mirror of
https://github.com/Unidata/netcdf-c.git
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36102e3c32
re: Issue https://github.com/Unidata/netcdf-c/issues/2190 The primary purpose of this PR is to improve the utf8 support for windows. This is persuant to a change in Windows that supports utf8 natively (almost). The almost means that it is still utf16 internally and the set of characters representable by utf8 is larger than those representable by utf16. This leaves open the question in the Issue about handling the Windows 1252 character set. This required the following changes: 1. Test the Windows build and major version in order to see if native utf8 is supported. 2. If native utf8 is supported, Modify dpathmgr.c to call the 8-bit version of the windows fopen() and open() functions. 3. In support of this, programs that use XGetOpt (Windows versions) need to get the command line as utf8 and then parse to arc+argv as utf8. This requires using a homegrown command line parser named XCommandLineToArgvA. 4. Add a utility program called "acpget" that prints out the current Windows code page and locale. Additionally, some technical debt was cleaned up as follows: 1. Unify all the places which attempt to read all or a part of a file into the dutil.c#NC_readfile code. 2. Similary unify all the code that creates temp files into dutil.c#NC_mktmp code. 3. Convert almost all remaining calls to fopen() and open() to NCfopen() and NCopen3(). This is to ensure that path management is used consistently. This touches a number of files. 4. extern->EXTERNL as needed to get it to work under Windows.
565 lines
16 KiB
C
565 lines
16 KiB
C
/*********************************************************************
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* Copyright 2018, UCAR/Unidata
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* See netcdf/COPYRIGHT file for copying and redistribution conditions.
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*********************************************************************/
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#include "ncdispatch.h"
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#include "ncd4dispatch.h"
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#include "d4includes.h"
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#include "d4read.h"
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#include "d4curlfunctions.h"
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#ifdef _MSC_VER
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#include <process.h>
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#include <direct.h>
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#endif
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#ifdef HAVE_SYS_STAT_H
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#include <sys/stat.h>
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#endif
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/**************************************************/
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/* Forward */
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static void applyclientmetacontrols(NCD4meta* meta);
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static int constrainable(NCURI*);
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static void freeCurl(NCD4curl*);
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static void freeInfo(NCD4INFO*);
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static int paramcheck(NCD4INFO*, const char* key, const char* subkey);
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static const char* getparam(NCD4INFO* info, const char* key);
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static int set_curl_properties(NCD4INFO*);
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static int makesubstrate(NCD4INFO* d4info);
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static void resetInfoforRead(NCD4INFO* d4info);
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/**************************************************/
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/* Constants */
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static const char* checkseps = "+,:;";
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/**************************************************/
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int
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NCD4_open(const char * path, int mode,
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int basepe, size_t *chunksizehintp,
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void *mpidata, const NC_Dispatch *dispatch, int ncid)
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{
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int ret = NC_NOERR;
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NCD4INFO* d4info = NULL;
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const char* value;
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NC* nc;
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NCD4meta* meta = NULL;
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size_t len = 0;
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void* contents = NULL;
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if(path == NULL)
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return THROW(NC_EDAPURL);
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assert(dispatch != NULL);
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/* Find pointer to NC struct for this file. */
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ret = NC_check_id(ncid,&nc);
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if(ret != NC_NOERR) {goto done;}
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/* Setup our NC and NCDAPCOMMON state*/
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d4info = (NCD4INFO*)calloc(1,sizeof(NCD4INFO));
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if(d4info == NULL) {ret = NC_ENOMEM; goto done;}
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nc->dispatchdata = d4info;
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nc->int_ncid = nc__pseudofd(); /* create a unique id */
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d4info->controller = (NC*)nc;
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/* Parse url and params */
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if(ncuriparse(nc->path,&d4info->uri))
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{ret = NC_EDAPURL; goto done;}
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/* Load auth info from rc file */
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if((ret = NC_authsetup(&d4info->auth, d4info->uri)))
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goto done;
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NCD4_curl_protocols(d4info);
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if(!constrainable(d4info->uri))
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SETFLAG(d4info->controls.flags,NCF_UNCONSTRAINABLE);
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/* fail if we are unconstrainable but have constraints */
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if(FLAGSET(d4info->controls.flags,NCF_UNCONSTRAINABLE)) {
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if(d4info->uri != NULL && d4info->uri->query != NULL) {
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nclog(NCLOGWARN,"Attempt to constrain an unconstrainable data source: %s",
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d4info->uri->query);
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ret = THROW(NC_EDAPCONSTRAINT);
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goto done;
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}
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}
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/* process control client parameters */
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NCD4_applyclientparamcontrols(d4info);
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/* Use libsrc4 code (netcdf-4) for storing metadata */
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{
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char tmpname[NC_MAX_NAME];
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/* Create fake file name: exact name must be unique,
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but is otherwise irrelevant because we are using NC_DISKLESS
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*/
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if(strlen(d4info->controls.substratename) > 0)
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snprintf(tmpname,sizeof(tmpname),"%s",d4info->controls.substratename);
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else
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snprintf(tmpname,sizeof(tmpname),"tmp_%d",nc->int_ncid);
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/* Compute the relevant names for the substrate file */
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d4info->substrate.filename = strdup(tmpname);
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if(d4info->substrate.filename == NULL)
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{ret = NC_ENOMEM; goto done;}
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}
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/* Turn on logging; only do this after oc_open*/
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if((value = ncurifragmentlookup(d4info->uri,"log")) != NULL) {
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ncloginit();
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ncsetlogging(1);
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}
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/* Check env values */
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if(getenv("CURLOPT_VERBOSE") != NULL)
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d4info->auth->curlflags.verbose = 1;
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/* Setup a curl connection */
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{
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CURL* curl = NULL; /* curl handle*/
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d4info->curl = (NCD4curl*)calloc(1,sizeof(NCD4curl));
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if(d4info->curl == NULL)
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{ret = NC_ENOMEM; goto done;}
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/* create the connection */
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if((ret=NCD4_curlopen(&curl))!= NC_NOERR) goto done;
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d4info->curl->curl = curl;
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/* Load misc rc properties */
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NCD4_get_rcproperties(d4info);
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if((ret=set_curl_properties(d4info))!= NC_NOERR) goto done;
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/* Set the one-time curl flags */
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if((ret=NCD4_set_flags_perlink(d4info))!= NC_NOERR) goto done;
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#if 1 /* temporarily make per-link */
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if((ret=NCD4_set_flags_perfetch(d4info))!= NC_NOERR) goto done;
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#endif
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}
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d4info->curl->packet = ncbytesnew();
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ncbytessetalloc(d4info->curl->packet,DFALTPACKETSIZE); /*initial reasonable size*/
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/* Reset the substrate */
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if((ret=makesubstrate(d4info))) goto done;
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/* Always start by reading the DMR only */
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/* reclaim substrate.metadata */
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resetInfoforRead(d4info);
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/* Rebuild metadata */
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if((d4info->substrate.metadata=NCD4_newmeta(d4info))==NULL)
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{ret = NC_ENOMEM; goto done;}
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if((ret=NCD4_readDMR(d4info, d4info->controls.flags.flags))) goto done;
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/* set serial.rawdata */
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len = ncbyteslength(d4info->curl->packet);
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contents = ncbytesextract(d4info->curl->packet);
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NCD4_attachraw(d4info->substrate.metadata, len, contents);
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meta = d4info->substrate.metadata;
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/* process meta control parameters */
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applyclientmetacontrols(meta);
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/* Infer the mode */
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if((ret=NCD4_infermode(meta))) goto done;
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#ifdef D4DUMPDMR
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{
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fprintf(stderr,"=============\n");
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fputs(d4info->substrate.metadata->serial.dmr,stderr);
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fprintf(stderr,"\n=============\n");
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fflush(stderr);
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}
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#endif
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/* Process the dmr part */
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if((ret=NCD4_dechunk(meta))) goto done;
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if((ret = NCD4_parse(d4info->substrate.metadata))) goto done;
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#ifdef D4DEBUGMETA
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{
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fprintf(stderr,"\n/////////////\n");
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NCbytes* buf = ncbytesnew();
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NCD4_print(d4info->substrate.metadata,buf);
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ncbytesnull(buf);
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fputs(ncbytescontents(buf),stderr);
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ncbytesfree(buf);
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fprintf(stderr,"\n/////////////\n");
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fflush(stderr);
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}
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#endif
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/* Build the substrate metadata */
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ret = NCD4_metabuild(d4info->substrate.metadata,d4info->substrate.metadata->ncid);
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if(ret != NC_NOERR && ret != NC_EVARSIZE) goto done;
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done:
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if(ret) {
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freeInfo(d4info);
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nc->dispatchdata = NULL;
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}
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return THROW(ret);
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}
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int
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NCD4_close(int ncid, void* ignore)
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{
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int ret = NC_NOERR;
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NC* nc;
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NCD4INFO* d4info;
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int substrateid;
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ret = NC_check_id(ncid, (NC**)&nc);
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if(ret != NC_NOERR) goto done;
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d4info = (NCD4INFO*)nc->dispatchdata;
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substrateid = makenc4id(nc,ncid);
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/* We call abort rather than close to avoid trying to write anything,
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except if we are debugging
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*/
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if(FLAGSET(d4info->controls.debugflags,NCF_DEBUG_COPY)) {
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/* Dump the data into the substrate */
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if((ret = NCD4_debugcopy(d4info)))
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goto done;
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ret = nc_close(substrateid);
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} else {
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ret = nc_abort(substrateid);
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}
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freeInfo(d4info);
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done:
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return THROW(ret);
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}
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int
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NCD4_abort(int ncid)
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{
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return NCD4_close(ncid,NULL);
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}
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/**************************************************/
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/* Reclaim an NCD4INFO instance */
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static void
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freeInfo(NCD4INFO* d4info)
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{
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if(d4info == NULL) return;
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d4info->controller = NULL; /* break link */
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nullfree(d4info->rawurltext);
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nullfree(d4info->urltext);
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ncurifree(d4info->uri);
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freeCurl(d4info->curl);
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nullfree(d4info->data.memory);
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nullfree(d4info->data.ondiskfilename);
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if(d4info->data.ondiskfile != NULL)
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fclose(d4info->data.ondiskfile);
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nullfree(d4info->fileproto.filename);
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if(d4info->substrate.realfile
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&& !FLAGSET(d4info->controls.debugflags,NCF_DEBUG_COPY)) {
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/* We used real file, so we need to delete the temp file
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unless we are debugging.
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Assume caller has done nc_close|nc_abort on the ncid.
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Note that in theory, this should not be necessary since
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AFAIK the substrate file is still in def mode, and
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when aborted, it should be deleted. But that is not working
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for some reason, so we delete it ourselves.
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*/
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#if 0
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if(d4info->substrate.filename != NULL) {
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unlink(d4info->substrate.filename);
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}
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#endif
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}
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nullfree(d4info->substrate.filename); /* always reclaim */
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NCD4_reclaimMeta(d4info->substrate.metadata);
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NC_authfree(d4info->auth);
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nclistfree(d4info->blobs);
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free(d4info);
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}
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/* Reset NCD4INFO instance for new read request */
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static void
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resetInfoforRead(NCD4INFO* d4info)
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{
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if(d4info == NULL) return;
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if(d4info->substrate.realfile
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&& !FLAGSET(d4info->controls.debugflags,NCF_DEBUG_COPY)) {
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/* We used real file, so we need to delete the temp file
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unless we are debugging.
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Assume caller has done nc_close|nc_abort on the ncid.
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Note that in theory, this should not be necessary since
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AFAIK the substrate file is still in def mode, and
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when aborted, it should be deleted. But that is not working
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for some reason, so we delete it ourselves.
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*/
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if(d4info->substrate.filename != NULL) {
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unlink(d4info->substrate.filename);
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}
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}
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NCD4_resetMeta(d4info->substrate.metadata);
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nullfree(d4info->substrate.metadata);
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d4info->substrate.metadata = NULL;
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}
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static void
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freeCurl(NCD4curl* curl)
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{
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if(curl == NULL) return;
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NCD4_curlclose(curl->curl);
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ncbytesfree(curl->packet);
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nullfree(curl->errdata.code);
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nullfree(curl->errdata.message);
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free(curl);
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}
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/* Define the set of protocols known to be constrainable */
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static const char* constrainableprotocols[] = {"http", "https",NULL};
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static int
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constrainable(NCURI* durl)
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{
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const char** protocol = constrainableprotocols;
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for(;*protocol;protocol++) {
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if(strcmp(durl->protocol,*protocol)==0)
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return 1;
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}
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return 0;
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}
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/*
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Set curl properties for link based on rc files etc.
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*/
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static int
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set_curl_properties(NCD4INFO* d4info)
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{
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int ret = NC_NOERR;
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if(d4info->auth->curlflags.useragent == NULL) {
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char* agent;
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size_t len = strlen(DFALTUSERAGENT) + strlen(VERSION);
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len++; /*strlcat nul*/
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agent = (char*)malloc(len+1);
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strncpy(agent,DFALTUSERAGENT,len);
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strlcat(agent,VERSION,len);
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d4info->auth->curlflags.useragent = agent;
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}
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/* Some servers (e.g. thredds and columbia) appear to require a place
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to put cookies in order for some security functions to work
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*/
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if(d4info->auth->curlflags.cookiejar != NULL
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&& strlen(d4info->auth->curlflags.cookiejar) == 0) {
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free(d4info->auth->curlflags.cookiejar);
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d4info->auth->curlflags.cookiejar = NULL;
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}
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if(d4info->auth->curlflags.cookiejar == NULL) {
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/* If no cookie file was defined, define a default */
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char* path = NULL;
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char* newpath = NULL;
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int len;
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errno = 0;
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NCRCglobalstate* globalstate = ncrc_getglobalstate();
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/* Create the unique cookie file name */
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len =
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strlen(globalstate->tempdir)
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+ 1 /* '/' */
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+ strlen("ncd4cookies");
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path = (char*)malloc(len+1);
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if(path == NULL) return NC_ENOMEM;
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snprintf(path,len,"%s/nc4cookies",globalstate->tempdir);
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/* Create the unique cookie file name */
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newpath = NC_mktmp(path);
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free(path);
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if(newpath == NULL) {
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fprintf(stderr,"Cannot create cookie file\n");
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goto fail;
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}
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d4info->auth->curlflags.cookiejar = newpath;
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d4info->auth->curlflags.cookiejarcreated = 1;
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errno = 0;
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}
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assert(d4info->auth->curlflags.cookiejar != NULL);
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/* Make sure the cookie jar exists and can be read and written */
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{
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FILE* f = NULL;
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char* fname = d4info->auth->curlflags.cookiejar;
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/* See if the file exists already */
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f = NCfopen(fname,"r");
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if(f == NULL) {
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/* Ok, create it */
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f = NCfopen(fname,"w+");
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if(f == NULL) {
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fprintf(stderr,"Cookie file cannot be read and written: %s\n",fname);
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{ret= NC_EPERM; goto fail;}
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}
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} else { /* test if file can be written */
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fclose(f);
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f = NCfopen(fname,"r+");
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if(f == NULL) {
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fprintf(stderr,"Cookie file is cannot be written: %s\n",fname);
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{ret = NC_EPERM; goto fail;}
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}
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}
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if(f != NULL) fclose(f);
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}
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return THROW(ret);
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fail:
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return THROW(ret);
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}
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void
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NCD4_applyclientparamcontrols(NCD4INFO* info)
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{
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const char* value;
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/* clear the flags */
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CLRFLAG(info->controls.flags,NCF_CACHE);
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CLRFLAG(info->controls.flags,NCF_SHOWFETCH);
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CLRFLAG(info->controls.flags,NCF_NC4);
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CLRFLAG(info->controls.flags,NCF_NCDAP);
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CLRFLAG(info->controls.flags,NCF_FILLMISMATCH);
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/* Turn on any default on flags */
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SETFLAG(info->controls.flags,DFALT_ON_FLAGS);
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SETFLAG(info->controls.flags,(NCF_NC4|NCF_NCDAP));
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if(paramcheck(info,"show","fetch"))
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SETFLAG(info->controls.flags,NCF_SHOWFETCH);
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if(paramcheck(info,"translate","nc4"))
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info->controls.translation = NCD4_TRANSNC4;
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/* Look at the debug flags */
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if(paramcheck(info,"debug","copy"))
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SETFLAG(info->controls.debugflags,NCF_DEBUG_COPY); /* => close */
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value = getparam(info,"substratename");
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if(value != NULL)
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strncpy(info->controls.substratename,value,(NC_MAX_NAME-1));
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info->controls.opaquesize = DFALTOPAQUESIZE;
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value = getparam(info,"opaquesize");
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if(value != NULL) {
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long long len = 0;
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if(sscanf(value,"%lld",&len) != 1 || len == 0)
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nclog(NCLOGWARN,"bad [opaquesize] tag: %s",value);
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else
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info->controls.opaquesize = (size_t)len;
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}
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value = getparam(info,"fillmismatch");
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if(value != NULL)
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SETFLAG(info->controls.flags,NCF_FILLMISMATCH);
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value = getparam(info,"nofillmismatch");
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if(value != NULL)
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CLRFLAG(info->controls.debugflags,NCF_FILLMISMATCH);
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}
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static void
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applyclientmetacontrols(NCD4meta* meta)
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{
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NCD4INFO* info = meta->controller;
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const char* value = getparam(info,"checksummode");
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if(value != NULL) {
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if(strcmp(value,"ignore")==0)
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meta->ignorechecksums = 1;
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}
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}
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|
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/* Search for substring in value of param. If substring == NULL; then just
|
|
check if param is defined.
|
|
*/
|
|
static int
|
|
paramcheck(NCD4INFO* info, const char* key, const char* subkey)
|
|
{
|
|
const char* value;
|
|
char* p;
|
|
|
|
value = getparam(info, key);
|
|
if(value == NULL)
|
|
return 0;
|
|
if(subkey == NULL) return 1;
|
|
p = strstr(value,subkey);
|
|
if(p == NULL) return 0;
|
|
p += strlen(subkey);
|
|
if(*p != '\0' && strchr(checkseps,*p) == NULL) return 0;
|
|
return 1;
|
|
}
|
|
|
|
/*
|
|
Given a parameter key, return its value or NULL if not defined.
|
|
*/
|
|
static const char*
|
|
getparam(NCD4INFO* info, const char* key)
|
|
{
|
|
const char* value;
|
|
|
|
if(info == NULL || key == NULL) return NULL;
|
|
if((value=ncurifragmentlookup(info->uri,key)) == NULL)
|
|
return NULL;
|
|
return value;
|
|
}
|
|
|
|
/**************************************************/
|
|
|
|
static int
|
|
makesubstrate(NCD4INFO* d4info)
|
|
{
|
|
int ret = NC_NOERR;
|
|
int new = NC_NETCDF4;
|
|
int old = 0;
|
|
int ncid = 0;
|
|
int ncflags = NC_NETCDF4|NC_CLOBBER;
|
|
|
|
if(d4info->substrate.nc4id != 0) {
|
|
/* reset the substrate */
|
|
nc_abort(d4info->substrate.nc4id);
|
|
d4info->substrate.nc4id = 0;
|
|
}
|
|
/* Create the hidden substrate netcdf file.
|
|
We want this hidden file to always be NC_NETCDF4, so we need to
|
|
force default format temporarily in case user changed it.
|
|
Since diskless is enabled, create file in-memory.
|
|
*/
|
|
ncflags |= NC_DISKLESS;
|
|
if(FLAGSET(d4info->controls.debugflags,NCF_DEBUG_COPY)) {
|
|
/* Cause data to be dumped to real file */
|
|
ncflags |= NC_WRITE;
|
|
ncflags &= ~(NC_DISKLESS); /* use real file */
|
|
}
|
|
nc_set_default_format(new,&old); /* save and change */
|
|
ret = nc_create(d4info->substrate.filename,ncflags,&ncid);
|
|
nc_set_default_format(old,&new); /* restore */
|
|
/* Avoid fill on the substrate */
|
|
nc_set_fill(ncid,NC_NOFILL,NULL);
|
|
d4info->substrate.nc4id = ncid;
|
|
return THROW(ret);
|
|
}
|
|
|
|
int
|
|
NCD4_get_substrate(int ncid)
|
|
{
|
|
NC* nc = NULL;
|
|
NCD4INFO* d4 = NULL;
|
|
int subncid = 0;
|
|
/* Find pointer to NC struct for this file. */
|
|
(void)NC_check_id(ncid,&nc);
|
|
d4 = (NCD4INFO*)nc->dispatchdata;
|
|
subncid = d4->substrate.nc4id;
|
|
return subncid;
|
|
}
|