appendAttributeValue(XML_Parser parser, const ENCODING *, XML_Bool isCdata,
  357. const char *, const char *, STRING_POOL *);
  358. static ATTRIBUTE_ID *
  359. getAttributeId(XML_Parser parser, const ENCODING *enc, const char *start,
  360. const char *end);
  361. static int
  362. setElementTypePrefix(XML_Parser parser, ELEMENT_TYPE *);
  363. static enum XML_Error
  364. storeEntityValue(XML_Parser parser, const ENCODING *enc, const char *start,
  365. const char *end);
  366. static int
  367. reportProcessingInstruction(XML_Parser parser, const ENCODING *enc,
  368. const char *start, const char *end);
  369. static int
  370. reportComment(XML_Parser parser, const ENCODING *enc, const char *start,
  371. const char *end);
  372. static void
  373. reportDefault(XML_Parser parser, const ENCODING *enc, const char *start,
  374. const char *end);
  375. static const XML_Char * getContext(XML_Parser parser);
  376. static XML_Bool
  377. setContext(XML_Parser parser, const XML_Char *context);
  378. static void FASTCALL normalizePublicId(XML_Char *s);
  379. static DTD * dtdCreate(const XML_Memory_Handling_Suite *ms);
  380. /* do not call if parentParser != NULL */
  381. static void dtdReset(DTD *p, const XML_Memory_Handling_Suite *ms);
  382. static void
  383. dtdDestroy(DTD *p, XML_Bool isDocEntity, const XML_Memory_Handling_Suite *ms);
  384. static int
  385. dtdCopy(XML_Parser oldParser,
  386. DTD *newDtd, const DTD *oldDtd, const XML_Memory_Handling_Suite *ms);
  387. static int
  388. copyEntityTable(XML_Parser oldParser,
  389. HASH_TABLE *, STRING_POOL *, const HASH_TABLE *);
  390. static NAMED *
  391. lookup(XML_Parser parser, HASH_TABLE *table, KEY name, size_t createSize);
  392. static void FASTCALL
  393. hashTableInit(HASH_TABLE *, const XML_Memory_Handling_Suite *ms);
  394. static void FASTCALL hashTableClear(HASH_TABLE *);
  395. static void FASTCALL hashTableDestroy(HASH_TABLE *);
  396. static void FASTCALL
  397. hashTableIterInit(HASH_TABLE_ITER *, const HASH_TABLE *);
  398. static NAMED * FASTCALL hashTableIterNext(HASH_TABLE_ITER *);
  399. static void FASTCALL
  400. poolInit(STRING_POOL *, const XML_Memory_Handling_Suite *ms);
  401. static void FASTCALL poolClear(STRING_POOL *);
  402. static void FASTCALL poolDestroy(STRING_POOL *);
  403. static XML_Char *
  404. poolAppend(STRING_POOL *pool, const ENCODING *enc,
  405. const char *ptr, const char *end);
  406. static XML_Char *
  407. poolStoreString(STRING_POOL *pool, const ENCODING *enc,
  408. const char *ptr, const char *end);
  409. static XML_Bool FASTCALL poolGrow(STRING_POOL *pool);
  410. static const XML_Char * FASTCALL
  411. poolCopyString(STRING_POOL *pool, const XML_Char *s);
  412. static const XML_Char *
  413. poolCopyStringN(STRING_POOL *pool, const XML_Char *s, int n);
  414. static const XML_Char * FASTCALL
  415. poolAppendString(STRING_POOL *pool, const XML_Char *s);
  416. static int FASTCALL nextScaffoldPart(XML_Parser parser);
  417. static XML_Content * build_model(XML_Parser parser);
  418. static ELEMENT_TYPE *
  419. getElementType(XML_Parser parser, const ENCODING *enc,
  420. const char *ptr, const char *end);
  421. static XML_Char *copyString(const XML_Char *s,
  422. const XML_Memory_Handling_Suite *memsuite);
  423. static unsigned long generate_hash_secret_salt(XML_Parser parser);
  424. static XML_Bool startParsing(XML_Parser parser);
  425. static XML_Parser
  426. parserCreate(const XML_Char *encodingName,
  427. const XML_Memory_Handling_Suite *memsuite,
  428. const XML_Char *nameSep,
  429. DTD *dtd);
  430. static void
  431. parserInit(XML_Parser parser, const XML_Char *encodingName);
  432. #define poolStart(pool) ((pool)->start)
  433. #define poolEnd(pool) ((pool)->ptr)
  434. #define poolLength(pool) ((pool)->ptr - (pool)->start)
  435. #define poolChop(pool) ((void)--(pool->ptr))
  436. #define poolLastChar(pool) (((pool)->ptr)[-1])
  437. #define poolDiscard(pool) ((pool)->ptr = (pool)->start)
  438. #define poolFinish(pool) ((pool)->start = (pool)->ptr)
  439. #define poolAppendChar(pool, c) \
  440. (((pool)->ptr == (pool)->end && !poolGrow(pool)) \
  441. ? 0 \
  442. : ((*((pool)->ptr)++ = c), 1))
  443. struct XML_ParserStruct {
  444. /* The first member must be userData so that the XML_GetUserData
  445. macro works. */
  446. void *m_userData;
  447. void *m_handlerArg;
  448. char *m_buffer;
  449. const XML_Memory_Handling_Suite m_mem;
  450. /* first character to be parsed */
  451. const char *m_bufferPtr;
  452. /* past last character to be parsed */
  453. char *m_bufferEnd;
  454. /* allocated end of buffer */
  455. const char *m_bufferLim;
  456. XML_Index m_parseEndByteIndex;
  457. const char *m_parseEndPtr;
  458. XML_Char *m_dataBuf;
  459. XML_Char *m_dataBufEnd;
  460. XML_StartElementHandler m_startElementHandler;
  461. XML_EndElementHandler m_endElementHandler;
  462. XML_CharacterDataHandler m_characterDataHandler;
  463. XML_ProcessingInstructionHandler m_processingInstructionHandler;
  464. XML_CommentHandler m_commentHandler;
  465. XML_StartCdataSectionHandler m_startCdataSectionHandler;
  466. XML_EndCdataSectionHandler m_endCdataSectionHandler;
  467. XML_DefaultHandler m_defaultHandler;
  468. XML_StartDoctypeDeclHandler m_startDoctypeDeclHandler;
  469. XML_EndDoctypeDeclHandler m_endDoctypeDeclHandler;
  470. XML_UnparsedEntityDeclHandler m_unparsedEntityDeclHandler;
  471. XML_NotationDeclHandler m_notationDeclHandler;
  472. XML_StartNamespaceDeclHandler m_startNamespaceDeclHandler;
  473. XML_EndNamespaceDeclHandler m_endNamespaceDeclHandler;
  474. XML_NotStandaloneHandler m_notStandaloneHandler;
  475. XML_ExternalEntityRefHandler m_externalEntityRefHandler;
  476. XML_Parser m_externalEntityRefHandlerArg;
  477. XML_SkippedEntityHandler m_skippedEntityHandler;
  478. XML_UnknownEncodingHandler m_unknownEncodingHandler;
  479. XML_ElementDeclHandler m_elementDeclHandler;
  480. XML_AttlistDeclHandler m_attlistDeclHandler;
  481. XML_EntityDeclHandler m_entityDeclHandler;
  482. XML_XmlDeclHandler m_xmlDeclHandler;
  483. const ENCODING *m_encoding;
  484. INIT_ENCODING m_initEncoding;
  485. const ENCODING *m_internalEncoding;
  486. const XML_Char *m_protocolEncodingName;
  487. XML_Bool m_ns;
  488. XML_Bool m_ns_triplets;
  489. void *m_unknownEncodingMem;
  490. void *m_unknownEncodingData;
  491. void *m_unknownEncodingHandlerData;
  492. void (XMLCALL *m_unknownEncodingRelease)(void *);
  493. PROLOG_STATE m_prologState;
  494. Processor *m_processor;
  495. enum XML_Error m_errorCode;
  496. const char *m_eventPtr;
  497. const char *m_eventEndPtr;
  498. const char *m_positionPtr;
  499. OPEN_INTERNAL_ENTITY *m_openInternalEntities;
  500. OPEN_INTERNAL_ENTITY *m_freeInternalEntities;
  501. XML_Bool m_defaultExpandInternalEntities;
  502. int m_tagLevel;
  503. ENTITY *m_declEntity;
  504. const XML_Char *m_doctypeName;
  505. const XML_Char *m_doctypeSysid;
  506. const XML_Char *m_doctypePubid;
  507. const XML_Char *m_declAttributeType;
  508. const XML_Char *m_declNotationName;
  509. const XML_Char *m_declNotationPublicId;
  510. ELEMENT_TYPE *m_declElementType;
  511. ATTRIBUTE_ID *m_declAttributeId;
  512. XML_Bool m_declAttributeIsCdata;
  513. XML_Bool m_declAttributeIsId;
  514. DTD *m_dtd;
  515. const XML_Char *m_curBase;
  516. TAG *m_tagStack;
  517. TAG *m_freeTagList;
  518. BINDING *m_inheritedBindings;
  519. BINDING *m_freeBindingList;
  520. int m_attsSize;
  521. int m_nSpecifiedAtts;
  522. int m_idAttIndex;
  523. ATTRIBUTE *m_atts;
  524. NS_ATT *m_nsAtts;
  525. unsigned long m_nsAttsVersion;
  526. unsigned char m_nsAttsPower;
  527. #ifdef XML_ATTR_INFO
  528. XML_AttrInfo *m_attInfo;
  529. #endif
  530. POSITION m_position;
  531. STRING_POOL m_tempPool;
  532. STRING_POOL m_temp2Pool;
  533. char *m_groupConnector;
  534. unsigned int m_groupSize;
  535. XML_Char m_namespaceSeparator;
  536. XML_Parser m_parentParser;
  537. XML_ParsingStatus m_parsingStatus;
  538. #ifdef XML_DTD
  539. XML_Bool m_isParamEntity;
  540. XML_Bool m_useForeignDTD;
  541. enum XML_ParamEntityParsing m_paramEntityParsing;
  542. #endif
  543. unsigned long m_hash_secret_salt;
  544. };
  545. #define MALLOC(s) (parser->m_mem.malloc_fcn((s)))
  546. #define REALLOC(p,s) (parser->m_mem.realloc_fcn((p),(s)))
  547. #define FREE(p) (parser->m_mem.free_fcn((p)))
  548. #define userData (parser->m_userData)
  549. #define handlerArg (parser->m_handlerArg)
  550. #define startElementHandler (parser->m_startElementHandler)
  551. #define endElementHandler (parser->m_endElementHandler)
  552. #define characterDataHandler (parser->m_characterDataHandler)
  553. #define processingInstructionHandler \
  554. (parser->m_processingInstructionHandler)
  555. #define commentHandler (parser->m_commentHandler)
  556. #define startCdataSectionHandler \
  557. (parser->m_startCdataSectionHandler)
  558. #define endCdataSectionHandler (parser->m_endCdataSectionHandler)
  559. #define defaultHandler (parser->m_defaultHandler)
  560. #define startDoctypeDeclHandler (parser->m_startDoctypeDeclHandler)
  561. #define endDoctypeDeclHandler (parser->m_endDoctypeDeclHandler)
  562. #define unparsedEntityDeclHandler \
  563. (parser->m_unparsedEntityDeclHandler)
  564. #define notationDeclHandler (parser->m_notationDeclHandler)
  565. #define startNamespaceDeclHandler \
  566. (parser->m_startNamespaceDeclHandler)
  567. #define endNamespaceDeclHandler (parser->m_endNamespaceDeclHandler)
  568. #define notStandaloneHandler (parser->m_notStandaloneHandler)
  569. #define externalEntityRefHandler \
  570. (parser->m_externalEntityRefHandler)
  571. #define externalEntityRefHandlerArg \
  572. (parser->m_externalEntityRefHandlerArg)
  573. #define internalEntityRefHandler \
  574. (parser->m_internalEntityRefHandler)
  575. #define skippedEntityHandler (parser->m_skippedEntityHandler)
  576. #define unknownEncodingHandler (parser->m_unknownEncodingHandler)
  577. #define elementDeclHandler (parser->m_elementDeclHandler)
  578. #define attlistDeclHandler (parser->m_attlistDeclHandler)
  579. #define entityDeclHandler (parser->m_entityDeclHandler)
  580. #define xmlDeclHandler (parser->m_xmlDeclHandler)
  581. #define encoding (parser->m_encoding)
  582. #define initEncoding (parser->m_initEncoding)
  583. #define internalEncoding (parser->m_internalEncoding)
  584. #define unknownEncodingMem (parser->m_unknownEncodingMem)
  585. #define unknownEncodingData (parser->m_unknownEncodingData)
  586. #define unknownEncodingHandlerData \
  587. (parser->m_unknownEncodingHandlerData)
  588. #define unknownEncodingRelease (parser->m_unknownEncodingRelease)
  589. #define protocolEncodingName (parser->m_protocolEncodingName)
  590. #define ns (parser->m_ns)
  591. #define ns_triplets (parser->m_ns_triplets)
  592. #define prologState (parser->m_prologState)
  593. #define processor (parser->m_processor)
  594. #define errorCode (parser->m_errorCode)
  595. #define eventPtr (parser->m_eventPtr)
  596. #define eventEndPtr (parser->m_eventEndPtr)
  597. #define positionPtr (parser->m_positionPtr)
  598. #define position (parser->m_position)
  599. #define openInternalEntities (parser->m_openInternalEntities)
  600. #define freeInternalEntities (parser->m_freeInternalEntities)
  601. #define defaultExpandInternalEntities \
  602. (parser->m_defaultExpandInternalEntities)
  603. #define tagLevel (parser->m_tagLevel)
  604. #define buffer (parser->m_buffer)
  605. #define bufferPtr (parser->m_bufferPtr)
  606. #define bufferEnd (parser->m_bufferEnd)
  607. #define parseEndByteIndex (parser->m_parseEndByteIndex)
  608. #define parseEndPtr (parser->m_parseEndPtr)
  609. #define bufferLim (parser->m_bufferLim)
  610. #define dataBuf (parser->m_dataBuf)
  611. #define dataBufEnd (parser->m_dataBufEnd)
  612. #define _dtd (parser->m_dtd)
  613. #define curBase (parser->m_curBase)
  614. #define declEntity (parser->m_declEntity)
  615. #define doctypeName (parser->m_doctypeName)
  616. #define doctypeSysid (parser->m_doctypeSysid)
  617. #define doctypePubid (parser->m_doctypePubid)
  618. #define declAttributeType (parser->m_declAttributeType)
  619. #define declNotationName (parser->m_declNotationName)
  620. #define declNotationPublicId (parser->m_declNotationPublicId)
  621. #define declElementType (parser->m_declElementType)
  622. #define declAttributeId (parser->m_declAttributeId)
  623. #define declAttributeIsCdata (parser->m_declAttributeIsCdata)
  624. #define declAttributeIsId (parser->m_declAttributeIsId)
  625. #define freeTagList (parser->m_freeTagList)
  626. #define freeBindingList (parser->m_freeBindingList)
  627. #define inheritedBindings (parser->m_inheritedBindings)
  628. #define tagStack (parser->m_tagStack)
  629. #define atts (parser->m_atts)
  630. #define attsSize (parser->m_attsSize)
  631. #define nSpecifiedAtts (parser->m_nSpecifiedAtts)
  632. #define idAttIndex (parser->m_idAttIndex)
  633. #define nsAtts (parser->m_nsAtts)
  634. #define nsAttsVersion (parser->m_nsAttsVersion)
  635. #define nsAttsPower (parser->m_nsAttsPower)
  636. #define attInfo (parser->m_attInfo)
  637. #define tempPool (parser->m_tempPool)
  638. #define temp2Pool (parser->m_temp2Pool)
  639. #define groupConnector (parser->m_groupConnector)
  640. #define groupSize (parser->m_groupSize)
  641. #define namespaceSeparator (parser->m_namespaceSeparator)
  642. #define parentParser (parser->m_parentParser)
  643. #define ps_parsing (parser->m_parsingStatus.parsing)
  644. #define ps_finalBuffer (parser->m_parsingStatus.finalBuffer)
  645. #ifdef XML_DTD
  646. #define isParamEntity (parser->m_isParamEntity)
  647. #define useForeignDTD (parser->m_useForeignDTD)
  648. #define paramEntityParsing (parser->m_paramEntityParsing)
  649. #endif /* XML_DTD */
  650. #define hash_secret_salt (parser->m_hash_secret_salt)
  651. XML_Parser XMLCALL
  652. XML_ParserCreate(const XML_Char *encodingName)
  653. {
  654. return XML_ParserCreate_MM(encodingName, NULL, NULL);
  655. }
  656. XML_Parser XMLCALL
  657. XML_ParserCreateNS(const XML_Char *encodingName, XML_Char nsSep)
  658. {
  659. XML_Char tmp[2];
  660. *tmp = nsSep;
  661. return XML_ParserCreate_MM(encodingName, NULL, tmp);
  662. }
  663. static const XML_Char implicitContext[] = {
  664. ASCII_x, ASCII_m, ASCII_l, ASCII_EQUALS, ASCII_h, ASCII_t, ASCII_t, ASCII_p,
  665. ASCII_COLON, ASCII_SLASH, ASCII_SLASH, ASCII_w, ASCII_w, ASCII_w,
  666. ASCII_PERIOD, ASCII_w, ASCII_3, ASCII_PERIOD, ASCII_o, ASCII_r, ASCII_g,
  667. ASCII_SLASH, ASCII_X, ASCII_M, ASCII_L, ASCII_SLASH, ASCII_1, ASCII_9,
  668. ASCII_9, ASCII_8, ASCII_SLASH, ASCII_n, ASCII_a, ASCII_m, ASCII_e,
  669. ASCII_s, ASCII_p, ASCII_a, ASCII_c, ASCII_e, '\0'
  670. };
  671. #if defined(HAVE_GETRANDOM) || defined(HAVE_SYSCALL_GETRANDOM)
  672. /* Obtain entropy on Linux 3.17+ */
  673. static int
  674. writeRandomBytes_getrandom(void * target, size_t count) {
  675. int success = 0; /* full count bytes written? */
  676. size_t bytesWrittenTotal = 0;
  677. const unsigned int getrandomFlags = 0;
  678. do {
  679. void * const currentTarget = (void*)((char*)target + bytesWrittenTotal);
  680. const size_t bytesToWrite = count - bytesWrittenTotal;
  681. const int bytesWrittenMore =
  682. #if defined(HAVE_GETRANDOM)
  683. getrandom(currentTarget, bytesToWrite, getrandomFlags);
  684. #else
  685. syscall(SYS_getrandom, currentTarget, bytesToWrite, getrandomFlags);
  686. #endif
  687. if (bytesWrittenMore > 0) {
  688. bytesWrittenTotal += bytesWrittenMore;
  689. if (bytesWrittenTotal >= count)
  690. success = 1;
  691. }
  692. } while (! success && (errno == EINTR || errno == EAGAIN));
  693. return success;
  694. }
  695. #endif /* defined(HAVE_GETRANDOM) || defined(HAVE_SYSCALL_GETRANDOM) */
  696. #ifdef _WIN32
  697. typedef BOOLEAN (APIENTRY *RTLGENRANDOM_FUNC)(PVOID, ULONG);
  698. /* Obtain entropy on Windows XP / Windows Server 2003 and later.
  699. * Hint on RtlGenRandom and the following article from libsodioum.
  700. *
  701. * Michael Howard: Cryptographically Secure Random number on Windows without using CryptoAPI
  702. * https://blogs.msdn.microsoft.com/michael_howard/2005/01/14/cryptographically-secure-random-number-on-windows-without-using-cryptoapi/
  703. */
  704. static int
  705. writeRandomBytes_RtlGenRandom(void * target, size_t count) {
  706. int success = 0; /* full count bytes written? */
  707. const HMODULE advapi32 = LoadLibrary(TEXT("ADVAPI32.DLL"));
  708. if (advapi32) {
  709. const RTLGENRANDOM_FUNC RtlGenRandom
  710. = (RTLGENRANDOM_FUNC)GetProcAddress(advapi32, "SystemFunction036");
  711. if (RtlGenRandom) {
  712. if (RtlGenRandom((PVOID)target, (ULONG)count) == TRUE) {
  713. success = 1;
  714. }
  715. }
  716. FreeLibrary(advapi32);
  717. }
  718. return success;
  719. }
  720. #endif /* _WIN32 */
  721. static unsigned long
  722. gather_time_entropy(void)
  723. {
  724. #ifdef _WIN32
  725. FILETIME ft;
  726. GetSystemTimeAsFileTime(&ft); /* never fails */
  727. return ft.dwHighDateTime ^ ft.dwLowDateTime;
  728. #else
  729. struct timeval tv;
  730. int gettimeofday_res;
  731. gettimeofday_res = gettimeofday(&tv, NULL);
  732. #if defined(NDEBUG)
  733. (void)gettimeofday_res;
  734. #else
  735. assert (gettimeofday_res == 0);
  736. #endif /* defined(NDEBUG) */
  737. /* Microseconds time is <20 bits entropy */
  738. return tv.tv_usec;
  739. #endif
  740. }
  741. static unsigned long
  742. ENTROPY_DEBUG(const char * label, unsigned long entropy) {
  743. const char * const EXPAT_ENTROPY_DEBUG = getenv("EXPAT_ENTROPY_DEBUG");
  744. if (EXPAT_ENTROPY_DEBUG && ! strcmp(EXPAT_ENTROPY_DEBUG, "1")) {
  745. fprintf(stderr, "Entropy: %s --> 0x%0*lx (%lu bytes)\n",
  746. label,
  747. (int)sizeof(entropy) * 2, entropy,
  748. (unsigned long)sizeof(entropy));
  749. }
  750. return entropy;
  751. }
  752. static unsigned long
  753. generate_hash_secret_salt(XML_Parser parser)
  754. {
  755. unsigned long entropy;
  756. (void)parser;
  757. #if defined(HAVE_ARC4RANDOM_BUF) || defined(__CloudABI__)
  758. (void)gather_time_entropy;
  759. arc4random_buf(&entropy, sizeof(entropy));
  760. return ENTROPY_DEBUG("arc4random_buf", entropy);
  761. #else
  762. /* Try high quality providers first .. */
  763. #ifdef _WIN32
  764. if (writeRandomBytes_RtlGenRandom((void *)&entropy, sizeof(entropy))) {
  765. return ENTROPY_DEBUG("RtlGenRandom", entropy);
  766. }
  767. #elif defined(HAVE_GETRANDOM) || defined(HAVE_SYSCALL_GETRANDOM)
  768. if (writeRandomBytes_getrandom((void *)&entropy, sizeof(entropy))) {
  769. return ENTROPY_DEBUG("getrandom", entropy);
  770. }
  771. #endif
  772. /* .. and self-made low quality for backup: */
  773. /* Process ID is 0 bits entropy if attacker has local access */
  774. entropy = gather_time_entropy() ^ getpid();
  775. /* Factors are 2^31-1 and 2^61-1 (Mersenne primes M31 and M61) */
  776. if (sizeof(unsigned long) == 4) {
  777. return ENTROPY_DEBUG("fallback(4)", entropy * 2147483647);
  778. } else {
  779. return ENTROPY_DEBUG("fallback(8)",
  780. entropy * (unsigned long)2305843009213693951ULL);
  781. }
  782. #endif
  783. }
  784. static unsigned long
  785. get_hash_secret_salt(XML_Parser parser) {
  786. if (parser->m_parentParser != NULL)
  787. return get_hash_secret_salt(parser->m_parentParser);
  788. return parser->m_hash_secret_salt;
  789. }
  790. static XML_Bool /* only valid for root parser */
  791. startParsing(XML_Parser parser)
  792. {
  793. /* hash functions must be initialized before setContext() is called */
  794. if (hash_secret_salt == 0)
  795. hash_secret_salt = generate_hash_secret_salt(parser);
  796. if (ns) {
  797. /* implicit context only set for root parser, since child
  798. parsers (i.e. external entity parsers) will inherit it
  799. */
  800. return setContext(parser, implicitContext);
  801. }
  802. return XML_TRUE;
  803. }
  804. XML_Parser XMLCALL
  805. XML_ParserCreate_MM(const XML_Char *encodingName,
  806. const XML_Memory_Handling_Suite *memsuite,
  807. const XML_Char *nameSep)
  808. {
  809. return parserCreate(encodingName, memsuite, nameSep, NULL);
  810. }
  811. static XML_Parser
  812. parserCreate(const XML_Char *encodingName,
  813. const XML_Memory_Handling_Suite *memsuite,
  814. const XML_Char *nameSep,
  815. DTD *dtd)
  816. {
  817. XML_Parser parser;
  818. if (memsuite) {
  819. XML_Memory_Handling_Suite *mtemp;
  820. parser = (XML_Parser)
  821. memsuite->malloc_fcn(sizeof(struct XML_ParserStruct));
  822. if (parser != NULL) {
  823. mtemp = (XML_Memory_Handling_Suite *)&(parser->m_mem);
  824. mtemp->malloc_fcn = memsuite->malloc_fcn;
  825. mtemp->realloc_fcn = memsuite->realloc_fcn;
  826. mtemp->free_fcn = memsuite->free_fcn;
  827. }
  828. }
  829. else {
  830. XML_Memory_Handling_Suite *mtemp;
  831. parser = (XML_Parser)malloc(sizeof(struct XML_ParserStruct));
  832. if (parser != NULL) {
  833. mtemp = (XML_Memory_Handling_Suite *)&(parser->m_mem);
  834. mtemp->malloc_fcn = malloc;
  835. mtemp->realloc_fcn = realloc;
  836. mtemp->free_fcn = free;
  837. }
  838. }
  839. if (!parser)
  840. return parser;
  841. buffer = NULL;
  842. bufferLim = NULL;
  843. attsSize = INIT_ATTS_SIZE;
  844. atts = (ATTRIBUTE *)MALLOC(attsSize * sizeof(ATTRIBUTE));
  845. if (atts == NULL) {
  846. FREE(parser);
  847. return NULL;
  848. }
  849. #ifdef XML_ATTR_INFO
  850. attInfo = (XML_AttrInfo*)MALLOC(attsSize * sizeof(XML_AttrInfo));
  851. if (attInfo == NULL) {
  852. FREE(atts);
  853. FREE(parser);
  854. return NULL;
  855. }
  856. #endif
  857. dataBuf = (XML_Char *)MALLOC(INIT_DATA_BUF_SIZE * sizeof(XML_Char));
  858. if (dataBuf == NULL) {
  859. FREE(atts);
  860. #ifdef XML_ATTR_INFO
  861. FREE(attInfo);
  862. #endif
  863. FREE(parser);
  864. return NULL;
  865. }
  866. dataBufEnd = dataBuf + INIT_DATA_BUF_SIZE;
  867. if (dtd)
  868. _dtd = dtd;
  869. else {
  870. _dtd = dtdCreate(&parser->m_mem);
  871. if (_dtd == NULL) {
  872. FREE(dataBuf);
  873. FREE(atts);
  874. #ifdef XML_ATTR_INFO
  875. FREE(attInfo);
  876. #endif
  877. FREE(parser);
  878. return NULL;
  879. }
  880. }
  881. freeBindingList = NULL;
  882. freeTagList = NULL;
  883. freeInternalEntities = NULL;
  884. groupSize = 0;
  885. groupConnector = NULL;
  886. unknownEncodingHandler = NULL;
  887. unknownEncodingHandlerData = NULL;
  888. namespaceSeparator = ASCII_EXCL;
  889. ns = XML_FALSE;
  890. ns_triplets = XML_FALSE;
  891. nsAtts = NULL;
  892. nsAttsVersion = 0;
  893. nsAttsPower = 0;
  894. protocolEncodingName = NULL;
  895. poolInit(&tempPool, &(parser->m_mem));
  896. poolInit(&temp2Pool, &(parser->m_mem));
  897. parserInit(parser, encodingName);
  898. if (encodingName && !protocolEncodingName) {
  899. XML_ParserFree(parser);
  900. return NULL;
  901. }
  902. if (nameSep) {
  903. ns = XML_TRUE;
  904. internalEncoding = XmlGetInternalEncodingNS();
  905. namespaceSeparator = *nameSep;
  906. }
  907. else {
  908. internalEncoding = XmlGetInternalEncoding();
  909. }
  910. return parser;
  911. }
  912. static void
  913. parserInit(XML_Parser parser, const XML_Char *encodingName)
  914. {
  915. processor = prologInitProcessor;
  916. XmlPrologStateInit(&prologState);
  917. if (encodingName != NULL) {
  918. protocolEncodingName = copyString(encodingName, &(parser->m_mem));
  919. }
  920. curBase = NULL;
  921. XmlInitEncoding(&initEncoding, &encoding, 0);
  922. userData = NULL;
  923. handlerArg = NULL;
  924. startElementHandler = NULL;
  925. endElementHandler = NULL;
  926. characterDataHandler = NULL;
  927. processingInstructionHandler = NULL;
  928. commentHandler = NULL;
  929. startCdataSectionHandler = NULL;
  930. endCdataSectionHandler = NULL;
  931. defaultHandler = NULL;
  932. startDoctypeDeclHandler = NULL;
  933. endDoctypeDeclHandler = NULL;
  934. unparsedEntityDeclHandler = NULL;
  935. notationDeclHandler = NULL;
  936. startNamespaceDeclHandler = NULL;
  937. endNamespaceDeclHandler = NULL;
  938. notStandaloneHandler = NULL;
  939. externalEntityRefHandler = NULL;
  940. externalEntityRefHandlerArg = parser;
  941. skippedEntityHandler = NULL;
  942. elementDeclHandler = NULL;
  943. attlistDeclHandler = NULL;
  944. entityDeclHandler = NULL;
  945. xmlDeclHandler = NULL;
  946. bufferPtr = buffer;
  947. bufferEnd = buffer;
  948. parseEndByteIndex = 0;
  949. parseEndPtr = NULL;
  950. declElementType = NULL;
  951. declAttributeId = NULL;
  952. declEntity = NULL;
  953. doctypeName = NULL;
  954. doctypeSysid = NULL;
  955. doctypePubid = NULL;
  956. declAttributeType = NULL;
  957. declNotationName = NULL;
  958. declNotationPublicId = NULL;
  959. declAttributeIsCdata = XML_FALSE;
  960. declAttributeIsId = XML_FALSE;
  961. memset(&position, 0, sizeof(POSITION));
  962. errorCode = XML_ERROR_NONE;
  963. eventPtr = NULL;
  964. eventEndPtr = NULL;
  965. positionPtr = NULL;
  966. openInternalEntities = NULL;
  967. defaultExpandInternalEntities = XML_TRUE;
  968. tagLevel = 0;
  969. tagStack = NULL;
  970. inheritedBindings = NULL;
  971. nSpecifiedAtts = 0;
  972. unknownEncodingMem = NULL;
  973. unknownEncodingRelease = NULL;
  974. unknownEncodingData = NULL;
  975. parentParser = NULL;
  976. ps_parsing = XML_INITIALIZED;
  977. #ifdef XML_DTD
  978. isParamEntity = XML_FALSE;
  979. useForeignDTD = XML_FALSE;
  980. paramEntityParsing = XML_PARAM_ENTITY_PARSING_NEVER;
  981. #endif
  982. hash_secret_salt = 0;
  983. }
  984. /* moves list of bindings to freeBindingList */
  985. static void FASTCALL
  986. moveToFreeBindingList(XML_Parser parser, BINDING *bindings)
  987. {
  988. while (bindings) {
  989. BINDING *b = bindings;
  990. bindings = bindings->nextTagBinding;
  991. b->nextTagBinding = freeBindingList;
  992. freeBindingList = b;
  993. }
  994. }
  995. XML_Bool XMLCALL
  996. XML_ParserReset(XML_Parser parser, const XML_Char *encodingName)
  997. {
  998. TAG *tStk;
  999. OPEN_INTERNAL_ENTITY *openEntityList;
  1000. if (parser == NULL)
  1001. return XML_FALSE;
  1002. if (parentParser)
  1003. return XML_FALSE;
  1004. /* move tagStack to freeTagList */
  1005. tStk = tagStack;
  1006. while (tStk) {
  1007. TAG *tag = tStk;
  1008. tStk = tStk->parent;
  1009. tag->parent = freeTagList;
  1010. moveToFreeBindingList(parser, tag->bindings);
  1011. tag->bindings = NULL;
  1012. freeTagList = tag;
  1013. }
  1014. /* move openInternalEntities to freeInternalEntities */
  1015. openEntityList = openInternalEntities;
  1016. while (openEntityList) {
  1017. OPEN_INTERNAL_ENTITY *openEntity = openEntityList;
  1018. openEntityList = openEntity->next;
  1019. openEntity->next = freeInternalEntities;
  1020. freeInternalEntities = openEntity;
  1021. }
  1022. moveToFreeBindingList(parser, inheritedBindings);
  1023. FREE(unknownEncodingMem);
  1024. if (unknownEncodingRelease)
  1025. unknownEncodingRelease(unknownEncodingData);
  1026. poolClear(&tempPool);
  1027. poolClear(&temp2Pool);
  1028. FREE((void *)protocolEncodingName);
  1029. protocolEncodingName = NULL;
  1030. parserInit(parser, encodingName);
  1031. dtdReset(_dtd, &parser->m_mem);
  1032. return XML_TRUE;
  1033. }
  1034. enum XML_Status XMLCALL
  1035. XML_SetEncoding(XML_Parser parser, const XML_Char *encodingName)
  1036. {
  1037. if (parser == NULL)
  1038. return XML_STATUS_ERROR;
  1039. /* Block after XML_Parse()/XML_ParseBuffer() has been called.
  1040. XXX There's no way for the caller to determine which of the
  1041. XXX possible error cases caused the XML_STATUS_ERROR return.
  1042. */
  1043. if (ps_parsing == XML_PARSING || ps_parsing == XML_SUSPENDED)
  1044. return XML_STATUS_ERROR;
  1045. /* Get rid of any previous encoding name */
  1046. FREE((void *)protocolEncodingName);
  1047. if (encodingName == NULL)
  1048. /* No new encoding name */
  1049. protocolEncodingName = NULL;
  1050. else {
  1051. /* Copy the new encoding name into allocated memory */
  1052. protocolEncodingName = copyString(encodingName, &(parser->m_mem));
  1053. if (!protocolEncodingName)
  1054. return XML_STATUS_ERROR;
  1055. }
  1056. return XML_STATUS_OK;
  1057. }
  1058. XML_Parser XMLCALL
  1059. XML_ExternalEntityParserCreate(XML_Parser oldParser,
  1060. const XML_Char *context,
  1061. const XML_Char *encodingName)
  1062. {
  1063. XML_Parser parser = oldParser;
  1064. DTD *newDtd = NULL;
  1065. DTD *oldDtd;
  1066. XML_StartElementHandler oldStartElementHandler;
  1067. XML_EndElementHandler oldEndElementHandler;
  1068. XML_CharacterDataHandler oldCharacterDataHandler;
  1069. XML_ProcessingInstructionHandler oldProcessingInstructionHandler;
  1070. XML_CommentHandler oldCommentHandler;
  1071. XML_StartCdataSectionHandler oldStartCdataSectionHandler;
  1072. XML_EndCdataSectionHandler oldEndCdataSectionHandler;
  1073. XML_DefaultHandler oldDefaultHandler;
  1074. XML_UnparsedEntityDeclHandler oldUnparsedEntityDeclHandler;
  1075. XML_NotationDeclHandler oldNotationDeclHandler;
  1076. XML_StartNamespaceDeclHandler oldStartNamespaceDeclHandler;
  1077. XML_EndNamespaceDeclHandler oldEndNamespaceDeclHandler;
  1078. XML_NotStandaloneHandler oldNotStandaloneHandler;
  1079. XML_ExternalEntityRefHandler oldExternalEntityRefHandler;
  1080. XML_SkippedEntityHandler oldSkippedEntityHandler;
  1081. XML_UnknownEncodingHandler oldUnknownEncodingHandler;
  1082. XML_ElementDeclHandler oldElementDeclHandler;
  1083. XML_AttlistDeclHandler oldAttlistDeclHandler;
  1084. XML_EntityDeclHandler oldEntityDeclHandler;
  1085. XML_XmlDeclHandler oldXmlDeclHandler;
  1086. ELEMENT_TYPE * oldDeclElementType;
  1087. void *oldUserData;
  1088. void *oldHandlerArg;
  1089. XML_Bool oldDefaultExpandInternalEntities;
  1090. XML_Parser oldExternalEntityRefHandlerArg;
  1091. #ifdef XML_DTD
  1092. enum XML_ParamEntityParsing oldParamEntityParsing;
  1093. int oldInEntityValue;
  1094. #endif
  1095. XML_Bool oldns_triplets;
  1096. /* Note that the new parser shares the same hash secret as the old
  1097. parser, so that dtdCopy and copyEntityTable can lookup values
  1098. from hash tables associated with either parser without us having
  1099. to worry which hash secrets each table has.
  1100. */
  1101. unsigned long oldhash_secret_salt;
  1102. /* Validate the oldParser parameter before we pull everything out of it */
  1103. if (oldParser == NULL)
  1104. return NULL;
  1105. /* Stash the original parser contents on the stack */
  1106. oldDtd = _dtd;
  1107. oldStartElementHandler = startElementHandler;
  1108. oldEndElementHandler = endElementHandler;
  1109. oldCharacterDataHandler = characterDataHandler;
  1110. oldProcessingInstructionHandler = processingInstructionHandler;
  1111. oldCommentHandler = commentHandler;
  1112. oldStartCdataSectionHandler = startCdataSectionHandler;
  1113. oldEndCdataSectionHandler = endCdataSectionHandler;
  1114. oldDefaultHandler = defaultHandler;
  1115. oldUnparsedEntityDeclHandler = unparsedEntityDeclHandler;
  1116. oldNotationDeclHandler = notationDeclHandler;
  1117. oldStartNamespaceDeclHandler = startNamespaceDeclHandler;
  1118. oldEndNamespaceDeclHandler = endNamespaceDeclHandler;
  1119. oldNotStandaloneHandler = notStandaloneHandler;
  1120. oldExternalEntityRefHandler = externalEntityRefHandler;
  1121. oldSkippedEntityHandler = skippedEntityHandler;
  1122. oldUnknownEncodingHandler = unknownEncodingHandler;
  1123. oldElementDeclHandler = elementDeclHandler;
  1124. oldAttlistDeclHandler = attlistDeclHandler;
  1125. oldEntityDeclHandler = entityDeclHandler;
  1126. oldXmlDeclHandler = xmlDeclHandler;
  1127. oldDeclElementType = declElementType;
  1128. oldUserData = userData;
  1129. oldHandlerArg = handlerArg;
  1130. oldDefaultExpandInternalEntities = defaultExpandInternalEntities;
  1131. oldExternalEntityRefHandlerArg = externalEntityRefHandlerArg;
  1132. #ifdef XML_DTD
  1133. oldParamEntityParsing = paramEntityParsing;
  1134. oldInEntityValue = prologState.inEntityValue;
  1135. #endif
  1136. oldns_triplets = ns_triplets;
  1137. /* Note that the new parser shares the same hash secret as the old
  1138. parser, so that dtdCopy and copyEntityTable can lookup values
  1139. from hash tables associated with either parser without us having
  1140. to worry which hash secrets each table has.
  1141. */
  1142. oldhash_secret_salt = hash_secret_salt;
  1143. #ifdef XML_DTD
  1144. if (!context)
  1145. newDtd = oldDtd;
  1146. #endif /* XML_DTD */
  1147. /* Note that the magical uses of the pre-processor to make field
  1148. access look more like C++ require that `parser' be overwritten
  1149. here. This makes this function more painful to follow than it
  1150. would be otherwise.
  1151. */
  1152. if (ns) {
  1153. XML_Char tmp[2];
  1154. *tmp = namespaceSeparator;
  1155. parser = parserCreate(encodingName, &parser->m_mem, tmp, newDtd);
  1156. }
  1157. else {
  1158. parser = parserCreate(encodingName, &parser->m_mem, NULL, newDtd);
  1159. }
  1160. if (!parser)
  1161. return NULL;
  1162. startElementHandler = oldStartElementHandler;
  1163. endElementHandler = oldEndElementHandler;
  1164. characterDataHandler = oldCharacterDataHandler;
  1165. processingInstructionHandler = oldProcessingInstructionHandler;
  1166. commentHandler = oldCommentHandler;
  1167. startCdataSectionHandler = oldStartCdataSectionHandler;
  1168. endCdataSectionHandler = oldEndCdataSectionHandler;
  1169. defaultHandler = oldDefaultHandler;
  1170. unparsedEntityDeclHandler = oldUnparsedEntityDeclHandler;
  1171. notationDeclHandler = oldNotationDeclHandler;
  1172. startNamespaceDeclHandler = oldStartNamespaceDeclHandler;
  1173. endNamespaceDeclHandler = oldEndNamespaceDeclHandler;
  1174. notStandaloneHandler = oldNotStandaloneHandler;
  1175. externalEntityRefHandler = oldExternalEntityRefHandler;
  1176. skippedEntityHandler = oldSkippedEntityHandler;
  1177. unknownEncodingHandler = oldUnknownEncodingHandler;
  1178. elementDeclHandler = oldElementDeclHandler;
  1179. attlistDeclHandler = oldAttlistDeclHandler;
  1180. entityDeclHandler = oldEntityDeclHandler;
  1181. xmlDeclHandler = oldXmlDeclHandler;
  1182. declElementType = oldDeclElementType;
  1183. userData = oldUserData;
  1184. if (oldUserData == oldHandlerArg)
  1185. handlerArg = userData;
  1186. else
  1187. handlerArg = parser;
  1188. if (oldExternalEntityRefHandlerArg != oldParser)
  1189. externalEntityRefHandlerArg = oldExternalEntityRefHandlerArg;
  1190. defaultExpandInternalEntities = oldDefaultExpandInternalEntities;
  1191. ns_triplets = oldns_triplets;
  1192. hash_secret_salt = oldhash_secret_salt;
  1193. parentParser = oldParser;
  1194. #ifdef XML_DTD
  1195. paramEntityParsing = oldParamEntityParsing;
  1196. prologState.inEntityValue = oldInEntityValue;
  1197. if (context) {
  1198. #endif /* XML_DTD */
  1199. if (!dtdCopy(oldParser, _dtd, oldDtd, &parser->m_mem)
  1200. || !setContext(parser, context)) {
  1201. XML_ParserFree(parser);
  1202. return NULL;
  1203. }
  1204. processor = externalEntityInitProcessor;
  1205. #ifdef XML_DTD
  1206. }
  1207. else {
  1208. /* The DTD instance referenced by _dtd is shared between the document's
  1209. root parser and external PE parsers, therefore one does not need to
  1210. call setContext. In addition, one also *must* not call setContext,
  1211. because this would overwrite existing prefix->binding pointers in
  1212. _dtd with ones that get destroyed with the external PE parser.
  1213. This would leave those prefixes with dangling pointers.
  1214. */
  1215. isParamEntity = XML_TRUE;
  1216. XmlPrologStateInitExternalEntity(&prologState);
  1217. processor = externalParEntInitProcessor;
  1218. }
  1219. #endif /* XML_DTD */
  1220. return parser;
  1221. }
  1222. static void FASTCALL
  1223. destroyBindings(BINDING *bindings, XML_Parser parser)
  1224. {
  1225. for (;;) {
  1226. BINDING *b = bindings;
  1227. if (!b)
  1228. break;
  1229. bindings = b->nextTagBinding;
  1230. FREE(b->uri);
  1231. FREE(b);
  1232. }
  1233. }
  1234. void XMLCALL
  1235. XML_ParserFree(XML_Parser parser)
  1236. {
  1237. TAG *tagList;
  1238. OPEN_INTERNAL_ENTITY *entityList;
  1239. if (parser == NULL)
  1240. return;
  1241. /* free tagStack and freeTagList */
  1242. tagList = tagStack;
  1243. for (;;) {
  1244. TAG *p;
  1245. if (tagList == NULL) {
  1246. if (freeTagList == NULL)
  1247. break;
  1248. tagList = freeTagList;
  1249. freeTagList = NULL;
  1250. }
  1251. p = tagList;
  1252. tagList = tagList->parent;
  1253. FREE(p->buf);
  1254. destroyBindings(p->bindings, parser);
  1255. FREE(p);
  1256. }
  1257. /* free openInternalEntities and freeInternalEntities */
  1258. entityList = openInternalEntities;
  1259. for (;;) {
  1260. OPEN_INTERNAL_ENTITY *openEntity;
  1261. if (entityList == NULL) {
  1262. if (freeInternalEntities == NULL)
  1263. break;
  1264. entityList = freeInternalEntities;
  1265. freeInternalEntities = NULL;
  1266. }
  1267. openEntity = entityList;
  1268. entityList = entityList->next;
  1269. FREE(openEntity);
  1270. }
  1271. destroyBindings(freeBindingList, parser);
  1272. destroyBindings(inheritedBindings, parser);
  1273. poolDestroy(&tempPool);
  1274. poolDestroy(&temp2Pool);
  1275. FREE((void *)protocolEncodingName);
  1276. #ifdef XML_DTD
  1277. /* external parameter entity parsers share the DTD structure
  1278. parser->m_dtd with the root parser, so we must not destroy it
  1279. */
  1280. if (!isParamEntity && _dtd)
  1281. #else
  1282. if (_dtd)
  1283. #endif /* XML_DTD */
  1284. dtdDestroy(_dtd, (XML_Bool)!parentParser, &parser->m_mem);
  1285. FREE((void *)atts);
  1286. #ifdef XML_ATTR_INFO
  1287. FREE((void *)attInfo);
  1288. #endif
  1289. FREE(groupConnector);
  1290. FREE(buffer);
  1291. FREE(dataBuf);
  1292. FREE(nsAtts);
  1293. FREE(unknownEncodingMem);
  1294. if (unknownEncodingRelease)
  1295. unknownEncodingRelease(unknownEncodingData);
  1296. FREE(parser);
  1297. }
  1298. void XMLCALL
  1299. XML_UseParserAsHandlerArg(XML_Parser parser)
  1300. {
  1301. if (parser != NULL)
  1302. handlerArg = parser;
  1303. }
  1304. enum XML_Error XMLCALL
  1305. XML_UseForeignDTD(XML_Parser parser, XML_Bool useDTD)
  1306. {
  1307. if (parser == NULL)
  1308. return XML_ERROR_INVALID_ARGUMENT;
  1309. #ifdef XML_DTD
  1310. /* block after XML_Parse()/XML_ParseBuffer() has been called */
  1311. if (ps_parsing == XML_PARSING || ps_parsing == XML_SUSPENDED)
  1312. return XML_ERROR_CANT_CHANGE_FEATURE_ONCE_PARSING;
  1313. useForeignDTD = useDTD;
  1314. return XML_ERROR_NONE;
  1315. #else
  1316. return XML_ERROR_FEATURE_REQUIRES_XML_DTD;
  1317. #endif
  1318. }
  1319. void XMLCALL
  1320. XML_SetReturnNSTriplet(XML_Parser parser, int do_nst)
  1321. {
  1322. if (parser == NULL)
  1323. return;
  1324. /* block after XML_Parse()/XML_ParseBuffer() has been called */
  1325. if (ps_parsing == XML_PARSING || ps_parsing == XML_SUSPENDED)
  1326. return;
  1327. ns_triplets = do_nst ? XML_TRUE : XML_FALSE;
  1328. }
  1329. void XMLCALL
  1330. XML_SetUserData(XML_Parser parser, void *p)
  1331. {
  1332. if (parser == NULL)
  1333. return;
  1334. if (handlerArg == userData)
  1335. handlerArg = userData = p;
  1336. else
  1337. userData = p;
  1338. }
  1339. enum XML_Status XMLCALL
  1340. XML_SetBase(XML_Parser parser, const XML_Char *p)
  1341. {
  1342. if (parser == NULL)
  1343. return XML_STATUS_ERROR;
  1344. if (p) {
  1345. p = poolCopyString(&_dtd->pool, p);
  1346. if (!p)
  1347. return XML_STATUS_ERROR;
  1348. curBase = p;
  1349. }
  1350. else
  1351. curBase = NULL;
  1352. return XML_STATUS_OK;
  1353. }
  1354. const XML_Char * XMLCALL
  1355. XML_GetBase(XML_Parser parser)
  1356. {
  1357. if (parser == NULL)
  1358. return NULL;
  1359. return curBase;
  1360. }
  1361. int XMLCALL
  1362. XML_GetSpecifiedAttributeCount(XML_Parser parser)
  1363. {
  1364. if (parser == NULL)
  1365. return -1;
  1366. return nSpecifiedAtts;
  1367. }
  1368. int XMLCALL
  1369. XML_GetIdAttributeIndex(XML_Parser parser)
  1370. {
  1371. if (parser == NULL)
  1372. return -1;
  1373. return idAttIndex;
  1374. }
  1375. #ifdef XML_ATTR_INFO
  1376. const XML_AttrInfo * XMLCALL
  1377. XML_GetAttributeInfo(XML_Parser parser)
  1378. {
  1379. if (parser == NULL)
  1380. return NULL;
  1381. return attInfo;
  1382. }
  1383. #endif
  1384. void XMLCALL
  1385. XML_SetElementHandler(XML_Parser parser,
  1386. XML_StartElementHandler start,
  1387. XML_EndElementHandler end)
  1388. {
  1389. if (parser == NULL)
  1390. return;
  1391. startElementHandler = start;
  1392. endElementHandler = end;
  1393. }
  1394. void XMLCALL
  1395. XML_SetStartElementHandler(XML_Parser parser,
  1396. XML_StartElementHandler start) {
  1397. if (parser != NULL)
  1398. startElementHandler = start;
  1399. }
  1400. void XMLCALL
  1401. XML_SetEndElementHandler(XML_Parser parser,
  1402. XML_EndElementHandler end) {
  1403. if (parser != NULL)
  1404. endElementHandler = end;
  1405. }
  1406. void XMLCALL
  1407. XML_SetCharacterDataHandler(XML_Parser parser,
  1408. XML_CharacterDataHandler handler)
  1409. {
  1410. if (parser != NULL)
  1411. characterDataHandler = handler;
  1412. }
  1413. void XMLCALL
  1414. XML_SetProcessingInstructionHandler(XML_Parser parser,
  1415. XML_ProcessingInstructionHandler handler)
  1416. {
  1417. if (parser != NULL)
  1418. processingInstructionHandler = handler;
  1419. }
  1420. void XMLCALL
  1421. XML_SetCommentHandler(XML_Parser parser,
  1422. XML_CommentHandler handler)
  1423. {
  1424. if (parser != NULL)
  1425. commentHandler = handler;
  1426. }
  1427. void XMLCALL
  1428. XML_SetCdataSectionHandler(XML_Parser parser,
  1429. XML_StartCdataSectionHandler start,
  1430. XML_EndCdataSectionHandler end)
  1431. {
  1432. if (parser == NULL)
  1433. return;
  1434. startCdataSectionHandler = start;
  1435. endCdataSectionHandler = end;
  1436. }
  1437. void XMLCALL
  1438. XML_SetStartCdataSectionHandler(XML_Parser parser,
  1439. XML_StartCdataSectionHandler start) {
  1440. if (parser != NULL)
  1441. startCdataSectionHandler = start;
  1442. }
  1443. void XMLCALL
  1444. XML_SetEndCdataSectionHandler(XML_Parser parser,
  1445. XML_EndCdataSectionHandler end) {
  1446. if (parser != NULL)
  1447. endCdataSectionHandler = end;
  1448. }
  1449. void XMLCALL
  1450. XML_SetDefaultHandler(XML_Parser parser,
  1451. XML_DefaultHandler handler)
  1452. {
  1453. if (parser == NULL)
  1454. return;
  1455. defaultHandler = handler;
  1456. defaultExpandInternalEntities = XML_FALSE;
  1457. }
  1458. void XMLCALL
  1459. XML_SetDefaultHandlerExpand(XML_Parser parser,
  1460. XML_DefaultHandler handler)
  1461. {
  1462. if (parser == NULL)
  1463. return;
  1464. defaultHandler = handler;
  1465. defaultExpandInternalEntities = XML_TRUE;
  1466. }
  1467. void XMLCALL
  1468. XML_SetDoctypeDeclHandler(XML_Parser parser,
  1469. XML_StartDoctypeDeclHandler start,
  1470. XML_EndDoctypeDeclHandler end)
  1471. {
  1472. if (parser == NULL)
  1473. return;
  1474. startDoctypeDeclHandler = start;
  1475. endDoctypeDeclHandler = end;
  1476. }
  1477. void XMLCALL
  1478. XML_SetStartDoctypeDeclHandler(XML_Parser parser,
  1479. XML_StartDoctypeDeclHandler start) {
  1480. if (parser != NULL)
  1481. startDoctypeDeclHandler = start;
  1482. }
  1483. void XMLCALL
  1484. XML_SetEndDoctypeDeclHandler(XML_Parser parser,
  1485. XML_EndDoctypeDeclHandler end) {
  1486. if (parser != NULL)
  1487. endDoctypeDeclHandler = end;
  1488. }
  1489. void XMLCALL
  1490. XML_SetUnparsedEntityDeclHandler(XML_Parser parser,
  1491. XML_UnparsedEntityDeclHandler handler)
  1492. {
  1493. if (parser != NULL)
  1494. unparsedEntityDeclHandler = handler;
  1495. }
  1496. void XMLCALL
  1497. XML_SetNotationDeclHandler(XML_Parser parser,
  1498. XML_NotationDeclHandler handler)
  1499. {
  1500. if (parser != NULL)
  1501. notationDeclHandler = handler;
  1502. }
  1503. void XMLCALL
  1504. XML_SetNamespaceDeclHandler(XML_Parser parser,
  1505. XML_StartNamespaceDeclHandler start,
  1506. XML_EndNamespaceDeclHandler end)
  1507. {
  1508. if (parser == NULL)
  1509. return;
  1510. startNamespaceDeclHandler = start;
  1511. endNamespaceDeclHandler = end;
  1512. }
  1513. void XMLCALL
  1514. XML_SetStartNamespaceDeclHandler(XML_Parser parser,
  1515. XML_StartNamespaceDeclHandler start) {
  1516. if (parser != NULL)
  1517. startNamespaceDeclHandler = start;
  1518. }
  1519. void XMLCALL
  1520. XML_SetEndNamespaceDeclHandler(XML_Parser parser,
  1521. XML_EndNamespaceDeclHandler end) {
  1522. if (parser != NULL)
  1523. endNamespaceDeclHandler = end;
  1524. }
  1525. void XMLCALL
  1526. XML_SetNotStandaloneHandler(XML_Parser parser,
  1527. XML_NotStandaloneHandler handler)
  1528. {
  1529. if (parser != NULL)
  1530. notStandaloneHandler = handler;
  1531. }
  1532. void XMLCALL
  1533. XML_SetExternalEntityRefHandler(XML_Parser parser,
  1534. XML_ExternalEntityRefHandler handler)
  1535. {
  1536. if (parser != NULL)
  1537. externalEntityRefHandler = handler;
  1538. }
  1539. void XMLCALL
  1540. XML_SetExternalEntityRefHandlerArg(XML_Parser parser, void *arg)
  1541. {
  1542. if (parser == NULL)
  1543. return;
  1544. if (arg)
  1545. externalEntityRefHandlerArg = (XML_Parser)arg;
  1546. else
  1547. externalEntityRefHandlerArg = parser;
  1548. }
  1549. void XMLCALL
  1550. XML_SetSkippedEntityHandler(XML_Parser parser,
  1551. XML_SkippedEntityHandler handler)
  1552. {
  1553. if (parser != NULL)
  1554. skippedEntityHandler = handler;
  1555. }
  1556. void XMLCALL
  1557. XML_SetUnknownEncodingHandler(XML_Parser parser,
  1558. XML_UnknownEncodingHandler handler,
  1559. void *data)
  1560. {
  1561. if (parser == NULL)
  1562. return;
  1563. unknownEncodingHandler = handler;
  1564. unknownEncodingHandlerData = data;
  1565. }
  1566. void XMLCALL
  1567. XML_SetElementDeclHandler(XML_Parser parser,
  1568. XML_ElementDeclHandler eldecl)
  1569. {
  1570. if (parser != NULL)
  1571. elementDeclHandler = eldecl;
  1572. }
  1573. void XMLCALL
  1574. XML_SetAttlistDeclHandler(XML_Parser parser,
  1575. XML_AttlistDeclHandler attdecl)
  1576. {
  1577. if (parser != NULL)
  1578. attlistDeclHandler = attdecl;
  1579. }
  1580. void XMLCALL
  1581. XML_SetEntityDeclHandler(XML_Parser parser,
  1582. XML_EntityDeclHandler handler)
  1583. {
  1584. if (parser != NULL)
  1585. entityDeclHandler = handler;
  1586. }
  1587. void XMLCALL
  1588. XML_SetXmlDeclHandler(XML_Parser parser,
  1589. XML_XmlDeclHandler handler) {
  1590. if (parser != NULL)
  1591. xmlDeclHandler = handler;
  1592. }
  1593. int XMLCALL
  1594. XML_SetParamEntityParsing(XML_Parser parser,
  1595. enum XML_ParamEntityParsing peParsing)
  1596. {
  1597. if (parser == NULL)
  1598. return 0;
  1599. /* block after XML_Parse()/XML_ParseBuffer() has been called */
  1600. if (ps_parsing == XML_PARSING || ps_parsing == XML_SUSPENDED)
  1601. return 0;
  1602. #ifdef XML_DTD
  1603. paramEntityParsing = peParsing;
  1604. return 1;
  1605. #else
  1606. return peParsing == XML_PARAM_ENTITY_PARSING_NEVER;
  1607. #endif
  1608. }
  1609. int XMLCALL
  1610. XML_SetHashSalt(XML_Parser parser,
  1611. unsigned long hash_salt)
  1612. {
  1613. if (parser == NULL)
  1614. return 0;
  1615. if (parser->m_parentParser)
  1616. return XML_SetHashSalt(parser->m_parentParser, hash_salt);
  1617. /* block after XML_Parse()/XML_ParseBuffer() has been called */
  1618. if (ps_parsing == XML_PARSING || ps_parsing == XML_SUSPENDED)
  1619. return 0;
  1620. hash_secret_salt = hash_salt;
  1621. return 1;
  1622. }
  1623. enum XML_Status XMLCALL
  1624. XML_Parse(XML_Parser parser, const char *s, int len, int isFinal)
  1625. {
  1626. if ((parser == NULL) || (len < 0) || ((s == NULL) && (len != 0))) {
  1627. if (parser != NULL)
  1628. parser->m_errorCode = XML_ERROR_INVALID_ARGUMENT;
  1629. return XML_STATUS_ERROR;
  1630. }
  1631. switch (ps_parsing) {
  1632. case XML_SUSPENDED:
  1633. errorCode = XML_ERROR_SUSPENDED;
  1634. return XML_STATUS_ERROR;
  1635. case XML_FINISHED:
  1636. errorCode = XML_ERROR_FINISHED;
  1637. return XML_STATUS_ERROR;
  1638. case XML_INITIALIZED:
  1639. if (parentParser == NULL && !startParsing(parser)) {
  1640. errorCode = XML_ERROR_NO_MEMORY;
  1641. return XML_STATUS_ERROR;
  1642. }
  1643. default:
  1644. ps_parsing = XML_PARSING;
  1645. }
  1646. if (len == 0) {
  1647. ps_finalBuffer = (XML_Bool)isFinal;
  1648. if (!isFinal)
  1649. return XML_STATUS_OK;
  1650. positionPtr = bufferPtr;
  1651. parseEndPtr = bufferEnd;
  1652. /* If data are left over from last buffer, and we now know that these
  1653. data are the final chunk of input, then we have to check them again
  1654. to detect errors based on that fact.
  1655. */
  1656. errorCode = processor(parser, bufferPtr, parseEndPtr, &bufferPtr);
  1657. if (errorCode == XML_ERROR_NONE) {
  1658. switch (ps_parsing) {
  1659. case XML_SUSPENDED:
  1660. XmlUpdatePosition(encoding, positionPtr, bufferPtr, &position);
  1661. positionPtr = bufferPtr;
  1662. return XML_STATUS_SUSPENDED;
  1663. case XML_INITIALIZED:
  1664. case XML_PARSING:
  1665. ps_parsing = XML_FINISHED;
  1666. /* fall through */
  1667. default:
  1668. return XML_STATUS_OK;
  1669. }
  1670. }
  1671. eventEndPtr = eventPtr;
  1672. processor = errorProcessor;
  1673. return XML_STATUS_ERROR;
  1674. }
  1675. #ifndef XML_CONTEXT_BYTES
  1676. else if (bufferPtr == bufferEnd) {
  1677. const char *end;
  1678. int nLeftOver;
  1679. enum XML_Status result;
  1680. /* Detect overflow (a+b > MAX <==> b > MAX-a) */
  1681. if (len > ((XML_Size)-1) / 2 - parseEndByteIndex) {
  1682. errorCode = XML_ERROR_NO_MEMORY;
  1683. eventPtr = eventEndPtr = NULL;
  1684. processor = errorProcessor;
  1685. return XML_STATUS_ERROR;
  1686. }
  1687. parseEndByteIndex += len;
  1688. positionPtr = s;
  1689. ps_finalBuffer = (XML_Bool)isFinal;
  1690. errorCode = processor(parser, s, parseEndPtr = s + len, &end);
  1691. if (errorCode != XML_ERROR_NONE) {
  1692. eventEndPtr = eventPtr;
  1693. processor = errorProcessor;
  1694. return XML_STATUS_ERROR;
  1695. }
  1696. else {
  1697. switch (ps_parsing) {
  1698. case XML_SUSPENDED:
  1699. result = XML_STATUS_SUSPENDED;
  1700. break;
  1701. case XML_INITIALIZED:
  1702. case XML_PARSING:
  1703. if (isFinal) {
  1704. ps_parsing = XML_FINISHED;
  1705. return XML_STATUS_OK;
  1706. }
  1707. /* fall through */
  1708. default:
  1709. result = XML_STATUS_OK;
  1710. }
  1711. }
  1712. XmlUpdatePosition(encoding, positionPtr, end, &position);
  1713. nLeftOver = s + len - end;
  1714. if (nLeftOver) {
  1715. if (buffer == NULL || nLeftOver > bufferLim - buffer) {
  1716. /* avoid _signed_ integer overflow */
  1717. char *temp = NULL;
  1718. const int bytesToAllocate = (int)((unsigned)len * 2U);
  1719. if (bytesToAllocate > 0) {
  1720. temp = (buffer == NULL
  1721. ? (char *)MALLOC(bytesToAllocate)
  1722. : (char *)REALLOC(buffer, bytesToAllocate));
  1723. }
  1724. if (temp == NULL) {
  1725. errorCode = XML_ERROR_NO_MEMORY;
  1726. eventPtr = eventEndPtr = NULL;
  1727. processor = errorProcessor;
  1728. return XML_STATUS_ERROR;
  1729. }
  1730. buffer = temp;
  1731. bufferLim = buffer + bytesToAllocate;
  1732. }
  1733. memcpy(buffer, end, nLeftOver);
  1734. }
  1735. bufferPtr = buffer;
  1736. bufferEnd = buffer + nLeftOver;
  1737. positionPtr = bufferPtr;
  1738. parseEndPtr = bufferEnd;
  1739. eventPtr = bufferPtr;
  1740. eventEndPtr = bufferPtr;
  1741. return result;
  1742. }
  1743. #endif /* not defined XML_CONTEXT_BYTES */
  1744. else {
  1745. void *buff = XML_GetBuffer(parser, len);
  1746. if (buff == NULL)
  1747. return XML_STATUS_ERROR;
  1748. else {
  1749. memcpy(buff, s, len);
  1750. return XML_ParseBuffer(parser, len, isFinal);
  1751. }
  1752. }
  1753. }
  1754. enum XML_Status XMLCALL
  1755. XML_ParseBuffer(XML_Parser parser, int len, int isFinal)
  1756. {
  1757. const char *start;
  1758. enum XML_Status result = XML_STATUS_OK;
  1759. if (parser == NULL)
  1760. return XML_STATUS_ERROR;
  1761. switch (ps_parsing) {
  1762. case XML_SUSPENDED:
  1763. errorCode = XML_ERROR_SUSPENDED;
  1764. return XML_STATUS_ERROR;
  1765. case XML_FINISHED:
  1766. errorCode = XML_ERROR_FINISHED;
  1767. return XML_STATUS_ERROR;
  1768. case XML_INITIALIZED:
  1769. if (parentParser == NULL && !startParsing(parser)) {
  1770. errorCode = XML_ERROR_NO_MEMORY;
  1771. return XML_STATUS_ERROR;
  1772. }
  1773. default:
  1774. ps_parsing = XML_PARSING;
  1775. }
  1776. start = bufferPtr;
  1777. positionPtr = start;
  1778. bufferEnd += len;
  1779. parseEndPtr = bufferEnd;
  1780. parseEndByteIndex += len;
  1781. ps_finalBuffer = (XML_Bool)isFinal;
  1782. errorCode = processor(parser, start, parseEndPtr, &bufferPtr);
  1783. if (errorCode != XML_ERROR_NONE) {
  1784. eventEndPtr = eventPtr;
  1785. processor = errorProcessor;
  1786. return XML_STATUS_ERROR;
  1787. }
  1788. else {
  1789. switch (ps_parsing) {
  1790. case XML_SUSPENDED:
  1791. result = XML_STATUS_SUSPENDED;
  1792. break;
  1793. case XML_INITIALIZED:
  1794. case XML_PARSING:
  1795. if (isFinal) {
  1796. ps_parsing = XML_FINISHED;
  1797. return result;
  1798. }
  1799. default: ; /* should not happen */
  1800. }
  1801. }
  1802. XmlUpdatePosition(encoding, positionPtr, bufferPtr, &position);
  1803. positionPtr = bufferPtr;
  1804. return result;
  1805. }
  1806. void * XMLCALL
  1807. XML_GetBuffer(XML_Parser parser, int len)
  1808. {
  1809. if (parser == NULL)
  1810. return NULL;
  1811. if (len < 0) {
  1812. errorCode = XML_ERROR_NO_MEMORY;
  1813. return NULL;
  1814. }
  1815. switch (ps_parsing) {
  1816. case XML_SUSPENDED:
  1817. errorCode = XML_ERROR_SUSPENDED;
  1818. return NULL;
  1819. case XML_FINISHED:
  1820. errorCode = XML_ERROR_FINISHED;
  1821. return NULL;
  1822. default: ;
  1823. }
  1824. if (len > bufferLim - bufferEnd) {
  1825. #ifdef XML_CONTEXT_BYTES
  1826. int keep;
  1827. #endif /* defined XML_CONTEXT_BYTES */
  1828. /* Do not invoke signed arithmetic overflow: */
  1829. int neededSize = (int) ((unsigned)len + (unsigned)(bufferEnd - bufferPtr));
  1830. if (neededSize < 0) {
  1831. errorCode = XML_ERROR_NO_MEMORY;
  1832. return NULL;
  1833. }
  1834. #ifdef XML_CONTEXT_BYTES
  1835. keep = (int)(bufferPtr - buffer);
  1836. if (keep > XML_CONTEXT_BYTES)
  1837. keep = XML_CONTEXT_BYTES;
  1838. neededSize += keep;
  1839. #endif /* defined XML_CONTEXT_BYTES */
  1840. if (neededSize <= bufferLim - buffer) {
  1841. #ifdef XML_CONTEXT_BYTES
  1842. if (keep < bufferPtr - buffer) {
  1843. int offset = (int)(bufferPtr - buffer) - keep;
  1844. memmove(buffer, &buffer[offset], bufferEnd - bufferPtr + keep);
  1845. bufferEnd -= offset;
  1846. bufferPtr -= offset;
  1847. }
  1848. #else
  1849. memmove(buffer, bufferPtr, bufferEnd - bufferPtr);
  1850. bufferEnd = buffer + (bufferEnd - bufferPtr);
  1851. bufferPtr = buffer;
  1852. #endif /* not defined XML_CONTEXT_BYTES */
  1853. }
  1854. else {
  1855. char *newBuf;
  1856. int bufferSize = (int)(bufferLim - bufferPtr);
  1857. if (bufferSize == 0)
  1858. bufferSize = INIT_BUFFER_SIZE;
  1859. do {
  1860. /* Do not invoke signed arithmetic overflow: */
  1861. bufferSize = (int) (2U * (unsigned) bufferSize);
  1862. } while (bufferSize < neededSize && bufferSize > 0);
  1863. if (bufferSize <= 0) {
  1864. errorCode = XML_ERROR_NO_MEMORY;
  1865. return NULL;
  1866. }
  1867. newBuf = (char *)MALLOC(bufferSize);
  1868. if (newBuf == 0) {
  1869. errorCode = XML_ERROR_NO_MEMORY;
  1870. return NULL;
  1871. }
  1872. bufferLim = newBuf + bufferSize;
  1873. #ifdef XML_CONTEXT_BYTES
  1874. if (bufferPtr) {
  1875. int keep = (int)(bufferPtr - buffer);
  1876. if (keep > XML_CONTEXT_BYTES)
  1877. keep = XML_CONTEXT_BYTES;
  1878. memcpy(newBuf, &bufferPtr[-keep], bufferEnd - bufferPtr + keep);
  1879. FREE(buffer);
  1880. buffer = newBuf;
  1881. bufferEnd = buffer + (bufferEnd - bufferPtr) + keep;
  1882. bufferPtr = buffer + keep;
  1883. }
  1884. else {
  1885. bufferEnd = newBuf + (bufferEnd - bufferPtr);
  1886. bufferPtr = buffer = newBuf;
  1887. }
  1888. #else
  1889. if (bufferPtr) {
  1890. memcpy(newBuf, bufferPtr, bufferEnd - bufferPtr);
  1891. FREE(buffer);
  1892. }
  1893. bufferEnd = newBuf + (bufferEnd - bufferPtr);
  1894. bufferPtr = buffer = newBuf;
  1895. #endif /* not defined XML_CONTEXT_BYTES */
  1896. }
  1897. eventPtr = eventEndPtr = NULL;
  1898. positionPtr = NULL;
  1899. }
  1900. return bufferEnd;
  1901. }
  1902. enum XML_Status XMLCALL
  1903. XML_StopParser(XML_Parser parser, XML_Bool resumable)
  1904. {
  1905. if (parser == NULL)
  1906. return XML_STATUS_ERROR;
  1907. switch (ps_parsing) {
  1908. case XML_SUSPENDED:
  1909. if (resumable) {
  1910. errorCode = XML_ERROR_SUSPENDED;
  1911. return XML_STATUS_ERROR;
  1912. }
  1913. ps_parsing = XML_FINISHED;
  1914. break;
  1915. case XML_FINISHED:
  1916. errorCode = XML_ERROR_FINISHED;
  1917. return XML_STATUS_ERROR;
  1918. default:
  1919. if (resumable) {
  1920. #ifdef XML_DTD
  1921. if (isParamEntity) {
  1922. errorCode = XML_ERROR_SUSPEND_PE;
  1923. return XML_STATUS_ERROR;
  1924. }
  1925. #endif
  1926. ps_parsing = XML_SUSPENDED;
  1927. }
  1928. else
  1929. ps_parsing = XML_FINISHED;
  1930. }
  1931. return XML_STATUS_OK;
  1932. }
  1933. enum XML_Status XMLCALL
  1934. XML_ResumeParser(XML_Parser parser)
  1935. {
  1936. enum XML_Status result = XML_STATUS_OK;
  1937. if (parser == NULL)
  1938. return XML_STATUS_ERROR;
  1939. if (ps_parsing != XML_SUSPENDED) {
  1940. errorCode = XML_ERROR_NOT_SUSPENDED;
  1941. return XML_STATUS_ERROR;
  1942. }
  1943. ps_parsing = XML_PARSING;
  1944. errorCode = processor(parser, bufferPtr, parseEndPtr, &bufferPtr);
  1945. if (errorCode != XML_ERROR_NONE) {
  1946. eventEndPtr = eventPtr;
  1947. processor = errorProcessor;
  1948. return XML_STATUS_ERROR;
  1949. }
  1950. else {
  1951. switch (ps_parsing) {
  1952. case XML_SUSPENDED:
  1953. result = XML_STATUS_SUSPENDED;
  1954. break;
  1955. case XML_INITIALIZED:
  1956. case XML_PARSING:
  1957. if (ps_finalBuffer) {
  1958. ps_parsing = XML_FINISHED;
  1959. return result;
  1960. }
  1961. default: ;
  1962. }
  1963. }
  1964. XmlUpdatePosition(encoding, positionPtr, bufferPtr, &position);
  1965. positionPtr = bufferPtr;
  1966. return result;
  1967. }
  1968. void XMLCALL
  1969. XML_GetParsingStatus(XML_Parser parser, XML_ParsingStatus *status)
  1970. {
  1971. if (parser == NULL)
  1972. return;
  1973. assert(status != NULL);
  1974. *status = parser->m_parsingStatus;
  1975. }
  1976. enum XML_Error XMLCALL
  1977. XML_GetErrorCode(XML_Parser parser)
  1978. {
  1979. if (parser == NULL)
  1980. return XML_ERROR_INVALID_ARGUMENT;
  1981. return errorCode;
  1982. }
  1983. XML_Index XMLCALL
  1984. XML_GetCurrentByteIndex(XML_Parser parser)
  1985. {
  1986. if (parser == NULL)
  1987. return -1;
  1988. if (eventPtr)
  1989. return (XML_Index)(parseEndByteIndex - (parseEndPtr - eventPtr));
  1990. return -1;
  1991. }
  1992. int XMLCALL
  1993. XML_GetCurrentByteCount(XML_Parser parser)
  1994. {
  1995. if (parser == NULL)
  1996. return 0;
  1997. if (eventEndPtr && eventPtr)
  1998. return (int)(eventEndPtr - eventPtr);
  1999. return 0;
  2000. }
  2001. const char * XMLCALL
  2002. XML_GetInputContext(XML_Parser parser, int *offset, int *size)
  2003. {
  2004. #ifdef XML_CONTEXT_BYTES
  2005. if (parser == NULL)
  2006. return NULL;
  2007. if (eventPtr && buffer) {
  2008. if (offset != NULL)
  2009. *offset = (int)(eventPtr - buffer);
  2010. if (size != NULL)
  2011. *size = (int)(bufferEnd - buffer);
  2012. return buffer;
  2013. }
  2014. #else
  2015. (void)parser;
  2016. (void)offset;
  2017. (void)size;
  2018. #endif /* defined XML_CONTEXT_BYTES */
  2019. return (char *) 0;
  2020. }
  2021. XML_Size XMLCALL
  2022. XML_GetCurrentLineNumber(XML_Parser parser)
  2023. {
  2024. if (parser == NULL)
  2025. return 0;
  2026. if (eventPtr && eventPtr >= positionPtr) {
  2027. XmlUpdatePosition(encoding, positionPtr, eventPtr, &position);
  2028. positionPtr = eventPtr;
  2029. }
  2030. return position.lineNumber + 1;
  2031. }
  2032. XML_Size XMLCALL
  2033. XML_GetCurrentColumnNumber(XML_Parser parser)
  2034. {
  2035. if (parser == NULL)
  2036. return 0;
  2037. if (eventPtr && eventPtr >= positionPtr) {
  2038. XmlUpdatePosition(encoding, positionPtr, eventPtr, &position);
  2039. positionPtr = eventPtr;
  2040. }
  2041. return position.columnNumber;
  2042. }
  2043. void XMLCALL
  2044. XML_FreeContentModel(XML_Parser parser, XML_Content *model)
  2045. {
  2046. if (parser != NULL)
  2047. FREE(model);
  2048. }
  2049. void * XMLCALL
  2050. XML_MemMalloc(XML_Parser parser, size_t size)
  2051. {
  2052. if (parser == NULL)
  2053. return NULL;
  2054. return MALLOC(size);
  2055. }
  2056. void * XMLCALL
  2057. XML_MemRealloc(XML_Parser parser, void *ptr, size_t size)
  2058. {
  2059. if (parser == NULL)
  2060. return NULL;
  2061. return REALLOC(ptr, size);
  2062. }
  2063. void XMLCALL
  2064. XML_MemFree(XML_Parser parser, void *ptr)
  2065. {
  2066. if (parser != NULL)
  2067. FREE(ptr);
  2068. }
  2069. void XMLCALL
  2070. XML_DefaultCurrent(XML_Parser parser)
  2071. {
  2072. if (parser == NULL)
  2073. return;
  2074. if (defaultHandler) {
  2075. if (openInternalEntities)
  2076. reportDefault(parser,
  2077. internalEncoding,
  2078. openInternalEntities->internalEventPtr,
  2079. openInternalEntities->internalEventEndPtr);
  2080. else
  2081. reportDefault(parser, encoding, eventPtr, eventEndPtr);
  2082. }
  2083. }
  2084. const XML_LChar * XMLCALL
  2085. XML_ErrorString(enum XML_Error code)
  2086. {
  2087. static const XML_LChar* const message[] = {
  2088. 0,
  2089. XML_L("out of memory"),
  2090. XML_L("syntax error"),
  2091. XML_L("no element found"),
  2092. XML_L("not well-formed (invalid token)"),
  2093. XML_L("unclosed token"),
  2094. XML_L("partial character"),
  2095. XML_L("mismatched tag"),
  2096. XML_L("duplicate attribute"),
  2097. XML_L("junk after document element"),
  2098. XML_L("illegal parameter entity reference"),
  2099. XML_L("undefined entity"),
  2100. XML_L("recursive entity reference"),
  2101. XML_L("asynchronous entity"),
  2102. XML_L("reference to invalid character number"),
  2103. XML_L("reference to binary entity"),
  2104. XML_L("reference to external entity in attribute"),
  2105. XML_L("XML or text declaration not at start of entity"),
  2106. XML_L("unknown encoding"),
  2107. XML_L("encoding specified in XML declaration is incorrect"),
  2108. XML_L("unclosed CDATA section"),
  2109. XML_L("error in processing external entity reference"),
  2110. XML_L("document is not standalone"),
  2111. XML_L("unexpected parser state - please send a bug report"),
  2112. XML_L("entity declared in parameter entity"),
  2113. XML_L("requested feature requires XML_DTD support in Expat"),
  2114. XML_L("cannot change setting once parsing has begun"),
  2115. XML_L("unbound prefix"),
  2116. XML_L("must not undeclare prefix"),
  2117. XML_L("incomplete markup in parameter entity"),
  2118. XML_L("XML declaration not well-formed"),
  2119. XML_L("text declaration not well-formed"),
  2120. XML_L("illegal character(s) in public id"),
  2121. XML_L("parser suspended"),
  2122. XML_L("parser not suspended"),
  2123. XML_L("parsing aborted"),
  2124. XML_L("parsing finished"),
  2125. XML_L("cannot suspend in external parameter entity"),
  2126. XML_L("reserved prefix (xml) must not be undeclared or bound to another namespace name"),
  2127. XML_L("reserved prefix (xmlns) must not be declared or undeclared"),
  2128. XML_L("prefix must not be bound to one of the reserved namespace names")
  2129. };
  2130. if (code > 0 && code < sizeof(message)/sizeof(message[0]))
  2131. return message[code];
  2132. return NULL;
  2133. }
  2134. const XML_LChar * XMLCALL
  2135. XML_ExpatVersion(void) {
  2136. /* V1 is used to string-ize the version number. However, it would
  2137. string-ize the actual version macro *names* unless we get them
  2138. substituted before being passed to V1. CPP is defined to expand
  2139. a macro, then rescan for more expansions. Thus, we use V2 to expand
  2140. the version macros, then CPP will expand the resulting V1() macro
  2141. with the correct numerals. */
  2142. /* ### I'm assuming cpp is portable in this respect... */
  2143. #define V1(a,b,c) XML_L(#a)XML_L(".")XML_L(#b)XML_L(".")XML_L(#c)
  2144. #define V2(a,b,c) XML_L("expat_")V1(a,b,c)
  2145. return V2(XML_MAJOR_VERSION, XML_MINOR_VERSION, XML_MICRO_VERSION);
  2146. #undef V1
  2147. #undef V2
  2148. }
  2149. XML_Expat_Version XMLCALL
  2150. XML_ExpatVersionInfo(void)
  2151. {
  2152. XML_Expat_Version version;
  2153. version.major = XML_MAJOR_VERSION;
  2154. version.minor = XML_MINOR_VERSION;
  2155. version.micro = XML_MICRO_VERSION;
  2156. return version;
  2157. }
  2158. const XML_Feature * XMLCALL
  2159. XML_GetFeatureList(void)
  2160. {
  2161. static const XML_Feature features[] = {
  2162. {XML_FEATURE_SIZEOF_XML_CHAR, XML_L("sizeof(XML_Char)"),
  2163. sizeof(XML_Char)},
  2164. {XML_FEATURE_SIZEOF_XML_LCHAR, XML_L("sizeof(XML_LChar)"),
  2165. sizeof(XML_LChar)},
  2166. #ifdef XML_UNICODE
  2167. {XML_FEATURE_UNICODE, XML_L("XML_UNICODE"), 0},
  2168. #endif
  2169. #ifdef XML_UNICODE_WCHAR_T
  2170. {XML_FEATURE_UNICODE_WCHAR_T, XML_L("XML_UNICODE_WCHAR_T"), 0},
  2171. #endif
  2172. #ifdef XML_DTD
  2173. {XML_FEATURE_DTD, XML_L("XML_DTD"), 0},
  2174. #endif
  2175. #ifdef XML_CONTEXT_BYTES
  2176. {XML_FEATURE_CONTEXT_BYTES, XML_L("XML_CONTEXT_BYTES"),
  2177. XML_CONTEXT_BYTES},
  2178. #endif
  2179. #ifdef XML_MIN_SIZE
  2180. {XML_FEATURE_MIN_SIZE, XML_L("XML_MIN_SIZE"), 0},
  2181. #endif
  2182. #ifdef XML_NS
  2183. {XML_FEATURE_NS, XML_L("XML_NS"), 0},
  2184. #endif
  2185. #ifdef XML_LARGE_SIZE
  2186. {XML_FEATURE_LARGE_SIZE, XML_L("XML_LARGE_SIZE"), 0},
  2187. #endif
  2188. #ifdef XML_ATTR_INFO
  2189. {XML_FEATURE_ATTR_INFO, XML_L("XML_ATTR_INFO"), 0},
  2190. #endif
  2191. {XML_FEATURE_END, NULL, 0}
  2192. };
  2193. return features;
  2194. }
  2195. /* Initially tag->rawName always points into the parse buffer;
  2196. for those TAG instances opened while the current parse buffer was
  2197. processed, and not yet closed, we need to store tag->rawName in a more
  2198. permanent location, since the parse buffer is about to be discarded.
  2199. */
  2200. static XML_Bool
  2201. storeRawNames(XML_Parser parser)
  2202. {
  2203. TAG *tag = tagStack;
  2204. while (tag) {
  2205. int bufSize;
  2206. int nameLen = sizeof(XML_Char) * (tag->name.strLen + 1);
  2207. char *rawNameBuf = tag->buf + nameLen;
  2208. /* Stop if already stored. Since tagStack is a stack, we can stop
  2209. at the first entry that has already been copied; everything
  2210. below it in the stack is already been accounted for in a
  2211. previous call to this function.
  2212. */
  2213. if (tag->rawName == rawNameBuf)
  2214. break;
  2215. /* For re-use purposes we need to ensure that the
  2216. size of tag->buf is a multiple of sizeof(XML_Char).
  2217. */
  2218. bufSize = nameLen + ROUND_UP(tag->rawNameLength, sizeof(XML_Char));
  2219. if (bufSize > tag->bufEnd - tag->buf) {
  2220. char *temp = (char *)REALLOC(tag->buf, bufSize);
  2221. if (temp == NULL)
  2222. return XML_FALSE;
  2223. /* if tag->name.str points to tag->buf (only when namespace
  2224. processing is off) then we have to update it
  2225. */
  2226. if (tag->name.str == (XML_Char *)tag->buf)
  2227. tag->name.str = (XML_Char *)temp;
  2228. /* if tag->name.localPart is set (when namespace processing is on)
  2229. then update it as well, since it will always point into tag->buf
  2230. */
  2231. if (tag->name.localPart)
  2232. tag->name.localPart = (XML_Char *)temp + (tag->name.localPart -
  2233. (XML_Char *)tag->buf);
  2234. tag->buf = temp;
  2235. tag->bufEnd = temp + bufSize;
  2236. rawNameBuf = temp + nameLen;
  2237. }
  2238. memcpy(rawNameBuf, tag->rawName, tag->rawNameLength);
  2239. tag->rawName = rawNameBuf;
  2240. tag = tag->parent;
  2241. }
  2242. return XML_TRUE;
  2243. }
  2244. static enum XML_Error PTRCALL
  2245. contentProcessor(XML_Parser parser,
  2246. const char *start,
  2247. const char *end,
  2248. const char **endPtr)
  2249. {
  2250. enum XML_Error result = doContent(parser, 0, encoding, start, end,
  2251. endPtr, (XML_Bool)!ps_finalBuffer);
  2252. if (result == XML_ERROR_NONE) {
  2253. if (!storeRawNames(parser))
  2254. return XML_ERROR_NO_MEMORY;
  2255. }
  2256. return result;
  2257. }
  2258. static enum XML_Error PTRCALL
  2259. externalEntityInitProcessor(XML_Parser parser,
  2260. const char *start,
  2261. const char *end,
  2262. const char **endPtr)
  2263. {
  2264. enum XML_Error result = initializeEncoding(parser);
  2265. if (result != XML_ERROR_NONE)
  2266. return result;
  2267. processor = externalEntityInitProcessor2;
  2268. return externalEntityInitProcessor2(parser, start, end, endPtr);
  2269. }
  2270. static enum XML_Error PTRCALL
  2271. externalEntityInitProcessor2(XML_Parser parser,
  2272. const char *start,
  2273. const char *end,
  2274. const char **endPtr)
  2275. {
  2276. const char *next = start; /* XmlContentTok doesn't always set the last arg */
  2277. int tok = XmlContentTok(encoding, start, end, &next);
  2278. switch (tok) {
  2279. case XML_TOK_BOM:
  2280. /* If we are at the end of the buffer, this would cause the next stage,
  2281. i.e. externalEntityInitProcessor3, to pass control directly to
  2282. doContent (by detecting XML_TOK_NONE) without processing any xml text
  2283. declaration - causing the error XML_ERROR_MISPLACED_XML_PI in doContent.
  2284. */
  2285. if (next == end && !ps_finalBuffer) {
  2286. *endPtr = next;
  2287. return XML_ERROR_NONE;
  2288. }
  2289. start = next;
  2290. break;
  2291. case XML_TOK_PARTIAL:
  2292. if (!ps_finalBuffer) {
  2293. *endPtr = start;
  2294. return XML_ERROR_NONE;
  2295. }
  2296. eventPtr = start;
  2297. return XML_ERROR_UNCLOSED_TOKEN;
  2298. case XML_TOK_PARTIAL_CHAR:
  2299. if (!ps_finalBuffer) {
  2300. *endPtr = start;
  2301. return XML_ERROR_NONE;
  2302. }
  2303. eventPtr = start;
  2304. return XML_ERROR_PARTIAL_CHAR;
  2305. }
  2306. processor = externalEntityInitProcessor3;
  2307. return externalEntityInitProcessor3(parser, start, end, endPtr);
  2308. }
  2309. static enum XML_Error PTRCALL
  2310. externalEntityInitProcessor3(XML_Parser parser,
  2311. const char *start,
  2312. const char *end,
  2313. const char **endPtr)
  2314. {
  2315. int tok;
  2316. const char *next = start; /* XmlContentTok doesn't always set the last arg */
  2317. eventPtr = start;
  2318. tok = XmlContentTok(encoding, start, end, &next);
  2319. eventEndPtr = next;
  2320. switch (tok) {
  2321. case XML_TOK_XML_DECL:
  2322. {
  2323. enum XML_Error result;
  2324. result = processXmlDecl(parser, 1, start, next);
  2325. if (result != XML_ERROR_NONE)
  2326. return result;
  2327. switch (ps_parsing) {
  2328. case XML_SUSPENDED:
  2329. *endPtr = next;
  2330. return XML_ERROR_NONE;
  2331. case XML_FINISHED:
  2332. return XML_ERROR_ABORTED;
  2333. default:
  2334. start = next;
  2335. }
  2336. }
  2337. break;
  2338. case XML_TOK_PARTIAL:
  2339. if (!ps_finalBuffer) {
  2340. *endPtr = start;
  2341. return XML_ERROR_NONE;
  2342. }
  2343. return XML_ERROR_UNCLOSED_TOKEN;
  2344. case XML_TOK_PARTIAL_CHAR:
  2345. if (!ps_finalBuffer) {
  2346. *endPtr = start;
  2347. return XML_ERROR_NONE;
  2348. }
  2349. return XML_ERROR_PARTIAL_CHAR;
  2350. }
  2351. processor = externalEntityContentProcessor;
  2352. tagLevel = 1;
  2353. return externalEntityContentProcessor(parser, start, end, endPtr);
  2354. }
  2355. static enum XML_Error PTRCALL
  2356. externalEntityContentProcessor(XML_Parser parser,
  2357. const char *start,
  2358. const char *end,
  2359. const char **endPtr)
  2360. {
  2361. enum XML_Error result = doContent(parser, 1, encoding, start, end,
  2362. endPtr, (XML_Bool)!ps_finalBuffer);
  2363. if (result == XML_ERROR_NONE) {
  2364. if (!storeRawNames(parser))
  2365. return XML_ERROR_NO_MEMORY;
  2366. }
  2367. return result;
  2368. }
  2369. static enum XML_Error
  2370. doContent(XML_Parser parser,
  2371. int startTagLevel,
  2372. const ENCODING *enc,
  2373. const char *s,
  2374. const char *end,
  2375. const char **nextPtr,
  2376. XML_Bool haveMore)
  2377. {
  2378. /* save one level of indirection */
  2379. DTD * const dtd = _dtd;
  2380. const char **eventPP;
  2381. const char **eventEndPP;
  2382. if (enc == encoding) {
  2383. eventPP = &eventPtr;
  2384. eventEndPP = &eventEndPtr;
  2385. }
  2386. else {
  2387. eventPP = &(openInternalEntities->internalEventPtr);
  2388. eventEndPP = &(openInternalEntities->internalEventEndPtr);
  2389. }
  2390. *eventPP = s;
  2391. for (;;) {
  2392. const char *next = s; /* XmlContentTok doesn't always set the last arg */
  2393. int tok = XmlContentTok(enc, s, end, &next);
  2394. *eventEndPP = next;
  2395. switch (tok) {
  2396. case XML_TOK_TRAILING_CR:
  2397. if (haveMore) {
  2398. *nextPtr = s;
  2399. return XML_ERROR_NONE;
  2400. }
  2401. *eventEndPP = end;
  2402. if (characterDataHandler) {
  2403. XML_Char c = 0xA;
  2404. characterDataHandler(handlerArg, &c, 1);
  2405. }
  2406. else if (defaultHandler)
  2407. reportDefault(parser, enc, s, end);
  2408. /* We are at the end of the final buffer, should we check for
  2409. XML_SUSPENDED, XML_FINISHED?
  2410. */
  2411. if (startTagLevel == 0)
  2412. return XML_ERROR_NO_ELEMENTS;
  2413. if (tagLevel != startTagLevel)
  2414. return XML_ERROR_ASYNC_ENTITY;
  2415. *nextPtr = end;
  2416. return XML_ERROR_NONE;
  2417. case XML_TOK_NONE:
  2418. if (haveMore) {
  2419. *nextPtr = s;
  2420. return XML_ERROR_NONE;
  2421. }
  2422. if (startTagLevel > 0) {
  2423. if (tagLevel != startTagLevel)
  2424. return XML_ERROR_ASYNC_ENTITY;
  2425. *nextPtr = s;
  2426. return XML_ERROR_NONE;
  2427. }
  2428. return XML_ERROR_NO_ELEMENTS;
  2429. case XML_TOK_INVALID:
  2430. *eventPP = next;
  2431. return XML_ERROR_INVALID_TOKEN;
  2432. case XML_TOK_PARTIAL:
  2433. if (haveMore) {
  2434. *nextPtr = s;
  2435. return XML_ERROR_NONE;
  2436. }
  2437. return XML_ERROR_UNCLOSED_TOKEN;
  2438. case XML_TOK_PARTIAL_CHAR:
  2439. if (haveMore) {
  2440. *nextPtr = s;
  2441. return XML_ERROR_NONE;
  2442. }
  2443. return XML_ERROR_PARTIAL_CHAR;
  2444. case XML_TOK_ENTITY_REF:
  2445. {
  2446. const XML_Char *name;
  2447. ENTITY *entity;
  2448. XML_Char ch = (XML_Char) XmlPredefinedEntityName(enc,
  2449. s + enc->minBytesPerChar,
  2450. next - enc->minBytesPerChar);
  2451. if (ch) {
  2452. if (characterDataHandler)
  2453. characterDataHandler(handlerArg, &ch, 1);
  2454. else if (defaultHandler)
  2455. reportDefault(parser, enc, s, next);
  2456. break;
  2457. }
  2458. name = poolStoreString(&dtd->pool, enc,
  2459. s + enc->minBytesPerChar,
  2460. next - enc->minBytesPerChar);
  2461. if (!name)
  2462. return XML_ERROR_NO_MEMORY;
  2463. entity = (ENTITY *)lookup(parser, &dtd->generalEntities, name, 0);
  2464. poolDiscard(&dtd->pool);
  2465. /* First, determine if a check for an existing declaration is needed;
  2466. if yes, check that the entity exists, and that it is internal,
  2467. otherwise call the skipped entity or default handler.
  2468. */
  2469. if (!dtd->hasParamEntityRefs || dtd->standalone) {
  2470. if (!entity)
  2471. return XML_ERROR_UNDEFINED_ENTITY;
  2472. else if (!entity->is_internal)
  2473. return XML_ERROR_ENTITY_DECLARED_IN_PE;
  2474. }
  2475. else if (!entity) {
  2476. if (skippedEntityHandler)
  2477. skippedEntityHandler(handlerArg, name, 0);
  2478. else if (defaultHandler)
  2479. reportDefault(parser, enc, s, next);
  2480. break;
  2481. }
  2482. if (entity->open)
  2483. return XML_ERROR_RECURSIVE_ENTITY_REF;
  2484. if (entity->notation)
  2485. return XML_ERROR_BINARY_ENTITY_REF;
  2486. if (entity->textPtr) {
  2487. enum XML_Error result;
  2488. if (!defaultExpandInternalEntities) {
  2489. if (skippedEntityHandler)
  2490. skippedEntityHandler(handlerArg, entity->name, 0);
  2491. else if (defaultHandler)
  2492. reportDefault(parser, enc, s, next);
  2493. break;
  2494. }
  2495. result = processInternalEntity(parser, entity, XML_FALSE);
  2496. if (result != XML_ERROR_NONE)
  2497. return result;
  2498. }
  2499. else if (externalEntityRefHandler) {
  2500. const XML_Char *context;
  2501. entity->open = XML_TRUE;
  2502. context = getContext(parser);
  2503. entity->open = XML_FALSE;
  2504. if (!context)
  2505. return XML_ERROR_NO_MEMORY;
  2506. if (!externalEntityRefHandler(externalEntityRefHandlerArg,
  2507. context,
  2508. entity->base,
  2509. entity->systemId,
  2510. entity->publicId))
  2511. return XML_ERROR_EXTERNAL_ENTITY_HANDLING;
  2512. poolDiscard(&tempPool);
  2513. }
  2514. else if (defaultHandler)
  2515. reportDefault(parser, enc, s, next);
  2516. break;
  2517. }
  2518. case XML_TOK_START_TAG_NO_ATTS:
  2519. /* fall through */
  2520. case XML_TOK_START_TAG_WITH_ATTS:
  2521. {
  2522. TAG *tag;
  2523. enum XML_Error result;
  2524. XML_Char *toPtr;
  2525. if (freeTagList) {
  2526. tag = freeTagList;
  2527. freeTagList = freeTagList->parent;
  2528. }
  2529. else {
  2530. tag = (TAG *)MALLOC(sizeof(TAG));
  2531. if (!tag)
  2532. return XML_ERROR_NO_MEMORY;
  2533. tag->buf = (char *)MALLOC(INIT_TAG_BUF_SIZE);
  2534. if (!tag->buf) {
  2535. FREE(tag);
  2536. return XML_ERROR_NO_MEMORY;
  2537. }
  2538. tag->bufEnd = tag->buf + INIT_TAG_BUF_SIZE;
  2539. }
  2540. tag->bindings = NULL;
  2541. tag->parent = tagStack;
  2542. tagStack = tag;
  2543. tag->name.localPart = NULL;
  2544. tag->name.prefix = NULL;
  2545. tag->rawName = s + enc->minBytesPerChar;
  2546. tag->rawNameLength = XmlNameLength(enc, tag->rawName);
  2547. ++tagLevel;
  2548. {
  2549. const char *rawNameEnd = tag->rawName + tag->rawNameLength;
  2550. const char *fromPtr = tag->rawName;
  2551. toPtr = (XML_Char *)tag->buf;
  2552. for (;;) {
  2553. int bufSize;
  2554. int convLen;
  2555. const enum XML_Convert_Result convert_res = XmlConvert(enc,
  2556. &fromPtr, rawNameEnd,
  2557. (ICHAR **)&toPtr, (ICHAR *)tag->bufEnd - 1);
  2558. convLen = (int)(toPtr - (XML_Char *)tag->buf);
  2559. if ((fromPtr >= rawNameEnd) || (convert_res == XML_CONVERT_INPUT_INCOMPLETE)) {
  2560. tag->name.strLen = convLen;
  2561. break;
  2562. }
  2563. bufSize = (int)(tag->bufEnd - tag->buf) << 1;
  2564. {
  2565. char *temp = (char *)REALLOC(tag->buf, bufSize);
  2566. if (temp == NULL)
  2567. return XML_ERROR_NO_MEMORY;
  2568. tag->buf = temp;
  2569. tag->bufEnd = temp + bufSize;
  2570. toPtr = (XML_Char *)temp + convLen;
  2571. }
  2572. }
  2573. }
  2574. tag->name.str = (XML_Char *)tag->buf;
  2575. *toPtr = XML_T('\0');
  2576. result = storeAtts(parser, enc, s, &(tag->name), &(tag->bindings));
  2577. if (result)
  2578. return result;
  2579. if (startElementHandler)
  2580. startElementHandler(handlerArg, tag->name.str,
  2581. (const XML_Char **)atts);
  2582. else if (defaultHandler)
  2583. reportDefault(parser, enc, s, next);
  2584. poolClear(&tempPool);
  2585. break;
  2586. }
  2587. case XML_TOK_EMPTY_ELEMENT_NO_ATTS:
  2588. /* fall through */
  2589. case XML_TOK_EMPTY_ELEMENT_WITH_ATTS:
  2590. {
  2591. const char *rawName = s + enc->minBytesPerChar;
  2592. enum XML_Error result;
  2593. BINDING *bindings = NULL;
  2594. XML_Bool noElmHandlers = XML_TRUE;
  2595. TAG_NAME name;
  2596. name.str = poolStoreString(&tempPool, enc, rawName,
  2597. rawName + XmlNameLength(enc, rawName));
  2598. if (!name.str)
  2599. return XML_ERROR_NO_MEMORY;
  2600. poolFinish(&tempPool);
  2601. result = storeAtts(parser, enc, s, &name, &bindings);
  2602. if (result != XML_ERROR_NONE) {
  2603. freeBindings(parser, bindings);
  2604. return result;
  2605. }
  2606. poolFinish(&tempPool);
  2607. if (startElementHandler) {
  2608. startElementHandler(handlerArg, name.str, (const XML_Char **)atts);
  2609. noElmHandlers = XML_FALSE;
  2610. }
  2611. if (endElementHandler) {
  2612. if (startElementHandler)
  2613. *eventPP = *eventEndPP;
  2614. endElementHandler(handlerArg, name.str);
  2615. noElmHandlers = XML_FALSE;
  2616. }
  2617. if (noElmHandlers && defaultHandler)
  2618. reportDefault(parser, enc, s, next);
  2619. poolClear(&tempPool);
  2620. freeBindings(parser, bindings);
  2621. }
  2622. if (tagLevel == 0)
  2623. return epilogProcessor(parser, next, end, nextPtr);
  2624. break;
  2625. case XML_TOK_END_TAG:
  2626. if (tagLevel == startTagLevel)
  2627. return XML_ERROR_ASYNC_ENTITY;
  2628. else {
  2629. int len;
  2630. const char *rawName;
  2631. TAG *tag = tagStack;
  2632. tagStack = tag->parent;
  2633. tag->parent = freeTagList;
  2634. freeTagList = tag;
  2635. rawName = s + enc->minBytesPerChar*2;
  2636. len = XmlNameLength(enc, rawName);
  2637. if (len != tag->rawNameLength
  2638. || memcmp(tag->rawName, rawName, len) != 0) {
  2639. *eventPP = rawName;
  2640. return XML_ERROR_TAG_MISMATCH;
  2641. }
  2642. --tagLevel;
  2643. if (endElementHandler) {
  2644. const XML_Char *localPart;
  2645. const XML_Char *prefix;
  2646. XML_Char *uri;
  2647. localPart = tag->name.localPart;
  2648. if (ns && localPart) {
  2649. /* localPart and prefix may have been overwritten in
  2650. tag->name.str, since this points to the binding->uri
  2651. buffer which gets re-used; so we have to add them again
  2652. */
  2653. uri = (XML_Char *)tag->name.str + tag->name.uriLen;
  2654. /* don't need to check for space - already done in storeAtts() */
  2655. while (*localPart) *uri++ = *localPart++;
  2656. prefix = (XML_Char *)tag->name.prefix;
  2657. if (ns_triplets && prefix) {
  2658. *uri++ = namespaceSeparator;
  2659. while (*prefix) *uri++ = *prefix++;
  2660. }
  2661. *uri = XML_T('\0');
  2662. }
  2663. endElementHandler(handlerArg, tag->name.str);
  2664. }
  2665. else if (defaultHandler)
  2666. reportDefault(parser, enc, s, next);
  2667. while (tag->bindings) {
  2668. BINDING *b = tag->bindings;
  2669. if (endNamespaceDeclHandler)
  2670. endNamespaceDeclHandler(handlerArg, b->prefix->name);
  2671. tag->bindings = tag->bindings->nextTagBinding;
  2672. b->nextTagBinding = freeBindingList;
  2673. freeBindingList = b;
  2674. b->prefix->binding = b->prevPrefixBinding;
  2675. }
  2676. if (tagLevel == 0)
  2677. return epilogProcessor(parser, next, end, nextPtr);
  2678. }
  2679. break;
  2680. case XML_TOK_CHAR_REF:
  2681. {
  2682. int n = XmlCharRefNumber(enc, s);
  2683. if (n < 0)
  2684. return XML_ERROR_BAD_CHAR_REF;
  2685. if (characterDataHandler) {
  2686. XML_Char buf[XML_ENCODE_MAX];
  2687. characterDataHandler(handlerArg, buf, XmlEncode(n, (ICHAR *)buf));
  2688. }
  2689. else if (defaultHandler)
  2690. reportDefault(parser, enc, s, next);
  2691. }
  2692. break;
  2693. case XML_TOK_XML_DECL:
  2694. return XML_ERROR_MISPLACED_XML_PI;
  2695. case XML_TOK_DATA_NEWLINE:
  2696. if (characterDataHandler) {
  2697. XML_Char c = 0xA;
  2698. characterDataHandler(handlerArg, &c, 1);
  2699. }
  2700. else if (defaultHandler)
  2701. reportDefault(parser, enc, s, next);
  2702. break;
  2703. case XML_TOK_CDATA_SECT_OPEN:
  2704. {
  2705. enum XML_Error result;
  2706. if (startCdataSectionHandler)
  2707. startCdataSectionHandler(handlerArg);
  2708. #if 0
  2709. /* Suppose you doing a transformation on a document that involves
  2710. changing only the character data. You set up a defaultHandler
  2711. and a characterDataHandler. The defaultHandler simply copies
  2712. characters through. The characterDataHandler does the
  2713. transformation and writes the characters out escaping them as
  2714. necessary. This case will fail to work if we leave out the
  2715. following two lines (because & and < inside CDATA sections will
  2716. be incorrectly escaped).
  2717. However, now we have a start/endCdataSectionHandler, so it seems
  2718. easier to let the user deal with this.
  2719. */
  2720. else if (characterDataHandler)
  2721. characterDataHandler(handlerArg, dataBuf, 0);
  2722. #endif
  2723. else if (defaultHandler)
  2724. reportDefault(parser, enc, s, next);
  2725. result = doCdataSection(parser, enc, &next, end, nextPtr, haveMore);
  2726. if (result != XML_ERROR_NONE)
  2727. return result;
  2728. else if (!next) {
  2729. processor = cdataSectionProcessor;
  2730. return result;
  2731. }
  2732. }
  2733. break;
  2734. case XML_TOK_TRAILING_RSQB:
  2735. if (haveMore) {
  2736. *nextPtr = s;
  2737. return XML_ERROR_NONE;
  2738. }
  2739. if (characterDataHandler) {
  2740. if (MUST_CONVERT(enc, s)) {
  2741. ICHAR *dataPtr = (ICHAR *)dataBuf;
  2742. XmlConvert(enc, &s, end, &dataPtr, (ICHAR *)dataBufEnd);
  2743. characterDataHandler(handlerArg, dataBuf,
  2744. (int)(dataPtr - (ICHAR *)dataBuf));
  2745. }
  2746. else
  2747. characterDataHandler(handlerArg,
  2748. (XML_Char *)s,
  2749. (int)((XML_Char *)end - (XML_Char *)s));
  2750. }
  2751. else if (defaultHandler)
  2752. reportDefault(parser, enc, s, end);
  2753. /* We are at the end of the final buffer, should we check for
  2754. XML_SUSPENDED, XML_FINISHED?
  2755. */
  2756. if (startTagLevel == 0) {
  2757. *eventPP = end;
  2758. return XML_ERROR_NO_ELEMENTS;
  2759. }
  2760. if (tagLevel != startTagLevel) {
  2761. *eventPP = end;
  2762. return XML_ERROR_ASYNC_ENTITY;
  2763. }
  2764. *nextPtr = end;
  2765. return XML_ERROR_NONE;
  2766. case XML_TOK_DATA_CHARS:
  2767. {
  2768. XML_CharacterDataHandler charDataHandler = characterDataHandler;
  2769. if (charDataHandler) {
  2770. if (MUST_CONVERT(enc, s)) {
  2771. for (;;) {
  2772. ICHAR *dataPtr = (ICHAR *)dataBuf;
  2773. const enum XML_Convert_Result convert_res = XmlConvert(enc, &s, next, &dataPtr, (ICHAR *)dataBufEnd);
  2774. *eventEndPP = s;
  2775. charDataHandler(handlerArg, dataBuf,
  2776. (int)(dataPtr - (ICHAR *)dataBuf));
  2777. if ((convert_res == XML_CONVERT_COMPLETED) || (convert_res == XML_CONVERT_INPUT_INCOMPLETE))
  2778. break;
  2779. *eventPP = s;
  2780. }
  2781. }
  2782. else
  2783. charDataHandler(handlerArg,
  2784. (XML_Char *)s,
  2785. (int)((XML_Char *)next - (XML_Char *)s));
  2786. }
  2787. else if (defaultHandler)
  2788. reportDefault(parser, enc, s, next);
  2789. }
  2790. break;
  2791. case XML_TOK_PI:
  2792. if (!reportProcessingInstruction(parser, enc, s, next))
  2793. return XML_ERROR_NO_MEMORY;
  2794. break;
  2795. case XML_TOK_COMMENT:
  2796. if (!reportComment(parser, enc, s, next))
  2797. return XML_ERROR_NO_MEMORY;
  2798. break;
  2799. default:
  2800. if (defaultHandler)
  2801. reportDefault(parser, enc, s, next);
  2802. break;
  2803. }
  2804. *eventPP = s = next;
  2805. switch (ps_parsing) {
  2806. case XML_SUSPENDED:
  2807. *nextPtr = next;
  2808. return XML_ERROR_NONE;
  2809. case XML_FINISHED:
  2810. return XML_ERROR_ABORTED;
  2811. default: ;
  2812. }
  2813. }
  2814. /* not reached */
  2815. }
  2816. /* This function does not call free() on the allocated memory, merely
  2817. * moving it to the parser's freeBindingList where it can be freed or
  2818. * reused as appropriate.
  2819. */
  2820. static void
  2821. freeBindings(XML_Parser parser, BINDING *bindings)
  2822. {
  2823. while (bindings) {
  2824. BINDING *b = bindings;
  2825. /* startNamespaceDeclHandler will have been called for this
  2826. * binding in addBindings(), so call the end handler now.
  2827. */
  2828. if (endNamespaceDeclHandler)
  2829. endNamespaceDeclHandler(handlerArg, b->prefix->name);
  2830. bindings = bindings->nextTagBinding;
  2831. b->nextTagBinding = freeBindingList;
  2832. freeBindingList = b;
  2833. b->prefix->binding = b->prevPrefixBinding;
  2834. }
  2835. }
  2836. /* Precondition: all arguments must be non-NULL;
  2837. Purpose:
  2838. - normalize attributes
  2839. - check attributes for well-formedness
  2840. - generate namespace aware attribute names (URI, prefix)
  2841. - build list of attributes for startElementHandler
  2842. - default attributes
  2843. - process namespace declarations (check and report them)
  2844. - generate namespace aware element name (URI, prefix)
  2845. */
  2846. static enum XML_Error
  2847. storeAtts(XML_Parser parser, const ENCODING *enc,
  2848. const char *attStr, TAG_NAME *tagNamePtr,
  2849. BINDING **bindingsPtr)
  2850. {
  2851. DTD * const dtd = _dtd; /* save one level of indirection */
  2852. ELEMENT_TYPE *elementType;
  2853. int nDefaultAtts;
  2854. const XML_Char **appAtts; /* the attribute list for the application */
  2855. int attIndex = 0;
  2856. int prefixLen;
  2857. int i;
  2858. int n;
  2859. XML_Char *uri;
  2860. int nPrefixes = 0;
  2861. BINDING *binding;
  2862. const XML_Char *localPart;
  2863. /* lookup the element type name */
  2864. elementType = (ELEMENT_TYPE *)lookup(parser, &dtd->elementTypes, tagNamePtr->str,0);
  2865. if (!elementType) {
  2866. const XML_Char *name = poolCopyString(&dtd->pool, tagNamePtr->str);
  2867. if (!name)
  2868. return XML_ERROR_NO_MEMORY;
  2869. elementType = (ELEMENT_TYPE *)lookup(parser, &dtd->elementTypes, name,
  2870. sizeof(ELEMENT_TYPE));
  2871. if (!elementType)
  2872. return XML_ERROR_NO_MEMORY;
  2873. if (ns && !setElementTypePrefix(parser, elementType))
  2874. return XML_ERROR_NO_MEMORY;
  2875. }
  2876. nDefaultAtts = elementType->nDefaultAtts;
  2877. /* get the attributes from the tokenizer */
  2878. n = XmlGetAttributes(enc, attStr, attsSize, atts);
  2879. if (n + nDefaultAtts > attsSize) {
  2880. int oldAttsSize = attsSize;
  2881. ATTRIBUTE *temp;
  2882. #ifdef XML_ATTR_INFO
  2883. XML_AttrInfo *temp2;
  2884. #endif
  2885. attsSize = n + nDefaultAtts + INIT_ATTS_SIZE;
  2886. temp = (ATTRIBUTE *)REALLOC((void *)atts, attsSize * sizeof(ATTRIBUTE));
  2887. if (temp == NULL)
  2888. return XML_ERROR_NO_MEMORY;
  2889. atts = temp;
  2890. #ifdef XML_ATTR_INFO
  2891. temp2 = (XML_AttrInfo *)REALLOC((void *)attInfo, attsSize * sizeof(XML_AttrInfo));
  2892. if (temp2 == NULL)
  2893. return XML_ERROR_NO_MEMORY;
  2894. attInfo = temp2;
  2895. #endif
  2896. if (n > oldAttsSize)
  2897. XmlGetAttributes(enc, attStr, n, atts);
  2898. }
  2899. appAtts = (const XML_Char **)atts;
  2900. for (i = 0; i < n; i++) {
  2901. ATTRIBUTE *currAtt = &atts[i];
  2902. #ifdef XML_ATTR_INFO
  2903. XML_AttrInfo *currAttInfo = &attInfo[i];
  2904. #endif
  2905. /* add the name and value to the attribute list */
  2906. ATTRIBUTE_ID *attId = getAttributeId(parser, enc, currAtt->name,
  2907. currAtt->name
  2908. + XmlNameLength(enc, currAtt->name));
  2909. if (!attId)
  2910. return XML_ERROR_NO_MEMORY;
  2911. #ifdef XML_ATTR_INFO
  2912. currAttInfo->nameStart = parseEndByteIndex - (parseEndPtr - currAtt->name);
  2913. currAttInfo->nameEnd = currAttInfo->nameStart +
  2914. XmlNameLength(enc, currAtt->name);
  2915. currAttInfo->valueStart = parseEndByteIndex -
  2916. (parseEndPtr - currAtt->valuePtr);
  2917. currAttInfo->valueEnd = parseEndByteIndex - (parseEndPtr - currAtt->valueEnd);
  2918. #endif
  2919. /* Detect duplicate attributes by their QNames. This does not work when
  2920. namespace processing is turned on and different prefixes for the same
  2921. namespace are used. For this case we have a check further down.
  2922. */
  2923. if ((attId->name)[-1]) {
  2924. if (enc == encoding)
  2925. eventPtr = atts[i].name;
  2926. return XML_ERROR_DUPLICATE_ATTRIBUTE;
  2927. }
  2928. (attId->name)[-1] = 1;
  2929. appAtts[attIndex++] = attId->name;
  2930. if (!atts[i].normalized) {
  2931. enum XML_Error result;
  2932. XML_Bool isCdata = XML_TRUE;
  2933. /* figure out whether declared as other than CDATA */
  2934. if (attId->maybeTokenized) {
  2935. int j;
  2936. for (j = 0; j < nDefaultAtts; j++) {
  2937. if (attId == elementType->defaultAtts[j].id) {
  2938. isCdata = elementType->defaultAtts[j].isCdata;
  2939. break;
  2940. }
  2941. }
  2942. }
  2943. /* normalize the attribute value */
  2944. result = storeAttributeValue(parser, enc, isCdata,
  2945. atts[i].valuePtr, atts[i].valueEnd,
  2946. &tempPool);
  2947. if (result)
  2948. return result;
  2949. appAtts[attIndex] = poolStart(&tempPool);
  2950. poolFinish(&tempPool);
  2951. }
  2952. else {
  2953. /* the value did not need normalizing */
  2954. appAtts[attIndex] = poolStoreString(&tempPool, enc, atts[i].valuePtr,
  2955. atts[i].valueEnd);
  2956. if (appAtts[attIndex] == 0)
  2957. return XML_ERROR_NO_MEMORY;
  2958. poolFinish(&tempPool);
  2959. }
  2960. /* handle prefixed attribute names */
  2961. if (attId->prefix) {
  2962. if (attId->xmlns) {
  2963. /* deal with namespace declarations here */
  2964. enum XML_Error result = addBinding(parser, attId->prefix, attId,
  2965. appAtts[attIndex], bindingsPtr);
  2966. if (result)
  2967. return result;
  2968. --attIndex;
  2969. }
  2970. else {
  2971. /* deal with other prefixed names later */
  2972. attIndex++;
  2973. nPrefixes++;
  2974. (attId->name)[-1] = 2;
  2975. }
  2976. }
  2977. else
  2978. attIndex++;
  2979. }
  2980. /* set-up for XML_GetSpecifiedAttributeCount and XML_GetIdAttributeIndex */
  2981. nSpecifiedAtts = attIndex;
  2982. if (elementType->idAtt && (elementType->idAtt->name)[-1]) {
  2983. for (i = 0; i < attIndex; i += 2)
  2984. if (appAtts[i] == elementType->idAtt->name) {
  2985. idAttIndex = i;
  2986. break;
  2987. }
  2988. }
  2989. else
  2990. idAttIndex = -1;
  2991. /* do attribute defaulting */
  2992. for (i = 0; i < nDefaultAtts; i++) {
  2993. const DEFAULT_ATTRIBUTE *da = elementType->defaultAtts + i;
  2994. if (!(da->id->name)[-1] && da->value) {
  2995. if (da->id->prefix) {
  2996. if (da->id->xmlns) {
  2997. enum XML_Error result = addBinding(parser, da->id->prefix, da->id,
  2998. da->value, bindingsPtr);
  2999. if (result)
  3000. return result;
  3001. }
  3002. else {
  3003. (da->id->name)[-1] = 2;
  3004. nPrefixes++;
  3005. appAtts[attIndex++] = da->id->name;
  3006. appAtts[attIndex++] = da->value;
  3007. }
  3008. }
  3009. else {
  3010. (da->id->name)[-1] = 1;
  3011. appAtts[attIndex++] = da->id->name;
  3012. appAtts[attIndex++] = da->value;
  3013. }
  3014. }
  3015. }
  3016. appAtts[attIndex] = 0;
  3017. /* expand prefixed attribute names, check for duplicates,
  3018. and clear flags that say whether attributes were specified */
  3019. i = 0;
  3020. if (nPrefixes) {
  3021. int j; /* hash table index */
  3022. unsigned long version = nsAttsVersion;
  3023. int nsAttsSize = (int)1 << nsAttsPower;
  3024. /* size of hash table must be at least 2 * (# of prefixed attributes) */
  3025. if ((nPrefixes << 1) >> nsAttsPower) { /* true for nsAttsPower = 0 */
  3026. NS_ATT *temp;
  3027. /* hash table size must also be a power of 2 and >= 8 */
  3028. while (nPrefixes >> nsAttsPower++);
  3029. if (nsAttsPower < 3)
  3030. nsAttsPower = 3;
  3031. nsAttsSize = (int)1 << nsAttsPower;
  3032. temp = (NS_ATT *)REALLOC(nsAtts, nsAttsSize * sizeof(NS_ATT));
  3033. if (!temp)
  3034. return XML_ERROR_NO_MEMORY;
  3035. nsAtts = temp;
  3036. version = 0; /* force re-initialization of nsAtts hash table */
  3037. }
  3038. /* using a version flag saves us from initializing nsAtts every time */
  3039. if (!version) { /* initialize version flags when version wraps around */
  3040. version = INIT_ATTS_VERSION;
  3041. for (j = nsAttsSize; j != 0; )
  3042. nsAtts[--j].version = version;
  3043. }
  3044. nsAttsVersion = --version;
  3045. /* expand prefixed names and check for duplicates */
  3046. for (; i < attIndex; i += 2) {
  3047. const XML_Char *s = appAtts[i];
  3048. if (s[-1] == 2) { /* prefixed */
  3049. ATTRIBUTE_ID *id;
  3050. const BINDING *b;
  3051. unsigned long uriHash;
  3052. struct siphash sip_state;
  3053. struct sipkey sip_key;
  3054. copy_salt_to_sipkey(parser, &sip_key);
  3055. sip24_init(&sip_state, &sip_key);
  3056. ((XML_Char *)s)[-1] = 0; /* clear flag */
  3057. id = (ATTRIBUTE_ID *)lookup(parser, &dtd->attributeIds, s, 0);
  3058. if (!id || !id->prefix)
  3059. return XML_ERROR_NO_MEMORY;
  3060. b = id->prefix->binding;
  3061. if (!b)
  3062. return XML_ERROR_UNBOUND_PREFIX;
  3063. for (j = 0; j < b->uriLen; j++) {
  3064. const XML_Char c = b->uri[j];
  3065. if (!poolAppendChar(&tempPool, c))
  3066. return XML_ERROR_NO_MEMORY;
  3067. }
  3068. sip24_update(&sip_state, b->uri, b->uriLen * sizeof(XML_Char));
  3069. while (*s++ != XML_T(ASCII_COLON))
  3070. ;
  3071. sip24_update(&sip_state, s, keylen(s) * sizeof(XML_Char));
  3072. do { /* copies null terminator */
  3073. if (!poolAppendChar(&tempPool, *s))
  3074. return XML_ERROR_NO_MEMORY;
  3075. } while (*s++);
  3076. uriHash = (unsigned long)sip24_final(&sip_state);
  3077. { /* Check hash table for duplicate of expanded name (uriName).
  3078. Derived from code in lookup(parser, HASH_TABLE *table, ...).
  3079. */
  3080. unsigned char step = 0;
  3081. unsigned long mask = nsAttsSize - 1;
  3082. j = uriHash & mask; /* index into hash table */
  3083. while (nsAtts[j].version == version) {
  3084. /* for speed we compare stored hash values first */
  3085. if (uriHash == nsAtts[j].hash) {
  3086. const XML_Char *s1 = poolStart(&tempPool);
  3087. const XML_Char *s2 = nsAtts[j].uriName;
  3088. /* s1 is null terminated, but not s2 */
  3089. for (; *s1 == *s2 && *s1 != 0; s1++, s2++);
  3090. if (*s1 == 0)
  3091. return XML_ERROR_DUPLICATE_ATTRIBUTE;
  3092. }
  3093. if (!step)
  3094. step = PROBE_STEP(uriHash, mask, nsAttsPower);
  3095. j < step ? (j += nsAttsSize - step) : (j -= step);
  3096. }
  3097. }
  3098. if (ns_triplets) { /* append namespace separator and prefix */
  3099. tempPool.ptr[-1] = namespaceSeparator;
  3100. s = b->prefix->name;
  3101. do {
  3102. if (!poolAppendChar(&tempPool, *s))
  3103. return XML_ERROR_NO_MEMORY;
  3104. } while (*s++);
  3105. }
  3106. /* store expanded name in attribute list */
  3107. s = poolStart(&tempPool);
  3108. poolFinish(&tempPool);
  3109. appAtts[i] = s;
  3110. /* fill empty slot with new version, uriName and hash value */
  3111. nsAtts[j].version = version;
  3112. nsAtts[j].hash = uriHash;
  3113. nsAtts[j].uriName = s;
  3114. if (!--nPrefixes) {
  3115. i += 2;
  3116. break;
  3117. }
  3118. }
  3119. else /* not prefixed */
  3120. ((XML_Char *)s)[-1] = 0; /* clear flag */
  3121. }
  3122. }
  3123. /* clear flags for the remaining attributes */
  3124. for (; i < attIndex; i += 2)
  3125. ((XML_Char *)(appAtts[i]))[-1] = 0;
  3126. for (binding = *bindingsPtr; binding; binding = binding->nextTagBinding)
  3127. binding->attId->name[-1] = 0;
  3128. if (!ns)
  3129. return XML_ERROR_NONE;
  3130. /* expand the element type name */
  3131. if (elementType->prefix) {
  3132. binding = elementType->prefix->binding;
  3133. if (!binding)
  3134. return XML_ERROR_UNBOUND_PREFIX;
  3135. localPart = tagNamePtr->str;
  3136. while (*localPart++ != XML_T(ASCII_COLON))
  3137. ;
  3138. }
  3139. else if (dtd->defaultPrefix.binding) {
  3140. binding = dtd->defaultPrefix.binding;
  3141. localPart = tagNamePtr->str;
  3142. }
  3143. else
  3144. return XML_ERROR_NONE;
  3145. prefixLen = 0;
  3146. if (ns_triplets && binding->prefix->name) {
  3147. for (; binding->prefix->name[prefixLen++];)
  3148. ; /* prefixLen includes null terminator */
  3149. }
  3150. tagNamePtr->localPart = localPart;
  3151. tagNamePtr->uriLen = binding->uriLen;
  3152. tagNamePtr->prefix = binding->prefix->name;
  3153. tagNamePtr->prefixLen = prefixLen;
  3154. for (i = 0; localPart[i++];)
  3155. ; /* i includes null terminator */
  3156. n = i + binding->uriLen + prefixLen;
  3157. if (n > binding->uriAlloc) {
  3158. TAG *p;
  3159. uri = (XML_Char *)MALLOC((n + EXPAND_SPARE) * sizeof(XML_Char));
  3160. if (!uri)
  3161. return XML_ERROR_NO_MEMORY;
  3162. binding->uriAlloc = n + EXPAND_SPARE;
  3163. memcpy(uri, binding->uri, binding->uriLen * sizeof(XML_Char));
  3164. for (p = tagStack; p; p = p->parent)
  3165. if (p->name.str == binding->uri)
  3166. p->name.str = uri;
  3167. FREE(binding->uri);
  3168. binding->uri = uri;
  3169. }
  3170. /* if namespaceSeparator != '\0' then uri includes it already */
  3171. uri = binding->uri + binding->uriLen;
  3172. memcpy(uri, localPart, i * sizeof(XML_Char));
  3173. /* we always have a namespace separator between localPart and prefix */
  3174. if (prefixLen) {
  3175. uri += i - 1;
  3176. *uri = namespaceSeparator; /* replace null terminator */
  3177. memcpy(uri + 1, binding->prefix->name, prefixLen * sizeof(XML_Char));
  3178. }
  3179. tagNamePtr->str = binding->uri;
  3180. return XML_ERROR_NONE;
  3181. }
  3182. /* addBinding() overwrites the value of prefix->binding without checking.
  3183. Therefore one must keep track of the old value outside of addBinding().
  3184. */
  3185. static enum XML_Error
  3186. addBinding(XML_Parser parser, PREFIX *prefix, const ATTRIBUTE_ID *attId,
  3187. const XML_Char *uri, BINDING **bindingsPtr)
  3188. {
  3189. static const XML_Char xmlNamespace[] = {
  3190. ASCII_h, ASCII_t, ASCII_t, ASCII_p, ASCII_COLON, ASCII_SLASH, ASCII_SLASH,
  3191. ASCII_w, ASCII_w, ASCII_w, ASCII_PERIOD, ASCII_w, ASCII_3, ASCII_PERIOD,
  3192. ASCII_o, ASCII_r, ASCII_g, ASCII_SLASH, ASCII_X, ASCII_M, ASCII_L,
  3193. ASCII_SLASH, ASCII_1, ASCII_9, ASCII_9, ASCII_8, ASCII_SLASH,
  3194. ASCII_n, ASCII_a, ASCII_m, ASCII_e, ASCII_s, ASCII_p, ASCII_a, ASCII_c,
  3195. ASCII_e, '\0'
  3196. };
  3197. static const int xmlLen =
  3198. (int)sizeof(xmlNamespace)/sizeof(XML_Char) - 1;
  3199. static const XML_Char xmlnsNamespace[] = {
  3200. ASCII_h, ASCII_t, ASCII_t, ASCII_p, ASCII_COLON, ASCII_SLASH, ASCII_SLASH,
  3201. ASCII_w, ASCII_w, ASCII_w, ASCII_PERIOD, ASCII_w, ASCII_3, ASCII_PERIOD,
  3202. ASCII_o, ASCII_r, ASCII_g, ASCII_SLASH, ASCII_2, ASCII_0, ASCII_0,
  3203. ASCII_0, ASCII_SLASH, ASCII_x, ASCII_m, ASCII_l, ASCII_n, ASCII_s,
  3204. ASCII_SLASH, '\0'
  3205. };
  3206. static const int xmlnsLen =
  3207. (int)sizeof(xmlnsNamespace)/sizeof(XML_Char) - 1;
  3208. XML_Bool mustBeXML = XML_FALSE;
  3209. XML_Bool isXML = XML_TRUE;
  3210. XML_Bool isXMLNS = XML_TRUE;
  3211. BINDING *b;
  3212. int len;
  3213. /* empty URI is only valid for default namespace per XML NS 1.0 (not 1.1) */
  3214. if (*uri == XML_T('\0') && prefix->name)
  3215. return XML_ERROR_UNDECLARING_PREFIX;
  3216. if (prefix->name
  3217. && prefix->name[0] == XML_T(ASCII_x)
  3218. && prefix->name[1] == XML_T(ASCII_m)
  3219. && prefix->name[2] == XML_T(ASCII_l)) {
  3220. /* Not allowed to bind xmlns */
  3221. if (prefix->name[3] == XML_T(ASCII_n)
  3222. && prefix->name[4] == XML_T(ASCII_s)
  3223. && prefix->name[5] == XML_T('\0'))
  3224. return XML_ERROR_RESERVED_PREFIX_XMLNS;
  3225. if (prefix->name[3] == XML_T('\0'))
  3226. mustBeXML = XML_TRUE;
  3227. }
  3228. for (len = 0; uri[len]; len++) {
  3229. if (isXML && (len > xmlLen || uri[len] != xmlNamespace[len]))
  3230. isXML = XML_FALSE;
  3231. if (!mustBeXML && isXMLNS
  3232. && (len > xmlnsLen || uri[len] != xmlnsNamespace[len]))
  3233. isXMLNS = XML_FALSE;
  3234. }
  3235. isXML = isXML && len == xmlLen;
  3236. isXMLNS = isXMLNS && len == xmlnsLen;
  3237. if (mustBeXML != isXML)
  3238. return mustBeXML ? XML_ERROR_RESERVED_PREFIX_XML
  3239. : XML_ERROR_RESERVED_NAMESPACE_URI;
  3240. if (isXMLNS)
  3241. return XML_ERROR_RESERVED_NAMESPACE_URI;
  3242. if (namespaceSeparator)
  3243. len++;
  3244. if (freeBindingList) {
  3245. b = freeBindingList;
  3246. if (len > b->uriAlloc) {
  3247. XML_Char *temp = (XML_Char *)REALLOC(b->uri,
  3248. sizeof(XML_Char) * (len + EXPAND_SPARE));
  3249. if (temp == NULL)
  3250. return XML_ERROR_NO_MEMORY;
  3251. b->uri = temp;
  3252. b->uriAlloc = len + EXPAND_SPARE;
  3253. }
  3254. freeBindingList = b->nextTagBinding;
  3255. }
  3256. else {
  3257. b = (BINDING *)MALLOC(sizeof(BINDING));
  3258. if (!b)
  3259. return XML_ERROR_NO_MEMORY;
  3260. b->uri = (XML_Char *)MALLOC(sizeof(XML_Char) * (len + EXPAND_SPARE));
  3261. if (!b->uri) {
  3262. FREE(b);
  3263. return XML_ERROR_NO_MEMORY;
  3264. }
  3265. b->uriAlloc = len + EXPAND_SPARE;
  3266. }
  3267. b->uriLen = len;
  3268. memcpy(b->uri, uri, len * sizeof(XML_Char));
  3269. if (namespaceSeparator)
  3270. b->uri[len - 1] = namespaceSeparator;
  3271. b->prefix = prefix;
  3272. b->attId = attId;
  3273. b->prevPrefixBinding = prefix->binding;
  3274. /* NULL binding when default namespace undeclared */
  3275. if (*uri == XML_T('\0') && prefix == &_dtd->defaultPrefix)
  3276. prefix->binding = NULL;
  3277. else
  3278. prefix->binding = b;
  3279. b->nextTagBinding = *bindingsPtr;
  3280. *bindingsPtr = b;
  3281. /* if attId == NULL then we are not starting a namespace scope */
  3282. if (attId && startNamespaceDeclHandler)
  3283. startNamespaceDeclHandler(handlerArg, prefix->name,
  3284. prefix->binding ? uri : 0);
  3285. return XML_ERROR_NONE;
  3286. }
  3287. /* The idea here is to avoid using stack for each CDATA section when
  3288. the whole file is parsed with one call.
  3289. */
  3290. static enum XML_Error PTRCALL
  3291. cdataSectionProcessor(XML_Parser parser,
  3292. const char *start,
  3293. const char *end,
  3294. const char **endPtr)
  3295. {
  3296. enum XML_Error result = doCdataSection(parser, encoding, &start, end,
  3297. endPtr, (XML_Bool)!ps_finalBuffer);
  3298. if (result != XML_ERROR_NONE)
  3299. return result;
  3300. if (start) {
  3301. if (parentParser) { /* we are parsing an external entity */
  3302. processor = externalEntityContentProcessor;
  3303. return externalEntityContentProcessor(parser, start, end, endPtr);
  3304. }
  3305. else {
  3306. processor = contentProcessor;
  3307. return contentProcessor(parser, start, end, endPtr);
  3308. }
  3309. }
  3310. return result;
  3311. }
  3312. /* startPtr gets set to non-null if the section is closed, and to null if
  3313. the section is not yet closed.
  3314. */
  3315. static enum XML_Error
  3316. doCdataSection(XML_Parser parser,
  3317. const ENCODING *enc,
  3318. const char **startPtr,
  3319. const char *end,
  3320. const char **nextPtr,
  3321. XML_Bool haveMore)
  3322. {
  3323. const char *s = *startPtr;
  3324. const char **eventPP;
  3325. const char **eventEndPP;
  3326. if (enc == encoding) {
  3327. eventPP = &eventPtr;
  3328. *eventPP = s;
  3329. eventEndPP = &eventEndPtr;
  3330. }
  3331. else {
  3332. eventPP = &(openInternalEntities->internalEventPtr);
  3333. eventEndPP = &(openInternalEntities->internalEventEndPtr);
  3334. }
  3335. *eventPP = s;
  3336. *startPtr = NULL;
  3337. for (;;) {
  3338. const char *next;
  3339. int tok = XmlCdataSectionTok(enc, s, end, &next);
  3340. *eventEndPP = next;
  3341. switch (tok) {
  3342. case XML_TOK_CDATA_SECT_CLOSE:
  3343. if (endCdataSectionHandler)
  3344. endCdataSectionHandler(handlerArg);
  3345. #if 0
  3346. /* see comment under XML_TOK_CDATA_SECT_OPEN */
  3347. else if (characterDataHandler)
  3348. characterDataHandler(handlerArg, dataBuf, 0);
  3349. #endif
  3350. else if (defaultHandler)
  3351. reportDefault(parser, enc, s, next);
  3352. *startPtr = next;
  3353. *nextPtr = next;
  3354. if (ps_parsing == XML_FINISHED)
  3355. return XML_ERROR_ABORTED;
  3356. else
  3357. return XML_ERROR_NONE;
  3358. case XML_TOK_DATA_NEWLINE:
  3359. if (characterDataHandler) {
  3360. XML_Char c = 0xA;
  3361. characterDataHandler(handlerArg, &c, 1);
  3362. }
  3363. else if (defaultHandler)
  3364. reportDefault(parser, enc, s, next);
  3365. break;
  3366. case XML_TOK_DATA_CHARS:
  3367. {
  3368. XML_CharacterDataHandler charDataHandler = characterDataHandler;
  3369. if (charDataHandler) {
  3370. if (MUST_CONVERT(enc, s)) {
  3371. for (;;) {
  3372. ICHAR *dataPtr = (ICHAR *)dataBuf;
  3373. const enum XML_Convert_Result convert_res = XmlConvert(enc, &s, next, &dataPtr, (ICHAR *)dataBufEnd);
  3374. *eventEndPP = next;
  3375. charDataHandler(handlerArg, dataBuf,
  3376. (int)(dataPtr - (ICHAR *)dataBuf));
  3377. if ((convert_res == XML_CONVERT_COMPLETED) || (convert_res == XML_CONVERT_INPUT_INCOMPLETE))
  3378. break;
  3379. *eventPP = s;
  3380. }
  3381. }
  3382. else
  3383. charDataHandler(handlerArg,
  3384. (XML_Char *)s,
  3385. (int)((XML_Char *)next - (XML_Char *)s));
  3386. }
  3387. else if (defaultHandler)
  3388. reportDefault(parser, enc, s, next);
  3389. }
  3390. break;
  3391. case XML_TOK_INVALID:
  3392. *eventPP = next;
  3393. return XML_ERROR_INVALID_TOKEN;
  3394. case XML_TOK_PARTIAL_CHAR:
  3395. if (haveMore) {
  3396. *nextPtr = s;
  3397. return XML_ERROR_NONE;
  3398. }
  3399. return XML_ERROR_PARTIAL_CHAR;
  3400. case XML_TOK_PARTIAL:
  3401. case XML_TOK_NONE:
  3402. if (haveMore) {
  3403. *nextPtr = s;
  3404. return XML_ERROR_NONE;
  3405. }
  3406. return XML_ERROR_UNCLOSED_CDATA_SECTION;
  3407. default:
  3408. *eventPP = next;
  3409. return XML_ERROR_UNEXPECTED_STATE;
  3410. }
  3411. *eventPP = s = next;
  3412. switch (ps_parsing) {
  3413. case XML_SUSPENDED:
  3414. *nextPtr = next;
  3415. return XML_ERROR_NONE;
  3416. case XML_FINISHED:
  3417. return XML_ERROR_ABORTED;
  3418. default: ;
  3419. }
  3420. }
  3421. /* not reached */
  3422. }
  3423. #ifdef XML_DTD
  3424. /* The idea here is to avoid using stack for each IGNORE section when
  3425. the whole file is parsed with one call.
  3426. */
  3427. static enum XML_Error PTRCALL
  3428. ignoreSectionProcessor(XML_Parser parser,
  3429. const char *start,
  3430. const char *end,
  3431. const char **endPtr)
  3432. {
  3433. enum XML_Error result = doIgnoreSection(parser, encoding, &start, end,
  3434. endPtr, (XML_Bool)!ps_finalBuffer);
  3435. if (result != XML_ERROR_NONE)
  3436. return result;
  3437. if (start) {
  3438. processor = prologProcessor;
  3439. return prologProcessor(parser, start, end, endPtr);
  3440. }
  3441. return result;
  3442. }
  3443. /* startPtr gets set to non-null is the section is closed, and to null
  3444. if the section is not yet closed.
  3445. */
  3446. static enum XML_Error
  3447. doIgnoreSection(XML_Parser parser,
  3448. const ENCODING *enc,
  3449. const char **startPtr,
  3450. const char *end,
  3451. const char **nextPtr,
  3452. XML_Bool haveMore)
  3453. {
  3454. const char *next;
  3455. int tok;
  3456. const char *s = *startPtr;
  3457. const char **eventPP;
  3458. const char **eventEndPP;
  3459. if (enc == encoding) {
  3460. eventPP = &eventPtr;
  3461. *eventPP = s;
  3462. eventEndPP = &eventEndPtr;
  3463. }
  3464. else {
  3465. eventPP = &(openInternalEntities->internalEventPtr);
  3466. eventEndPP = &(openInternalEntities->internalEventEndPtr);
  3467. }
  3468. *eventPP = s;
  3469. *startPtr = NULL;
  3470. tok = XmlIgnoreSectionTok(enc, s, end, &next);
  3471. *eventEndPP = next;
  3472. switch (tok) {
  3473. case XML_TOK_IGNORE_SECT:
  3474. if (defaultHandler)
  3475. reportDefault(parser, enc, s, next);
  3476. *startPtr = next;
  3477. *nextPtr = next;
  3478. if (ps_parsing == XML_FINISHED)
  3479. return XML_ERROR_ABORTED;
  3480. else
  3481. return XML_ERROR_NONE;
  3482. case XML_TOK_INVALID:
  3483. *eventPP = next;
  3484. return XML_ERROR_INVALID_TOKEN;
  3485. case XML_TOK_PARTIAL_CHAR:
  3486. if (haveMore) {
  3487. *nextPtr = s;
  3488. return XML_ERROR_NONE;
  3489. }
  3490. return XML_ERROR_PARTIAL_CHAR;
  3491. case XML_TOK_PARTIAL:
  3492. case XML_TOK_NONE:
  3493. if (haveMore) {
  3494. *nextPtr = s;
  3495. return XML_ERROR_NONE;
  3496. }
  3497. return XML_ERROR_SYNTAX; /* XML_ERROR_UNCLOSED_IGNORE_SECTION */
  3498. default:
  3499. *eventPP = next;
  3500. return XML_ERROR_UNEXPECTED_STATE;
  3501. }
  3502. /* not reached */
  3503. }
  3504. #endif /* XML_DTD */
  3505. static enum XML_Error
  3506. initializeEncoding(XML_Parser parser)
  3507. {
  3508. const char *s;
  3509. #ifdef XML_UNICODE
  3510. char encodingBuf[128];
  3511. /* See comments abount `protoclEncodingName` in parserInit() */
  3512. if (!protocolEncodingName)
  3513. s = NULL;
  3514. else {
  3515. int i;
  3516. for (i = 0; protocolEncodingName[i]; i++) {
  3517. if (i == sizeof(encodingBuf) - 1
  3518. || (protocolEncodingName[i] & ~0x7f) != 0) {
  3519. encodingBuf[0] = '\0';
  3520. break;
  3521. }
  3522. encodingBuf[i] = (char)protocolEncodingName[i];
  3523. }
  3524. encodingBuf[i] = '\0';
  3525. s = encodingBuf;
  3526. }
  3527. #else
  3528. s = protocolEncodingName;
  3529. #endif
  3530. if ((ns ? XmlInitEncodingNS : XmlInitEncoding)(&initEncoding, &encoding, s))
  3531. return XML_ERROR_NONE;
  3532. return handleUnknownEncoding(parser, protocolEncodingName);
  3533. }
  3534. static enum XML_Error
  3535. processXmlDecl(XML_Parser parser, int isGeneralTextEntity,
  3536. const char *s, const char *next)
  3537. {
  3538. const char *encodingName = NULL;
  3539. const XML_Char *storedEncName = NULL;
  3540. const ENCODING *newEncoding = NULL;
  3541. const char *version = NULL;
  3542. const char *versionend;
  3543. const XML_Char *storedversion = NULL;
  3544. int standalone = -1;
  3545. if (!(ns
  3546. ? XmlParseXmlDeclNS
  3547. : XmlParseXmlDecl)(isGeneralTextEntity,
  3548. encoding,
  3549. s,
  3550. next,
  3551. &eventPtr,
  3552. &version,
  3553. &versionend,
  3554. &encodingName,
  3555. &newEncoding,
  3556. &standalone)) {
  3557. if (isGeneralTextEntity)
  3558. return XML_ERROR_TEXT_DECL;
  3559. else
  3560. return XML_ERROR_XML_DECL;
  3561. }
  3562. if (!isGeneralTextEntity && standalone == 1) {
  3563. _dtd->standalone = XML_TRUE;
  3564. #ifdef XML_DTD
  3565. if (paramEntityParsing == XML_PARAM_ENTITY_PARSING_UNLESS_STANDALONE)
  3566. paramEntityParsing = XML_PARAM_ENTITY_PARSING_NEVER;
  3567. #endif /* XML_DTD */
  3568. }
  3569. if (xmlDeclHandler) {
  3570. if (encodingName != NULL) {
  3571. storedEncName = poolStoreString(&temp2Pool,
  3572. encoding,
  3573. encodingName,
  3574. encodingName
  3575. + XmlNameLength(encoding, encodingName));
  3576. if (!storedEncName)
  3577. return XML_ERROR_NO_MEMORY;
  3578. poolFinish(&temp2Pool);
  3579. }
  3580. if (version) {
  3581. storedversion = poolStoreString(&temp2Pool,
  3582. encoding,
  3583. version,
  3584. versionend - encoding->minBytesPerChar);
  3585. if (!storedversion)
  3586. return XML_ERROR_NO_MEMORY;
  3587. }
  3588. xmlDeclHandler(handlerArg, storedversion, storedEncName, standalone);
  3589. }
  3590. else if (defaultHandler)
  3591. reportDefault(parser, encoding, s, next);
  3592. if (protocolEncodingName == NULL) {
  3593. if (newEncoding) {
  3594. if (newEncoding->minBytesPerChar != encoding->minBytesPerChar) {
  3595. eventPtr = encodingName;
  3596. return XML_ERROR_INCORRECT_ENCODING;
  3597. }
  3598. encoding = newEncoding;
  3599. }
  3600. else if (encodingName) {
  3601. enum XML_Error result;
  3602. if (!storedEncName) {
  3603. storedEncName = poolStoreString(
  3604. &temp2Pool, encoding, encodingName,
  3605. encodingName + XmlNameLength(encoding, encodingName));
  3606. if (!storedEncName)
  3607. return XML_ERROR_NO_MEMORY;
  3608. }
  3609. result = handleUnknownEncoding(parser, storedEncName);
  3610. poolClear(&temp2Pool);
  3611. if (result == XML_ERROR_UNKNOWN_ENCODING)
  3612. eventPtr = encodingName;
  3613. return result;
  3614. }
  3615. }
  3616. if (storedEncName || storedversion)
  3617. poolClear(&temp2Pool);
  3618. return XML_ERROR_NONE;
  3619. }
  3620. static enum XML_Error
  3621. handleUnknownEncoding(XML_Parser parser, const XML_Char *encodingName)
  3622. {
  3623. if (unknownEncodingHandler) {
  3624. XML_Encoding info;
  3625. int i;
  3626. for (i = 0; i < 256; i++)
  3627. info.map[i] = -1;
  3628. info.convert = NULL;
  3629. info.data = NULL;
  3630. info.release = NULL;
  3631. if (unknownEncodingHandler(unknownEncodingHandlerData, encodingName,
  3632. &info)) {
  3633. ENCODING *enc;
  3634. unknownEncodingMem = MALLOC(XmlSizeOfUnknownEncoding());
  3635. if (!unknownEncodingMem) {
  3636. if (info.release)
  3637. info.release(info.data);
  3638. return XML_ERROR_NO_MEMORY;
  3639. }
  3640. enc = (ns
  3641. ? XmlInitUnknownEncodingNS
  3642. : XmlInitUnknownEncoding)(unknownEncodingMem,
  3643. info.map,
  3644. info.convert,
  3645. info.data);
  3646. if (enc) {
  3647. unknownEncodingData = info.data;
  3648. unknownEncodingRelease = info.release;
  3649. encoding = enc;
  3650. return XML_ERROR_NONE;
  3651. }
  3652. }
  3653. if (info.release != NULL)
  3654. info.release(info.data);
  3655. }
  3656. return XML_ERROR_UNKNOWN_ENCODING;
  3657. }
  3658. static enum XML_Error PTRCALL
  3659. prologInitProcessor(XML_Parser parser,
  3660. const char *s,
  3661. const char *end,
  3662. const char **nextPtr)
  3663. {
  3664. enum XML_Error result = initializeEncoding(parser);
  3665. if (result != XML_ERROR_NONE)
  3666. return result;
  3667. processor = prologProcessor;
  3668. return prologProcessor(parser, s, end, nextPtr);
  3669. }
  3670. #ifdef XML_DTD
  3671. static enum XML_Error PTRCALL
  3672. externalParEntInitProcessor(XML_Parser parser,
  3673. const char *s,
  3674. const char *end,
  3675. const char **nextPtr)
  3676. {
  3677. enum XML_Error result = initializeEncoding(parser);
  3678. if (result != XML_ERROR_NONE)
  3679. return result;
  3680. /* we know now that XML_Parse(Buffer) has been called,
  3681. so we consider the external parameter entity read */
  3682. _dtd->paramEntityRead = XML_TRUE;
  3683. if (prologState.inEntityValue) {
  3684. processor = entityValueInitProcessor;
  3685. return entityValueInitProcessor(parser, s, end, nextPtr);
  3686. }
  3687. else {
  3688. processor = externalParEntProcessor;
  3689. return externalParEntProcessor(parser, s, end, nextPtr);
  3690. }
  3691. }
  3692. static enum XML_Error PTRCALL
  3693. entityValueInitProcessor(XML_Parser parser,
  3694. const char *s,
  3695. const char *end,
  3696. const char **nextPtr)
  3697. {
  3698. int tok;
  3699. const char *start = s;
  3700. const char *next = start;
  3701. eventPtr = start;
  3702. for (;;) {
  3703. tok = XmlPrologTok(encoding, start, end, &next);
  3704. eventEndPtr = next;
  3705. if (tok <= 0) {
  3706. if (!ps_finalBuffer && tok != XML_TOK_INVALID) {
  3707. *nextPtr = s;
  3708. return XML_ERROR_NONE;
  3709. }
  3710. switch (tok) {
  3711. case XML_TOK_INVALID:
  3712. return XML_ERROR_INVALID_TOKEN;
  3713. case XML_TOK_PARTIAL:
  3714. return XML_ERROR_UNCLOSED_TOKEN;
  3715. case XML_TOK_PARTIAL_CHAR:
  3716. return XML_ERROR_PARTIAL_CHAR;
  3717. case XML_TOK_NONE: /* start == end */
  3718. default:
  3719. break;
  3720. }
  3721. /* found end of entity value - can store it now */
  3722. return storeEntityValue(parser, encoding, s, end);
  3723. }
  3724. else if (tok == XML_TOK_XML_DECL) {
  3725. enum XML_Error result;
  3726. result = processXmlDecl(parser, 0, start, next);
  3727. if (result != XML_ERROR_NONE)
  3728. return result;
  3729. switch (ps_parsing) {
  3730. case XML_SUSPENDED:
  3731. *nextPtr = next;
  3732. return XML_ERROR_NONE;
  3733. case XML_FINISHED:
  3734. return XML_ERROR_ABORTED;
  3735. default:
  3736. *nextPtr = next;
  3737. }
  3738. /* stop scanning for text declaration - we found one */
  3739. processor = entityValueProcessor;
  3740. return entityValueProcessor(parser, next, end, nextPtr);
  3741. }
  3742. /* If we are at the end of the buffer, this would cause XmlPrologTok to
  3743. return XML_TOK_NONE on the next call, which would then cause the
  3744. function to exit with *nextPtr set to s - that is what we want for other
  3745. tokens, but not for the BOM - we would rather like to skip it;
  3746. then, when this routine is entered the next time, XmlPrologTok will
  3747. return XML_TOK_INVALID, since the BOM is still in the buffer
  3748. */
  3749. else if (tok == XML_TOK_BOM && next == end && !ps_finalBuffer) {
  3750. *nextPtr = next;
  3751. return XML_ERROR_NONE;
  3752. }
  3753. /* If we get this token, we have the start of what might be a
  3754. normal tag, but not a declaration (i.e. it doesn't begin with
  3755. "<!"). In a DTD context, that isn't legal.
  3756. */
  3757. else if (tok == XML_TOK_INSTANCE_START) {
  3758. *nextPtr = next;
  3759. return XML_ERROR_SYNTAX;
  3760. }
  3761. start = next;
  3762. eventPtr = start;
  3763. }
  3764. }
  3765. static enum XML_Error PTRCALL
  3766. externalParEntProcessor(XML_Parser parser,
  3767. const char *s,
  3768. const char *end,
  3769. const char **nextPtr)
  3770. {
  3771. const char *next = s;
  3772. int tok;
  3773. tok = XmlPrologTok(encoding, s, end, &next);
  3774. if (tok <= 0) {
  3775. if (!ps_finalBuffer && tok != XML_TOK_INVALID) {
  3776. *nextPtr = s;
  3777. return XML_ERROR_NONE;
  3778. }
  3779. switch (tok) {
  3780. case XML_TOK_INVALID:
  3781. return XML_ERROR_INVALID_TOKEN;
  3782. case XML_TOK_PARTIAL:
  3783. return XML_ERROR_UNCLOSED_TOKEN;
  3784. case XML_TOK_PARTIAL_CHAR:
  3785. return XML_ERROR_PARTIAL_CHAR;
  3786. case XML_TOK_NONE: /* start == end */
  3787. default:
  3788. break;
  3789. }
  3790. }
  3791. /* This would cause the next stage, i.e. doProlog to be passed XML_TOK_BOM.
  3792. However, when parsing an external subset, doProlog will not accept a BOM
  3793. as valid, and report a syntax error, so we have to skip the BOM
  3794. */
  3795. else if (tok == XML_TOK_BOM) {
  3796. s = next;
  3797. tok = XmlPrologTok(encoding, s, end, &next);
  3798. }
  3799. processor = prologProcessor;
  3800. return doProlog(parser, encoding, s, end, tok, next,
  3801. nextPtr, (XML_Bool)!ps_finalBuffer);
  3802. }
  3803. static enum XML_Error PTRCALL
  3804. entityValueProcessor(XML_Parser parser,
  3805. const char *s,
  3806. const char *end,
  3807. const char **nextPtr)
  3808. {
  3809. const char *start = s;
  3810. const char *next = s;
  3811. const ENCODING *enc = encoding;
  3812. int tok;
  3813. for (;;) {
  3814. tok = XmlPrologTok(enc, start, end, &next);
  3815. if (tok <= 0) {
  3816. if (!ps_finalBuffer && tok != XML_TOK_INVALID) {
  3817. *nextPtr = s;
  3818. return XML_ERROR_NONE;
  3819. }
  3820. switch (tok) {
  3821. case XML_TOK_INVALID:
  3822. return XML_ERROR_INVALID_TOKEN;
  3823. case XML_TOK_PARTIAL:
  3824. return XML_ERROR_UNCLOSED_TOKEN;
  3825. case XML_TOK_PARTIAL_CHAR:
  3826. return XML_ERROR_PARTIAL_CHAR;
  3827. case XML_TOK_NONE: /* start == end */
  3828. default:
  3829. break;
  3830. }
  3831. /* found end of entity value - can store it now */
  3832. return storeEntityValue(parser, enc, s, end);
  3833. }
  3834. start = next;
  3835. }
  3836. }
  3837. #endif /* XML_DTD */
  3838. static enum XML_Error PTRCALL
  3839. prologProcessor(XML_Parser parser,
  3840. const char *s,
  3841. const char *end,
  3842. const char **nextPtr)
  3843. {
  3844. const char *next = s;
  3845. int tok = XmlPrologTok(encoding, s, end, &next);
  3846. return doProlog(parser, encoding, s, end, tok, next,
  3847. nextPtr, (XML_Bool)!ps_finalBuffer);
  3848. }
  3849. static enum XML_Error
  3850. doProlog(XML_Parser parser,
  3851. const ENCODING *enc,
  3852. const char *s,
  3853. const char *end,
  3854. int tok,
  3855. const char *next,
  3856. const char **nextPtr,
  3857. XML_Bool haveMore)
  3858. {
  3859. #ifdef XML_DTD
  3860. static const XML_Char externalSubsetName[] = { ASCII_HASH , '\0' };
  3861. #endif /* XML_DTD */
  3862. static const XML_Char atypeCDATA[] =
  3863. { ASCII_C, ASCII_D, ASCII_A, ASCII_T, ASCII_A, '\0' };
  3864. static const XML_Char atypeID[] = { ASCII_I, ASCII_D, '\0' };
  3865. static const XML_Char atypeIDREF[] =
  3866. { ASCII_I, ASCII_D, ASCII_R, ASCII_E, ASCII_F, '\0' };
  3867. static const XML_Char atypeIDREFS[] =
  3868. { ASCII_I, ASCII_D, ASCII_R, ASCII_E, ASCII_F, ASCII_S, '\0' };
  3869. static const XML_Char atypeENTITY[] =
  3870. { ASCII_E, ASCII_N, ASCII_T, ASCII_I, ASCII_T, ASCII_Y, '\0' };
  3871. static const XML_Char atypeENTITIES[] = { ASCII_E, ASCII_N,
  3872. ASCII_T, ASCII_I, ASCII_T, ASCII_I, ASCII_E, ASCII_S, '\0' };
  3873. static const XML_Char atypeNMTOKEN[] = {
  3874. ASCII_N, ASCII_M, ASCII_T, ASCII_O, ASCII_K, ASCII_E, ASCII_N, '\0' };
  3875. static const XML_Char atypeNMTOKENS[] = { ASCII_N, ASCII_M, ASCII_T,
  3876. ASCII_O, ASCII_K, ASCII_E, ASCII_N, ASCII_S, '\0' };
  3877. static const XML_Char notationPrefix[] = { ASCII_N, ASCII_O, ASCII_T,
  3878. ASCII_A, ASCII_T, ASCII_I, ASCII_O, ASCII_N, ASCII_LPAREN, '\0' };
  3879. static const XML_Char enumValueSep[] = { ASCII_PIPE, '\0' };
  3880. static const XML_Char enumValueStart[] = { ASCII_LPAREN, '\0' };
  3881. /* save one level of indirection */
  3882. DTD * const dtd = _dtd;
  3883. const char **eventPP;
  3884. const char **eventEndPP;
  3885. enum XML_Content_Quant quant;
  3886. if (enc == encoding) {
  3887. eventPP = &eventPtr;
  3888. eventEndPP = &eventEndPtr;
  3889. }
  3890. else {
  3891. eventPP = &(openInternalEntities->internalEventPtr);
  3892. eventEndPP = &(openInternalEntities->internalEventEndPtr);
  3893. }
  3894. for (;;) {
  3895. int role;
  3896. XML_Bool handleDefault = XML_TRUE;
  3897. *eventPP = s;
  3898. *eventEndPP = next;
  3899. if (tok <= 0) {
  3900. if (haveMore && tok != XML_TOK_INVALID) {
  3901. *nextPtr = s;
  3902. return XML_ERROR_NONE;
  3903. }
  3904. switch (tok) {
  3905. case XML_TOK_INVALID:
  3906. *eventPP = next;
  3907. return XML_ERROR_INVALID_TOKEN;
  3908. case XML_TOK_PARTIAL:
  3909. return XML_ERROR_UNCLOSED_TOKEN;
  3910. case XML_TOK_PARTIAL_CHAR:
  3911. return XML_ERROR_PARTIAL_CHAR;
  3912. case -XML_TOK_PROLOG_S:
  3913. tok = -tok;
  3914. break;
  3915. case XML_TOK_NONE:
  3916. #ifdef XML_DTD
  3917. /* for internal PE NOT referenced between declarations */
  3918. if (enc != encoding && !openInternalEntities->betweenDecl) {
  3919. *nextPtr = s;
  3920. return XML_ERROR_NONE;
  3921. }
  3922. /* WFC: PE Between Declarations - must check that PE contains
  3923. complete markup, not only for external PEs, but also for
  3924. internal PEs if the reference occurs between declarations.
  3925. */
  3926. if (isParamEntity || enc != encoding) {
  3927. if (XmlTokenRole(&prologState, XML_TOK_NONE, end, end, enc)
  3928. == XML_ROLE_ERROR)
  3929. return XML_ERROR_INCOMPLETE_PE;
  3930. *nextPtr = s;
  3931. return XML_ERROR_NONE;
  3932. }
  3933. #endif /* XML_DTD */
  3934. return XML_ERROR_NO_ELEMENTS;
  3935. default:
  3936. tok = -tok;
  3937. next = end;
  3938. break;
  3939. }
  3940. }
  3941. role = XmlTokenRole(&prologState, tok, s, next, enc);
  3942. switch (role) {
  3943. case XML_ROLE_XML_DECL:
  3944. {
  3945. enum XML_Error result = processXmlDecl(parser, 0, s, next);
  3946. if (result != XML_ERROR_NONE)
  3947. return result;
  3948. enc = encoding;
  3949. handleDefault = XML_FALSE;
  3950. }
  3951. break;
  3952. case XML_ROLE_DOCTYPE_NAME:
  3953. if (startDoctypeDeclHandler) {
  3954. doctypeName = poolStoreString(&tempPool, enc, s, next);
  3955. if (!doctypeName)
  3956. return XML_ERROR_NO_MEMORY;
  3957. poolFinish(&tempPool);
  3958. doctypePubid = NULL;
  3959. handleDefault = XML_FALSE;
  3960. }
  3961. doctypeSysid = NULL; /* always initialize to NULL */
  3962. break;
  3963. case XML_ROLE_DOCTYPE_INTERNAL_SUBSET:
  3964. if (startDoctypeDeclHandler) {
  3965. startDoctypeDeclHandler(handlerArg, doctypeName, doctypeSysid,
  3966. doctypePubid, 1);
  3967. doctypeName = NULL;
  3968. poolClear(&tempPool);
  3969. handleDefault = XML_FALSE;
  3970. }
  3971. break;
  3972. #ifdef XML_DTD
  3973. case XML_ROLE_TEXT_DECL:
  3974. {
  3975. enum XML_Error result = processXmlDecl(parser, 1, s, next);
  3976. if (result != XML_ERROR_NONE)
  3977. return result;
  3978. enc = encoding;
  3979. handleDefault = XML_FALSE;
  3980. }
  3981. break;
  3982. #endif /* XML_DTD */
  3983. case XML_ROLE_DOCTYPE_PUBLIC_ID:
  3984. #ifdef XML_DTD
  3985. useForeignDTD = XML_FALSE;
  3986. declEntity = (ENTITY *)lookup(parser,
  3987. &dtd->paramEntities,
  3988. externalSubsetName,
  3989. sizeof(ENTITY));
  3990. if (!declEntity)
  3991. return XML_ERROR_NO_MEMORY;
  3992. #endif /* XML_DTD */
  3993. dtd->hasParamEntityRefs = XML_TRUE;
  3994. if (startDoctypeDeclHandler) {
  3995. XML_Char *pubId;
  3996. if (!XmlIsPublicId(enc, s, next, eventPP))
  3997. return XML_ERROR_PUBLICID;
  3998. pubId = poolStoreString(&tempPool, enc,
  3999. s + enc->minBytesPerChar,
  4000. next - enc->minBytesPerChar);
  4001. if (!pubId)
  4002. return XML_ERROR_NO_MEMORY;
  4003. normalizePublicId(pubId);
  4004. poolFinish(&tempPool);
  4005. doctypePubid = pubId;
  4006. handleDefault = XML_FALSE;
  4007. goto alreadyChecked;
  4008. }
  4009. /* fall through */
  4010. case XML_ROLE_ENTITY_PUBLIC_ID:
  4011. if (!XmlIsPublicId(enc, s, next, eventPP))
  4012. return XML_ERROR_PUBLICID;
  4013. alreadyChecked:
  4014. if (dtd->keepProcessing && declEntity) {
  4015. XML_Char *tem = poolStoreString(&dtd->pool,
  4016. enc,
  4017. s + enc->minBytesPerChar,
  4018. next - enc->minBytesPerChar);
  4019. if (!tem)
  4020. return XML_ERROR_NO_MEMORY;
  4021. normalizePublicId(tem);
  4022. declEntity->publicId = tem;
  4023. poolFinish(&dtd->pool);
  4024. if (entityDeclHandler)
  4025. handleDefault = XML_FALSE;
  4026. }
  4027. break;
  4028. case XML_ROLE_DOCTYPE_CLOSE:
  4029. if (doctypeName) {
  4030. startDoctypeDeclHandler(handlerArg, doctypeName,
  4031. doctypeSysid, doctypePubid, 0);
  4032. poolClear(&tempPool);
  4033. handleDefault = XML_FALSE;
  4034. }
  4035. /* doctypeSysid will be non-NULL in the case of a previous
  4036. XML_ROLE_DOCTYPE_SYSTEM_ID, even if startDoctypeDeclHandler
  4037. was not set, indicating an external subset
  4038. */
  4039. #ifdef XML_DTD
  4040. if (doctypeSysid || useForeignDTD) {
  4041. XML_Bool hadParamEntityRefs = dtd->hasParamEntityRefs;
  4042. dtd->hasParamEntityRefs = XML_TRUE;
  4043. if (paramEntityParsing && externalEntityRefHandler) {
  4044. ENTITY *entity = (ENTITY *)lookup(parser,
  4045. &dtd->paramEntities,
  4046. externalSubsetName,
  4047. sizeof(ENTITY));
  4048. if (!entity)
  4049. return XML_ERROR_NO_MEMORY;
  4050. if (useForeignDTD)
  4051. entity->base = curBase;
  4052. dtd->paramEntityRead = XML_FALSE;
  4053. if (!externalEntityRefHandler(externalEntityRefHandlerArg,
  4054. 0,
  4055. entity->base,
  4056. entity->systemId,
  4057. entity->publicId))
  4058. return XML_ERROR_EXTERNAL_ENTITY_HANDLING;
  4059. if (dtd->paramEntityRead) {
  4060. if (!dtd->standalone &&
  4061. notStandaloneHandler &&
  4062. !notStandaloneHandler(handlerArg))
  4063. return XML_ERROR_NOT_STANDALONE;
  4064. }
  4065. /* if we didn't read the foreign DTD then this means that there
  4066. is no external subset and we must reset dtd->hasParamEntityRefs
  4067. */
  4068. else if (!doctypeSysid)
  4069. dtd->hasParamEntityRefs = hadParamEntityRefs;
  4070. /* end of DTD - no need to update dtd->keepProcessing */
  4071. }
  4072. useForeignDTD = XML_FALSE;
  4073. }
  4074. #endif /* XML_DTD */
  4075. if (endDoctypeDeclHandler) {
  4076. endDoctypeDeclHandler(handlerArg);
  4077. handleDefault = XML_FALSE;
  4078. }
  4079. break;
  4080. case XML_ROLE_INSTANCE_START:
  4081. #ifdef XML_DTD
  4082. /* if there is no DOCTYPE declaration then now is the
  4083. last chance to read the foreign DTD
  4084. */
  4085. if (useForeignDTD) {
  4086. XML_Bool hadParamEntityRefs = dtd->hasParamEntityRefs;
  4087. dtd->hasParamEntityRefs = XML_TRUE;
  4088. if (paramEntityParsing && externalEntityRefHandler) {
  4089. ENTITY *entity = (ENTITY *)lookup(parser, &dtd->paramEntities,
  4090. externalSubsetName,
  4091. sizeof(ENTITY));
  4092. if (!entity)
  4093. return XML_ERROR_NO_MEMORY;
  4094. entity->base = curBase;
  4095. dtd->paramEntityRead = XML_FALSE;
  4096. if (!externalEntityRefHandler(externalEntityRefHandlerArg,
  4097. 0,
  4098. entity->base,
  4099. entity->systemId,
  4100. entity->publicId))
  4101. return XML_ERROR_EXTERNAL_ENTITY_HANDLING;
  4102. if (dtd->paramEntityRead) {
  4103. if (!dtd->standalone &&
  4104. notStandaloneHandler &&
  4105. !notStandaloneHandler(handlerArg))
  4106. return XML_ERROR_NOT_STANDALONE;
  4107. }
  4108. /* if we didn't read the foreign DTD then this means that there
  4109. is no external subset and we must reset dtd->hasParamEntityRefs
  4110. */
  4111. else
  4112. dtd->hasParamEntityRefs = hadParamEntityRefs;
  4113. /* end of DTD - no need to update dtd->keepProcessing */
  4114. }
  4115. }
  4116. #endif /* XML_DTD */
  4117. processor = contentProcessor;
  4118. return contentProcessor(parser, s, end, nextPtr);
  4119. case XML_ROLE_ATTLIST_ELEMENT_NAME:
  4120. declElementType = getElementType(parser, enc, s, next);
  4121. if (!declElementType)
  4122. return XML_ERROR_NO_MEMORY;
  4123. goto checkAttListDeclHandler;
  4124. case XML_ROLE_ATTRIBUTE_NAME:
  4125. declAttributeId = getAttributeId(parser, enc, s, next);
  4126. if (!declAttributeId)
  4127. return XML_ERROR_NO_MEMORY;
  4128. declAttributeIsCdata = XML_FALSE;
  4129. declAttributeType = NULL;
  4130. declAttributeIsId = XML_FALSE;
  4131. goto checkAttListDeclHandler;
  4132. case XML_ROLE_ATTRIBUTE_TYPE_CDATA:
  4133. declAttributeIsCdata = XML_TRUE;
  4134. declAttributeType = atypeCDATA;
  4135. goto checkAttListDeclHandler;
  4136. case XML_ROLE_ATTRIBUTE_TYPE_ID:
  4137. declAttributeIsId = XML_TRUE;
  4138. declAttributeType = atypeID;
  4139. goto checkAttListDeclHandler;
  4140. case XML_ROLE_ATTRIBUTE_TYPE_IDREF:
  4141. declAttributeType = atypeIDREF;
  4142. goto checkAttListDeclHandler;
  4143. case XML_ROLE_ATTRIBUTE_TYPE_IDREFS:
  4144. declAttributeType = atypeIDREFS;
  4145. goto checkAttListDeclHandler;
  4146. case XML_ROLE_ATTRIBUTE_TYPE_ENTITY:
  4147. declAttributeType = atypeENTITY;
  4148. goto checkAttListDeclHandler;
  4149. case XML_ROLE_ATTRIBUTE_TYPE_ENTITIES:
  4150. declAttributeType = atypeENTITIES;
  4151. goto checkAttListDeclHandler;
  4152. case XML_ROLE_ATTRIBUTE_TYPE_NMTOKEN:
  4153. declAttributeType = atypeNMTOKEN;
  4154. goto checkAttListDeclHandler;
  4155. case XML_ROLE_ATTRIBUTE_TYPE_NMTOKENS:
  4156. declAttributeType = atypeNMTOKENS;
  4157. checkAttListDeclHandler:
  4158. if (dtd->keepProcessing && attlistDeclHandler)
  4159. handleDefault = XML_FALSE;
  4160. break;
  4161. case XML_ROLE_ATTRIBUTE_ENUM_VALUE:
  4162. case XML_ROLE_ATTRIBUTE_NOTATION_VALUE:
  4163. if (dtd->keepProcessing && attlistDeclHandler) {
  4164. const XML_Char *prefix;
  4165. if (declAttributeType) {
  4166. prefix = enumValueSep;
  4167. }
  4168. else {
  4169. prefix = (role == XML_ROLE_ATTRIBUTE_NOTATION_VALUE
  4170. ? notationPrefix
  4171. : enumValueStart);
  4172. }
  4173. if (!poolAppendString(&tempPool, prefix))
  4174. return XML_ERROR_NO_MEMORY;
  4175. if (!poolAppend(&tempPool, enc, s, next))
  4176. return XML_ERROR_NO_MEMORY;
  4177. declAttributeType = tempPool.start;
  4178. handleDefault = XML_FALSE;
  4179. }
  4180. break;
  4181. case XML_ROLE_IMPLIED_ATTRIBUTE_VALUE:
  4182. case XML_ROLE_REQUIRED_ATTRIBUTE_VALUE:
  4183. if (dtd->keepProcessing) {
  4184. if (!defineAttribute(declElementType, declAttributeId,
  4185. declAttributeIsCdata, declAttributeIsId,
  4186. 0, parser))
  4187. return XML_ERROR_NO_MEMORY;
  4188. if (attlistDeclHandler && declAttributeType) {
  4189. if (*declAttributeType == XML_T(ASCII_LPAREN)
  4190. || (*declAttributeType == XML_T(ASCII_N)
  4191. && declAttributeType[1] == XML_T(ASCII_O))) {
  4192. /* Enumerated or Notation type */
  4193. if (!poolAppendChar(&tempPool, XML_T(ASCII_RPAREN))
  4194. || !poolAppendChar(&tempPool, XML_T('\0')))
  4195. return XML_ERROR_NO_MEMORY;
  4196. declAttributeType = tempPool.start;
  4197. poolFinish(&tempPool);
  4198. }
  4199. *eventEndPP = s;
  4200. attlistDeclHandler(handlerArg, declElementType->name,
  4201. declAttributeId->name, declAttributeType,
  4202. 0, role == XML_ROLE_REQUIRED_ATTRIBUTE_VALUE);
  4203. poolClear(&tempPool);
  4204. handleDefault = XML_FALSE;
  4205. }
  4206. }
  4207. break;
  4208. case XML_ROLE_DEFAULT_ATTRIBUTE_VALUE:
  4209. case XML_ROLE_FIXED_ATTRIBUTE_VALUE:
  4210. if (dtd->keepProcessing) {
  4211. const XML_Char *attVal;
  4212. enum XML_Error result =
  4213. storeAttributeValue(parser, enc, declAttributeIsCdata,
  4214. s + enc->minBytesPerChar,
  4215. next - enc->minBytesPerChar,
  4216. &dtd->pool);
  4217. if (result)
  4218. return result;
  4219. attVal = poolStart(&dtd->pool);
  4220. poolFinish(&dtd->pool);
  4221. /* ID attributes aren't allowed to have a default */
  4222. if (!defineAttribute(declElementType, declAttributeId,
  4223. declAttributeIsCdata, XML_FALSE, attVal, parser))
  4224. return XML_ERROR_NO_MEMORY;
  4225. if (attlistDeclHandler && declAttributeType) {
  4226. if (*declAttributeType == XML_T(ASCII_LPAREN)
  4227. || (*declAttributeType == XML_T(ASCII_N)
  4228. && declAttributeType[1] == XML_T(ASCII_O))) {
  4229. /* Enumerated or Notation type */
  4230. if (!poolAppendChar(&tempPool, XML_T(ASCII_RPAREN))
  4231. || !poolAppendChar(&tempPool, XML_T('\0')))
  4232. return XML_ERROR_NO_MEMORY;
  4233. declAttributeType = tempPool.start;
  4234. poolFinish(&tempPool);
  4235. }
  4236. *eventEndPP = s;
  4237. attlistDeclHandler(handlerArg, declElementType->name,
  4238. declAttributeId->name, declAttributeType,
  4239. attVal,
  4240. role == XML_ROLE_FIXED_ATTRIBUTE_VALUE);
  4241. poolClear(&tempPool);
  4242. handleDefault = XML_FALSE;
  4243. }
  4244. }
  4245. break;
  4246. case XML_ROLE_ENTITY_VALUE:
  4247. if (dtd->keepProcessing) {
  4248. enum XML_Error result = storeEntityValue(parser, enc,
  4249. s + enc->minBytesPerChar,
  4250. next - enc->minBytesPerChar);
  4251. if (declEntity) {
  4252. declEntity->textPtr = poolStart(&dtd->entityValuePool);
  4253. declEntity->textLen = (int)(poolLength(&dtd->entityValuePool));
  4254. poolFinish(&dtd->entityValuePool);
  4255. if (entityDeclHandler) {
  4256. *eventEndPP = s;
  4257. entityDeclHandler(handlerArg,
  4258. declEntity->name,
  4259. declEntity->is_param,
  4260. declEntity->textPtr,
  4261. declEntity->textLen,
  4262. curBase, 0, 0, 0);
  4263. handleDefault = XML_FALSE;
  4264. }
  4265. }
  4266. else
  4267. poolDiscard(&dtd->entityValuePool);
  4268. if (result != XML_ERROR_NONE)
  4269. return result;
  4270. }
  4271. break;
  4272. case XML_ROLE_DOCTYPE_SYSTEM_ID:
  4273. #ifdef XML_DTD
  4274. useForeignDTD = XML_FALSE;
  4275. #endif /* XML_DTD */
  4276. dtd->hasParamEntityRefs = XML_TRUE;
  4277. if (startDoctypeDeclHandler) {
  4278. doctypeSysid = poolStoreString(&tempPool, enc,
  4279. s + enc->minBytesPerChar,
  4280. next - enc->minBytesPerChar);
  4281. if (doctypeSysid == NULL)
  4282. return XML_ERROR_NO_MEMORY;
  4283. poolFinish(&tempPool);
  4284. handleDefault = XML_FALSE;
  4285. }
  4286. #ifdef XML_DTD
  4287. else
  4288. /* use externalSubsetName to make doctypeSysid non-NULL
  4289. for the case where no startDoctypeDeclHandler is set */
  4290. doctypeSysid = externalSubsetName;
  4291. #endif /* XML_DTD */
  4292. if (!dtd->standalone
  4293. #ifdef XML_DTD
  4294. && !paramEntityParsing
  4295. #endif /* XML_DTD */
  4296. && notStandaloneHandler
  4297. && !notStandaloneHandler(handlerArg))
  4298. return XML_ERROR_NOT_STANDALONE;
  4299. #ifndef XML_DTD
  4300. break;
  4301. #else /* XML_DTD */
  4302. if (!declEntity) {
  4303. declEntity = (ENTITY *)lookup(parser,
  4304. &dtd->paramEntities,
  4305. externalSubsetName,
  4306. sizeof(ENTITY));
  4307. if (!declEntity)
  4308. return XML_ERROR_NO_MEMORY;
  4309. declEntity->publicId = NULL;
  4310. }
  4311. /* fall through */
  4312. #endif /* XML_DTD */
  4313. case XML_ROLE_ENTITY_SYSTEM_ID:
  4314. if (dtd->keepProcessing && declEntity) {
  4315. declEntity->systemId = poolStoreString(&dtd->pool, enc,
  4316. s + enc->minBytesPerChar,
  4317. next - enc->minBytesPerChar);
  4318. if (!declEntity->systemId)
  4319. return XML_ERROR_NO_MEMORY;
  4320. declEntity->base = curBase;
  4321. poolFinish(&dtd->pool);
  4322. if (entityDeclHandler)
  4323. handleDefault = XML_FALSE;
  4324. }
  4325. break;
  4326. case XML_ROLE_ENTITY_COMPLETE:
  4327. if (dtd->keepProcessing && declEntity && entityDeclHandler) {
  4328. *eventEndPP = s;
  4329. entityDeclHandler(handlerArg,
  4330. declEntity->name,
  4331. declEntity->is_param,
  4332. 0,0,
  4333. declEntity->base,
  4334. declEntity->systemId,
  4335. declEntity->publicId,
  4336. 0);
  4337. handleDefault = XML_FALSE;
  4338. }
  4339. break;
  4340. case XML_ROLE_ENTITY_NOTATION_NAME:
  4341. if (dtd->keepProcessing && declEntity) {
  4342. declEntity->notation = poolStoreString(&dtd->pool, enc, s, next);
  4343. if (!declEntity->notation)
  4344. return XML_ERROR_NO_MEMORY;
  4345. poolFinish(&dtd->pool);
  4346. if (unparsedEntityDeclHandler) {
  4347. *eventEndPP = s;
  4348. unparsedEntityDeclHandler(handlerArg,
  4349. declEntity->name,
  4350. declEntity->base,
  4351. declEntity->systemId,
  4352. declEntity->publicId,
  4353. declEntity->notation);
  4354. handleDefault = XML_FALSE;
  4355. }
  4356. else if (entityDeclHandler) {
  4357. *eventEndPP = s;
  4358. entityDeclHandler(handlerArg,
  4359. declEntity->name,
  4360. 0,0,0,
  4361. declEntity->base,
  4362. declEntity->systemId,
  4363. declEntity->publicId,
  4364. declEntity->notation);
  4365. handleDefault = XML_FALSE;
  4366. }
  4367. }
  4368. break;
  4369. case XML_ROLE_GENERAL_ENTITY_NAME:
  4370. {
  4371. if (XmlPredefinedEntityName(enc, s, next)) {
  4372. declEntity = NULL;
  4373. break;
  4374. }
  4375. if (dtd->keepProcessing) {
  4376. const XML_Char *name = poolStoreString(&dtd->pool, enc, s, next);
  4377. if (!name)
  4378. return XML_ERROR_NO_MEMORY;
  4379. declEntity = (ENTITY *)lookup(parser, &dtd->generalEntities, name,
  4380. sizeof(ENTITY));
  4381. if (!declEntity)
  4382. return XML_ERROR_NO_MEMORY;
  4383. if (declEntity->name != name) {
  4384. poolDiscard(&dtd->pool);
  4385. declEntity = NULL;
  4386. }
  4387. else {
  4388. poolFinish(&dtd->pool);
  4389. declEntity->publicId = NULL;
  4390. declEntity->is_param = XML_FALSE;
  4391. /* if we have a parent parser or are reading an internal parameter
  4392. entity, then the entity declaration is not considered "internal"
  4393. */
  4394. declEntity->is_internal = !(parentParser || openInternalEntities);
  4395. if (entityDeclHandler)
  4396. handleDefault = XML_FALSE;
  4397. }
  4398. }
  4399. else {
  4400. poolDiscard(&dtd->pool);
  4401. declEntity = NULL;
  4402. }
  4403. }
  4404. break;
  4405. case XML_ROLE_PARAM_ENTITY_NAME:
  4406. #ifdef XML_DTD
  4407. if (dtd->keepProcessing) {
  4408. const XML_Char *name = poolStoreString(&dtd->pool, enc, s, next);
  4409. if (!name)
  4410. return XML_ERROR_NO_MEMORY;
  4411. declEntity = (ENTITY *)lookup(parser, &dtd->paramEntities,
  4412. name, sizeof(ENTITY));
  4413. if (!declEntity)
  4414. return XML_ERROR_NO_MEMORY;
  4415. if (declEntity->name != name) {
  4416. poolDiscard(&dtd->pool);
  4417. declEntity = NULL;
  4418. }
  4419. else {
  4420. poolFinish(&dtd->pool);
  4421. declEntity->publicId = NULL;
  4422. declEntity->is_param = XML_TRUE;
  4423. /* if we have a parent parser or are reading an internal parameter
  4424. entity, then the entity declaration is not considered "internal"
  4425. */
  4426. declEntity->is_internal = !(parentParser || openInternalEntities);
  4427. if (entityDeclHandler)
  4428. handleDefault = XML_FALSE;
  4429. }
  4430. }
  4431. else {
  4432. poolDiscard(&dtd->pool);
  4433. declEntity = NULL;
  4434. }
  4435. #else /* not XML_DTD */
  4436. declEntity = NULL;
  4437. #endif /* XML_DTD */
  4438. break;
  4439. case XML_ROLE_NOTATION_NAME:
  4440. declNotationPublicId = NULL;
  4441. declNotationName = NULL;
  4442. if (notationDeclHandler) {
  4443. declNotationName = poolStoreString(&tempPool, enc, s, next);
  4444. if (!declNotationName)
  4445. return XML_ERROR_NO_MEMORY;
  4446. poolFinish(&tempPool);
  4447. handleDefault = XML_FALSE;
  4448. }
  4449. break;
  4450. case XML_ROLE_NOTATION_PUBLIC_ID:
  4451. if (!XmlIsPublicId(enc, s, next, eventPP))
  4452. return XML_ERROR_PUBLICID;
  4453. if (declNotationName) { /* means notationDeclHandler != NULL */
  4454. XML_Char *tem = poolStoreString(&tempPool,
  4455. enc,
  4456. s + enc->minBytesPerChar,
  4457. next - enc->minBytesPerChar);
  4458. if (!tem)
  4459. return XML_ERROR_NO_MEMORY;
  4460. normalizePublicId(tem);
  4461. declNotationPublicId = tem;
  4462. poolFinish(&tempPool);
  4463. handleDefault = XML_FALSE;
  4464. }
  4465. break;
  4466. case XML_ROLE_NOTATION_SYSTEM_ID:
  4467. if (declNotationName && notationDeclHandler) {
  4468. const XML_Char *systemId
  4469. = poolStoreString(&tempPool, enc,
  4470. s + enc->minBytesPerChar,
  4471. next - enc->minBytesPerChar);
  4472. if (!systemId)
  4473. return XML_ERROR_NO_MEMORY;
  4474. *eventEndPP = s;
  4475. notationDeclHandler(handlerArg,
  4476. declNotationName,
  4477. curBase,
  4478. systemId,
  4479. declNotationPublicId);
  4480. handleDefault = XML_FALSE;
  4481. }
  4482. poolClear(&tempPool);
  4483. break;
  4484. case XML_ROLE_NOTATION_NO_SYSTEM_ID:
  4485. if (declNotationPublicId && notationDeclHandler) {
  4486. *eventEndPP = s;
  4487. notationDeclHandler(handlerArg,
  4488. declNotationName,
  4489. curBase,
  4490. 0,
  4491. declNotationPublicId);
  4492. handleDefault = XML_FALSE;
  4493. }
  4494. poolClear(&tempPool);
  4495. break;
  4496. case XML_ROLE_ERROR:
  4497. switch (tok) {
  4498. case XML_TOK_PARAM_ENTITY_REF:
  4499. /* PE references in internal subset are
  4500. not allowed within declarations. */
  4501. return XML_ERROR_PARAM_ENTITY_REF;
  4502. case XML_TOK_XML_DECL:
  4503. return XML_ERROR_MISPLACED_XML_PI;
  4504. default:
  4505. return XML_ERROR_SYNTAX;
  4506. }
  4507. #ifdef XML_DTD
  4508. case XML_ROLE_IGNORE_SECT:
  4509. {
  4510. enum XML_Error result;
  4511. if (defaultHandler)
  4512. reportDefault(parser, enc, s, next);
  4513. handleDefault = XML_FALSE;
  4514. result = doIgnoreSection(parser, enc, &next, end, nextPtr, haveMore);
  4515. if (result != XML_ERROR_NONE)
  4516. return result;
  4517. else if (!next) {
  4518. processor = ignoreSectionProcessor;
  4519. return result;
  4520. }
  4521. }
  4522. break;
  4523. #endif /* XML_DTD */
  4524. case XML_ROLE_GROUP_OPEN:
  4525. if (prologState.level >= groupSize) {
  4526. if (groupSize) {
  4527. char *temp = (char *)REALLOC(groupConnector, groupSize *= 2);
  4528. if (temp == NULL)
  4529. return XML_ERROR_NO_MEMORY;
  4530. groupConnector = temp;
  4531. if (dtd->scaffIndex) {
  4532. int *temp = (int *)REALLOC(dtd->scaffIndex,
  4533. groupSize * sizeof(int));
  4534. if (temp == NULL)
  4535. return XML_ERROR_NO_MEMORY;
  4536. dtd->scaffIndex = temp;
  4537. }
  4538. }
  4539. else {
  4540. groupConnector = (char *)MALLOC(groupSize = 32);
  4541. if (!groupConnector)
  4542. return XML_ERROR_NO_MEMORY;
  4543. }
  4544. }
  4545. groupConnector[prologState.level] = 0;
  4546. if (dtd->in_eldecl) {
  4547. int myindex = nextScaffoldPart(parser);
  4548. if (myindex < 0)
  4549. return XML_ERROR_NO_MEMORY;
  4550. dtd->scaffIndex[dtd->scaffLevel] = myindex;
  4551. dtd->scaffLevel++;
  4552. dtd->scaffold[myindex].type = XML_CTYPE_SEQ;
  4553. if (elementDeclHandler)
  4554. handleDefault = XML_FALSE;
  4555. }
  4556. break;
  4557. case XML_ROLE_GROUP_SEQUENCE:
  4558. if (groupConnector[prologState.level] == ASCII_PIPE)
  4559. return XML_ERROR_SYNTAX;
  4560. groupConnector[prologState.level] = ASCII_COMMA;
  4561. if (dtd->in_eldecl && elementDeclHandler)
  4562. handleDefault = XML_FALSE;
  4563. break;
  4564. case XML_ROLE_GROUP_CHOICE:
  4565. if (groupConnector[prologState.level] == ASCII_COMMA)
  4566. return XML_ERROR_SYNTAX;
  4567. if (dtd->in_eldecl
  4568. && !groupConnector[prologState.level]
  4569. && (dtd->scaffold[dtd->scaffIndex[dtd->scaffLevel - 1]].type
  4570. != XML_CTYPE_MIXED)
  4571. ) {
  4572. dtd->scaffold[dtd->scaffIndex[dtd->scaffLevel - 1]].type
  4573. = XML_CTYPE_CHOICE;
  4574. if (elementDeclHandler)
  4575. handleDefault = XML_FALSE;
  4576. }
  4577. groupConnector[prologState.level] = ASCII_PIPE;
  4578. break;
  4579. case XML_ROLE_PARAM_ENTITY_REF:
  4580. #ifdef XML_DTD
  4581. case XML_ROLE_INNER_PARAM_ENTITY_REF:
  4582. dtd->hasParamEntityRefs = XML_TRUE;
  4583. if (!paramEntityParsing)
  4584. dtd->keepProcessing = dtd->standalone;
  4585. else {
  4586. const XML_Char *name;
  4587. ENTITY *entity;
  4588. name = poolStoreString(&dtd->pool, enc,
  4589. s + enc->minBytesPerChar,
  4590. next - enc->minBytesPerChar);
  4591. if (!name)
  4592. return XML_ERROR_NO_MEMORY;
  4593. entity = (ENTITY *)lookup(parser, &dtd->paramEntities, name, 0);
  4594. poolDiscard(&dtd->pool);
  4595. /* first, determine if a check for an existing declaration is needed;
  4596. if yes, check that the entity exists, and that it is internal,
  4597. otherwise call the skipped entity handler
  4598. */
  4599. if (prologState.documentEntity &&
  4600. (dtd->standalone
  4601. ? !openInternalEntities
  4602. : !dtd->hasParamEntityRefs)) {
  4603. if (!entity)
  4604. return XML_ERROR_UNDEFINED_ENTITY;
  4605. else if (!entity->is_internal)
  4606. return XML_ERROR_ENTITY_DECLARED_IN_PE;
  4607. }
  4608. else if (!entity) {
  4609. dtd->keepProcessing = dtd->standalone;
  4610. /* cannot report skipped entities in declarations */
  4611. if ((role == XML_ROLE_PARAM_ENTITY_REF) && skippedEntityHandler) {
  4612. skippedEntityHandler(handlerArg, name, 1);
  4613. handleDefault = XML_FALSE;
  4614. }
  4615. break;
  4616. }
  4617. if (entity->open)
  4618. return XML_ERROR_RECURSIVE_ENTITY_REF;
  4619. if (entity->textPtr) {
  4620. enum XML_Error result;
  4621. XML_Bool betweenDecl =
  4622. (role == XML_ROLE_PARAM_ENTITY_REF ? XML_TRUE : XML_FALSE);
  4623. result = processInternalEntity(parser, entity, betweenDecl);
  4624. if (result != XML_ERROR_NONE)
  4625. return result;
  4626. handleDefault = XML_FALSE;
  4627. break;
  4628. }
  4629. if (externalEntityRefHandler) {
  4630. dtd->paramEntityRead = XML_FALSE;
  4631. entity->open = XML_TRUE;
  4632. if (!externalEntityRefHandler(externalEntityRefHandlerArg,
  4633. 0,
  4634. entity->base,
  4635. entity->systemId,
  4636. entity->publicId)) {
  4637. entity->open = XML_FALSE;
  4638. return XML_ERROR_EXTERNAL_ENTITY_HANDLING;
  4639. }
  4640. entity->open = XML_FALSE;
  4641. handleDefault = XML_FALSE;
  4642. if (!dtd->paramEntityRead) {
  4643. dtd->keepProcessing = dtd->standalone;
  4644. break;
  4645. }
  4646. }
  4647. else {
  4648. dtd->keepProcessing = dtd->standalone;
  4649. break;
  4650. }
  4651. }
  4652. #endif /* XML_DTD */
  4653. if (!dtd->standalone &&
  4654. notStandaloneHandler &&
  4655. !notStandaloneHandler(handlerArg))
  4656. return XML_ERROR_NOT_STANDALONE;
  4657. break;
  4658. /* Element declaration stuff */
  4659. case XML_ROLE_ELEMENT_NAME:
  4660. if (elementDeclHandler) {
  4661. declElementType = getElementType(parser, enc, s, next);
  4662. if (!declElementType)
  4663. return XML_ERROR_NO_MEMORY;
  4664. dtd->scaffLevel = 0;
  4665. dtd->scaffCount = 0;
  4666. dtd->in_eldecl = XML_TRUE;
  4667. handleDefault = XML_FALSE;
  4668. }
  4669. break;
  4670. case XML_ROLE_CONTENT_ANY:
  4671. case XML_ROLE_CONTENT_EMPTY:
  4672. if (dtd->in_eldecl) {
  4673. if (elementDeclHandler) {
  4674. XML_Content * content = (XML_Content *) MALLOC(sizeof(XML_Content));
  4675. if (!content)
  4676. return XML_ERROR_NO_MEMORY;
  4677. content->quant = XML_CQUANT_NONE;
  4678. content->name = NULL;
  4679. content->numchildren = 0;
  4680. content->children = NULL;
  4681. content->type = ((role == XML_ROLE_CONTENT_ANY) ?
  4682. XML_CTYPE_ANY :
  4683. XML_CTYPE_EMPTY);
  4684. *eventEndPP = s;
  4685. elementDeclHandler(handlerArg, declElementType->name, content);
  4686. handleDefault = XML_FALSE;
  4687. }
  4688. dtd->in_eldecl = XML_FALSE;
  4689. }
  4690. break;
  4691. case XML_ROLE_CONTENT_PCDATA:
  4692. if (dtd->in_eldecl) {
  4693. dtd->scaffold[dtd->scaffIndex[dtd->scaffLevel - 1]].type
  4694. = XML_CTYPE_MIXED;
  4695. if (elementDeclHandler)
  4696. handleDefault = XML_FALSE;
  4697. }
  4698. break;
  4699. case XML_ROLE_CONTENT_ELEMENT:
  4700. quant = XML_CQUANT_NONE;
  4701. goto elementContent;
  4702. case XML_ROLE_CONTENT_ELEMENT_OPT:
  4703. quant = XML_CQUANT_OPT;
  4704. goto elementContent;
  4705. case XML_ROLE_CONTENT_ELEMENT_REP:
  4706. quant = XML_CQUANT_REP;
  4707. goto elementContent;
  4708. case XML_ROLE_CONTENT_ELEMENT_PLUS:
  4709. quant = XML_CQUANT_PLUS;
  4710. elementContent:
  4711. if (dtd->in_eldecl) {
  4712. ELEMENT_TYPE *el;
  4713. const XML_Char *name;
  4714. int nameLen;
  4715. const char *nxt = (quant == XML_CQUANT_NONE
  4716. ? next
  4717. : next - enc->minBytesPerChar);
  4718. int myindex = nextScaffoldPart(parser);
  4719. if (myindex < 0)
  4720. return XML_ERROR_NO_MEMORY;
  4721. dtd->scaffold[myindex].type = XML_CTYPE_NAME;
  4722. dtd->scaffold[myindex].quant = quant;
  4723. el = getElementType(parser, enc, s, nxt);
  4724. if (!el)
  4725. return XML_ERROR_NO_MEMORY;
  4726. name = el->name;
  4727. dtd->scaffold[myindex].name = name;
  4728. nameLen = 0;
  4729. for (; name[nameLen++]; );
  4730. dtd->contentStringLen += nameLen;
  4731. if (elementDeclHandler)
  4732. handleDefault = XML_FALSE;
  4733. }
  4734. break;
  4735. case XML_ROLE_GROUP_CLOSE:
  4736. quant = XML_CQUANT_NONE;
  4737. goto closeGroup;
  4738. case XML_ROLE_GROUP_CLOSE_OPT:
  4739. quant = XML_CQUANT_OPT;
  4740. goto closeGroup;
  4741. case XML_ROLE_GROUP_CLOSE_REP:
  4742. quant = XML_CQUANT_REP;
  4743. goto closeGroup;
  4744. case XML_ROLE_GROUP_CLOSE_PLUS:
  4745. quant = XML_CQUANT_PLUS;
  4746. closeGroup:
  4747. if (dtd->in_eldecl) {
  4748. if (elementDeclHandler)
  4749. handleDefault = XML_FALSE;
  4750. dtd->scaffLevel--;
  4751. dtd->scaffold[dtd->scaffIndex[dtd->scaffLevel]].quant = quant;
  4752. if (dtd->scaffLevel == 0) {
  4753. if (!handleDefault) {
  4754. XML_Content *model = build_model(parser);
  4755. if (!model)
  4756. return XML_ERROR_NO_MEMORY;
  4757. *eventEndPP = s;
  4758. elementDeclHandler(handlerArg, declElementType->name, model);
  4759. }
  4760. dtd->in_eldecl = XML_FALSE;
  4761. dtd->contentStringLen = 0;
  4762. }
  4763. }
  4764. break;
  4765. /* End element declaration stuff */
  4766. case XML_ROLE_PI:
  4767. if (!reportProcessingInstruction(parser, enc, s, next))
  4768. return XML_ERROR_NO_MEMORY;
  4769. handleDefault = XML_FALSE;
  4770. break;
  4771. case XML_ROLE_COMMENT:
  4772. if (!reportComment(parser, enc, s, next))
  4773. return XML_ERROR_NO_MEMORY;
  4774. handleDefault = XML_FALSE;
  4775. break;
  4776. case XML_ROLE_NONE:
  4777. switch (tok) {
  4778. case XML_TOK_BOM:
  4779. handleDefault = XML_FALSE;
  4780. break;
  4781. }
  4782. break;
  4783. case XML_ROLE_DOCTYPE_NONE:
  4784. if (startDoctypeDeclHandler)
  4785. handleDefault = XML_FALSE;
  4786. break;
  4787. case XML_ROLE_ENTITY_NONE:
  4788. if (dtd->keepProcessing && entityDeclHandler)
  4789. handleDefault = XML_FALSE;
  4790. break;
  4791. case XML_ROLE_NOTATION_NONE:
  4792. if (notationDeclHandler)
  4793. handleDefault = XML_FALSE;
  4794. break;
  4795. case XML_ROLE_ATTLIST_NONE:
  4796. if (dtd->keepProcessing && attlistDeclHandler)
  4797. handleDefault = XML_FALSE;
  4798. break;
  4799. case XML_ROLE_ELEMENT_NONE:
  4800. if (elementDeclHandler)
  4801. handleDefault = XML_FALSE;
  4802. break;
  4803. } /* end of big switch */
  4804. if (handleDefault && defaultHandler)
  4805. reportDefault(parser, enc, s, next);
  4806. switch (ps_parsing) {
  4807. case XML_SUSPENDED:
  4808. *nextPtr = next;
  4809. return XML_ERROR_NONE;
  4810. case XML_FINISHED:
  4811. return XML_ERROR_ABORTED;
  4812. default:
  4813. s = next;
  4814. tok = XmlPrologTok(enc, s, end, &next);
  4815. }
  4816. }
  4817. /* not reached */
  4818. }
  4819. static enum XML_Error PTRCALL
  4820. epilogProcessor(XML_Parser parser,
  4821. const char *s,
  4822. const char *end,
  4823. const char **nextPtr)
  4824. {
  4825. processor = epilogProcessor;
  4826. eventPtr = s;
  4827. for (;;) {
  4828. const char *next = NULL;
  4829. int tok = XmlPrologTok(encoding, s, end, &next);
  4830. eventEndPtr = next;
  4831. switch (tok) {
  4832. /* report partial linebreak - it might be the last token */
  4833. case -XML_TOK_PROLOG_S:
  4834. if (defaultHandler) {
  4835. reportDefault(parser, encoding, s, next);
  4836. if (ps_parsing == XML_FINISHED)
  4837. return XML_ERROR_ABORTED;
  4838. }
  4839. *nextPtr = next;
  4840. return XML_ERROR_NONE;
  4841. case XML_TOK_NONE:
  4842. *nextPtr = s;
  4843. return XML_ERROR_NONE;
  4844. case XML_TOK_PROLOG_S:
  4845. if (defaultHandler)
  4846. reportDefault(parser, encoding, s, next);
  4847. break;
  4848. case XML_TOK_PI:
  4849. if (!reportProcessingInstruction(parser, encoding, s, next))
  4850. return XML_ERROR_NO_MEMORY;
  4851. break;
  4852. case XML_TOK_COMMENT:
  4853. if (!reportComment(parser, encoding, s, next))
  4854. return XML_ERROR_NO_MEMORY;
  4855. break;
  4856. case XML_TOK_INVALID:
  4857. eventPtr = next;
  4858. return XML_ERROR_INVALID_TOKEN;
  4859. case XML_TOK_PARTIAL:
  4860. if (!ps_finalBuffer) {
  4861. *nextPtr = s;
  4862. return XML_ERROR_NONE;
  4863. }
  4864. return XML_ERROR_UNCLOSED_TOKEN;
  4865. case XML_TOK_PARTIAL_CHAR:
  4866. if (!ps_finalBuffer) {
  4867. *nextPtr = s;
  4868. return XML_ERROR_NONE;
  4869. }
  4870. return XML_ERROR_PARTIAL_CHAR;
  4871. default:
  4872. return XML_ERROR_JUNK_AFTER_DOC_ELEMENT;
  4873. }
  4874. eventPtr = s = next;
  4875. switch (ps_parsing) {
  4876. case XML_SUSPENDED:
  4877. *nextPtr = next;
  4878. return XML_ERROR_NONE;
  4879. case XML_FINISHED:
  4880. return XML_ERROR_ABORTED;
  4881. default: ;
  4882. }
  4883. }
  4884. }
  4885. static enum XML_Error
  4886. processInternalEntity(XML_Parser parser, ENTITY *entity,
  4887. XML_Bool betweenDecl)
  4888. {
  4889. const char *textStart, *textEnd;
  4890. const char *next;
  4891. enum XML_Error result;
  4892. OPEN_INTERNAL_ENTITY *openEntity;
  4893. if (freeInternalEntities) {
  4894. openEntity = freeInternalEntities;
  4895. freeInternalEntities = openEntity->next;
  4896. }
  4897. else {
  4898. openEntity = (OPEN_INTERNAL_ENTITY *)MALLOC(sizeof(OPEN_INTERNAL_ENTITY));
  4899. if (!openEntity)
  4900. return XML_ERROR_NO_MEMORY;
  4901. }
  4902. entity->open = XML_TRUE;
  4903. entity->processed = 0;
  4904. openEntity->next = openInternalEntities;
  4905. openInternalEntities = openEntity;
  4906. openEntity->entity = entity;
  4907. openEntity->startTagLevel = tagLevel;
  4908. openEntity->betweenDecl = betweenDecl;
  4909. openEntity->internalEventPtr = NULL;
  4910. openEntity->internalEventEndPtr = NULL;
  4911. textStart = (char *)entity->textPtr;
  4912. textEnd = (char *)(entity->textPtr + entity->textLen);
  4913. /* Set a safe default value in case 'next' does not get set */
  4914. next = textStart;
  4915. #ifdef XML_DTD
  4916. if (entity->is_param) {
  4917. int tok = XmlPrologTok(internalEncoding, textStart, textEnd, &next);
  4918. result = doProlog(parser, internalEncoding, textStart, textEnd, tok,
  4919. next, &next, XML_FALSE);
  4920. }
  4921. else
  4922. #endif /* XML_DTD */
  4923. result = doContent(parser, tagLevel, internalEncoding, textStart,
  4924. textEnd, &next, XML_FALSE);
  4925. if (result == XML_ERROR_NONE) {
  4926. if (textEnd != next && ps_parsing == XML_SUSPENDED) {
  4927. entity->processed = (int)(next - textStart);
  4928. processor = internalEntityProcessor;
  4929. }
  4930. else {
  4931. entity->open = XML_FALSE;
  4932. openInternalEntities = openEntity->next;
  4933. /* put openEntity back in list of free instances */
  4934. openEntity->next = freeInternalEntities;
  4935. freeInternalEntities = openEntity;
  4936. }
  4937. }
  4938. return result;
  4939. }
  4940. static enum XML_Error PTRCALL
  4941. internalEntityProcessor(XML_Parser parser,
  4942. const char *s,
  4943. const char *end,
  4944. const char **nextPtr)
  4945. {
  4946. ENTITY *entity;
  4947. const char *textStart, *textEnd;
  4948. const char *next;
  4949. enum XML_Error result;
  4950. OPEN_INTERNAL_ENTITY *openEntity = openInternalEntities;
  4951. if (!openEntity)
  4952. return XML_ERROR_UNEXPECTED_STATE;
  4953. entity = openEntity->entity;
  4954. textStart = ((char *)entity->textPtr) + entity->processed;
  4955. textEnd = (char *)(entity->textPtr + entity->textLen);
  4956. /* Set a safe default value in case 'next' does not get set */
  4957. next = textStart;
  4958. #ifdef XML_DTD
  4959. if (entity->is_param) {
  4960. int tok = XmlPrologTok(internalEncoding, textStart, textEnd, &next);
  4961. result = doProlog(parser, internalEncoding, textStart, textEnd, tok,
  4962. next, &next, XML_FALSE);
  4963. }
  4964. else
  4965. #endif /* XML_DTD */
  4966. result = doContent(parser, openEntity->startTagLevel, internalEncoding,
  4967. textStart, textEnd, &next, XML_FALSE);
  4968. if (result != XML_ERROR_NONE)
  4969. return result;
  4970. else if (textEnd != next && ps_parsing == XML_SUSPENDED) {
  4971. entity->processed = (int)(next - (char *)entity->textPtr);
  4972. return result;
  4973. }
  4974. else {
  4975. entity->open = XML_FALSE;
  4976. openInternalEntities = openEntity->next;
  4977. /* put openEntity back in list of free instances */
  4978. openEntity->next = freeInternalEntities;
  4979. freeInternalEntities = openEntity;
  4980. }
  4981. #ifdef XML_DTD
  4982. if (entity->is_param) {
  4983. int tok;
  4984. processor = prologProcessor;
  4985. tok = XmlPrologTok(encoding, s, end, &next);
  4986. return doProlog(parser, encoding, s, end, tok, next, nextPtr,
  4987. (XML_Bool)!ps_finalBuffer);
  4988. }
  4989. else
  4990. #endif /* XML_DTD */
  4991. {
  4992. processor = contentProcessor;
  4993. /* see externalEntityContentProcessor vs contentProcessor */
  4994. return doContent(parser, parentParser ? 1 : 0, encoding, s, end,
  4995. nextPtr, (XML_Bool)!ps_finalBuffer);
  4996. }
  4997. }
  4998. static enum XML_Error PTRCALL
  4999. errorProcessor(XML_Parser parser,
  5000. const char *UNUSED_P(s),
  5001. const char *UNUSED_P(end),
  5002. const char **UNUSED_P(nextPtr))
  5003. {
  5004. return errorCode;
  5005. }
  5006. static enum XML_Error
  5007. storeAttributeValue(XML_Parser parser, const ENCODING *enc, XML_Bool isCdata,
  5008. const char *ptr, const char *end,
  5009. STRING_POOL *pool)
  5010. {
  5011. enum XML_Error result = appendAttributeValue(parser, enc, isCdata, ptr,
  5012. end, pool);
  5013. if (result)
  5014. return result;
  5015. if (!isCdata && poolLength(pool) && poolLastChar(pool) == 0x20)
  5016. poolChop(pool);
  5017. if (!poolAppendChar(pool, XML_T('\0')))
  5018. return XML_ERROR_NO_MEMORY;
  5019. return XML_ERROR_NONE;
  5020. }
  5021. static enum XML_Error
  5022. appendAttributeValue(XML_Parser parser, const ENCODING *enc, XML_Bool isCdata,
  5023. const char *ptr, const char *end,
  5024. STRING_POOL *pool)
  5025. {
  5026. DTD * const dtd = _dtd; /* save one level of indirection */
  5027. for (;;) {
  5028. const char *next;
  5029. int tok = XmlAttributeValueTok(enc, ptr, end, &next);
  5030. switch (tok) {
  5031. case XML_TOK_NONE:
  5032. return XML_ERROR_NONE;
  5033. case XML_TOK_INVALID:
  5034. if (enc == encoding)
  5035. eventPtr = next;
  5036. return XML_ERROR_INVALID_TOKEN;
  5037. case XML_TOK_PARTIAL:
  5038. if (enc == encoding)
  5039. eventPtr = ptr;
  5040. return XML_ERROR_INVALID_TOKEN;
  5041. case XML_TOK_CHAR_REF:
  5042. {
  5043. XML_Char buf[XML_ENCODE_MAX];
  5044. int i;
  5045. int n = XmlCharRefNumber(enc, ptr);
  5046. if (n < 0) {
  5047. if (enc == encoding)
  5048. eventPtr = ptr;
  5049. return XML_ERROR_BAD_CHAR_REF;
  5050. }
  5051. if (!isCdata
  5052. && n == 0x20 /* space */
  5053. && (poolLength(pool) == 0 || poolLastChar(pool) == 0x20))
  5054. break;
  5055. n = XmlEncode(n, (ICHAR *)buf);
  5056. if (!n) {
  5057. if (enc == encoding)
  5058. eventPtr = ptr;
  5059. return XML_ERROR_BAD_CHAR_REF;
  5060. }
  5061. for (i = 0; i < n; i++) {
  5062. if (!poolAppendChar(pool, buf[i]))
  5063. return XML_ERROR_NO_MEMORY;
  5064. }
  5065. }
  5066. break;
  5067. case XML_TOK_DATA_CHARS:
  5068. if (!poolAppend(pool, enc, ptr, next))
  5069. return XML_ERROR_NO_MEMORY;
  5070. break;
  5071. case XML_TOK_TRAILING_CR:
  5072. next = ptr + enc->minBytesPerChar;
  5073. /* fall through */
  5074. case XML_TOK_ATTRIBUTE_VALUE_S:
  5075. case XML_TOK_DATA_NEWLINE:
  5076. if (!isCdata && (poolLength(pool) == 0 || poolLastChar(pool) == 0x20))
  5077. break;
  5078. if (!poolAppendChar(pool, 0x20))
  5079. return XML_ERROR_NO_MEMORY;
  5080. break;
  5081. case XML_TOK_ENTITY_REF:
  5082. {
  5083. const XML_Char *name;
  5084. ENTITY *entity;
  5085. char checkEntityDecl;
  5086. XML_Char ch = (XML_Char) XmlPredefinedEntityName(enc,
  5087. ptr + enc->minBytesPerChar,
  5088. next - enc->minBytesPerChar);
  5089. if (ch) {
  5090. if (!poolAppendChar(pool, ch))
  5091. return XML_ERROR_NO_MEMORY;
  5092. break;
  5093. }
  5094. name = poolStoreString(&temp2Pool, enc,
  5095. ptr + enc->minBytesPerChar,
  5096. next - enc->minBytesPerChar);
  5097. if (!name)
  5098. return XML_ERROR_NO_MEMORY;
  5099. entity = (ENTITY *)lookup(parser, &dtd->generalEntities, name, 0);
  5100. poolDiscard(&temp2Pool);
  5101. /* First, determine if a check for an existing declaration is needed;
  5102. if yes, check that the entity exists, and that it is internal.
  5103. */
  5104. if (pool == &dtd->pool) /* are we called from prolog? */
  5105. checkEntityDecl =
  5106. #ifdef XML_DTD
  5107. prologState.documentEntity &&
  5108. #endif /* XML_DTD */
  5109. (dtd->standalone
  5110. ? !openInternalEntities
  5111. : !dtd->hasParamEntityRefs);
  5112. else /* if (pool == &tempPool): we are called from content */
  5113. checkEntityDecl = !dtd->hasParamEntityRefs || dtd->standalone;
  5114. if (checkEntityDecl) {
  5115. if (!entity)
  5116. return XML_ERROR_UNDEFINED_ENTITY;
  5117. else if (!entity->is_internal)
  5118. return XML_ERROR_ENTITY_DECLARED_IN_PE;
  5119. }
  5120. else if (!entity) {
  5121. /* Cannot report skipped entity here - see comments on
  5122. skippedEntityHandler.
  5123. if (skippedEntityHandler)
  5124. skippedEntityHandler(handlerArg, name, 0);
  5125. */
  5126. /* Cannot call the default handler because this would be
  5127. out of sync with the call to the startElementHandler.
  5128. if ((pool == &tempPool) && defaultHandler)
  5129. reportDefault(parser, enc, ptr, next);
  5130. */
  5131. break;
  5132. }
  5133. if (entity->open) {
  5134. if (enc == encoding)
  5135. eventPtr = ptr;
  5136. return XML_ERROR_RECURSIVE_ENTITY_REF;
  5137. }
  5138. if (entity->notation) {
  5139. if (enc == encoding)
  5140. eventPtr = ptr;
  5141. return XML_ERROR_BINARY_ENTITY_REF;
  5142. }
  5143. if (!entity->textPtr) {
  5144. if (enc == encoding)
  5145. eventPtr = ptr;
  5146. return XML_ERROR_ATTRIBUTE_EXTERNAL_ENTITY_REF;
  5147. }
  5148. else {
  5149. enum XML_Error result;
  5150. const XML_Char *textEnd = entity->textPtr + entity->textLen;
  5151. entity->open = XML_TRUE;
  5152. result = appendAttributeValue(parser, internalEncoding, isCdata,
  5153. (char *)entity->textPtr,
  5154. (char *)textEnd, pool);
  5155. entity->open = XML_FALSE;
  5156. if (result)
  5157. return result;
  5158. }
  5159. }
  5160. break;
  5161. default:
  5162. if (enc == encoding)
  5163. eventPtr = ptr;
  5164. return XML_ERROR_UNEXPECTED_STATE;
  5165. }
  5166. ptr = next;
  5167. }
  5168. /* not reached */
  5169. }
  5170. static enum XML_Error
  5171. storeEntityValue(XML_Parser parser,
  5172. const ENCODING *enc,
  5173. const char *entityTextPtr,
  5174. const char *entityTextEnd)
  5175. {
  5176. DTD * const dtd = _dtd; /* save one level of indirection */
  5177. STRING_POOL *pool = &(dtd->entityValuePool);
  5178. enum XML_Error result = XML_ERROR_NONE;
  5179. #ifdef XML_DTD
  5180. int oldInEntityValue = prologState.inEntityValue;
  5181. prologState.inEntityValue = 1;
  5182. #endif /* XML_DTD */
  5183. /* never return Null for the value argument in EntityDeclHandler,
  5184. since this would indicate an external entity; therefore we
  5185. have to make sure that entityValuePool.start is not null */
  5186. if (!pool->blocks) {
  5187. if (!poolGrow(pool))
  5188. return XML_ERROR_NO_MEMORY;
  5189. }
  5190. for (;;) {
  5191. const char *next;
  5192. int tok = XmlEntityValueTok(enc, entityTextPtr, entityTextEnd, &next);
  5193. switch (tok) {
  5194. case XML_TOK_PARAM_ENTITY_REF:
  5195. #ifdef XML_DTD
  5196. if (isParamEntity || enc != encoding) {
  5197. const XML_Char *name;
  5198. ENTITY *entity;
  5199. name = poolStoreString(&tempPool, enc,
  5200. entityTextPtr + enc->minBytesPerChar,
  5201. next - enc->minBytesPerChar);
  5202. if (!name) {
  5203. result = XML_ERROR_NO_MEMORY;
  5204. goto endEntityValue;
  5205. }
  5206. entity = (ENTITY *)lookup(parser, &dtd->paramEntities, name, 0);
  5207. poolDiscard(&tempPool);
  5208. if (!entity) {
  5209. /* not a well-formedness error - see XML 1.0: WFC Entity Declared */
  5210. /* cannot report skipped entity here - see comments on
  5211. skippedEntityHandler
  5212. if (skippedEntityHandler)
  5213. skippedEntityHandler(handlerArg, name, 0);
  5214. */
  5215. dtd->keepProcessing = dtd->standalone;
  5216. goto endEntityValue;
  5217. }
  5218. if (entity->open) {
  5219. if (enc == encoding)
  5220. eventPtr = entityTextPtr;
  5221. result = XML_ERROR_RECURSIVE_ENTITY_REF;
  5222. goto endEntityValue;
  5223. }
  5224. if (entity->systemId) {
  5225. if (externalEntityRefHandler) {
  5226. dtd->paramEntityRead = XML_FALSE;
  5227. entity->open = XML_TRUE;
  5228. if (!externalEntityRefHandler(externalEntityRefHandlerArg,
  5229. 0,
  5230. entity->base,
  5231. entity->systemId,
  5232. entity->publicId)) {
  5233. entity->open = XML_FALSE;
  5234. result = XML_ERROR_EXTERNAL_ENTITY_HANDLING;
  5235. goto endEntityValue;
  5236. }
  5237. entity->open = XML_FALSE;
  5238. if (!dtd->paramEntityRead)
  5239. dtd->keepProcessing = dtd->standalone;
  5240. }
  5241. else
  5242. dtd->keepProcessing = dtd->standalone;
  5243. }
  5244. else {
  5245. entity->open = XML_TRUE;
  5246. result = storeEntityValue(parser,
  5247. internalEncoding,
  5248. (char *)entity->textPtr,
  5249. (char *)(entity->textPtr
  5250. + entity->textLen));
  5251. entity->open = XML_FALSE;
  5252. if (result)
  5253. goto endEntityValue;
  5254. }
  5255. break;
  5256. }
  5257. #endif /* XML_DTD */
  5258. /* In the internal subset, PE references are not legal
  5259. within markup declarations, e.g entity values in this case. */
  5260. eventPtr = entityTextPtr;
  5261. result = XML_ERROR_PARAM_ENTITY_REF;
  5262. goto endEntityValue;
  5263. case XML_TOK_NONE:
  5264. result = XML_ERROR_NONE;
  5265. goto endEntityValue;
  5266. case XML_TOK_ENTITY_REF:
  5267. case XML_TOK_DATA_CHARS:
  5268. if (!poolAppend(pool, enc, entityTextPtr, next)) {
  5269. result = XML_ERROR_NO_MEMORY;
  5270. goto endEntityValue;
  5271. }
  5272. break;
  5273. case XML_TOK_TRAILING_CR:
  5274. next = entityTextPtr + enc->minBytesPerChar;
  5275. /* fall through */
  5276. case XML_TOK_DATA_NEWLINE:
  5277. if (pool->end == pool->ptr && !poolGrow(pool)) {
  5278. result = XML_ERROR_NO_MEMORY;
  5279. goto endEntityValue;
  5280. }
  5281. *(pool->ptr)++ = 0xA;
  5282. break;
  5283. case XML_TOK_CHAR_REF:
  5284. {
  5285. XML_Char buf[XML_ENCODE_MAX];
  5286. int i;
  5287. int n = XmlCharRefNumber(enc, entityTextPtr);
  5288. if (n < 0) {
  5289. if (enc == encoding)
  5290. eventPtr = entityTextPtr;
  5291. result = XML_ERROR_BAD_CHAR_REF;
  5292. goto endEntityValue;
  5293. }
  5294. n = XmlEncode(n, (ICHAR *)buf);
  5295. if (!n) {
  5296. if (enc == encoding)
  5297. eventPtr = entityTextPtr;
  5298. result = XML_ERROR_BAD_CHAR_REF;
  5299. goto endEntityValue;
  5300. }
  5301. for (i = 0; i < n; i++) {
  5302. if (pool->end == pool->ptr && !poolGrow(pool)) {
  5303. result = XML_ERROR_NO_MEMORY;
  5304. goto endEntityValue;
  5305. }
  5306. *(pool->ptr)++ = buf[i];
  5307. }
  5308. }
  5309. break;
  5310. case XML_TOK_PARTIAL:
  5311. if (enc == encoding)
  5312. eventPtr = entityTextPtr;
  5313. result = XML_ERROR_INVALID_TOKEN;
  5314. goto endEntityValue;
  5315. case XML_TOK_INVALID:
  5316. if (enc == encoding)
  5317. eventPtr = next;
  5318. result = XML_ERROR_INVALID_TOKEN;
  5319. goto endEntityValue;
  5320. default:
  5321. if (enc == encoding)
  5322. eventPtr = entityTextPtr;
  5323. result = XML_ERROR_UNEXPECTED_STATE;
  5324. goto endEntityValue;
  5325. }
  5326. entityTextPtr = next;
  5327. }
  5328. endEntityValue:
  5329. #ifdef XML_DTD
  5330. prologState.inEntityValue = oldInEntityValue;
  5331. #endif /* XML_DTD */
  5332. return result;
  5333. }
  5334. static void FASTCALL
  5335. normalizeLines(XML_Char *s)
  5336. {
  5337. XML_Char *p;
  5338. for (;; s++) {
  5339. if (*s == XML_T('\0'))
  5340. return;
  5341. if (*s == 0xD)
  5342. break;
  5343. }
  5344. p = s;
  5345. do {
  5346. if (*s == 0xD) {
  5347. *p++ = 0xA;
  5348. if (*++s == 0xA)
  5349. s++;
  5350. }
  5351. else
  5352. *p++ = *s++;
  5353. } while (*s);
  5354. *p = XML_T('\0');
  5355. }
  5356. static int
  5357. reportProcessingInstruction(XML_Parser parser, const ENCODING *enc,
  5358. const char *start, const char *end)
  5359. {
  5360. const XML_Char *target;
  5361. XML_Char *data;
  5362. const char *tem;
  5363. if (!processingInstructionHandler) {
  5364. if (defaultHandler)
  5365. reportDefault(parser, enc, start, end);
  5366. return 1;
  5367. }
  5368. start += enc->minBytesPerChar * 2;
  5369. tem = start + XmlNameLength(enc, start);
  5370. target = poolStoreString(&tempPool, enc, start, tem);
  5371. if (!target)
  5372. return 0;
  5373. poolFinish(&tempPool);
  5374. data = poolStoreString(&tempPool, enc,
  5375. XmlSkipS(enc, tem),
  5376. end - enc->minBytesPerChar*2);
  5377. if (!data)
  5378. return 0;
  5379. normalizeLines(data);
  5380. processingInstructionHandler(handlerArg, target, data);
  5381. poolClear(&tempPool);
  5382. return 1;
  5383. }
  5384. static int
  5385. reportComment(XML_Parser parser, const ENCODING *enc,
  5386. const char *start, const char *end)
  5387. {
  5388. XML_Char *data;
  5389. if (!commentHandler) {
  5390. if (defaultHandler)
  5391. reportDefault(parser, enc, start, end);
  5392. return 1;
  5393. }
  5394. data = poolStoreString(&tempPool,
  5395. enc,
  5396. start + enc->minBytesPerChar * 4,
  5397. end - enc->minBytesPerChar * 3);
  5398. if (!data)
  5399. return 0;
  5400. normalizeLines(data);
  5401. commentHandler(handlerArg, data);
  5402. poolClear(&tempPool);
  5403. return 1;
  5404. }
  5405. static void
  5406. reportDefault(XML_Parser parser, const ENCODING *enc,
  5407. const char *s, const char *end)
  5408. {
  5409. if (MUST_CONVERT(enc, s)) {
  5410. enum XML_Convert_Result convert_res;
  5411. const char **eventPP;
  5412. const char **eventEndPP;
  5413. if (enc == encoding) {
  5414. eventPP = &eventPtr;
  5415. eventEndPP = &eventEndPtr;
  5416. }
  5417. else {
  5418. eventPP = &(openInternalEntities->internalEventPtr);
  5419. eventEndPP = &(openInternalEntities->internalEventEndPtr);
  5420. }
  5421. do {
  5422. ICHAR *dataPtr = (ICHAR *)dataBuf;
  5423. convert_res = XmlConvert(enc, &s, end, &dataPtr, (ICHAR *)dataBufEnd);
  5424. *eventEndPP = s;
  5425. defaultHandler(handlerArg, dataBuf, (int)(dataPtr - (ICHAR *)dataBuf));
  5426. *eventPP = s;
  5427. } while ((convert_res != XML_CONVERT_COMPLETED) && (convert_res != XML_CONVERT_INPUT_INCOMPLETE));
  5428. }
  5429. else
  5430. defaultHandler(handlerArg, (XML_Char *)s, (int)((XML_Char *)end - (XML_Char *)s));
  5431. }
  5432. static int
  5433. defineAttribute(ELEMENT_TYPE *type, ATTRIBUTE_ID *attId, XML_Bool isCdata,
  5434. XML_Bool isId, const XML_Char *value, XML_Parser parser)
  5435. {
  5436. DEFAULT_ATTRIBUTE *att;
  5437. if (value || isId) {
  5438. /* The handling of default attributes gets messed up if we have
  5439. a default which duplicates a non-default. */
  5440. int i;
  5441. for (i = 0; i < type->nDefaultAtts; i++)
  5442. if (attId == type->defaultAtts[i].id)
  5443. return 1;
  5444. if (isId && !type->idAtt && !attId->xmlns)
  5445. type->idAtt = attId;
  5446. }
  5447. if (type->nDefaultAtts == type->allocDefaultAtts) {
  5448. if (type->allocDefaultAtts == 0) {
  5449. type->allocDefaultAtts = 8;
  5450. type->defaultAtts = (DEFAULT_ATTRIBUTE *)MALLOC(type->allocDefaultAtts
  5451. * sizeof(DEFAULT_ATTRIBUTE));
  5452. if (!type->defaultAtts)
  5453. return 0;
  5454. }
  5455. else {
  5456. DEFAULT_ATTRIBUTE *temp;
  5457. int count = type->allocDefaultAtts * 2;
  5458. temp = (DEFAULT_ATTRIBUTE *)
  5459. REALLOC(type->defaultAtts, (count * sizeof(DEFAULT_ATTRIBUTE)));
  5460. if (temp == NULL)
  5461. return 0;
  5462. type->allocDefaultAtts = count;
  5463. type->defaultAtts = temp;
  5464. }
  5465. }
  5466. att = type->defaultAtts + type->nDefaultAtts;
  5467. att->id = attId;
  5468. att->value = value;
  5469. att->isCdata = isCdata;
  5470. if (!isCdata)
  5471. attId->maybeTokenized = XML_TRUE;
  5472. type->nDefaultAtts += 1;
  5473. return 1;
  5474. }
  5475. static int
  5476. setElementTypePrefix(XML_Parser parser, ELEMENT_TYPE *elementType)
  5477. {
  5478. DTD * const dtd = _dtd; /* save one level of indirection */
  5479. const XML_Char *name;
  5480. for (name = elementType->name; *name; name++) {
  5481. if (*name == XML_T(ASCII_COLON)) {
  5482. PREFIX *prefix;
  5483. const XML_Char *s;
  5484. for (s = elementType->name; s != name; s++) {
  5485. if (!poolAppendChar(&dtd->pool, *s))
  5486. return 0;
  5487. }
  5488. if (!poolAppendChar(&dtd->pool, XML_T('\0')))
  5489. return 0;
  5490. prefix = (PREFIX *)lookup(parser, &dtd->prefixes, poolStart(&dtd->pool),
  5491. sizeof(PREFIX));
  5492. if (!prefix)
  5493. return 0;
  5494. if (prefix->name == poolStart(&dtd->pool))
  5495. poolFinish(&dtd->pool);
  5496. else
  5497. poolDiscard(&dtd->pool);
  5498. elementType->prefix = prefix;
  5499. }
  5500. }
  5501. return 1;
  5502. }
  5503. static ATTRIBUTE_ID *
  5504. getAttributeId(XML_Parser parser, const ENCODING *enc,
  5505. const char *start, const char *end)
  5506. {
  5507. DTD * const dtd = _dtd; /* save one level of indirection */
  5508. ATTRIBUTE_ID *id;
  5509. const XML_Char *name;
  5510. if (!poolAppendChar(&dtd->pool, XML_T('\0')))
  5511. return NULL;
  5512. name = poolStoreString(&dtd->pool, enc, start, end);
  5513. if (!name)
  5514. return NULL;
  5515. /* skip quotation mark - its storage will be re-used (like in name[-1]) */
  5516. ++name;
  5517. id = (ATTRIBUTE_ID *)lookup(parser, &dtd->attributeIds, name, sizeof(ATTRIBUTE_ID));
  5518. if (!id)
  5519. return NULL;
  5520. if (id->name != name)
  5521. poolDiscard(&dtd->pool);
  5522. else {
  5523. poolFinish(&dtd->pool);
  5524. if (!ns)
  5525. ;
  5526. else if (name[0] == XML_T(ASCII_x)
  5527. && name[1] == XML_T(ASCII_m)
  5528. && name[2] == XML_T(ASCII_l)
  5529. && name[3] == XML_T(ASCII_n)
  5530. && name[4] == XML_T(ASCII_s)
  5531. && (name[5] == XML_T('\0') || name[5] == XML_T(ASCII_COLON))) {
  5532. if (name[5] == XML_T('\0'))
  5533. id->prefix = &dtd->defaultPrefix;
  5534. else
  5535. id->prefix = (PREFIX *)lookup(parser, &dtd->prefixes, name + 6, sizeof(PREFIX));
  5536. id->xmlns = XML_TRUE;
  5537. }
  5538. else {
  5539. int i;
  5540. for (i = 0; name[i]; i++) {
  5541. /* attributes without prefix are *not* in the default namespace */
  5542. if (name[i] == XML_T(ASCII_COLON)) {
  5543. int j;
  5544. for (j = 0; j < i; j++) {
  5545. if (!poolAppendChar(&dtd->pool, name[j]))
  5546. return NULL;
  5547. }
  5548. if (!poolAppendChar(&dtd->pool, XML_T('\0')))
  5549. return NULL;
  5550. id->prefix = (PREFIX *)lookup(parser, &dtd->prefixes, poolStart(&dtd->pool),
  5551. sizeof(PREFIX));
  5552. if (!id->prefix)
  5553. return NULL;
  5554. if (id->prefix->name == poolStart(&dtd->pool))
  5555. poolFinish(&dtd->pool);
  5556. else
  5557. poolDiscard(&dtd->pool);
  5558. break;
  5559. }
  5560. }
  5561. }
  5562. }
  5563. return id;
  5564. }
  5565. #define CONTEXT_SEP XML_T(ASCII_FF)
  5566. static const XML_Char *
  5567. getContext(XML_Parser parser)
  5568. {
  5569. DTD * const dtd = _dtd; /* save one level of indirection */
  5570. HASH_TABLE_ITER iter;
  5571. XML_Bool needSep = XML_FALSE;
  5572. if (dtd->defaultPrefix.binding) {
  5573. int i;
  5574. int len;
  5575. if (!poolAppendChar(&tempPool, XML_T(ASCII_EQUALS)))
  5576. return NULL;
  5577. len = dtd->defaultPrefix.binding->uriLen;
  5578. if (namespaceSeparator)
  5579. len--;
  5580. for (i = 0; i < len; i++)
  5581. if (!poolAppendChar(&tempPool, dtd->defaultPrefix.binding->uri[i]))
  5582. return NULL;
  5583. needSep = XML_TRUE;
  5584. }
  5585. hashTableIterInit(&iter, &(dtd->prefixes));
  5586. for (;;) {
  5587. int i;
  5588. int len;
  5589. const XML_Char *s;
  5590. PREFIX *prefix = (PREFIX *)hashTableIterNext(&iter);
  5591. if (!prefix)
  5592. break;
  5593. if (!prefix->binding)
  5594. continue;
  5595. if (needSep && !poolAppendChar(&tempPool, CONTEXT_SEP))
  5596. return NULL;
  5597. for (s = prefix->name; *s; s++)
  5598. if (!poolAppendChar(&tempPool, *s))
  5599. return NULL;
  5600. if (!poolAppendChar(&tempPool, XML_T(ASCII_EQUALS)))
  5601. return NULL;
  5602. len = prefix->binding->uriLen;
  5603. if (namespaceSeparator)
  5604. len--;
  5605. for (i = 0; i < len; i++)
  5606. if (!poolAppendChar(&tempPool, prefix->binding->uri[i]))
  5607. return NULL;
  5608. needSep = XML_TRUE;
  5609. }
  5610. hashTableIterInit(&iter, &(dtd->generalEntities));
  5611. for (;;) {
  5612. const XML_Char *s;
  5613. ENTITY *e = (ENTITY *)hashTableIterNext(&iter);
  5614. if (!e)
  5615. break;
  5616. if (!e->open)
  5617. continue;
  5618. if (needSep && !poolAppendChar(&tempPool, CONTEXT_SEP))
  5619. return NULL;
  5620. for (s = e->name; *s; s++)
  5621. if (!poolAppendChar(&tempPool, *s))
  5622. return 0;
  5623. needSep = XML_TRUE;
  5624. }
  5625. if (!poolAppendChar(&tempPool, XML_T('\0')))
  5626. return NULL;
  5627. return tempPool.start;
  5628. }
  5629. static XML_Bool
  5630. setContext(XML_Parser parser, const XML_Char *context)
  5631. {
  5632. DTD * const dtd = _dtd; /* save one level of indirection */
  5633. const XML_Char *s = context;
  5634. while (*context != XML_T('\0')) {
  5635. if (*s == CONTEXT_SEP || *s == XML_T('\0')) {
  5636. ENTITY *e;
  5637. if (!poolAppendChar(&tempPool, XML_T('\0')))
  5638. return XML_FALSE;
  5639. e = (ENTITY *)lookup(parser, &dtd->generalEntities, poolStart(&tempPool), 0);
  5640. if (e)
  5641. e->open = XML_TRUE;
  5642. if (*s != XML_T('\0'))
  5643. s++;
  5644. context = s;
  5645. poolDiscard(&tempPool);
  5646. }
  5647. else if (*s == XML_T(ASCII_EQUALS)) {
  5648. PREFIX *prefix;
  5649. if (poolLength(&tempPool) == 0)
  5650. prefix = &dtd->defaultPrefix;
  5651. else {
  5652. if (!poolAppendChar(&tempPool, XML_T('\0')))
  5653. return XML_FALSE;
  5654. prefix = (PREFIX *)lookup(parser, &dtd->prefixes, poolStart(&tempPool),
  5655. sizeof(PREFIX));
  5656. if (!prefix)
  5657. return XML_FALSE;
  5658. if (prefix->name == poolStart(&tempPool)) {
  5659. prefix->name = poolCopyString(&dtd->pool, prefix->name);
  5660. if (!prefix->name)
  5661. return XML_FALSE;
  5662. }
  5663. poolDiscard(&tempPool);
  5664. }
  5665. for (context = s + 1;
  5666. *context != CONTEXT_SEP && *context != XML_T('\0');
  5667. context++)
  5668. if (!poolAppendChar(&tempPool, *context))
  5669. return XML_FALSE;
  5670. if (!poolAppendChar(&tempPool, XML_T('\0')))
  5671. return XML_FALSE;
  5672. if (addBinding(parser, prefix, NULL, poolStart(&tempPool),
  5673. &inheritedBindings) != XML_ERROR_NONE)
  5674. return XML_FALSE;
  5675. poolDiscard(&tempPool);
  5676. if (*context != XML_T('\0'))
  5677. ++context;
  5678. s = context;
  5679. }
  5680. else {
  5681. if (!poolAppendChar(&tempPool, *s))
  5682. return XML_FALSE;
  5683. s++;
  5684. }
  5685. }
  5686. return XML_TRUE;
  5687. }
  5688. static void FASTCALL
  5689. normalizePublicId(XML_Char *publicId)
  5690. {
  5691. XML_Char *p = publicId;
  5692. XML_Char *s;
  5693. for (s = publicId; *s; s++) {
  5694. switch (*s) {
  5695. case 0x20:
  5696. case 0xD:
  5697. case 0xA:
  5698. if (p != publicId && p[-1] != 0x20)
  5699. *p++ = 0x20;
  5700. break;
  5701. default:
  5702. *p++ = *s;
  5703. }
  5704. }
  5705. if (p != publicId && p[-1] == 0x20)
  5706. --p;
  5707. *p = XML_T('\0');
  5708. }
  5709. static DTD *
  5710. dtdCreate(const XML_Memory_Handling_Suite *ms)
  5711. {
  5712. DTD *p = (DTD *)ms->malloc_fcn(sizeof(DTD));
  5713. if (p == NULL)
  5714. return p;
  5715. poolInit(&(p->pool), ms);
  5716. poolInit(&(p->entityValuePool), ms);
  5717. hashTableInit(&(p->generalEntities), ms);
  5718. hashTableInit(&(p->elementTypes), ms);
  5719. hashTableInit(&(p->attributeIds), ms);
  5720. hashTableInit(&(p->prefixes), ms);
  5721. #ifdef XML_DTD
  5722. p->paramEntityRead = XML_FALSE;
  5723. hashTableInit(&(p->paramEntities), ms);
  5724. #endif /* XML_DTD */
  5725. p->defaultPrefix.name = NULL;
  5726. p->defaultPrefix.binding = NULL;
  5727. p->in_eldecl = XML_FALSE;
  5728. p->scaffIndex = NULL;
  5729. p->scaffold = NULL;
  5730. p->scaffLevel = 0;
  5731. p->scaffSize = 0;
  5732. p->scaffCount = 0;
  5733. p->contentStringLen = 0;
  5734. p->keepProcessing = XML_TRUE;
  5735. p->hasParamEntityRefs = XML_FALSE;
  5736. p->standalone = XML_FALSE;
  5737. return p;
  5738. }
  5739. static void
  5740. dtdReset(DTD *p, const XML_Memory_Handling_Suite *ms)
  5741. {
  5742. HASH_TABLE_ITER iter;
  5743. hashTableIterInit(&iter, &(p->elementTypes));
  5744. for (;;) {
  5745. ELEMENT_TYPE *e = (ELEMENT_TYPE *)hashTableIterNext(&iter);
  5746. if (!e)
  5747. break;
  5748. if (e->allocDefaultAtts != 0)
  5749. ms->free_fcn(e->defaultAtts);
  5750. }
  5751. hashTableClear(&(p->generalEntities));
  5752. #ifdef XML_DTD
  5753. p->paramEntityRead = XML_FALSE;
  5754. hashTableClear(&(p->paramEntities));
  5755. #endif /* XML_DTD */
  5756. hashTableClear(&(p->elementTypes));
  5757. hashTableClear(&(p->attributeIds));
  5758. hashTableClear(&(p->prefixes));
  5759. poolClear(&(p->pool));
  5760. poolClear(&(p->entityValuePool));
  5761. p->defaultPrefix.name = NULL;
  5762. p->defaultPrefix.binding = NULL;
  5763. p->in_eldecl = XML_FALSE;
  5764. ms->free_fcn(p->scaffIndex);
  5765. p->scaffIndex = NULL;
  5766. ms->free_fcn(p->scaffold);
  5767. p->scaffold = NULL;
  5768. p->scaffLevel = 0;
  5769. p->scaffSize = 0;
  5770. p->scaffCount = 0;
  5771. p->contentStringLen = 0;
  5772. p->keepProcessing = XML_TRUE;
  5773. p->hasParamEntityRefs = XML_FALSE;
  5774. p->standalone = XML_FALSE;
  5775. }
  5776. static void
  5777. dtdDestroy(DTD *p, XML_Bool isDocEntity, const XML_Memory_Handling_Suite *ms)
  5778. {
  5779. HASH_TABLE_ITER iter;
  5780. hashTableIterInit(&iter, &(p->elementTypes));
  5781. for (;;) {
  5782. ELEMENT_TYPE *e = (ELEMENT_TYPE *)hashTableIterNext(&iter);
  5783. if (!e)
  5784. break;
  5785. if (e->allocDefaultAtts != 0)
  5786. ms->free_fcn(e->defaultAtts);
  5787. }
  5788. hashTableDestroy(&(p->generalEntities));
  5789. #ifdef XML_DTD
  5790. hashTableDestroy(&(p->paramEntities));
  5791. #endif /* XML_DTD */
  5792. hashTableDestroy(&(p->elementTypes));
  5793. hashTableDestroy(&(p->attributeIds));
  5794. hashTableDestroy(&(p->prefixes));
  5795. poolDestroy(&(p->pool));
  5796. poolDestroy(&(p->entityValuePool));
  5797. if (isDocEntity) {
  5798. ms->free_fcn(p->scaffIndex);
  5799. ms->free_fcn(p->scaffold);
  5800. }
  5801. ms->free_fcn(p);
  5802. }
  5803. /* Do a deep copy of the DTD. Return 0 for out of memory, non-zero otherwise.
  5804. The new DTD has already been initialized.
  5805. */
  5806. static int
  5807. dtdCopy(XML_Parser oldParser, DTD *newDtd, const DTD *oldDtd, const XML_Memory_Handling_Suite *ms)
  5808. {
  5809. HASH_TABLE_ITER iter;
  5810. /* Copy the prefix table. */
  5811. hashTableIterInit(&iter, &(oldDtd->prefixes));
  5812. for (;;) {
  5813. const XML_Char *name;
  5814. const PREFIX *oldP = (PREFIX *)hashTableIterNext(&iter);
  5815. if (!oldP)
  5816. break;
  5817. name = poolCopyString(&(newDtd->pool), oldP->name);
  5818. if (!name)
  5819. return 0;
  5820. if (!lookup(oldParser, &(newDtd->prefixes), name, sizeof(PREFIX)))
  5821. return 0;
  5822. }
  5823. hashTableIterInit(&iter, &(oldDtd->attributeIds));
  5824. /* Copy the attribute id table. */
  5825. for (;;) {
  5826. ATTRIBUTE_ID *newA;
  5827. const XML_Char *name;
  5828. const ATTRIBUTE_ID *oldA = (ATTRIBUTE_ID *)hashTableIterNext(&iter);
  5829. if (!oldA)
  5830. break;
  5831. /* Remember to allocate the scratch byte before the name. */
  5832. if (!poolAppendChar(&(newDtd->pool), XML_T('\0')))
  5833. return 0;
  5834. name = poolCopyString(&(newDtd->pool), oldA->name);
  5835. if (!name)
  5836. return 0;
  5837. ++name;
  5838. newA = (ATTRIBUTE_ID *)lookup(oldParser, &(newDtd->attributeIds), name,
  5839. sizeof(ATTRIBUTE_ID));
  5840. if (!newA)
  5841. return 0;
  5842. newA->maybeTokenized = oldA->maybeTokenized;
  5843. if (oldA->prefix) {
  5844. newA->xmlns = oldA->xmlns;
  5845. if (oldA->prefix == &oldDtd->defaultPrefix)
  5846. newA->prefix = &newDtd->defaultPrefix;
  5847. else
  5848. newA->prefix = (PREFIX *)lookup(oldParser, &(newDtd->prefixes),
  5849. oldA->prefix->name, 0);
  5850. }
  5851. }
  5852. /* Copy the element type table. */
  5853. hashTableIterInit(&iter, &(oldDtd->elementTypes));
  5854. for (;;) {
  5855. int i;
  5856. ELEMENT_TYPE *newE;
  5857. const XML_Char *name;
  5858. const ELEMENT_TYPE *oldE = (ELEMENT_TYPE *)hashTableIterNext(&iter);
  5859. if (!oldE)
  5860. break;
  5861. name = poolCopyString(&(newDtd->pool), oldE->name);
  5862. if (!name)
  5863. return 0;
  5864. newE = (ELEMENT_TYPE *)lookup(oldParser, &(newDtd->elementTypes), name,
  5865. sizeof(ELEMENT_TYPE));
  5866. if (!newE)
  5867. return 0;
  5868. if (oldE->nDefaultAtts) {
  5869. newE->defaultAtts = (DEFAULT_ATTRIBUTE *)
  5870. ms->malloc_fcn(oldE->nDefaultAtts * sizeof(DEFAULT_ATTRIBUTE));
  5871. if (!newE->defaultAtts) {
  5872. return 0;
  5873. }
  5874. }
  5875. if (oldE->idAtt)
  5876. newE->idAtt = (ATTRIBUTE_ID *)
  5877. lookup(oldParser, &(newDtd->attributeIds), oldE->idAtt->name, 0);
  5878. newE->allocDefaultAtts = newE->nDefaultAtts = oldE->nDefaultAtts;
  5879. if (oldE->prefix)
  5880. newE->prefix = (PREFIX *)lookup(oldParser, &(newDtd->prefixes),
  5881. oldE->prefix->name, 0);
  5882. for (i = 0; i < newE->nDefaultAtts; i++) {
  5883. newE->defaultAtts[i].id = (ATTRIBUTE_ID *)
  5884. lookup(oldParser, &(newDtd->attributeIds), oldE->defaultAtts[i].id->name, 0);
  5885. newE->defaultAtts[i].isCdata = oldE->defaultAtts[i].isCdata;
  5886. if (oldE->defaultAtts[i].value) {
  5887. newE->defaultAtts[i].value
  5888. = poolCopyString(&(newDtd->pool), oldE->defaultAtts[i].value);
  5889. if (!newE->defaultAtts[i].value)
  5890. return 0;
  5891. }
  5892. else
  5893. newE->defaultAtts[i].value = NULL;
  5894. }
  5895. }
  5896. /* Copy the entity tables. */
  5897. if (!copyEntityTable(oldParser,
  5898. &(newDtd->generalEntities),
  5899. &(newDtd->pool),
  5900. &(oldDtd->generalEntities)))
  5901. return 0;
  5902. #ifdef XML_DTD
  5903. if (!copyEntityTable(oldParser,
  5904. &(newDtd->paramEntities),
  5905. &(newDtd->pool),
  5906. &(oldDtd->paramEntities)))
  5907. return 0;
  5908. newDtd->paramEntityRead = oldDtd->paramEntityRead;
  5909. #endif /* XML_DTD */
  5910. newDtd->keepProcessing = oldDtd->keepProcessing;
  5911. newDtd->hasParamEntityRefs = oldDtd->hasParamEntityRefs;
  5912. newDtd->standalone = oldDtd->standalone;
  5913. /* Don't want deep copying for scaffolding */
  5914. newDtd->in_eldecl = oldDtd->in_eldecl;
  5915. newDtd->scaffold = oldDtd->scaffold;
  5916. newDtd->contentStringLen = oldDtd->contentStringLen;
  5917. newDtd->scaffSize = oldDtd->scaffSize;
  5918. newDtd->scaffLevel = oldDtd->scaffLevel;
  5919. newDtd->scaffIndex = oldDtd->scaffIndex;
  5920. return 1;
  5921. } /* End dtdCopy */
  5922. static int
  5923. copyEntityTable(XML_Parser oldParser,
  5924. HASH_TABLE *newTable,
  5925. STRING_POOL *newPool,
  5926. const HASH_TABLE *oldTable)
  5927. {
  5928. HASH_TABLE_ITER iter;
  5929. const XML_Char *cachedOldBase = NULL;
  5930. const XML_Char *cachedNewBase = NULL;
  5931. hashTableIterInit(&iter, oldTable);
  5932. for (;;) {
  5933. ENTITY *newE;
  5934. const XML_Char *name;
  5935. const ENTITY *oldE = (ENTITY *)hashTableIterNext(&iter);
  5936. if (!oldE)
  5937. break;
  5938. name = poolCopyString(newPool, oldE->name);
  5939. if (!name)
  5940. return 0;
  5941. newE = (ENTITY *)lookup(oldParser, newTable, name, sizeof(ENTITY));
  5942. if (!newE)
  5943. return 0;
  5944. if (oldE->systemId) {
  5945. const XML_Char *tem = poolCopyString(newPool, oldE->systemId);
  5946. if (!tem)
  5947. return 0;
  5948. newE->systemId = tem;
  5949. if (oldE->base) {
  5950. if (oldE->base == cachedOldBase)
  5951. newE->base = cachedNewBase;
  5952. else {
  5953. cachedOldBase = oldE->base;
  5954. tem = poolCopyString(newPool, cachedOldBase);
  5955. if (!tem)
  5956. return 0;
  5957. cachedNewBase = newE->base = tem;
  5958. }
  5959. }
  5960. if (oldE->publicId) {
  5961. tem = poolCopyString(newPool, oldE->publicId);
  5962. if (!tem)
  5963. return 0;
  5964. newE->publicId = tem;
  5965. }
  5966. }
  5967. else {
  5968. const XML_Char *tem = poolCopyStringN(newPool, oldE->textPtr,
  5969. oldE->textLen);
  5970. if (!tem)
  5971. return 0;
  5972. newE->textPtr = tem;
  5973. newE->textLen = oldE->textLen;
  5974. }
  5975. if (oldE->notation) {
  5976. const XML_Char *tem = poolCopyString(newPool, oldE->notation);
  5977. if (!tem)
  5978. return 0;
  5979. newE->notation = tem;
  5980. }
  5981. newE->is_param = oldE->is_param;
  5982. newE->is_internal = oldE->is_internal;
  5983. }
  5984. return 1;
  5985. }
  5986. #define INIT_POWER 6
  5987. static XML_Bool FASTCALL
  5988. keyeq(KEY s1, KEY s2)
  5989. {
  5990. for (; *s1 == *s2; s1++, s2++)
  5991. if (*s1 == 0)
  5992. return XML_TRUE;
  5993. return XML_FALSE;
  5994. }
  5995. static size_t
  5996. keylen(KEY s)
  5997. {
  5998. size_t len = 0;
  5999. for (; *s; s++, len++);
  6000. return len;
  6001. }
  6002. static void
  6003. copy_salt_to_sipkey(XML_Parser parser, struct sipkey * key)
  6004. {
  6005. key->k[0] = 0;
  6006. key->k[1] = get_hash_secret_salt(parser);
  6007. }
  6008. static unsigned long FASTCALL
  6009. hash(XML_Parser parser, KEY s)
  6010. {
  6011. struct siphash state;
  6012. struct sipkey key;
  6013. (void)sip_tobin;
  6014. (void)sip24_valid;
  6015. copy_salt_to_sipkey(parser, &key);
  6016. sip24_init(&state, &key);
  6017. sip24_update(&state, s, keylen(s) * sizeof(XML_Char));
  6018. return (unsigned long)sip24_final(&state);
  6019. }
  6020. static NAMED *
  6021. lookup(XML_Parser parser, HASH_TABLE *table, KEY name, size_t createSize)
  6022. {
  6023. size_t i;
  6024. if (table->size == 0) {
  6025. size_t tsize;
  6026. if (!createSize)
  6027. return NULL;
  6028. table->power = INIT_POWER;
  6029. /* table->size is a power of 2 */
  6030. table->size = (size_t)1 << INIT_POWER;
  6031. tsize = table->size * sizeof(NAMED *);
  6032. table->v = (NAMED **)table->mem->malloc_fcn(tsize);
  6033. if (!table->v) {
  6034. table->size = 0;
  6035. return NULL;
  6036. }
  6037. memset(table->v, 0, tsize);
  6038. i = hash(parser, name) & ((unsigned long)table->size - 1);
  6039. }
  6040. else {
  6041. unsigned long h = hash(parser, name);
  6042. unsigned long mask = (unsigned long)table->size - 1;
  6043. unsigned char step = 0;
  6044. i = h & mask;
  6045. while (table->v[i]) {
  6046. if (keyeq(name, table->v[i]->name))
  6047. return table->v[i];
  6048. if (!step)
  6049. step = PROBE_STEP(h, mask, table->power);
  6050. i < step ? (i += table->size - step) : (i -= step);
  6051. }
  6052. if (!createSize)
  6053. return NULL;
  6054. /* check for overflow (table is half full) */
  6055. if (table->used >> (table->power - 1)) {
  6056. unsigned char newPower = table->power + 1;
  6057. size_t newSize = (size_t)1 << newPower;
  6058. unsigned long newMask = (unsigned long)newSize - 1;
  6059. size_t tsize = newSize * sizeof(NAMED *);
  6060. NAMED **newV = (NAMED **)table->mem->malloc_fcn(tsize);
  6061. if (!newV)
  6062. return NULL;
  6063. memset(newV, 0, tsize);
  6064. for (i = 0; i < table->size; i++)
  6065. if (table->v[i]) {
  6066. unsigned long newHash = hash(parser, table->v[i]->name);
  6067. size_t j = newHash & newMask;
  6068. step = 0;
  6069. while (newV[j]) {
  6070. if (!step)
  6071. step = PROBE_STEP(newHash, newMask, newPower);
  6072. j < step ? (j += newSize - step) : (j -= step);
  6073. }
  6074. newV[j] = table->v[i];
  6075. }
  6076. table->mem->free_fcn(table->v);
  6077. table->v = newV;
  6078. table->power = newPower;
  6079. table->size = newSize;
  6080. i = h & newMask;
  6081. step = 0;
  6082. while (table->v[i]) {
  6083. if (!step)
  6084. step = PROBE_STEP(h, newMask, newPower);
  6085. i < step ? (i += newSize - step) : (i -= step);
  6086. }
  6087. }
  6088. }
  6089. table->v[i] = (NAMED *)table->mem->malloc_fcn(createSize);
  6090. if (!table->v[i])
  6091. return NULL;
  6092. memset(table->v[i], 0, createSize);
  6093. table->v[i]->name = name;
  6094. (table->used)++;
  6095. return table->v[i];
  6096. }
  6097. static void FASTCALL
  6098. hashTableClear(HASH_TABLE *table)
  6099. {
  6100. size_t i;
  6101. for (i = 0; i < table->size; i++) {
  6102. table->mem->free_fcn(table->v[i]);
  6103. table->v[i] = NULL;
  6104. }
  6105. table->used = 0;
  6106. }
  6107. static void FASTCALL
  6108. hashTableDestroy(HASH_TABLE *table)
  6109. {
  6110. size_t i;
  6111. for (i = 0; i < table->size; i++)
  6112. table->mem->free_fcn(table->v[i]);
  6113. table->mem->free_fcn(table->v);
  6114. }
  6115. static void FASTCALL
  6116. hashTableInit(HASH_TABLE *p, const XML_Memory_Handling_Suite *ms)
  6117. {
  6118. p->power = 0;
  6119. p->size = 0;
  6120. p->used = 0;
  6121. p->v = NULL;
  6122. p->mem = ms;
  6123. }
  6124. static void FASTCALL
  6125. hashTableIterInit(HASH_TABLE_ITER *iter, const HASH_TABLE *table)
  6126. {
  6127. iter->p = table->v;
  6128. iter->end = iter->p + table->size;
  6129. }
  6130. static NAMED * FASTCALL
  6131. hashTableIterNext(HASH_TABLE_ITER *iter)
  6132. {
  6133. while (iter->p != iter->end) {
  6134. NAMED *tem = *(iter->p)++;
  6135. if (tem)
  6136. return tem;
  6137. }
  6138. return NULL;
  6139. }
  6140. static void FASTCALL
  6141. poolInit(STRING_POOL *pool, const XML_Memory_Handling_Suite *ms)
  6142. {
  6143. pool->blocks = NULL;
  6144. pool->freeBlocks = NULL;
  6145. pool->start = NULL;
  6146. pool->ptr = NULL;
  6147. pool->end = NULL;
  6148. pool->mem = ms;
  6149. }
  6150. static void FASTCALL
  6151. poolClear(STRING_POOL *pool)
  6152. {
  6153. if (!pool->freeBlocks)
  6154. pool->freeBlocks = pool->blocks;
  6155. else {
  6156. BLOCK *p = pool->blocks;
  6157. while (p) {
  6158. BLOCK *tem = p->next;
  6159. p->next = pool->freeBlocks;
  6160. pool->freeBlocks = p;
  6161. p = tem;
  6162. }
  6163. }
  6164. pool->blocks = NULL;
  6165. pool->start = NULL;
  6166. pool->ptr = NULL;
  6167. pool->end = NULL;
  6168. }
  6169. static void FASTCALL
  6170. poolDestroy(STRING_POOL *pool)
  6171. {
  6172. BLOCK *p = pool->blocks;
  6173. while (p) {
  6174. BLOCK *tem = p->next;
  6175. pool->mem->free_fcn(p);
  6176. p = tem;
  6177. }
  6178. p = pool->freeBlocks;
  6179. while (p) {
  6180. BLOCK *tem = p->next;
  6181. pool->mem->free_fcn(p);
  6182. p = tem;
  6183. }
  6184. }
  6185. static XML_Char *
  6186. poolAppend(STRING_POOL *pool, const ENCODING *enc,
  6187. const char *ptr, const char *end)
  6188. {
  6189. if (!pool->ptr && !poolGrow(pool))
  6190. return NULL;
  6191. for (;;) {
  6192. const enum XML_Convert_Result convert_res = XmlConvert(enc, &ptr, end, (ICHAR **)&(pool->ptr), (ICHAR *)pool->end);
  6193. if ((convert_res == XML_CONVERT_COMPLETED) || (convert_res == XML_CONVERT_INPUT_INCOMPLETE))
  6194. break;
  6195. if (!poolGrow(pool))
  6196. return NULL;
  6197. }
  6198. return pool->start;
  6199. }
  6200. static const XML_Char * FASTCALL
  6201. poolCopyString(STRING_POOL *pool, const XML_Char *s)
  6202. {
  6203. do {
  6204. if (!poolAppendChar(pool, *s))
  6205. return NULL;
  6206. } while (*s++);
  6207. s = pool->start;
  6208. poolFinish(pool);
  6209. return s;
  6210. }
  6211. static const XML_Char *
  6212. poolCopyStringN(STRING_POOL *pool, const XML_Char *s, int n)
  6213. {
  6214. if (!pool->ptr && !poolGrow(pool))
  6215. return NULL;
  6216. for (; n > 0; --n, s++) {
  6217. if (!poolAppendChar(pool, *s))
  6218. return NULL;
  6219. }
  6220. s = pool->start;
  6221. poolFinish(pool);
  6222. return s;
  6223. }
  6224. static const XML_Char * FASTCALL
  6225. poolAppendString(STRING_POOL *pool, const XML_Char *s)
  6226. {
  6227. while (*s) {
  6228. if (!poolAppendChar(pool, *s))
  6229. return NULL;
  6230. s++;
  6231. }
  6232. return pool->start;
  6233. }
  6234. static XML_Char *
  6235. poolStoreString(STRING_POOL *pool, const ENCODING *enc,
  6236. const char *ptr, const char *end)
  6237. {
  6238. if (!poolAppend(pool, enc, ptr, end))
  6239. return NULL;
  6240. if (pool->ptr == pool->end && !poolGrow(pool))
  6241. return NULL;
  6242. *(pool->ptr)++ = 0;
  6243. return pool->start;
  6244. }
  6245. static size_t
  6246. poolBytesToAllocateFor(int blockSize)
  6247. {
  6248. /* Unprotected math would be:
  6249. ** return offsetof(BLOCK, s) + blockSize * sizeof(XML_Char);
  6250. **
  6251. ** Detect overflow, avoiding _signed_ overflow undefined behavior
  6252. ** For a + b * c we check b * c in isolation first, so that addition of a
  6253. ** on top has no chance of making us accept a small non-negative number
  6254. */
  6255. const size_t stretch = sizeof(XML_Char); /* can be 4 bytes */
  6256. if (blockSize <= 0)
  6257. return 0;
  6258. if (blockSize > (int)(INT_MAX / stretch))
  6259. return 0;
  6260. {
  6261. const int stretchedBlockSize = blockSize * (int)stretch;
  6262. const int bytesToAllocate = (int)(
  6263. offsetof(BLOCK, s) + (unsigned)stretchedBlockSize);
  6264. if (bytesToAllocate < 0)
  6265. return 0;
  6266. return (size_t)bytesToAllocate;
  6267. }
  6268. }
  6269. static XML_Bool FASTCALL
  6270. poolGrow(STRING_POOL *pool)
  6271. {
  6272. if (pool->freeBlocks) {
  6273. if (pool->start == 0) {
  6274. pool->blocks = pool->freeBlocks;
  6275. pool->freeBlocks = pool->freeBlocks->next;
  6276. pool->blocks->next = NULL;
  6277. pool->start = pool->blocks->s;
  6278. pool->end = pool->start + pool->blocks->size;
  6279. pool->ptr = pool->start;
  6280. return XML_TRUE;
  6281. }
  6282. if (pool->end - pool->start < pool->freeBlocks->size) {
  6283. BLOCK *tem = pool->freeBlocks->next;
  6284. pool->freeBlocks->next = pool->blocks;
  6285. pool->blocks = pool->freeBlocks;
  6286. pool->freeBlocks = tem;
  6287. memcpy(pool->blocks->s, pool->start,
  6288. (pool->end - pool->start) * sizeof(XML_Char));
  6289. pool->ptr = pool->blocks->s + (pool->ptr - pool->start);
  6290. pool->start = pool->blocks->s;
  6291. pool->end = pool->start + pool->blocks->size;
  6292. return XML_TRUE;
  6293. }
  6294. }
  6295. if (pool->blocks && pool->start == pool->blocks->s) {
  6296. BLOCK *temp;
  6297. int blockSize = (int)((unsigned)(pool->end - pool->start)*2U);
  6298. size_t bytesToAllocate;
  6299. if (blockSize < 0)
  6300. return XML_FALSE;
  6301. bytesToAllocate = poolBytesToAllocateFor(blockSize);
  6302. if (bytesToAllocate == 0)
  6303. return XML_FALSE;
  6304. temp = (BLOCK *)
  6305. pool->mem->realloc_fcn(pool->blocks, (unsigned)bytesToAllocate);
  6306. if (temp == NULL)
  6307. return XML_FALSE;
  6308. pool->blocks = temp;
  6309. pool->blocks->size = blockSize;
  6310. pool->ptr = pool->blocks->s + (pool->ptr - pool->start);
  6311. pool->start = pool->blocks->s;
  6312. pool->end = pool->start + blockSize;
  6313. }
  6314. else {
  6315. BLOCK *tem;
  6316. int blockSize = (int)(pool->end - pool->start);
  6317. size_t bytesToAllocate;
  6318. if (blockSize < 0)
  6319. return XML_FALSE;
  6320. if (blockSize < INIT_BLOCK_SIZE)
  6321. blockSize = INIT_BLOCK_SIZE;
  6322. else {
  6323. /* Detect overflow, avoiding _signed_ overflow undefined behavior */
  6324. if ((int)((unsigned)blockSize * 2U) < 0) {
  6325. return XML_FALSE;
  6326. }
  6327. blockSize *= 2;
  6328. }
  6329. bytesToAllocate = poolBytesToAllocateFor(blockSize);
  6330. if (bytesToAllocate == 0)
  6331. return XML_FALSE;
  6332. tem = (BLOCK *)pool->mem->malloc_fcn(bytesToAllocate);
  6333. if (!tem)
  6334. return XML_FALSE;
  6335. tem->size = blockSize;
  6336. tem->next = pool->blocks;
  6337. pool->blocks = tem;
  6338. if (pool->ptr != pool->start)
  6339. memcpy(tem->s, pool->start,
  6340. (pool->ptr - pool->start) * sizeof(XML_Char));
  6341. pool->ptr = tem->s + (pool->ptr - pool->start);
  6342. pool->start = tem->s;
  6343. pool->end = tem->s + blockSize;
  6344. }
  6345. return XML_TRUE;
  6346. }
  6347. static int FASTCALL
  6348. nextScaffoldPart(XML_Parser parser)
  6349. {
  6350. DTD * const dtd = _dtd; /* save one level of indirection */
  6351. CONTENT_SCAFFOLD * me;
  6352. int next;
  6353. if (!dtd->scaffIndex) {
  6354. dtd->scaffIndex = (int *)MALLOC(groupSize * sizeof(int));
  6355. if (!dtd->scaffIndex)
  6356. return -1;
  6357. dtd->scaffIndex[0] = 0;
  6358. }
  6359. if (dtd->scaffCount >= dtd->scaffSize) {
  6360. CONTENT_SCAFFOLD *temp;
  6361. if (dtd->scaffold) {
  6362. temp = (CONTENT_SCAFFOLD *)
  6363. REALLOC(dtd->scaffold, dtd->scaffSize * 2 * sizeof(CONTENT_SCAFFOLD));
  6364. if (temp == NULL)
  6365. return -1;
  6366. dtd->scaffSize *= 2;
  6367. }
  6368. else {
  6369. temp = (CONTENT_SCAFFOLD *)MALLOC(INIT_SCAFFOLD_ELEMENTS
  6370. * sizeof(CONTENT_SCAFFOLD));
  6371. if (temp == NULL)
  6372. return -1;
  6373. dtd->scaffSize = INIT_SCAFFOLD_ELEMENTS;
  6374. }
  6375. dtd->scaffold = temp;
  6376. }
  6377. next = dtd->scaffCount++;
  6378. me = &dtd->scaffold[next];
  6379. if (dtd->scaffLevel) {
  6380. CONTENT_SCAFFOLD *parent = &dtd->scaffold[dtd->scaffIndex[dtd->scaffLevel-1]];
  6381. if (parent->lastchild) {
  6382. dtd->scaffold[parent->lastchild].nextsib = next;
  6383. }
  6384. if (!parent->childcnt)
  6385. parent->firstchild = next;
  6386. parent->lastchild = next;
  6387. parent->childcnt++;
  6388. }
  6389. me->firstchild = me->lastchild = me->childcnt = me->nextsib = 0;
  6390. return next;
  6391. }
  6392. static void
  6393. build_node(XML_Parser parser,
  6394. int src_node,
  6395. XML_Content *dest,
  6396. XML_Content **contpos,
  6397. XML_Char **strpos)
  6398. {
  6399. DTD * const dtd = _dtd; /* save one level of indirection */
  6400. dest->type = dtd->scaffold[src_node].type;
  6401. dest->quant = dtd->scaffold[src_node].quant;
  6402. if (dest->type == XML_CTYPE_NAME) {
  6403. const XML_Char *src;
  6404. dest->name = *strpos;
  6405. src = dtd->scaffold[src_node].name;
  6406. for (;;) {
  6407. *(*strpos)++ = *src;
  6408. if (!*src)
  6409. break;
  6410. src++;
  6411. }
  6412. dest->numchildren = 0;
  6413. dest->children = NULL;
  6414. }
  6415. else {
  6416. unsigned int i;
  6417. int cn;
  6418. dest->numchildren = dtd->scaffold[src_node].childcnt;
  6419. dest->children = *contpos;
  6420. *contpos += dest->numchildren;
  6421. for (i = 0, cn = dtd->scaffold[src_node].firstchild;
  6422. i < dest->numchildren;
  6423. i++, cn = dtd->scaffold[cn].nextsib) {
  6424. build_node(parser, cn, &(dest->children[i]), contpos, strpos);
  6425. }
  6426. dest->name = NULL;
  6427. }
  6428. }
  6429. static XML_Content *
  6430. build_model (XML_Parser parser)
  6431. {
  6432. DTD * const dtd = _dtd; /* save one level of indirection */
  6433. XML_Content *ret;
  6434. XML_Content *cpos;
  6435. XML_Char * str;
  6436. int allocsize = (dtd->scaffCount * sizeof(XML_Content)
  6437. + (dtd->contentStringLen * sizeof(XML_Char)));
  6438. ret = (XML_Content *)MALLOC(allocsize);
  6439. if (!ret)
  6440. return NULL;
  6441. str = (XML_Char *) (&ret[dtd->scaffCount]);
  6442. cpos = &ret[1];
  6443. build_node(parser, 0, ret, &cpos, &str);
  6444. return ret;
  6445. }
  6446. static ELEMENT_TYPE *
  6447. getElementType(XML_Parser parser,
  6448. const ENCODING *enc,
  6449. const char *ptr,
  6450. const char *end)
  6451. {
  6452. DTD * const dtd = _dtd; /* save one level of indirection */
  6453. const XML_Char *name = poolStoreString(&dtd->pool, enc, ptr, end);
  6454. ELEMENT_TYPE *ret;
  6455. if (!name)
  6456. return NULL;
  6457. ret = (ELEMENT_TYPE *) lookup(parser, &dtd->elementTypes, name, sizeof(ELEMENT_TYPE));
  6458. if (!ret)
  6459. return NULL;
  6460. if (ret->name != name)
  6461. poolDiscard(&dtd->pool);
  6462. else {
  6463. poolFinish(&dtd->pool);
  6464. if (!setElementTypePrefix(parser, ret))
  6465. return NULL;
  6466. }
  6467. return ret;
  6468. }
  6469. static XML_Char *
  6470. copyString(const XML_Char *s,
  6471. const XML_Memory_Handling_Suite *memsuite)
  6472. {
  6473. int charsRequired = 0;
  6474. XML_Char *result;
  6475. /* First determine how long the string is */
  6476. while (s[charsRequired] != 0) {
  6477. charsRequired++;
  6478. }
  6479. /* Include the terminator */
  6480. charsRequired++;
  6481. /* Now allocate space for the copy */
  6482. result = memsuite->malloc_fcn(charsRequired * sizeof(XML_Char));
  6483. if (result == NULL)
  6484. return NULL;
  6485. /* Copy the original into place */
  6486. memcpy(result, s, charsRequired * sizeof(XML_Char));
  6487. return result;
  6488. }