mirror of
https://github.com/nzp-team/fteqw.git
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8d5b217266
r4169 | acceptthis | 2013-01-17 08:55:12 +0000 (Thu, 17 Jan 2013) | 31 lines removed MAX_VISEDICTS limit. PEXT2_REPLACEMENTDELTAS tweaked, now has 4 million entity limit. still not enabled by default. TE_BEAM now maps to a separate TEQW_BEAM to avoid conflicts with QW. added android multitouch emulation for windows/rawinput (in_simulatemultitouch). split topcolor/bottomcolor from scoreboard, for dp's colormap|1024 feature. now using utf-8 for windows consoles. qcc warnings/errors now give clickable console links for quick+easy editing. disabled menutint when the currently active item changes contrast or gamma (for OneManClan). Added support for drawfont/drawfontscale. tweaked the qcvm a little to reduce the number of pointers. .doll file loading. still experimental and will likely crash. requires csqc active, even if its a dummy progs. this will be fixed in time. Still other things that need cleaning up. windows: gl_font "?" shows the standard windows font-selection dialog, and can be used to select windows fonts. not all work. and you probably don't want to use windings. fixed splitscreen support when playing mvds. added mini-scoreboards to splitscreen. editor/debugger now shows asm if there's no linenumber info. also, pressing f1 for help shows the shortcuts. Added support for .framegroups files for psk(psa) and iqm formats. True support for ezquake's colour codes. Mutually exclusive with background colours. path command output slightly more readable. added support for digest_hex (MD4, SHA1, CRC16). skingroups now colourmap correctly. Fix terrain colour hints, and litdata from the wrong bsp. fix ftp dual-homed issue. support epsv command, and enable ipv6 (eprt still not supported). remove d3d11 compilation from the makefile. the required headers are not provided by mingw, and are not available to the build bot, so don't bother. fix v *= v.x and similar opcodes. fteqcc: fixed support for áéíóú type chars in names. utf-8 files now properly supported (even with the utf-8 bom/identifier). utf-16 also supported. fteqcc: fixed '#if 1 == 3 && 4' parsing. fteqcc: -Werror acts on the warning, rather than as a separate error. Line numbers are thus more readable. fteqcc: copyright message now includes compile date instead. fteqccgui: the treeview control is now coloured depending on whether there were warnings/errors in the last compile. fteqccgui: the output window is now focused and scrolls down as compilation progresses. pr_dumpplatform command dumps out some pragmas to convert more serious warnings to errors. This is to avoid the infamous 'fteqcc sucks cos my code sucks' issue. rewrote prespawn/modelist/soundlist code. server tracks progress now. ------------------------------------------------------------------------ git-svn-id: https://svn.code.sf.net/p/fteqw/code/trunk@4167 fc73d0e0-1445-4013-8a0c-d673dee63da5
572 lines
14 KiB
C
572 lines
14 KiB
C
#include "quakedef.h"
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#include "fs.h"
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//
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// in memory
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//
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typedef struct
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{
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fsbucket_t bucket;
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char name[MAX_QPATH];
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int filepos, filelen;
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} mpackfile_t;
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typedef struct pack_s
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{
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char descname[MAX_OSPATH];
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vfsfile_t *handle;
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unsigned int filepos; //the pos the subfiles left it at (to optimize calls to vfs_seek)
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int numfiles;
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mpackfile_t *files;
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int references; //seeing as all vfiles from a pak file use the parent's vfsfile, we need to keep the parent open until all subfiles are closed.
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} pack_t;
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//
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// on disk
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//
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typedef struct
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{
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char name[56];
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int filepos, filelen;
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} dpackfile_t;
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typedef struct
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{
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int filepos, filelen;
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char name[8];
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} dwadfile_t;
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typedef struct
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{
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char id[4];
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int dirofs;
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int dirlen;
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} dpackheader_t;
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typedef struct
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{
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char id[4];
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int dirlen;
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int dirofs;
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} dwadheader_t;
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#define MAX_FILES_IN_PACK 2048
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void FSPAK_GetDisplayPath(void *handle, char *out, unsigned int outlen)
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{
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pack_t *pak = handle;
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if (pak->references != 1)
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Q_snprintfz(out, outlen, "%s (%i)", pak->descname, pak->references-1);
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else
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Q_snprintfz(out, outlen, "%s", pak->descname);
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}
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void FSPAK_ClosePath(void *handle)
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{
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pack_t *pak = handle;
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pak->references--;
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if (pak->references > 0)
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return; //not free yet
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VFS_CLOSE (pak->handle);
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if (pak->files)
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Z_Free(pak->files);
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Z_Free(pak);
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}
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void FSPAK_BuildHash(void *handle, int depth)
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{
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pack_t *pak = handle;
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int i;
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for (i = 0; i < pak->numfiles; i++)
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{
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FS_AddFileHash(depth, pak->files[i].name, &pak->files[i].bucket, &pak->files[i]);
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}
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}
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qboolean FSPAK_FLocate(void *handle, flocation_t *loc, const char *filename, void *hashedresult)
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{
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mpackfile_t *pf = hashedresult;
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int i, len;
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pack_t *pak = handle;
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// look through all the pak file elements
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if (pf)
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{ //is this a pointer to a file in this pak?
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if (pf < pak->files || pf > pak->files + pak->numfiles)
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return false; //was found in a different path
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}
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else
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{
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for (i=0 ; i<pak->numfiles ; i++) //look for the file
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{
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if (!strcmp (pak->files[i].name, filename))
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{
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pf = &pak->files[i];
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break;
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}
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}
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}
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if (pf)
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{
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len = pf->filelen;
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if (loc)
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{
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loc->index = pf - pak->files;
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snprintf(loc->rawname, sizeof(loc->rawname), "%s", pak->descname);
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loc->offset = pf->filepos;
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loc->len = pf->filelen;
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}
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return true;
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}
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return false;
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}
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int FSPAK_EnumerateFiles (void *handle, const char *match, int (*func)(const char *, int, void *), void *parm)
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{
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pack_t *pak = handle;
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int num;
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for (num = 0; num<(int)pak->numfiles; num++)
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{
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if (wildcmp(match, pak->files[num].name))
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{
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if (!func(pak->files[num].name, pak->files[num].filelen, parm))
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return false;
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}
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}
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return true;
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}
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int FSPAK_GeneratePureCRC(void *handle, int seed, int crctype)
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{
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pack_t *pak = handle;
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int result;
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int *filecrcs;
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int numcrcs=0;
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int i;
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filecrcs = BZ_Malloc((pak->numfiles+1)*sizeof(int));
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filecrcs[numcrcs++] = seed;
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for (i = 0; i < pak->numfiles; i++)
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{
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if (pak->files[i].filelen > 0)
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{
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filecrcs[numcrcs++] = pak->files[i].filepos ^ pak->files[i].filelen ^ QCRC_Block(pak->files[i].name, sizeof(56));
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}
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}
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if (crctype)
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result = Com_BlockChecksum(filecrcs, numcrcs*sizeof(int));
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else
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result = Com_BlockChecksum(filecrcs+1, (numcrcs-1)*sizeof(int));
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BZ_Free(filecrcs);
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return result;
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}
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/*
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=================
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COM_LoadPackFile
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Takes an explicit (not game tree related) path to a pak file.
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Loads the header and directory, adding the files at the beginning
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of the list so they override previous pack files.
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=================
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*/
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void *FSPAK_LoadPackFile (vfsfile_t *file, const char *desc)
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{
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dpackheader_t header;
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int i;
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// int j;
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mpackfile_t *newfiles;
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int numpackfiles;
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pack_t *pack;
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vfsfile_t *packhandle;
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dpackfile_t info;
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int read;
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// unsigned short crc;
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packhandle = file;
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if (packhandle == NULL)
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return NULL;
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VFS_READ(packhandle, &header, sizeof(header));
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if (header.id[0] != 'P' || header.id[1] != 'A'
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|| header.id[2] != 'C' || header.id[3] != 'K')
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{
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VFS_CLOSE(packhandle);
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return NULL;
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// Sys_Error ("%s is not a packfile", packfile);
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}
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header.dirofs = LittleLong (header.dirofs);
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header.dirlen = LittleLong (header.dirlen);
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numpackfiles = header.dirlen / sizeof(dpackfile_t);
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// if (numpackfiles > MAX_FILES_IN_PACK)
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// Sys_Error ("%s has %i files", packfile, numpackfiles);
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// if (numpackfiles != PAK0_COUNT)
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// com_modified = true; // not the original file
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newfiles = (mpackfile_t*)Z_Malloc (numpackfiles * sizeof(mpackfile_t));
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VFS_SEEK(packhandle, header.dirofs);
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// fread (&info, 1, header.dirlen, packhandle);
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// crc the directory to check for modifications
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// crc = QCRC_Block((qbyte *)info, header.dirlen);
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// QCRC_Init (&crc);
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pack = (pack_t*)Z_Malloc (sizeof (pack_t));
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// parse the directory
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for (i=0 ; i<numpackfiles ; i++)
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{
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*info.name = '\0';
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read = VFS_READ(packhandle, &info, sizeof(info));
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/*
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for (j=0 ; j<sizeof(info) ; j++)
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CRC_ProcessByte(&crc, ((qbyte *)&info)[j]);
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*/
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strcpy (newfiles[i].name, info.name);
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newfiles[i].name[MAX_QPATH-1] = 0; //paranoid
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COM_CleanUpPath(newfiles[i].name); //blooming tanks.
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newfiles[i].filepos = LittleLong(info.filepos);
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newfiles[i].filelen = LittleLong(info.filelen);
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}
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/*
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if (crc != PAK0_CRC)
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com_modified = true;
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*/
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strcpy (pack->descname, desc);
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pack->handle = packhandle;
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pack->numfiles = numpackfiles;
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pack->files = newfiles;
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pack->filepos = 0;
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VFS_SEEK(packhandle, pack->filepos);
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pack->references++;
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Con_TPrintf (TL_ADDEDPACKFILE, desc, numpackfiles);
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return pack;
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}
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typedef struct {
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vfsfile_t funcs;
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pack_t *parentpak;
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unsigned long startpos;
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unsigned long length;
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unsigned long currentpos;
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} vfspack_t;
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int VFSPAK_ReadBytes (struct vfsfile_s *vfs, void *buffer, int bytestoread)
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{
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vfspack_t *vfsp = (vfspack_t*)vfs;
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int read;
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if (bytestoread == 0)
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return 0;
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if (vfsp->currentpos - vfsp->startpos + bytestoread > vfsp->length)
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bytestoread = vfsp->length - (vfsp->currentpos - vfsp->startpos);
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if (bytestoread <= 0)
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{
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return -1;
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}
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if (vfsp->parentpak->filepos != vfsp->currentpos)
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VFS_SEEK(vfsp->parentpak->handle, vfsp->currentpos);
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read = VFS_READ(vfsp->parentpak->handle, buffer, bytestoread);
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vfsp->currentpos += read;
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vfsp->parentpak->filepos = vfsp->currentpos;
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return read;
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}
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int VFSPAK_WriteBytes (struct vfsfile_s *vfs, const void *buffer, int bytestoread)
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{ //not supported.
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Sys_Error("Cannot write to pak files\n");
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return 0;
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}
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qboolean VFSPAK_Seek (struct vfsfile_s *vfs, unsigned long pos)
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{
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vfspack_t *vfsp = (vfspack_t*)vfs;
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if (pos < 0 || pos > vfsp->length)
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return false;
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vfsp->currentpos = pos + vfsp->startpos;
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return true;
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}
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unsigned long VFSPAK_Tell (struct vfsfile_s *vfs)
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{
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vfspack_t *vfsp = (vfspack_t*)vfs;
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return vfsp->currentpos - vfsp->startpos;
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}
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unsigned long VFSPAK_GetLen (struct vfsfile_s *vfs)
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{
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vfspack_t *vfsp = (vfspack_t*)vfs;
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return vfsp->length;
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}
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void VFSPAK_Close(vfsfile_t *vfs)
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{
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vfspack_t *vfsp = (vfspack_t*)vfs;
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FSPAK_ClosePath(vfsp->parentpak); //tell the parent that we don't need it open any more (reference counts)
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Z_Free(vfsp); //free ourselves.
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}
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vfsfile_t *FSPAK_OpenVFS(void *handle, flocation_t *loc, const char *mode)
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{
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pack_t *pack = (pack_t*)handle;
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vfspack_t *vfs;
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if (strcmp(mode, "rb"))
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return NULL; //urm, unable to write/append
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vfs = Z_Malloc(sizeof(vfspack_t));
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vfs->parentpak = pack;
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vfs->parentpak->references++;
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vfs->startpos = loc->offset;
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vfs->length = loc->len;
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vfs->currentpos = vfs->startpos;
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#ifdef _DEBUG
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Q_strncpyz(vfs->funcs.dbgname, pack->files[loc->index].name, sizeof(vfs->funcs.dbgname));
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#endif
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vfs->funcs.Close = VFSPAK_Close;
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vfs->funcs.GetLen = VFSPAK_GetLen;
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vfs->funcs.ReadBytes = VFSPAK_ReadBytes;
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vfs->funcs.Seek = VFSPAK_Seek;
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vfs->funcs.Tell = VFSPAK_Tell;
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vfs->funcs.WriteBytes = VFSPAK_WriteBytes; //not supported
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return (vfsfile_t *)vfs;
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}
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void FSPAK_ReadFile(void *handle, flocation_t *loc, char *buffer)
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{
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vfsfile_t *f;
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f = FSPAK_OpenVFS(handle, loc, "rb");
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if (!f) //err...
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return;
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VFS_READ(f, buffer, loc->len);
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VFS_CLOSE(f);
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/*
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FILE *f;
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f = fopen(loc->rawname, "rb");
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if (!f) //err...
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return;
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fseek(f, loc->offset, SEEK_SET);
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fread(buffer, 1, loc->len, f);
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fclose(f);
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*/
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}
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searchpathfuncs_t packfilefuncs = {
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FSPAK_GetDisplayPath,
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FSPAK_ClosePath,
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FSPAK_BuildHash,
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FSPAK_FLocate,
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FSPAK_ReadFile,
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FSPAK_EnumerateFiles,
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FSPAK_LoadPackFile,
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FSPAK_GeneratePureCRC,
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FSPAK_OpenVFS
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};
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#ifdef DOOMWADS
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void *FSPAK_LoadDoomWadFile (vfsfile_t *packhandle, const char *desc)
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{
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dwadheader_t header;
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int i;
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mpackfile_t *newfiles;
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int numpackfiles;
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pack_t *pack;
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dwadfile_t info;
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int section=0;
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char sectionname[MAX_QPATH];
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char filename[52];
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char neatwadname[52];
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if (packhandle == NULL)
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return NULL;
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VFS_READ(packhandle, &header, sizeof(header));
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if (header.id[1] != 'W' || header.id[2] != 'A' || header.id[3] != 'D')
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return NULL; //not a doom wad
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//doom wads come in two sorts. iwads and pwads.
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//iwads are the master wads, pwads are meant to replace parts of the master wad.
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//this is awkward, of course.
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//we ignore the i/p bit for the most part, but with maps, pwads are given a prefixed name.
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if (header.id[0] == 'I')
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*neatwadname = '\0';
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else if (header.id[0] == 'P')
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{
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COM_FileBase(desc, neatwadname, sizeof(neatwadname));
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strcat(neatwadname, "#");
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}
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else
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return NULL;
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header.dirofs = LittleLong (header.dirofs);
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header.dirlen = LittleLong (header.dirlen);
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numpackfiles = header.dirlen;
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newfiles = (mpackfile_t*)Z_Malloc (numpackfiles * sizeof(mpackfile_t));
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VFS_SEEK(packhandle, header.dirofs);
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//doom wads are awkward.
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//they have no directory structure, except for start/end 'files'.
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//they follow along the lines of lumps after the parent name.
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//a map is the name of that map, and then a squence of the lumps that form that map (found by next-with-that-name).
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//this is a problem for a real virtual filesystem, so we add a hack to recognise special names and expand them specially.
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for (i=0 ; i<numpackfiles ; i++)
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{
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VFS_READ (packhandle, &info, sizeof(info));
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strcpy (filename, info.name);
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filename[8] = '\0';
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Q_strlwr(filename);
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newfiles[i].filepos = LittleLong(info.filepos);
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newfiles[i].filelen = LittleLong(info.filelen);
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switch(section) //be prepared to remap filenames.
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{
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newsection:
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case 0:
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if (info.filelen == 0)
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{ //marker for something...
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if (!strcmp(filename, "s_start"))
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{
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section = 2;
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sprintf (newfiles[i].name, "sprites/%s", filename); //the model loader has a hack to recognise .dsp
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break;
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}
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if (!strcmp(filename, "p_start"))
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{
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section = 3;
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sprintf (newfiles[i].name, "patches/%s", filename); //the map loader will find these.
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break;
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}
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if (!strcmp(filename, "f_start"))
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{
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section = 4;
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sprintf (newfiles[i].name, "flats/%s", filename); //the map loader will find these
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break;
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}
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if ((filename[0] == 'e' && filename[2] == 'm') || !strncmp(filename, "map", 3))
|
|
{ //this is the start of a beutiful new map
|
|
section = 1;
|
|
strcpy(sectionname, filename);
|
|
sprintf (newfiles[i].name, "maps/%s%s.bsp", neatwadname, filename); //generate fake bsps to allow the server to find them
|
|
newfiles[i].filepos = 0;
|
|
newfiles[i].filelen = 4;
|
|
break;
|
|
}
|
|
if (!strncmp(filename, "gl_", 3) && ((filename[4] == 'e' && filename[5] == 'm') || !strncmp(filename+3, "map", 3)))
|
|
{ //this is the start of a beutiful new map
|
|
section = 5;
|
|
strcpy(sectionname, filename+3);
|
|
break;
|
|
}
|
|
}
|
|
|
|
sprintf (newfiles[i].name, "wad/%s", filename); //but there are many files that we don't recognise/know about. archive them off to keep the vfs moderatly clean.
|
|
break;
|
|
case 1: //map section
|
|
if (strcmp(filename, "things") &&
|
|
strcmp(filename, "linedefs") &&
|
|
strcmp(filename, "sidedefs") &&
|
|
strcmp(filename, "vertexes") &&
|
|
strcmp(filename, "segs") &&
|
|
strcmp(filename, "ssectors") &&
|
|
strcmp(filename, "nodes") &&
|
|
strcmp(filename, "sectors") &&
|
|
strcmp(filename, "reject") &&
|
|
strcmp(filename, "blockmap"))
|
|
{
|
|
section = 0;
|
|
goto newsection;
|
|
}
|
|
sprintf (newfiles[i].name, "maps/%s%s.%s", neatwadname, sectionname, filename);
|
|
break;
|
|
case 5: //glbsp output section
|
|
if (strcmp(filename, "gl_vert") &&
|
|
strcmp(filename, "gl_segs") &&
|
|
strcmp(filename, "gl_ssect") &&
|
|
strcmp(filename, "gl_pvs") &&
|
|
strcmp(filename, "gl_nodes"))
|
|
{
|
|
section = 0;
|
|
goto newsection;
|
|
}
|
|
sprintf (newfiles[i].name, "maps/%s%s.%s", neatwadname, sectionname, filename);
|
|
break;
|
|
case 2: //sprite section
|
|
if (!strcmp(filename, "s_end"))
|
|
{
|
|
section = 0;
|
|
goto newsection;
|
|
}
|
|
sprintf (newfiles[i].name, "sprites/%s", filename);
|
|
break;
|
|
case 3: //patches section
|
|
if (!strcmp(filename, "p_end"))
|
|
{
|
|
section = 0;
|
|
goto newsection;
|
|
}
|
|
sprintf (newfiles[i].name, "patches/%s", filename);
|
|
break;
|
|
case 4: //flats section
|
|
if (!strcmp(filename, "f_end"))
|
|
{
|
|
section = 0;
|
|
goto newsection;
|
|
}
|
|
sprintf (newfiles[i].name, "flats/%s", filename);
|
|
break;
|
|
}
|
|
}
|
|
|
|
pack = (pack_t*)Z_Malloc (sizeof (pack_t));
|
|
strcpy (pack->descname, desc);
|
|
pack->handle = packhandle;
|
|
pack->numfiles = numpackfiles;
|
|
pack->files = newfiles;
|
|
pack->filepos = 0;
|
|
VFS_SEEK(packhandle, pack->filepos);
|
|
|
|
pack->references++;
|
|
|
|
Con_TPrintf (TL_ADDEDPACKFILE, desc, numpackfiles);
|
|
return pack;
|
|
}
|
|
searchpathfuncs_t doomwadfilefuncs = {
|
|
FSPAK_GetDisplayPath,
|
|
FSPAK_ClosePath,
|
|
FSPAK_BuildHash,
|
|
FSPAK_FLocate,
|
|
FSPAK_ReadFile,
|
|
FSPAK_EnumerateFiles,
|
|
FSPAK_LoadDoomWadFile,
|
|
NULL,
|
|
FSPAK_OpenVFS
|
|
};
|
|
#endif
|