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Daniel Veillard4255d502002-04-16 15:50:10 +00001/*
2 * schemastypes.c : implementation of the XML Schema Datatypes
3 * definition and validity checking
4 *
5 * See Copyright for the status of this software.
6 *
7 * Daniel Veillard <veillard@redhat.com>
8 */
9
10#define IN_LIBXML
11#include "libxml.h"
12
13#ifdef LIBXML_SCHEMAS_ENABLED
14
15#include <string.h>
16#include <libxml/xmlmemory.h>
17#include <libxml/parser.h>
18#include <libxml/parserInternals.h>
19#include <libxml/hash.h>
20#include <libxml/valid.h>
Daniel Veillard96a4b252003-02-06 08:22:32 +000021#include <libxml/xpath.h>
22#include <libxml/uri.h>
Daniel Veillard4255d502002-04-16 15:50:10 +000023
24#include <libxml/xmlschemas.h>
25#include <libxml/schemasInternals.h>
26#include <libxml/xmlschemastypes.h>
27
Daniel Veillard070803b2002-05-03 07:29:38 +000028#ifdef HAVE_MATH_H
29#include <math.h>
30#endif
31
Daniel Veillard4255d502002-04-16 15:50:10 +000032#define DEBUG
33
34#define TODO \
35 xmlGenericError(xmlGenericErrorContext, \
36 "Unimplemented block at %s:%d\n", \
37 __FILE__, __LINE__);
38
39#define XML_SCHEMAS_NAMESPACE_NAME \
40 (const xmlChar *)"http://www.w3.org/2001/XMLSchema"
41
42typedef enum {
43 XML_SCHEMAS_UNKNOWN = 0,
44 XML_SCHEMAS_STRING,
Daniel Veillard8bc6cf92003-02-27 17:42:22 +000045 XML_SCHEMAS_NORMSTRING,
Daniel Veillard4255d502002-04-16 15:50:10 +000046 XML_SCHEMAS_DECIMAL,
Daniel Veillard070803b2002-05-03 07:29:38 +000047 XML_SCHEMAS_TIME,
48 XML_SCHEMAS_GDAY,
49 XML_SCHEMAS_GMONTH,
50 XML_SCHEMAS_GMONTHDAY,
51 XML_SCHEMAS_GYEAR,
52 XML_SCHEMAS_GYEARMONTH,
53 XML_SCHEMAS_DATE,
54 XML_SCHEMAS_DATETIME,
55 XML_SCHEMAS_DURATION,
Daniel Veillard84d70a42002-09-16 10:51:38 +000056 XML_SCHEMAS_FLOAT,
57 XML_SCHEMAS_DOUBLE,
Daniel Veillardc5a70f22003-02-06 23:41:59 +000058 XML_SCHEMAS_BOOLEAN,
Daniel Veillard8bc6cf92003-02-27 17:42:22 +000059 XML_SCHEMAS_TOKEN,
60 XML_SCHEMAS_LANGUAGE,
61 XML_SCHEMAS_NMTOKEN,
62 XML_SCHEMAS_NMTOKENS,
63 XML_SCHEMAS_NAME,
64 XML_SCHEMAS_QNAME,
65 XML_SCHEMAS_NCNAME,
66 XML_SCHEMAS_ID,
67 XML_SCHEMAS_IDREF,
68 XML_SCHEMAS_IDREFS,
69 XML_SCHEMAS_ENTITY,
70 XML_SCHEMAS_ENTITIES,
71 XML_SCHEMAS_NOTATION,
72 XML_SCHEMAS_ANYURI,
73 XML_SCHEMAS_INTEGER,
74 XML_SCHEMAS_NPINTEGER,
75 XML_SCHEMAS_NINTEGER,
76 XML_SCHEMAS_NNINTEGER,
77 XML_SCHEMAS_PINTEGER,
Daniel Veillard96a4b252003-02-06 08:22:32 +000078 XML_SCHEMAS_INT,
Daniel Veillard8bc6cf92003-02-27 17:42:22 +000079 XML_SCHEMAS_UINT,
80 XML_SCHEMAS_LONG,
81 XML_SCHEMAS_ULONG,
82 XML_SCHEMAS_SHORT,
83 XML_SCHEMAS_USHORT,
84 XML_SCHEMAS_BYTE,
85 XML_SCHEMAS_UBYTE
Daniel Veillard4255d502002-04-16 15:50:10 +000086} xmlSchemaValType;
87
Daniel Veillard5f704af2003-03-05 10:01:43 +000088static unsigned long powten[10] = {
Daniel Veillard4255d502002-04-16 15:50:10 +000089 1, 10, 100, 1000, 10000, 100000, 1000000, 10000000L,
90 100000000L, 1000000000L
91};
92
Daniel Veillard070803b2002-05-03 07:29:38 +000093/* Date value */
94typedef struct _xmlSchemaValDate xmlSchemaValDate;
95typedef xmlSchemaValDate *xmlSchemaValDatePtr;
96struct _xmlSchemaValDate {
97 long year;
98 unsigned int mon :4; /* 1 <= mon <= 12 */
99 unsigned int day :5; /* 1 <= day <= 31 */
100 unsigned int hour :5; /* 0 <= hour <= 23 */
101 unsigned int min :6; /* 0 <= min <= 59 */
102 double sec;
103 int tz_flag :1; /* is tzo explicitely set? */
104 int tzo :11; /* -1440 <= tzo <= 1440 */
105};
106
107/* Duration value */
108typedef struct _xmlSchemaValDuration xmlSchemaValDuration;
109typedef xmlSchemaValDuration *xmlSchemaValDurationPtr;
110struct _xmlSchemaValDuration {
111 long mon; /* mon stores years also */
112 long day;
113 double sec; /* sec stores min and hour also */
114};
115
Daniel Veillard4255d502002-04-16 15:50:10 +0000116typedef struct _xmlSchemaValDecimal xmlSchemaValDecimal;
117typedef xmlSchemaValDecimal *xmlSchemaValDecimalPtr;
118struct _xmlSchemaValDecimal {
119 /* would use long long but not portable */
Daniel Veillarde637c4a2003-03-30 21:10:09 +0000120 unsigned long lo;
121 unsigned long mi;
122 unsigned long hi;
Daniel Veillard4255d502002-04-16 15:50:10 +0000123 unsigned int extra;
Daniel Veillard5a872412002-05-22 06:40:27 +0000124 unsigned int sign:1;
Daniel Veillard4255d502002-04-16 15:50:10 +0000125 int frac:7;
126 int total:8;
127};
128
Daniel Veillarde637c4a2003-03-30 21:10:09 +0000129typedef struct _xmlSchemaValQName xmlSchemaValQName;
130typedef xmlSchemaValQName *xmlSchemaValQNamePtr;
131struct _xmlSchemaValQName {
132 xmlChar *name;
133 xmlChar *uri;
134};
135
Daniel Veillard4255d502002-04-16 15:50:10 +0000136struct _xmlSchemaVal {
137 xmlSchemaValType type;
138 union {
Daniel Veillard5a872412002-05-22 06:40:27 +0000139 xmlSchemaValDecimal decimal;
Daniel Veillard070803b2002-05-03 07:29:38 +0000140 xmlSchemaValDate date;
141 xmlSchemaValDuration dur;
Daniel Veillarde637c4a2003-03-30 21:10:09 +0000142 xmlSchemaValQName qname;
Daniel Veillard84d70a42002-09-16 10:51:38 +0000143 float f;
144 double d;
Daniel Veillardc5a70f22003-02-06 23:41:59 +0000145 int b;
Daniel Veillardc4c21552003-03-29 10:53:38 +0000146 xmlChar *str;
Daniel Veillard4255d502002-04-16 15:50:10 +0000147 } value;
148};
149
150static int xmlSchemaTypesInitialized = 0;
151static xmlHashTablePtr xmlSchemaTypesBank = NULL;
152
Daniel Veillardc6e997c2003-01-27 12:35:42 +0000153/*
154 * Basic types
155 */
Daniel Veillard4255d502002-04-16 15:50:10 +0000156static xmlSchemaTypePtr xmlSchemaTypeStringDef = NULL;
157static xmlSchemaTypePtr xmlSchemaTypeAnyTypeDef = NULL;
158static xmlSchemaTypePtr xmlSchemaTypeAnySimpleTypeDef = NULL;
159static xmlSchemaTypePtr xmlSchemaTypeDecimalDef = NULL;
Daniel Veillard070803b2002-05-03 07:29:38 +0000160static xmlSchemaTypePtr xmlSchemaTypeDatetimeDef = NULL;
Daniel Veillard4255d502002-04-16 15:50:10 +0000161static xmlSchemaTypePtr xmlSchemaTypeDateDef = NULL;
Daniel Veillard070803b2002-05-03 07:29:38 +0000162static xmlSchemaTypePtr xmlSchemaTypeTimeDef = NULL;
163static xmlSchemaTypePtr xmlSchemaTypeGYearDef = NULL;
164static xmlSchemaTypePtr xmlSchemaTypeGYearMonthDef = NULL;
165static xmlSchemaTypePtr xmlSchemaTypeGDayDef = NULL;
166static xmlSchemaTypePtr xmlSchemaTypeGMonthDayDef = NULL;
167static xmlSchemaTypePtr xmlSchemaTypeGMonthDef = NULL;
168static xmlSchemaTypePtr xmlSchemaTypeDurationDef = NULL;
Daniel Veillard84d70a42002-09-16 10:51:38 +0000169static xmlSchemaTypePtr xmlSchemaTypeFloatDef = NULL;
Daniel Veillardc5a70f22003-02-06 23:41:59 +0000170static xmlSchemaTypePtr xmlSchemaTypeBooleanDef = NULL;
Daniel Veillard84d70a42002-09-16 10:51:38 +0000171static xmlSchemaTypePtr xmlSchemaTypeDoubleDef = NULL;
Daniel Veillarde5b110b2003-02-04 14:43:39 +0000172static xmlSchemaTypePtr xmlSchemaTypeAnyURIDef = NULL;
Daniel Veillard4255d502002-04-16 15:50:10 +0000173
174/*
Daniel Veillardc6e997c2003-01-27 12:35:42 +0000175 * Derived types
176 */
177static xmlSchemaTypePtr xmlSchemaTypePositiveIntegerDef = NULL;
178static xmlSchemaTypePtr xmlSchemaTypeNonPositiveIntegerDef = NULL;
179static xmlSchemaTypePtr xmlSchemaTypeNegativeIntegerDef = NULL;
180static xmlSchemaTypePtr xmlSchemaTypeNonNegativeIntegerDef = NULL;
181static xmlSchemaTypePtr xmlSchemaTypeIntegerDef = NULL;
182static xmlSchemaTypePtr xmlSchemaTypeLongDef = NULL;
183static xmlSchemaTypePtr xmlSchemaTypeIntDef = NULL;
184static xmlSchemaTypePtr xmlSchemaTypeShortDef = NULL;
185static xmlSchemaTypePtr xmlSchemaTypeByteDef = NULL;
186static xmlSchemaTypePtr xmlSchemaTypeUnsignedLongDef = NULL;
187static xmlSchemaTypePtr xmlSchemaTypeUnsignedIntDef = NULL;
188static xmlSchemaTypePtr xmlSchemaTypeUnsignedShortDef = NULL;
189static xmlSchemaTypePtr xmlSchemaTypeUnsignedByteDef = NULL;
Daniel Veillard8bc6cf92003-02-27 17:42:22 +0000190static xmlSchemaTypePtr xmlSchemaTypeNormStringDef = NULL;
191static xmlSchemaTypePtr xmlSchemaTypeTokenDef = NULL;
192static xmlSchemaTypePtr xmlSchemaTypeLanguageDef = NULL;
193static xmlSchemaTypePtr xmlSchemaTypeNameDef = NULL;
194static xmlSchemaTypePtr xmlSchemaTypeQNameDef = NULL;
Daniel Veillarde5b110b2003-02-04 14:43:39 +0000195static xmlSchemaTypePtr xmlSchemaTypeNCNameDef = NULL;
Daniel Veillard8bc6cf92003-02-27 17:42:22 +0000196static xmlSchemaTypePtr xmlSchemaTypeIdDef = NULL;
197static xmlSchemaTypePtr xmlSchemaTypeIdrefDef = NULL;
198static xmlSchemaTypePtr xmlSchemaTypeIdrefsDef = NULL;
Daniel Veillarda1a9d042003-03-18 16:53:17 +0000199static xmlSchemaTypePtr xmlSchemaTypeEntityDef = NULL;
200static xmlSchemaTypePtr xmlSchemaTypeEntitiesDef = NULL;
Daniel Veillarde637c4a2003-03-30 21:10:09 +0000201static xmlSchemaTypePtr xmlSchemaTypeNotationDef = NULL;
Daniel Veillard8bc6cf92003-02-27 17:42:22 +0000202static xmlSchemaTypePtr xmlSchemaTypeNmtokenDef = NULL;
203static xmlSchemaTypePtr xmlSchemaTypeNmtokensDef = NULL;
Daniel Veillardc6e997c2003-01-27 12:35:42 +0000204
205/*
Daniel Veillard4255d502002-04-16 15:50:10 +0000206 * xmlSchemaInitBasicType:
207 * @name: the type name
Daniel Veillard8bc6cf92003-02-27 17:42:22 +0000208 * @type: the value type associated
Daniel Veillard4255d502002-04-16 15:50:10 +0000209 *
210 * Initialize one default type
211 */
212static xmlSchemaTypePtr
Daniel Veillard8bc6cf92003-02-27 17:42:22 +0000213xmlSchemaInitBasicType(const char *name, xmlSchemaValType type) {
Daniel Veillard4255d502002-04-16 15:50:10 +0000214 xmlSchemaTypePtr ret;
215
216 ret = (xmlSchemaTypePtr) xmlMalloc(sizeof(xmlSchemaType));
217 if (ret == NULL) {
218 xmlGenericError(xmlGenericErrorContext,
219 "Could not initilize type %s: out of memory\n", name);
220 return(NULL);
221 }
222 memset(ret, 0, sizeof(xmlSchemaType));
223 ret->name = xmlStrdup((const xmlChar *)name);
224 ret->type = XML_SCHEMA_TYPE_BASIC;
Daniel Veillard8bc6cf92003-02-27 17:42:22 +0000225 ret->flags = type;
Daniel Veillard4255d502002-04-16 15:50:10 +0000226 ret->contentType = XML_SCHEMA_CONTENT_BASIC;
227 xmlHashAddEntry2(xmlSchemaTypesBank, ret->name,
228 XML_SCHEMAS_NAMESPACE_NAME, ret);
229 return(ret);
230}
231
232/*
233 * xmlSchemaInitTypes:
234 *
235 * Initialize the default XML Schemas type library
236 */
237void
Daniel Veillard6560a422003-03-27 21:25:38 +0000238xmlSchemaInitTypes(void)
239{
Daniel Veillard4255d502002-04-16 15:50:10 +0000240 if (xmlSchemaTypesInitialized != 0)
Daniel Veillard6560a422003-03-27 21:25:38 +0000241 return;
Daniel Veillard4255d502002-04-16 15:50:10 +0000242 xmlSchemaTypesBank = xmlHashCreate(40);
Daniel Veillard6560a422003-03-27 21:25:38 +0000243
Daniel Veillardc6e997c2003-01-27 12:35:42 +0000244 /*
245 * primitive datatypes
246 */
Daniel Veillard8bc6cf92003-02-27 17:42:22 +0000247 xmlSchemaTypeStringDef = xmlSchemaInitBasicType("string",
Daniel Veillard6560a422003-03-27 21:25:38 +0000248 XML_SCHEMAS_STRING);
Daniel Veillard8bc6cf92003-02-27 17:42:22 +0000249 xmlSchemaTypeAnyTypeDef = xmlSchemaInitBasicType("anyType",
Daniel Veillard6560a422003-03-27 21:25:38 +0000250 XML_SCHEMAS_UNKNOWN);
Daniel Veillard8bc6cf92003-02-27 17:42:22 +0000251 xmlSchemaTypeAnySimpleTypeDef = xmlSchemaInitBasicType("anySimpleType",
Daniel Veillard6560a422003-03-27 21:25:38 +0000252 XML_SCHEMAS_UNKNOWN);
Daniel Veillard8bc6cf92003-02-27 17:42:22 +0000253 xmlSchemaTypeDecimalDef = xmlSchemaInitBasicType("decimal",
Daniel Veillard6560a422003-03-27 21:25:38 +0000254 XML_SCHEMAS_DECIMAL);
Daniel Veillard8bc6cf92003-02-27 17:42:22 +0000255 xmlSchemaTypeDateDef = xmlSchemaInitBasicType("date",
Daniel Veillard6560a422003-03-27 21:25:38 +0000256 XML_SCHEMAS_DATE);
Daniel Veillard8bc6cf92003-02-27 17:42:22 +0000257 xmlSchemaTypeDatetimeDef = xmlSchemaInitBasicType("dateTime",
Daniel Veillard6560a422003-03-27 21:25:38 +0000258 XML_SCHEMAS_DATETIME);
Daniel Veillard8bc6cf92003-02-27 17:42:22 +0000259 xmlSchemaTypeTimeDef = xmlSchemaInitBasicType("time",
Daniel Veillard6560a422003-03-27 21:25:38 +0000260 XML_SCHEMAS_TIME);
Daniel Veillard8bc6cf92003-02-27 17:42:22 +0000261 xmlSchemaTypeGYearDef = xmlSchemaInitBasicType("gYear",
Daniel Veillard6560a422003-03-27 21:25:38 +0000262 XML_SCHEMAS_GYEAR);
Daniel Veillard8bc6cf92003-02-27 17:42:22 +0000263 xmlSchemaTypeGYearMonthDef = xmlSchemaInitBasicType("gYearMonth",
Daniel Veillard6560a422003-03-27 21:25:38 +0000264 XML_SCHEMAS_GYEARMONTH);
Daniel Veillard8bc6cf92003-02-27 17:42:22 +0000265 xmlSchemaTypeGMonthDef = xmlSchemaInitBasicType("gMonth",
Daniel Veillard6560a422003-03-27 21:25:38 +0000266 XML_SCHEMAS_GMONTH);
Daniel Veillard8bc6cf92003-02-27 17:42:22 +0000267 xmlSchemaTypeGMonthDayDef = xmlSchemaInitBasicType("gMonthDay",
Daniel Veillard6560a422003-03-27 21:25:38 +0000268 XML_SCHEMAS_GMONTHDAY);
Daniel Veillard8bc6cf92003-02-27 17:42:22 +0000269 xmlSchemaTypeGDayDef = xmlSchemaInitBasicType("gDay",
Daniel Veillard6560a422003-03-27 21:25:38 +0000270 XML_SCHEMAS_GDAY);
Daniel Veillard8bc6cf92003-02-27 17:42:22 +0000271 xmlSchemaTypeDurationDef = xmlSchemaInitBasicType("duration",
Daniel Veillard6560a422003-03-27 21:25:38 +0000272 XML_SCHEMAS_DURATION);
Daniel Veillard8bc6cf92003-02-27 17:42:22 +0000273 xmlSchemaTypeFloatDef = xmlSchemaInitBasicType("float",
Daniel Veillard6560a422003-03-27 21:25:38 +0000274 XML_SCHEMAS_FLOAT);
Daniel Veillard8bc6cf92003-02-27 17:42:22 +0000275 xmlSchemaTypeDoubleDef = xmlSchemaInitBasicType("double",
Daniel Veillard6560a422003-03-27 21:25:38 +0000276 XML_SCHEMAS_DOUBLE);
Daniel Veillard8bc6cf92003-02-27 17:42:22 +0000277 xmlSchemaTypeBooleanDef = xmlSchemaInitBasicType("boolean",
Daniel Veillard6560a422003-03-27 21:25:38 +0000278 XML_SCHEMAS_BOOLEAN);
Daniel Veillard8bc6cf92003-02-27 17:42:22 +0000279 xmlSchemaTypeAnyURIDef = xmlSchemaInitBasicType("anyURI",
Daniel Veillard6560a422003-03-27 21:25:38 +0000280 XML_SCHEMAS_ANYURI);
Daniel Veillard4255d502002-04-16 15:50:10 +0000281
Daniel Veillardc6e997c2003-01-27 12:35:42 +0000282 /*
283 * derived datatypes
284 */
Daniel Veillard8bc6cf92003-02-27 17:42:22 +0000285 xmlSchemaTypeIntegerDef = xmlSchemaInitBasicType("integer",
Daniel Veillard6560a422003-03-27 21:25:38 +0000286 XML_SCHEMAS_INTEGER);;
287 xmlSchemaTypeNonPositiveIntegerDef =
288 xmlSchemaInitBasicType("nonPositiveInteger",
289 XML_SCHEMAS_NPINTEGER);;
290 xmlSchemaTypeNegativeIntegerDef =
291 xmlSchemaInitBasicType("negativeInteger", XML_SCHEMAS_NINTEGER);;
292 xmlSchemaTypeLongDef =
293 xmlSchemaInitBasicType("long", XML_SCHEMAS_LONG);;
294 xmlSchemaTypeIntDef = xmlSchemaInitBasicType("int", XML_SCHEMAS_INT);;
Daniel Veillard8bc6cf92003-02-27 17:42:22 +0000295 xmlSchemaTypeShortDef = xmlSchemaInitBasicType("short",
Daniel Veillard6560a422003-03-27 21:25:38 +0000296 XML_SCHEMAS_SHORT);;
Daniel Veillard8bc6cf92003-02-27 17:42:22 +0000297 xmlSchemaTypeByteDef = xmlSchemaInitBasicType("byte",
Daniel Veillard6560a422003-03-27 21:25:38 +0000298 XML_SCHEMAS_BYTE);;
299 xmlSchemaTypeNonNegativeIntegerDef =
300 xmlSchemaInitBasicType("nonNegativeInteger",
301 XML_SCHEMAS_NNINTEGER);
302 xmlSchemaTypeUnsignedLongDef =
303 xmlSchemaInitBasicType("unsignedLong", XML_SCHEMAS_ULONG);;
304 xmlSchemaTypeUnsignedIntDef =
305 xmlSchemaInitBasicType("unsignedInt", XML_SCHEMAS_UINT);;
306 xmlSchemaTypeUnsignedShortDef =
Daniel Veillarde637c4a2003-03-30 21:10:09 +0000307 xmlSchemaInitBasicType("unsignedShort", XML_SCHEMAS_USHORT);;
Daniel Veillard6560a422003-03-27 21:25:38 +0000308 xmlSchemaTypeUnsignedByteDef =
309 xmlSchemaInitBasicType("unsignedByte", XML_SCHEMAS_UBYTE);;
310 xmlSchemaTypePositiveIntegerDef =
311 xmlSchemaInitBasicType("positiveInteger", XML_SCHEMAS_PINTEGER);
Daniel Veillardc6e997c2003-01-27 12:35:42 +0000312
Daniel Veillard8bc6cf92003-02-27 17:42:22 +0000313 xmlSchemaTypeNormStringDef = xmlSchemaInitBasicType("normalizedString",
Daniel Veillard6560a422003-03-27 21:25:38 +0000314 XML_SCHEMAS_NORMSTRING);
Daniel Veillard8bc6cf92003-02-27 17:42:22 +0000315 xmlSchemaTypeTokenDef = xmlSchemaInitBasicType("token",
Daniel Veillard6560a422003-03-27 21:25:38 +0000316 XML_SCHEMAS_TOKEN);
Daniel Veillard8bc6cf92003-02-27 17:42:22 +0000317 xmlSchemaTypeLanguageDef = xmlSchemaInitBasicType("language",
Daniel Veillard6560a422003-03-27 21:25:38 +0000318 XML_SCHEMAS_LANGUAGE);
319 xmlSchemaTypeIdDef = xmlSchemaInitBasicType("ID", XML_SCHEMAS_ID);
Daniel Veillard8bc6cf92003-02-27 17:42:22 +0000320 xmlSchemaTypeIdrefDef = xmlSchemaInitBasicType("IDREF",
Daniel Veillard6560a422003-03-27 21:25:38 +0000321 XML_SCHEMAS_IDREF);
Daniel Veillard8bc6cf92003-02-27 17:42:22 +0000322 xmlSchemaTypeIdrefsDef = xmlSchemaInitBasicType("IDREFS",
Daniel Veillard6560a422003-03-27 21:25:38 +0000323 XML_SCHEMAS_IDREFS);
Daniel Veillarda1a9d042003-03-18 16:53:17 +0000324 xmlSchemaTypeEntityDef = xmlSchemaInitBasicType("ENTITY",
Daniel Veillard6560a422003-03-27 21:25:38 +0000325 XML_SCHEMAS_ENTITY);
Daniel Veillarda1a9d042003-03-18 16:53:17 +0000326 xmlSchemaTypeEntitiesDef = xmlSchemaInitBasicType("ENTITIES",
Daniel Veillard6560a422003-03-27 21:25:38 +0000327 XML_SCHEMAS_ENTITIES);
Daniel Veillarde637c4a2003-03-30 21:10:09 +0000328 xmlSchemaTypeNotationDef = xmlSchemaInitBasicType("NOTATION",
329 XML_SCHEMAS_NOTATION);
Daniel Veillard8bc6cf92003-02-27 17:42:22 +0000330 xmlSchemaTypeNameDef = xmlSchemaInitBasicType("Name",
Daniel Veillard6560a422003-03-27 21:25:38 +0000331 XML_SCHEMAS_NAME);
Daniel Veillard8bc6cf92003-02-27 17:42:22 +0000332 xmlSchemaTypeQNameDef = xmlSchemaInitBasicType("QName",
Daniel Veillard6560a422003-03-27 21:25:38 +0000333 XML_SCHEMAS_QNAME);
Daniel Veillard8bc6cf92003-02-27 17:42:22 +0000334 xmlSchemaTypeNCNameDef = xmlSchemaInitBasicType("NCName",
Daniel Veillard6560a422003-03-27 21:25:38 +0000335 XML_SCHEMAS_NCNAME);
Daniel Veillard8bc6cf92003-02-27 17:42:22 +0000336 xmlSchemaTypeNmtokenDef = xmlSchemaInitBasicType("NMTOKEN",
Daniel Veillard6560a422003-03-27 21:25:38 +0000337 XML_SCHEMAS_NMTOKEN);
Daniel Veillard8bc6cf92003-02-27 17:42:22 +0000338 xmlSchemaTypeNmtokensDef = xmlSchemaInitBasicType("NMTOKENS",
Daniel Veillard6560a422003-03-27 21:25:38 +0000339 XML_SCHEMAS_NMTOKENS);
Daniel Veillard4255d502002-04-16 15:50:10 +0000340 xmlSchemaTypesInitialized = 1;
341}
342
343/**
344 * xmlSchemaCleanupTypes:
345 *
346 * Cleanup the default XML Schemas type library
347 */
348void
349xmlSchemaCleanupTypes(void) {
350 if (xmlSchemaTypesInitialized == 0)
351 return;
352 xmlHashFree(xmlSchemaTypesBank, (xmlHashDeallocator) xmlSchemaFreeType);
353 xmlSchemaTypesInitialized = 0;
354}
355
356/**
357 * xmlSchemaNewValue:
358 * @type: the value type
359 *
360 * Allocate a new simple type value
361 *
362 * Returns a pointer to the new value or NULL in case of error
363 */
364static xmlSchemaValPtr
365xmlSchemaNewValue(xmlSchemaValType type) {
366 xmlSchemaValPtr value;
367
368 value = (xmlSchemaValPtr) xmlMalloc(sizeof(xmlSchemaVal));
369 if (value == NULL) {
370 return(NULL);
371 }
372 memset(value, 0, sizeof(xmlSchemaVal));
373 value->type = type;
374 return(value);
375}
376
377/**
378 * xmlSchemaFreeValue:
379 * @value: the value to free
380 *
381 * Cleanup the default XML Schemas type library
382 */
383void
384xmlSchemaFreeValue(xmlSchemaValPtr value) {
385 if (value == NULL)
386 return;
Daniel Veillardc4c21552003-03-29 10:53:38 +0000387 switch (value->type) {
388 case XML_SCHEMAS_STRING:
389 case XML_SCHEMAS_NORMSTRING:
390 case XML_SCHEMAS_TOKEN:
391 case XML_SCHEMAS_LANGUAGE:
392 case XML_SCHEMAS_NMTOKEN:
393 case XML_SCHEMAS_NMTOKENS:
394 case XML_SCHEMAS_NAME:
Daniel Veillardc4c21552003-03-29 10:53:38 +0000395 case XML_SCHEMAS_NCNAME:
396 case XML_SCHEMAS_ID:
397 case XML_SCHEMAS_IDREF:
398 case XML_SCHEMAS_IDREFS:
399 case XML_SCHEMAS_ENTITY:
400 case XML_SCHEMAS_ENTITIES:
401 case XML_SCHEMAS_NOTATION:
402 case XML_SCHEMAS_ANYURI:
403 if (value->value.str != NULL)
404 xmlFree(value->value.str);
405 break;
Daniel Veillarde637c4a2003-03-30 21:10:09 +0000406 case XML_SCHEMAS_QNAME:
407 if (value->value.qname.uri != NULL)
408 xmlFree(value->value.qname.uri);
409 if (value->value.qname.name != NULL)
410 xmlFree(value->value.qname.name);
411 break;
Daniel Veillardc4c21552003-03-29 10:53:38 +0000412 default:
413 break;
414 }
Daniel Veillard4255d502002-04-16 15:50:10 +0000415 xmlFree(value);
416}
417
418/**
419 * xmlSchemaGetPredefinedType:
420 * @name: the type name
421 * @ns: the URI of the namespace usually "http://www.w3.org/2001/XMLSchema"
422 *
423 * Lookup a type in the default XML Schemas type library
424 *
425 * Returns the type if found, NULL otherwise
426 */
427xmlSchemaTypePtr
428xmlSchemaGetPredefinedType(const xmlChar *name, const xmlChar *ns) {
429 if (xmlSchemaTypesInitialized == 0)
430 xmlSchemaInitTypes();
431 if (name == NULL)
432 return(NULL);
433 return((xmlSchemaTypePtr) xmlHashLookup2(xmlSchemaTypesBank, name, ns));
434}
Daniel Veillard070803b2002-05-03 07:29:38 +0000435
436/****************************************************************
437 * *
438 * Convenience macros and functions *
439 * *
440 ****************************************************************/
441
442#define IS_TZO_CHAR(c) \
443 ((c == 0) || (c == 'Z') || (c == '+') || (c == '-'))
444
445#define VALID_YEAR(yr) (yr != 0)
446#define VALID_MONTH(mon) ((mon >= 1) && (mon <= 12))
447/* VALID_DAY should only be used when month is unknown */
448#define VALID_DAY(day) ((day >= 1) && (day <= 31))
449#define VALID_HOUR(hr) ((hr >= 0) && (hr <= 23))
450#define VALID_MIN(min) ((min >= 0) && (min <= 59))
451#define VALID_SEC(sec) ((sec >= 0) && (sec < 60))
452#define VALID_TZO(tzo) ((tzo > -1440) && (tzo < 1440))
453#define IS_LEAP(y) \
454 (((y % 4 == 0) && (y % 100 != 0)) || (y % 400 == 0))
455
456static const long daysInMonth[12] =
457 { 31, 28, 31, 30, 31, 30, 31, 31, 30, 31, 30, 31 };
458static const long daysInMonthLeap[12] =
459 { 31, 29, 31, 30, 31, 30, 31, 31, 30, 31, 30, 31 };
460
Daniel Veillard5a872412002-05-22 06:40:27 +0000461#define MAX_DAYINMONTH(yr,mon) \
462 (IS_LEAP(yr) ? daysInMonthLeap[mon - 1] : daysInMonth[mon - 1])
463
Daniel Veillard070803b2002-05-03 07:29:38 +0000464#define VALID_MDAY(dt) \
465 (IS_LEAP(dt->year) ? \
466 (dt->day <= daysInMonthLeap[dt->mon - 1]) : \
467 (dt->day <= daysInMonth[dt->mon - 1]))
468
469#define VALID_DATE(dt) \
470 (VALID_YEAR(dt->year) && VALID_MONTH(dt->mon) && VALID_MDAY(dt))
471
472#define VALID_TIME(dt) \
473 (VALID_HOUR(dt->hour) && VALID_MIN(dt->min) && \
474 VALID_SEC(dt->sec) && VALID_TZO(dt->tzo))
475
476#define VALID_DATETIME(dt) \
477 (VALID_DATE(dt) && VALID_TIME(dt))
478
479#define SECS_PER_MIN (60)
480#define SECS_PER_HOUR (60 * SECS_PER_MIN)
481#define SECS_PER_DAY (24 * SECS_PER_HOUR)
482
Daniel Veillard5a872412002-05-22 06:40:27 +0000483static const long dayInYearByMonth[12] =
484 { 0, 31, 59, 90, 120, 151, 181, 212, 243, 273, 304, 334 };
485static const long dayInLeapYearByMonth[12] =
486 { 0, 31, 60, 91, 121, 152, 182, 213, 244, 274, 305, 335 };
487
488#define DAY_IN_YEAR(day, month, year) \
489 ((IS_LEAP(year) ? \
490 dayInLeapYearByMonth[month - 1] : \
491 dayInYearByMonth[month - 1]) + day)
492
493#ifdef DEBUG
494#define DEBUG_DATE(dt) \
495 xmlGenericError(xmlGenericErrorContext, \
496 "type=%o %04ld-%02u-%02uT%02u:%02u:%03f", \
497 dt->type,dt->value.date.year,dt->value.date.mon, \
498 dt->value.date.day,dt->value.date.hour,dt->value.date.min, \
499 dt->value.date.sec); \
500 if (dt->value.date.tz_flag) \
501 if (dt->value.date.tzo != 0) \
502 xmlGenericError(xmlGenericErrorContext, \
503 "%+05d\n",dt->value.date.tzo); \
504 else \
505 xmlGenericError(xmlGenericErrorContext, "Z\n"); \
506 else \
507 xmlGenericError(xmlGenericErrorContext,"\n")
508#else
509#define DEBUG_DATE(dt)
510#endif
511
Daniel Veillard070803b2002-05-03 07:29:38 +0000512/**
513 * _xmlSchemaParseGYear:
514 * @dt: pointer to a date structure
515 * @str: pointer to the string to analyze
516 *
517 * Parses a xs:gYear without time zone and fills in the appropriate
518 * field of the @dt structure. @str is updated to point just after the
519 * xs:gYear. It is supposed that @dt->year is big enough to contain
520 * the year.
521 *
522 * Returns 0 or the error code
523 */
524static int
525_xmlSchemaParseGYear (xmlSchemaValDatePtr dt, const xmlChar **str) {
526 const xmlChar *cur = *str, *firstChar;
527 int isneg = 0, digcnt = 0;
528
529 if (((*cur < '0') || (*cur > '9')) &&
530 (*cur != '-') && (*cur != '+'))
531 return -1;
532
533 if (*cur == '-') {
534 isneg = 1;
535 cur++;
536 }
537
538 firstChar = cur;
539
540 while ((*cur >= '0') && (*cur <= '9')) {
541 dt->year = dt->year * 10 + (*cur - '0');
542 cur++;
543 digcnt++;
544 }
545
546 /* year must be at least 4 digits (CCYY); over 4
547 * digits cannot have a leading zero. */
548 if ((digcnt < 4) || ((digcnt > 4) && (*firstChar == '0')))
549 return 1;
550
551 if (isneg)
552 dt->year = - dt->year;
553
554 if (!VALID_YEAR(dt->year))
555 return 2;
556
557 *str = cur;
558 return 0;
559}
560
561/**
562 * PARSE_2_DIGITS:
563 * @num: the integer to fill in
564 * @cur: an #xmlChar *
565 * @invalid: an integer
566 *
567 * Parses a 2-digits integer and updates @num with the value. @cur is
568 * updated to point just after the integer.
569 * In case of error, @invalid is set to %TRUE, values of @num and
570 * @cur are undefined.
571 */
572#define PARSE_2_DIGITS(num, cur, invalid) \
573 if ((cur[0] < '0') || (cur[0] > '9') || \
574 (cur[1] < '0') || (cur[1] > '9')) \
575 invalid = 1; \
576 else \
577 num = (cur[0] - '0') * 10 + (cur[1] - '0'); \
578 cur += 2;
579
580/**
581 * PARSE_FLOAT:
582 * @num: the double to fill in
583 * @cur: an #xmlChar *
584 * @invalid: an integer
585 *
586 * Parses a float and updates @num with the value. @cur is
587 * updated to point just after the float. The float must have a
588 * 2-digits integer part and may or may not have a decimal part.
589 * In case of error, @invalid is set to %TRUE, values of @num and
590 * @cur are undefined.
591 */
592#define PARSE_FLOAT(num, cur, invalid) \
593 PARSE_2_DIGITS(num, cur, invalid); \
594 if (!invalid && (*cur == '.')) { \
595 double mult = 1; \
596 cur++; \
597 if ((*cur < '0') || (*cur > '9')) \
598 invalid = 1; \
599 while ((*cur >= '0') && (*cur <= '9')) { \
600 mult /= 10; \
601 num += (*cur - '0') * mult; \
602 cur++; \
603 } \
604 }
605
606/**
607 * _xmlSchemaParseGMonth:
608 * @dt: pointer to a date structure
609 * @str: pointer to the string to analyze
610 *
611 * Parses a xs:gMonth without time zone and fills in the appropriate
612 * field of the @dt structure. @str is updated to point just after the
613 * xs:gMonth.
614 *
615 * Returns 0 or the error code
616 */
617static int
618_xmlSchemaParseGMonth (xmlSchemaValDatePtr dt, const xmlChar **str) {
619 const xmlChar *cur = *str;
620 int ret = 0;
621
622 PARSE_2_DIGITS(dt->mon, cur, ret);
623 if (ret != 0)
624 return ret;
625
626 if (!VALID_MONTH(dt->mon))
627 return 2;
628
629 *str = cur;
630 return 0;
631}
632
633/**
634 * _xmlSchemaParseGDay:
635 * @dt: pointer to a date structure
636 * @str: pointer to the string to analyze
637 *
638 * Parses a xs:gDay without time zone and fills in the appropriate
639 * field of the @dt structure. @str is updated to point just after the
640 * xs:gDay.
641 *
642 * Returns 0 or the error code
643 */
644static int
645_xmlSchemaParseGDay (xmlSchemaValDatePtr dt, const xmlChar **str) {
646 const xmlChar *cur = *str;
647 int ret = 0;
648
649 PARSE_2_DIGITS(dt->day, cur, ret);
650 if (ret != 0)
651 return ret;
652
653 if (!VALID_DAY(dt->day))
654 return 2;
655
656 *str = cur;
657 return 0;
658}
659
660/**
661 * _xmlSchemaParseTime:
662 * @dt: pointer to a date structure
663 * @str: pointer to the string to analyze
664 *
665 * Parses a xs:time without time zone and fills in the appropriate
666 * fields of the @dt structure. @str is updated to point just after the
667 * xs:time.
668 * In case of error, values of @dt fields are undefined.
669 *
670 * Returns 0 or the error code
671 */
672static int
673_xmlSchemaParseTime (xmlSchemaValDatePtr dt, const xmlChar **str) {
674 const xmlChar *cur = *str;
675 unsigned int hour = 0; /* use temp var in case str is not xs:time */
676 int ret = 0;
677
678 PARSE_2_DIGITS(hour, cur, ret);
679 if (ret != 0)
680 return ret;
681
682 if (*cur != ':')
683 return 1;
684 cur++;
685
686 /* the ':' insures this string is xs:time */
687 dt->hour = hour;
688
689 PARSE_2_DIGITS(dt->min, cur, ret);
690 if (ret != 0)
691 return ret;
692
693 if (*cur != ':')
694 return 1;
695 cur++;
696
697 PARSE_FLOAT(dt->sec, cur, ret);
698 if (ret != 0)
699 return ret;
700
701 if (!VALID_TIME(dt))
702 return 2;
703
704 *str = cur;
705 return 0;
706}
707
708/**
709 * _xmlSchemaParseTimeZone:
710 * @dt: pointer to a date structure
711 * @str: pointer to the string to analyze
712 *
713 * Parses a time zone without time zone and fills in the appropriate
714 * field of the @dt structure. @str is updated to point just after the
715 * time zone.
716 *
717 * Returns 0 or the error code
718 */
719static int
720_xmlSchemaParseTimeZone (xmlSchemaValDatePtr dt, const xmlChar **str) {
721 const xmlChar *cur = *str;
722 int ret = 0;
723
724 if (str == NULL)
725 return -1;
726
727 switch (*cur) {
728 case 0:
729 dt->tz_flag = 0;
730 dt->tzo = 0;
731 break;
732
733 case 'Z':
734 dt->tz_flag = 1;
735 dt->tzo = 0;
736 cur++;
737 break;
738
739 case '+':
740 case '-': {
741 int isneg = 0, tmp = 0;
742 isneg = (*cur == '-');
743
744 cur++;
745
746 PARSE_2_DIGITS(tmp, cur, ret);
747 if (ret != 0)
748 return ret;
749 if (!VALID_HOUR(tmp))
750 return 2;
751
752 if (*cur != ':')
753 return 1;
754 cur++;
755
756 dt->tzo = tmp * 60;
757
758 PARSE_2_DIGITS(tmp, cur, ret);
759 if (ret != 0)
760 return ret;
761 if (!VALID_MIN(tmp))
762 return 2;
763
764 dt->tzo += tmp;
765 if (isneg)
766 dt->tzo = - dt->tzo;
767
768 if (!VALID_TZO(dt->tzo))
769 return 2;
770
Daniel Veillard5a872412002-05-22 06:40:27 +0000771 dt->tz_flag = 1;
Daniel Veillard070803b2002-05-03 07:29:38 +0000772 break;
773 }
774 default:
775 return 1;
776 }
777
778 *str = cur;
779 return 0;
780}
781
782/****************************************************************
783 * *
784 * XML Schema Dates/Times Datatypes Handling *
785 * *
786 ****************************************************************/
787
788/**
789 * PARSE_DIGITS:
790 * @num: the integer to fill in
791 * @cur: an #xmlChar *
792 * @num_type: an integer flag
793 *
794 * Parses a digits integer and updates @num with the value. @cur is
795 * updated to point just after the integer.
796 * In case of error, @num_type is set to -1, values of @num and
797 * @cur are undefined.
798 */
799#define PARSE_DIGITS(num, cur, num_type) \
800 if ((*cur < '0') || (*cur > '9')) \
801 num_type = -1; \
802 else \
803 while ((*cur >= '0') && (*cur <= '9')) { \
804 num = num * 10 + (*cur - '0'); \
805 cur++; \
806 }
807
808/**
809 * PARSE_NUM:
810 * @num: the double to fill in
811 * @cur: an #xmlChar *
812 * @num_type: an integer flag
813 *
814 * Parses a float or integer and updates @num with the value. @cur is
815 * updated to point just after the number. If the number is a float,
816 * then it must have an integer part and a decimal part; @num_type will
817 * be set to 1. If there is no decimal part, @num_type is set to zero.
818 * In case of error, @num_type is set to -1, values of @num and
819 * @cur are undefined.
820 */
821#define PARSE_NUM(num, cur, num_type) \
822 num = 0; \
823 PARSE_DIGITS(num, cur, num_type); \
824 if (!num_type && (*cur == '.')) { \
825 double mult = 1; \
826 cur++; \
827 if ((*cur < '0') || (*cur > '9')) \
828 num_type = -1; \
829 else \
830 num_type = 1; \
831 while ((*cur >= '0') && (*cur <= '9')) { \
832 mult /= 10; \
833 num += (*cur - '0') * mult; \
834 cur++; \
835 } \
836 }
837
838/**
Daniel Veillard5a872412002-05-22 06:40:27 +0000839 * xmlSchemaValidateDates:
Daniel Veillard070803b2002-05-03 07:29:38 +0000840 * @type: the predefined type
841 * @dateTime: string to analyze
842 * @val: the return computed value
843 *
844 * Check that @dateTime conforms to the lexical space of one of the date types.
845 * if true a value is computed and returned in @val.
846 *
847 * Returns 0 if this validates, a positive error code number otherwise
848 * and -1 in case of internal or API error.
849 */
850static int
Daniel Veillarddda8f1b2002-09-26 09:47:36 +0000851xmlSchemaValidateDates (xmlSchemaTypePtr type ATTRIBUTE_UNUSED,
Daniel Veillard118aed72002-09-24 14:13:13 +0000852 const xmlChar *dateTime, xmlSchemaValPtr *val) {
Daniel Veillard070803b2002-05-03 07:29:38 +0000853 xmlSchemaValPtr dt;
854 int ret;
855 const xmlChar *cur = dateTime;
856
857#define RETURN_TYPE_IF_VALID(t) \
858 if (IS_TZO_CHAR(*cur)) { \
859 ret = _xmlSchemaParseTimeZone(&(dt->value.date), &cur); \
860 if (ret == 0) { \
861 if (*cur != 0) \
862 goto error; \
863 dt->type = t; \
864 if (val != NULL) \
865 *val = dt; \
Daniel Veillard80b19092003-03-28 13:29:53 +0000866 else \
867 xmlSchemaFreeValue(dt); \
Daniel Veillard070803b2002-05-03 07:29:38 +0000868 return 0; \
869 } \
870 }
871
872 if (dateTime == NULL)
873 return -1;
874
875 if ((*cur != '-') && (*cur < '0') && (*cur > '9'))
876 return 1;
877
878 dt = xmlSchemaNewValue(XML_SCHEMAS_UNKNOWN);
879 if (dt == NULL)
880 return -1;
881
882 if ((cur[0] == '-') && (cur[1] == '-')) {
883 /*
884 * It's an incomplete date (xs:gMonthDay, xs:gMonth or
885 * xs:gDay)
886 */
887 cur += 2;
888
889 /* is it an xs:gDay? */
890 if (*cur == '-') {
891 ++cur;
892 ret = _xmlSchemaParseGDay(&(dt->value.date), &cur);
893 if (ret != 0)
894 goto error;
895
896 RETURN_TYPE_IF_VALID(XML_SCHEMAS_GDAY);
897
898 goto error;
899 }
900
901 /*
902 * it should be an xs:gMonthDay or xs:gMonth
903 */
904 ret = _xmlSchemaParseGMonth(&(dt->value.date), &cur);
905 if (ret != 0)
906 goto error;
907
908 if (*cur != '-')
909 goto error;
910 cur++;
911
912 /* is it an xs:gMonth? */
913 if (*cur == '-') {
914 cur++;
915 RETURN_TYPE_IF_VALID(XML_SCHEMAS_GMONTH);
916 goto error;
917 }
918
919 /* it should be an xs:gMonthDay */
920 ret = _xmlSchemaParseGDay(&(dt->value.date), &cur);
921 if (ret != 0)
922 goto error;
923
924 RETURN_TYPE_IF_VALID(XML_SCHEMAS_GMONTHDAY);
925
926 goto error;
927 }
928
929 /*
930 * It's a right-truncated date or an xs:time.
931 * Try to parse an xs:time then fallback on right-truncated dates.
932 */
933 if ((*cur >= '0') && (*cur <= '9')) {
934 ret = _xmlSchemaParseTime(&(dt->value.date), &cur);
935 if (ret == 0) {
936 /* it's an xs:time */
937 RETURN_TYPE_IF_VALID(XML_SCHEMAS_TIME);
938 }
939 }
940
941 /* fallback on date parsing */
942 cur = dateTime;
943
944 ret = _xmlSchemaParseGYear(&(dt->value.date), &cur);
945 if (ret != 0)
946 goto error;
947
948 /* is it an xs:gYear? */
949 RETURN_TYPE_IF_VALID(XML_SCHEMAS_GYEAR);
950
951 if (*cur != '-')
952 goto error;
953 cur++;
954
955 ret = _xmlSchemaParseGMonth(&(dt->value.date), &cur);
956 if (ret != 0)
957 goto error;
958
959 /* is it an xs:gYearMonth? */
960 RETURN_TYPE_IF_VALID(XML_SCHEMAS_GYEARMONTH);
961
962 if (*cur != '-')
963 goto error;
964 cur++;
965
966 ret = _xmlSchemaParseGDay(&(dt->value.date), &cur);
967 if ((ret != 0) || !VALID_DATE((&(dt->value.date))))
968 goto error;
969
970 /* is it an xs:date? */
971 RETURN_TYPE_IF_VALID(XML_SCHEMAS_DATE);
972
973 if (*cur != 'T')
974 goto error;
975 cur++;
976
977 /* it should be an xs:dateTime */
978 ret = _xmlSchemaParseTime(&(dt->value.date), &cur);
979 if (ret != 0)
980 goto error;
981
982 ret = _xmlSchemaParseTimeZone(&(dt->value.date), &cur);
983 if ((ret != 0) || (*cur != 0) || !VALID_DATETIME((&(dt->value.date))))
984 goto error;
985
986 dt->type = XML_SCHEMAS_DATETIME;
987
988 if (val != NULL)
989 *val = dt;
Daniel Veillard80b19092003-03-28 13:29:53 +0000990 else
991 xmlSchemaFreeValue(dt);
Daniel Veillard070803b2002-05-03 07:29:38 +0000992
993 return 0;
994
995error:
996 if (dt != NULL)
997 xmlSchemaFreeValue(dt);
998 return 1;
999}
1000
1001/**
Daniel Veillard5a872412002-05-22 06:40:27 +00001002 * xmlSchemaValidateDuration:
Daniel Veillard070803b2002-05-03 07:29:38 +00001003 * @type: the predefined type
1004 * @duration: string to analyze
1005 * @val: the return computed value
1006 *
1007 * Check that @duration conforms to the lexical space of the duration type.
1008 * if true a value is computed and returned in @val.
1009 *
1010 * Returns 0 if this validates, a positive error code number otherwise
1011 * and -1 in case of internal or API error.
1012 */
1013static int
Daniel Veillarddda8f1b2002-09-26 09:47:36 +00001014xmlSchemaValidateDuration (xmlSchemaTypePtr type ATTRIBUTE_UNUSED,
Daniel Veillard118aed72002-09-24 14:13:13 +00001015 const xmlChar *duration, xmlSchemaValPtr *val) {
Daniel Veillard070803b2002-05-03 07:29:38 +00001016 const xmlChar *cur = duration;
1017 xmlSchemaValPtr dur;
1018 int isneg = 0;
1019 unsigned int seq = 0;
1020
1021 if (duration == NULL)
1022 return -1;
1023
1024 if (*cur == '-') {
1025 isneg = 1;
1026 cur++;
1027 }
1028
1029 /* duration must start with 'P' (after sign) */
1030 if (*cur++ != 'P')
1031 return 1;
1032
Daniel Veillard80b19092003-03-28 13:29:53 +00001033 if (*cur == 0)
1034 return 1;
1035
Daniel Veillard070803b2002-05-03 07:29:38 +00001036 dur = xmlSchemaNewValue(XML_SCHEMAS_DURATION);
1037 if (dur == NULL)
1038 return -1;
1039
1040 while (*cur != 0) {
1041 double num;
1042 int num_type = 0; /* -1 = invalid, 0 = int, 1 = floating */
1043 const xmlChar desig[] = {'Y', 'M', 'D', 'H', 'M', 'S'};
1044 const double multi[] = { 0.0, 0.0, 86400.0, 3600.0, 60.0, 1.0, 0.0};
1045
1046 /* input string should be empty or invalid date/time item */
1047 if (seq >= sizeof(desig))
1048 goto error;
1049
1050 /* T designator must be present for time items */
1051 if (*cur == 'T') {
1052 if (seq <= 3) {
1053 seq = 3;
1054 cur++;
1055 } else
1056 return 1;
1057 } else if (seq == 3)
1058 goto error;
1059
1060 /* parse the number portion of the item */
1061 PARSE_NUM(num, cur, num_type);
1062
1063 if ((num_type == -1) || (*cur == 0))
1064 goto error;
1065
1066 /* update duration based on item type */
1067 while (seq < sizeof(desig)) {
1068 if (*cur == desig[seq]) {
1069
1070 /* verify numeric type; only seconds can be float */
1071 if ((num_type != 0) && (seq < (sizeof(desig)-1)))
1072 goto error;
1073
1074 switch (seq) {
1075 case 0:
1076 dur->value.dur.mon = (long)num * 12;
1077 break;
1078 case 1:
1079 dur->value.dur.mon += (long)num;
1080 break;
1081 default:
1082 /* convert to seconds using multiplier */
1083 dur->value.dur.sec += num * multi[seq];
1084 seq++;
1085 break;
1086 }
1087
1088 break; /* exit loop */
1089 }
1090 /* no date designators found? */
1091 if (++seq == 3)
1092 goto error;
1093 }
1094 cur++;
1095 }
1096
1097 if (isneg) {
1098 dur->value.dur.mon = -dur->value.dur.mon;
1099 dur->value.dur.day = -dur->value.dur.day;
1100 dur->value.dur.sec = -dur->value.dur.sec;
1101 }
1102
1103 if (val != NULL)
1104 *val = dur;
Daniel Veillard80b19092003-03-28 13:29:53 +00001105 else
1106 xmlSchemaFreeValue(dur);
Daniel Veillard070803b2002-05-03 07:29:38 +00001107
1108 return 0;
1109
1110error:
1111 if (dur != NULL)
1112 xmlSchemaFreeValue(dur);
1113 return 1;
1114}
1115
Daniel Veillarda1a9d042003-03-18 16:53:17 +00001116/**
1117 * xmlSchemaStrip:
1118 * @value: a value
1119 *
1120 * Removes the leading and ending spaces of a string
1121 *
1122 * Returns the new string or NULL if no change was required.
1123 */
1124static xmlChar *
1125xmlSchemaStrip(const xmlChar *value) {
1126 const xmlChar *start = value, *end, *f;
1127
1128 if (value == NULL) return(NULL);
1129 while ((*start != 0) && (IS_BLANK(*start))) start++;
1130 end = start;
1131 while (*end != 0) end++;
1132 f = end;
1133 end--;
1134 while ((end > start) && (IS_BLANK(*end))) end--;
1135 end++;
1136 if ((start == value) && (f == end)) return(NULL);
1137 return(xmlStrndup(start, end - start));
1138}
Daniel Veillard96a4b252003-02-06 08:22:32 +00001139
1140/**
Daniel Veillardb6c7f412003-03-29 16:41:55 +00001141 * xmlSchemaCollapseString:
1142 * @value: a value
1143 *
1144 * Removes and normalize white spaces in the string
1145 *
1146 * Returns the new string or NULL if no change was required.
1147 */
1148static xmlChar *
1149xmlSchemaCollapseString(const xmlChar *value) {
1150 const xmlChar *start = value, *end, *f;
1151 xmlChar *g;
1152 int col = 0;
1153
1154 if (value == NULL) return(NULL);
1155 while ((*start != 0) && (IS_BLANK(*start))) start++;
1156 end = start;
1157 while (*end != 0) {
1158 if ((*end == ' ') && (IS_BLANK(end[1]))) {
1159 col = end - start;
1160 break;
1161 } else if ((*end == 0xa) || (*end == 0x9) || (*end == 0xd)) {
1162 col = end - start;
1163 break;
1164 }
1165 end++;
1166 }
1167 if (col == 0) {
1168 f = end;
1169 end--;
1170 while ((end > start) && (IS_BLANK(*end))) end--;
1171 end++;
1172 if ((start == value) && (f == end)) return(NULL);
1173 return(xmlStrndup(start, end - start));
1174 }
1175 start = xmlStrdup(start);
1176 if (start == NULL) return(NULL);
1177 g = (xmlChar *) (start + col);
1178 end = g;
1179 while (*end != 0) {
1180 if (IS_BLANK(*end)) {
1181 end++;
1182 while (IS_BLANK(*end)) end++;
1183 if (*end != 0)
1184 *g++ = ' ';
1185 } else
1186 *g++ = *end++;
1187 }
1188 *g = 0;
1189 return((xmlChar *) start);
1190}
1191
1192/**
Daniel Veillard28c52ab2003-03-18 11:39:17 +00001193 * xmlSchemaValAtomicListNode:
1194 * @type: the predefined atomic type for a token in the list
1195 * @value: the list value to check
1196 * @ret: the return computed value
1197 * @node: the node containing the value
1198 *
1199 * Check that a value conforms to the lexical space of the predefined
1200 * list type. if true a value is computed and returned in @ret.
1201 *
Daniel Veillarda1a9d042003-03-18 16:53:17 +00001202 * Returns the number of items if this validates, a negative error code
1203 * number otherwise
Daniel Veillard28c52ab2003-03-18 11:39:17 +00001204 */
1205static int
1206xmlSchemaValAtomicListNode(xmlSchemaTypePtr type, const xmlChar *value,
1207 xmlSchemaValPtr *ret, xmlNodePtr node) {
1208 xmlChar *val, *cur, *endval;
1209 int nb_values = 0;
Daniel Veillard580ced82003-03-21 21:22:48 +00001210 int tmp = 0;
Daniel Veillard28c52ab2003-03-18 11:39:17 +00001211
1212 if (value == NULL) {
1213 return(-1);
1214 }
1215 val = xmlStrdup(value);
1216 if (val == NULL) {
1217 return(-1);
1218 }
1219 cur = val;
1220 /*
1221 * Split the list
1222 */
Daniel Veillarda1a9d042003-03-18 16:53:17 +00001223 while (IS_BLANK(*cur)) *cur++ = 0;
Daniel Veillard28c52ab2003-03-18 11:39:17 +00001224 while (*cur != 0) {
1225 if (IS_BLANK(*cur)) {
1226 *cur = 0;
1227 cur++;
1228 while (IS_BLANK(*cur)) *cur++ = 0;
1229 } else {
1230 nb_values++;
1231 cur++;
1232 while ((*cur != 0) && (!IS_BLANK(*cur))) cur++;
1233 }
1234 }
1235 if (nb_values == 0) {
1236 if (ret != NULL) {
1237 TODO
1238 }
1239 xmlFree(val);
Daniel Veillarda1a9d042003-03-18 16:53:17 +00001240 return(nb_values);
Daniel Veillard28c52ab2003-03-18 11:39:17 +00001241 }
1242 endval = cur;
1243 cur = val;
1244 while ((*cur == 0) && (cur != endval)) cur++;
1245 while (cur != endval) {
1246 tmp = xmlSchemaValPredefTypeNode(type, cur, NULL, node);
1247 if (tmp != 0)
1248 break;
1249 while (*cur != 0) cur++;
1250 while ((*cur == 0) && (cur != endval)) cur++;
1251 }
1252 xmlFree(val);
1253 if (ret != NULL) {
1254 TODO
1255 }
Daniel Veillarda1a9d042003-03-18 16:53:17 +00001256 if (tmp == 0)
1257 return(nb_values);
1258 return(-1);
Daniel Veillard28c52ab2003-03-18 11:39:17 +00001259}
1260
1261/**
Daniel Veillarde637c4a2003-03-30 21:10:09 +00001262 * xmlSchemaParseUInt:
1263 * @str: pointer to the string R/W
1264 * @llo: pointer to the low result
1265 * @lmi: pointer to the mid result
1266 * @lhi: pointer to the high result
1267 *
1268 * Parse an unsigned long into 3 fields.
1269 *
1270 * Returns the number of chars parsed or -1 if overflow of the capacity
1271 */
1272static int
1273xmlSchemaParseUInt(const xmlChar **str, unsigned long *llo,
1274 unsigned long *lmi, unsigned long *lhi) {
1275 unsigned long lo = 0, mi = 0, hi = 0;
1276 const xmlChar *tmp, *cur = *str;
1277 int ret = 0, i = 0;
1278
1279 while (*cur == '0') {
1280 ret++;
1281 cur++;
1282 }
1283 tmp = cur;
1284 while ((*tmp != 0) && (*tmp >= '0') && (*tmp <= '9')) {
1285 i++;tmp++;ret++;
1286 }
1287 if (i > 24) {
1288 *str = tmp;
1289 return(-1);
1290 }
1291 while (i > 16) {
1292 hi = hi * 10 + (*cur++ - '0');
1293 i--;
1294 }
1295 while (i > 8) {
1296 mi = mi * 10 + (*cur++ - '0');
1297 i--;
1298 }
1299 while (i > 0) {
1300 lo = lo * 10 + (*cur++ - '0');
1301 i--;
1302 }
1303
1304 *str = cur;
1305 *llo = lo;
1306 *lmi = mi;
1307 *lhi = hi;
1308 return(ret);
1309}
1310
1311/**
Daniel Veillardb6c7f412003-03-29 16:41:55 +00001312 * xmlSchemaValAtomicType:
1313 * @type: the predefined type
1314 * @value: the value to check
1315 * @val: the return computed value
1316 * @node: the node containing the value
1317 * flags: flags to control the vlidation
1318 *
1319 * Check that a value conforms to the lexical space of the atomic type.
1320 * if true a value is computed and returned in @val.
1321 *
1322 * Returns 0 if this validates, a positive error code number otherwise
1323 * and -1 in case of internal or API error.
1324 */
1325static int
1326xmlSchemaValAtomicType(xmlSchemaTypePtr type, const xmlChar *value,
1327 xmlSchemaValPtr *val, xmlNodePtr node, int flags) {
1328 xmlSchemaValPtr v;
1329 xmlChar *norm = NULL;
1330 int ret;
1331
1332 if (xmlSchemaTypesInitialized == 0)
1333 return(-1);
1334 if (type == NULL)
1335 return(-1);
1336
1337 if (val != NULL)
1338 *val = NULL;
1339 if ((flags == 0) && (value != NULL)) {
1340 if ((type->flags != XML_SCHEMAS_STRING) &&
1341 (type->flags != XML_SCHEMAS_NORMSTRING)) {
1342 norm = xmlSchemaCollapseString(value);
1343 if (norm != NULL)
1344 value = norm;
1345 }
1346 }
1347
1348 switch (type->flags) {
1349 case XML_SCHEMAS_UNKNOWN:
1350 if (type == xmlSchemaTypeAnyTypeDef)
1351 goto return0;
1352 goto error;
1353 case XML_SCHEMAS_STRING:
1354 goto return0;
1355 case XML_SCHEMAS_NORMSTRING:
1356 TODO
1357 goto return0;
1358 case XML_SCHEMAS_DECIMAL: {
1359 const xmlChar *cur = value, *tmp;
1360 int frac = 0, len, neg = 0;
1361 unsigned long base = 0;
1362 if (cur == NULL)
1363 goto return1;
1364 if (*cur == '+')
1365 cur++;
1366 else if (*cur == '-') {
1367 neg = 1;
1368 cur++;
1369 }
1370 tmp = cur;
1371 while ((*cur >= '0') && (*cur <= '9')) {
1372 base = base * 10 + (*cur - '0');
1373 cur++;
1374 }
1375 len = cur - tmp;
1376 if (*cur == '.') {
1377 cur++;
1378 tmp = cur;
1379 while ((*cur >= '0') && (*cur <= '9')) {
1380 base = base * 10 + (*cur - '0');
1381 cur++;
1382 }
1383 frac = cur - tmp;
1384 }
1385 if (*cur != 0)
1386 goto return1;
1387 if (val != NULL) {
1388 v = xmlSchemaNewValue(XML_SCHEMAS_DECIMAL);
1389 if (v != NULL) {
Daniel Veillarde637c4a2003-03-30 21:10:09 +00001390 v->value.decimal.lo = base;
Daniel Veillardb6c7f412003-03-29 16:41:55 +00001391 v->value.decimal.sign = neg;
1392 v->value.decimal.frac = frac;
1393 v->value.decimal.total = frac + len;
1394 *val = v;
1395 }
1396 }
1397 goto return0;
1398 }
1399 case XML_SCHEMAS_TIME:
1400 case XML_SCHEMAS_GDAY:
1401 case XML_SCHEMAS_GMONTH:
1402 case XML_SCHEMAS_GMONTHDAY:
1403 case XML_SCHEMAS_GYEAR:
1404 case XML_SCHEMAS_GYEARMONTH:
1405 case XML_SCHEMAS_DATE:
1406 case XML_SCHEMAS_DATETIME:
1407 ret = xmlSchemaValidateDates(type, value, val);
1408 break;
1409 case XML_SCHEMAS_DURATION:
1410 ret = xmlSchemaValidateDuration(type, value, val);
1411 break;
1412 case XML_SCHEMAS_FLOAT:
1413 case XML_SCHEMAS_DOUBLE: {
1414 const xmlChar *cur = value;
1415 int neg = 0;
1416 if (cur == NULL)
1417 goto return1;
1418 if ((cur[0] == 'N') && (cur[1] == 'a') && (cur[2] == 'N')) {
1419 cur += 3;
1420 if (*cur != 0)
1421 goto return1;
1422 if (val != NULL) {
1423 if (type == xmlSchemaTypeFloatDef) {
1424 v = xmlSchemaNewValue(XML_SCHEMAS_FLOAT);
1425 if (v != NULL) {
1426 v->value.f = (float) xmlXPathNAN;
1427 } else {
1428 xmlSchemaFreeValue(v);
1429 goto error;
1430 }
1431 } else {
1432 v = xmlSchemaNewValue(XML_SCHEMAS_DOUBLE);
1433 if (v != NULL) {
1434 v->value.d = xmlXPathNAN;
1435 } else {
1436 xmlSchemaFreeValue(v);
1437 goto error;
1438 }
1439 }
1440 *val = v;
1441 }
1442 goto return0;
1443 }
1444 if (*cur == '-') {
1445 neg = 1;
1446 cur++;
1447 }
1448 if ((cur[0] == 'I') && (cur[1] == 'N') && (cur[2] == 'F')) {
1449 cur += 3;
1450 if (*cur != 0)
1451 goto return1;
1452 if (val != NULL) {
1453 if (type == xmlSchemaTypeFloatDef) {
1454 v = xmlSchemaNewValue(XML_SCHEMAS_FLOAT);
1455 if (v != NULL) {
1456 if (neg)
1457 v->value.f = (float) xmlXPathNINF;
1458 else
1459 v->value.f = (float) xmlXPathPINF;
1460 } else {
1461 xmlSchemaFreeValue(v);
1462 goto error;
1463 }
1464 } else {
1465 v = xmlSchemaNewValue(XML_SCHEMAS_DOUBLE);
1466 if (v != NULL) {
1467 if (neg)
1468 v->value.d = xmlXPathNINF;
1469 else
1470 v->value.d = xmlXPathPINF;
1471 } else {
1472 xmlSchemaFreeValue(v);
1473 goto error;
1474 }
1475 }
1476 *val = v;
1477 }
1478 goto return0;
1479 }
1480 if ((neg == 0) && (*cur == '+'))
1481 cur++;
1482 if ((cur[0] == 0) || (cur[0] == '+') || (cur[0] == '-'))
1483 goto return1;
1484 while ((*cur >= '0') && (*cur <= '9')) {
1485 cur++;
1486 }
1487 if (*cur == '.') {
1488 cur++;
1489 while ((*cur >= '0') && (*cur <= '9'))
1490 cur++;
1491 }
1492 if ((*cur == 'e') || (*cur == 'E')) {
1493 cur++;
1494 if ((*cur == '-') || (*cur == '+'))
1495 cur++;
1496 while ((*cur >= '0') && (*cur <= '9'))
1497 cur++;
1498 }
1499 if (*cur != 0)
1500 goto return1;
1501 if (val != NULL) {
1502 if (type == xmlSchemaTypeFloatDef) {
1503 v = xmlSchemaNewValue(XML_SCHEMAS_FLOAT);
1504 if (v != NULL) {
1505 if (sscanf((const char *)value, "%f", &(v->value.f))==1) {
1506 *val = v;
1507 } else {
1508 xmlGenericError(xmlGenericErrorContext,
1509 "failed to scanf float %s\n", value);
1510 xmlSchemaFreeValue(v);
1511 goto return1;
1512 }
1513 } else {
1514 goto error;
1515 }
1516 } else {
1517 v = xmlSchemaNewValue(XML_SCHEMAS_DOUBLE);
1518 if (v != NULL) {
1519 if (sscanf((const char *)value, "%lf", &(v->value.d))==1) {
1520 *val = v;
1521 } else {
1522 xmlGenericError(xmlGenericErrorContext,
1523 "failed to scanf double %s\n", value);
1524 xmlSchemaFreeValue(v);
1525 goto return1;
1526 }
1527 } else {
1528 goto error;
1529 }
1530 }
1531 }
1532 goto return0;
1533 }
1534 case XML_SCHEMAS_BOOLEAN: {
1535 const xmlChar *cur = value;
1536
1537 if ((cur[0] == '0') && (cur[1] == 0))
1538 ret = 0;
1539 else if ((cur[0] == '1') && (cur[1] == 0))
1540 ret = 1;
1541 else if ((cur[0] == 't') && (cur[1] == 'r') && (cur[2] == 'u') &&
1542 (cur[3] == 'e') && (cur[4] == 0))
1543 ret = 1;
1544 else if ((cur[0] == 'f') && (cur[1] == 'a') && (cur[2] == 'l') &&
1545 (cur[3] == 's') && (cur[4] == 'e') && (cur[5] == 0))
1546 ret = 0;
1547 else
1548 goto return1;
1549 if (val != NULL) {
1550 v = xmlSchemaNewValue(XML_SCHEMAS_BOOLEAN);
1551 if (v != NULL) {
1552 v->value.b = ret;
1553 *val = v;
1554 } else {
1555 goto error;
1556 }
1557 }
1558 goto return0;
1559 }
1560 case XML_SCHEMAS_TOKEN: {
1561 const xmlChar *cur = value;
1562
1563 if (IS_BLANK(*cur))
1564 goto return1;
1565
1566 while (*cur != 0) {
1567 if ((*cur == 0xd) || (*cur == 0xa) || (*cur == 0x9)) {
1568 goto return1;
1569 } else if (*cur == ' ') {
1570 cur++;
1571 if (*cur == 0)
1572 goto return1;
1573 if (*cur == ' ')
1574 goto return1;
1575 } else {
1576 cur++;
1577 }
1578 }
1579 if (val != NULL) {
1580 v = xmlSchemaNewValue(XML_SCHEMAS_TOKEN);
1581 if (v != NULL) {
1582 v->value.str = xmlStrdup(value);
1583 *val = v;
1584 } else {
1585 goto error;
1586 }
1587 }
1588 goto return0;
1589 }
1590 case XML_SCHEMAS_LANGUAGE:
1591 if (xmlCheckLanguageID(value) == 1) {
1592 if (val != NULL) {
1593 v = xmlSchemaNewValue(XML_SCHEMAS_LANGUAGE);
1594 if (v != NULL) {
1595 v->value.str = xmlStrdup(value);
1596 *val = v;
1597 } else {
1598 goto error;
1599 }
1600 }
1601 goto return0;
1602 }
1603 goto return1;
1604 case XML_SCHEMAS_NMTOKEN:
1605 if (xmlValidateNMToken(value, 1) == 0) {
1606 if (val != NULL) {
1607 v = xmlSchemaNewValue(XML_SCHEMAS_NMTOKEN);
1608 if (v != NULL) {
1609 v->value.str = xmlStrdup(value);
1610 *val = v;
1611 } else {
1612 goto error;
1613 }
1614 }
1615 goto return0;
1616 }
1617 goto return1;
1618 case XML_SCHEMAS_NMTOKENS:
1619 ret = xmlSchemaValAtomicListNode(xmlSchemaTypeNmtokenDef,
1620 value, val, node);
1621 if (ret > 0)
1622 ret = 0;
1623 else
1624 ret = 1;
1625 goto done;
1626 case XML_SCHEMAS_NAME:
1627 ret = xmlValidateName(value, 1);
1628 if ((ret == 0) && (val != NULL)) {
1629 TODO;
1630 }
1631 goto done;
Daniel Veillarde637c4a2003-03-30 21:10:09 +00001632 case XML_SCHEMAS_QNAME: {
1633 xmlChar *uri = NULL;
1634 xmlChar *local = NULL;
1635
Daniel Veillardb6c7f412003-03-29 16:41:55 +00001636 ret = xmlValidateQName(value, 1);
Daniel Veillarde637c4a2003-03-30 21:10:09 +00001637 if ((ret == 0) && (node != NULL)) {
1638 xmlChar *prefix;
1639 local = xmlSplitQName2(value, &prefix);
1640 if (prefix != NULL) {
1641 xmlNsPtr ns;
1642
1643 ns = xmlSearchNs(node->doc, node, prefix);
1644 if (ns == NULL)
1645 ret = 1;
1646 else if (val != NULL)
1647 uri = xmlStrdup(ns->href);
1648 }
1649 if ((local != NULL) && ((val == NULL) || (ret != 0)))
1650 xmlFree(local);
1651 if (prefix != NULL)
1652 xmlFree(prefix);
1653 }
Daniel Veillardb6c7f412003-03-29 16:41:55 +00001654 if ((ret == 0) && (val != NULL)) {
Daniel Veillarde637c4a2003-03-30 21:10:09 +00001655 v = xmlSchemaNewValue(XML_SCHEMAS_QNAME);
1656 if (v != NULL) {
1657 if (local != NULL)
1658 v->value.qname.name = local;
1659 else
1660 v->value.qname.name = xmlStrdup(value);
1661 if (uri != NULL)
1662 v->value.qname.uri = uri;
1663
1664 *val = v;
1665 } else {
1666 if (local != NULL)
1667 xmlFree(local);
1668 if (uri != NULL)
1669 xmlFree(uri);
1670 goto error;
1671 }
Daniel Veillardb6c7f412003-03-29 16:41:55 +00001672 }
1673 goto done;
Daniel Veillarde637c4a2003-03-30 21:10:09 +00001674 }
Daniel Veillardb6c7f412003-03-29 16:41:55 +00001675 case XML_SCHEMAS_NCNAME:
1676 ret = xmlValidateNCName(value, 1);
1677 if ((ret == 0) && (val != NULL)) {
1678 v = xmlSchemaNewValue(XML_SCHEMAS_NCNAME);
1679 if (v != NULL) {
1680 v->value.str = xmlStrdup(value);
1681 *val = v;
1682 } else {
1683 goto error;
1684 }
1685 }
1686 goto done;
1687 case XML_SCHEMAS_ID:
1688 ret = xmlValidateNCName(value, 1);
1689 if ((ret == 0) && (val != NULL)) {
1690 TODO;
1691 }
1692 if ((ret == 0) && (node != NULL) &&
1693 (node->type == XML_ATTRIBUTE_NODE)) {
1694 xmlAttrPtr attr = (xmlAttrPtr) node;
1695 /*
1696 * NOTE: the IDness might have already be declared in the DTD
1697 */
1698 if (attr->atype != XML_ATTRIBUTE_ID) {
1699 xmlIDPtr res;
1700 xmlChar *strip;
1701
1702 strip = xmlSchemaStrip(value);
1703 if (strip != NULL) {
1704 res = xmlAddID(NULL, node->doc, strip, attr);
1705 xmlFree(strip);
1706 } else
1707 res = xmlAddID(NULL, node->doc, value, attr);
1708 if (res == NULL) {
1709 ret = 2;
1710 } else {
1711 attr->atype = XML_ATTRIBUTE_ID;
1712 }
1713 }
1714 }
1715 goto done;
1716 case XML_SCHEMAS_IDREF:
1717 ret = xmlValidateNCName(value, 1);
1718 if ((ret == 0) && (val != NULL)) {
1719 TODO;
1720 }
1721 if ((ret == 0) && (node != NULL) &&
1722 (node->type == XML_ATTRIBUTE_NODE)) {
1723 xmlAttrPtr attr = (xmlAttrPtr) node;
1724 xmlChar *strip;
1725
1726 strip = xmlSchemaStrip(value);
1727 if (strip != NULL) {
1728 xmlAddRef(NULL, node->doc, strip, attr);
1729 xmlFree(strip);
1730 } else
1731 xmlAddRef(NULL, node->doc, value, attr);
1732 attr->atype = XML_ATTRIBUTE_IDREF;
1733 }
1734 goto done;
1735 case XML_SCHEMAS_IDREFS:
1736 ret = xmlSchemaValAtomicListNode(xmlSchemaTypeIdrefDef,
1737 value, val, node);
1738 if (ret < 0)
1739 ret = 2;
1740 else
1741 ret = 0;
1742 if ((ret == 0) && (node != NULL) &&
1743 (node->type == XML_ATTRIBUTE_NODE)) {
1744 xmlAttrPtr attr = (xmlAttrPtr) node;
1745
1746 attr->atype = XML_ATTRIBUTE_IDREFS;
1747 }
1748 goto done;
1749 case XML_SCHEMAS_ENTITY: {
1750 xmlChar *strip;
1751 ret = xmlValidateNCName(value, 1);
1752 if ((node == NULL) || (node->doc == NULL))
1753 ret = 3;
1754 if (ret == 0) {
1755 xmlEntityPtr ent;
1756
1757 strip = xmlSchemaStrip(value);
1758 if (strip != NULL) {
1759 ent = xmlGetDocEntity(node->doc, strip);
1760 xmlFree(strip);
1761 } else {
1762 ent = xmlGetDocEntity(node->doc, value);
1763 }
1764 if ((ent == NULL) ||
1765 (ent->etype != XML_EXTERNAL_GENERAL_UNPARSED_ENTITY))
1766 ret = 4;
1767 }
1768 if ((ret == 0) && (val != NULL)) {
1769 TODO;
1770 }
1771 if ((ret == 0) && (node != NULL) &&
1772 (node->type == XML_ATTRIBUTE_NODE)) {
1773 xmlAttrPtr attr = (xmlAttrPtr) node;
1774
1775 attr->atype = XML_ATTRIBUTE_ENTITY;
1776 }
1777 goto done;
1778 }
1779 case XML_SCHEMAS_ENTITIES:
1780 if ((node == NULL) || (node->doc == NULL))
1781 goto return3;
1782 ret = xmlSchemaValAtomicListNode(xmlSchemaTypeEntityDef,
1783 value, val, node);
1784 if (ret <= 0)
1785 ret = 1;
1786 else
1787 ret = 0;
1788 if ((ret == 0) && (node != NULL) &&
1789 (node->type == XML_ATTRIBUTE_NODE)) {
1790 xmlAttrPtr attr = (xmlAttrPtr) node;
1791
1792 attr->atype = XML_ATTRIBUTE_ENTITIES;
1793 }
1794 goto done;
Daniel Veillarde637c4a2003-03-30 21:10:09 +00001795 case XML_SCHEMAS_NOTATION: {
1796 xmlChar *uri = NULL;
1797 xmlChar *local = NULL;
1798
1799 ret = xmlValidateQName(value, 1);
1800 if ((ret == 0) && (node != NULL)) {
1801 xmlChar *prefix;
1802 local = xmlSplitQName2(value, &prefix);
1803 if (prefix != NULL) {
1804 xmlNsPtr ns;
1805
1806 ns = xmlSearchNs(node->doc, node, prefix);
1807 if (ns == NULL)
1808 ret = 1;
1809 else if (val != NULL)
1810 uri = xmlStrdup(ns->href);
1811 }
1812 if ((local != NULL) && ((val == NULL) || (ret != 0)))
1813 xmlFree(local);
1814 if (prefix != NULL)
1815 xmlFree(prefix);
1816 }
1817 if ((node == NULL) || (node->doc == NULL))
1818 ret = 3;
1819 if (ret == 0) {
1820 ret = xmlValidateNotationUse(NULL, node->doc, value);
1821 if (ret == 1)
1822 ret = 0;
1823 else
1824 ret = 1;
1825 }
1826 if ((ret == 0) && (val != NULL)) {
1827 v = xmlSchemaNewValue(XML_SCHEMAS_NOTATION);
1828 if (v != NULL) {
1829 if (local != NULL)
1830 v->value.qname.name = local;
1831 else
1832 v->value.qname.name = xmlStrdup(value);
1833 if (uri != NULL)
1834 v->value.qname.uri = uri;
1835
1836 *val = v;
1837 } else {
1838 if (local != NULL)
1839 xmlFree(local);
1840 if (uri != NULL)
1841 xmlFree(uri);
1842 goto error;
1843 }
1844 }
1845 goto done;
1846 }
Daniel Veillardb6c7f412003-03-29 16:41:55 +00001847 case XML_SCHEMAS_ANYURI: {
1848 xmlURIPtr uri;
1849
1850 uri = xmlParseURI((const char *) value);
1851 if (uri == NULL)
1852 goto return1;
1853 if (val != NULL) {
1854 TODO;
1855 }
1856 xmlFreeURI(uri);
1857 goto return0;
1858 }
Daniel Veillarde637c4a2003-03-30 21:10:09 +00001859 case XML_SCHEMAS_INTEGER:
1860 case XML_SCHEMAS_PINTEGER:
1861 case XML_SCHEMAS_NPINTEGER:
Daniel Veillardb6c7f412003-03-29 16:41:55 +00001862 case XML_SCHEMAS_NINTEGER:
Daniel Veillardb6c7f412003-03-29 16:41:55 +00001863 case XML_SCHEMAS_NNINTEGER: {
1864 const xmlChar *cur = value;
Daniel Veillarde637c4a2003-03-30 21:10:09 +00001865 unsigned long lo, mi, hi;
Daniel Veillardb6c7f412003-03-29 16:41:55 +00001866 int sign = 0;
1867 if (cur == NULL)
1868 goto return1;
1869 if (*cur == '-') {
1870 sign = 1;
1871 cur++;
Daniel Veillarde637c4a2003-03-30 21:10:09 +00001872 } else if (*cur == '+')
Daniel Veillardb6c7f412003-03-29 16:41:55 +00001873 cur++;
Daniel Veillarde637c4a2003-03-30 21:10:09 +00001874 ret = xmlSchemaParseUInt(&cur, &lo, &mi, &hi);
1875 if (ret == 0)
1876 goto return1;
Daniel Veillardb6c7f412003-03-29 16:41:55 +00001877 if (*cur != 0)
1878 goto return1;
Daniel Veillarde637c4a2003-03-30 21:10:09 +00001879 if (type->flags == XML_SCHEMAS_NPINTEGER) {
1880 if ((sign == 0) &&
1881 ((hi != 0) || (mi != 0) || (lo != 0)))
1882 goto return1;
1883 } else if (type->flags == XML_SCHEMAS_PINTEGER) {
1884 if (sign == 1)
1885 goto return1;
1886 if ((hi == 0) && (mi == 0) && (lo == 0))
1887 goto return1;
1888 } else if (type->flags == XML_SCHEMAS_NINTEGER) {
1889 if (sign == 0)
1890 goto return1;
1891 if ((hi == 0) && (mi == 0) && (lo == 0))
1892 goto return1;
1893 } else if (type->flags == XML_SCHEMAS_NNINTEGER) {
1894 if ((sign == 1) &&
1895 ((hi != 0) || (mi != 0) || (lo != 0)))
1896 goto return1;
1897 }
1898 /*
1899 * We can store a value only if no overflow occured
1900 */
1901 if ((ret > 0) && (val != NULL)) {
1902 v = xmlSchemaNewValue(type->flags);
Daniel Veillardb6c7f412003-03-29 16:41:55 +00001903 if (v != NULL) {
Daniel Veillarde637c4a2003-03-30 21:10:09 +00001904 v->value.decimal.lo = lo;
1905 v->value.decimal.mi = lo;
1906 v->value.decimal.hi = lo;
1907 v->value.decimal.sign = sign;
Daniel Veillardb6c7f412003-03-29 16:41:55 +00001908 v->value.decimal.frac = 0;
Daniel Veillarde637c4a2003-03-30 21:10:09 +00001909 v->value.decimal.total = cur - value;
Daniel Veillardb6c7f412003-03-29 16:41:55 +00001910 *val = v;
1911 }
1912 }
1913 goto return0;
1914 }
Daniel Veillarde637c4a2003-03-30 21:10:09 +00001915 case XML_SCHEMAS_LONG:
1916 case XML_SCHEMAS_BYTE:
1917 case XML_SCHEMAS_SHORT:
Daniel Veillardb6c7f412003-03-29 16:41:55 +00001918 case XML_SCHEMAS_INT: {
1919 const xmlChar *cur = value;
Daniel Veillarde637c4a2003-03-30 21:10:09 +00001920 unsigned long lo, mi, hi;
Daniel Veillardb6c7f412003-03-29 16:41:55 +00001921 int total = 0;
1922 int sign = 0;
1923 if (cur == NULL)
1924 goto return1;
1925 if (*cur == '-') {
1926 sign = 1;
1927 cur++;
1928 } else if (*cur == '+')
1929 cur++;
Daniel Veillarde637c4a2003-03-30 21:10:09 +00001930 ret = xmlSchemaParseUInt(&cur, &lo, &mi, &hi);
1931 if (ret <= 0)
1932 goto return1;
Daniel Veillardb6c7f412003-03-29 16:41:55 +00001933 if (*cur != 0)
1934 goto return1;
Daniel Veillarde637c4a2003-03-30 21:10:09 +00001935 if (type->flags == XML_SCHEMAS_LONG) {
1936 if (hi >= 922) {
1937 if (hi > 922)
1938 goto return1;
1939 if (mi >= 33720368) {
1940 if (mi > 33720368)
1941 goto return1;
1942 if ((sign == 0) && (lo > 54775807))
1943 goto return1;
1944 if ((sign == 1) && (lo > 54775808))
1945 goto return1;
1946 }
1947 }
1948 } else if (type->flags == XML_SCHEMAS_INT) {
1949 if (hi != 0)
1950 goto return1;
1951 if (mi >= 21) {
1952 if (mi > 21)
1953 goto return1;
1954 if ((sign == 0) && (lo > 47483647))
1955 goto return1;
1956 if ((sign == 1) && (lo > 47483648))
1957 goto return1;
1958 }
1959 } else if (type->flags == XML_SCHEMAS_SHORT) {
1960 if ((mi != 0) || (hi != 0))
1961 goto return1;
1962 if ((sign == 1) && (lo > 32768))
1963 goto return1;
1964 if ((sign == 0) && (lo > 32767))
1965 goto return1;
1966 } else if (type->flags == XML_SCHEMAS_BYTE) {
1967 if ((mi != 0) || (hi != 0))
1968 goto return1;
1969 if ((sign == 1) && (lo > 128))
1970 goto return1;
1971 if ((sign == 0) && (lo > 127))
1972 goto return1;
1973 }
Daniel Veillardb6c7f412003-03-29 16:41:55 +00001974 if (val != NULL) {
Daniel Veillarde637c4a2003-03-30 21:10:09 +00001975 v = xmlSchemaNewValue(type->flags);
Daniel Veillardb6c7f412003-03-29 16:41:55 +00001976 if (v != NULL) {
Daniel Veillarde637c4a2003-03-30 21:10:09 +00001977 v->value.decimal.lo = lo;
1978 v->value.decimal.mi = lo;
1979 v->value.decimal.hi = lo;
Daniel Veillardb6c7f412003-03-29 16:41:55 +00001980 v->value.decimal.sign = sign;
1981 v->value.decimal.frac = 0;
1982 v->value.decimal.total = total;
1983 *val = v;
1984 }
1985 }
1986 goto return0;
1987 }
1988 case XML_SCHEMAS_UINT:
Daniel Veillardb6c7f412003-03-29 16:41:55 +00001989 case XML_SCHEMAS_ULONG:
Daniel Veillardb6c7f412003-03-29 16:41:55 +00001990 case XML_SCHEMAS_USHORT:
Daniel Veillarde637c4a2003-03-30 21:10:09 +00001991 case XML_SCHEMAS_UBYTE: {
1992 const xmlChar *cur = value;
1993 unsigned long lo, mi, hi;
1994 int total = 0;
1995 if (cur == NULL)
1996 goto return1;
1997 ret = xmlSchemaParseUInt(&cur, &lo, &mi, &hi);
1998 if (ret <= 0)
1999 goto return1;
2000 if (*cur != 0)
2001 goto return1;
2002 if (type->flags == XML_SCHEMAS_ULONG) {
2003 if (hi >= 1844) {
2004 if (hi > 1844)
2005 goto return1;
2006 if (mi >= 67440737) {
2007 if (mi > 67440737)
2008 goto return1;
2009 if (lo > 9551615)
2010 goto return1;
2011 }
2012 }
2013 } else if (type->flags == XML_SCHEMAS_UINT) {
2014 if (hi != 0)
2015 goto return1;
2016 if (mi >= 42) {
2017 if (mi > 42)
2018 goto return1;
2019 if (lo > 94967295)
2020 goto return1;
2021 }
2022 } else if (type->flags == XML_SCHEMAS_USHORT) {
2023 if ((mi != 0) || (hi != 0))
2024 goto return1;
2025 if (lo > 65535)
2026 goto return1;
2027 } else if (type->flags == XML_SCHEMAS_UBYTE) {
2028 if ((mi != 0) || (hi != 0))
2029 goto return1;
2030 if (lo > 255)
2031 goto return1;
2032 }
2033 if (val != NULL) {
2034 v = xmlSchemaNewValue(type->flags);
2035 if (v != NULL) {
2036 v->value.decimal.lo = lo;
2037 v->value.decimal.mi = mi;
2038 v->value.decimal.hi = hi;
2039 v->value.decimal.sign = 0;
2040 v->value.decimal.frac = 0;
2041 v->value.decimal.total = total;
2042 *val = v;
2043 }
2044 }
2045 goto return0;
2046 }
Daniel Veillardb6c7f412003-03-29 16:41:55 +00002047 }
2048
2049done:
2050 if (norm != NULL) xmlFree(norm);
2051 return(ret);
2052return3:
2053 if (norm != NULL) xmlFree(norm);
2054 return(3);
2055return1:
2056 if (norm != NULL) xmlFree(norm);
2057 return(1);
2058return0:
2059 if (norm != NULL) xmlFree(norm);
2060 return(0);
2061error:
2062 if (norm != NULL) xmlFree(norm);
2063 return(-1);
2064}
2065
2066/**
Daniel Veillardc3da18a2003-03-18 00:31:04 +00002067 * xmlSchemaValPredefTypeNode:
Daniel Veillard4255d502002-04-16 15:50:10 +00002068 * @type: the predefined type
2069 * @value: the value to check
2070 * @val: the return computed value
Daniel Veillardc3da18a2003-03-18 00:31:04 +00002071 * @node: the node containing the value
Daniel Veillard4255d502002-04-16 15:50:10 +00002072 *
2073 * Check that a value conforms to the lexical space of the predefined type.
2074 * if true a value is computed and returned in @val.
2075 *
2076 * Returns 0 if this validates, a positive error code number otherwise
2077 * and -1 in case of internal or API error.
2078 */
2079int
Daniel Veillardc3da18a2003-03-18 00:31:04 +00002080xmlSchemaValPredefTypeNode(xmlSchemaTypePtr type, const xmlChar *value,
2081 xmlSchemaValPtr *val, xmlNodePtr node) {
Daniel Veillardb6c7f412003-03-29 16:41:55 +00002082 return(xmlSchemaValAtomicType(type, value, val, node, 0));
Daniel Veillard4255d502002-04-16 15:50:10 +00002083}
2084
2085/**
Daniel Veillardc3da18a2003-03-18 00:31:04 +00002086 * xmlSchemaValidatePredefinedType:
2087 * @type: the predefined type
2088 * @value: the value to check
2089 * @val: the return computed value
2090 *
2091 * Check that a value conforms to the lexical space of the predefined type.
2092 * if true a value is computed and returned in @val.
2093 *
2094 * Returns 0 if this validates, a positive error code number otherwise
2095 * and -1 in case of internal or API error.
2096 */
2097int
2098xmlSchemaValidatePredefinedType(xmlSchemaTypePtr type, const xmlChar *value,
2099 xmlSchemaValPtr *val) {
2100 return(xmlSchemaValPredefTypeNode(type, value, val, NULL));
2101}
2102
2103/**
Daniel Veillard4255d502002-04-16 15:50:10 +00002104 * xmlSchemaCompareDecimals:
2105 * @x: a first decimal value
2106 * @y: a second decimal value
2107 *
2108 * Compare 2 decimals
2109 *
2110 * Returns -1 if x < y, 0 if x == y, 1 if x > y and -2 in case of error
2111 */
2112static int
2113xmlSchemaCompareDecimals(xmlSchemaValPtr x, xmlSchemaValPtr y)
2114{
2115 xmlSchemaValPtr swp;
Daniel Veillarde637c4a2003-03-30 21:10:09 +00002116 int order = 1, p;
Daniel Veillard4255d502002-04-16 15:50:10 +00002117 unsigned long tmp;
2118
Daniel Veillarde637c4a2003-03-30 21:10:09 +00002119 if ((x->value.decimal.sign) &&
2120 ((x->value.decimal.lo != 0) ||
2121 (x->value.decimal.mi != 0) ||
2122 (x->value.decimal.hi != 0))) {
2123 if ((y->value.decimal.sign) &&
2124 ((y->value.decimal.lo != 0) ||
2125 (y->value.decimal.mi != 0) ||
2126 (y->value.decimal.hi != 0)))
Daniel Veillard80b19092003-03-28 13:29:53 +00002127 order = -1;
2128 else
2129 return (-1);
Daniel Veillarde637c4a2003-03-30 21:10:09 +00002130 } else if ((y->value.decimal.sign) &&
2131 ((y->value.decimal.lo != 0) ||
2132 (y->value.decimal.mi != 0) ||
2133 (y->value.decimal.hi != 0))) {
Daniel Veillard4255d502002-04-16 15:50:10 +00002134 return (1);
Daniel Veillard80b19092003-03-28 13:29:53 +00002135 }
Daniel Veillard4255d502002-04-16 15:50:10 +00002136 if (x->value.decimal.frac == y->value.decimal.frac) {
Daniel Veillarde637c4a2003-03-30 21:10:09 +00002137 if (x->value.decimal.hi < y->value.decimal.hi)
2138 return (-order);
2139 if (x->value.decimal.hi < y->value.decimal.hi)
2140 return (order);
2141 if (x->value.decimal.mi < y->value.decimal.mi)
2142 return (-order);
2143 if (x->value.decimal.mi < y->value.decimal.mi)
2144 return (order);
2145 if (x->value.decimal.lo < y->value.decimal.lo)
Daniel Veillard80b19092003-03-28 13:29:53 +00002146 return (-order);
Daniel Veillarde637c4a2003-03-30 21:10:09 +00002147 if (x->value.decimal.lo > y->value.decimal.lo)
Daniel Veillard80b19092003-03-28 13:29:53 +00002148 return(order);
2149 return(0);
Daniel Veillard4255d502002-04-16 15:50:10 +00002150 }
2151 if (y->value.decimal.frac > x->value.decimal.frac) {
2152 swp = y;
2153 y = x;
2154 x = swp;
2155 order = -order;
2156 }
Daniel Veillarde637c4a2003-03-30 21:10:09 +00002157 p = powten[x->value.decimal.frac - y->value.decimal.frac];
2158 tmp = x->value.decimal.lo / p;
2159 if (tmp > y->value.decimal.lo)
Daniel Veillard4255d502002-04-16 15:50:10 +00002160 return (order);
Daniel Veillarde637c4a2003-03-30 21:10:09 +00002161 if (tmp < y->value.decimal.lo)
Daniel Veillard4255d502002-04-16 15:50:10 +00002162 return (-order);
Daniel Veillarde637c4a2003-03-30 21:10:09 +00002163 tmp = y->value.decimal.lo * p;
2164 if (x->value.decimal.lo < tmp)
Daniel Veillard4255d502002-04-16 15:50:10 +00002165 return (-order);
Daniel Veillarde637c4a2003-03-30 21:10:09 +00002166 if (x->value.decimal.lo == tmp)
Daniel Veillard4255d502002-04-16 15:50:10 +00002167 return (0);
2168 return (order);
2169}
2170
2171/**
Daniel Veillard070803b2002-05-03 07:29:38 +00002172 * xmlSchemaCompareDurations:
2173 * @x: a first duration value
2174 * @y: a second duration value
2175 *
2176 * Compare 2 durations
2177 *
2178 * Returns -1 if x < y, 0 if x == y, 1 if x > y, 2 if x <> y, and -2 in
2179 * case of error
2180 */
2181static int
2182xmlSchemaCompareDurations(xmlSchemaValPtr x, xmlSchemaValPtr y)
2183{
2184 long carry, mon, day;
2185 double sec;
Daniel Veillard80b19092003-03-28 13:29:53 +00002186 int invert = 1;
2187 long xmon, xday, myear, minday, maxday;
Daniel Veillard070803b2002-05-03 07:29:38 +00002188 static const long dayRange [2][12] = {
2189 { 0, 28, 59, 89, 120, 150, 181, 212, 242, 273, 303, 334, },
2190 { 0, 31, 62, 92, 123, 153, 184, 215, 245, 276, 306, 337} };
2191
2192 if ((x == NULL) || (y == NULL))
Daniel Veillard5a872412002-05-22 06:40:27 +00002193 return -2;
Daniel Veillard070803b2002-05-03 07:29:38 +00002194
2195 /* months */
2196 mon = x->value.dur.mon - y->value.dur.mon;
2197
2198 /* seconds */
2199 sec = x->value.dur.sec - y->value.dur.sec;
2200 carry = (long)sec / SECS_PER_DAY;
2201 sec -= (double)(carry * SECS_PER_DAY);
2202
2203 /* days */
2204 day = x->value.dur.day - y->value.dur.day + carry;
2205
2206 /* easy test */
2207 if (mon == 0) {
2208 if (day == 0)
2209 if (sec == 0.0)
2210 return 0;
2211 else if (sec < 0.0)
2212 return -1;
2213 else
2214 return 1;
2215 else if (day < 0)
2216 return -1;
2217 else
2218 return 1;
2219 }
2220
2221 if (mon > 0) {
2222 if ((day >= 0) && (sec >= 0.0))
2223 return 1;
2224 else {
2225 xmon = mon;
2226 xday = -day;
2227 }
2228 } else if ((day <= 0) && (sec <= 0.0)) {
2229 return -1;
2230 } else {
Daniel Veillard80b19092003-03-28 13:29:53 +00002231 invert = -1;
Daniel Veillard070803b2002-05-03 07:29:38 +00002232 xmon = -mon;
2233 xday = day;
2234 }
2235
2236 myear = xmon / 12;
Daniel Veillard80b19092003-03-28 13:29:53 +00002237 if (myear == 0) {
2238 minday = 0;
2239 maxday = 0;
2240 } else {
2241 maxday = 366 * ((myear + 3) / 4) +
2242 365 * ((myear - 1) % 4);
2243 minday = maxday - 1;
2244 }
2245
Daniel Veillard070803b2002-05-03 07:29:38 +00002246 xmon = xmon % 12;
2247 minday += dayRange[0][xmon];
2248 maxday += dayRange[1][xmon];
2249
Daniel Veillard80b19092003-03-28 13:29:53 +00002250 if ((maxday == minday) && (maxday == xday))
2251 return(0); /* can this really happen ? */
Daniel Veillard070803b2002-05-03 07:29:38 +00002252 if (maxday < xday)
Daniel Veillard80b19092003-03-28 13:29:53 +00002253 return(-invert);
2254 if (minday > xday)
2255 return(invert);
Daniel Veillard070803b2002-05-03 07:29:38 +00002256
2257 /* indeterminate */
Daniel Veillard5a872412002-05-22 06:40:27 +00002258 return 2;
2259}
2260
2261/*
2262 * macros for adding date/times and durations
2263 */
2264#define FQUOTIENT(a,b) (floor(((double)a/(double)b)))
2265#define MODULO(a,b) (a - FQUOTIENT(a,b) * b)
2266#define FQUOTIENT_RANGE(a,low,high) (FQUOTIENT((a-low),(high-low)))
2267#define MODULO_RANGE(a,low,high) ((MODULO((a-low),(high-low)))+low)
2268
2269/**
2270 * _xmlSchemaDateAdd:
2271 * @dt: an #xmlSchemaValPtr
2272 * @dur: an #xmlSchemaValPtr of type #XS_DURATION
2273 *
2274 * Compute a new date/time from @dt and @dur. This function assumes @dt
2275 * is either #XML_SCHEMAS_DATETIME, #XML_SCHEMAS_DATE, #XML_SCHEMAS_GYEARMONTH,
2276 * or #XML_SCHEMAS_GYEAR.
2277 *
2278 * Returns date/time pointer or NULL.
2279 */
2280static xmlSchemaValPtr
2281_xmlSchemaDateAdd (xmlSchemaValPtr dt, xmlSchemaValPtr dur)
2282{
2283 xmlSchemaValPtr ret;
2284 long carry, tempdays, temp;
2285 xmlSchemaValDatePtr r, d;
2286 xmlSchemaValDurationPtr u;
2287
2288 if ((dt == NULL) || (dur == NULL))
2289 return NULL;
2290
2291 ret = xmlSchemaNewValue(dt->type);
2292 if (ret == NULL)
2293 return NULL;
2294
2295 r = &(ret->value.date);
2296 d = &(dt->value.date);
2297 u = &(dur->value.dur);
2298
2299 /* normalization */
2300 if (d->mon == 0)
2301 d->mon = 1;
2302
2303 /* normalize for time zone offset */
2304 u->sec -= (d->tzo * 60);
2305 d->tzo = 0;
2306
2307 /* normalization */
2308 if (d->day == 0)
2309 d->day = 1;
2310
2311 /* month */
2312 carry = d->mon + u->mon;
2313 r->mon = MODULO_RANGE(carry, 1, 13);
2314 carry = FQUOTIENT_RANGE(carry, 1, 13);
2315
2316 /* year (may be modified later) */
2317 r->year = d->year + carry;
2318 if (r->year == 0) {
2319 if (d->year > 0)
2320 r->year--;
2321 else
2322 r->year++;
2323 }
2324
2325 /* time zone */
2326 r->tzo = d->tzo;
2327 r->tz_flag = d->tz_flag;
2328
2329 /* seconds */
2330 r->sec = d->sec + u->sec;
2331 carry = FQUOTIENT((long)r->sec, 60);
2332 if (r->sec != 0.0) {
2333 r->sec = MODULO(r->sec, 60.0);
2334 }
2335
2336 /* minute */
2337 carry += d->min;
2338 r->min = MODULO(carry, 60);
2339 carry = FQUOTIENT(carry, 60);
2340
2341 /* hours */
2342 carry += d->hour;
2343 r->hour = MODULO(carry, 24);
2344 carry = FQUOTIENT(carry, 24);
2345
2346 /*
2347 * days
2348 * Note we use tempdays because the temporary values may need more
2349 * than 5 bits
2350 */
2351 if ((VALID_YEAR(r->year)) && (VALID_MONTH(r->mon)) &&
2352 (d->day > MAX_DAYINMONTH(r->year, r->mon)))
2353 tempdays = MAX_DAYINMONTH(r->year, r->mon);
2354 else if (d->day < 1)
2355 tempdays = 1;
2356 else
2357 tempdays = d->day;
2358
2359 tempdays += u->day + carry;
2360
2361 while (1) {
2362 if (tempdays < 1) {
2363 long tmon = MODULO_RANGE(r->mon-1, 1, 13);
2364 long tyr = r->year + FQUOTIENT_RANGE(r->mon-1, 1, 13);
2365 if (tyr == 0)
2366 tyr--;
2367 tempdays += MAX_DAYINMONTH(tyr, tmon);
2368 carry = -1;
2369 } else if (tempdays > MAX_DAYINMONTH(r->year, r->mon)) {
2370 tempdays = tempdays - MAX_DAYINMONTH(r->year, r->mon);
2371 carry = 1;
2372 } else
2373 break;
2374
2375 temp = r->mon + carry;
2376 r->mon = MODULO_RANGE(temp, 1, 13);
2377 r->year = r->year + FQUOTIENT_RANGE(temp, 1, 13);
2378 if (r->year == 0) {
2379 if (temp < 1)
2380 r->year--;
2381 else
2382 r->year++;
2383 }
2384 }
2385
2386 r->day = tempdays;
2387
2388 /*
2389 * adjust the date/time type to the date values
2390 */
2391 if (ret->type != XML_SCHEMAS_DATETIME) {
2392 if ((r->hour) || (r->min) || (r->sec))
2393 ret->type = XML_SCHEMAS_DATETIME;
2394 else if (ret->type != XML_SCHEMAS_DATE) {
2395 if ((r->mon != 1) && (r->day != 1))
2396 ret->type = XML_SCHEMAS_DATE;
2397 else if ((ret->type != XML_SCHEMAS_GYEARMONTH) && (r->mon != 1))
2398 ret->type = XML_SCHEMAS_GYEARMONTH;
2399 }
2400 }
2401
2402 return ret;
2403}
2404
2405/**
2406 * xmlSchemaDupVal:
2407 * @v: value to duplicate
2408 *
2409 * returns a duplicated value.
2410 */
2411static xmlSchemaValPtr
2412xmlSchemaDupVal (xmlSchemaValPtr v)
2413{
2414 xmlSchemaValPtr ret = xmlSchemaNewValue(v->type);
2415 if (ret == NULL)
2416 return ret;
2417
2418 memcpy(ret, v, sizeof(xmlSchemaVal));
2419 return ret;
2420}
2421
2422/**
2423 * xmlSchemaDateNormalize:
2424 * @dt: an #xmlSchemaValPtr
2425 *
2426 * Normalize @dt to GMT time.
2427 *
2428 */
2429static xmlSchemaValPtr
2430xmlSchemaDateNormalize (xmlSchemaValPtr dt, double offset)
2431{
2432 xmlSchemaValPtr dur, ret;
2433
2434 if (dt == NULL)
2435 return NULL;
2436
2437 if (((dt->type != XML_SCHEMAS_TIME) &&
2438 (dt->type != XML_SCHEMAS_DATETIME)) || (dt->value.date.tzo == 0))
2439 return xmlSchemaDupVal(dt);
2440
2441 dur = xmlSchemaNewValue(XML_SCHEMAS_DURATION);
2442 if (dur == NULL)
2443 return NULL;
2444
2445 dur->value.date.sec -= offset;
2446
2447 ret = _xmlSchemaDateAdd(dt, dur);
2448 if (ret == NULL)
2449 return NULL;
2450
2451 xmlSchemaFreeValue(dur);
2452
2453 /* ret->value.date.tzo = 0; */
2454 return ret;
2455}
2456
2457/**
2458 * _xmlSchemaDateCastYMToDays:
2459 * @dt: an #xmlSchemaValPtr
2460 *
2461 * Convert mon and year of @dt to total number of days. Take the
2462 * number of years since (or before) 1 AD and add the number of leap
2463 * years. This is a function because negative
2464 * years must be handled a little differently and there is no zero year.
2465 *
2466 * Returns number of days.
2467 */
2468static long
2469_xmlSchemaDateCastYMToDays (const xmlSchemaValPtr dt)
2470{
2471 long ret;
2472
2473 if (dt->value.date.year < 0)
2474 ret = (dt->value.date.year * 365) +
2475 (((dt->value.date.year+1)/4)-((dt->value.date.year+1)/100)+
2476 ((dt->value.date.year+1)/400)) +
2477 DAY_IN_YEAR(0, dt->value.date.mon, dt->value.date.year);
2478 else
2479 ret = ((dt->value.date.year-1) * 365) +
2480 (((dt->value.date.year-1)/4)-((dt->value.date.year-1)/100)+
2481 ((dt->value.date.year-1)/400)) +
2482 DAY_IN_YEAR(0, dt->value.date.mon, dt->value.date.year);
2483
2484 return ret;
2485}
2486
2487/**
2488 * TIME_TO_NUMBER:
2489 * @dt: an #xmlSchemaValPtr
2490 *
2491 * Calculates the number of seconds in the time portion of @dt.
2492 *
2493 * Returns seconds.
2494 */
2495#define TIME_TO_NUMBER(dt) \
2496 ((double)((dt->value.date.hour * SECS_PER_HOUR) + \
2497 (dt->value.date.min * SECS_PER_MIN)) + dt->value.date.sec)
2498
2499/**
2500 * xmlSchemaCompareDates:
2501 * @x: a first date/time value
2502 * @y: a second date/time value
2503 *
2504 * Compare 2 date/times
2505 *
2506 * Returns -1 if x < y, 0 if x == y, 1 if x > y, 2 if x <> y, and -2 in
2507 * case of error
2508 */
2509static int
2510xmlSchemaCompareDates (xmlSchemaValPtr x, xmlSchemaValPtr y)
2511{
2512 unsigned char xmask, ymask, xor_mask, and_mask;
2513 xmlSchemaValPtr p1, p2, q1, q2;
2514 long p1d, p2d, q1d, q2d;
2515
2516 if ((x == NULL) || (y == NULL))
2517 return -2;
2518
2519 if (x->value.date.tz_flag) {
2520
2521 if (!y->value.date.tz_flag) {
2522 p1 = xmlSchemaDateNormalize(x, 0);
2523 p1d = _xmlSchemaDateCastYMToDays(p1) + p1->value.date.day;
2524 /* normalize y + 14:00 */
2525 q1 = xmlSchemaDateNormalize(y, (14 * SECS_PER_HOUR));
2526
2527 q1d = _xmlSchemaDateCastYMToDays(q1) + q1->value.date.day;
Daniel Veillardfdc91562002-07-01 21:52:03 +00002528 if (p1d < q1d) {
2529 xmlSchemaFreeValue(p1);
2530 xmlSchemaFreeValue(q1);
Daniel Veillard5a872412002-05-22 06:40:27 +00002531 return -1;
Daniel Veillardfdc91562002-07-01 21:52:03 +00002532 } else if (p1d == q1d) {
Daniel Veillard5a872412002-05-22 06:40:27 +00002533 double sec;
2534
2535 sec = TIME_TO_NUMBER(p1) - TIME_TO_NUMBER(q1);
Daniel Veillardfdc91562002-07-01 21:52:03 +00002536 if (sec < 0.0) {
2537 xmlSchemaFreeValue(p1);
2538 xmlSchemaFreeValue(q1);
Daniel Veillard5a872412002-05-22 06:40:27 +00002539 return -1;
Daniel Veillardfdc91562002-07-01 21:52:03 +00002540 } else {
Daniel Veillard5a872412002-05-22 06:40:27 +00002541 /* normalize y - 14:00 */
2542 q2 = xmlSchemaDateNormalize(y, -(14 * SECS_PER_HOUR));
2543 q2d = _xmlSchemaDateCastYMToDays(q2) + q2->value.date.day;
Daniel Veillardfdc91562002-07-01 21:52:03 +00002544 xmlSchemaFreeValue(p1);
2545 xmlSchemaFreeValue(q1);
2546 xmlSchemaFreeValue(q2);
Daniel Veillard5a872412002-05-22 06:40:27 +00002547 if (p1d > q2d)
2548 return 1;
2549 else if (p1d == q2d) {
2550 sec = TIME_TO_NUMBER(p1) - TIME_TO_NUMBER(q2);
2551 if (sec > 0.0)
2552 return 1;
2553 else
2554 return 2; /* indeterminate */
2555 }
2556 }
Daniel Veillardfdc91562002-07-01 21:52:03 +00002557 } else {
2558 xmlSchemaFreeValue(p1);
2559 xmlSchemaFreeValue(q1);
2560 }
Daniel Veillard5a872412002-05-22 06:40:27 +00002561 }
2562 } else if (y->value.date.tz_flag) {
2563 q1 = xmlSchemaDateNormalize(y, 0);
2564 q1d = _xmlSchemaDateCastYMToDays(q1) + q1->value.date.day;
2565
2566 /* normalize x - 14:00 */
2567 p1 = xmlSchemaDateNormalize(x, -(14 * SECS_PER_HOUR));
2568 p1d = _xmlSchemaDateCastYMToDays(p1) + p1->value.date.day;
2569
Daniel Veillardfdc91562002-07-01 21:52:03 +00002570 if (p1d < q1d) {
2571 xmlSchemaFreeValue(p1);
2572 xmlSchemaFreeValue(q1);
Daniel Veillard5a872412002-05-22 06:40:27 +00002573 return -1;
Daniel Veillardfdc91562002-07-01 21:52:03 +00002574 } else if (p1d == q1d) {
Daniel Veillard5a872412002-05-22 06:40:27 +00002575 double sec;
2576
2577 sec = TIME_TO_NUMBER(p1) - TIME_TO_NUMBER(q1);
Daniel Veillardfdc91562002-07-01 21:52:03 +00002578 if (sec < 0.0) {
2579 xmlSchemaFreeValue(p1);
2580 xmlSchemaFreeValue(q1);
Daniel Veillard5a872412002-05-22 06:40:27 +00002581 return -1;
Daniel Veillardfdc91562002-07-01 21:52:03 +00002582 } else {
Daniel Veillard5a872412002-05-22 06:40:27 +00002583 /* normalize x + 14:00 */
2584 p2 = xmlSchemaDateNormalize(x, (14 * SECS_PER_HOUR));
2585 p2d = _xmlSchemaDateCastYMToDays(p2) + p2->value.date.day;
2586
Daniel Veillard6560a422003-03-27 21:25:38 +00002587 if (p2d > q1d) {
2588 xmlSchemaFreeValue(p1);
2589 xmlSchemaFreeValue(q1);
2590 xmlSchemaFreeValue(p2);
Daniel Veillard5a872412002-05-22 06:40:27 +00002591 return 1;
Daniel Veillard6560a422003-03-27 21:25:38 +00002592 } else if (p2d == q1d) {
Daniel Veillard5a872412002-05-22 06:40:27 +00002593 sec = TIME_TO_NUMBER(p2) - TIME_TO_NUMBER(q1);
Daniel Veillard6560a422003-03-27 21:25:38 +00002594 xmlSchemaFreeValue(p1);
2595 xmlSchemaFreeValue(q1);
2596 xmlSchemaFreeValue(p2);
Daniel Veillard5a872412002-05-22 06:40:27 +00002597 if (sec > 0.0)
2598 return 1;
2599 else
2600 return 2; /* indeterminate */
2601 }
Daniel Veillard6560a422003-03-27 21:25:38 +00002602 xmlSchemaFreeValue(p1);
2603 xmlSchemaFreeValue(q1);
2604 xmlSchemaFreeValue(p2);
Daniel Veillard5a872412002-05-22 06:40:27 +00002605 }
Daniel Veillardfdc91562002-07-01 21:52:03 +00002606 } else {
2607 xmlSchemaFreeValue(p1);
2608 xmlSchemaFreeValue(q1);
Daniel Veillard5a872412002-05-22 06:40:27 +00002609 }
2610 }
2611
2612 /*
2613 * if the same type then calculate the difference
2614 */
2615 if (x->type == y->type) {
2616 q1 = xmlSchemaDateNormalize(y, 0);
2617 q1d = _xmlSchemaDateCastYMToDays(q1) + q1->value.date.day;
2618
2619 p1 = xmlSchemaDateNormalize(x, 0);
2620 p1d = _xmlSchemaDateCastYMToDays(p1) + p1->value.date.day;
2621
Daniel Veillardfdc91562002-07-01 21:52:03 +00002622 if (p1d < q1d) {
2623 xmlSchemaFreeValue(p1);
2624 xmlSchemaFreeValue(q1);
Daniel Veillard5a872412002-05-22 06:40:27 +00002625 return -1;
Daniel Veillardfdc91562002-07-01 21:52:03 +00002626 } else if (p1d > q1d) {
2627 xmlSchemaFreeValue(p1);
2628 xmlSchemaFreeValue(q1);
Daniel Veillard5a872412002-05-22 06:40:27 +00002629 return 1;
Daniel Veillardfdc91562002-07-01 21:52:03 +00002630 } else {
Daniel Veillard5a872412002-05-22 06:40:27 +00002631 double sec;
2632
2633 sec = TIME_TO_NUMBER(p1) - TIME_TO_NUMBER(q1);
Daniel Veillardfdc91562002-07-01 21:52:03 +00002634 xmlSchemaFreeValue(p1);
2635 xmlSchemaFreeValue(q1);
Daniel Veillard5a872412002-05-22 06:40:27 +00002636 if (sec < 0.0)
2637 return -1;
2638 else if (sec > 0.0)
2639 return 1;
2640
2641 }
2642 return 0;
2643 }
2644
2645 switch (x->type) {
2646 case XML_SCHEMAS_DATETIME:
2647 xmask = 0xf;
2648 break;
2649 case XML_SCHEMAS_DATE:
2650 xmask = 0x7;
2651 break;
2652 case XML_SCHEMAS_GYEAR:
2653 xmask = 0x1;
2654 break;
2655 case XML_SCHEMAS_GMONTH:
2656 xmask = 0x2;
2657 break;
2658 case XML_SCHEMAS_GDAY:
2659 xmask = 0x3;
2660 break;
2661 case XML_SCHEMAS_GYEARMONTH:
2662 xmask = 0x3;
2663 break;
2664 case XML_SCHEMAS_GMONTHDAY:
2665 xmask = 0x6;
2666 break;
2667 case XML_SCHEMAS_TIME:
2668 xmask = 0x8;
2669 break;
2670 default:
2671 xmask = 0;
2672 break;
2673 }
2674
2675 switch (y->type) {
2676 case XML_SCHEMAS_DATETIME:
2677 ymask = 0xf;
2678 break;
2679 case XML_SCHEMAS_DATE:
2680 ymask = 0x7;
2681 break;
2682 case XML_SCHEMAS_GYEAR:
2683 ymask = 0x1;
2684 break;
2685 case XML_SCHEMAS_GMONTH:
2686 ymask = 0x2;
2687 break;
2688 case XML_SCHEMAS_GDAY:
2689 ymask = 0x3;
2690 break;
2691 case XML_SCHEMAS_GYEARMONTH:
2692 ymask = 0x3;
2693 break;
2694 case XML_SCHEMAS_GMONTHDAY:
2695 ymask = 0x6;
2696 break;
2697 case XML_SCHEMAS_TIME:
2698 ymask = 0x8;
2699 break;
2700 default:
2701 ymask = 0;
2702 break;
2703 }
2704
2705 xor_mask = xmask ^ ymask; /* mark type differences */
2706 and_mask = xmask & ymask; /* mark field specification */
2707
2708 /* year */
2709 if (xor_mask & 1)
2710 return 2; /* indeterminate */
2711 else if (and_mask & 1) {
2712 if (x->value.date.year < y->value.date.year)
2713 return -1;
2714 else if (x->value.date.year > y->value.date.year)
2715 return 1;
2716 }
2717
2718 /* month */
2719 if (xor_mask & 2)
2720 return 2; /* indeterminate */
2721 else if (and_mask & 2) {
2722 if (x->value.date.mon < y->value.date.mon)
2723 return -1;
2724 else if (x->value.date.mon > y->value.date.mon)
2725 return 1;
2726 }
2727
2728 /* day */
2729 if (xor_mask & 4)
2730 return 2; /* indeterminate */
2731 else if (and_mask & 4) {
2732 if (x->value.date.day < y->value.date.day)
2733 return -1;
2734 else if (x->value.date.day > y->value.date.day)
2735 return 1;
2736 }
2737
2738 /* time */
2739 if (xor_mask & 8)
2740 return 2; /* indeterminate */
2741 else if (and_mask & 8) {
2742 if (x->value.date.hour < y->value.date.hour)
2743 return -1;
2744 else if (x->value.date.hour > y->value.date.hour)
2745 return 1;
2746 else if (x->value.date.min < y->value.date.min)
2747 return -1;
2748 else if (x->value.date.min > y->value.date.min)
2749 return 1;
2750 else if (x->value.date.sec < y->value.date.sec)
2751 return -1;
2752 else if (x->value.date.sec > y->value.date.sec)
2753 return 1;
2754 }
2755
Daniel Veillard070803b2002-05-03 07:29:38 +00002756 return 0;
2757}
2758
2759/**
Daniel Veillardc4c21552003-03-29 10:53:38 +00002760 * xmlSchemaCompareNormStrings:
2761 * @x: a first string value
2762 * @y: a second string value
2763 *
2764 * Compare 2 string for their normalized values.
2765 *
2766 * Returns -1 if x < y, 0 if x == y, 1 if x > y, and -2 in
2767 * case of error
2768 */
2769static int
2770xmlSchemaCompareNormStrings(xmlSchemaValPtr x, xmlSchemaValPtr y) {
2771 const xmlChar *utf1;
2772 const xmlChar *utf2;
2773 int tmp;
2774
2775 if ((x == NULL) || (y == NULL))
2776 return(-2);
2777 utf1 = x->value.str;
2778 utf2 = y->value.str;
2779
2780 while (IS_BLANK(*utf1)) utf1++;
2781 while (IS_BLANK(*utf2)) utf2++;
2782 while ((*utf1 != 0) && (*utf2 != 0)) {
2783 if (IS_BLANK(*utf1)) {
2784 if (!IS_BLANK(*utf2)) {
2785 tmp = *utf1 - *utf2;
2786 return(tmp);
2787 }
2788 while (IS_BLANK(*utf1)) utf1++;
2789 while (IS_BLANK(*utf2)) utf2++;
2790 } else {
2791 tmp = *utf1++ - *utf2++;
2792 if (tmp < 0)
2793 return(-1);
2794 if (tmp > 0)
2795 return(1);
2796 }
2797 }
2798 if (*utf1 != 0) {
2799 while (IS_BLANK(*utf1)) utf1++;
2800 if (*utf1 != 0)
2801 return(1);
2802 }
2803 if (*utf2 != 0) {
2804 while (IS_BLANK(*utf2)) utf2++;
2805 if (*utf2 != 0)
2806 return(-1);
2807 }
2808 return(0);
2809}
2810
2811/**
Daniel Veillardb6c7f412003-03-29 16:41:55 +00002812 * xmlSchemaCompareFloats:
2813 * @x: a first float or double value
2814 * @y: a second float or double value
2815 *
2816 * Compare 2 values
2817 *
2818 * Returns -1 if x < y, 0 if x == y, 1 if x > y, 2 if x <> y, and -2 in
2819 * case of error
2820 */
2821static int
2822xmlSchemaCompareFloats(xmlSchemaValPtr x, xmlSchemaValPtr y) {
2823 double d1, d2;
2824
2825 if ((x == NULL) || (y == NULL))
2826 return(-2);
2827
2828 /*
2829 * Cast everything to doubles.
2830 */
2831 if (x->type == XML_SCHEMAS_DOUBLE)
2832 d1 = x->value.d;
2833 else if (x->type == XML_SCHEMAS_FLOAT)
2834 d1 = x->value.f;
2835 else
2836 return(-2);
2837
2838 if (y->type == XML_SCHEMAS_DOUBLE)
2839 d2 = y->value.d;
2840 else if (y->type == XML_SCHEMAS_FLOAT)
2841 d2 = y->value.f;
2842 else
2843 return(-2);
2844
2845 /*
2846 * Check for special cases.
2847 */
2848 if (xmlXPathIsNaN(d1)) {
2849 if (xmlXPathIsNaN(d2))
2850 return(0);
2851 return(1);
2852 }
2853 if (xmlXPathIsNaN(d2))
2854 return(-1);
2855 if (d1 == xmlXPathPINF) {
2856 if (d2 == xmlXPathPINF)
2857 return(0);
2858 return(1);
2859 }
2860 if (d2 == xmlXPathPINF)
2861 return(-1);
2862 if (d1 == xmlXPathNINF) {
2863 if (d2 == xmlXPathNINF)
2864 return(0);
2865 return(-1);
2866 }
2867 if (d2 == xmlXPathNINF)
2868 return(1);
2869
2870 /*
2871 * basic tests, the last one we should have equality, but
2872 * portability is more important than speed and handling
2873 * NaN or Inf in a portable way is always a challenge, so ...
2874 */
2875 if (d1 < d2)
2876 return(-1);
2877 if (d1 > d2)
2878 return(1);
2879 if (d1 == d2)
2880 return(0);
2881 return(2);
2882}
2883
2884/**
Daniel Veillard4255d502002-04-16 15:50:10 +00002885 * xmlSchemaCompareValues:
2886 * @x: a first value
2887 * @y: a second value
2888 *
2889 * Compare 2 values
2890 *
Daniel Veillard5a872412002-05-22 06:40:27 +00002891 * Returns -1 if x < y, 0 if x == y, 1 if x > y, 2 if x <> y, and -2 in
2892 * case of error
Daniel Veillard4255d502002-04-16 15:50:10 +00002893 */
Daniel Veillard80b19092003-03-28 13:29:53 +00002894int
Daniel Veillard4255d502002-04-16 15:50:10 +00002895xmlSchemaCompareValues(xmlSchemaValPtr x, xmlSchemaValPtr y) {
2896 if ((x == NULL) || (y == NULL))
2897 return(-2);
2898
2899 switch (x->type) {
Daniel Veillard80b19092003-03-28 13:29:53 +00002900 case XML_SCHEMAS_UNKNOWN:
2901 return(-2);
2902 case XML_SCHEMAS_INTEGER:
2903 case XML_SCHEMAS_NPINTEGER:
2904 case XML_SCHEMAS_NINTEGER:
2905 case XML_SCHEMAS_NNINTEGER:
2906 case XML_SCHEMAS_PINTEGER:
2907 case XML_SCHEMAS_INT:
2908 case XML_SCHEMAS_UINT:
2909 case XML_SCHEMAS_LONG:
2910 case XML_SCHEMAS_ULONG:
2911 case XML_SCHEMAS_SHORT:
2912 case XML_SCHEMAS_USHORT:
2913 case XML_SCHEMAS_BYTE:
2914 case XML_SCHEMAS_UBYTE:
Daniel Veillard4255d502002-04-16 15:50:10 +00002915 case XML_SCHEMAS_DECIMAL:
Daniel Veillard80b19092003-03-28 13:29:53 +00002916 if (y->type == x->type)
2917 return(xmlSchemaCompareDecimals(x, y));
2918 if ((y->type == XML_SCHEMAS_DECIMAL) ||
2919 (y->type == XML_SCHEMAS_INTEGER) ||
2920 (y->type == XML_SCHEMAS_NPINTEGER) ||
2921 (y->type == XML_SCHEMAS_NINTEGER) ||
2922 (y->type == XML_SCHEMAS_NNINTEGER) ||
2923 (y->type == XML_SCHEMAS_PINTEGER) ||
2924 (y->type == XML_SCHEMAS_INT) ||
2925 (y->type == XML_SCHEMAS_UINT) ||
2926 (y->type == XML_SCHEMAS_LONG) ||
2927 (y->type == XML_SCHEMAS_ULONG) ||
2928 (y->type == XML_SCHEMAS_SHORT) ||
2929 (y->type == XML_SCHEMAS_USHORT) ||
2930 (y->type == XML_SCHEMAS_BYTE) ||
2931 (y->type == XML_SCHEMAS_UBYTE))
Daniel Veillard4255d502002-04-16 15:50:10 +00002932 return(xmlSchemaCompareDecimals(x, y));
Daniel Veillard5a872412002-05-22 06:40:27 +00002933 return(-2);
Daniel Veillard070803b2002-05-03 07:29:38 +00002934 case XML_SCHEMAS_DURATION:
2935 if (y->type == XML_SCHEMAS_DURATION)
2936 return(xmlSchemaCompareDurations(x, y));
Daniel Veillard5a872412002-05-22 06:40:27 +00002937 return(-2);
2938 case XML_SCHEMAS_TIME:
2939 case XML_SCHEMAS_GDAY:
2940 case XML_SCHEMAS_GMONTH:
2941 case XML_SCHEMAS_GMONTHDAY:
2942 case XML_SCHEMAS_GYEAR:
2943 case XML_SCHEMAS_GYEARMONTH:
2944 case XML_SCHEMAS_DATE:
2945 case XML_SCHEMAS_DATETIME:
2946 if ((y->type == XML_SCHEMAS_DATETIME) ||
2947 (y->type == XML_SCHEMAS_TIME) ||
2948 (y->type == XML_SCHEMAS_GDAY) ||
2949 (y->type == XML_SCHEMAS_GMONTH) ||
2950 (y->type == XML_SCHEMAS_GMONTHDAY) ||
2951 (y->type == XML_SCHEMAS_GYEAR) ||
2952 (y->type == XML_SCHEMAS_DATE) ||
2953 (y->type == XML_SCHEMAS_GYEARMONTH))
2954 return (xmlSchemaCompareDates(x, y));
Daniel Veillard5a872412002-05-22 06:40:27 +00002955 return (-2);
Daniel Veillard80b19092003-03-28 13:29:53 +00002956 case XML_SCHEMAS_NORMSTRING:
Daniel Veillard80b19092003-03-28 13:29:53 +00002957 case XML_SCHEMAS_TOKEN:
2958 case XML_SCHEMAS_LANGUAGE:
2959 case XML_SCHEMAS_NMTOKEN:
Daniel Veillard80b19092003-03-28 13:29:53 +00002960 case XML_SCHEMAS_NAME:
Daniel Veillard80b19092003-03-28 13:29:53 +00002961 case XML_SCHEMAS_NCNAME:
2962 case XML_SCHEMAS_ID:
2963 case XML_SCHEMAS_IDREF:
Daniel Veillard80b19092003-03-28 13:29:53 +00002964 case XML_SCHEMAS_ENTITY:
Daniel Veillard80b19092003-03-28 13:29:53 +00002965 case XML_SCHEMAS_NOTATION:
2966 case XML_SCHEMAS_ANYURI:
Daniel Veillardc4c21552003-03-29 10:53:38 +00002967 if ((y->type == XML_SCHEMAS_NORMSTRING) ||
2968 (y->type == XML_SCHEMAS_TOKEN) ||
2969 (y->type == XML_SCHEMAS_LANGUAGE) ||
2970 (y->type == XML_SCHEMAS_NMTOKEN) ||
2971 (y->type == XML_SCHEMAS_NAME) ||
2972 (y->type == XML_SCHEMAS_QNAME) ||
2973 (y->type == XML_SCHEMAS_NCNAME) ||
2974 (y->type == XML_SCHEMAS_ID) ||
2975 (y->type == XML_SCHEMAS_IDREF) ||
2976 (y->type == XML_SCHEMAS_ENTITY) ||
2977 (y->type == XML_SCHEMAS_NOTATION) ||
2978 (y->type == XML_SCHEMAS_ANYURI))
2979 return (xmlSchemaCompareNormStrings(x, y));
2980 return (-2);
Daniel Veillarde637c4a2003-03-30 21:10:09 +00002981 case XML_SCHEMAS_QNAME:
2982 if (y->type == XML_SCHEMAS_QNAME) {
2983 if ((xmlStrEqual(x->value.qname.name, y->value.qname.name)) &&
2984 (xmlStrEqual(x->value.qname.uri, y->value.qname.uri)))
2985 return(0);
2986 return(2);
2987 }
2988 return (-2);
Daniel Veillardc4c21552003-03-29 10:53:38 +00002989 case XML_SCHEMAS_FLOAT:
2990 case XML_SCHEMAS_DOUBLE:
Daniel Veillardb6c7f412003-03-29 16:41:55 +00002991 if ((y->type == XML_SCHEMAS_FLOAT) ||
2992 (y->type == XML_SCHEMAS_DOUBLE))
2993 return (xmlSchemaCompareFloats(x, y));
2994 return (-2);
Daniel Veillard4255d502002-04-16 15:50:10 +00002995 TODO
Daniel Veillardc4c21552003-03-29 10:53:38 +00002996 break;
2997 case XML_SCHEMAS_BOOLEAN:
Daniel Veillardb6c7f412003-03-29 16:41:55 +00002998 if (y->type == XML_SCHEMAS_BOOLEAN) {
2999 if (x->value.b == y->value.b)
3000 return(0);
3001 if (x->value.b == 0)
3002 return(-1);
3003 return(1);
3004 }
3005 return (-2);
Daniel Veillardc4c21552003-03-29 10:53:38 +00003006 case XML_SCHEMAS_STRING:
3007 case XML_SCHEMAS_IDREFS:
3008 case XML_SCHEMAS_ENTITIES:
3009 case XML_SCHEMAS_NMTOKENS:
3010 TODO
3011 break;
Daniel Veillard4255d502002-04-16 15:50:10 +00003012 }
Daniel Veillard5a872412002-05-22 06:40:27 +00003013 return -2;
Daniel Veillard4255d502002-04-16 15:50:10 +00003014}
3015
3016/**
Daniel Veillardc4c21552003-03-29 10:53:38 +00003017 * xmlSchemaNormLen:
3018 * @value: a string
3019 *
3020 * Computes the UTF8 length of the normalized value of the string
3021 *
3022 * Returns the length or -1 in case of error.
3023 */
3024static int
3025xmlSchemaNormLen(const xmlChar *value) {
3026 const xmlChar *utf;
3027 int ret = 0;
3028
3029 if (value == NULL)
3030 return(-1);
3031 utf = value;
3032 while (IS_BLANK(*utf)) utf++;
3033 while (*utf != 0) {
3034 if (utf[0] & 0x80) {
3035 if ((utf[1] & 0xc0) != 0x80)
3036 return(-1);
3037 if ((utf[0] & 0xe0) == 0xe0) {
3038 if ((utf[2] & 0xc0) != 0x80)
3039 return(-1);
3040 if ((utf[0] & 0xf0) == 0xf0) {
3041 if ((utf[0] & 0xf8) != 0xf0 || (utf[3] & 0xc0) != 0x80)
3042 return(-1);
3043 utf += 4;
3044 } else {
3045 utf += 3;
3046 }
3047 } else {
3048 utf += 2;
3049 }
3050 } else if (IS_BLANK(*utf)) {
3051 while (IS_BLANK(*utf)) utf++;
3052 if (*utf == 0)
3053 break;
3054 } else {
3055 utf++;
3056 }
3057 ret++;
3058 }
3059 return(ret);
3060}
3061
3062/**
Daniel Veillard4255d502002-04-16 15:50:10 +00003063 * xmlSchemaValidateFacet:
Daniel Veillard01c13b52002-12-10 15:19:08 +00003064 * @base: the base type
Daniel Veillard4255d502002-04-16 15:50:10 +00003065 * @facet: the facet to check
3066 * @value: the lexical repr of the value to validate
3067 * @val: the precomputed value
3068 *
3069 * Check a value against a facet condition
3070 *
3071 * Returns 0 if the element is schemas valid, a positive error code
3072 * number otherwise and -1 in case of internal or API error.
3073 */
3074int
Daniel Veillarddda8f1b2002-09-26 09:47:36 +00003075xmlSchemaValidateFacet(xmlSchemaTypePtr base ATTRIBUTE_UNUSED,
Daniel Veillard118aed72002-09-24 14:13:13 +00003076 xmlSchemaFacetPtr facet,
Daniel Veillard4255d502002-04-16 15:50:10 +00003077 const xmlChar *value, xmlSchemaValPtr val)
3078{
3079 int ret;
3080
3081 switch (facet->type) {
3082 case XML_SCHEMA_FACET_PATTERN:
3083 ret = xmlRegexpExec(facet->regexp, value);
3084 if (ret == 1)
3085 return(0);
3086 if (ret == 0) {
Daniel Veillard8bc6cf92003-02-27 17:42:22 +00003087 /* TODO error code */
Daniel Veillard4255d502002-04-16 15:50:10 +00003088 return(1);
3089 }
3090 return(ret);
3091 case XML_SCHEMA_FACET_MAXEXCLUSIVE:
3092 ret = xmlSchemaCompareValues(val, facet->val);
3093 if (ret == -2) {
Daniel Veillard8bc6cf92003-02-27 17:42:22 +00003094 /* TODO error code */
Daniel Veillard4255d502002-04-16 15:50:10 +00003095 return(-1);
3096 }
3097 if (ret == -1)
3098 return(0);
Daniel Veillard5a872412002-05-22 06:40:27 +00003099 /* error code */
Daniel Veillard4255d502002-04-16 15:50:10 +00003100 return(1);
Daniel Veillard070803b2002-05-03 07:29:38 +00003101 case XML_SCHEMA_FACET_MAXINCLUSIVE:
3102 ret = xmlSchemaCompareValues(val, facet->val);
3103 if (ret == -2) {
Daniel Veillard8bc6cf92003-02-27 17:42:22 +00003104 /* TODO error code */
Daniel Veillard070803b2002-05-03 07:29:38 +00003105 return(-1);
3106 }
3107 if ((ret == -1) || (ret == 0))
3108 return(0);
Daniel Veillard5a872412002-05-22 06:40:27 +00003109 /* error code */
Daniel Veillard070803b2002-05-03 07:29:38 +00003110 return(1);
3111 case XML_SCHEMA_FACET_MINEXCLUSIVE:
3112 ret = xmlSchemaCompareValues(val, facet->val);
3113 if (ret == -2) {
Daniel Veillard8bc6cf92003-02-27 17:42:22 +00003114 /* TODO error code */
Daniel Veillard070803b2002-05-03 07:29:38 +00003115 return(-1);
3116 }
3117 if (ret == 1)
3118 return(0);
Daniel Veillard5a872412002-05-22 06:40:27 +00003119 /* error code */
Daniel Veillard070803b2002-05-03 07:29:38 +00003120 return(1);
3121 case XML_SCHEMA_FACET_MININCLUSIVE:
3122 ret = xmlSchemaCompareValues(val, facet->val);
3123 if (ret == -2) {
Daniel Veillard8bc6cf92003-02-27 17:42:22 +00003124 /* TODO error code */
Daniel Veillard070803b2002-05-03 07:29:38 +00003125 return(-1);
3126 }
3127 if ((ret == 1) || (ret == 0))
3128 return(0);
Daniel Veillard5a872412002-05-22 06:40:27 +00003129 /* error code */
Daniel Veillard070803b2002-05-03 07:29:38 +00003130 return(1);
Daniel Veillard8651f532002-04-17 09:06:27 +00003131 case XML_SCHEMA_FACET_WHITESPACE:
Daniel Veillard8bc6cf92003-02-27 17:42:22 +00003132 /* TODO whitespaces */
Daniel Veillard8651f532002-04-17 09:06:27 +00003133 return(0);
Daniel Veillard88c58912002-04-23 07:12:20 +00003134 case XML_SCHEMA_FACET_ENUMERATION:
3135 if ((facet->value != NULL) &&
3136 (xmlStrEqual(facet->value, value)))
3137 return(0);
3138 return(1);
Daniel Veillard8bc6cf92003-02-27 17:42:22 +00003139 case XML_SCHEMA_FACET_LENGTH:
3140 case XML_SCHEMA_FACET_MAXLENGTH:
3141 case XML_SCHEMA_FACET_MINLENGTH: {
3142 unsigned int len = 0;
3143
3144 if ((facet->val == NULL) ||
Daniel Veillarde637c4a2003-03-30 21:10:09 +00003145 ((facet->val->type != XML_SCHEMAS_DECIMAL) &&
3146 (facet->val->type != XML_SCHEMAS_NNINTEGER)) ||
Daniel Veillard8bc6cf92003-02-27 17:42:22 +00003147 (facet->val->value.decimal.frac != 0)) {
3148 return(-1);
3149 }
3150 switch (base->flags) {
Daniel Veillardc4c21552003-03-29 10:53:38 +00003151 case XML_SCHEMAS_IDREF:
Daniel Veillard8bc6cf92003-02-27 17:42:22 +00003152 case XML_SCHEMAS_NORMSTRING:
3153 case XML_SCHEMAS_TOKEN:
3154 case XML_SCHEMAS_LANGUAGE:
3155 case XML_SCHEMAS_NMTOKEN:
3156 case XML_SCHEMAS_NAME:
3157 case XML_SCHEMAS_NCNAME:
3158 case XML_SCHEMAS_ID:
Daniel Veillardc4c21552003-03-29 10:53:38 +00003159 len = xmlSchemaNormLen(value);
3160 break;
3161 case XML_SCHEMAS_STRING:
Daniel Veillard8bc6cf92003-02-27 17:42:22 +00003162 len = xmlUTF8Strlen(value);
3163 break;
Daniel Veillard8bc6cf92003-02-27 17:42:22 +00003164 default:
3165 TODO
3166 }
3167 if (facet->type == XML_SCHEMA_FACET_LENGTH) {
Daniel Veillarde637c4a2003-03-30 21:10:09 +00003168 if (len != facet->val->value.decimal.lo)
Daniel Veillard8bc6cf92003-02-27 17:42:22 +00003169 return(1);
3170 } else if (facet->type == XML_SCHEMA_FACET_MINLENGTH) {
Daniel Veillarde637c4a2003-03-30 21:10:09 +00003171 if (len < facet->val->value.decimal.lo)
Daniel Veillard8bc6cf92003-02-27 17:42:22 +00003172 return(1);
3173 } else {
Daniel Veillarde637c4a2003-03-30 21:10:09 +00003174 if (len > facet->val->value.decimal.lo)
Daniel Veillard8bc6cf92003-02-27 17:42:22 +00003175 return(1);
3176 }
3177 break;
3178 }
Daniel Veillard4255d502002-04-16 15:50:10 +00003179 default:
3180 TODO
3181 }
3182 return(0);
Daniel Veillardb6c7f412003-03-29 16:41:55 +00003183
Daniel Veillard4255d502002-04-16 15:50:10 +00003184}
3185
3186#endif /* LIBXML_SCHEMAS_ENABLED */