2012-02-05 11:35:58 -05:00
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/****************************************************************
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* *
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2012-03-24 14:06:46 -04:00
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* Copyright 2001, 2011 Fidelity Information Services, Inc *
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2012-02-05 11:35:58 -05:00
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* *
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* This source code contains the intellectual property *
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* of its copyright holder(s), and is made available *
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* under a license. If you do not know the terms of *
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* the license, please stop and do not read further. *
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* *
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****************************************************************/
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#include "mdef.h"
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#include "gtm_fcntl.h"
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#include "gtm_unistd.h"
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#include "gtm_string.h"
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#include <errno.h>
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#include "gtm_stat.h"
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#include "gtm_stdio.h"
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#include "gtm_statvfs.h"
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#if defined(__MVS__)
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#include "gtm_zos_io.h"
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#endif
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#include "parse_file.h"
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#include "gdsroot.h"
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#include "gtm_facility.h"
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#include "fileinfo.h"
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#include "gdsbt.h"
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#include "gdsfhead.h"
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#include "gdsblk.h"
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#include "filestruct.h"
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#include "mlkdef.h"
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#include "gtmio.h"
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#include "send_msg.h"
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#include "is_raw_dev.h"
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#include "disk_block_available.h"
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#include "mucregini.h"
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#include "mu_cre_file.h"
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#include "gtmmsg.h"
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#include "util.h"
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2012-03-24 14:06:46 -04:00
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#include "gtmdbglvl.h"
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2012-02-05 11:35:58 -05:00
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#ifdef GTM_CRYPT
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#include "gtmcrypt.h"
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#endif
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#include "shmpool.h" /* Needed for the shmpool structures */
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#define BLK_SIZE (((gd_segment*)gv_cur_region->dyn.addr)->blk_size)
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#define CLEANUP(XX) \
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{ \
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int rc; \
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\
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if (cc) \
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free(cc); \
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if (cs_data) \
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free(cs_data); \
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if (FD_INVALID != fd) \
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CLOSEFILE_RESET(fd, rc); /* resets "fd" to FD_INVALID */ \
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if (EXIT_ERR == XX) \
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UNLINK(path); \
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}
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#define SPRINTF_AND_PERROR(MESSAGE) \
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{ \
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save_errno = errno; \
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SPRINTF(errbuff, MESSAGE, path); \
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errno = save_errno; \
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PERROR(errbuff); \
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}
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2012-03-24 14:06:46 -04:00
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#define SPRINTF_AND_PERROR_MVS(MESSAGE) \
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{ \
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save_errno = errno; \
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2012-02-05 11:35:58 -05:00
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SPRINTF(errbuff, MESSAGE, path, realfiletag, TAG_BINARY); \
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2012-03-24 14:06:46 -04:00
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errno = save_errno; \
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PERROR(errbuff); \
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2012-02-05 11:35:58 -05:00
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}
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GBLREF gd_region *gv_cur_region;
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GBLREF sgmnt_addrs *cs_addrs;
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GBLREF sgmnt_data_ptr_t cs_data;
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2012-03-24 14:06:46 -04:00
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GBLREF uint4 gtmDebugLevel;
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error_def(ERR_NOSPACECRE);
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error_def(ERR_LOWSPACECRE);
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error_def(ERR_MUNOSTRMBKUP);
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2012-02-05 11:35:58 -05:00
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unsigned char mu_cre_file(void)
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{
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char *cc = NULL, path[MAX_FBUFF + 1], errbuff[512];
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unsigned char buff[DISK_BLOCK_SIZE];
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int fd = FD_INVALID, i, lower, upper, norm_vbn;
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ssize_t status;
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uint4 raw_dev_size; /* size of a raw device, in bytes */
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int4 blocks_for_create, blocks_for_extension, save_errno;
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GTM_BAVAIL_TYPE avail_blocks;
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file_control fc;
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mstr file;
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parse_blk pblk;
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unix_db_info udi_struct, *udi;
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char *fgets_res;
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gd_segment *seg;
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GTMCRYPT_ONLY(
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char datfile_hash[GTMCRYPT_HASH_LEN];
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int init_status;
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int crypt_status;
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2012-03-24 14:06:46 -04:00
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)
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2012-02-05 11:35:58 -05:00
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ZOS_ONLY(int realfiletag;)
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assert((-(SIZEOF(uint4) * 2) & SIZEOF_FILE_HDR_DFLT) == SIZEOF_FILE_HDR_DFLT);
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cs_addrs = &udi_struct.s_addrs;
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cs_data = (sgmnt_data_ptr_t)NULL; /* for CLEANUP */
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memset(&pblk, 0, SIZEOF(pblk));
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pblk.fop = (F_SYNTAXO | F_PARNODE);
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pblk.buffer = path;
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pblk.buff_size = MAX_FBUFF;
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file.addr = (char*)gv_cur_region->dyn.addr->fname;
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file.len = gv_cur_region->dyn.addr->fname_len;
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strncpy(path,file.addr,file.len);
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*(path+file.len) = '\0';
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if (is_raw_dev(path))
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{ /* do not use a default extension for raw device files */
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pblk.def1_buf = DEF_NODBEXT;
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pblk.def1_size = SIZEOF(DEF_NODBEXT) - 1;
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} else
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{
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pblk.def1_buf = DEF_DBEXT;
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pblk.def1_size = SIZEOF(DEF_DBEXT) - 1;
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}
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if (1 != (parse_file(&file, &pblk) & 1))
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{
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PRINTF("Error translating filename %s.\n", gv_cur_region->dyn.addr->fname);
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return EXIT_ERR;
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}
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path[pblk.b_esl] = 0;
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if (pblk.fnb & F_HAS_NODE)
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{ /* Remote node specification given */
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assert(pblk.b_node);
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PRINTF("Database file for region %s not created; cannot create across network.\n", path);
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return EXIT_WRN;
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}
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udi = &udi_struct;
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memset(udi, 0, SIZEOF(unix_db_info));
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udi->raw = is_raw_dev(pblk.l_dir);
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# ifdef GTM_CRYPT
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/* Check if this file is an encrypted database. If yes, do init */
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if (gv_cur_region->dyn.addr->is_encrypted)
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{
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INIT_PROC_ENCRYPTION(init_status);
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if (0 != init_status)
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{
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GC_GTM_PUTMSG(init_status, NULL);
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return EXIT_ERR;
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}
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}
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# endif
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if (udi->raw)
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{
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fd = OPEN(pblk.l_dir,O_EXCL | O_RDWR);
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if (FD_INVALID == fd)
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{
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SPRINTF_AND_PERROR("Error opening file %s\n");
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return EXIT_ERR;
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}
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if (-1 != (status = (ssize_t)lseek(fd, 0, SEEK_SET)))
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{
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DOREADRC(fd, buff, SIZEOF(buff), status);
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} else
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status = errno;
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if (0 != status)
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{
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SPRINTF_AND_PERROR("Error reading header for file %s\n");
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return EXIT_ERR;
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}
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2012-03-24 14:06:46 -04:00
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# ifdef __MVS__
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2012-02-05 11:35:58 -05:00
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if (-1 == gtm_zos_tag_to_policy(fd, TAG_BINARY, &realfiletag))
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SPRINTF_AND_PERROR_MVS("Error setting tag policy for file %s (%d) to %d\n");
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2012-03-24 14:06:46 -04:00
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# endif
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2012-02-05 11:35:58 -05:00
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if (!memcmp(buff, GDS_LABEL, STR_LIT_LEN(GDS_LABEL)))
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{
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char rsp[80];
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PRINTF("Database already exists on device %s\n", path);
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PRINTF("Do you wish to re-initialize (all current data will be lost) [y/n] ? ");
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FGETS(rsp, 79, stdin, fgets_res);
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if ('y' != *rsp)
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return EXIT_NRM;
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}
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PRINTF("Determining size of raw device...\n");
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for(i = 1; read(fd, buff, SIZEOF(buff)) == SIZEOF(buff);)
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{
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i *= 2;
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lseek(fd, (off_t)i * BUFSIZ, SEEK_SET);
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}
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lower = i / 2;
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upper = i;
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while ((lower + upper) / 2 != lower)
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{
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i = (lower + upper) / 2;
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lseek(fd, (off_t)i * BUFSIZ, SEEK_SET);
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if (read(fd, buff, SIZEOF(buff)) == SIZEOF(buff))
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lower = i;
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else
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upper = i;
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}
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raw_dev_size = i * BUFSIZ;
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} else
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{
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fd = OPEN3(pblk.l_dir, O_CREAT | O_EXCL | O_RDWR, 0600);
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if (FD_INVALID == fd)
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{
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SPRINTF_AND_PERROR("Error opening file %s\n");
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return EXIT_ERR;
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}
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2012-03-24 14:06:46 -04:00
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# ifdef __MVS__
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2012-02-05 11:35:58 -05:00
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if (-1 == gtm_zos_set_tag(fd, TAG_BINARY, TAG_NOTTEXT, TAG_FORCE, &realfiletag))
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SPRINTF_AND_PERROR_MVS("Error setting tag policy for file %s (%d) to %d\n");
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2012-03-24 14:06:46 -04:00
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# endif
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2012-02-05 11:35:58 -05:00
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if (0 != (save_errno = disk_block_available(fd, &avail_blocks, FALSE)))
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{
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errno = save_errno;
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SPRINTF_AND_PERROR("Error checking available disk space for %s\n");
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CLEANUP(EXIT_ERR);
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return EXIT_ERR;
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}
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seg = gv_cur_region->dyn.addr;
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/* blocks_for_create is in the unit of DISK_BLOCK_SIZE */
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blocks_for_create = (int4)(DIVIDE_ROUND_UP(SIZEOF_FILE_HDR_DFLT, DISK_BLOCK_SIZE) + 1 +
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(seg->blk_size / DISK_BLOCK_SIZE *
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((DIVIDE_ROUND_UP(seg->allocation, BLKS_PER_LMAP - 1)) + seg->allocation)));
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if (!(gtmDebugLevel & GDL_IgnoreAvailSpace))
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{ /* Bypass this space check if debug flag above is on. Allows us to create a large sparce DB
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* in space it could never fit it if wasn't sparse. Needed for some tests.
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*/
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if ((uint4)avail_blocks < blocks_for_create)
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{
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gtm_putmsg(VARLSTCNT(6) ERR_NOSPACECRE, 4, LEN_AND_STR(path), blocks_for_create,
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(uint4)avail_blocks);
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send_msg(VARLSTCNT(6) ERR_NOSPACECRE, 4, LEN_AND_STR(path), blocks_for_create,
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(uint4)avail_blocks);
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CLEANUP(EXIT_ERR);
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return EXIT_ERR;
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}
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2012-02-05 11:35:58 -05:00
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}
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blocks_for_extension = (seg->blk_size / DISK_BLOCK_SIZE *
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((DIVIDE_ROUND_UP(EXTEND_WARNING_FACTOR * seg->ext_blk_count, BLKS_PER_LMAP - 1))
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+ EXTEND_WARNING_FACTOR * seg->ext_blk_count));
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if ((uint4)(avail_blocks - blocks_for_create) < blocks_for_extension)
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{
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gtm_putmsg(VARLSTCNT(8) ERR_LOWSPACECRE, 6, LEN_AND_STR(path), EXTEND_WARNING_FACTOR, blocks_for_extension,
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DISK_BLOCK_SIZE, (uint4)(avail_blocks - blocks_for_create));
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send_msg(VARLSTCNT(8) ERR_LOWSPACECRE, 6, LEN_AND_STR(path), EXTEND_WARNING_FACTOR, blocks_for_extension,
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DISK_BLOCK_SIZE, (uint4)(avail_blocks - blocks_for_create));
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}
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}
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gv_cur_region->dyn.addr->file_cntl = &fc;
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memset(&fc, 0, SIZEOF(file_control));
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fc.file_info = (void*)&udi_struct;
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udi->fd = fd;
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cs_data = (sgmnt_data_ptr_t)malloc(SIZEOF_FILE_HDR_DFLT);
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memset(cs_data, 0, SIZEOF_FILE_HDR_DFLT);
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cs_data->createinprogress = TRUE;
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cs_data->semid = INVALID_SEMID;
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cs_data->shmid = INVALID_SHMID;
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/* We want our datablocks to start on what would be a block boundary within the file which will aid I/O
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* so pad the fileheader if necessary to make this happen.
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*/
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2012-02-05 11:35:58 -05:00
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norm_vbn = DIVIDE_ROUND_UP(SIZEOF_FILE_HDR_DFLT, DISK_BLOCK_SIZE) + 1;
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assert(START_VBN_CURRENT >= norm_vbn);
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cs_data->start_vbn = START_VBN_CURRENT;
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cs_data->free_space += (START_VBN_CURRENT - norm_vbn) * DISK_BLOCK_SIZE;
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cs_data->acc_meth = gv_cur_region->dyn.addr->acc_meth;
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if ((dba_mm == cs_data->acc_meth) && (gv_cur_region->jnl_before_image))
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{
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PRINTF("MM access method not compatible with BEFORE image journaling; Database file %s not created.\n", path);
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CLEANUP(EXIT_ERR);
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return EXIT_ERR;
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}
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if (udi->raw)
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{
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/* calculate total blocks, reduce to make room for the
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* database header (size rounded up to a block), then
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* make into a multiple of BLKS_PER_LMAP to have a complete bitmap
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* for each set of blocks.
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*/
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cs_data->trans_hist.total_blks = raw_dev_size - (uint4)ROUND_UP(SIZEOF_FILE_HDR_DFLT, DISK_BLOCK_SIZE);
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cs_data->trans_hist.total_blks /= (uint4)(((gd_segment *)gv_cur_region->dyn.addr)->blk_size);
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if (0 == (cs_data->trans_hist.total_blks - DIVIDE_ROUND_UP(cs_data->trans_hist.total_blks, BLKS_PER_LMAP - 1)
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% (BLKS_PER_LMAP - 1)))
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cs_data->trans_hist.total_blks -= 1; /* don't create a bitmap with no data blocks */
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cs_data->extension_size = 0;
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PRINTF("Raw device size is %dK, %d GDS blocks\n",
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raw_dev_size / 1000,
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cs_data->trans_hist.total_blks);
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} else
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{
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cs_data->trans_hist.total_blks = gv_cur_region->dyn.addr->allocation;
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/* There are (bplmap - 1) non-bitmap blocks per bitmap, so add (bplmap - 2) to number of non-bitmap blocks
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* and divide by (bplmap - 1) to get total number of bitmaps for expanded database. (must round up in this
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* manner as every non-bitmap block must have an associated bitmap)
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*/
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cs_data->trans_hist.total_blks += DIVIDE_ROUND_UP(cs_data->trans_hist.total_blks, BLKS_PER_LMAP - 1);
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cs_data->extension_size = gv_cur_region->dyn.addr->ext_blk_count;
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}
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# ifdef GTM_CRYPT
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/* Check if this file is an encrypted database. If yes, do init */
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|
|
|
if (gv_cur_region->dyn.addr->is_encrypted)
|
|
|
|
{
|
|
|
|
GTMCRYPT_HASH_GEN(path, STRLEN(path), datfile_hash, crypt_status);
|
|
|
|
if (0 != crypt_status)
|
|
|
|
{
|
|
|
|
GC_GTM_PUTMSG(crypt_status, gv_cur_region->dyn.addr->fname);
|
|
|
|
CLEANUP(EXIT_ERR);
|
|
|
|
return EXIT_ERR;
|
|
|
|
}
|
|
|
|
memcpy(cs_data->encryption_hash, datfile_hash, GTMCRYPT_HASH_LEN);
|
|
|
|
cs_data->is_encrypted = TRUE; /* Mark this file as encrypted */
|
|
|
|
ALLOC_BUFF_GET_ENCR_KEY(cs_addrs, cs_data->encryption_hash, BLK_SIZE, crypt_status);
|
|
|
|
if (0 != crypt_status)
|
|
|
|
{
|
|
|
|
GC_GTM_PUTMSG(crypt_status, (gv_cur_region->dyn.addr->fname));
|
|
|
|
CLEANUP(EXIT_ERR);
|
|
|
|
return EXIT_ERR;
|
|
|
|
}
|
|
|
|
} else
|
|
|
|
cs_data->is_encrypted = FALSE;
|
|
|
|
# endif
|
|
|
|
mucregini(cs_data->trans_hist.total_blks);
|
|
|
|
cs_data->createinprogress = FALSE;
|
|
|
|
LSEEKWRITE(udi->fd, 0, cs_data, SIZEOF_FILE_HDR_DFLT, status);
|
|
|
|
if (0 != status)
|
|
|
|
{
|
|
|
|
SPRINTF_AND_PERROR("Error writing out header for file %s\n");
|
|
|
|
CLEANUP(EXIT_ERR);
|
|
|
|
return EXIT_ERR;
|
|
|
|
}
|
|
|
|
cc = (char*)malloc(DISK_BLOCK_SIZE);
|
|
|
|
memset(cc, 0, DISK_BLOCK_SIZE);
|
|
|
|
LSEEKWRITE(udi->fd,
|
|
|
|
(cs_data->start_vbn - 1) * DISK_BLOCK_SIZE + ((off_t)(cs_data->trans_hist.total_blks) * cs_data->blk_size),
|
|
|
|
cc,
|
|
|
|
DISK_BLOCK_SIZE,
|
|
|
|
status);
|
|
|
|
if (0 != status)
|
|
|
|
{
|
|
|
|
SPRINTF_AND_PERROR("Error writing out end of file %s\n");
|
|
|
|
CLEANUP(EXIT_ERR);
|
|
|
|
return EXIT_ERR;
|
|
|
|
}
|
|
|
|
if ((!udi->raw) && (-1 == CHMOD(pblk.l_dir, 0666)))
|
|
|
|
{
|
|
|
|
SPRINTF_AND_PERROR("Error changing file mode on file %s\n");
|
|
|
|
CLEANUP(EXIT_WRN);
|
|
|
|
return EXIT_WRN;
|
|
|
|
}
|
|
|
|
if ((32 * 1024 - SIZEOF(shmpool_blk_hdr)) < cs_data->blk_size)
|
|
|
|
gtm_putmsg(VARLSTCNT(5) ERR_MUNOSTRMBKUP, 3, RTS_ERROR_STRING(path), 32 * 1024 - DISK_BLOCK_SIZE);
|
|
|
|
util_out_print("Created file !AD", TRUE, RTS_ERROR_STRING(path));
|
|
|
|
CLEANUP(EXIT_NRM);
|
|
|
|
return EXIT_NRM;
|
|
|
|
}
|