reactos/rosapps/smartpdf/fitz/samus/sa_fixdoc.c
Klemens Friedl 435a566751 SmartPDF - lightweight pdf viewer app for rosapps
* sumatrapdf - vendor import
* everything compiles (libjpeg, poppler, fitz, sumatrapdf)
* does NOT link

(remove the comment tags in the parent directory.rbuild file (rosapps dir) to build it)

svn path=/trunk/; revision=29295
2007-09-29 08:39:35 +00:00

328 lines
5 KiB
C

/*
* FixedDocumentSequence and FixedDocument parts.
*/
#include "fitz.h"
#include "samus.h"
typedef struct sa_fixdoc_s sa_fixdoc;
typedef struct sa_fixpage_s sa_fixpage;
struct sa_fixdocseq_s
{
int count; /* pages */
sa_fixdoc *docs;
};
struct sa_fixdoc_s
{
int count;
sa_fixpage *pages;
sa_fixdoc *next;
};
struct sa_fixpage_s
{
char *part;
int width;
int height;
/* char **linktargets; */
sa_fixpage *next;
};
/*
* Debugging
*/
static void
sa_debugfixdoc(sa_fixdoc *doc, int i)
{
sa_fixpage *page = doc->pages;
printf(" FixedDocument\n {\n");
while (page)
{
printf(" FixedPage %d w=%d h=%d %s\n", i,
page->width, page->height, page->part);
page = page->next;
i ++;
}
printf(" }\n");
}
void
sa_debugfixdocseq(sa_fixdocseq *seq)
{
sa_fixdoc *doc = seq->docs;
int i = 0;
printf("FixedDocumentSequence count=%d\n{\n", seq->count);
while (doc)
{
sa_debugfixdoc(doc, i);
i += doc->count;
doc = doc->next;
}
printf("}\n");
}
/*
* Free data structures
*/
static void
sa_dropfixpage(sa_fixpage *page)
{
sa_fixpage *next;
while (page)
{
next = page->next;
fz_free(page->part);
fz_free(page);
page = next;
}
}
static void
sa_dropfixdoc(sa_fixdoc *doc)
{
sa_fixdoc *next;
while (doc)
{
next = doc->next;
if (doc->pages)
sa_dropfixpage(doc->pages);
fz_free(doc);
doc = next;
}
}
void
sa_dropfixdocseq(sa_fixdocseq *seq)
{
sa_dropfixdoc(seq->docs);
fz_free(seq);
}
/*
* Load FixedDocument
*/
static fz_error *
sa_loadfixdoc(sa_fixdoc **docp, sa_package *pack, char *part)
{
fz_error *error;
fz_stream *stm;
sa_xmlparser *parser;
sa_xmlitem *item;
sa_fixdoc *doc;
sa_fixpage *page;
sa_fixpage *last;
char buf[1024];
page = nil;
last = nil;
error = sa_openpart(&stm, pack, part);
if (error)
return error;
doc = fz_malloc(sizeof(sa_fixdoc));
if (!doc)
{
error = fz_outofmem;
goto cleanupstm;
}
doc->count = 0;
doc->pages = nil;
doc->next = nil;
error = sa_openxml(&parser, stm, 0);
if (error)
goto cleanupdoc;
item = sa_xmlnext(parser);
while (item)
{
if (!strcmp(sa_xmlname(item), "FixedDocument"))
{
sa_xmldown(parser);
item = sa_xmlnext(parser);
while (item)
{
if (!strcmp(sa_xmlname(item), "PageContent"))
{
char *src = sa_xmlatt(item, "Source");
char *w = sa_xmlatt(item, "Width");
char *h = sa_xmlatt(item, "Height");
if (!w) w = "0";
if (!h) h = "0";
if (src)
{
sa_resolvepath(buf, part, src, sizeof buf);
page = fz_malloc(sizeof(sa_fixpage));
if (!page)
{
error = fz_outofmem;
goto cleanupxml;
}
page->part = fz_strdup(buf);
if (!page->part)
{
fz_free(page);
error = fz_outofmem;
goto cleanupxml;
}
page->width = atoi(w);
page->height = atoi(h);
if (last)
last->next = page;
else
doc->pages = page;
doc->count ++;
last = page;
}
}
item = sa_xmlnext(parser);
}
sa_xmlup(parser);
}
item = sa_xmlnext(parser);
}
sa_closexml(parser);
fz_dropstream(stm);
*docp = doc;
return nil;
cleanupxml:
sa_closexml(parser);
cleanupdoc:
sa_dropfixdoc(doc);
cleanupstm:
fz_dropstream(stm);
return error;
}
/*
* Load FixedDocumentSequence
*/
fz_error *
sa_loadfixdocseq(sa_fixdocseq **seqp, sa_package *pack, char *part)
{
fz_error *error;
fz_stream *stm;
sa_xmlparser *parser;
sa_xmlitem *item;
sa_fixdocseq *seq;
sa_fixdoc *doc;
sa_fixdoc *last;
char buf[1024];
seq = nil;
last = nil;
error = sa_openpart(&stm, pack, part);
if (error)
return error;
seq = fz_malloc(sizeof(sa_fixdocseq));
if (!seq)
{
error = fz_outofmem;
goto cleanupstm;
}
seq->count = 0;
seq->docs = nil;
error = sa_openxml(&parser, stm, 0);
if (error)
goto cleanupseq;
item = sa_xmlnext(parser);
while (item)
{
if (!strcmp(sa_xmlname(item), "FixedDocumentSequence"))
{
sa_xmldown(parser);
item = sa_xmlnext(parser);
while (item)
{
if (!strcmp(sa_xmlname(item), "DocumentReference"))
{
char *src = sa_xmlatt(item, "Source");
if (src)
{
sa_resolvepath(buf, part, src, sizeof buf);
error = sa_loadfixdoc(&doc, pack, buf);
if (error)
goto cleanupxml;
if (last)
last->next = doc;
else
seq->docs = doc;
seq->count += doc->count;
last = doc;
}
}
item = sa_xmlnext(parser);
}
sa_xmlup(parser);
}
item = sa_xmlnext(parser);
}
sa_closexml(parser);
fz_dropstream(stm);
*seqp = seq;
return nil;
cleanupxml:
sa_closexml(parser);
cleanupseq:
sa_dropfixdocseq(seq);
cleanupstm:
fz_dropstream(stm);
return error;
}
/*
* Accessors
*/
int
sa_getpagecount(sa_fixdocseq *seq)
{
return seq->count;
}
char *
sa_getpagepart(sa_fixdocseq *seq, int idx)
{
sa_fixdoc *doc = seq->docs;
int cur = 0;
if (idx < 0 || idx >= seq->count)
return nil;
while (doc)
{
sa_fixpage *page = doc->pages;
while (page)
{
if (idx == cur)
return page->part;
page = page->next;
cur ++;
}
doc = doc->next;
}
return nil;
}