mirror of https://github.com/postgres/postgres
parent
adca025c9e
commit
31f4b59a46
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PGXML TODO List |
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=============== |
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|
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Some of these items still require much more thought! Since the first |
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release, the XPath support has improved (because I'm no longer using a |
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homemade algorithm!). |
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1. Performance considerations |
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At present each document is parsed to produce the DOM tree on every query. |
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|
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Pros: |
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Easy |
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No persistent memory or storage allocation for parsed trees |
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(libxml docs suggest representation of a document might |
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be 4 times the size of the text) |
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|
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Cons: |
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Slow/ CPU intensive to parse. |
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Makes it difficult for PLs to apply libxml manipulations to create |
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new documents or amend existing ones. |
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|
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2. XQuery |
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I'm not sure if the addition of XQuery would be best as a function or |
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as a new front-end parser. This is one to think about, but with a |
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decent implementation of XPath, one of the prerequisites is covered. |
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|
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3. DOM Interfaces |
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|
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Expose more aspects of the DOM to user functions/ PLs. This would |
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allow a procedure in a PL to run some queries and then use exposed |
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interfaces to libxml to create an XML document out of the query |
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results. I accept the argument that this might be more properly |
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performed on the client side. |
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4. Returning sets of documents from XPath queries. |
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|
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Although the current implementation allows you to amalgamate the |
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returned results into a single document, it's quite possible that |
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you'd like to use the returned set of nodes as a source for FROM. |
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|
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Is there a good way to optimise/index the results of certain XPath |
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operations to make them faster?: |
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|
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select docid, pgxml_xpath(document,'//site/location/text()','','') as location |
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where pgxml_xpath(document,'//site/name/text()','','') = 'Church Farm'; |
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and with multiple element occurences in a document? |
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|
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select d.docid, pgxml_xpath(d.document,'//site/location/text()','','') |
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from docstore d, |
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pgxml_xpaths('docstore','document','//feature/type/text()','docid') ft |
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where ft.key = d.docid and ft.value ='Limekiln'; |
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|
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pgxml_xpaths params are relname, attrname, xpath, returnkey. It would |
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return a set of two-element tuples (key,value) consisting of the value of |
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returnkey, and the cdata value of the xpath. The XML document would be |
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defined by relname and attrname. |
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|
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The pgxml_xpaths function could be the basis of a functional index, |
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which could speed up the above query very substantially, working |
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through the normal query planner mechanism. |
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5. Return type support. |
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Better support for returning e.g. numeric or boolean values. I need to |
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get to grips with the returned data from libxml first. |
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|
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John Gray <jgray@azuli.co.uk> 16 August 2001 |
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@ -0,0 +1,352 @@ |
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/********************************************************
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* Interface code to parse an XML document using expat |
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********************************************************/ |
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#include "postgres.h" |
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#include "fmgr.h" |
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|
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#include "expat.h" |
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#include "pgxml.h" |
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|
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/* Memory management - we make expat use standard pg MM */ |
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|
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XML_Memory_Handling_Suite mhs; |
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|
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/* passthrough functions (palloc is a macro) */ |
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|
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static void * |
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pgxml_palloc(size_t size) |
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{ |
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return palloc(size); |
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} |
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|
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static void * |
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pgxml_repalloc(void *ptr, size_t size) |
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{ |
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return repalloc(ptr, size); |
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} |
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|
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static void |
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pgxml_pfree(void *ptr) |
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{ |
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return pfree(ptr); |
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} |
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|
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static void |
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pgxml_mhs_init() |
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{ |
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mhs.malloc_fcn = pgxml_palloc; |
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mhs.realloc_fcn = pgxml_repalloc; |
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mhs.free_fcn = pgxml_pfree; |
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} |
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static void |
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pgxml_handler_init() |
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{ |
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/*
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* This code should set up the relevant handlers from user-supplied |
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* settings. Quite how these settings are made is another matter :) |
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*/ |
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} |
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|
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/* Returns true if document is well-formed */ |
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|
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PG_FUNCTION_INFO_V1(pgxml_parse); |
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Datum |
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pgxml_parse(PG_FUNCTION_ARGS) |
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{ |
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/* called as pgxml_parse(document) */ |
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XML_Parser p; |
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text *t = PG_GETARG_TEXT_P(0); /* document buffer */ |
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int32 docsize = VARSIZE(t) - VARHDRSZ; |
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pgxml_mhs_init(); |
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pgxml_handler_init(); |
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p = XML_ParserCreate_MM(NULL, &mhs, NULL); |
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if (!p) |
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{ |
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ereport(ERROR, |
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(errcode(ERRCODE_EXTERNAL_ROUTINE_EXCEPTION), |
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errmsg("could not create expat parser"))); |
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PG_RETURN_NULL(); /* seems appropriate if we couldn't parse */ |
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} |
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|
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if (!XML_Parse(p, (char *) VARDATA(t), docsize, 1)) |
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{ |
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/*
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* elog(WARNING, "Parse error at line %d:%s", |
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* XML_GetCurrentLineNumber(p), |
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* XML_ErrorString(XML_GetErrorCode(p))); |
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*/ |
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XML_ParserFree(p); |
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PG_RETURN_BOOL(false); |
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} |
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XML_ParserFree(p); |
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PG_RETURN_BOOL(true); |
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} |
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|
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/* XPath handling functions */ |
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/* XPath support here is for a very skeletal kind of XPath!
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It was easy to program though... */ |
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/* This first is the core function that builds a result set. The
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actual functions called by the user manipulate that result set |
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in various ways. |
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*/ |
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static XPath_Results * |
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build_xpath_results(text *doc, text *pathstr) |
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{ |
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XPath_Results *xpr; |
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char *res; |
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pgxml_udata *udata; |
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XML_Parser p; |
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int32 docsize; |
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xpr = (XPath_Results *) palloc((sizeof(XPath_Results))); |
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memset((void *) xpr, 0, sizeof(XPath_Results)); |
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xpr->rescount = 0; |
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docsize = VARSIZE(doc) - VARHDRSZ; |
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/* res isn't going to be the real return type, it is just a buffer */ |
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res = (char *) palloc(docsize); |
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memset((void *) res, 0, docsize); |
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xpr->resbuf = res; |
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udata = (pgxml_udata *) palloc((sizeof(pgxml_udata))); |
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memset((void *) udata, 0, sizeof(pgxml_udata)); |
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udata->currentpath[0] = '\0'; |
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udata->textgrab = 0; |
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udata->path = (char *) palloc(VARSIZE(pathstr)); |
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memcpy(udata->path, VARDATA(pathstr), VARSIZE(pathstr) - VARHDRSZ); |
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udata->path[VARSIZE(pathstr) - VARHDRSZ] = '\0'; |
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udata->resptr = res; |
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udata->reslen = 0; |
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udata->xpres = xpr; |
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/* Now fire up the parser */ |
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pgxml_mhs_init(); |
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p = XML_ParserCreate_MM(NULL, &mhs, NULL); |
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if (!p) |
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{ |
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ereport(ERROR, |
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(errcode(ERRCODE_EXTERNAL_ROUTINE_EXCEPTION), |
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errmsg("could not create expat parser"))); |
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pfree(xpr); |
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pfree(udata->path); |
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pfree(udata); |
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pfree(res); |
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return NULL; |
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} |
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XML_SetUserData(p, (void *) udata); |
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/* Set the handlers */ |
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XML_SetElementHandler(p, pgxml_starthandler, pgxml_endhandler); |
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XML_SetCharacterDataHandler(p, pgxml_charhandler); |
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if (!XML_Parse(p, (char *) VARDATA(doc), docsize, 1)) |
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{ |
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/*
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* elog(WARNING, "Parse error at line %d:%s", |
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* XML_GetCurrentLineNumber(p), |
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* XML_ErrorString(XML_GetErrorCode(p))); |
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*/ |
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XML_ParserFree(p); |
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pfree(xpr); |
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pfree(udata->path); |
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pfree(udata); |
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return NULL; |
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} |
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pfree(udata->path); |
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pfree(udata); |
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XML_ParserFree(p); |
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return xpr; |
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} |
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PG_FUNCTION_INFO_V1(pgxml_xpath); |
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Datum |
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pgxml_xpath(PG_FUNCTION_ARGS) |
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{ |
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/* called as pgxml_xpath(document,pathstr, index) for the moment */ |
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XPath_Results *xpresults; |
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text *restext; |
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text *t = PG_GETARG_TEXT_P(0); /* document buffer */ |
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text *t2 = PG_GETARG_TEXT_P(1); |
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int32 ind = PG_GETARG_INT32(2) - 1; |
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xpresults = build_xpath_results(t, t2); |
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/*
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* This needs to be changed depending on the mechanism for returning |
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* our set of results. |
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*/ |
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if (xpresults == NULL) /* parse error (not WF or parser failure) */ |
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PG_RETURN_NULL(); |
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if (ind >= (xpresults->rescount)) |
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PG_RETURN_NULL(); |
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restext = (text *) palloc(xpresults->reslens[ind] + VARHDRSZ); |
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memcpy(VARDATA(restext), xpresults->results[ind], xpresults->reslens[ind]); |
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VARATT_SIZEP(restext) = xpresults->reslens[ind] + VARHDRSZ; |
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pfree(xpresults->resbuf); |
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pfree(xpresults); |
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PG_RETURN_TEXT_P(restext); |
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} |
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static void |
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pgxml_pathcompare(void *userData) |
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{ |
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char *matchpos; |
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matchpos = strstr(UD->currentpath, UD->path); |
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if (matchpos == NULL) |
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{ /* Should we have more logic here ? */ |
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if (UD->textgrab) |
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{ |
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UD->textgrab = 0; |
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pgxml_finalisegrabbedtext(userData); |
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} |
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return; |
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} |
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/*
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* OK, we have a match of some sort. Now we need to check that our |
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* match is anchored to the *end* of the string AND that it is |
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* immediately preceded by a '/' |
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*/ |
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/*
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* This test wouldn't work if strlen (UD->path) overran the length of |
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* the currentpath, but that's not possible because we got a match! |
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*/ |
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if ((matchpos + strlen(UD->path))[0] == '\0') |
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{ |
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if ((UD->path)[0] == '/') |
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{ |
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if (matchpos == UD->currentpath) |
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UD->textgrab = 1; |
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} |
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else |
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{ |
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if ((matchpos - 1)[0] == '/') |
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UD->textgrab = 1; |
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} |
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} |
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} |
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static void |
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pgxml_starthandler(void *userData, const XML_Char * name, |
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const XML_Char ** atts) |
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{ |
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char sepstr[] = "/"; |
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if ((strlen(name) + strlen(UD->currentpath)) > MAXPATHLENGTH - 2) |
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elog(WARNING, "path too long"); |
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else |
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{ |
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strncat(UD->currentpath, sepstr, 1); |
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strcat(UD->currentpath, name); |
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} |
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if (UD->textgrab) |
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{ |
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/*
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* Depending on user preference, should we "reconstitute" the |
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* element into the result text? |
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*/ |
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} |
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else |
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pgxml_pathcompare(userData); |
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} |
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static void |
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pgxml_endhandler(void *userData, const XML_Char * name) |
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{ |
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/*
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* Start by removing the current element off the end of the |
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* currentpath |
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*/ |
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char *sepptr; |
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sepptr = strrchr(UD->currentpath, '/'); |
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if (sepptr == NULL) |
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{ |
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/* internal error */ |
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elog(ERROR, "did not find '/'"); |
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sepptr = UD->currentpath; |
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} |
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if (strcmp(name, sepptr + 1) != 0) |
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{ |
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elog(WARNING, "wanted [%s], got [%s]", sepptr, name); |
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/* unmatched entry, so do nothing */ |
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} |
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else |
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{ |
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sepptr[0] = '\0'; /* Chop that element off the end */ |
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} |
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if (UD->textgrab) |
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pgxml_pathcompare(userData); |
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} |
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static void |
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pgxml_charhandler(void *userData, const XML_Char * s, int len) |
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{ |
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if (UD->textgrab) |
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{ |
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if (len > 0) |
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{ |
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memcpy(UD->resptr, s, len); |
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UD->resptr += len; |
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UD->reslen += len; |
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} |
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} |
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} |
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/* Should I be using PG list types here? */ |
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static void |
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pgxml_finalisegrabbedtext(void *userData) |
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{ |
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/* In res/reslen, we have a single result. */ |
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UD->xpres->results[UD->xpres->rescount] = UD->resptr - UD->reslen; |
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UD->xpres->reslens[UD->xpres->rescount] = UD->reslen; |
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UD->reslen = 0; |
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UD->xpres->rescount++; |
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/*
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* This effectively concatenates all the results together but we do |
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* know where one ends and the next begins |
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*/ |
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} |
@ -0,0 +1,42 @@ |
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/* Header for pg xml parser interface */ |
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static void *pgxml_palloc(size_t size); |
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static void *pgxml_repalloc(void *ptr, size_t size); |
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static void pgxml_pfree(void *ptr); |
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static void pgxml_mhs_init(); |
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static void pgxml_handler_init(); |
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Datum pgxml_parse(PG_FUNCTION_ARGS); |
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Datum pgxml_xpath(PG_FUNCTION_ARGS); |
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static void pgxml_starthandler(void *userData, const XML_Char * name, |
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const XML_Char ** atts); |
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static void pgxml_endhandler(void *userData, const XML_Char * name); |
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static void pgxml_charhandler(void *userData, const XML_Char * s, int len); |
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static void pgxml_pathcompare(void *userData); |
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static void pgxml_finalisegrabbedtext(void *userData); |
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#define MAXPATHLENGTH 512 |
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#define MAXRESULTS 100 |
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typedef struct |
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{ |
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int rescount; |
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char *results[MAXRESULTS]; |
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int32 reslens[MAXRESULTS]; |
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char *resbuf; /* pointer to the result buffer for pfree */ |
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} XPath_Results; |
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typedef struct |
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{ |
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char currentpath[MAXPATHLENGTH]; |
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char *path; |
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int textgrab; |
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char *resptr; |
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int32 reslen; |
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XPath_Results *xpres; |
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} pgxml_udata; |
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#define UD ((pgxml_udata *) userData) |
@ -0,0 +1,265 @@ |
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/* Parser interface for DOM-based parser (libxml) rather than
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stream-based SAX-type parser */ |
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#include "postgres.h" |
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#include "fmgr.h" |
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/* libxml includes */ |
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#include <libxml/xpath.h> |
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#include <libxml/tree.h> |
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#include <libxml/xmlmemory.h> |
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/* declarations */ |
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static void *pgxml_palloc(size_t size); |
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static void *pgxml_repalloc(void *ptr, size_t size); |
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static void pgxml_pfree(void *ptr); |
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static char *pgxml_pstrdup(const char *string); |
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static void pgxml_parser_init(); |
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static xmlChar *pgxmlNodeSetToText(xmlNodeSetPtr nodeset, xmlDocPtr doc, |
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xmlChar * toptagname, xmlChar * septagname, |
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int format); |
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static xmlChar *pgxml_texttoxmlchar(text *textstring); |
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Datum pgxml_parse(PG_FUNCTION_ARGS); |
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Datum pgxml_xpath(PG_FUNCTION_ARGS); |
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/* memory handling passthrough functions (e.g. palloc, pstrdup are
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currently macros, and the others might become so...) */ |
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static void * |
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pgxml_palloc(size_t size) |
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{ |
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return palloc(size); |
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} |
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static void * |
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pgxml_repalloc(void *ptr, size_t size) |
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{ |
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return repalloc(ptr, size); |
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} |
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static void |
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pgxml_pfree(void *ptr) |
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{ |
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return pfree(ptr); |
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} |
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static char * |
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pgxml_pstrdup(const char *string) |
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{ |
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return pstrdup(string); |
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} |
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static void |
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pgxml_parser_init() |
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{ |
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/*
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* This code should also set parser settings from user-supplied info. |
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* Quite how these settings are made is another matter :) |
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*/ |
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xmlMemSetup(pgxml_pfree, pgxml_palloc, pgxml_repalloc, pgxml_pstrdup); |
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xmlInitParser(); |
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} |
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/* Returns true if document is well-formed */ |
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PG_FUNCTION_INFO_V1(pgxml_parse); |
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Datum |
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pgxml_parse(PG_FUNCTION_ARGS) |
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{ |
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/* called as pgxml_parse(document) */ |
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xmlDocPtr doctree; |
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text *t = PG_GETARG_TEXT_P(0); /* document buffer */ |
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int32 docsize = VARSIZE(t) - VARHDRSZ; |
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pgxml_parser_init(); |
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doctree = xmlParseMemory((char *) VARDATA(t), docsize); |
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if (doctree == NULL) |
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{ |
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xmlCleanupParser(); |
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PG_RETURN_BOOL(false); /* i.e. not well-formed */ |
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} |
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xmlCleanupParser(); |
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xmlFreeDoc(doctree); |
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PG_RETURN_BOOL(true); |
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} |
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|
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static xmlChar |
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* |
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pgxmlNodeSetToText(xmlNodeSetPtr nodeset, |
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xmlDocPtr doc, |
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xmlChar * toptagname, |
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xmlChar * septagname, |
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int format) |
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{ |
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/* Function translates a nodeset into a text representation */ |
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|
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/*
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* iterates over each node in the set and calls xmlNodeDump to write |
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* it to an xmlBuffer -from which an xmlChar * string is returned. |
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*/ |
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/* each representation is surrounded by <tagname> ... </tagname> */ |
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/* if format==0, add a newline between nodes?? */ |
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xmlBufferPtr buf; |
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xmlChar *result; |
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int i; |
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buf = xmlBufferCreate(); |
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||||
if ((toptagname != NULL) && (xmlStrlen(toptagname) > 0)) |
||||
{ |
||||
xmlBufferWriteChar(buf, "<"); |
||||
xmlBufferWriteCHAR(buf, toptagname); |
||||
xmlBufferWriteChar(buf, ">"); |
||||
} |
||||
if (nodeset != NULL) |
||||
{ |
||||
for (i = 0; i < nodeset->nodeNr; i++) |
||||
{ |
||||
if ((septagname != NULL) && (xmlStrlen(septagname) > 0)) |
||||
{ |
||||
xmlBufferWriteChar(buf, "<"); |
||||
xmlBufferWriteCHAR(buf, septagname); |
||||
xmlBufferWriteChar(buf, ">"); |
||||
} |
||||
xmlNodeDump(buf, doc, nodeset->nodeTab[i], 1, (format == 2)); |
||||
|
||||
if ((septagname != NULL) && (xmlStrlen(septagname) > 0)) |
||||
{ |
||||
xmlBufferWriteChar(buf, "</"); |
||||
xmlBufferWriteCHAR(buf, septagname); |
||||
xmlBufferWriteChar(buf, ">"); |
||||
} |
||||
if (format) |
||||
xmlBufferWriteChar(buf, "\n"); |
||||
} |
||||
} |
||||
|
||||
if ((toptagname != NULL) && (xmlStrlen(toptagname) > 0)) |
||||
{ |
||||
xmlBufferWriteChar(buf, "</"); |
||||
xmlBufferWriteCHAR(buf, toptagname); |
||||
xmlBufferWriteChar(buf, ">"); |
||||
} |
||||
result = xmlStrdup(buf->content); |
||||
xmlBufferFree(buf); |
||||
return result; |
||||
} |
||||
|
||||
static xmlChar * |
||||
pgxml_texttoxmlchar(text *textstring) |
||||
{ |
||||
xmlChar *res; |
||||
int32 txsize; |
||||
|
||||
txsize = VARSIZE(textstring) - VARHDRSZ; |
||||
res = (xmlChar *) palloc(txsize + 1); |
||||
memcpy((char *) res, VARDATA(textstring), txsize); |
||||
res[txsize] = '\0'; |
||||
return res; |
||||
} |
||||
|
||||
|
||||
PG_FUNCTION_INFO_V1(pgxml_xpath); |
||||
|
||||
Datum |
||||
pgxml_xpath(PG_FUNCTION_ARGS) |
||||
{ |
||||
xmlDocPtr doctree; |
||||
xmlXPathContextPtr ctxt; |
||||
xmlXPathObjectPtr res; |
||||
xmlChar *xpath, |
||||
*xpresstr, |
||||
*toptag, |
||||
*septag; |
||||
xmlXPathCompExprPtr comppath; |
||||
|
||||
int32 docsize, |
||||
ressize; |
||||
text *t, |
||||
*xpres; |
||||
|
||||
t = PG_GETARG_TEXT_P(0); /* document buffer */ |
||||
xpath = pgxml_texttoxmlchar(PG_GETARG_TEXT_P(1)); /* XPath expression */ |
||||
toptag = pgxml_texttoxmlchar(PG_GETARG_TEXT_P(2)); |
||||
septag = pgxml_texttoxmlchar(PG_GETARG_TEXT_P(3)); |
||||
|
||||
docsize = VARSIZE(t) - VARHDRSZ; |
||||
|
||||
pgxml_parser_init(); |
||||
|
||||
doctree = xmlParseMemory((char *) VARDATA(t), docsize); |
||||
if (doctree == NULL) |
||||
{ /* not well-formed */ |
||||
xmlCleanupParser(); |
||||
PG_RETURN_NULL(); |
||||
} |
||||
|
||||
ctxt = xmlXPathNewContext(doctree); |
||||
ctxt->node = xmlDocGetRootElement(doctree); |
||||
|
||||
/* compile the path */ |
||||
comppath = xmlXPathCompile(xpath); |
||||
if (comppath == NULL) |
||||
{ |
||||
elog(WARNING, "XPath syntax error"); |
||||
xmlFreeDoc(doctree); |
||||
pfree((void *) xpath); |
||||
xmlCleanupParser(); |
||||
PG_RETURN_NULL(); |
||||
} |
||||
|
||||
/* Now evaluate the path expression. */ |
||||
res = xmlXPathCompiledEval(comppath, ctxt); |
||||
xmlXPathFreeCompExpr(comppath); |
||||
|
||||
if (res == NULL) |
||||
{ |
||||
xmlFreeDoc(doctree); |
||||
pfree((void *) xpath); |
||||
xmlCleanupParser(); |
||||
PG_RETURN_NULL(); /* seems appropriate */ |
||||
} |
||||
/* now we dump this node, ?surrounding by tags? */ |
||||
/* To do this, we look first at the type */ |
||||
switch (res->type) |
||||
{ |
||||
case XPATH_NODESET: |
||||
xpresstr = pgxmlNodeSetToText(res->nodesetval, |
||||
doctree, |
||||
toptag, septag, 0); |
||||
break; |
||||
case XPATH_STRING: |
||||
xpresstr = xmlStrdup(res->stringval); |
||||
break; |
||||
default: |
||||
elog(WARNING, "Unsupported XQuery result: %d", res->type); |
||||
xpresstr = xmlStrdup("<unsupported/>"); |
||||
} |
||||
|
||||
|
||||
/* Now convert this result back to text */ |
||||
ressize = strlen(xpresstr); |
||||
xpres = (text *) palloc(ressize + VARHDRSZ); |
||||
memcpy(VARDATA(xpres), xpresstr, ressize); |
||||
VARATT_SIZEP(xpres) = ressize + VARHDRSZ; |
||||
|
||||
/* Free various storage */ |
||||
xmlFreeDoc(doctree); |
||||
pfree((void *) xpath); |
||||
xmlFree(xpresstr); |
||||
xmlCleanupParser(); |
||||
PG_RETURN_TEXT_P(xpres); |
||||
} |
@ -0,0 +1,10 @@ |
||||
-- SQL for XML parser |
||||
|
||||
-- Adjust this setting to control where the objects get created. |
||||
SET search_path TO public; |
||||
|
||||
CREATE OR REPLACE FUNCTION pgxml_parse(text) RETURNS boolean |
||||
AS 'MODULE_PATHNAME' LANGUAGE c STRICT; |
||||
|
||||
CREATE OR REPLACE FUNCTION pgxml_xpath(text, text, text, text) RETURNS text |
||||
AS 'MODULE_PATHNAME' LANGUAGE c STRICT; |
Loading…
Reference in new issue