Files
amiga-smbfs/source_code/main.c
T
obarthel 140ce82208 Updated to version 2.22
The memory pool initialization should have happened after having initialized the command line argument data, not before it.

I broke the automatic device name ("smbfs0:" .. "smbfs99:") initialization at some point. Ouch :-(  The revised code now starts with "smbfs:", then tries "smbfs0:" through "smbfs99:" until it has picked a unique file system device name. This is consistent with the old behaviour of trying to use "smbfs:" if no device specific name has been requested.
2019-03-09 14:58:55 +01:00

11389 lines
254 KiB
C

/*
* :ts=4
*
* SMB file system wrapper for AmigaOS, using the AmiTCP V3 API
*
* Copyright (C) 2000-2019 by Olaf 'Olsen' Barthel <obarthel -at- gmx -dot- net>
*
* This program is free software; you can redistribute it and/or modify
* it under the terms of the GNU General Public License as published by
* the Free Software Foundation; either version 2 of the License, or
* (at your option) any later version.
*
* This program is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
* GNU General Public License for more details.
*
* You should have received a copy of the GNU General Public License
* along with this program; if not, write to the Free Software
* Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
*/
/*
* cpr smbfs.debug domain=workgroup user=olsen password=... volume=olsen //felix/olsen
* cpr smbfs.debug dumpsmb user=guest volume=amiga //windows7-amiga/Users/Public
* smbfs debuglevel=2 debugfile=ram:windows7.log user=guest volume=amiga //windows7-amiga/Users/Public
* copy "amiga:Public/Documents/Amiga Files/Shared/dir/Windows-Export/LP2NRFP.h" ram:
* smbfs.debug user=guest volume=sicherung //192.168.1.76/sicherung-smb
* smbfs maxtransmit=16600 debuglevel=2 dumpsmb dumpsmblevel=2 domain=workgroup user=olsen password=... volume=olsen //felix/olsen
* Fritz!Box: smbfs debuglevel=2 debugfile=ram:fritz.nas.log user=nas password=nas volume=fritz.nas //fritzbox-3272/fritz.nas
* Samba 4.6.7: smbfs debuglevel=2 debugfile=ram:ubuntu-17.log volume=ubuntu-test //ubuntu-17-olaf/test
* Samba 4.7.6: smbfs debuglevel=2 debugfile=ram:ubuntu-18.log volume=ubuntu-test //ubuntu-18-olaf/test
* Samba 4.7.6: smbfs debuglevel=2 debugfile=ram:ubuntu-18.log cachesize=30 volume=ubuntu-etc //ubuntu-18-olaf/etc
* Samba 3.0.25: smbfs debuglevel=2 debugfile=ram:samba-3.0.25.log user=olsen password=... volume=olsen //192.168.1.118/olsen
* Samba 3.0.25: smbfs debuglevel=2 debugfile=ram:samba-3.0.25.log smb://olsen:...@192.168.1.118/olsen
*
* diskspeed drive olsen:Documents dir seek fast byte nocpu
*/
#include "smbfs.h"
/****************************************************************************/
#include "smb_abstraction.h"
#include "cp437.h"
#include "cp850.h"
#include "errors.h"
#include "quad_math.h"
#include "dump_smb.h"
#include "parse-smb-url.h"
/****************************************************************************/
#include <smb/smb_fs_sb.h>
#include <smb/smb_fs.h>
#include <smb/smbno.h>
#include <smb/smb.h>
/****************************************************************************/
#include "smbfs_rev.h"
TEXT Version[] = VERSTAG;
/****************************************************************************/
/* The fully optimized build for SAS/C needs the following
* definition because it uses the so-called "small data model"
* for accessing local program data.
*/
#if defined(__SASC) && DEBUG == 0
#define SAVE_DS __saveds
#else
#define SAVE_DS
#endif /* __SASC && !DEBUG */
/****************************************************************************/
/* This macro lets us long-align structures on the stack */
#define D_S(type, name) \
UBYTE a_##name[sizeof(type) + 3]; \
type * name = (type *)((ULONG)(a_##name + 3) & ~3UL)
/****************************************************************************/
/* Difference between January 1st 1970 and January 1st 1978 in seconds,
* which is needed because the Amiga system time base uses 1978 and we
* have to deal with Unix time information.
*/
#define UNIX_TIME_OFFSET 252460800
/* Maximum length of a file name, as supported by AmigaDOS. */
#define MAX_FILENAME_LEN 255
/****************************************************************************/
/* This is the root of the SMB directory path, sort of like the
* equivalent to ":" as used with AmigaDOS.
*/
#define SMB_ROOT_DIR_NAME "\\"
/* Individual directory/file names are separated by the backslash for SMB
* path names (actually, SMB uses the MS-DOS path separator). AmigaDOS
* uses the slash.
*/
#define SMB_PATH_SEPARATOR '\\'
/****************************************************************************/
/* This is for use with the ReadArgs() argument processing. */
typedef STRPTR KEY; /* PARAMETER/K, /A, /F */
typedef LONG * NUMBER; /* PARAMETER/N */
typedef LONG SWITCH; /* PARAMETER/S */
/****************************************************************************/
/* The internal data structure which ties an AmigaDOS FileHandle to the
* smbfs representation.
*/
struct FileNode
{
struct MinNode fn_MinNode;
#ifdef USE_SPLAY_TREE
struct splay_node fn_SplayNameNode;
struct splay_node fn_SplayAddressNode;
#endif /* USE_SPLAY_TREE */
ULONG fn_Magic; /* Magic number which helps to
* identify this data structure
* as being managed by smbfs.
* We use this as a safety measure
* in case smbfs receives a file
* handle that it did not create.
*/
struct DosList * fn_Volume; /* Points back to the volume which
* the file is associated with.
*/
struct FileHandle * fn_Handle; /* The AmigaDOS file handle which
* this data structure is associated
* with.
*/
QUAD fn_OffsetQuad; /* Current file read/write position,
* as an unsigned 64 bit integer.
*/
LONG fn_Mode; /* File access mode, e.g. MODE_NEWFILE,
* MODE_OLDFILE, MODE_READWRITE.
*/
smba_file_t * fn_File; /* The SMB file system interface to
* the remote file.
*/
STRPTR fn_FullName; /* The name of the file at the time
* it was opened. Note that this
* includes the full path, using the
* SMB path syntax.
*/
};
/****************************************************************************/
/* The internal data structure which ties an AmigaDOS FileLock to the
* smbfs representation. smbfs creates this and returns a pointer to
* the ln_FileLock member.
*/
struct LockNode
{
struct MinNode ln_MinNode;
#ifdef USE_SPLAY_TREE
struct splay_node ln_SplayNameNode;
struct splay_node ln_SplayAddressNode;
#endif /* USE_SPLAY_TREE */
ULONG ln_Magic; /* Magic number which helps to
* identify this data structure
* as being managed by smbfs.
* We use this as a safety measure
* in case smbfs receives a file
* lock that it did not create.
*/
struct FileLock ln_FileLock;
/* The AmigaDOS file lock which this
* data structure is associated with.
*/
smba_file_t * ln_File; /* The SMB file system interface to
* the remote file or directory.
*/
STRPTR ln_FullName;
/* The name of the file or directory
* at the time it was accessed. Note
* that this includes the full path,
* using the SMB path syntax.
*/
const struct MsgPort * ln_LastUser;
/* This identifies the last Process
* which used this file lock. We need
* this to handle deleting from a
* directory and scanning that directory
* at the same time more smoothly.
*/
BOOL ln_RestartExamine;
/* If this a file lock on a directory,
* this flag states if directory
* scanning in progress needs to
* start over.
*/
};
/****************************************************************************/
/* The minimum operating system version we require to work. */
#define MINIMUM_OS_VERSION 37 /* Kickstart 2.04 or better */
/*#define MINIMUM_OS_VERSION 39*/ /* Kickstart 3.0 or better */
/****************************************************************************/
/* Careful: the memory pool routines in amiga.lib are available only to
* SAS/C and similar compilers (not necessarily to GCC).
*/
#if defined(__GNUC__) && (MINIMUM_OS_VERSION < 39)
#undef MINIMUM_OS_VERSION
#define MINIMUM_OS_VERSION 39
#endif /* __GNUC__ */
/****************************************************************************/
/* If possible, we want to use the memory pool functions in amiga.lib rather
* than those in ROM. The V37 build has to include these in the program itself
* since Kickstart 2.04 lacks them.
*/
#if (MINIMUM_OS_VERSION < 39)
/* These are in amiga.lib */
APTR ASM AsmCreatePool(REG(d0,ULONG memFlags),REG(d1,ULONG puddleSize),REG(d2,ULONG threshSize),REG(a6,struct Library * SysBase));
void ASM AsmDeletePool(REG(a0,APTR poolHeader),REG(a6,struct Library * SysBase));
APTR ASM AsmAllocPooled(REG(a0,APTR poolHeader),REG(d0,ULONG memSize),REG(a6,struct Library * SysBase));
void ASM AsmFreePooled(REG(a0,APTR poolHeader),REG(a1,APTR memory),REG(d0,ULONG memSize),REG(a6,struct Library * SysBase));
#define CreatePool(memFlags,puddleSize,threshSize) AsmCreatePool((memFlags),(puddleSize),(threshSize),SysBase)
#define DeletePool(poolHeader) AsmDeletePool((poolHeader),SysBase)
#define AllocPooled(poolHeader,memSize) AsmAllocPooled((poolHeader),(memSize),SysBase)
#define FreePooled(poolHeader,memory,memSize) AsmFreePooled((poolHeader),(memory),(memSize),SysBase)
#endif /* MINIMUM_OS_VERSION */
/****************************************************************************/
/* Forward declarations for local routines. */
static LONG main(void);
static ULONG get_stack_size(void);
static void stack_usage_init(struct StackSwapStruct * stk);
static ULONG stack_usage_exit(const struct StackSwapStruct * stk);
static LONG CVSPrintf(const TEXT * format_string, APTR args);
static int LocalVSNPrintf(STRPTR buffer, int limit, const TEXT * formatString, APTR args);
static void cleanup(void);
static BOOL setup(const TEXT * program_name, const TEXT * service, const TEXT * workgroup, STRPTR username, STRPTR opt_password, BOOL opt_change_username_case, BOOL opt_change_password_case, const TEXT * opt_clientname, const TEXT * opt_servername, int opt_cachesize, int opt_cache_tables, int opt_max_transmit, int opt_timeout, LONG *opt_time_zone_offset, LONG *opt_dst_offset, BOOL opt_raw_smb, BOOL opt_unicode, BOOL opt_prefer_core_protocol, BOOL opt_session_setup_delay_unicode, BOOL opt_write_behind, int opt_smb_request_write_threshold, int opt_smb_request_read_threshold, BOOL scatter_gather, BOOL tcp_no_delay, int socket_receive_buffer_size, int socket_send_buffer_size, const TEXT * device_name, const TEXT * volume_name, BOOL add_volume, const TEXT * translation_file);
static void file_system_handler(BOOL raise_priority, const TEXT * volume_name, const TEXT * service_name);
/****************************************************************************/
struct Library * SysBase;
struct Library * DOSBase;
struct Library * UtilityBase;
struct Library * IntuitionBase;
struct Library * SocketBase;
struct Library * LocaleBase;
struct Library * TimerBase;
struct Library * IconBase;
/****************************************************************************/
#if defined(__amigaos4__)
/****************************************************************************/
struct ExecIFace * IExec;
struct DOSIFace * IDOS;
struct UtilityIFace * IUtility;
struct IntuitionIFace * IIntuition;
struct SocketIFace * ISocket;
struct LocaleIFace * ILocale;
struct TimerIFace * ITimer;
struct IconIFace * IIcon;
/****************************************************************************/
#endif /* __amigaos4__ */
/****************************************************************************/
struct timerequest * TimerRequest;
struct MsgPort * TimerPort;
BOOL TimerTicking;
/****************************************************************************/
struct Locale * Locale;
/****************************************************************************/
int errno;
int h_errno;
/****************************************************************************/
int profile_nest_count;
/****************************************************************************/
static struct DosList * DeviceNode;
static BOOL DeviceNodeAdded;
static struct DosList * VolumeNode;
static BOOL VolumeNodeAdded;
static struct MsgPort * FileSystemPort;
static smba_server_t * ServerData;
static const TEXT * ErrorOutput;
static BOOL Quit;
static BOOL Quiet;
static BOOL CaseSensitive;
static BOOL OmitHidden;
static BOOL DisableExAll;
static LONG DSTOffset;
static LONG TimeZoneOffset;
static BOOL OverrideLocaleTimeZone;
static BOOL WriteProtected;
static ULONG WriteProtectKey;
static BOOL ReadOnly;
static struct MinList FileList;
static struct MinList LockList;
#ifdef USE_SPLAY_TREE
static struct splay_tree FileAddressTree;
static struct splay_tree FileNameTree;
static struct splay_tree LockAddressTree;
static struct splay_tree LockNameTree;
#endif /* USE_SPLAY_TREE */
static APTR MemoryPool;
static ULONG total_memory_allocated;
static ULONG max_memory_allocated;
static struct RDArgs * Parameters;
static struct DiskObject * Icon;
static struct WBStartup * WBStartup;
static struct MinList ErrorList;
static STRPTR NewProgramName;
static BOOL TranslateNames;
static TEXT map_amiga_to_smb_name[256];
static TEXT map_smb_to_amiga_name[256];
static LONG MaxNameLen;
static BOOL file_system_disabled;
/****************************************************************************/
/* This the default user name needed if no specific user name is provided.
* Because the user name may have to be converted to all-upper-case characters
* it must be writable (and not marked as "const").
*/
static TEXT guest_name[] = "GUEST";
/****************************************************************************/
#if defined(__amigaos4__)
/* The AmigaOS 2.x/3.x version needs about 20000 bytes of stack,
* which is allocated at runtime. This is how it's done with
* AmigaOS 4.x, for which the shell allocates the stack
* before launching the program.
*/
const char stack_size_cookie[] = "$STACK: 30000";
#endif /* __amigaos4__ */
/****************************************************************************/
extern int STDARGS swap_stack_and_call(struct StackSwapStruct * stk,APTR function);
/****************************************************************************/
LONG SAVE_DS
_start(STRPTR args, LONG args_length, struct ExecBase * exec_base)
{
struct StackSwapStruct * stk = NULL;
APTR new_stack = NULL;
LONG minimum_stack_size = 20000;
LONG new_stack_size = 0;
struct Process * this_process;
LONG result = RETURN_FAIL;
#if defined(__amigaos4__)
{
SysBase = (struct Library *)exec_base;
IExec = (struct ExecIFace *)((struct ExecBase *)SysBase)->MainInterface;
}
#else
{
SysBase = (struct Library *)AbsExecBase;
}
#endif /* __amigaos4__ */
/* Pick up the Workbench startup message, if
* there is one.
*/
this_process = (struct Process *)FindTask(NULL);
if(this_process->pr_CLI == ZERO)
{
WaitPort(&this_process->pr_MsgPort);
WBStartup = (struct WBStartup *)GetMsg(&this_process->pr_MsgPort);
}
else
{
WBStartup = NULL;
}
/* Open the libraries we need and check
* whether we could get them.
*/
DOSBase = OpenLibrary("dos.library",0);
UtilityBase = OpenLibrary("utility.library",37);
#if defined(__amigaos4__)
{
if(DOSBase != NULL)
{
IDOS = (struct DOSIFace *)GetInterface(DOSBase, "main", 1, 0);
if(IDOS == NULL)
{
CloseLibrary(DOSBase);
DOSBase = NULL;
}
}
if(UtilityBase != NULL)
{
IUtility = (struct UtilityIFace *)GetInterface(UtilityBase, "main", 1, 0);
if(IUtility == NULL)
{
CloseLibrary(UtilityBase);
UtilityBase = NULL;
}
}
}
#endif /* __amigaos4__ */
if(UtilityBase == NULL || DOSBase == NULL || DOSBase->lib_Version < MINIMUM_OS_VERSION)
{
/* Complain loudly if this is not the operating
* system version we expected.
*/
if(DOSBase != NULL && this_process->pr_CLI != ZERO)
{
STRPTR msg;
#if (MINIMUM_OS_VERSION < 39)
{
msg = "AmigaOS 2.04 or higher required.\n";
}
#else
{
msg = "AmigaOS 3.0 or higher required.\n";
}
#endif /* MINIMUM_OS_VERSION */
Write(Output(),msg,strlen(msg));
}
goto out;
}
/* For AmigaOS4 we expect the stack size to be
* sufficient, because of the "STACK" string
* cookie.
*/
#if defined(__amigaos4__)
{
result = main();
}
/* For AmigaOS 2.x/3.x we check how much stack size the
* program has available and, if necessary, allocate
* a larger stack and use that instead.
*/
#else
{
#if defined(__SASC) && defined(_PROFILE) && _PROFILE
{
extern int __stdargs _STI_150_Sprof(void);
_STI_150_Sprof();
}
#endif
/* Not enough stack size available? */
if(get_stack_size() < minimum_stack_size)
{
/* Make the new stack size a multiple of 32 bytes. */
new_stack_size = 32 + ((minimum_stack_size + 31UL) & ~31UL);
/* Allocate the new stack swapping data structure
* and the stack space separately.
*/
stk = AllocMem(sizeof(*stk),MEMF_PUBLIC|MEMF_ANY);
if(stk == NULL)
goto out;
new_stack = AllocMem(new_stack_size,MEMF_ANY);
if(new_stack == NULL)
goto out;
/* Fill in the lower and upper bounds, then take care of
* the stack pointer itself.
*/
stk->stk_Lower = new_stack;
stk->stk_Upper = ((ULONG)new_stack) + new_stack_size;
stk->stk_Pointer = (APTR)(stk->stk_Upper - 32);
/* Testing: fill the stack with a preset pattern, so that we
* can measure later how much stack space was used.
*/
/* stack_usage_init(stk); */
result = swap_stack_and_call(stk,(APTR)main);
/* Testing: figure out how much stack space was used. */
/* Printf("stack size used = %lu\n",stack_usage_exit(stk)); */
}
/* Sufficient stack space should be available. */
else
{
result = main();
}
#if defined(__SASC) && defined(_PROFILE) && _PROFILE
{
extern void __stdargs _STD_150_Sprof(void);
_STD_150_Sprof();
}
#endif
}
#endif /* __amigaos4__ */
out:
if(stk != NULL)
FreeMem(stk, sizeof(*stk));
if(new_stack != NULL && new_stack_size > 0)
FreeMem(new_stack,new_stack_size);
#if defined(__amigaos4__)
{
if(IUtility != NULL)
{
DropInterface((struct Interface *)IUtility);
IUtility = NULL;
}
}
#endif /* __amigaos4__ */
if(UtilityBase != NULL)
{
CloseLibrary(UtilityBase);
UtilityBase = NULL;
}
#if defined(__amigaos4__)
{
if(IDOS != NULL)
{
DropInterface((struct Interface *)IDOS);
IDOS = NULL;
}
}
#endif /* __amigaos4__ */
if(DOSBase != NULL)
{
CloseLibrary(DOSBase);
DOSBase = NULL;
}
if(WBStartup != NULL)
{
Forbid();
ReplyMsg((struct Message *)WBStartup);
}
return(result);
}
/****************************************************************************/
/* Figure out how much stack size is available to the running
* Task. Returns the size in bytes.
*/
static ULONG
get_stack_size(void)
{
struct Task * tc = FindTask(NULL);
ULONG upper,lower;
ULONG result;
/* How much stack size was provided? */
upper = (ULONG)tc->tc_SPUpper;
lower = (ULONG)tc->tc_SPLower;
result = upper - lower;
return(result);
}
/****************************************************************************/
/* This byte value is used to detect how much stack size
* was being used.
*/
#define STACK_FILL_COOKIE 0xA1
/****************************************************************************/
/* Testing: Fill the stack memory with a well-defined value which can later
* be used to figure out how much stack space was used by the program.
* This is needed by stack_usage_exit().
*/
static void
stack_usage_init(struct StackSwapStruct * stk)
{
size_t stack_size = ((ULONG)stk->stk_Upper - (ULONG)stk->stk_Lower);
memset(stk->stk_Lower,STACK_FILL_COOKIE,stack_size);
}
/* Testing: Check how much stack space was used by looking at where
* the test pattern previously written to the stack memory was
* overwritten. Returns how much space was used (in bytes).
*/
static ULONG
stack_usage_exit(const struct StackSwapStruct * stk)
{
const UBYTE * m = (const UBYTE *)stk->stk_Lower;
size_t stack_size = ((ULONG)stk->stk_Upper - (ULONG)stk->stk_Lower);
size_t unused_stack_space,i;
unused_stack_space = 0;
/* Figure out how much of the stack was used by checking
* if the fill pattern was overwritten.
*/
for(i = 0 ; i < stack_size ; i++)
{
/* Strangely, the first long word is always trashed,
* even if the stack doesn't grow down this far...
*/
if(i > sizeof(LONG) && m[i] != STACK_FILL_COOKIE)
break;
unused_stack_space++;
}
return(stack_size - unused_stack_space);
}
/****************************************************************************/
/* Find out which switch keyword corresponds to TRUE or FALSE,
* and fall back onto a default value if no keyword was provided,
* or the keyword provided does not match what we have.
*/
static LONG
get_switch_status(const TEXT * value,LONG default_value)
{
LONG result = default_value;
if(value != NULL)
{
const struct { const TEXT * key; BOOL value; } options[] =
{
{ "yes", TRUE },
{ "true", TRUE },
{ "on", TRUE },
{ "no", FALSE },
{ "false", FALSE },
{ "off", FALSE },
{ NULL, 0 }
};
int i;
for(i = 0 ; options[i].key != NULL ; i++)
{
if(Stricmp(value, options[i].key) == SAME)
{
result = options[i].value;
break;
}
}
}
return(result);
}
/****************************************************************************/
/* Shortcut for retrieving the value of an icon tool type, even if it
* has more than one name.
*/
static STRPTR
get_icon_tool_type_value(TEXT * name,TEXT * alternative_name)
{
STRPTR value = NULL;
if(Icon != NULL)
{
value = FindToolType(Icon->do_ToolTypes, name);
if(value == NULL && alternative_name != NULL)
value = FindToolType(Icon->do_ToolTypes, alternative_name);
}
return(value);
}
/****************************************************************************/
/* This is the traditional main() program. */
static LONG
main(void)
{
struct
{
KEY Workgroup;
KEY UserName;
KEY Password;
KEY ChangeUserNameCase;
KEY ChangePasswordCase;
SWITCH ChangeCase;
SWITCH CaseSensitive;
SWITCH OmitHidden;
SWITCH Quiet;
SWITCH ReadOnly;
SWITCH RaisePriority;
SWITCH SetEnv;
KEY ClientName;
KEY ServerName;
KEY DeviceName;
KEY VolumeName;
KEY AddVolume;
NUMBER MaxNameLen;
NUMBER CacheSize;
NUMBER CacheTables;
NUMBER CacheExpires;
SWITCH DisableExAll;
NUMBER MaxTransmit;
NUMBER Timeout;
NUMBER TimeZoneOffset;
NUMBER DSTOffset;
KEY ErrorOutput;
KEY Protocol;
SWITCH NetBIOSTransport;
SWITCH WriteBehind;
NUMBER WriteThreshold;
NUMBER ReadThreshold;
KEY ScatterGather;
SWITCH TCPNoDelay;
KEY TCPDelay;
NUMBER SocketReceiveBuf;
NUMBER SocketSendBuf;
KEY SessionSetup;
KEY Unicode;
SWITCH CP437;
SWITCH CP850;
KEY TranslationFile;
KEY Service;
NUMBER DebugLevel;
KEY DebugFile;
SWITCH DumpSMB;
NUMBER DumpSMBLevel;
KEY DumpSMBFile;
} args;
STRPTR cmd_template =
"DOMAIN=WORKGROUP/K,"
"USER=USERNAME/K,"
"PASSWORD/K,"
"CHANGEUSERNAMECASE/K,"
"CHANGEPASSWORDCASE/K,"
"CHANGECASE/S,"
"CASE=CASESENSITIVE/S,"
"OMITHIDDEN/S,"
"QUIET/S,"
"READONLY/S,"
"RAISEPRIORITY/S,"
"SETENV/S,"
"CLIENT=CLIENTNAME/K,"
"SERVER=SERVERNAME/K,"
"DEVICE=DEVICENAME/K,"
"VOLUME=VOLUMENAME/K,"
"ADDVOLUME/K,"
"MAXNAMELEN/N/K,"
"CACHE=CACHESIZE/N/K,"
"CACHETABLES/N/K,"
"CACHEEXPIRES/N/K,"
"DISABLEEXALL/S,"
"MAXTRANSMIT/N/K,"
"TIMEOUT/N/K,"
"TZ=TIMEZONEOFFSET/N/K,"
"DST=DSTOFFSET/N/K,"
"ERROROUTPUT/K,"
"PROTOCOL/K,"
"NETBIOS/S,"
"WRITEBEHIND/S,"
"WRITETHRESHOLD/N/K,"
"READTHRESHOLD/N/K,"
"SCATTERGATHER/K,"
"TCP_NODELAY=TCPNODELAY/S,"
"TCPDELAY/K,"
"SO_RCVBUF=SOCKETRECEIVEBUFFER/N/K,"
"SO_SNDBUF=SOCKETSENDBUFFER/N/K,"
"SESSIONSETUP/K,"
"UNICODE/K,"
"CP437/S,"
"CP850/S,"
"TRANSLATE=TRANSLATIONFILE/K,"
"SHARE=SERVICE/A,"
"DEBUGLEVEL=DEBUG/N/K,"
"DEBUGFILE/K,"
"DUMPSMB/S,"
"DUMPSMBLEVEL/N/K,"
"DUMPSMBFILE/K";
BPTR debug_file = ZERO;
BOOL close_debug_file = FALSE;
TEXT program_name[MAX_FILENAME_LEN+1];
LONG result = RETURN_FAIL;
LONG tz_number, dst_number, debug_number;
LONG cache_size = 0;
LONG cache_tables = 1;
LONG max_transmit = -1;
LONG smb_write_threshold = 0;
LONG smb_read_threshold = 0;
LONG timeout = 0;
LONG socket_receive_buffer = 0;
LONG socket_send_buffer = 0;
TEXT env_protocol[8];
TEXT env_workgroup_name[17];
TEXT env_user_name[64];
TEXT env_password[64];
struct smb_url_args * smb_url_args = NULL;
/* Don't emit any debugging output before we are ready. */
SETDEBUGLEVEL(0);
/* This needs to be set up properly for report_error()
* to work. The cleanup() function will eventually
* call it.
*/
NewList((struct List *)&ErrorList);
/* The command parameters will be filled in either from
* icon tool types or from the CLI command line arguments.
*/
memset(&args,0,sizeof(args));
/* Make sure that we can allocate memory from the
* local pool.
*/
MemoryPool = CreatePool(MEMF_ANY|MEMF_PUBLIC, 4096, 4096);
if(MemoryPool == NULL)
{
report_error("Could not create memory pool.");
goto out;
}
/* If this program was launched from Workbench, the
* command parameters will have to be read from the
* icon tool types.
*/
if(WBStartup != NULL)
{
TEXT * smb_url = NULL;
TEXT * icon_file_name;
BPTR icon_file_lock;
STRPTR str;
BPTR old_dir;
int size;
int n;
/* Get the name of the program, as it was launched
* from Workbench. We actually prefer the name of
* the first project file, if there is one.
*/
if(WBStartup->sm_NumArgs > 1)
n = 1;
else
n = 0;
icon_file_name = WBStartup->sm_ArgList[n].wa_Name;
icon_file_lock = WBStartup->sm_ArgList[n].wa_Lock;
strlcpy(program_name,FilePart(icon_file_name),sizeof(program_name));
SETPROGRAMNAME(program_name);
/* Now open icon.library and read that icon. */
IconBase = OpenLibrary("icon.library",0);
#if defined(__amigaos4__)
{
if(IconBase != NULL)
{
IIcon = (struct IconIFace *)GetInterface(IconBase, "main", 1, 0);
if(IIcon == NULL)
{
CloseLibrary(IconBase);
IconBase = NULL;
}
}
}
#endif /* __amigaos4__ */
if(IconBase == NULL)
{
report_error("Could not open 'icon.library'.");
goto out;
}
old_dir = CurrentDir(icon_file_lock);
Icon = GetDiskObject(icon_file_name);
CurrentDir(old_dir);
if(Icon == NULL)
{
report_error("Icon file for '%s' not found.", icon_file_name);
goto out;
}
/* Only input validation errors are reported below. */
result = RETURN_ERROR;
/* Get the debug options ready before we will deal
* with the remaining parameters.
*/
#if DEBUG
{
str = get_icon_tool_type_value("DEBUG","DEBUGLEVEL");
if(str != NULL)
{
if(StrToLong(str,&debug_number) == -1 || debug_number < 0)
{
report_error("Invalid number '%s' for 'DEBUG' parameter.",str);
goto out;
}
args.DebugLevel = &debug_number;
}
/* Configure the debugging options. */
if(args.DebugLevel != NULL)
SETDEBUGLEVEL(*args.DebugLevel);
else
SETDEBUGLEVEL(0);
args.DebugFile = get_icon_tool_type_value("DEBUGFILE",NULL);
if(args.DebugFile != NULL)
{
/* Try to append the output to an existing file
* or create a new file instead.
*/
debug_file = Open(args.DebugFile,MODE_READWRITE);
if(debug_file != ZERO)
{
D_S(struct FileInfoBlock, fib);
SetVBuf(debug_file, NULL, BUF_LINE, 512);
Seek(debug_file,0,OFFSET_END);
close_debug_file = TRUE;
/* If the debug file is not empty, add a few
* line feeds to it, so that any new output
* will be separated from the old contents.
*/
if(ExamineFH(debug_file, fib) && fib->fib_Size > 0)
FPrintf(debug_file,"\n\n");
SETDEBUGFILE(debug_file);
D(("%s (%s)", VERS, DATE));
}
}
}
#else
{
if(get_icon_tool_type_value("DEBUG","DEBUGLEVEL") != NULL || get_icon_tool_type_value("DEBUGFILE",NULL) != NULL)
{
report_error("This version of the smbfs program has no built-in debug support.");
goto out;
}
}
#endif /* DEBUG */
/* Examine the icon's tool types and use the
* information to fill the startup parameter
* data structure.
*/
args.Service = get_icon_tool_type_value("SERVICE", "SHARE");
if(args.Service == NULL)
{
report_error("'SERVICE' parameter needs an argument.");
goto out;
}
/* Check if the service name is an SMB url. */
if(could_be_smb_url(args.Service))
{
smb_url = (TEXT *)args.Service;
smb_url_args = parse_smb_url_args(smb_url);
if(smb_url_args == NULL)
{
report_error("Not enough memory.");
goto out;
}
}
if(smb_url_args != NULL)
{
/* We need both a server and a share name for the
* SMB URL to be useful.
*/
if(smb_url_args->server != NULL && smb_url_args->share != NULL)
{
STRPTR new_service;
int new_service_size;
/* Combine share name, an optional port number/service name
* and the share name.
*/
new_service_size = 1 +
2 + strlen(smb_url_args->server) +
1 + strlen(smb_url_args->share);
if(smb_url_args->port != NULL)
new_service_size += 1 + strlen(smb_url_args->port);
new_service = malloc(new_service_size);
if(new_service != NULL)
{
strlcpy(new_service, "//", new_service_size);
strlcat(new_service, smb_url_args->server, new_service_size);
if(smb_url_args->port != NULL)
{
strlcat(new_service, ":", new_service_size);
strlcat(new_service, smb_url_args->port, new_service_size);
}
strlcat(new_service, "/", new_service_size);
strlcat(new_service, smb_url_args->share, new_service_size);
D(("SMB URL translates into service '%s'.", new_service));
args.Service = new_service;
}
else
{
report_error("Not enough memory.");
goto out;
}
}
else
{
report_error("Service '%s' lacks a complete server and share description.", smb_url);
smb_url_args = NULL;
}
}
/* Set up the name of the program, as it will be
* displayed in error requesters.
*/
size = strlen(icon_file_name) + strlen(" ''") + strlen(args.Service)+1;
NewProgramName = AllocVec(size,MEMF_ANY|MEMF_PUBLIC);
if(NewProgramName != NULL)
LocalSNPrintf(NewProgramName,size,"%s '%s'",icon_file_name,args.Service);
/* Use the SMB URL's domain information, if provided. */
if(smb_url_args != NULL && smb_url_args->domain != NULL)
args.Workgroup = smb_url_args->domain;
else
args.Workgroup = get_icon_tool_type_value("DOMAIN", "WORKGROUP");
/* Use the SMB URL's user name information, if provided. */
if(smb_url_args != NULL && smb_url_args->username != NULL)
args.UserName = smb_url_args->username;
else
args.UserName = get_icon_tool_type_value("USER", "USERNAME");
/* Use the SMB URL's password information, if provided. */
if(smb_url_args != NULL && smb_url_args->password != NULL)
args.Password = smb_url_args->password;
else
args.Password = get_icon_tool_type_value("PASSWORD", NULL);
str = get_icon_tool_type_value("CHANGEUSERNAMECASE", NULL);
args.ChangeUserNameCase = (str != NULL) ? str : (STRPTR)"yes";
args.ChangePasswordCase = get_icon_tool_type_value("CHANGEPASSWORDCASE", NULL);
if(args.ChangePasswordCase == NULL && get_icon_tool_type_value("CHANGECASE", NULL) != NULL)
args.ChangePasswordCase = (STRPTR)"yes";
args.TCPDelay = get_icon_tool_type_value("TCPDELAY", NULL);
if(args.TCPDelay == NULL && get_icon_tool_type_value("TCPNODELAY", "TCP_NODELAY") != NULL)
args.TCPDelay = "no";
args.DisableExAll = get_icon_tool_type_value("DISABLEEXALL", NULL) != NULL;
args.OmitHidden = get_icon_tool_type_value("OMITHIDDEN", NULL) != NULL;
args.Quiet = get_icon_tool_type_value("QUIET", NULL) != NULL;
args.ReadOnly = get_icon_tool_type_value("READONLY", NULL) != NULL;
args.RaisePriority = get_icon_tool_type_value("RAISEPRIORITY", NULL) != NULL;
args.CaseSensitive = get_icon_tool_type_value("CASE", "CASESENSITIVE") != NULL;
args.NetBIOSTransport = get_icon_tool_type_value("NETBIOS", NULL) != NULL;
args.WriteBehind = get_icon_tool_type_value("WRITEBEHIND", NULL) != NULL;
args.ClientName = get_icon_tool_type_value("CLIENT", "CLIENTNAME");
args.ServerName = get_icon_tool_type_value("SERVER", "SERVERNAME");
args.DeviceName = get_icon_tool_type_value("DEVICE", "DEVICENAME");
args.VolumeName = get_icon_tool_type_value("VOLUME", "VOLUMENAME");
if(args.VolumeName == NULL)
args.AddVolume = get_icon_tool_type_value("ADDVOLUME", NULL);
str = get_icon_tool_type_value("MAXNAMELEN", NULL);
if(str != NULL)
{
if(StrToLong(str,&MaxNameLen) == -1)
{
report_error("Invalid number '%s' for 'MAXNAMELEN' parameter.",str);
goto out;
}
args.MaxNameLen = &MaxNameLen;
}
str = get_icon_tool_type_value("WRITETHRESHOLD", NULL);
if(str != NULL)
{
if(StrToLong(str,&smb_write_threshold) == -1)
{
report_error("Invalid number '%s' for 'WRITETHRESHOLD' parameter.",str);
goto out;
}
args.WriteThreshold = &smb_write_threshold;
}
str = get_icon_tool_type_value("READTHRESHOLD", NULL);
if(str != NULL)
{
if(StrToLong(str,&smb_read_threshold) == -1)
{
report_error("Invalid number '%s' for 'READTHRESHOLD' parameter.",str);
goto out;
}
args.ReadThreshold = &smb_read_threshold;
}
args.ScatterGather = get_icon_tool_type_value("SCATTERGATHER", NULL);
str = get_icon_tool_type_value("TZ","TIMEZONEOFFSET");
if(str != NULL)
{
if(StrToLong(str,&tz_number) == -1)
{
report_error("Invalid number '%s' for 'TIMEZONEOFFSET' parameter.",str);
goto out;
}
args.TimeZoneOffset = &tz_number;
}
str = get_icon_tool_type_value("DST", "DSTOFFSET");
if(str != NULL)
{
if(StrToLong(str,&dst_number) == -1)
{
report_error("Invalid number '%s' for 'DSTOFFSET' parameter.",str);
goto out;
}
args.DSTOffset = &dst_number;
}
args.Protocol = get_icon_tool_type_value("PROTOCOL", NULL);
args.SessionSetup = get_icon_tool_type_value("SESSIONSETUP", NULL);
args.TranslationFile = get_icon_tool_type_value("TRANSLATE", "TRANSLATIONFILE");
args.Unicode = get_icon_tool_type_value("UNICODE", NULL);
args.CP437 = get_icon_tool_type_value("CP437", NULL) != NULL;
args.CP850 = get_icon_tool_type_value("CP850", NULL) != NULL;
str = get_icon_tool_type_value("CACHE","CACHESIZE");
if(str != NULL)
{
if(StrToLong(str,&cache_size) == -1)
{
report_error("Invalid number '%s' for 'CACHE' parameter.",str);
goto out;
}
args.CacheSize = &cache_size;
}
str = get_icon_tool_type_value("CACHETABLES",NULL);
if(str != NULL)
{
if(StrToLong(str,&cache_tables) == -1)
{
report_error("Invalid number '%s' for 'CACHETABLES' parameter.",str);
goto out;
}
args.CacheTables = &cache_tables;
}
str = get_icon_tool_type_value("MAXTRANSMIT", NULL);
if(str != NULL)
{
if(StrToLong(str,&max_transmit) == -1)
{
report_error("Invalid number '%s' for 'MAXTRANSMIT' parameter.",str);
goto out;
}
args.MaxTransmit = &max_transmit;
}
str = get_icon_tool_type_value("TIMEOUT", NULL);
if(str != NULL)
{
if(StrToLong(str,&timeout) == -1)
{
report_error("Invalid number '%s' for 'TIMEOUT' parameter.",str);
goto out;
}
args.Timeout = &timeout;
}
str = get_icon_tool_type_value("SOCKETRECEIVEBUFFER", "SO_RCVBUF");
if(str != NULL)
{
if(StrToLong(str,&socket_receive_buffer) == -1)
{
report_error("Invalid number '%s' for 'SOCKETRECEIVEBUFFER' parameter.",str);
goto out;
}
args.SocketReceiveBuf = &socket_receive_buffer;
}
str = get_icon_tool_type_value("SOCKETSENDBUFFER", "SO_SENDBUF");
if(str != NULL)
{
if(StrToLong(str,&socket_send_buffer) == -1)
{
report_error("Invalid number '%s' for 'SOCKETSENDBUFFER' parameter.",str);
goto out;
}
args.SocketSendBuf = &socket_send_buffer;
}
}
else
{
const TEXT * name;
int size;
/* Only input validation errors are reported below. */
result = RETURN_ERROR;
GetProgramName(program_name,sizeof(program_name));
SETPROGRAMNAME(FilePart(program_name));
Parameters = ReadArgs(cmd_template,(LONG *)&args,NULL);
if(Parameters == NULL)
{
PrintFault(IoErr(),FilePart(program_name));
goto out;
}
#if DEBUG
{
/* Configure the debugging options. */
if(args.DebugLevel != NULL)
SETDEBUGLEVEL(*args.DebugLevel);
else
SETDEBUGLEVEL(0);
if(args.DebugFile != NULL)
{
/* Try to append the output to an existing file
* or create a new file instead.
*/
debug_file = Open(args.DebugFile,MODE_READWRITE);
if(debug_file != ZERO)
{
D_S(struct FileInfoBlock, fib);
SetVBuf(debug_file, NULL, BUF_LINE, 512);
Seek(debug_file,0,OFFSET_END);
close_debug_file = TRUE;
/* If the debug file is not empty, add a few
* line feeds to it, so that any new output
* will be separated from the old contents.
*/
if(ExamineFH(debug_file, fib) && fib->fib_Size > 0)
FPrintf(debug_file,"\n\n");
}
}
else
{
debug_file = Output();
}
SETDEBUGFILE(debug_file);
}
#else
{
if(args.DebugLevel != NULL || args.DebugFile != NULL)
{
report_error("This version of the smbfs program has no built-in debug support.");
goto out;
}
}
#endif /* DEBUG */
D(("%s (%s)", VERS, DATE));
if(could_be_smb_url(args.Service))
{
smb_url_args = parse_smb_url_args(args.Service);
if(smb_url_args != NULL)
{
if(smb_url_args->server != NULL && smb_url_args->share)
{
STRPTR new_service;
int new_service_size;
new_service_size = 1 +
2 + strlen(smb_url_args->server) +
1 + strlen(smb_url_args->share);
if(smb_url_args->port != NULL)
new_service_size += 1 + strlen(smb_url_args->port);
new_service = malloc(new_service_size);
if(new_service != NULL)
{
strlcpy(new_service, "//", new_service_size);
strlcat(new_service, smb_url_args->server, new_service_size);
if(smb_url_args->port != NULL)
{
strlcat(new_service, ":", new_service_size);
strlcat(new_service, smb_url_args->port, new_service_size);
}
strlcat(new_service, "/", new_service_size);
strlcat(new_service, smb_url_args->share, new_service_size);
D(("SMB URL translates into service '%s'.", new_service));
args.Service = new_service;
/* Use the domain, user name and password information,
* if provided.
*/
if(smb_url_args->domain != NULL)
args.Workgroup = smb_url_args->domain;
if(smb_url_args->username != NULL)
args.UserName = smb_url_args->username;
if(smb_url_args->password != NULL)
args.Password = smb_url_args->password;
}
else
{
PrintFault(ERROR_NO_FREE_STORE, FilePart(program_name));
goto out;
}
}
else
{
report_error("Service '%s' lacks a complete server and share description.", args.Service);
goto out;
}
}
else
{
PrintFault(ERROR_NO_FREE_STORE, FilePart(program_name));
goto out;
}
}
ASSERT( args.Service != NULL );
/* Set up the name of the program, as it will be
* displayed in the proces status list.
*/
name = FilePart(program_name);
size = strlen(name) + strlen(" ''") + strlen(args.Service)+1;
NewProgramName = AllocVec(size,MEMF_ANY|MEMF_PUBLIC);
if(NewProgramName != NULL)
LocalSNPrintf(NewProgramName,size,"%s '%s'",name,args.Service);
}
/* If no workgroup/domain was given, try the environment variables. */
if(args.Workgroup == NULL)
{
static const char * names[] =
{
"smbfs_domain",
"smbfs_workgroup",
NULL
};
int i;
for(i = 0 ; names[i] != NULL ; i++)
{
if(GetVar(names[i],env_workgroup_name,sizeof(env_workgroup_name),0) > 0)
{
D(("using WORKGROUP='%s' stored in '%s' environment variable.", env_workgroup_name, names[i]));
args.Workgroup = env_workgroup_name;
break;
}
}
}
/* If no user name was given, try the environment variables. */
if(args.UserName == NULL)
{
static const char * names[] =
{
"smbfs_user",
"smbfs_username",
NULL
};
int i;
for(i = 0 ; names[i] != NULL ; i++)
{
if(GetVar(names[i],env_user_name,sizeof(env_user_name),0) > 0)
{
D(("using USER='%s' stored in '%s' environment variable.", env_user_name, names[i]));
args.UserName = env_user_name;
break;
}
}
}
/* If no password was given, try the environment variable. */
if(args.Password == NULL)
{
if(GetVar("smbfs_password",env_password,sizeof(env_password),0) > 0)
{
SHOWMSG("using PASSWORD=... stored in 'smbfs_password' environment variable.");
args.Password = env_password;
}
}
/* If no protocol was given, try the environment variable. */
if(args.Protocol == NULL)
{
if(GetVar("smbfs_protocol",env_protocol,sizeof(env_protocol),0) > 0)
{
D(("using PROTOCOL='%s' stored in 'smbfs_protocol' environment variable.", env_protocol));
args.Protocol = env_protocol;
}
}
/* Use the default if no user name is given. */
if(args.UserName == NULL)
{
args.UserName = guest_name;
D(("no user name given, using '%s' instead.", args.UserName));
}
/* Change the case of the user name? */
if(args.ChangeUserNameCase == NULL)
args.ChangeUserNameCase = "yes";
/* Change the case of the password? */
if(args.ChangePasswordCase == NULL && args.ChangeCase)
args.ChangePasswordCase = "yes";
/* Disable the TCP delay? */
if(args.TCPDelay == NULL && args.TCPNoDelay)
args.TCPDelay = "no";
if(args.VolumeName != NULL)
args.AddVolume = "yes";
/* Where do we send error messages to if started from shell? */
if(WBStartup == NULL)
{
if(args.ErrorOutput != NULL && Stricmp(args.ErrorOutput,"stderr") == SAME)
args.ErrorOutput = NULL;
if(args.ErrorOutput != NULL && Stricmp(args.ErrorOutput,"stdout") != SAME)
{
report_error("'ERROROUTPUT' parameter must be either 'STDERR' or 'STDOUT'.");
goto out;
}
D(("using 'erroroutput=%s'.", (args.ErrorOutput != NULL) ? "stdout" : "stderr"));
ErrorOutput = args.ErrorOutput;
}
/* Restrict the command set which smbfs uses? */
if(args.Protocol == NULL)
{
args.Protocol = "CORE";
D(("using 'protocol=%s'.", args.Protocol));
}
if(Stricmp(args.Protocol,"NT1") != SAME && Stricmp(args.Protocol,"CORE") != SAME)
{
report_error("'PROTOCOL' parameter must be either 'NT1' or 'CORE'.");
goto out;
}
if(args.SessionSetup == NULL)
{
args.SessionSetup = "DELAY";
D(("using 'sessionsetup=%s'.", args.SessionSetup));
}
if(Stricmp(args.SessionSetup,"DELAY") != SAME && Stricmp(args.SessionSetup,"NODELAY") != SAME)
{
report_error("'SESSIONSETUP' parameter must be either 'DELAY' or 'NODELAY'.");
goto out;
}
/* Disable Unicode support for path names, etc.? */
if(args.Unicode == NULL)
{
args.Unicode = "ON";
D(("using 'unicode=%s'.", args.Unicode));
}
/* Is the Unicode parameter even valid? */
if(get_switch_status(args.Unicode,-1) == -1)
{
report_error("'UNICODE' parameter must be either 'ON' or 'OFF'.");
goto out;
}
/* Code page based translation using a file disables
* Unicode support and the built-in CP437 and CP850
* translation.
*/
if (args.TranslationFile != NULL)
{
args.CP437 = args.CP850 = FALSE;
args.Unicode = "off";
}
/* Unicode support disables the code-page based
* translation.
*/
else if (get_switch_status(args.Unicode, FALSE))
{
args.CP437 = args.CP850 = FALSE;
}
else
{
if(args.CP437 && args.CP850)
{
report_error("You can use either the 'CP437' or the 'CP850' parameters, but not both.");
goto out;
}
}
/* Use one of the built-in code page translation tables? */
if (args.CP437)
{
SHOWMSG("using code page 437 translation");
memcpy(map_amiga_to_smb_name,unicode_to_cp437,sizeof(unicode_to_cp437));
memcpy(map_smb_to_amiga_name,cp437_to_unicode,sizeof(cp437_to_unicode));
TranslateNames = TRUE;
}
else if (args.CP850)
{
SHOWMSG("using code page 850 translation");
memcpy(map_amiga_to_smb_name,unicode_to_cp850,sizeof(unicode_to_cp850));
memcpy(map_smb_to_amiga_name,cp850_to_unicode,sizeof(cp850_to_unicode));
TranslateNames = TRUE;
}
if(args.MaxNameLen != NULL)
{
MaxNameLen = (*args.MaxNameLen);
if(MaxNameLen <= 0)
{
report_error("'MAXNAMELEN' parameter must be > 0.");
goto out;
}
}
if(args.CacheSize != NULL)
{
cache_size = (*args.CacheSize);
if(cache_size <= 0)
{
report_error("'CACHESIZE' parameter must be > 0.");
goto out;
}
}
if(args.CacheTables != NULL)
{
cache_tables = (*args.CacheTables);
if(cache_tables <= 0)
{
report_error("'CACHETABLES' parameter must be > 0.");
goto out;
}
}
if(args.MaxTransmit != NULL)
{
max_transmit = (*args.MaxTransmit);
if(max_transmit <= 0)
{
report_error("'MAXTRANSMIT' parameter must be > 0.");
goto out;
}
}
if(args.Timeout != NULL)
{
timeout = (*args.Timeout);
if(timeout <= 0)
{
report_error("'TIMEOUT' parameter must be > 0.");
goto out;
}
}
if(args.WriteThreshold == NULL)
args.WriteThreshold = &smb_write_threshold;
D(("write threshold = %ld", (*args.WriteThreshold)));
if(args.ReadThreshold == NULL)
args.ReadThreshold = &smb_read_threshold;
D(("read threshold = %ld", (*args.ReadThreshold)));
D(("scatter gather = %s", get_switch_status(args.ScatterGather, FALSE) ? "enabled" : "disabled"));
D(("tcp delay = %s", get_switch_status(args.TCPDelay, FALSE) ? "enabled" : "disabled"));
if(args.SocketReceiveBuf == NULL)
args.SocketReceiveBuf = &socket_receive_buffer;
D(("socket receive buffer size = %ld", (*args.SocketReceiveBuf)));
if(args.SocketSendBuf == NULL)
args.SocketSendBuf = &socket_send_buffer;
D(("socket send buffer size = %ld", (*args.SocketSendBuf)));
DisableExAll = (BOOL)(args.DisableExAll != 0);
CaseSensitive = (BOOL)(args.CaseSensitive != 0);
OmitHidden = (BOOL)(args.OmitHidden != 0);
D(("disable exall = %s", DisableExAll ? "yes": "no"));
D(("case sensitive = %s", CaseSensitive ? "yes": "no"));
D(("omit hidden = %s", OmitHidden ? "yes": "no"));
D(("raise priority = %s", args.RaisePriority ? "yes": "no"));
D(("read only = %s", args.ReadOnly ? "yes": "no"));
D(("quiet = %s", args.Quiet ? "yes": "no"));
/* Enable SMB packet decoding, but only if not started from Workbench. */
#if defined(DUMP_SMB)
{
LONG dump_smb_level = 0;
if(args.DumpSMBLevel != NULL)
dump_smb_level = (*args.DumpSMBLevel);
if(args.DumpSMB && WBStartup == NULL)
control_smb_dump(TRUE, dump_smb_level, (const char *)args.DumpSMBFile);
}
#else
{
if(WBStartup == NULL && (args.DumpSMBLevel != NULL || args.DumpSMB))
report_error("This version of smbfs cannot create SMB debug output.");
}
#endif /* DUMP_SMB */
D(("service = '%s'.", args.Service));
D(("work group = '%s'.", args.Workgroup));
D(("user name = '%s'.", args.UserName));
D(("change user name case = %s", get_switch_status(args.ChangeUserNameCase, TRUE) ? "yes" : "no"));
if(args.Password != NULL)
SHOWMSG("password = ...");
else
SHOWMSG("password = empty");
D(("change password case = %s", get_switch_status(args.ChangePasswordCase, FALSE) ? "yes" : "no"));
D(("unicode = '%s'", args.Unicode));
D(("protocol = '%s'", args.Protocol));
D(("netbios transport = '%s'", args.NetBIOSTransport ? "yes" : "no"));
D(("session setup = '%s'", args.SessionSetup));
if(args.ClientName != NULL)
D(("client name = '%s'.", args.ClientName));
else
D(("client name = NULL."));
if(args.ServerName != NULL)
D(("server name = '%s'.", args.ServerName));
else
D(("server name = NULL."));
if(args.TimeZoneOffset != NULL)
D(("time zone offset = %ld.", (*args.TimeZoneOffset)));
else
D(("time zone offset = NULL"));
if(args.DSTOffset != NULL)
D(("dst offset = %ld.", (*args.DSTOffset)));
else
D(("dst offset = NULL"));
D(("write behind = %s", args.WriteBehind ? "yes" : "no"));
if(args.DeviceName != NULL)
D(("device name = '%s'.", args.DeviceName));
else
D(("device name = NULL."));
if(args.VolumeName != NULL)
D(("volume name = '%s'.", args.VolumeName));
else
D(("volume name = NULL."));
D(("add volume = %s", args.AddVolume));
if(args.TranslationFile != NULL)
D(("translation file = '%s'.", args.TranslationFile));
else
D(("translation file = NULL."));
D(("use cp437 = %s.", args.CP437 ? "yes" : "no"));
D(("use cp850 = %s.", args.CP850 ? "yes" : "no"));
D(("max name length = %ld.", MaxNameLen));
D(("cache size = %ld.", cache_size));
D(("cache tables = %ld.", cache_tables));
D(("max transmit = %ld.", max_transmit));
D(("timeout = %ld.", timeout));
if(setup(
FilePart(program_name),
args.Service,
args.Workgroup,
args.UserName,
args.Password,
get_switch_status(args.ChangeUserNameCase, TRUE),
get_switch_status(args.ChangePasswordCase, FALSE),
args.ClientName,
args.ServerName,
cache_size,
cache_tables,
max_transmit,
timeout,
args.TimeZoneOffset,
args.DSTOffset,
!args.NetBIOSTransport, /* Use raw SMB transport instead of NetBIOS transport? */
Stricmp(args.Unicode,"OFF") != SAME,
Stricmp(args.Protocol,"CORE") == SAME,
Stricmp(args.SessionSetup,"DELAY") == SAME,
args.WriteBehind,
(*args.WriteThreshold),
(*args.ReadThreshold),
get_switch_status(args.ScatterGather, FALSE),
get_switch_status(args.TCPDelay, FALSE),
(*args.SocketReceiveBuf),
(*args.SocketSendBuf),
args.DeviceName,
args.VolumeName,
get_switch_status(args.AddVolume, TRUE),
args.TranslationFile))
{
char setenv_name[40];
Quiet = args.Quiet;
ReadOnly = args.ReadOnly;
if(Locale != NULL)
SHOWVALUE(Locale->loc_GMTOffset);
/* This is where the CLI process number identifying
* this smbfs instance goes.
*/
memset(setenv_name,0,sizeof(setenv_name));
/* Store the CLI process number of this smbfs
* instance in an environment variable?
*/
if(Cli() != NULL && args.SetEnv)
{
const struct Process * this_process = (struct Process *)FindTask(NULL);
LONG which_cli = -1;
LONG max_cli;
LONG i;
/* Which CLI process number does this process use? */
Forbid();
max_cli = MaxCli();
for(i = 1 ; i <= max_cli ; i++)
{
if(FindCliProc(i) == this_process)
{
which_cli = i;
break;
}
}
Permit();
if(which_cli > 0)
{
char number[20];
int i, len;
LocalSNPrintf(number, sizeof(number),"%ld\n",which_cli);
LocalSNPrintf(setenv_name, sizeof(setenv_name),"smbfs-process/%b",DeviceNode->dol_Name);
for(i = 0, len = strlen(setenv_name) ; i < len ; i++)
setenv_name[i] = ToLower(setenv_name[i]);
SetVar(setenv_name,number,-1,GVF_GLOBAL_ONLY);
}
}
file_system_handler(args.RaisePriority, args.VolumeName, args.Service);
/* Clean up after the environment variable... */
if(setenv_name[0] != '\0')
DeleteVar(setenv_name,GVF_GLOBAL_ONLY);
result = RETURN_WARN;
}
else
{
result = RETURN_ERROR;
}
out:
#if DEBUG
{
D(("total amount of memory allocated = %lu", total_memory_allocated));
D(("maximum amount of memory allocated = %lu", max_memory_allocated));
}
#endif /* DEBUG */
#if defined(DUMP_SMB)
{
if(args.DumpSMB && WBStartup == NULL)
control_smb_dump(FALSE, 0, NULL);
}
#endif /* DUMP_SMB */
cleanup();
if(close_debug_file && debug_file != ZERO)
{
SETDEBUGFILE(ZERO);
SETDEBUGLEVEL(0);
Close(debug_file);
}
if(MemoryPool != NULL)
{
DeletePool(MemoryPool);
MemoryPool = NULL;
}
return(result);
}
/****************************************************************************/
/* Our own FPrintf(), which is needed because this code has to build
* both for AmigaOS 2.x/3.x and 4.x, and with Lattice/SAS/GCC and the
* header files make it difficult to do this. The FPrintf() declaration
* is not always usable, depending upon which AmigaOS header file set
* you are using.
*/
static LONG VARARGS68K
LocalFPrintf(BPTR output, const TEXT * format, ...)
{
va_list args;
LONG result;
if(output == ZERO)
output = Output();
#if defined(__amigaos4__)
{
va_startlinear(args,format);
result = VFPrintf(output, format, va_getlinearva(args,APTR));
va_end(args);
}
#else
{
va_start(args,format);
result = VFPrintf(output, format, args);
va_end(args);
}
#endif /* __amigaos4__ */
return(result);
}
/****************************************************************************/
/* Obtain the descriptive text corresponding to an error number
* that may have been generated by the TCP/IP stack, or by
* the SMB POSIX error conversion code.
*/
STRPTR
posix_strerror(int error)
{
STRPTR result;
/* Is this one of our own error codes? */
if(error >= error_end_of_file)
{
static const struct { int code; const char * message; } messages[] =
{
{ error_end_of_file, "end of file" },
{ error_invalid_netbios_session, "invalid NetBIOS session" },
{ error_message_exceeds_buffer_size, "message exceeds buffer size" },
{ error_invalid_buffer_format, "invalid buffer format" },
{ error_data_exceeds_buffer_size, "data exceeds buffer size" },
{ error_invalid_parameter_size, "invalid parameter size" },
{ error_check_smb_error, "check SMB error class and code" },
{ error_server_setup_incomplete, "server setup incomplete" },
{ error_server_connection_invalid, "server connection invalid" },
{ error_smb_message_signature_missing, "SMB message signature missing" },
{ error_smb_message_too_short, "SMB message too short" },
{ error_smb_message_invalid_command, "SMB message invalid command" },
{ error_smb_message_invalid_word_count, "SMB message invalid word count" },
{ error_smb_message_invalid_byte_count, "SMB message invalid byte count" },
{ error_looping_in_find_next, "looping in find_next" },
{ error_invalid_directory_size, "invalid directory size" },
{ error_session_request_failed, "session request failed" },
{ error_unsupported_dialect, "unsupported dialect" },
{ -1, NULL }
};
int i;
result = "";
for(i = 0 ; messages[i].code != -1 ; i++)
{
if(messages[i].code == error)
{
result = (STRPTR)messages[i].message;
break;
}
}
}
else
{
struct TagItem tags[2];
tags[0].ti_Tag = SBTM_GETVAL(SBTC_ERRNOSTRPTR);
tags[0].ti_Data = error;
tags[1].ti_Tag = TAG_END;
PROFILE_OFF();
SocketBaseTagList(tags);
PROFILE_ON();
result = (STRPTR)tags[0].ti_Data;
}
return(result);
}
/****************************************************************************/
/* Return the descriptive text associated with a host lookup failure code. */
STRPTR
host_strerror(int error)
{
struct TagItem tags[2];
STRPTR result;
tags[0].ti_Tag = SBTM_GETVAL(SBTC_HERRNOSTRPTR);
tags[0].ti_Data = error;
tags[1].ti_Tag = TAG_END;
PROFILE_OFF();
SocketBaseTagList(tags);
PROFILE_ON();
result = (STRPTR)tags[0].ti_Data;
return(result);
}
/****************************************************************************/
/* Compare two strings, either case sensitive or not
* sensitive to the case of the letters. How this is
* to be done is controlled by a global option. This
* routine is called whenever two SMB file names are
* to be compared.
*/
LONG
compare_names(const TEXT * a,const TEXT * b)
{
LONG result;
if(CaseSensitive)
result = strcmp(a,b);
else
result = Stricmp(a,b);
return(result);
}
/****************************************************************************/
/* Translate a string into all upper case characters. */
void
string_toupper(STRPTR s)
{
TEXT c;
while((c = (*s)) != '\0')
(*s++) = ToUpper(c);
}
/****************************************************************************/
/* Prepare the accumulated list of error messages for display
* and purge the contents of that list.
*
* Unless the program was started from Workbench this function
* will do nothing.
*/
static void
display_error_message_list(void)
{
if(WBStartup != NULL)
{
struct MinNode * last = NULL;
struct MinNode * mn;
TEXT * message = NULL;
const TEXT * str;
int size;
/* Determine how much memory will have to be
* allocated to hold all the accumulated
* error messages.
*/
size = 0;
for(mn = ErrorList.mlh_Head ;
mn->mln_Succ != NULL ;
mn = mn->mln_Succ)
{
last = mn;
str = (TEXT *)(mn + 1);
size += strlen(str)+1;
}
/* Allocate the memory for the messages, then
* copy them there.
*/
if(size > 0)
{
message = AllocVec(size,MEMF_ANY);
if(message != NULL)
{
int message_len;
int len;
message_len = 0;
for(mn = ErrorList.mlh_Head ;
mn->mln_Succ != NULL ;
mn = mn->mln_Succ)
{
str = (TEXT *)(mn + 1);
len = strlen(str);
memcpy(&message[message_len], str, len);
message_len += len;
if(mn != last)
message[message_len++] = '\n';
}
ASSERT( message_len < size );
message[message_len] = '\0';
}
}
/* Purge the list. */
while((mn = (struct MinNode *)RemHead((struct List *)&ErrorList)) != NULL)
FreeVec(mn);
/* Display the error messages. */
if(message != NULL)
{
IntuitionBase = OpenLibrary("intuition.library",37);
#if defined(__amigaos4__)
{
if(IntuitionBase != NULL)
{
IIntuition = (struct IntuitionIFace *)GetInterface(IntuitionBase, "main", 1, 0);
if(IIntuition == NULL)
{
CloseLibrary(IntuitionBase);
IntuitionBase = NULL;
}
}
}
#endif /* __amigaos4__ */
if(IntuitionBase != NULL)
{
struct EasyStruct es;
STRPTR title;
memset(&es,0,sizeof(es));
if(NewProgramName != NULL)
title = NewProgramName;
else
title = WBStartup->sm_ArgList[0].wa_Name;
es.es_StructSize = sizeof(es);
es.es_Title = title;
es.es_TextFormat = message;
es.es_GadgetFormat = "OK";
EasyRequestArgs(NULL,&es,NULL,NULL);
}
FreeVec(message);
}
#if defined(__amigaos4__)
{
if(IIntuition != NULL)
{
DropInterface((struct Interface *)IIntuition);
IIntuition = NULL;
}
}
#endif /* __amigaos4__ */
CloseLibrary(IntuitionBase);
IntuitionBase = NULL;
}
}
/* Add another error message to the list; the messages are
* collected so that they may be displayed together when
* necessary.
*/
static void
add_error_message(const TEXT * fmt,APTR args)
{
int size;
size = CVSPrintf(fmt,args);
if(size > 0)
{
struct MinNode * mn;
mn = AllocVec(sizeof(*mn) + size,MEMF_ANY|MEMF_PUBLIC);
if(mn != NULL)
{
STRPTR msg = (STRPTR)(mn + 1);
LocalVSNPrintf(msg,size,fmt,args);
AddTail((struct List *)&ErrorList,(struct Node *)mn);
}
}
}
/****************************************************************************/
/* Report an error that has occured; if the program was not launched
* from Shell, error messages will be accumulated for later display.
*/
void VARARGS68K
report_error(const TEXT * fmt,...)
{
if(NOT Quiet)
{
va_list args;
/* If this program was started from Workbench the
* error messages will be collected for later
* display.
*/
if(WBStartup != NULL)
{
#if defined(__amigaos4__)
{
va_startlinear(args,fmt);
add_error_message(fmt,va_getlinearva(args,APTR));
va_end(args);
}
#else
{
va_start(args,fmt);
add_error_message(fmt,args);
va_end(args);
}
#endif /* __amigaos4__ */
}
else
{
struct Process * this_process = (struct Process *)FindTask(NULL);
TEXT program_name[MAX_FILENAME_LEN+1];
BOOL close_output = FALSE;
BPTR output;
GetProgramName(program_name,sizeof(program_name));
/* Print the error message on the standard error output
* stream?
*/
if(ErrorOutput == NULL)
{
/* Do we have a valid error output stream? This
* likely won't work with the V36-V40 shell, but
* we check this anyway.
*/
if(this_process->pr_CES != ZERO)
{
output = this_process->pr_CES;
}
/* So we need to try to write straight to the
* output window.
*/
else
{
/* Can we write straight to the output window? */
output = Open("CONSOLE:", MODE_NEWFILE);
if(output != ZERO)
{
SetVBuf(output, NULL, BUF_LINE, 512);
close_output = TRUE;
}
/* Fall back to using the standard output stream. */
else
{
output = Output();
}
}
}
/* No, we use the standard output stream. */
else
{
output = Output();
}
if(output != ZERO)
{
LocalFPrintf(output, "%s: ",FilePart(program_name));
#if defined(__amigaos4__)
{
va_startlinear(args,fmt);
VFPrintf(output, fmt, va_getlinearva(args,APTR));
va_end(args);
}
#else
{
va_start(args,fmt);
VFPrintf(output,fmt,args);
va_end(args);
}
#endif /* __amigaos4__ */
LocalFPrintf(output, "\n");
if(close_output)
Close(output);
}
}
}
}
/****************************************************************************/
/* Release memory allocated from the global pool. */
void
free_memory(APTR address)
{
if(address != NULL)
{
ULONG * mem = address;
ULONG size = mem[-1];
#if DEBUG
{
total_memory_allocated -= size;
if(GETDEBUGLEVEL() > 0)
{
ASSERT( size >= sizeof(*mem) );
memset(address,0xA3,size - sizeof(*mem));
}
}
#endif /* DEBUG */
FreePooled(MemoryPool,&mem[-1],size);
}
}
/* Allocate memory from the global pool. */
APTR
allocate_memory(LONG size)
{
APTR result = NULL;
if(size > 0)
{
ULONG * mem;
size = sizeof(*mem) + ((size + 7) & ~7UL);
mem = AllocPooled(MemoryPool,size);
if(mem != NULL)
{
(*mem++) = size;
#if DEBUG
{
if(GETDEBUGLEVEL() > 0)
{
ASSERT( mem[-1] >= sizeof(*mem) );
memset(mem,0xA5,mem[-1] - sizeof(*mem));
}
total_memory_allocated += size;
if(max_memory_allocated < total_memory_allocated)
max_memory_allocated = total_memory_allocated;
}
#endif /* DEBUG */
result = mem;
}
}
return(result);
}
/****************************************************************************/
APTR
allocate_cleared_memory(LONG count, LONG record_size)
{
APTR result = NULL;
LONG size;
size = count * record_size;
if(size > 0)
{
ULONG * mem;
size = sizeof(*mem) + ((size + 7) & ~7UL);
mem = AllocPooled(MemoryPool,size);
if(mem != NULL)
{
(*mem++) = size;
memset(mem, 0, size);
result = mem;
}
}
return(result);
}
/****************************************************************************/
/* Allocate memory for a new lock node and initialize it. */
static struct LockNode *
allocate_lock_node(
LONG access_mode,
const TEXT * full_name,
const struct MsgPort * user)
{
struct LockNode * ln;
ln = allocate_memory(sizeof(*ln));
if(ln != NULL)
{
memset(ln,0,sizeof(*ln));
ln->ln_FileLock.fl_Key = (LONG)ln;
ln->ln_Magic = ID_SMB_DISK;
ln->ln_FileLock.fl_Access = access_mode;
ln->ln_FileLock.fl_Task = FileSystemPort;
ln->ln_FileLock.fl_Volume = MKBADDR(VolumeNode);
ln->ln_FullName = (TEXT *)full_name;
ln->ln_LastUser = user;
}
return(ln);
}
/****************************************************************************/
/* Allocate memory for a new file node and initialize it. */
static struct FileNode *
allocate_file_node(
LONG mode,
const TEXT * full_name,
const struct FileHandle * fh,
const smba_file_t * file)
{
struct FileNode * fn;
fn = allocate_memory(sizeof(*fn));
if(fn != NULL)
{
memset(fn, 0, sizeof(*fn));
fn->fn_Handle = (struct FileHandle *)fh;
fn->fn_Magic = ID_SMB_DISK;
fn->fn_Volume = VolumeNode;
fn->fn_FullName = (TEXT *)full_name;
fn->fn_File = (smba_file_t *)file;
fn->fn_Mode = mode;
}
return(fn);
}
/****************************************************************************/
/* Obtain the number of seconds to add to the current time
* to translate local time into UTC.
*/
LONG
get_time_zone_delta(void)
{
LONG seconds;
if(OverrideLocaleTimeZone)
{
seconds = 60 * TimeZoneOffset;
}
else if (Locale != NULL)
{
/* The GMT offset actually is the number of minutes to add to
* the local time to yield Greenwich Mean Time. It is negative
* for all time zones east of the Greenwich meridian and
* positive for all time zones west of it.
*/
seconds = 60 * Locale->loc_GMTOffset;
}
else
{
seconds = 0;
}
D(("time zone offset: %ld + %ld = %ld",seconds,DSTOffset,seconds + DSTOffset));
return(seconds + DSTOffset);
}
/****************************************************************************/
/* Obtain the current time, in standard Unix format, adjusted for the
* local time zone.
*/
ULONG
get_current_time(void)
{
struct timeval tv;
ULONG result;
GetSysTime((APTR)&tv);
result = tv.tv_secs + UNIX_TIME_OFFSET + get_time_zone_delta();
return(result);
}
/****************************************************************************/
/* Fill in a 'tm' type time specification with time information
* corresponding to the number of seconds provided. Input is
* in Unix format.
*/
void
seconds_to_tm(time_t seconds,struct tm * tm)
{
struct ClockData clock_data;
if(seconds < UNIX_TIME_OFFSET)
seconds = 0;
else
seconds -= UNIX_TIME_OFFSET;
Amiga2Date(seconds,&clock_data);
memset(tm,0,sizeof(*tm));
tm->tm_sec = clock_data.sec;
tm->tm_min = clock_data.min;
tm->tm_hour = clock_data.hour;
tm->tm_mday = clock_data.mday;
tm->tm_mon = clock_data.month - 1;
tm->tm_year = clock_data.year - 1900;
}
/* Calculate the number of seconds that have passed since January 1st 1970
* based upon the time specification provided. Output is in Unix format.
*/
time_t
tm_to_seconds(const struct tm * const tm)
{
struct ClockData clock_data;
time_t seconds;
clock_data.sec = tm->tm_sec;
clock_data.min = tm->tm_min;
clock_data.hour = tm->tm_hour;
clock_data.mday = tm->tm_mday;
clock_data.month = tm->tm_mon + 1;
clock_data.year = tm->tm_year + 1900;
seconds = Date2Amiga(&clock_data) + UNIX_TIME_OFFSET;
return(seconds);
}
/****************************************************************************/
/* This is used by the CVSPrintf() and LocalSNPrintf() functions below. */
struct FormatContext
{
TEXT * fc_Buffer; /* Where to store the next character. */
int fc_Limit; /* How many more characters may be stored. */
int fc_Size; /* How many characters were stored so far. */
};
/****************************************************************************/
/* We just count the number of characters here. Note that this function
* has two parameters and uses only one: this is needed for OS4 for which
* RawDoFmt() always passes both.
*/
static void ASM
CountChar(REG(d0,TEXT unused_c),REG(a3,struct FormatContext * fc))
{
fc->fc_Size++;
}
/* Count the number of characters LocalSNPrintf() would put into a string.
* Note that this includes the terminating NUL character.
*/
static LONG
CVSPrintf(const TEXT * format_string,APTR args)
{
struct FormatContext fc;
fc.fc_Size = 0;
RawDoFmt((STRPTR)format_string,args,(void (*)())CountChar,&fc);
return(fc.fc_Size);
}
/****************************************************************************/
/* Store the next character in the buffer, but only if there is still room. */
static void ASM
StuffChar(REG(d0,TEXT c),REG(a3,struct FormatContext * fc))
{
if(fc->fc_Limit > 0)
{
(*fc->fc_Buffer++) = c;
fc->fc_Size++;
fc->fc_Limit--;
}
}
/* This is the non-varargs variant of LocalSNPrintf() below. */
static int
LocalVSNPrintf(STRPTR buffer, int limit, const TEXT * formatString, APTR args)
{
struct FormatContext fc;
fc.fc_Buffer = buffer;
fc.fc_Limit = limit-1; /* One less character for terminating NUL. */
fc.fc_Size = 0;
RawDoFmt(formatString,args,(void (*)())StuffChar,&fc);
if(limit > 0)
(*fc.fc_Buffer) = '\0';
return(fc.fc_Size);
}
/****************************************************************************/
/* Format a string for output. The number of characters which may be
* stored in the string cannot exceed what the limit parameter states.
* Unless limit is 0, the string will be NUL-terminated.
*/
void VARARGS68K
LocalSNPrintf(STRPTR buffer, int limit, const TEXT * formatString,...)
{
va_list varArgs;
#if defined(__amigaos4__)
{
va_startlinear(varArgs,formatString);
LocalVSNPrintf(buffer,limit,formatString,va_getlinearva(varArgs,APTR));
va_end(varArgs);
}
#else
{
va_start(varArgs,formatString);
LocalVSNPrintf(buffer,limit,formatString,varArgs);
va_end(varArgs);
}
#endif /* __amigaos4__ */
}
/****************************************************************************/
/* NetBIOS broadcast name query code courtesy of Christopher R. Hertel.
* Thank you very much, Chris!
*/
struct addr_entry
{
unsigned short flags;
unsigned char address[4];
};
struct nmb_header
{
unsigned short name_trn_id;
unsigned short flags;
unsigned short qdcount;
unsigned short ancount;
unsigned short nscount;
unsigned short arcount;
};
static void
L1_Encode(UBYTE * dst, const UBYTE * name, const UBYTE pad, const UBYTE sfx)
{
int i = 0;
int j = 0;
int k;
while(('\0' != name[i]) && (i < 15))
{
k = ToUpper(name[i]);
i++;
dst[j++] = 'A' + ((k & 0xF0) >> 4);
dst[j++] = 'A' + (k & 0x0F);
}
i = 'A' + ((pad & 0xF0) >> 4);
k = 'A' + (pad & 0x0F);
while(j < 30)
{
dst[j++] = i;
dst[j++] = k;
}
dst[30] = 'A' + ((sfx & 0xF0) >> 4);
dst[31] = 'A' + (sfx & 0x0F);
dst[32] = '\0';
}
static int
L2_Encode(UBYTE * dst, const UBYTE * name, const UBYTE pad, const UBYTE sfx, const UBYTE * scope)
{
int lenpos;
int i;
int j;
L1_Encode(&dst[1], name, pad, sfx);
dst[0] = 0x20;
lenpos = 33;
if('\0' != (*scope))
{
do
{
for(i = 0, j = (lenpos + 1);
('.' != scope[i]) && ('\0' != scope[i]);
i++, j++)
{
dst[j] = ToUpper(scope[i]);
}
dst[lenpos] = (UBYTE)i;
lenpos += i + 1;
scope += i;
}
while('.' == (*scope++));
dst[lenpos] = '\0';
}
return(lenpos + 1);
}
int
BroadcastNameQuery(const char *name, const char *scope, UBYTE *address)
{
static const UBYTE header[12] =
{
0x07, 0xB0, /* 1964 == 0x07B0. */
0x01, 0x10, /* Binary 0 0000 0010001 0000 */
0x00, 0x01, /* One name query. */
0x00, 0x00, /* Zero answers. */
0x00, 0x00, /* Zero authorities. */
0x00, 0x00 /* Zero additional. */
};
static const UBYTE query_tail[4] =
{
0x00, 0x20,
0x00, 0x01
};
struct timeval tv;
fd_set read_fds;
int sock_fd;
int option_true = 1;
struct sockaddr_in sox;
struct nmb_header nmb_header;
UBYTE buffer[512];
int total_len;
int i,n;
int result;
struct servent * s;
ENTER();
PROFILE_OFF();
sock_fd = socket(PF_INET, SOCK_DGRAM, IPPROTO_UDP);
if(sock_fd < 0)
{
SHOWMSG("couldn't get the socket");
result = errno;
goto out;
}
if(setsockopt(sock_fd, SOL_SOCKET, SO_BROADCAST, &option_true, sizeof(option_true)) < 0)
{
SHOWMSG("couldn't enable the broadcast option");
result = errno;
goto out;
}
memset(&sox,0,sizeof(sox));
sox.sin_family = AF_INET;
sox.sin_addr.s_addr = htonl(0xFFFFFFFF);
s = getservbyname("netbios-ns","udp");
if(s != NULL)
sox.sin_port = s->s_port;
else
sox.sin_port = htons(137);
memcpy(buffer, header, (total_len = sizeof(header)));
n = L2_Encode(&buffer[total_len], name, ' ', '\0', scope);
total_len += n;
ASSERT( total_len <= (int)sizeof(buffer) );
memcpy(&buffer[total_len], query_tail, sizeof(query_tail));
total_len += sizeof(query_tail);
ASSERT( total_len <= (int)sizeof(buffer) );
result = ENOENT;
n = 0;
/* Send the query packet; retry five times with a one second
* delay in between.
*/
for(i = 0 ; i < 5 ; i++)
{
if(sendto(sock_fd, (void *) buffer, total_len, 0, (struct sockaddr *)&sox, sizeof(struct sockaddr_in)) < 0)
{
SHOWMSG("could not send the packet");
result = errno;
goto out;
}
/* Wait for a response to arrive. */
tv.tv_secs = 1;
tv.tv_micro = 0;
FD_ZERO(&read_fds);
FD_SET(sock_fd,&read_fds);
if(WaitSelect(sock_fd+1, &read_fds, NULL, NULL, &tv, NULL) > 0)
{
n = recv(sock_fd, buffer, sizeof(buffer), 0);
if(n < 0)
{
SHOWMSG("could not pick up the response packet");
result = errno;
goto out;
}
else if (n > 0)
{
break;
}
}
}
/* Did we get anything at all? */
if(n > (int)sizeof(nmb_header))
{
/* Check whether the query was successful. */
memcpy(&nmb_header, buffer, sizeof(nmb_header));
if((nmb_header.flags & 0xF) == OK)
{
/* Find the NB/IP fields which directly follow
* the name.
*/
for(i = sizeof(header) + strlen(&buffer[sizeof(header)])+1 ;
i < n - (int)sizeof(query_tail) ;
i++)
{
if(memcmp(&buffer[i], query_tail, sizeof(query_tail)) == SAME)
{
int start;
/* This should be the start of the interesting bits;
* we skip the NB/IP fields and the TTL field.
*/
start = i + sizeof(query_tail) + sizeof(long);
if(start < n)
{
unsigned short read_len;
struct addr_entry addr_entry;
/* This should be the read length. */
memcpy(&read_len, &buffer[start], 2);
/* Is there any useful and readable data attached? */
if(read_len >= sizeof(addr_entry) &&
start + (int)sizeof(read_len) + (int)sizeof(addr_entry) <= n)
{
/* Copy a single address entry; this should be
* just the one we need.
*/
memcpy(&addr_entry, &buffer[start + sizeof(read_len)], sizeof(addr_entry));
/* Copy the address field (IPv4 only). */
memcpy(address, addr_entry.address, 4);
result = 0;
}
}
break;
}
}
}
}
out:
if(sock_fd >= 0)
CloseSocket(sock_fd);
PROFILE_ON();
RETURN(result);
return(result);
}
/* This is the counterpart to the BroadcastNameQuery() function
* which not only retrieves the name of the workstation, but also
* the name of the workgroup, if possible.
*/
int
SendNetBIOSStatusQuery(
struct sockaddr_in sox,
char * server_name,
int server_name_size,
char * workgroup_name,
int workgroup_name_size)
{
static const UBYTE query[] =
{
0x07, 0xB2, /* 1970 == 0x07B2. */
0x00, 0x00, /* Binary 0 0000 0010001 0000 */
0x00, 0x01, /* One name query. */
0x00, 0x00, /* Zero answers. */
0x00, 0x00, /* Zero authorities. */
0x00, 0x00, /* Zero additional. */
/* Question name: "*" padded with \0 bytes, layer 2 encoded, NUL-terminated. */
0x20, /* NetBIOS name format. */
0x43, 0x4b, 0x41, 0x41, 0x41, 0x41, 0x41, 0x41,
0x41, 0x41, 0x41, 0x41, 0x41, 0x41, 0x41, 0x41,
0x41, 0x41, 0x41, 0x41, 0x41, 0x41, 0x41, 0x41,
0x41, 0x41, 0x41, 0x41, 0x41, 0x41, 0x41, 0x41,
0x00,
/* Question type: NBSTAT = 33 (NetBIOS status query) */
0x00, 0x21,
/* Question class: IN = 1 */
0x00, 0x01
};
static const UBYTE query_tail[4] =
{
0x00, 0x21,
0x00, 0x01
};
struct timeval tv;
fd_set read_fds;
int sock_fd;
struct nmb_header nmb_header;
UBYTE buffer[512];
int i,n;
int result;
struct servent * s;
ENTER();
PROFILE_OFF();
if(server_name != NULL && server_name_size > 0)
{
server_name_size--;
server_name[0] = '\0';
}
if(workgroup_name != NULL && workgroup_name_size > 0)
{
workgroup_name_size--;
workgroup_name[0] = '\0';
}
sock_fd = socket(PF_INET, SOCK_DGRAM, IPPROTO_UDP);
if(sock_fd < 0)
{
SHOWMSG("couldn't get the socket");
result = errno;
goto out;
}
s = getservbyname("netbios-ns","udp");
if(s != NULL)
sox.sin_port = s->s_port;
else
sox.sin_port = htons(137);
result = ENOENT;
n = 0;
/* Send the query packet; retry five times with a one second
* delay in between.
*/
for(i = 0 ; i < 5 ; i++)
{
if(sendto(sock_fd, (void *) query, sizeof(query), 0, (struct sockaddr *)&sox, sizeof(sox)) < 0)
{
SHOWMSG("could not send the packet");
result = errno;
goto out;
}
/* Wait for a response to arrive. */
tv.tv_secs = 1;
tv.tv_micro = 0;
FD_ZERO(&read_fds);
FD_SET(sock_fd,&read_fds);
if(WaitSelect(sock_fd+1, &read_fds, NULL, NULL, &tv, NULL) > 0)
{
n = recv(sock_fd, buffer, sizeof(buffer), 0);
if(n < 0)
{
SHOWMSG("could not pick up the response packet");
result = errno;
goto out;
}
else if (n > 0)
{
break;
}
}
}
/* Did we get anything at all? */
if(n > (int)sizeof(nmb_header))
{
/* Check whether the query was successful, is a response,
* and if there is an answer in it.
*/
memcpy(&nmb_header, buffer, sizeof(nmb_header));
D(("status = %ld", (nmb_header.flags & 0xF)));
D(("is response = %s", (nmb_header.flags & 0x8000) ? "yes" : "no"));
D(("number of answers = %ld", nmb_header.ancount));
if((nmb_header.flags & 0xF) == OK &&
(nmb_header.flags & 0x8000) != 0 &&
nmb_header.ancount > 0)
{
/* Find the NB/IP fields which directly follow
* the name.
*/
for(i = sizeof(nmb_header) + strlen(&buffer[sizeof(nmb_header)])+1 ;
i < n - (int)sizeof(query_tail) ;
i++)
{
if(memcmp(&buffer[i], query_tail, sizeof(query_tail)) == SAME)
{
int start;
SHOWMSG("found a response");
/* This should be the start of the interesting bits;
* we skip the NB/IP fields and the TTL field.
*/
start = i + sizeof(query_tail) + sizeof(long);
if(start < n)
{
unsigned short data_length;
/* Get the data length. */
memcpy(&data_length, &buffer[start], 2);
start += 2;
SHOWVALUE(data_length);
if(data_length > 0 && start + data_length <= n)
{
int number_of_names;
number_of_names = buffer[start++];
SHOWVALUE(number_of_names);
if(number_of_names > 0)
{
const char * server_name_record = NULL;
const char * workgroup_name_record = NULL;
const char * s;
unsigned short flags;
int type;
int j, l;
for(j = 0 ;
j < number_of_names && (server_name_record == NULL || workgroup_name_record == NULL) ;
j++)
{
l = 15;
s = (char *)&buffer[start];
start += l;
/* Remove padding. */
while(l > 0 && s[l-1] == ' ')
l--;
type = buffer[start++];
memcpy(&flags, &buffer[start], 2);
start += 2;
#if DEBUG
{
TEXT name_copy[20];
if(l > sizeof(name_copy)-1)
l = sizeof(name_copy)-1;
memcpy(name_copy,s,l);
name_copy[l] = '\0';
D(("name='%s', len=%ld, type=%ld, flags=0x%04lx", name_copy, l, type, flags));
}
#endif /* DEBUG */
/* Not a group name, and name is active? */
if((flags & 0x8400) == 0x0400)
{
if(type == 0x00) /* workstation/redirector */
{
if(server_name_record == NULL)
{
server_name_record = s;
if(server_name != NULL && server_name_size > 0)
{
if(l > server_name_size)
l = server_name_size;
memcpy(server_name, s, l);
server_name[l] = '\0';
D(("server name is '%s'", server_name));
}
result = OK;
}
}
}
/* Group name, and name is active? */
else if ((flags & 0x8400) == 0x8400)
{
if(type == 0x00) /* workstation/redirector */
{
if(workgroup_name_record == NULL)
{
workgroup_name_record = s;
if(workgroup_name != NULL && workgroup_name_size > 0)
{
if(l > workgroup_name_size)
l = workgroup_name_size;
memcpy(workgroup_name, s, l);
workgroup_name[l] = '\0';
D(("workgroup name is '%s'", workgroup_name));
}
result = OK;
}
}
}
}
}
}
else
{
SHOWMSG("too much data");
}
}
else
{
SHOWMSG("nothing useful in there");
}
break;
}
}
}
}
else
{
D(("didn't receive anything useful (n=%ld)", n));
}
out:
if(sock_fd >= 0)
CloseSocket(sock_fd);
PROFILE_ON();
RETURN(result);
return(result);
}
/****************************************************************************/
/* Send a disk change notification message which will be picked up
* by all applications that listen for this kind of event, e.g.
* Workbench.
*/
static void
send_disk_change_notification(ULONG class)
{
struct IOStdReq * input_request = NULL;
struct MsgPort * input_port;
struct InputEvent ie;
ENTER();
PROFILE_OFF();
input_port = CreateMsgPort();
if(input_port == NULL)
goto out;
input_request = (struct IOStdReq *)CreateIORequest(input_port,sizeof(*input_request));
if(input_request == NULL)
goto out;
if(OpenDevice("input.device",0,(struct IORequest *)input_request,0) != OK)
goto out;
memset(&ie,0,sizeof(ie));
ie.ie_Class = class;
ie.ie_Qualifier = IEQUALIFIER_MULTIBROADCAST;
GetSysTime(&ie.ie_TimeStamp);
input_request->io_Command = IND_WRITEEVENT;
input_request->io_Data = &ie;
input_request->io_Length = sizeof(ie);
DoIO((struct IORequest *)input_request);
out:
if(input_request != NULL)
{
if(input_request->io_Device != NULL)
CloseDevice((struct IORequest *)input_request);
DeleteIORequest((struct IORequest *)input_request);
}
DeleteMsgPort(input_port);
PROFILE_ON();
LEAVE();
}
/****************************************************************************/
/* Find the file node corresponding to a given name,
* skipping a particular entry if necessary.
*/
static struct FileNode *
find_file_node_by_name(const TEXT * name,const struct FileNode * skip)
{
struct FileNode * result = NULL;
struct FileNode * fn;
ASSERT( name != NULL );
#ifndef USE_SPLAY_TREE
{
D(("searching for file with name '%s'", name));
for(fn = (struct FileNode *)FileList.mlh_Head ;
fn->fn_MinNode.mln_Succ != NULL ;
fn = (struct FileNode *)fn->fn_MinNode.mln_Succ)
{
if(fn != skip && compare_names(name,fn->fn_FullName) == SAME)
{
result = fn;
break;
}
}
if(result != NULL)
D(("found it (= 0x%08lx)", result));
else
SHOWMSG("didn't find it");
}
#else
{
struct splay_node * sn;
D(("looking up file with name '%s'", name));
/* Find the list of all files which match the given name. */
sn = splay_tree_find(&FileNameTree, (splay_key_t)name);
if(sn != NULL)
{
fn = (struct FileNode *)sn->sn_userdata;
ASSERT( fn != NULL );
/* Use this entry, unless it's the one which we
* wanted to skip.
*/
if (fn != skip)
{
result = fn;
D(("found it (= 0x%08lx)", (ULONG)result));
}
/* Use the next entry in the list, if possible. */
else if (sn->sn_next != NULL)
{
result = (struct FileNode *)sn->sn_next->sn_userdata;
D(("found it, but can't use it, so using the next best entry (= 0x%08lx)", (ULONG)result));
if(result == NULL)
SHOWMSG("...but didn't actually find it");
}
else
{
SHOWMSG("didn't find it");
}
}
else
{
SHOWMSG("didn't find it");
}
}
#endif /* USE_SPLAY_TREE */
return(result);
}
/* Find the lock node corresponding to a given name,
* skipping a particular entry if necessary.
*/
static struct LockNode *
find_lock_node_by_name(const TEXT * name,const struct LockNode * skip)
{
struct LockNode * result = NULL;
struct LockNode * ln;
#ifndef USE_SPLAY_TREE
{
D(("searching for lock with name '%s'", name));
for(ln = (struct LockNode *)LockList.mlh_Head ;
ln->ln_MinNode.mln_Succ != NULL ;
ln = (struct LockNode *)ln->ln_MinNode.mln_Succ)
{
if(ln != skip && compare_names(name,ln->ln_FullName) == SAME)
{
result = ln;
break;
}
}
if(result != NULL)
D(("found it (= 0x%08lx)", result));
else
SHOWMSG("didn't find it");
}
#else
{
struct splay_node * sn;
D(("looking up lock with name '%s'", name));
sn = splay_tree_find(&LockNameTree, (splay_key_t)name);
if(sn != NULL)
{
ln = (struct LockNode *)sn->sn_userdata;
ASSERT( ln != NULL );
if (ln != skip)
{
result = ln;
D(("found it (= 0x%08lx)", (ULONG)result));
}
else if (sn->sn_next != NULL)
{
result = (struct LockNode *)sn->sn_next->sn_userdata;
D(("found it, but can't use it, so using the next best entry (= 0x%08lx)", (ULONG)result));
if(result == NULL)
SHOWMSG("...but didn't actually find it");
}
else
{
SHOWMSG("didn't find it");
}
}
else
{
SHOWMSG("didn't find it");
}
}
#endif /* USE_SPLAY_TREE */
return(result);
}
/* Check whether a new reference to be made to a named
* file will cause a conflict of access modes. No two
* files and locks may refer to the same object if
* either of these references is made in exclusive
* mode. This is the case which this function is
* trying to avoid.
*/
static int
check_access_mode_collision(const TEXT * name,LONG mode)
{
int error = ERROR_OBJECT_IN_USE;
struct LockNode * ln;
struct FileNode * fn;
ENTER();
D(("name = '%s'", escape_name(name)));
fn = find_file_node_by_name(name,NULL);
if(fn != NULL)
{
if(mode != SHARED_LOCK || fn->fn_Mode != SHARED_LOCK)
{
D(("collides with '%s'",escape_name(fn->fn_FullName)));
goto out;
}
}
ln = find_lock_node_by_name(name,NULL);
if(ln != NULL)
{
if(mode != SHARED_LOCK || ln->ln_FileLock.fl_Access != SHARED_LOCK)
{
D(("collides with '%s'",escape_name(ln->ln_FullName)));
goto out;
}
}
error = OK;
out:
RETURN(error);
return(error);
}
/* Find out whether there already exists a reference to a
* certain file or directory. Returns an AmigaDOS error
* code if so, and 0 otherwise.
*/
static int
name_already_in_use(const TEXT * name)
{
int error = ERROR_OBJECT_IN_USE;
ENTER();
SHOWSTRING(name);
if(find_file_node_by_name(name,NULL))
{
SHOWMSG("found a file by that name");
goto out;
}
if(find_lock_node_by_name(name,NULL) != NULL)
{
SHOWMSG("found a lock by that name");
goto out;
}
error = OK;
out:
RETURN(error);
return(error);
}
/* Check whether an AmigaDOS path name uses special characters which should be
* avoided when used with the SMB file sharing protocol. This test accepts '/'
* and ':' as valid characters that may appear in an AmigaDOS path name.
*
* Reserved characters are control codes in the range 0..31, as well as
* '<' (less than), '>' (greater than), ':' (colon), '"' (double quote),
* '/' (forward slash), '\' (backslash), '|' (vertical bar or pipe),
* '?' (question mark) and '*' (asterisk). The '?' and '*' are the MS-DOS
* wildcard pattern characters which the SMB delete and rename commands
* would process if they were part of the "file name".
*
* This list can be found (2018-12-28) here:
* https://docs.microsoft.com/en-us/windows/desktop/fileio/naming-a-file
*
* We also reject the use of "." and ".." as path names.
*/
static BOOL
path_name_is_invalid(const TEXT * name, int name_len)
{
BOOL result = TRUE;
TEXT c;
int i;
/* Disallow "." and "..". */
if((name_len == 1 && name[0] == '.') || (name_len == 1 && name[0] == '.' && name[1] == '.'))
goto out;
for(i = 0 ; i < name_len ; i++)
{
c = name[i];
if(c < ' ' || strchr("<>\"\\|?*", c) != NULL)
goto out;
}
result = FALSE;
out:
return(result);
}
/****************************************************************************/
/* Convert a POSIX error code into an AmigaDOS error code. */
static LONG
map_errno_to_ioerr(int error)
{
/* Not all of these mappings make good sense; bear in mind that
* POSIX covers more than a hundred different error codes
* whereas with AmigaDOS we're stranded with a measly 48...
*/
static const int map_posix_to_amigados[][2] =
{
{ E2BIG, ERROR_TOO_MANY_ARGS }, /* Argument list too long */
{ EACCES, ERROR_READ_PROTECTED }, /* Permission denied */
{ EADDRINUSE, ERROR_OBJECT_IN_USE }, /* Address already in use */
{ EADDRNOTAVAIL, ERROR_DIR_NOT_FOUND }, /* Can't assign requested address */
{ EAFNOSUPPORT, ERROR_NOT_IMPLEMENTED }, /* Address family not supported by protocol family */
{ EAGAIN, ERROR_LOCK_TIMEOUT }, /* Resource temporarily unavailable */
{ EBADF, ERROR_INVALID_LOCK }, /* Bad file descriptor */
{ EBUSY, ERROR_OBJECT_IN_USE }, /* Device busy */
{ ECONNABORTED, ERROR_DIR_NOT_FOUND }, /* Software caused connection abort */
{ ECONNREFUSED, ERROR_OBJECT_IN_USE }, /* Connection refused */
{ ECONNRESET, ERROR_DIR_NOT_FOUND }, /* Connection reset by peer */
{ EDEADLK, ERROR_READ_PROTECTED }, /* Resource deadlock avoided */
{ EDESTADDRREQ, ERROR_REQUIRED_ARG_MISSING }, /* Destination address required */
{ EDQUOT, ERROR_DISK_FULL }, /* Disc quota exceeded */
{ EEXIST, ERROR_OBJECT_EXISTS }, /* File exists */
{ EFAULT, ERROR_BAD_NUMBER }, /* Bad address */
{ EFBIG, ERROR_OBJECT_IN_USE }, /* File too large */
{ EHOSTDOWN, ERROR_DIR_NOT_FOUND }, /* Host is down */
{ EHOSTUNREACH, ERROR_DIR_NOT_FOUND }, /* No route to host */
{ EINTR, ERROR_BREAK }, /* Interrupted system call */
{ EINVAL, ERROR_BAD_NUMBER }, /* Invalid argument */
{ EIO, ERROR_OBJECT_IN_USE }, /* Input/output error */
{ EISCONN, ERROR_OBJECT_IN_USE }, /* Socket is already connected */
{ EISDIR, ERROR_OBJECT_WRONG_TYPE }, /* Is a directory */
{ ELOOP, ERROR_TOO_MANY_LEVELS }, /* Too many levels of symbolic links */
{ EMFILE, ERROR_NO_FREE_STORE }, /* Too many open files */
{ EMLINK, ERROR_TOO_MANY_LEVELS }, /* Too many links */
{ EMSGSIZE, ERROR_LINE_TOO_LONG }, /* Message too long */
{ ENAMETOOLONG, ERROR_LINE_TOO_LONG }, /* File name too long */
{ ENETDOWN, ERROR_DIR_NOT_FOUND }, /* Network is down */
{ ENETRESET, ERROR_DIR_NOT_FOUND }, /* Network dropped connection on reset */
{ ENETUNREACH, ERROR_DIR_NOT_FOUND }, /* Network is unreachable */
{ ENFILE, ERROR_NO_FREE_STORE }, /* Too many open files in system */
{ ENOBUFS, ERROR_BUFFER_OVERFLOW }, /* No buffer space available */
{ ENODEV, ERROR_OBJECT_WRONG_TYPE }, /* Operation not supported by device */
{ ENOENT, ERROR_OBJECT_NOT_FOUND }, /* No such file or directory */
{ ENOLCK, ERROR_NOT_IMPLEMENTED }, /* no locks available */
{ ENOMEM, ERROR_NO_FREE_STORE }, /* Cannot allocate memory */
{ ENOPROTOOPT, ERROR_NOT_IMPLEMENTED }, /* Protocol not available */
{ ENOSPC, ERROR_DISK_FULL }, /* No space left on device */
{ ENOTBLK, ERROR_OBJECT_WRONG_TYPE }, /* Block device required */
{ ENOTCONN, ERROR_OBJECT_WRONG_TYPE }, /* Socket is not connected */
{ ENOTDIR, ERROR_OBJECT_WRONG_TYPE }, /* Not a directory */
{ ENOTEMPTY, ERROR_DIRECTORY_NOT_EMPTY }, /* Directory not empty */
{ ENOTSOCK, ERROR_OBJECT_WRONG_TYPE }, /* Socket operation on non-socket */
{ ENXIO, ERROR_OBJECT_NOT_FOUND }, /* No such device or address */
{ EOPNOTSUPP, ERROR_NOT_IMPLEMENTED }, /* Operation not supported */
{ EPERM, ERROR_READ_PROTECTED }, /* Operation not permitted */
{ EPFNOSUPPORT, ERROR_NOT_IMPLEMENTED }, /* Protocol family not supported */
{ EPROCLIM, ERROR_TASK_TABLE_FULL }, /* Too many processes */
{ EPROTONOSUPPORT, ERROR_NOT_IMPLEMENTED }, /* Protocol not supported */
{ EPROTOTYPE, ERROR_BAD_TEMPLATE }, /* Protocol wrong type for socket */
{ ERANGE, ERROR_BAD_NUMBER }, /* Numerical result out of range */
{ EROFS, ERROR_WRITE_PROTECTED }, /* Read-only file system */
{ ESHUTDOWN, ERROR_INVALID_LOCK }, /* Can't send after socket shutdown */
{ ESOCKTNOSUPPORT, ERROR_NOT_IMPLEMENTED }, /* Socket type not supported */
{ ESPIPE, ERROR_SEEK_ERROR }, /* Illegal seek */
{ ESRCH, ERROR_OBJECT_NOT_FOUND }, /* No such process */
{ ETXTBSY, ERROR_OBJECT_IN_USE }, /* Text file busy */
{ EUSERS, ERROR_TASK_TABLE_FULL }, /* Too many users */
{ EXDEV, ERROR_NOT_IMPLEMENTED }, /* Cross-device link */
{ error_invalid_netbios_session, ERROR_BUFFER_OVERFLOW },
{ error_message_exceeds_buffer_size, ERROR_BUFFER_OVERFLOW },
{ error_invalid_buffer_format, ERROR_BAD_NUMBER },
{ error_data_exceeds_buffer_size, ERROR_BUFFER_OVERFLOW },
{ error_invalid_parameter_size, ERROR_BAD_NUMBER },
{ error_server_setup_incomplete, ERROR_INVALID_COMPONENT_NAME },
{ error_server_connection_invalid, ERROR_INVALID_COMPONENT_NAME },
{ error_smb_message_signature_missing, ERROR_BAD_STREAM_NAME },
{ error_smb_message_too_short, ERROR_BAD_STREAM_NAME },
{ error_smb_message_invalid_command, ERROR_BAD_STREAM_NAME },
{ error_smb_message_invalid_word_count, ERROR_BAD_STREAM_NAME },
{ error_smb_message_invalid_byte_count, ERROR_BAD_STREAM_NAME },
{ error_looping_in_find_next, ERROR_TOO_MANY_LEVELS },
{ error_invalid_directory_size, ERROR_BAD_NUMBER },
{ error_session_request_failed, ERROR_INVALID_COMPONENT_NAME },
{ error_unsupported_dialect, ERROR_BAD_NUMBER },
{ -1, -1 }
};
#if DEBUG
int original_error = error;
#endif /* DEBUG */
LONG result = ERROR_ACTION_NOT_KNOWN;
int i;
ENTER();
/* Try our best to translate the SMB error class and code into a POSIX
* error code...
*/
if(error == error_check_smb_error)
{
int error_class = ((struct smb_server *)ServerData)->rcls;
int error_code = ((struct smb_server *)ServerData)->err;
error = smb_errno(error_class, error_code);
}
for(i = 0 ; map_posix_to_amigados[i][0] != -1 ; i++)
{
if(map_posix_to_amigados[i][0] == error)
{
result = map_posix_to_amigados[i][1];
break;
}
}
#if DEBUG
{
TEXT amigados_error_text[256];
Fault(result,NULL,amigados_error_text,sizeof(amigados_error_text));
if(original_error == error_check_smb_error)
{
int error_class = ((struct smb_server *)ServerData)->rcls;
int error_code = ((struct smb_server *)ServerData)->err;
char * smb_class_name;
char * smb_code_text;
smb_translate_error_class_and_code(error_class,error_code,&smb_class_name,&smb_code_text);
D(("Translated SMB %ld/%ld (%s/%s) -> POSIX %ld (%s) -> AmigaDOS error %ld (%s)", error_class, error_code, smb_class_name, smb_code_text, error, posix_strerror(error), result, amigados_error_text));
}
else
{
D(("Translated POSIX %ld (%s) -> AmigaDOS error %ld (%s)", error, posix_strerror(error), result, amigados_error_text));
}
}
#endif /* DEBUG */
RETURN(result);
return(result);
}
/****************************************************************************/
/* Check if the name for an AmigaDOS device or volume is not too short,
* not too long and does not contain unprintable/unsuitable characters.
*/
static BOOL
is_valid_device_name(const TEXT * name, int len)
{
BOOL result = FALSE;
int i, c;
if(len <= 0 || len > 255)
goto out;
for(i = 0 ; i < len ; i++)
{
c = name[i];
if(c == '/' || c == ':' || (c < ' ' && c != '\t') || (128 <= c && c < 160))
goto out;
}
result = TRUE;
out:
return(result);
}
/****************************************************************************/
/* Check if a file name is right and proper for AmigaDOS use,
* which excludes the use of unprintable characters, the path
* delimiters ':' and '/', but also the SMB path delimeter
* character '\'.
*
* Returns ERROR_INVALID_COMPONENT_NAME if the name is
* unsuitable, 0 otherwise.
*/
static int
validate_amigados_file_name(const TEXT * name,int len)
{
int error = ERROR_INVALID_COMPONENT_NAME;
int i, c;
if(len <= 0 || len > 255)
goto out;
if(MaxNameLen > 0 && len > MaxNameLen)
goto out;
for(i = 0 ; i < len ; i++)
{
c = name[i];
/* This should be a printable character and none of
* the characters reserved by the file system which
* should not appear in a file/directory name.
*/
if(c == '/' || c == ':' || c == SMB_PATH_SEPARATOR || (c < ' ' && c != '\t') || (128 <= c && c < 160))
goto out;
}
error = OK;
out:
return(error);
}
/****************************************************************************/
/* Pick up all the DOS packets waiting to be processed and
* return them with an error, claiming that the packet cannot
* be processed. This is used while the file system has been
* disabled, to avoid packets piling up which are not going
* to be processed any time soon.
*/
static void
reject_all_pending_packets(struct MsgPort * port)
{
struct DosPacket * dp;
struct Message * mn;
LONG result;
while((mn = GetMsg(port)) != NULL)
{
SHOWMSG("returning pending packet");
dp = (struct DosPacket *)mn->mn_Node.ln_Name;
switch(dp->dp_Action)
{
case ACTION_READ_LINK:
case ACTION_SEEK:
case ACTION_SET_FILE_SIZE:
case ACTION_READ:
case ACTION_WRITE:
result = -1;
break;
default:
result = DOSFALSE;
break;
}
ReplyPkt(dp,result,ERROR_ACTION_NOT_KNOWN);
}
}
/****************************************************************************/
/* Remove a DosList entry using the proper protocols. Note that
* this function can fail!
*/
static BOOL
really_remove_dosentry(struct DosList * entry)
{
struct MsgPort * port;
struct DosList * dl;
BOOL success = FALSE;
int kind,i;
ENTER();
if(entry->dol_Type == DLT_DEVICE)
{
D(("removing '%b' (device)", entry->dol_Name));
kind = LDF_DEVICES;
}
else
{
D(("removing '%b' (volume)", entry->dol_Name));
kind = LDF_VOLUMES;
}
port = entry->dol_Task;
for(i = 0 ; i < 100 ; i++)
{
dl = AttemptLockDosList(LDF_WRITE|kind);
/* Workaround for dos.library bug present in
* Kickstart 2.0 through Kickstart 3.0.
*/
if(((ULONG)dl) == 1)
dl = NULL;
if(dl != NULL)
{
D(("doslist is locked; removing '%b' for good", entry->dol_Name));
RemDosEntry(entry);
UnLockDosList(LDF_WRITE|kind);
success = TRUE;
break;
}
reject_all_pending_packets(port);
PROFILE_OFF();
Delay(TICKS_PER_SECOND / 10);
PROFILE_ON();
}
if(NO success)
SHOWMSG("that didn't work");
RETURN(success);
return(success);
}
/****************************************************************************/
/* Release all resources allocated by the setup() routine. */
static void
cleanup(void)
{
BOOL send_disk_change = FALSE;
ENTER();
PROFILE_OFF();
/* If any errors have cropped up, display them now before
* we call it quits.
*/
display_error_message_list();
if(NewProgramName != NULL)
{
FreeVec(NewProgramName);
NewProgramName = NULL;
}
if(Parameters != NULL)
{
FreeArgs(Parameters);
Parameters = NULL;
}
if(Icon != NULL)
{
FreeDiskObject(Icon);
Icon = NULL;
}
if(ServerData != NULL)
{
smba_disconnect(ServerData);
ServerData = NULL;
}
if(DeviceNode != NULL)
{
if(DeviceNodeAdded)
{
SHOWMSG("removing the device node");
if(really_remove_dosentry(DeviceNode))
{
SHOWMSG("freeing the device node");
FreeDosEntry(DeviceNode);
}
else
{
SHOWMSG("that didn't work.");
}
}
else
{
FreeDosEntry(DeviceNode);
}
DeviceNode = NULL;
}
if(VolumeNode != NULL)
{
if(VolumeNodeAdded)
{
SHOWMSG("removing the volume node");
if(really_remove_dosentry(VolumeNode))
{
SHOWMSG("freeing the volume node");
FreeDosEntry(VolumeNode);
send_disk_change = TRUE;
}
else
{
SHOWMSG("that didn't work.");
}
}
else
{
FreeDosEntry(VolumeNode);
}
VolumeNode = NULL;
}
if(FileSystemPort != NULL)
{
SHOWMSG("returning all pending packets");
/* Return all queued packets; there should be none, though. */
reject_all_pending_packets(FileSystemPort);
SHOWMSG("done");
DeleteMsgPort(FileSystemPort);
FileSystemPort = NULL;
}
if(WBStartup == NULL && send_disk_change)
{
SHOWMSG("sending a disk removed event");
send_disk_change_notification(IECLASS_DISKREMOVED);
}
SHOWMSG("closing libraries and devices...");
#if defined(__amigaos4__)
{
if(ITimer != NULL)
{
DropInterface((struct Interface *)ITimer);
ITimer = NULL;
}
}
#endif /* __amigaos4__ */
if(TimerRequest != NULL)
{
if(TimerTicking)
{
if(CheckIO((struct IORequest *)TimerRequest) == NULL)
AbortIO((struct IORequest *)TimerRequest);
WaitIO((struct IORequest *)TimerRequest);
TimerTicking = FALSE;
}
if(TimerRequest->tr_node.io_Device != NULL)
CloseDevice((struct IORequest *)TimerRequest);
DeleteIORequest((struct IORequest *)TimerRequest);
TimerRequest = NULL;
}
if(TimerPort != NULL)
DeleteMsgPort(TimerPort);
#if defined(__amigaos4__)
{
if(ISocket != NULL)
{
DropInterface((struct Interface *)ISocket);
ISocket = NULL;
}
}
#endif /* __amigaos4__ */
if(SocketBase != NULL)
{
CloseLibrary(SocketBase);
SocketBase = NULL;
}
#if defined(__amigaos4__)
{
if(IIcon != NULL)
{
DropInterface((struct Interface *)IIcon);
IIcon = NULL;
}
}
#endif /* __amigaos4__ */
if(IconBase != NULL)
{
CloseLibrary(IconBase);
IconBase = NULL;
}
if(Locale != NULL)
{
CloseLocale(Locale);
Locale = NULL;
}
#if defined(__amigaos4__)
{
if(ILocale != NULL)
{
DropInterface((struct Interface *)ILocale);
ILocale = NULL;
}
}
#endif /* __amigaos4__ */
if(LocaleBase != NULL)
{
CloseLibrary(LocaleBase);
LocaleBase = NULL;
}
PROFILE_ON();
LEAVE();
}
/*****************************************************************************/
#ifdef USE_SPLAY_TREE
/* This is used by the splay tree functions to compare the
* file and lock node addresses.
*/
static int
compare_file_or_lock_by_address(const BYTE * a, const BYTE * b)
{
int result;
if (a < b)
result = -1;
else if (a == b)
result = 0;
else
result = 1;
return(result);
}
#endif /* USE_SPLAY_TREE */
/*****************************************************************************/
/* Allocate all the necessary resources to get going. */
static BOOL
setup(
const TEXT * program_name,
const TEXT * service,
const TEXT * workgroup,
STRPTR username,
STRPTR opt_password,
BOOL opt_change_username_case,
BOOL opt_change_password_case,
const TEXT * opt_clientname,
const TEXT * opt_servername,
int opt_cachesize,
int opt_cache_tables,
int opt_max_transmit,
int opt_timeout,
LONG * opt_time_zone_offset,
LONG * opt_dst_offset,
BOOL opt_raw_smb,
BOOL opt_unicode,
BOOL opt_prefer_core_protocol,
BOOL opt_session_setup_delay_unicode,
BOOL opt_write_behind,
int opt_smb_request_write_threshold,
int opt_smb_request_read_threshold,
BOOL opt_scatter_gather,
BOOL opt_tcp_no_delay,
int opt_socket_receive_buffer_size,
int opt_socket_send_buffer_size,
const TEXT * device_name,
const TEXT * volume_name,
BOOL opt_add_volume,
const TEXT * translation_file)
{
BOOL result = FALSE;
struct DosList * dl;
int error = 0;
int smb_error_class = 0, smb_error = 0;
const TEXT * actual_volume_name;
int actual_volume_name_len;
TEXT name[MAX_FILENAME_LEN+1];
smba_connect_parameters_t par;
BOOL device_exists = FALSE;
int len,i;
ENTER();
PROFILE_OFF();
NewList((struct List *)&FileList);
NewList((struct List *)&LockList);
#ifdef USE_SPLAY_TREE
{
/* File names may not be unique. */
splay_tree_init(&FileNameTree, (splay_key_compare_t)compare_names);
FileNameTree.st_allow_duplicates = TRUE;
splay_tree_init(&FileAddressTree, compare_file_or_lock_by_address);
/* Lock names may not be unique. */
splay_tree_init(&LockNameTree, (splay_key_compare_t)compare_names);
LockNameTree.st_allow_duplicates = TRUE;
splay_tree_init(&LockAddressTree, compare_file_or_lock_by_address);
}
#endif /* USE_SPLAY_TREE */
LocaleBase = OpenLibrary("locale.library",38);
#if defined(__amigaos4__)
{
if(LocaleBase != NULL)
{
ILocale = (struct LocaleIFace *)GetInterface(LocaleBase, "main", 1, 0);
if(ILocale == NULL)
{
CloseLibrary(LocaleBase);
LocaleBase = NULL;
}
}
}
#endif /* __amigaos4__ */
/* We cache the default locale: the GMT offset value may change over time. */
if(LocaleBase != NULL)
Locale = OpenLocale(NULL);
if(opt_time_zone_offset != NULL)
{
TimeZoneOffset = -(*opt_time_zone_offset);
OverrideLocaleTimeZone = TRUE;
SHOWVALUE(TimeZoneOffset);
}
else
{
if(Locale != NULL)
SHOWVALUE(Locale->loc_GMTOffset);
}
if(opt_dst_offset != NULL)
{
DSTOffset = -60 * (*opt_dst_offset);
SHOWVALUE(DSTOffset);
}
TimerPort = CreateMsgPort();
if(TimerPort != NULL)
TimerRequest = (struct timerequest *)CreateIORequest(TimerPort, sizeof(*TimerRequest));
if(TimerRequest == NULL || OpenDevice(TIMERNAME,UNIT_VBLANK,(struct IORequest *)TimerRequest,0) != OK)
{
report_error("Could not open 'timer.device'.");
goto out;
}
TimerBase = (struct Library *)TimerRequest->tr_node.io_Device;
#if defined(__amigaos4__)
{
ASSERT(TimerBase != NULL);
ITimer = (struct TimerIFace *)GetInterface(TimerBase, "main", 1, 0);
if(ITimer == NULL)
{
report_error("Could not open 'timer.device'.");
goto out;
}
}
#endif /* __amigaos4__ */
SocketBase = OpenLibrary("bsdsocket.library",3);
#if defined(__amigaos4__)
{
if(SocketBase != NULL)
{
ISocket = (struct SocketIFace *)GetInterface(SocketBase, "main", 1, 0);
if(ISocket == NULL)
{
CloseLibrary(SocketBase);
SocketBase = NULL;
}
}
}
#endif /* __amigaos4__ */
if(SocketBase == NULL)
{
report_error("Could not open 'bsdsocket.library' V3; TCP/IP stack not running?");
goto out;
}
error = SocketBaseTags(
SBTM_SETVAL(SBTC_ERRNOPTR(sizeof(errno))), &errno,
SBTM_SETVAL(SBTC_HERRNOLONGPTR), &h_errno,
SBTM_SETVAL(SBTC_LOGTAGPTR), program_name,
SBTM_SETVAL(SBTC_BREAKMASK), SIGBREAKF_CTRL_C,
TAG_END);
if(error != OK)
{
report_error("Could not initialize 'bsdsocket.library' (%ld, %s).",error,posix_strerror(error));
goto out;
}
/* Convert the user name into all-uppercase characters? */
if(opt_change_username_case)
string_toupper(username);
/* Convert the password into all-uppercase characters? */
if(opt_change_password_case)
string_toupper(opt_password);
/* Read the translation file, if possible. */
if(translation_file != NULL)
{
STRPTR msg = NULL;
BPTR file;
error = OK;
D(("using translation file '%s'",translation_file));
file = Open(translation_file,MODE_OLDFILE);
if(file != ZERO)
{
LONG num_bytes_read = 0;
LONG n;
n = Read(file,map_amiga_to_smb_name,256);
if(n == 256)
{
num_bytes_read += n;
n = Read(file,map_smb_to_amiga_name,256);
if(n > 0)
num_bytes_read += n;
}
if(n < 0)
{
msg = "Could not read translation file";
error = IoErr();
}
else if (num_bytes_read < 512)
{
msg = "Translation file is too short";
}
Close(file);
}
else
{
msg = "Could not open translation file";
error = IoErr();
}
if (msg == NULL)
{
TranslateNames = TRUE;
}
else if (error == OK)
{
report_error("%s '%s'.",msg,translation_file);
goto out;
}
else
{
TEXT description[100];
STRPTR s;
Fault(error,NULL,description,sizeof(description));
/* Drop the line feed - we don't need it. */
s = strchr(description,'\n');
if(s != NULL)
(*s) = '\0';
report_error("%s '%s' (%ld, %s).",msg,translation_file,error,description);
goto out;
}
}
memset(&par,0,sizeof(par));
if(smba_start(
service,
workgroup,
username,
opt_password,
opt_clientname,
opt_servername,
opt_cachesize,
opt_cache_tables,
opt_max_transmit,
opt_timeout,
opt_raw_smb,
opt_unicode,
opt_prefer_core_protocol,
CaseSensitive,
opt_session_setup_delay_unicode,
opt_write_behind,
opt_smb_request_write_threshold,
opt_smb_request_read_threshold,
opt_scatter_gather,
opt_tcp_no_delay,
opt_socket_receive_buffer_size,
opt_socket_send_buffer_size,
&error,
&smb_error_class,
&smb_error,
&par,
&ServerData) < 0)
{
goto out;
}
FileSystemPort = CreateMsgPort();
if(FileSystemPort == NULL)
{
report_error("Could not create filesystem port.");
goto out;
}
/* If a device name was provided, check whether it is
* well-formed, and whether a device of that name
* already exists.
*/
if(device_name != NULL)
{
len = strlen(device_name);
/* Lose the trailing ':' character, if any. */
if(len > 0 && device_name[len-1] == ':')
len--;
if(NOT is_valid_device_name(device_name, len))
{
report_error("Device name '%s' cannot be used with AmigaDOS.",device_name);
goto out;
}
memcpy(name,device_name,len);
name[len] = '\0';
dl = LockDosList(LDF_WRITE|LDF_VOLUMES|LDF_DEVICES);
/* Does this device name already exist? Note that
* device names must be unique.
*/
if(FindDosEntry(dl,name,LDF_DEVICES) != NULL)
device_exists = TRUE;
}
/* Otherwise pick a device name of the form SMBFS, SMBFS0..SMBFS99,
* which is not currently in use.
*/
else
{
dl = LockDosList(LDF_WRITE|LDF_VOLUMES|LDF_DEVICES);
/* Try to find a unique device name out of 101 possible options. */
for(i = -1 ; i < 100 ; i++)
{
if(i == -1)
strlcpy(name,"SMBFS",sizeof(name));
else
LocalSNPrintf(name,sizeof(name),"SMBFS%ld",i);
device_exists = (BOOL)(FindDosEntry(dl,name,LDF_DEVICES) != NULL);
if(NOT device_exists)
{
device_name = name;
break;
}
}
}
if(device_exists)
{
UnLockDosList(LDF_WRITE|LDF_VOLUMES|LDF_DEVICES);
report_error("Device name '%s:' is already taken.",device_name);
goto out;
}
/* Finally, create the device node. */
DeviceNode = MakeDosEntry(name,DLT_DEVICE);
if(DeviceNode == NULL)
{
UnLockDosList(LDF_WRITE|LDF_VOLUMES|LDF_DEVICES);
report_error("Could not create device node.");
goto out;
}
DeviceNode->dol_Task = FileSystemPort;
/* If requested, add a volume name, using the service
* name as the default value.
*/
if(opt_add_volume && volume_name == NULL)
volume_name = par.service;
/* Examine the volume name; make sure that it is
* well-formed.
*/
if(volume_name == NULL)
actual_volume_name = device_name;
else
actual_volume_name = volume_name;
/* Ignore a trailing colon character. */
actual_volume_name_len = strlen(actual_volume_name);
if(actual_volume_name_len > 0 && actual_volume_name[actual_volume_name_len-1] == ':')
actual_volume_name_len--;
D(("actual volume name = '%s', length = %ld",actual_volume_name,actual_volume_name_len));
if(NOT is_valid_device_name(actual_volume_name,actual_volume_name_len))
{
UnLockDosList(LDF_WRITE|LDF_VOLUMES|LDF_DEVICES);
report_error("Volume name '%s' cannot be used with AmigaDOS.",actual_volume_name);
goto out;
}
/* Now, finally, take care of the volume name. */
memcpy(name,actual_volume_name,actual_volume_name_len);
name[actual_volume_name_len] = '\0';
VolumeNode = MakeDosEntry(name,DLT_VOLUME);
if(VolumeNode == NULL)
{
UnLockDosList(LDF_WRITE|LDF_VOLUMES|LDF_DEVICES);
report_error("Could not create volume node.");
goto out;
}
VolumeNode->dol_Task = FileSystemPort;
DateStamp(&VolumeNode->dol_misc.dol_volume.dol_VolumeDate);
/* Allow the file system to be identified by looking at the
* contents of the volume node. We put "SMB\0" into the
* dol_DiskType field. This was suggested by Chris Handley
* and Chris Young. Thank you very much!
*/
VolumeNode->dol_misc.dol_volume.dol_DiskType = ID_SMB_DISK;
if(DeviceNode != NULL)
{
AddDosEntry(DeviceNode);
DeviceNodeAdded = TRUE;
}
/* Note: We always need the volume node to make some file
* system operations safe (e.g. Lock()), but we may
* not always need to make it visible.
*/
if(volume_name != NULL && VolumeNode != NULL)
{
AddDosEntry(VolumeNode);
VolumeNodeAdded = TRUE;
}
/* And that concludes the mounting operation. */
UnLockDosList(LDF_WRITE|LDF_VOLUMES|LDF_DEVICES);
/* Tell Workbench and friends to update their volume lists. */
if(VolumeNodeAdded)
send_disk_change_notification(IECLASS_DISKINSERTED);
if(Cli() != NULL)
SetProgramName(NewProgramName);
result = TRUE;
out:
PROFILE_ON();
RETURN(result);
return(result);
}
/****************************************************************************/
static void
add_file_node(struct FileNode * fn)
{
ASSERT( fn != NULL );
AddTail((struct List *)&FileList,(struct Node *)fn);
#ifdef USE_SPLAY_TREE
{
fn->fn_SplayNameNode.sn_key = (splay_key_t)fn->fn_FullName;
fn->fn_SplayNameNode.sn_userdata = fn;
splay_tree_add(&FileNameTree, &fn->fn_SplayNameNode);
fn->fn_SplayAddressNode.sn_key = (splay_key_t)fn;
fn->fn_SplayAddressNode.sn_userdata = fn;
splay_tree_add(&FileAddressTree, &fn->fn_SplayAddressNode);
}
#endif /* USE_SPLAY_TREE */
}
/****************************************************************************/
static void
remove_file_node(struct FileNode * fn)
{
ASSERT( fn != NULL );
Remove((struct Node *)fn);
#ifdef USE_SPLAY_TREE
{
APTR found;
found = splay_tree_remove(&FileNameTree, &fn->fn_SplayNameNode, (splay_key_t)fn->fn_FullName);
D(("file name node removal %s", found != NULL ? "succeeded" : "failed"));
found = splay_tree_remove(&FileAddressTree, NULL, (splay_key_t)fn);
D(("file address node removal %s", found != NULL ? "succeeded" : "failed"));
}
#endif /* USE_SPLAY_TREE */
}
/****************************************************************************/
static void
add_lock_node(struct LockNode * ln)
{
ASSERT( ln != NULL );
AddTail((struct List *)&LockList,(struct Node *)ln);
#ifdef USE_SPLAY_TREE
{
ln->ln_SplayNameNode.sn_key = (splay_key_t)ln->ln_FullName;
ln->ln_SplayNameNode.sn_userdata = ln;
splay_tree_add(&LockNameTree, &ln->ln_SplayNameNode);
ln->ln_SplayAddressNode.sn_key = (splay_key_t)ln;
ln->ln_SplayAddressNode.sn_userdata = ln;
splay_tree_add(&LockAddressTree, &ln->ln_SplayAddressNode);
}
#endif /* USE_SPLAY_TREE */
}
/****************************************************************************/
static void
remove_lock_node(struct LockNode * ln)
{
ASSERT( ln != NULL );
Remove((struct Node *)ln);
#ifdef USE_SPLAY_TREE
{
APTR found;
found = splay_tree_remove(&LockNameTree, &ln->ln_SplayNameNode, ln->ln_SplayNameNode.sn_key);
D(("lock name node removal %s", found != NULL ? "succeeded" : "failed"));
found = splay_tree_remove(&LockAddressTree, NULL, (splay_key_t)ln);
D(("lock address node removal %s", found != NULL ? "succeeded" : "failed"));
}
#endif /* USE_SPLAY_TREE */
/* This will make the lock_is_invalid() tests return
* TRUE, which should make it easier to detect
* files which have been closed already, should the
* file system receive them.
*/
ln->ln_FileLock.fl_Volume = (BPTR)NULL;
ln->ln_FileLock.fl_Key = 0;
ln->ln_File = NULL;
ln->ln_Magic = 0;
}
/****************************************************************************/
/* Truncate an file size or position which cannot be represented by a
* single 32 bit integer and substitute it with something vaguely more
* sensible (which probably isn't so sensible in the first place, but
* we keep trying).
*/
static ULONG
truncate_64_bit_position(const QUAD * position_quad)
{
ULONG result;
if(position_quad->High == 0)
result = position_quad->Low;
else
result = 0xFFFFFFFFUL;
return(result);
}
/****************************************************************************/
#if DEBUG
/* Create a form of the given file/directory name which shows unprintable
* characters through the use of 'C' style escape sequences. Returns a
* pointer to a local static buffer which contains the escaped string.
* If the escape form of the name is too long to fit into the buffer,
* the text " [...]" will be appended to the contents of the buffer, to
* indicate that the name was truncated.
*/
TEXT *
escape_name(const TEXT * name)
{
static const TEXT truncated_suffix[] = " [...]";
static TEXT buffer[4 * 256 + sizeof(truncated_suffix)];
const int buffer_size = (int)sizeof(buffer) - sizeof(truncated_suffix);
BOOL truncated = FALSE;
TEXT hex_code[6];
TEXT * str;
int len;
TEXT c;
if(name == NULL)
name = "***NULL POINTER***";
len = 0;
while((c = (*name++)) != '\0')
{
if (c < ' ')
{
int l = 2;
switch(c)
{
case '\a':
str = "\\a";
break;
case '\b':
str = "\\b";
break;
case '\f':
str = "\\f";
break;
case '\n':
str = "\\n";
break;
case '\r':
str = "\\r";
break;
case '\t':
str = "\\t";
break;
case '\v':
str = "\\v";
break;
default:
LocalSNPrintf(hex_code,sizeof(hex_code),"\\x%02lx",c);
str = hex_code;
l = 4;
break;
}
if(len + l >= buffer_size)
{
truncated = TRUE;
break;
}
memcpy(&buffer[len],str,l);
len += l;
}
else if (127 <= c && c <= 160)
{
if(len + 4 >= buffer_size)
{
truncated = TRUE;
break;
}
LocalSNPrintf(hex_code,sizeof(hex_code),"\\x%02lx",c);
memcpy(&buffer[len],hex_code,4);
len += 4;
}
else if (c == '\\')
{
if(len + 2 >= buffer_size)
{
truncated = TRUE;
break;
}
buffer[len++] = c;
buffer[len++] = c;
}
else
{
if(len + 1 >= buffer_size)
{
truncated = TRUE;
break;
}
buffer[len++] = c;
}
}
if(truncated)
{
memcpy(&buffer[len],truncated_suffix,sizeof(truncated_suffix)-1);
len += sizeof(truncated_suffix)-1;
}
ASSERT( len < (int)sizeof(buffer) );
buffer[len] = '\0';
return(buffer);
}
#endif /* DEBUG */
/****************************************************************************/
/* Convert a BCPL string into a standard NUL-terminated 'C' string.
* Note that these must be different strings which must not
* overlap!
*/
static int
convert_from_bcpl_to_c_string(STRPTR cstring,int cstring_size,const void * bstring)
{
const TEXT * from = bstring;
int len;
ASSERT( cstring_size > 0 );
len = from[0];
if(len > cstring_size-1)
len = cstring_size-1;
if(len > 0)
memcpy(cstring,&from[1],len);
if(cstring_size > 0)
{
ASSERT( len >= 0 );
cstring[len] = '\0';
}
return(len);
}
/* Convert a NUL-terminated 'C' string into a BCPL string. */
static void
convert_from_c_to_bcpl_string(void * bstring,int bstring_size,const TEXT * cstring,int len)
{
TEXT * to = bstring;
ASSERT( bstring_size > 0 );
if(bstring_size > 0)
{
if(bstring_size > MAX_FILENAME_LEN+1)
bstring_size = MAX_FILENAME_LEN+1;
if(len > bstring_size-1)
len = bstring_size-1;
(*to++) = len;
memcpy(to,cstring,len);
}
}
/****************************************************************************/
/* Allocate memory for storing a copy of a string with given
* length. Sufficient memory will be allocated for proper
* NUL-termination.
*/
static TEXT *
allocate_and_copy_string(const TEXT * original_str, int len)
{
TEXT * copied_str;
ASSERT( original_str != NULL && len >= 0 );
copied_str = allocate_memory(len + 1);
if(copied_str != NULL)
{
if(len > 0)
memcpy(copied_str, original_str, len);
copied_str[len] = '\0';
}
return(copied_str);
}
/****************************************************************************/
/* Return the next part (segment) of an AmigaDOS path name, which
* is either ":" (= go to root directory), "/" (= go to parent
* directory) or the name of a file or directory.
*
* The segment name will be copied into the provided buffer, and
* just to be sure, the total length of the segment name will be
* provided separately. If the segment name was truncated you
* can find out by comparing the segment buffer size with the
* segment length indicated.
*/
static int
get_next_path_segment(
const TEXT * path,
int path_len,
int offset,
TEXT * segment,
int segment_size,
int * segment_len_ptr)
{
ASSERT( path_len >= 0 );
ASSERT( path != NULL || path_len == 0 );
ASSERT( segment_size >= 0 );
ASSERT( segment != NULL || segment_size == 0 );
ASSERT( segment_len_ptr != NULL );
/* No segment processed yet. */
(*segment_len_ptr) = 0;
/* Is there still something to process? */
if(offset < path_len)
{
TEXT c;
c = path[offset];
/* If there's a leading ":" or "/" character,
* it means that this is not a path delimiter
* but a control character instead. We return
* that control character as is.
*
* Note that the ":" only has meaning if it is
* the very first character of the path string.
*/
if((c == ':' && offset == 0) || c == '/')
{
(*segment_len_ptr) = 1;
/* Return this as the next segment. */
if(segment_size > 0)
{
/* This is for the terminating NUL byte. */
segment_size--;
/* Can we store the single control character? */
if(segment_size > 0)
(*segment++) = c;
(*segment) = '\0';
}
offset += 1;
}
/* Otherwise check if there is a directory
* or file name which needs to be processed.
*/
else
{
int i;
for(i = offset ; i <= path_len ; i++)
{
/* We search for the end of the segment,
* which is either the end of the path string
* or where we found another path delimiter
* character.
*/
if(i == path_len || path[i] == '/')
{
int len;
len = i - offset;
ASSERT( len > 0 );
(*segment_len_ptr) = len;
/* Return this as the next segment. */
if(segment_size > 0)
{
/* This is for the terminating NUL byte. */
segment_size--;
/* Can we store the path, or at least a part of it? */
if(segment_size > 0)
{
/* Don't copy more characters than will fit. */
if(segment_size < len)
len = segment_size;
memmove(segment,&path[offset],len);
segment += len;
}
(*segment) = '\0';
}
offset = i+1;
break;
}
}
}
}
return(offset);
}
/****************************************************************************/
/* Build the fully qualified name of a file or directory in reference
* to the name of the parent directory. This takes care of all the
* special cases, such as the root directory. The result will be converted
* to be in a form suitable for use with the SMB file sharing service.
*
* Note that the parent directory name uses SMB path name separator
* characters ("\"), but the path name to be added ("name") uses the
* AmigaDOS path name separator characters ("/").
*/
static int
build_full_path_name(
const TEXT * parent_name,
const TEXT * name,
int name_len,
STRPTR * result_ptr)
{
int error = OK;
int parent_name_len;
STRPTR buffer;
STRPTR to;
int size;
int len;
ENTER();
if(parent_name == NULL)
SHOWMSG("parent name = NULL");
else
D(("parent name = '%s'",escape_name(parent_name)));
if(name == NULL)
SHOWMSG("name = NULL");
else
D(("name = '%s'",escape_name(name)));
(*result_ptr) = NULL;
if(name == NULL)
name_len = 0;
/* A NULL parent name stands in for the ZERO lock,
* which refers to the root directory of the volume.
*/
if(parent_name == NULL)
parent_name = SMB_ROOT_DIR_NAME;
parent_name_len = strlen(parent_name);
size = parent_name_len + 1;
/* The combined parent and path names may end up being shorter
* than what we allocate memory for, but we'd rather play it
* safe...
*/
if(name_len > 0)
{
BOOL name_changed = FALSE;
TEXT c;
int i;
/* Remove a trailing '/' since it has no meaning and
* might just lead to trouble during parsing.
*/
if(name[name_len - 1] == '/' && name_len > 1)
{
if(name[name_len - 2] != '/')
{
name_len--;
name_changed = TRUE;
}
}
/* Remove a device, volume or assignment name from the path name.
* If necessary, the path following the ':' character will be
* retained.
*
* This process is necessary because the dos.library packet interface
* will usually provide a FileLock along with the complete path name
* of the file or drawer which must be interpreted relative to the
* FileLock.
*
* In the simple case this would be, for example, a FileLock on the
* "Workbench:Tools" directory and a path of name "Calculator". But
* it is also possible for the path to contain a volume name or
* assignment, e.g. a FileLock on "SYS:C" and a path name of "C:Dir".
* In the latter case the FileLock already refers to the correct
* parent directory and the device, volume or assignment must be
* removed from the path, which in this case would replace "C:Dir"
* with "Dir".
*/
for(i = 0 ; i < name_len ; i++)
{
c = name[i];
/* A path delimiter cannot be part of a volume, device or
* assignment name, so we don't bother checking the remainder
* of the path.
*/
if(c == '/')
break;
/* This is either a control character (the path name is
* actually ":") or indicates the end of a volume, device
* or assignment name.
*/
if(c == ':')
{
/* Remove the volume, device or assignment name if
* there is one.
*/
if(i > 0)
{
name += i+1;
name_len -= i+1;
name_changed = TRUE;
}
break;
}
}
#if DEBUG
{
if(name_changed)
{
TEXT printable_name[MAX_FILENAME_LEN+1];
int l;
l = name_len;
if(l >= (int)sizeof(printable_name))
l = sizeof(printable_name)-1;
memmove(printable_name, name, l);
printable_name[l] = '\0';
D(("name changed to '%s'",escape_name(printable_name)));
}
}
#endif /* DEBUG */
size += 1 + name_len;
}
buffer = allocate_memory(size);
if(buffer == NULL)
{
error = ERROR_NO_FREE_STORE;
goto out;
}
to = buffer;
memcpy(to,parent_name,parent_name_len);
to += parent_name_len;
ASSERT( buffer <= to );
len = (int)(to - buffer);
/* Add the path name to the full path, if available. */
if(name_len > 0)
{
TEXT segment[MAX_FILENAME_LEN+1];
int segment_len;
int offset, next_offset;
/* The parent directory name must be an absolute path. */
ASSERT( strncmp(buffer,SMB_ROOT_DIR_NAME,1) == SAME );
for(offset = 0 ; offset < name_len ; offset = next_offset)
{
next_offset = get_next_path_segment(name,name_len,offset,segment,sizeof(segment),&segment_len);
D(("segment = '%s', len=%ld, offset=%ld -> %ld", segment, segment_len, offset, next_offset));
/* Segment buffer overflow or something even weirder? */
if(segment_len == 0 || segment_len > (int)sizeof(segment))
{
if(segment_len == 0)
D(("segment path processing failed"));
else
D(("segment length %ld overflows buffer", segment_len));
error = ERROR_BUFFER_OVERFLOW;
goto out;
}
/* Move up to the root directory? Note that the ":" only has
* this particular meaning if it is found as the first
* character of the name.
*/
if (offset == 0 && strcmp(segment,":") == SAME)
{
to = &buffer[1];
len = 1;
}
/* Move up to the parent directory? */
else if (strcmp(segment,"/") == SAME)
{
/* Unless we are already at the root directory
* level, try to find the parent of the current
* path by looking for the last path separator.
*/
if(len > 1)
{
int i;
ASSERT( buffer[0] == SMB_PATH_SEPARATOR );
for(i = len-1 ; i >= 0 ; i--)
{
if(buffer[i] == SMB_PATH_SEPARATOR)
{
/* Don't move above the root, e.g "\foo" must become "\". */
if(i == 0)
{
to = &buffer[1];
len = 1;
}
/* Remove the final part of the path name, including the
* path delimiter, e.g. "\foo\bar" must become "\foo".
*/
else
{
to = &buffer[i];
len = i;
}
break;
}
}
}
/* Can't go any further. */
else
{
SHOWMSG("can't go any further up in the path");
error = ERROR_OBJECT_NOT_FOUND;
goto out;
}
}
/* Add the file/drawer name to the full path. */
else
{
/* Is the current path representing the root directory? */
if(len == 1)
{
/* So there better be enough room to add this path. */
ASSERT( len + segment_len + 1 <= size );
}
else
{
/* We need to add a path delimiter. */
ASSERT( len + 1 + segment_len + 1 <= size );
(*to++) = SMB_PATH_SEPARATOR;
len++;
}
memmove(to,segment,segment_len);
to += segment_len;
len += segment_len;
}
#if DEBUG
{
buffer[len] = '\0';
D(("full path name = '%s', length = %ld", escape_name(buffer), len));
}
#endif /* DEBUG */
}
}
ASSERT( len < size );
buffer[len] = '\0';
D(("full path name = '%s'",escape_name(buffer)));
SHOWVALUE(size);
SHOWVALUE(len);
(*result_ptr) = buffer;
buffer = NULL;
out:
free_memory(buffer);
RETURN(error);
return(error);
}
/****************************************************************************/
/* Break up an SMB path name into two parts, this being the directory part
* and a base part. For example, in "\foo\bar\baz" the directory part would
* be "\foo\bar" and the base part would be "baz".
*
* Because breaking up the path name may require adding a NUL byte to
* separate the directory and base parts, buffer memory will be allocated to
* hold the path name.
*
* Pointers to the directory and base parts will be provided by filling in the
* dir_part_ptr and base_part_ptr pointers, unless these are NULL. Note that
* the strings are read-only.
*
* This function will return an error if memory allocation failed or if the
* path name provided cannot be split.
*
* Make sure to release the memory allocated which the temp_ptr will point to
* when you no longer need it.
*/
static int
split_path_name(
const TEXT * path,
int path_len,
STRPTR * temp_ptr,
STRPTR * dir_part_ptr,
STRPTR * base_part_ptr)
{
STRPTR dir_part = NULL;
STRPTR base_part = NULL;
int error = OK;
STRPTR temp;
int i;
ASSERT( path != NULL && path_len >= 0 && temp_ptr != NULL );
(*temp_ptr) = NULL;
if(dir_part_ptr != NULL)
(*dir_part_ptr) = NULL;
if(base_part_ptr != NULL)
(*base_part_ptr) = NULL;
/* Make a copy of the path string. */
temp = allocate_and_copy_string(path, path_len);
/* Find the last '\' character which separates
* the directory part from the base part.
*/
for(i = path_len-1 ; i >= 0 ; i--)
{
if(temp[i] == SMB_PATH_SEPARATOR)
{
/* Is this the root directory? */
if(i == 0)
{
/* We return this constant value as the
* directory part (root directory).
*/
dir_part = SMB_ROOT_DIR_NAME;
/* If possible, return what follows the root
* directory as the base part.
*/
if(path_len > 1)
base_part = &temp[i+1];
}
else
{
/* Chop off the directory part. */
dir_part = temp;
temp[i] = '\0';
if(i+1 < path_len)
base_part = &temp[i+1];
}
break;
}
}
/* We have to have a directory part and a base part. */
if(dir_part == NULL || base_part == NULL)
{
error = ERROR_INVALID_COMPONENT_NAME;
goto out;
}
/* Don't forget to free this when it is no longer needed. */
(*temp_ptr) = temp;
temp = NULL;
if(dir_part_ptr != NULL)
(*dir_part_ptr) = dir_part;
if(base_part_ptr != NULL)
(*base_part_ptr) = base_part;
out:
free_memory(temp);
return(error);
}
/****************************************************************************/
/* Return a pointer to the base part of an SMB path name. For example,
* in "\foo\bar\baz" the base part would be "baz", and in "foo" the
* base part (in the absence of a directory part) would be identical
* to the path name "foo".
*
* Note that this function requires the path name to consist of a
* directory and a base part, and the base part must not be empty,
* e.g. "foo\" is not supported.
*/
static const TEXT *
get_base_name(const TEXT * path_name,int path_name_len)
{
const TEXT * result = path_name;
if(path_name_len > 1)
{
int i;
for(i = path_name_len-1 ; i >= 0 ; i--)
{
if(path_name[i] == SMB_PATH_SEPARATOR)
{
ASSERT( i+1 < path_name_len );
result = &path_name[i+1];
break;
}
}
}
return(result);
}
/****************************************************************************/
/* Find the parent directory of a file or directory. This strips off the
* last part of the name, e.g. translating "\foo" into "\" and "\foo\bar"
* into "\foo". There is no parent for the root directory ("\"), which
* is signalled by setting the error code returned to ERROR_OBJECT_NOT_FOUND.
*/
static int
get_parent_dir_name(const TEXT * name,int name_len,STRPTR * parent_name_ptr)
{
STRPTR parent_name = NULL;
int error;
int i;
ENTER();
ASSERT( name != NULL && name_len >= 0 && parent_name_ptr != NULL );
(*parent_name_ptr) = NULL;
D(("finding parent directory of '%s'",escape_name(name)));
if(name_len == 0)
{
SHOWMSG("no parent directory found");
/* The root directory has no parent. */
error = ERROR_OBJECT_NOT_FOUND;
goto out;
}
/* Drop any trailing '\' character. */
if(name_len > 1 && name[name_len-1] == SMB_PATH_SEPARATOR)
name_len--;
if(name_len == 1 && name[0] == SMB_PATH_SEPARATOR)
{
SHOWMSG("no parent directory found");
/* The root directory has no parent. */
error = ERROR_OBJECT_NOT_FOUND;
goto out;
}
/* Remove the last part of the path. */
for(i = name_len - 1 ; i >= 0 ; i--)
{
if(name[i] == SMB_PATH_SEPARATOR)
{
/* This translates "\foo" into "\", and
* "\foo\bar" into "\foo".
*/
if(i == 0)
name_len = 1;
else
name_len = i;
break;
}
}
parent_name = allocate_and_copy_string(name, name_len);
if(parent_name == NULL)
{
SHOWMSG("not enough memory");
error = ERROR_NO_FREE_STORE;
goto out;
}
D(("parent directory = '%s'",escape_name(parent_name)));
(*parent_name_ptr) = parent_name;
parent_name = NULL;
error = OK;
out:
free_memory(parent_name);
RETURN(error);
return(error);
}
/****************************************************************************/
/* Translate an Amiga file name into an encoded form, such as
* through a code page translation table. The file name provided will
* be modified in place and may become longer than it already is.
*
* Note that if code page based file name translation is disabled
* then this function will do nothing and leave the file name
* unchanged.
*
* This function returns an AmigaDOS error code if the translation
* cannot be performed and 0 otherwise.
*/
static int
translate_amiga_name_to_smb_name(TEXT * name, int name_len, int name_size)
{
int error = ERROR_INVALID_COMPONENT_NAME;
ASSERT( name != NULL && name_len < name_size );
/* Translate the Amiga file name using a translation table? */
if(TranslateNames)
{
const TEXT * map = map_amiga_to_smb_name;
TEXT c;
int i;
for(i = 0 ; i < name_len ; i++)
{
c = map[name[i]];
/* The NUL means that the respective mapping cannot
* represent the desired character.
*/
if(c == '\0')
goto out;
name[i] = c;
}
}
error = OK;
out:
return(error);
}
/****************************************************************************/
/* Translate an SMB file name in encoded form, such as
* through a code page translation table, into a form suitable
* for use with AmigaDOS. The file name provided will be modified
* in place and may become longer than it already is.
*
* This function returns an AmigaDOS error code if the translation
* cannot be performed and 0 otherwise.
*/
static int
translate_smb_name_to_amiga_name(TEXT * name, int name_len, int name_size)
{
int error = ERROR_INVALID_COMPONENT_NAME;
ASSERT( name != NULL && name_len < name_size );
/* Translate the name to Amiga format using a mapping table. */
if(TranslateNames)
{
const TEXT * map = map_smb_to_amiga_name;
TEXT c;
int i;
for(i = 0 ; i < name_len ; i++)
{
c = map[name[i]];
/* The NUL means that the respective mapping cannot
* represent the desired character.
*/
if(c == '\0')
goto out;
name[i] = c;
}
}
error = OK;
out:
return(error);
}
/****************************************************************************/
/* Restart directory scanning for all locks which share
* the parent directory of a directory or file which was
* just deleted.
*
* Because restarting interferes with the default
* procedure for deleting all the entries of a directory,
* we do not restart scanning on directories which the
* same process is currently scanning and issuing deletion
* commands for.
*/
static void
restart_directory_scanning(const struct MsgPort * user,const TEXT * parent_dir_name)
{
struct LockNode * ln;
struct splay_node * sn;
ENTER();
SHOWSTRING(parent_dir_name);
#ifndef USE_SPLAY_TREE
{
for(ln = (struct LockNode *)LockList.mlh_Head ;
ln->ln_MinNode.mln_Succ != NULL ;
ln = (struct LockNode *)ln->ln_MinNode.mln_Succ)
{
/* Try not to self-disrupt directory scanning while
* deleting the contents of the directory.
*/
if(ln->ln_LastUser == user)
continue;
if(compare_names(parent_dir_name,ln->ln_FullName) == SAME)
{
D(("restart scanning for '%s'", escape_name(ln->ln_FullName)));
ln->ln_RestartExamine = TRUE;
}
}
}
#else
{
/* Find all the locks which share the same directory name. */
sn = splay_tree_find(&LockNameTree, (splay_key_t)parent_dir_name);
if(sn != NULL)
{
/* Check each lock in turn, restarting the directory
* scanning process unless the same program which
* requires the restart is the one currently
* doing the scanning.
*/
for((void)NULL ; sn != NULL ; sn = sn->sn_next)
{
ln = sn->sn_userdata;
if(ln->ln_LastUser != user)
{
D(("restart scanning for '%s'", escape_name(ln->ln_FullName)));
ln->ln_RestartExamine = TRUE;
}
}
}
}
#endif /* USE_SPLAY_TREE */
LEAVE();
}
/****************************************************************************/
/* Check if a file lock was not created by this file system
* through CreateDir(), Lock(), ParentDir(), ParentOfFH(),
* DupLock() or DupLockFromFH(). Returns TRUE if this is case,
* FALSE otherwise.
*
* If this function returns FALSE, then the file lock has a
* valid LockNode attached.
*
* Note that the ZERO lock is always rejected as invalid
* by this function.
*/
static BOOL
lock_is_invalid(const struct FileLock * lock,int * error_ptr)
{
int error = ERROR_INVALID_LOCK;
const struct LockNode * ln;
BOOL is_invalid = TRUE;
SHOWPOINTER(lock);
/* The ZERO lock is considered invalid. */
if(lock == NULL)
{
SHOWMSG("ZERO lock not permitted");
goto out;
}
/* The lock has to be associated with this
* file system's volume node.
*/
if(lock->fl_Volume != MKBADDR(VolumeNode))
{
SHOWMSG("volume node does not match");
error = ERROR_NO_DISK;
goto out;
}
/* We need a valid lock node to be associated
* with the file lock.
*/
ln = (struct LockNode *)lock->fl_Key;
if(ln == NULL || lock != &ln->ln_FileLock || ln->ln_Magic != ID_SMB_DISK)
{
SHOWMSG("lock doesn't look right");
goto out;
}
is_invalid = FALSE;
error = OK;
out:
if(error_ptr != NULL)
(*error_ptr) = error;
return(is_invalid);
}
/****************************************************************************/
/* Check if a file node was not created by this file system
* through Open() or OpenFromLock(). Returns TRUE if this is case,
* FALSE otherwise.
*/
static BOOL
file_is_invalid(const struct FileNode * fn,int * error_ptr)
{
int error = ERROR_INVALID_LOCK;
BOOL is_invalid = TRUE;
SHOWPOINTER(fn);
if(fn == NULL)
{
SHOWMSG("no file node found");
goto out;
}
/* The file has to be associated with this
* file system's volume node.
*/
if(fn->fn_Volume != VolumeNode)
{
SHOWMSG("volume node does not match");
error = ERROR_NO_DISK;
goto out;
}
if(fn->fn_Magic != ID_SMB_DISK)
{
SHOWMSG("file doesn't look right");
goto out;
}
is_invalid = FALSE;
error = OK;
out:
if(error_ptr != NULL)
(*error_ptr) = error;
return(is_invalid);
}
/****************************************************************************/
/* Try to obtain the path name stored in a FileLock which
* a file or directory name is associated with. The parent
* FileLock can be NULL, which is interpreted as being a
* 'ZERO lock' that stands in for the root directory of the
* volume.
*/
static BOOL
get_parent_name(
const struct FileLock * parent,
const struct MsgPort * user,
STRPTR * parent_name_ptr,
int * error_ptr)
{
BOOL success = FALSE;
STRPTR name;
ASSERT( error_ptr != NULL );
SHOWPOINTER(parent);
if(parent != NULL)
{
struct LockNode * ln;
if(lock_is_invalid(parent, error_ptr))
goto out;
ln = (struct LockNode *)parent->fl_Key;
D(("parent lock on '%s'", escape_name(ln->ln_FullName)));
ln->ln_LastUser = user;
name = ln->ln_FullName;
}
else
{
SHOWMSG("parent lock on ':' (ZERO lock)");
name = NULL;
}
if(parent_name_ptr != NULL)
(*parent_name_ptr) = name;
success = TRUE;
out:
return(success);
}
/****************************************************************************/
static BPTR
Action_Parent(
const struct MsgPort * user,
struct FileLock * parent,
LONG * error_ptr)
{
BPTR result = ZERO;
STRPTR full_name = NULL;
struct LockNode * parent_ln;
struct LockNode * ln = NULL;
int error;
ENTER();
SHOWPOINTER(parent);
if(file_system_disabled)
{
error = ERROR_NO_DISK;
goto out;
}
/* There are two kinds of locks which need to be dealt
* with. The first kind is the ZERO lock (= NULL), and
* the other is a pointer to a FileLock.
*
* The ZERO lock's parent is the ZERO lock. Note that
* this is not the same thing as trying to obtain a
* lock on the "/" directory, relative to the root
* directory (which must fail with the error code
* ERROR_OBJECT_NOT_FOUND set).
*/
if(parent != NULL)
{
if(lock_is_invalid(parent,&error))
goto out;
parent_ln = (struct LockNode *)parent->fl_Key;
D(("parent lock on '%s'", escape_name(parent_ln->ln_FullName)));
parent_ln->ln_LastUser = user;
error = get_parent_dir_name(parent_ln->ln_FullName,strlen(parent_ln->ln_FullName),&full_name);
if(error != OK)
{
/* Check if we ended up having to return the parent of
* the root directory. This is indicated by the
* error code ERROR_OBJECT_NOT_FOUND. The parent directory
* of the root directory is the ZERO lock.
*/
if(error != ERROR_OBJECT_NOT_FOUND)
goto out;
SHOWMSG("returning ZERO lock");
}
else
{
ln = allocate_lock_node(SHARED_LOCK,full_name,user);
if(ln == NULL)
{
error = ERROR_NO_FREE_STORE;
goto out;
}
D(("full_name = '%s'",escape_name(full_name)));
if(smba_open(ServerData,full_name,open_read_only,open_dont_truncate,&ln->ln_File,&error) < 0)
{
error = map_errno_to_ioerr(error);
goto out;
}
add_lock_node(ln);
result = MKBADDR(&ln->ln_FileLock);
SHOWPOINTER(&ln->ln_FileLock);
full_name = NULL;
ln = NULL;
}
}
else
{
SHOWMSG("parent lock on ':' (ZERO lock)");
SHOWMSG("returning ZERO lock");
}
error = OK;
out:
free_memory(full_name);
free_memory(ln);
(*error_ptr) = error;
RETURN(result);
return(result);
}
/****************************************************************************/
static LONG
Action_DeleteObject(
const struct MsgPort * user,
struct FileLock * parent,
const void * bcpl_name,
LONG * error_ptr)
{
LONG result = DOSFALSE;
STRPTR full_name = NULL;
smba_file_t * file = NULL;
STRPTR parent_name;
STRPTR full_parent_name = NULL;
TEXT name[MAX_FILENAME_LEN+1];
int name_len;
smba_stat_t st;
int error;
ENTER();
D(("name = '%b'",MKBADDR(bcpl_name)));
if(file_system_disabled)
{
error = ERROR_NO_DISK;
goto out;
}
if(ReadOnly || WriteProtected)
{
error = ERROR_DISK_WRITE_PROTECTED;
goto out;
}
if(CANNOT get_parent_name(parent, user, &parent_name, &error))
goto out;
/* Name string, as given in the DOS packet, is in
* BCPL format and needs to be converted into
* 'C' format.
*/
name_len = convert_from_bcpl_to_c_string(name,sizeof(name),bcpl_name);
if(path_name_is_invalid(name, name_len))
{
D(("'%s' is not a valid path name", name));
error = ERROR_OBJECT_NOT_FOUND;
goto out;
}
if(NOT ServerData->server.unicode_enabled)
{
error = translate_amiga_name_to_smb_name(name,name_len,sizeof(name));
if(error != OK)
goto out;
}
error = build_full_path_name(parent_name,name,name_len,&full_name);
if(error != OK)
goto out;
/* Trying to delete the root directory, are you kidding? */
if(strcmp(full_name, SMB_ROOT_DIR_NAME) == SAME)
{
SHOWMSG("cannot delete the root directory");
error = ERROR_OBJECT_IN_USE;
goto out;
}
/* Is there a file handle or file lock attached to this
* object? If so, we'll exit right away.
*/
error = check_access_mode_collision(full_name,EXCLUSIVE_LOCK);
if(error != OK)
{
D(("there is still a lock or file attached to '%s'", full_name));
goto out;
}
/* We need to find this file's parent directory, so that
* in case the directory contents are currently being
* examined, that process is restarted.
*/
error = get_parent_dir_name(full_name,strlen(full_name),&full_parent_name);
if(error != OK)
goto out;
D(("full_name = '%s'",escape_name(full_name)));
if(smba_open(ServerData,full_name,open_read_only,open_dont_truncate,&file,&error) < 0)
{
error = map_errno_to_ioerr(error);
goto out;
}
if(smba_getattr(file,&st,&error) < 0)
{
error = map_errno_to_ioerr(error);
goto out;
}
smba_close(ServerData,file);
file = NULL;
if(st.is_dir)
{
SHOWMSG("removing a directory");
if(smba_rmdir(ServerData,full_name,&error) < 0)
{
int translated_error;
if(error == error_check_smb_error)
translated_error = smb_errno(((struct smb_server *)ServerData)->rcls,((struct smb_server *)ServerData)->err);
else
translated_error = error;
D(("that didn't work (error=%ld)", translated_error));
/* This is a little bit difficult to justify since
* the error code may indicate a different cause,
* but in practice 'EACCES' seems to be returned
* if the directory to remove is not empty.
*
* Except when it isn't: the CIFS documentation
* mentions that ERRDOS/ERRnoaccess can mean
* "access denied", "directory is in use" or
* "directory is not empty". All of these may
* map to either EACCESS or EPERM (we don't use
* the third alternative ENOENT).
*/
if(translated_error == EACCES || translated_error == EPERM)
{
SHOWMSG("that directory might not be empty");
error = ERROR_DIRECTORY_NOT_EMPTY;
}
else
{
SHOWMSG("could be some other problem");
error = map_errno_to_ioerr(error);
}
goto out;
}
}
else
{
SHOWMSG("removing a file");
if(smba_remove(ServerData,full_name,&error) < 0)
{
SHOWVALUE(error);
error = map_errno_to_ioerr(error);
goto out;
}
}
/* Restart directory scanning for all locks which share
* the parent directory of the object just deleted.
*/
restart_directory_scanning(user, full_parent_name);
SHOWMSG("done.");
result = DOSTRUE;
error = OK;
out:
if(file != NULL)
smba_close(ServerData,file);
free_memory(full_name);
free_memory(full_parent_name);
/* This can never be a read protection error (EACCES). */
if(error == ERROR_READ_PROTECTED)
error = ERROR_DELETE_PROTECTED;
(*error_ptr) = error;
RETURN(result);
return(result);
}
/****************************************************************************/
static BPTR
Action_CreateDir(
const struct MsgPort * user,
struct FileLock * parent,
const void * bcpl_name,
LONG * error_ptr)
{
BPTR result = ZERO;
STRPTR full_name = NULL;
struct LockNode * ln = NULL;
STRPTR parent_name;
smba_file_t * dir = NULL;
TEXT name[MAX_FILENAME_LEN+1];
int name_len;
STRPTR dir_name,base_name,temp = NULL;
int error;
ENTER();
D(("name = '%b'",MKBADDR(bcpl_name)));
if(file_system_disabled)
{
error = ERROR_NO_DISK;
goto out;
}
if(ReadOnly || WriteProtected)
{
error = ERROR_DISK_WRITE_PROTECTED;
goto out;
}
if(CANNOT get_parent_name(parent, user, &parent_name, &error))
goto out;
name_len = convert_from_bcpl_to_c_string(name,sizeof(name),bcpl_name);
if(path_name_is_invalid(name, name_len))
{
D(("'%s' is not a valid path name", name));
error = ERROR_INVALID_COMPONENT_NAME;
goto out;
}
if(NOT ServerData->server.unicode_enabled)
{
error = translate_amiga_name_to_smb_name(name,name_len,sizeof(name));
if(error != OK)
goto out;
}
error = build_full_path_name(parent_name,name,name_len,&full_name);
if(error != OK)
goto out;
/* Trying to overwrite the root directory, are you kidding? */
if(strcmp(full_name, SMB_ROOT_DIR_NAME) == SAME)
{
SHOWMSG("cannot overwrite the root directory");
error = ERROR_OBJECT_IN_USE;
goto out;
}
error = split_path_name(full_name,strlen(full_name),&temp,&dir_name,&base_name);
if(error != OK)
{
D(("could not split path '%s'",escape_name(full_name)));
goto out;
}
D(("path name = '%s'",escape_name(full_name)));
D(("directory name = '%s'", dir_name));
D(("base name = '%s'", base_name));
ln = allocate_lock_node(EXCLUSIVE_LOCK,full_name,user);
if(ln == NULL)
{
error = ERROR_NO_FREE_STORE;
goto out;
}
if(smba_open(ServerData,dir_name,open_read_only,open_dont_truncate,&dir,&error) < 0)
{
error = map_errno_to_ioerr(error);
goto out;
}
ASSERT( base_name != NULL );
if(smba_mkdir(dir,base_name,&error) < 0)
{
error = map_errno_to_ioerr(error);
goto out;
}
smba_close(ServerData,dir);
dir = NULL;
D(("full_name = '%s'",escape_name(full_name)));
if(smba_open(ServerData,full_name,open_read_only,open_dont_truncate,&ln->ln_File,&error) < 0)
{
error = map_errno_to_ioerr(error);
goto out;
}
add_lock_node(ln);
result = MKBADDR(&ln->ln_FileLock);
SHOWPOINTER(&ln->ln_FileLock);
full_name = NULL;
ln = NULL;
error = OK;
out:
if(dir != NULL)
smba_close(ServerData,dir);
free_memory(temp);
free_memory(full_name);
free_memory(ln);
/* This can never be a read protection error (EACCES). */
if(error == ERROR_READ_PROTECTED)
error = ERROR_WRITE_PROTECTED;
(*error_ptr) = error;
RETURN(result);
return(result);
}
/****************************************************************************/
static BPTR
Action_LocateObject(
const struct MsgPort * user,
struct FileLock * parent,
const void * bcpl_name,
LONG mode,
LONG * error_ptr)
{
BPTR result = ZERO;
STRPTR full_name = NULL;
struct LockNode * ln = NULL;
STRPTR parent_name;
TEXT name[MAX_FILENAME_LEN+1];
int name_len;
int error;
ENTER();
D(("name = '%b'",MKBADDR(bcpl_name)));
if(file_system_disabled)
{
error = ERROR_NO_DISK;
goto out;
}
if(CANNOT get_parent_name(parent, user, &parent_name, &error))
goto out;
name_len = convert_from_bcpl_to_c_string(name,sizeof(name),bcpl_name);
if(path_name_is_invalid(name, name_len))
{
D(("'%s' is not a valid path name", name));
error = ERROR_OBJECT_NOT_FOUND;
goto out;
}
if(NOT ServerData->server.unicode_enabled)
{
error = translate_amiga_name_to_smb_name(name,name_len,sizeof(name));
if(error != OK)
goto out;
}
error = build_full_path_name(parent_name,name,name_len,&full_name);
if(error != OK)
goto out;
ln = allocate_lock_node((mode != EXCLUSIVE_LOCK) ? SHARED_LOCK : EXCLUSIVE_LOCK,full_name,user);
if(ln == NULL)
{
error = ERROR_NO_FREE_STORE;
goto out;
}
error = check_access_mode_collision(ln->ln_FullName,ln->ln_FileLock.fl_Access);
if(error != OK)
goto out;
if(smba_open(ServerData,ln->ln_FullName,open_read_only,open_dont_truncate,&ln->ln_File,&error) < 0)
{
error = map_errno_to_ioerr(error);
goto out;
}
add_lock_node(ln);
result = MKBADDR(&ln->ln_FileLock);
SHOWPOINTER(&ln->ln_FileLock);
SHOWPOINTER(ln->ln_FullName);
D(("full path name = '%s'",escape_name(ln->ln_FullName)));
full_name = NULL;
ln = NULL;
error = OK;
out:
free_memory(full_name);
free_memory(ln);
(*error_ptr) = error;
RETURN(result);
return(result);
}
/****************************************************************************/
static BPTR
Action_CopyDir(
const struct MsgPort * user,
struct FileLock * lock,
LONG * error_ptr)
{
BPTR result = ZERO;
STRPTR full_name = NULL;
struct LockNode * ln = NULL;
const TEXT * source_name;
int error;
ENTER();
SHOWPOINTER(lock);
if(file_system_disabled)
{
error = ERROR_NO_DISK;
goto out;
}
/* Fail fast if the lock is invalid. */
if(lock != NULL && lock_is_invalid(lock,&error))
goto out;
if(lock != NULL)
{
const struct LockNode * key = (struct LockNode *)lock->fl_Key;
D(("lock on '%s'", escape_name(key->ln_FullName)));
}
else
{
SHOWMSG("lock on ':' (ZERO lock)");
}
/* If a specific lock is to be duplicated, then that
* better be a shared lock.
*/
if(lock != NULL && lock->fl_Access != SHARED_LOCK)
{
SHOWMSG("cannot duplicate exclusive lock");
error = ERROR_OBJECT_IN_USE;
goto out;
}
/* Duplicate a specific lock? */
if(lock != NULL)
{
struct LockNode * source;
source = (struct LockNode *)lock->fl_Key;
source->ln_LastUser = user;
source_name = source->ln_FullName;
}
/* We are asked to duplicate the ZERO lock, which refers
* to the disk's root directory.
*/
else
{
source_name = SMB_ROOT_DIR_NAME;
}
full_name = allocate_and_copy_string(source_name, strlen(source_name));
if(full_name == NULL)
{
error = ERROR_NO_FREE_STORE;
goto out;
}
ln = allocate_lock_node(SHARED_LOCK,full_name,user);
if(ln == NULL)
{
error = ERROR_NO_FREE_STORE;
goto out;
}
D(("full_name = '%s'",escape_name(full_name)));
if(smba_open(ServerData,full_name,open_read_only,open_dont_truncate,&ln->ln_File,&error) < 0)
{
error = map_errno_to_ioerr(error);
goto out;
}
add_lock_node(ln);
result = MKBADDR(&ln->ln_FileLock);
SHOWPOINTER(&ln->ln_FileLock);
full_name = NULL;
ln = NULL;
error = OK;
out:
free_memory(full_name);
free_memory(ln);
(*error_ptr) = error;
RETURN(result);
return(result);
}
/****************************************************************************/
static LONG
Action_FreeLock(
struct FileLock * lock,
LONG * error_ptr)
{
LONG result = DOSFALSE;
int error = OK;
ENTER();
SHOWPOINTER(lock);
/* Passing ZERO is harmless. But we have to have
* a valid lock if we are to proceed with releasing
* it.
*/
if(lock != NULL)
{
const struct LockNode * key;
struct LockNode * found;
struct LockNode * ln;
struct splay_node * sn;
if(file_system_disabled)
{
error = ERROR_NO_DISK;
goto out;
}
if(lock_is_invalid(lock,&error))
goto out;
found = NULL;
key = (struct LockNode *)lock->fl_Key;
D(("lock on '%s'", escape_name(key->ln_FullName)));
#ifndef USE_SPLAY_TREE
{
for(ln = (struct LockNode *)LockList.mlh_Head ;
ln->ln_MinNode.mln_Succ != NULL ;
ln = (struct LockNode *)ln->ln_MinNode.mln_Succ)
{
if(ln == key)
{
found = ln;
break;
}
}
}
#else
{
SHOWMSG("looking up the lock address (what happened to trust?)");
sn = splay_tree_find(&LockAddressTree, (splay_key_t)key);
if(sn != NULL)
{
SHOWMSG("found it");
found = (struct LockNode *)sn->sn_userdata;
}
else
{
SHOWMSG("didn't find it (this should never happen)");
}
}
#endif /* USE_SPLAY_TREE */
/* This should never happen. */
if(found == NULL)
{
error = ERROR_INVALID_LOCK;
goto out;
}
smba_close(ServerData,found->ln_File);
remove_lock_node(found);
free_memory(found->ln_FullName);
free_memory(found);
}
else
{
SHOWMSG("lock on ':' (ZERO lock)");
}
result = DOSTRUE;
error = OK;
out:
(*error_ptr) = error;
RETURN(result);
return(result);
}
/****************************************************************************/
static LONG
Action_SameLock(
const struct MsgPort * user,
struct FileLock * lock1,
struct FileLock * lock2,
LONG * error_ptr)
{
LONG result = DOSFALSE;
const TEXT * name1;
const TEXT * name2;
int error = OK;
ENTER();
SHOWPOINTER(lock1);
SHOWPOINTER(lock2);
if(file_system_disabled)
{
error = ERROR_NO_DISK;
goto out;
}
if(lock1 != NULL)
{
struct LockNode * ln;
if(lock_is_invalid(lock1,&error))
goto out;
ln = (struct LockNode *)lock1->fl_Key;
D(("lock1 on '%s'", escape_name(ln->ln_FullName)));
ln->ln_LastUser = user;
name1 = ln->ln_FullName;
}
else
{
name1 = SMB_ROOT_DIR_NAME;
}
if(lock2 != NULL)
{
struct LockNode * ln;
if(lock_is_invalid(lock2,&error))
goto out;
ln = (struct LockNode *)lock2->fl_Key;
D(("lock2 on '%s'", escape_name(ln->ln_FullName)));
ln->ln_LastUser = user;
name2 = ln->ln_FullName;
}
else
{
name2 = SMB_ROOT_DIR_NAME;
}
D(("name1 = '%s'",escape_name(name1)));
D(("name2 = '%s'",escape_name(name2)));
if(compare_names(name1,name2) == SAME)
result = DOSTRUE;
out:
(*error_ptr) = error;
RETURN(result);
return(result);
}
/****************************************************************************/
static LONG
Action_SetProtect(
const struct MsgPort * user,
struct FileLock * parent,
const void * bcpl_name,
LONG mask,
LONG * error_ptr)
{
LONG result = DOSFALSE;
STRPTR full_name = NULL;
smba_file_t * file = NULL;
STRPTR parent_name;
TEXT name[MAX_FILENAME_LEN+1];
smba_stat_t st;
int name_len;
int error;
ENTER();
D(("name = '%b'",MKBADDR(bcpl_name)));
if(file_system_disabled)
{
error = ERROR_NO_DISK;
goto out;
}
if(ReadOnly || WriteProtected)
{
error = ERROR_DISK_WRITE_PROTECTED;
goto out;
}
if(CANNOT get_parent_name(parent, user, &parent_name, &error))
goto out;
name_len = convert_from_bcpl_to_c_string(name,sizeof(name),bcpl_name);
if(path_name_is_invalid(name, name_len))
{
D(("'%s' is not a valid path name", name));
error = ERROR_OBJECT_NOT_FOUND;
goto out;
}
if(NOT ServerData->server.unicode_enabled)
{
error = translate_amiga_name_to_smb_name(name,name_len,sizeof(name));
if(error != OK)
goto out;
}
error = build_full_path_name(parent_name,name,name_len,&full_name);
if(error != OK)
goto out;
/* Trying to change the protection bits of the root
* directory, are you kidding?
*/
if(strcmp(full_name, SMB_ROOT_DIR_NAME) == SAME)
{
SHOWMSG("cannot change protection bits of the root directory");
error = ERROR_OBJECT_WRONG_TYPE;
goto out;
}
D(("full_name = '%s'",escape_name(full_name)));
if(smba_open(ServerData,full_name,open_writable,open_dont_truncate,&file,&error) < 0)
{
error = map_errno_to_ioerr(error);
goto out;
}
#if DEBUG
{
TEXT user_other_bits[11];
TEXT owner_bits[9];
int i;
strlcpy(user_other_bits, "rwed rwed", sizeof(user_other_bits));
for(i = 8 ; i < 16 ; i++)
{
if((mask & (1 << i)) == 0)
{
int offset;
if(i < 12)
offset = 12 - i;
else
offset = 21 - i;
ASSERT( 0 <= offset && offset < (int)sizeof(user_other_bits) );
user_other_bits[offset - 1] = '-';
}
}
strlcpy(owner_bits, "hsparwed", sizeof(owner_bits));
/* hspa */
for(i = 0 ; i < 4 ; i++)
{
if((mask & (1 << (7 - i))) == 0)
owner_bits[i] = '-';
}
/* rwed */
for(i = 4 ; i < 8 ; i++)
{
if((mask & (1 << (7 - i))) != 0)
owner_bits[i] = '-';
}
D(("protection bit mask = 0x%08lx (%s %s)",mask,user_other_bits,owner_bits));
}
#endif /* DEBUG */
memset(&st,0,sizeof(st));
if((mask & FIBF_DELETE) != 0)
{
SHOWMSG("write/delete protection enabled");
st.is_read_only = TRUE;
}
else
{
SHOWMSG("write/delete protection disabled");
}
/* Careful: the 'archive' attribute has exactly the opposite
* meaning in the Amiga and the SMB worlds.
*/
st.was_changed_since_last_archive = ((mask & FIBF_ARCHIVE) == 0);
if(smba_setattr(file,&st,NULL,&error) < 0)
{
error = map_errno_to_ioerr(error);
goto out;
}
result = DOSTRUE;
error = OK;
out:
if(file != NULL)
smba_close(ServerData,file);
free_memory(full_name);
/* This can never be a read protection error (EACCES). */
if(error == ERROR_READ_PROTECTED)
error = ERROR_WRITE_PROTECTED;
(*error_ptr) = error;
RETURN(result);
return(result);
}
/****************************************************************************/
static LONG
Action_RenameObject(
const struct MsgPort * user,
struct FileLock * source_lock,
const void * source_bcpl_name,
struct FileLock * destination_lock,
const void * destination_bcpl_name,
LONG * error_ptr)
{
LONG result = DOSFALSE;
STRPTR full_source_name = NULL;
STRPTR full_destination_name = NULL;
STRPTR parent_source_name = NULL;
STRPTR parent_destination_name = NULL;
TEXT name[MAX_FILENAME_LEN+1];
int name_len;
STRPTR parent_name;
int error;
ENTER();
D(("source name = '%b'",MKBADDR(source_bcpl_name)));
D(("destination name = '%b'",MKBADDR(destination_bcpl_name)));
SHOWPOINTER(source_lock);
SHOWPOINTER(destination_lock);
if(file_system_disabled)
{
error = ERROR_NO_DISK;
goto out;
}
if(ReadOnly || WriteProtected)
{
error = ERROR_DISK_WRITE_PROTECTED;
goto out;
}
name_len = convert_from_bcpl_to_c_string(name,sizeof(name),source_bcpl_name);
if(path_name_is_invalid(name, name_len))
{
D(("'%s' is not a valid path name", name));
error = ERROR_OBJECT_NOT_FOUND;
goto out;
}
if(NOT ServerData->server.unicode_enabled)
{
error = translate_amiga_name_to_smb_name(name,name_len,sizeof(name));
if(error != OK)
goto out;
}
if(CANNOT get_parent_name(source_lock, user, &parent_name, &error))
goto out;
error = build_full_path_name(parent_name,name,name_len,&full_source_name);
if(error != OK)
goto out;
D(("full source path = '%s'",escape_name(full_source_name)));
/* Trying to rename the root directory, are you kidding? */
if(strcmp(full_source_name, SMB_ROOT_DIR_NAME) == SAME)
{
SHOWMSG("cannot rename the root directory");
error = ERROR_OBJECT_IN_USE;
goto out;
}
name_len = convert_from_bcpl_to_c_string(name,sizeof(name),destination_bcpl_name);
if(path_name_is_invalid(name, name_len))
{
D(("'%s' is not a valid path name", name));
error = ERROR_INVALID_COMPONENT_NAME;
goto out;
}
if(NOT ServerData->server.unicode_enabled)
{
error = translate_amiga_name_to_smb_name(name,name_len,sizeof(name));
if(error != OK)
goto out;
}
if(CANNOT get_parent_name(destination_lock, user, &parent_name, &error))
goto out;
error = build_full_path_name(parent_name,name,name_len,&full_destination_name);
if(error != OK)
goto out;
D(("full destination path = '%s'",escape_name(full_destination_name)));
/* Trying to replace the root directory, are you kidding? */
if(strcmp(full_destination_name, SMB_ROOT_DIR_NAME) == SAME)
{
SHOWMSG("cannot replace the root directory");
error = ERROR_OBJECT_IN_USE;
goto out;
}
/* Is this object still in use? If so, renaming it would require
* updating the names in all the file locks and file handles which
* use it.
*/
error = name_already_in_use(full_source_name);
if(error != OK)
{
D(("source '%s' is still in use",escape_name(full_source_name)));
goto out;
}
error = name_already_in_use(full_destination_name);
if(error != OK)
{
D(("destination '%s' is still in use",escape_name(full_destination_name)));
goto out;
}
if(smba_rename(ServerData,full_source_name,full_destination_name,&error) < 0)
{
error = map_errno_to_ioerr(error);
goto out;
}
get_parent_dir_name(full_source_name,strlen(full_source_name),&parent_source_name);
get_parent_dir_name(full_destination_name,strlen(full_destination_name),&parent_destination_name);
/* Restart directory scanning in the source directory from which
* the entry was removed unless the entry just changed name, but did
* not move to a different directory.
*/
if(parent_source_name != NULL && (parent_destination_name == NULL || compare_names(parent_source_name,parent_destination_name) != SAME))
restart_directory_scanning(user,parent_source_name);
result = DOSTRUE;
error = OK;
out:
free_memory(full_source_name);
free_memory(full_destination_name);
free_memory(parent_source_name);
free_memory(parent_destination_name);
/* This can never be a read protection error (EACCES). */
if(error == ERROR_READ_PROTECTED)
error = ERROR_WRITE_PROTECTED;
(*error_ptr) = error;
RETURN(result);
return(result);
}
/****************************************************************************/
static LONG
Action_DiskInfo(
struct InfoData * id,
LONG * error_ptr)
{
LONG result = DOSTRUE;
int error = OK;
ENTER();
memset(id,0,sizeof(*id));
/* These defaults (no disk present) will have to do until
* we know better...
*/
id->id_NumBlocks = 1;
id->id_NumBlocksUsed = 1;
id->id_BytesPerBlock = 512;
id->id_DiskType = ID_NO_DISK_PRESENT;
id->id_DiskState = ID_WRITE_PROTECTED;
if(NOT file_system_disabled)
{
LONG num_blocks_free;
LONG num_blocks;
LONG block_size;
if(smba_statfs(ServerData,&block_size,&num_blocks,&num_blocks_free,&error) >= 0)
{
if(NOT ReadOnly && NOT WriteProtected)
id->id_DiskState = ID_VALIDATED;
SHOWMSG("got the disk data");
SHOWVALUE(block_size);
SHOWVALUE(num_blocks);
SHOWVALUE(num_blocks_free);
/* Pretend that the block size is 512 bytes, if not provided. */
if(block_size <= 0)
block_size = 512;
if (block_size < 512)
{
num_blocks /= (512 / block_size);
num_blocks_free /= (512 / block_size);
}
else if (block_size > 512)
{
num_blocks *= (block_size / 512);
num_blocks_free *= (block_size / 512);
}
id->id_NumBlocks = num_blocks;
id->id_NumBlocksUsed = num_blocks - num_blocks_free;
id->id_BytesPerBlock = 512;
id->id_DiskType = ID_DOS_DISK;
id->id_VolumeNode = MKBADDR(VolumeNode);
id->id_InUse = NOT (IsListEmpty((struct List *)&FileList) && IsListEmpty((struct List *)&LockList));
if(id->id_NumBlocks == 0)
id->id_NumBlocks = 1;
if(id->id_NumBlocksUsed == 0)
id->id_NumBlocksUsed = 1;
}
else
{
SHOWMSG("could not get any disk data");
error = map_errno_to_ioerr(error);
result = DOSFALSE;
}
}
SHOWVALUE(id->id_NumBlocks);
SHOWVALUE(id->id_NumBlocksUsed);
SHOWVALUE(id->id_BytesPerBlock);
SHOWVALUE(id->id_DiskType);
SHOWVALUE(id->id_VolumeNode);
SHOWVALUE(id->id_InUse);
(*error_ptr) = error;
RETURN(result);
return(result);
}
static LONG
Action_Info(
const struct MsgPort * user,
struct FileLock * lock,
struct InfoData * id,
LONG * error_ptr)
{
LONG result = DOSFALSE;
LONG disk_info_error;
int error = OK;
ENTER();
SHOWPOINTER(lock);
if(file_system_disabled)
{
error = ERROR_NO_DISK;
goto out;
}
/* We need to check if the lock matches the volume node. However,
* a ZERO lock is valid, too.
*/
if(CANNOT get_parent_name(lock, user, NULL, &error))
goto out;
result = Action_DiskInfo(id,&disk_info_error);
error = disk_info_error;
out:
(*error_ptr) = error;
RETURN(result);
return(result);
}
/****************************************************************************/
static LONG
Action_ExamineObject(
const struct MsgPort * user,
struct FileLock * lock,
struct FileInfoBlock * fib,
LONG * error_ptr)
{
BOOL is_root_directory = TRUE;
LONG result = DOSFALSE;
int error = OK;
ENTER();
SHOWPOINTER(lock);
memset(fib,0,sizeof(*fib));
fib->fib_DiskKey = -1;
if(file_system_disabled)
{
error = ERROR_NO_DISK;
goto out;
}
/* If the ZERO lock is involved, it stands in for the
* root directory. Otherwise it might be a lock on a
* file or directory.
*/
if(lock != NULL)
{
struct LockNode * ln;
smba_stat_t st;
if(lock_is_invalid(lock,&error))
goto out;
ln = (struct LockNode *)lock->fl_Key;
D(("lock on '%s'", escape_name(ln->ln_FullName)));
ln->ln_LastUser = user;
if(smba_getattr(ln->ln_File,&st,&error) < 0)
{
SHOWMSG("information not available");
error = map_errno_to_ioerr(error);
goto out;
}
D(("ln->ln_FullName = '%s'",escape_name(ln->ln_FullName)));
/* Is this a file or directory rather than the root directory? */
if(strcmp(ln->ln_FullName,SMB_ROOT_DIR_NAME) != SAME)
{
QUAD size_quad;
QUAD num_blocks_quad;
TEXT translated_name[MAX_FILENAME_LEN+1];
const TEXT * name;
int name_len;
LONG seconds;
SHOWMSG("file or directory");
is_root_directory = FALSE;
name = get_base_name(ln->ln_FullName,strlen(ln->ln_FullName));
name_len = strlen(name);
if(NOT ServerData->server.unicode_enabled)
{
if(name_len >= (int)sizeof(translated_name))
{
D(("name is too long (%ld >= %ld)", name_len, sizeof(translated_name)));
error = ERROR_BUFFER_OVERFLOW;
goto out;
}
/* Length includes the terminating NUL byte. */
memcpy(translated_name,name,name_len+1);
error = translate_smb_name_to_amiga_name(translated_name,name_len,sizeof(translated_name));
if(error != OK)
{
SHOWMSG("name is not acceptable");
goto out;
}
name = translated_name;
name_len = strlen(name);
}
/* Check if this is a usable Amiga file or directory name. */
error = validate_amigados_file_name(name, name_len);
if(error != OK)
{
SHOWMSG("name contains unacceptable characters");
goto out;
}
/* Will the name fit? */
if(name_len >= (int)sizeof(fib->fib_FileName))
{
D(("name is too long (%ld >= %ld)", name_len, sizeof(fib->fib_FileName)));
error = ERROR_BUFFER_OVERFLOW;
goto out;
}
/* Store the file/directory name in the form expected
* by dos.library.
*/
convert_from_c_to_bcpl_string(fib->fib_FileName,sizeof(fib->fib_FileName),name,name_len);
/* We pretend that the volume uses 512 bytes per
* block (or in SMB terms: the sector size is
* 512 bytes). The conversion is a bit elaborate
* here...
*/
size_quad.Low = st.size_low;
size_quad.High = st.size_high;
/* Round up when dividing by 512. */
add_64_plus_32_to_64(&size_quad,511,&num_blocks_quad);
divide_64_by_32(&num_blocks_quad,512,&num_blocks_quad);
seconds = (st.mtime == 0) ? st.ctime : st.mtime;
seconds -= UNIX_TIME_OFFSET + get_time_zone_delta();
if(seconds < 0)
seconds = 0;
fib->fib_Date.ds_Days = (seconds / (24 * 60 * 60));
fib->fib_Date.ds_Minute = (seconds % (24 * 60 * 60)) / 60;
fib->fib_Date.ds_Tick = (seconds % 60) * TICKS_PER_SECOND;
fib->fib_DirEntryType = st.is_dir ? ST_USERDIR : ST_FILE;
fib->fib_EntryType = fib->fib_DirEntryType;
fib->fib_NumBlocks = num_blocks_quad.Low;
fib->fib_Size = truncate_64_bit_position(&size_quad);
D(("is read only = %s",st.is_read_only ? "yes" : "no"));
if(st.is_read_only)
fib->fib_Protection |= FIBF_DELETE;
/* Careful: the 'archive' attribute has exactly the opposite
* meaning in the Amiga and the SMB worlds.
*/
D(("was changed since last_archive = %s",st.was_changed_since_last_archive ? "yes" : "no"));
if(NOT st.was_changed_since_last_archive)
fib->fib_Protection |= FIBF_ARCHIVE;
D(("is directory = %s",st.is_dir ? "yes" : "no"));
/* If this is a directory, make calls to ExNext() possible. */
if(st.is_dir)
fib->fib_DiskKey = 0;
}
}
else
{
SHOWMSG("lock on ':' (ZERO lock)");
}
/* So this is actually the root directory? */
if(is_root_directory)
{
const TEXT * volume_name;
int len;
SHOWMSG("root directory");
ASSERT( VolumeNode != NULL );
volume_name = BADDR(VolumeNode->dol_Name);
len = volume_name[0];
SHOWPOINTER(volume_name);
SHOWVALUE(len);
ASSERT( len < (int)sizeof(fib->fib_FileName) );
/* Just don't overrun the buffer. */
if(len >= (int)sizeof(fib->fib_FileName))
{
D(("root directory name is too long (%ld >= %ld)", len, sizeof(fib->fib_FileName)));
error = ERROR_BUFFER_OVERFLOW;
goto out;
}
memcpy(&fib->fib_FileName[1],&volume_name[1],len);
fib->fib_FileName[0] = len;
fib->fib_DirEntryType = ST_ROOT;
fib->fib_EntryType = ST_ROOT;
fib->fib_NumBlocks = 1;
fib->fib_DiskKey = 0;
fib->fib_Date = VolumeNode->dol_misc.dol_volume.dol_VolumeDate;
}
result = DOSTRUE;
error = OK;
D(("fib->fib_FileName = \"%b\"",MKBADDR(fib->fib_FileName)));
SHOWVALUE(fib->fib_DirEntryType);
SHOWVALUE(fib->fib_NumBlocks);
SHOWVALUE(fib->fib_Size);
SHOWVALUE(fib->fib_DiskKey);
#if DEBUG
{
struct DateTime dat;
TEXT date[2 * LEN_DATSTRING],time[2 * LEN_DATSTRING];
memset(&dat,0,sizeof(dat));
memset(date,0,sizeof(date));
memset(time,0,sizeof(time));
dat.dat_Stamp = fib->fib_Date;
dat.dat_Format = FORMAT_DOS;
dat.dat_StrDate = date;
dat.dat_StrTime = time;
if(DateToStr(&dat))
{
D(("days=%ld/minutes=%ld/ticks=%ld: %s %s", fib->fib_Date.ds_Days, fib->fib_Date.ds_Minute, fib->fib_Date.ds_Tick, date, time));
}
else
{
D(("could not convert days=%ld/minutes=%ld/ticks=%ld", fib->fib_Date.ds_Days, fib->fib_Date.ds_Minute, fib->fib_Date.ds_Tick));
}
ASSERT( strlen(date) < LEN_DATSTRING );
ASSERT( strlen(time) < LEN_DATSTRING );
}
#endif /* DEBUG */
out:
(*error_ptr) = error;
RETURN(result);
return(result);
}
/****************************************************************************/
/* Check if the name is acceptable as an Amiga file name. Note
* that we do not check the length.
*/
static BOOL
name_is_acceptable(const TEXT * name)
{
BOOL result = FALSE;
int c;
c = name[0];
/* Empty names are not acceptable. */
if(c == '\0')
goto out;
/* This takes care of "." and "..". */
if(c == '.' && (name[1] == '\0' || (name[1] == '.' && name[2] == '\0')))
goto out;
/* Now for embedded '/', ':' and '\' characters. */
while((c = (*name++)) != '\0')
{
if(c == '/' || c == ':' || c == SMB_PATH_SEPARATOR)
goto out;
}
result = TRUE;
out:
return(result);
}
/****************************************************************************/
/* This function is called by the directory scanner over and over again
* until the first entry is acceptable for it. This means that unusable
* entries can be skipped until eventually either the end of the directory
* is reached or one entry can be used.
*
* Returns FALSE to keep scanning, TRUE to stop scanning.
*/
static int
dir_scan_callback_func_exnext(
struct FileInfoBlock * fib,
int unused_fpos,
int nextpos,
const TEXT * name,
int eof,
const smba_stat_t * st)
{
int stop_scanning = FALSE;
int name_len;
LONG seconds;
QUAD size_quad;
QUAD num_blocks_quad;
TEXT translated_name[MAX_FILENAME_LEN+1];
ENTER();
#if DEBUG
{
QUAD st_size_quad;
st_size_quad.Low = st->size_low;
st_size_quad.High = st->size_high;
D((" '%s'",escape_name(name)));
D((" is directory=%s, is read-only=%s, is hidden=%s, size=%s", st->is_dir ? "yes" : "no",st->is_read_only ? "yes" : "no",st->is_hidden ? "yes" : "no",convert_quad_to_string(&st_size_quad)));
D((" nextpos=%ld eof=%ld",nextpos,eof));
}
#endif /* DEBUG */
/* Skip file and drawer names that we wouldn't be
* able to handle in the first place.
*/
if(NOT name_is_acceptable(name))
{
D((" name is not acceptable"));
goto out;
}
if(st->is_hidden && OmitHidden)
{
D((" ignoring hidden directory entry"));
goto out;
}
name_len = strlen(name);
if(NOT ServerData->server.unicode_enabled)
{
if(name_len >= (int)sizeof(translated_name))
{
D((" name is too long (%ld >= %ld)", name_len, sizeof(translated_name)));
goto out;
}
/* Length includes the terminating NUL byte. */
memcpy(translated_name,name,name_len+1);
if(translate_smb_name_to_amiga_name(translated_name,name_len,sizeof(translated_name)) != OK)
{
D((" name is not acceptable"));
goto out;
}
name = translated_name;
name_len = strlen(name);
}
/* Check if this is a usable Amiga file or directory name. */
if(validate_amigados_file_name(name, name_len) != OK)
{
D((" name contains unacceptable characters"));
goto out;
}
/* Is the name too large to fit? */
if(name_len >= (int)sizeof(fib->fib_FileName))
{
D((" name is too long (%ld >= %ld)", name_len, sizeof(fib->fib_FileName)));
goto out;
}
/* Store the file/directory name in the form expected
* by dos.library.
*/
convert_from_c_to_bcpl_string(fib->fib_FileName,sizeof(fib->fib_FileName),name,name_len);
D((" final name = '%b'", MKBADDR(fib->fib_FileName)));
/* Convert the size of the file into blocks, with 512 bytes per block. */
size_quad.Low = st->size_low;
size_quad.High = st->size_high;
/* Round up when dividing by 512. */
add_64_plus_32_to_64(&size_quad,511,&num_blocks_quad);
divide_64_by_32(&num_blocks_quad,512,&num_blocks_quad);
fib->fib_DirEntryType = st->is_dir ? ST_USERDIR : ST_FILE;
fib->fib_EntryType = fib->fib_DirEntryType;
fib->fib_NumBlocks = num_blocks_quad.Low;
fib->fib_Size = truncate_64_bit_position(&size_quad);
if(st->is_read_only)
fib->fib_Protection |= FIBF_DELETE;
/* Careful: the 'archive' attribute has exactly the opposite
* meaning in the Amiga (= was archived) and the SMB
* worlds (= needs to be archived), respectively.
*/
if(NOT st->was_changed_since_last_archive)
fib->fib_Protection |= FIBF_ARCHIVE;
/* If modification time is 0 use creation time instead (cyfm 2009-03-18). */
seconds = (st->mtime == 0) ? st->ctime : st->mtime;
seconds -= UNIX_TIME_OFFSET + get_time_zone_delta();
if(seconds < 0)
seconds = 0;
fib->fib_Date.ds_Days = (seconds / (24 * 60 * 60));
fib->fib_Date.ds_Minute = (seconds % (24 * 60 * 60)) / 60;
fib->fib_Date.ds_Tick = (seconds % 60) * TICKS_PER_SECOND;
#if DEBUG
{
struct DateTime dat;
TEXT date[2 * LEN_DATSTRING],time[2 * LEN_DATSTRING];
memset(&dat,0,sizeof(dat));
memset(date,0,sizeof(date));
memset(time,0,sizeof(time));
dat.dat_Stamp = fib->fib_Date;
dat.dat_Format = FORMAT_DOS;
dat.dat_StrDate = date;
dat.dat_StrTime = time;
if(DateToStr(&dat))
{
D((" days=%ld/minutes=%ld/ticks=%ld: %s %s", fib->fib_Date.ds_Days, fib->fib_Date.ds_Minute, fib->fib_Date.ds_Tick, date, time));
}
else
{
D((" could not convert days=%ld/minutes=%ld/ticks=%ld", fib->fib_Date.ds_Days, fib->fib_Date.ds_Minute, fib->fib_Date.ds_Tick));
}
ASSERT( strlen(date) < LEN_DATSTRING );
ASSERT( strlen(time) < LEN_DATSTRING );
}
#endif /* DEBUG */
/* We received the one single entry which we came for. */
stop_scanning = TRUE;
out:
fib->fib_DiskKey = eof ? -1 : nextpos;
RETURN(stop_scanning);
return(stop_scanning);
}
static LONG
Action_ExamineNext(
const struct MsgPort * user,
struct FileLock * lock,
struct FileInfoBlock * fib,
LONG * error_ptr)
{
struct LockNode * ln;
LONG result = DOSFALSE;
int error = OK;
BOOL restart;
LONG offset;
ENTER();
SHOWPOINTER(lock);
if(file_system_disabled)
{
fib->fib_DiskKey = -1;
error = ERROR_NO_DISK;
goto out;
}
if(lock_is_invalid(lock,&error))
{
fib->fib_DiskKey = -1;
goto out;
}
ln = (struct LockNode *)lock->fl_Key;
D(("lock on '%s'", escape_name(ln->ln_FullName)));
ln->ln_LastUser = user;
/* Is the job finished already? */
if(fib->fib_DiskKey == -1)
{
SHOWMSG("scanning finished.");
error = ERROR_NO_MORE_ENTRIES;
goto out;
}
/* Check if we should restart scanning the directory
* contents. This is tricky at best and may produce
* irritating results :(
*/
if(ln->ln_RestartExamine)
{
offset = 0;
restart = TRUE;
ln->ln_RestartExamine = FALSE;
}
else
{
offset = fib->fib_DiskKey;
restart = FALSE;
}
memset(fib,0,sizeof(*fib));
SHOWMSG("calling 'smba_readdir'");
SHOWVALUE(offset);
if (smba_readdir(ln->ln_File,offset,restart,fib,(smba_callback_t)dir_scan_callback_func_exnext,NULL,&error) < 0)
{
SHOWMSG("error whilst scanning");
SHOWVALUE(error);
fib->fib_DiskKey = -1;
error = map_errno_to_ioerr(error);
goto out;
}
/* If the name is not filled in it means that no directory
* entry was acceptable for use, and the directory scanner
* returned all the entries available. There are no
* further entries to be delivered.
*/
if(fib->fib_FileName[0] == '\0')
{
SHOWMSG("nothing to be read");
fib->fib_DiskKey = -1;
error = ERROR_NO_MORE_ENTRIES;
goto out;
}
result = DOSTRUE;
error = OK;
out:
(*error_ptr) = error;
RETURN(result);
return(result);
}
/****************************************************************************/
/* This is used by the dir_scan_callback_func_exall() function which needs
* to add new records to the buffer provided to the ExAll() function.
*/
struct ExAllContext
{
struct ExAllData * ec_Last; /* Points to last ExAllData
* record, which may need to
* be linked up the next
* record that is added.
*/
UBYTE * ec_Buffer; /* This is the buffer we need
* to fill.
*/
int ec_BufferSize; /* How much room there is in
* the buffer.
*/
int ec_RecordSize; /* Each ExAllData record has the
* same header size, and the
* type of information returned
* controls how large that header
* is. Here is the header size
* we have to use.
*/
struct ExAllControl * ec_Control; /* This was passed to the
* ExAll() function.
*/
LONG ec_Type; /* This was passed to the
* ExAll() function.
*/
LONG ec_Error; /* If the scanning process has to
* be stopped, this is where the
* error returned will go.
*/
};
/* This function is called for every directory entry the directory scanner
* can find and attempts to convert it into a form usable by ExAll().
* Unsuitable entries are ignored, and the directory scanner gets another
* chance to supply a new entry until either the entire directory has been
* read with nothing to show for it, or the ExAll() buffer has been filled.
*
* Returns FALSE to keep scanning, TRUE to stop scanning.
*/
static int
dir_scan_callback_func_exall(
struct ExAllContext * ec,
int current_pos,
int next_pos,
const TEXT * name,
int eof, /* if true this means that this is the last entry available. */
const smba_stat_t * st)
{
TEXT translated_name[MAX_FILENAME_LEN+1];
int stop_scanning = FALSE;
int name_len;
int resume_position = next_pos;
LONG type = ec->ec_Type;
UBYTE * buffer = ec->ec_Buffer;
struct ExAllData * ed;
int complete_record_size;
ENTER();
/* We already delivered the last entry? */
if((LONG)ec->ec_Control->eac_LastKey == -1)
{
/* We didn't deliver even one entry? */
if(ec->ec_Control->eac_Entries == 0)
ec->ec_Error = ERROR_NO_MORE_ENTRIES;
eof = TRUE;
stop_scanning = TRUE;
goto out;
}
#if DEBUG
{
QUAD st_size_quad;
st_size_quad.Low = st->size_low;
st_size_quad.High = st->size_high;
D((" '%s'",escape_name(name)));
D((" is directory=%s, is read-only=%s, is hidden=%s, size=%s", st->is_dir ? "yes" : "no",st->is_read_only ? "yes" : "no",st->is_hidden ? "yes" : "no",convert_quad_to_string(&st_size_quad)));
D((" next_pos=%ld eof=%ld",next_pos,eof));
}
#endif /* DEBUG */
/* Skip file and drawer names that we wouldn't be
* able to handle in the first place.
*/
if(NOT name_is_acceptable(name))
{
D((" name is not acceptable"));
goto out;
}
if(st->is_hidden && OmitHidden)
{
D((" ignoring hidden directory entry"));
goto out;
}
name_len = strlen(name);
if(NOT ServerData->server.unicode_enabled)
{
if(name_len >= (int)sizeof(translated_name))
{
D((" name is too long (%ld >= %ld)", name_len, sizeof(translated_name)));
goto out;
}
/* Length includes the terminating NUL byte. */
memcpy(translated_name,name,name_len+1);
if(translate_smb_name_to_amiga_name(translated_name,name_len,sizeof(translated_name)) != OK)
{
D((" name cannot be translated"));
goto out;
}
name = translated_name;
name_len = strlen(name);
}
/* Check if this is a usable Amiga file or directory name. */
if(validate_amigados_file_name(name, name_len) != OK)
{
D((" name contains unacceptable characters"));
goto out;
}
/* Check if the name matches the pattern provided, if any. */
if(ec->ec_Control->eac_MatchString != NULL)
{
D((" checking name against match string '%s'", ec->ec_Control->eac_MatchString));
if(NOT MatchPatternNoCase(ec->ec_Control->eac_MatchString,(STRPTR)name))
{
SHOWMSG(" name does not match");
goto out;
}
}
/* Figure out how large this entry needs to be, and
* if necessary stop processing if there is not enough
* room left to store it.
*/
complete_record_size = ec->ec_RecordSize + name_len+1;
/* All entries need to begin on a word-aligned address,
* which means that we need to pad the entry size to
* a multiple of 2.
*/
if((complete_record_size % 2) > 0)
complete_record_size++;
D((" buffer size left = %ld, record size = %ld",ec->ec_BufferSize,complete_record_size));
if(complete_record_size > ec->ec_BufferSize)
{
SHOWMSG(" not enough room to return this entry");
/* If the buffer is still empty, stop the entire process before
* it has really begun. Not even one directory entry will fit...
*/
if(ec->ec_Control->eac_Entries == 0)
{
SHOWMSG(" this was the first read attempt -- aborting");
ec->ec_Error = ERROR_NO_FREE_STORE;
eof = TRUE;
}
/* No more room to store another entry, but we can deliver
* what was already stored. The client can call ExAll()
* again and pick up the next entry.
*/
else
{
/* Assuming that the client wants to know the next
* entry, resume with the one which we couldn't store.
*/
resume_position = current_pos;
eof = FALSE;
}
stop_scanning = TRUE;
goto out;
}
/* Fill in this entry. */
ed = (struct ExAllData *)buffer;
ASSERT( (((ULONG)ed) % 2) == 0 );
/* Until we know better, assume that this will be
* the last list entry.
*/
ed->ed_Next = NULL;
/* Copy the name, including the terminating NUL byte. */
ed->ed_Name = (STRPTR)&buffer[ec->ec_RecordSize];
memcpy(ed->ed_Name,name,name_len+1);
D((" ed->ed_Name = '%s'", ed->ed_Name));
/* Fill in as many records as were requested. */
if(type >= ED_TYPE)
{
ed->ed_Type = st->is_dir ? ST_USERDIR : ST_FILE;
D((" type=%ld", ed->ed_Type));
}
if(type >= ED_SIZE)
{
QUAD size_quad;
size_quad.Low = st->size_low;
size_quad.High = st->size_high;
ed->ed_Size = truncate_64_bit_position(&size_quad);
D((" size=%ld", ed->ed_Size));
}
if(type >= ED_PROTECTION)
{
ed->ed_Prot = 0;
D((" is read only = %s",st->is_read_only ? "yes" : "no"));
if(st->is_read_only)
ed->ed_Prot |= FIBF_DELETE;
/* Careful: the 'archive' attribute has exactly the opposite
* meaning in the Amiga and the SMB worlds.
*/
D((" was changed since last archive = %s",st->was_changed_since_last_archive ? "yes" : "no"));
if(NOT st->was_changed_since_last_archive)
ed->ed_Prot |= FIBF_ARCHIVE;
D((" protection=0x%08lx", ed->ed_Prot));
}
if(type >= ED_DATE)
{
LONG seconds;
/* If modification time is 0 use creation time instead (cyfm 2009-03-18). */
seconds = (st->mtime == 0) ? st->ctime : st->mtime;
seconds -= UNIX_TIME_OFFSET + get_time_zone_delta();
if(seconds < 0)
seconds = 0;
ed->ed_Days = (seconds / (24 * 60 * 60));
ed->ed_Mins = (seconds % (24 * 60 * 60)) / 60;
ed->ed_Ticks = (seconds % 60) * TICKS_PER_SECOND;
#if DEBUG
{
struct DateTime dat;
TEXT date[2 * LEN_DATSTRING],time[2 * LEN_DATSTRING];
memset(&dat,0,sizeof(dat));
memset(date,0,sizeof(date));
memset(time,0,sizeof(time));
dat.dat_Stamp.ds_Days = ed->ed_Days;
dat.dat_Stamp.ds_Minute = ed->ed_Mins;
dat.dat_Stamp.ds_Tick = ed->ed_Ticks;
dat.dat_Format = FORMAT_DOS;
dat.dat_StrDate = date;
dat.dat_StrTime = time;
if(DateToStr(&dat))
{
D((" days=%ld/minutes=%ld/ticks=%ld: %s %s", ed->ed_Days, ed->ed_Mins, ed->ed_Ticks, date, time));
}
else
{
D((" could not convert days=%ld/minutes=%ld/ticks=%ld", ed->ed_Days, ed->ed_Mins, ed->ed_Ticks));
}
ASSERT( strlen(date) < LEN_DATSTRING );
ASSERT( strlen(time) < LEN_DATSTRING );
}
#endif /* DEBUG */
}
if(type >= ED_COMMENT)
{
/* If there is no comment, set the comment string
* pointer to NULL. This is documented to be the
* correct approach.
*/
ed->ed_Comment = NULL;
D((" comment=NULL"));
}
if(type >= ED_OWNER)
{
ed->ed_OwnerUID = ed->ed_OwnerGID = 0;
D((" user/gid=0/0"));
}
if(ec->ec_Control->eac_MatchFunc != NULL)
{
LONG match;
SHOWMSG(" checking if match function accepts the entry");
/* Note: The order of the parameters passed to the match hook
* function can be somewhat confusing.
*
* For standard hook functions, the order of the parameters
* and the registers they go into is hook=A0, object=A2,
* message=A1.
*
* However, the documentation for the 'ExAll()' function
* always lists them in ascending order, that is
* hook=A0, message=A1, object=A2, which can lead to
* quite some confusion and strange errors.
*
* The parameter order which is correct for the CallHookPkt()
* function is given below: 1. match function (hook),
* 2. pointer to type, 3. pointer to ExAllData.
*/
PROFILE_OFF();
match = CallHookPkt(ec->ec_Control->eac_MatchFunc,&type,ed);
PROFILE_ON();
if(NO match)
{
SHOWMSG(" match function rejected the entry");
goto out;
}
}
D((" registering new entry (total=%ld, space left=%ld)", ec->ec_Control->eac_Entries+1, ec->ec_BufferSize - complete_record_size));
/* Link the previous entry to the current, if there is one. */
if(ec->ec_Last != NULL)
ec->ec_Last->ed_Next = ed;
ec->ec_Last = ed;
ec->ec_BufferSize -= complete_record_size;
ASSERT( ec->ec_BufferSize >= 0 );
ec->ec_Buffer += complete_record_size;
ec->ec_Control->eac_Entries++;
out:
/* Any more entries to deliver or stop right now? */
if(eof)
SHOWMSG(" that was the last entry");
else
SHOWMSG(" more entries may be available");
/* If this was the last entry to be delivered (eof != FALSE)
* make sure that the next invocation of this function will
* cease delivering more directory entries. Otherwise allow
* the next call to ExAll() to resume reading more directory
* entries.
*/
ec->ec_Control->eac_LastKey = eof ? -1 : resume_position;
RETURN(stop_scanning);
return(stop_scanning);
}
static LONG
Action_ExamineAll(
const struct MsgPort * last_user,
struct FileLock * lock,
UBYTE * buffer,
LONG buffer_size,
LONG type,
struct ExAllControl * eac,
LONG * error_ptr)
{
struct ExAllData * ed = (struct ExAllData *)buffer;
LONG call_exall_again = DOSFALSE;
struct ExAllContext ec;
struct LockNode * ln;
int record_size;
int error = OK;
int eof = FALSE;
LONG offset;
BOOL restart;
ENTER();
SHOWPOINTER(lock);
SHOWPOINTER(buffer);
SHOWVALUE(buffer_size);
SHOWVALUE(type);
SHOWPOINTER(eac);
SHOWVALUE(eac->eac_LastKey);
eac->eac_Entries = 0;
if(file_system_disabled)
{
error = ERROR_NO_DISK;
goto out;
}
/* Check if the lock is suitable. */
if(lock_is_invalid(lock, &error))
goto out;
ln = (struct LockNode *)lock->fl_Key;
D(("lock on '%s'", escape_name(ln->ln_FullName)));
ln->ln_LastUser = last_user;
/* The buffer has to be large enough for at
* least the 'next entry' pointer to be stored.
*/
if(buffer_size < (LONG)sizeof(ed->ed_Next))
{
D(("buffer is far too short (%ld bytes, minimum is %ld).",buffer_size, sizeof(ed->ed_Next)));
error = ERROR_NO_FREE_STORE;
goto out;
}
/* No next entry yet. */
ed->ed_Next = NULL;
if((LONG)eac->eac_LastKey == -1)
{
SHOWMSG("scanning already finished.");
error = ERROR_NO_MORE_ENTRIES;
goto out;
}
/* Is this even a valid type parameter? All supported
* type values are > 1.
*/
if(type < ED_NAME)
{
D(("type %ld is not supported", type));
error = ERROR_BAD_NUMBER;
goto out;
}
/* Figure out how much space a single directory
* entry will always require, with the name not
* taken into account yet.
*/
switch(type)
{
case ED_NAME:
SHOWMSG("type=name");
record_size = offsetof(struct ExAllData,ed_Name) + sizeof(ed->ed_Name);
break;
case ED_TYPE:
SHOWMSG("type=type");
record_size = offsetof(struct ExAllData,ed_Type) + sizeof(ed->ed_Type);
break;
case ED_SIZE:
SHOWMSG("type=size");
record_size = offsetof(struct ExAllData,ed_Size) + sizeof(ed->ed_Size);
break;
case ED_PROTECTION:
SHOWMSG("type=protection");
record_size = offsetof(struct ExAllData,ed_Prot) + sizeof(ed->ed_Prot);
break;
case ED_DATE:
SHOWMSG("type=date");
record_size = offsetof(struct ExAllData,ed_Days) + (sizeof(ed->ed_Days) + sizeof(ed->ed_Mins) + sizeof(ed->ed_Ticks));
break;
case ED_COMMENT:
SHOWMSG("type=comment");
record_size = offsetof(struct ExAllData,ed_Comment) + sizeof(ed->ed_Comment);
break;
case ED_OWNER:
default:
/* Note: If the requested type is not known, we default to return
* everything, i.e. ED_OWNER. For this "promotion" to stick,
* we have to update the type field.
*/
type = ED_OWNER;
SHOWMSG("type=owner");
record_size = offsetof(struct ExAllData,ed_OwnerUID) + (sizeof(ed->ed_OwnerUID) + sizeof(ed->ed_OwnerGID));
break;
}
if(buffer_size < record_size)
{
D(("buffer is too short (%ld bytes, record size is %ld).",buffer_size, record_size));
error = ERROR_NO_FREE_STORE;
goto out;
}
memset(&ec,0,sizeof(ec));
ec.ec_RecordSize = record_size;
ec.ec_Buffer = buffer;
ec.ec_BufferSize = buffer_size;
ec.ec_Control = eac;
ec.ec_Type = type;
SHOWVALUE(ec.ec_RecordSize);
/* Check if we should restart scanning the directory
* contents. This is tricky at best and may produce
* irritating results :(
*/
if(ln->ln_RestartExamine)
{
SHOWMSG("restarting directory scanning");
restart = TRUE;
offset = 0;
ln->ln_RestartExamine = FALSE;
}
else
{
restart = FALSE;
offset = eac->eac_LastKey;
}
/* Start from the top? Check if the lock actually refers to a directory. */
if(offset == 0)
{
smba_stat_t st;
SHOWMSG("first invocation");
SHOWMSG("getting file attributes");
if(smba_getattr(ln->ln_File,&st,&error) < 0)
{
SHOWMSG("didn't work");
error = map_errno_to_ioerr(error);
goto out;
}
if(NOT st.is_dir)
{
SHOWMSG("lock does not refer to a directory");
error = ERROR_OBJECT_WRONG_TYPE;
goto out;
}
}
SHOWMSG("calling 'smba_readdir'");
SHOWVALUE(offset);
if (smba_readdir(ln->ln_File,offset,restart,&ec,(smba_callback_t)dir_scan_callback_func_exall,&eof,&error) < 0)
{
D(("error whilst scanning (errno=%ld)", error));
error = map_errno_to_ioerr(error);
goto out;
}
/* Did dir_scan_callback_func_exall() run into trouble? */
else if (ec.ec_Error != OK)
{
D(("error whilst scanning (ioerr=%ld)", ec.ec_Error));
error = ec.ec_Error;
goto out;
}
/* The dir_scan_callback_func_exall() function will set the
* last key (directory search position) to -1 when there
* are no more entries to be read. If we didn't succeed
* in reading anything at all, this means that we have to
* throw in the towel...
*/
if(eac->eac_Entries == 0 && (LONG)ec.ec_Control->eac_LastKey == -1)
{
SHOWMSG("nothing more to be read");
error = ERROR_NO_MORE_ENTRIES;
goto out;
}
ASSERT( ec.ec_Buffer <= &buffer[buffer_size] );
SHOWMSG("ok");
call_exall_again = DOSTRUE;
error = OK;
out:
/* Don't allow ExAll() to call smba_readdir() again. */
if(call_exall_again == DOSFALSE)
{
eac->eac_Entries = 0;
eac->eac_LastKey = (ULONG)-1;
}
#if DEBUG
{
int num_entries_found = 0;
D(("number of entries available = %ld, call ExAll() again = %s",eac->eac_Entries, call_exall_again ? "yes": "no"));
if(call_exall_again && eac->eac_Entries > 0)
{
do
{
SHOWSTRING(ed->ed_Name);
num_entries_found++;
ed = ed->ed_Next;
}
while(ed != NULL);
}
ASSERT( eac->eac_Entries == num_entries_found );
}
#endif /* DEBUG */
(*error_ptr) = error;
RETURN(call_exall_again);
return(call_exall_again);
}
/****************************************************************************/
static LONG
Action_ExamineAllEnd(
const struct MsgPort * last_user,
struct FileLock * lock,
UBYTE * buffer,
LONG buffer_size,
LONG type,
struct ExAllControl * eac,
LONG * error_ptr)
{
LONG result = DOSFALSE;
struct LockNode * ln;
int error = OK;
ENTER();
if(file_system_disabled)
{
error = ERROR_NO_DISK;
goto out;
}
/* Check if the lock is suitable. */
if(lock_is_invalid(lock,&error))
goto out;
ln = (struct LockNode *)lock->fl_Key;
D(("lock on '%s'", escape_name(ln->ln_FullName)));
ln->ln_LastUser = last_user;
/* Make Action_ExamineAll() return no more entries. */
eac->eac_LastKey = (ULONG)-1;
result = DOSTRUE;
error = OK;
out:
(*error_ptr) = error;
RETURN(result);
return(result);
}
/****************************************************************************/
static LONG
Action_Find(
const struct MsgPort * user,
LONG action,
struct FileHandle * fh,
struct FileLock * parent,
const void * bcpl_name,
LONG * error_ptr)
{
LONG result = DOSFALSE;
STRPTR parent_path = NULL;
STRPTR full_name = NULL;
struct FileNode * fn = NULL;
STRPTR parent_name;
TEXT name[MAX_FILENAME_LEN+1];
int name_len;
BOOL create_new_file = FALSE;
STRPTR temp = NULL;
smba_stat_t st;
int error;
ENTER();
switch(action)
{
case ACTION_FINDINPUT:
D(("ACTION_FINDINPUT [Open(\"%b\",MODE_OLDFILE)]",MKBADDR(bcpl_name)));
break;
case ACTION_FINDOUTPUT:
D(("ACTION_FINDOUTPUT [Open(\"%b\",MODE_NEWFILE)]",MKBADDR(bcpl_name)));
create_new_file = TRUE;
break;
case ACTION_FINDUPDATE:
D(("ACTION_FINDUPDATE [Open(\"%b\",MODE_READWRITE)]",MKBADDR(bcpl_name)));
break;
}
if(file_system_disabled)
{
error = ERROR_NO_DISK;
goto out;
}
if(CANNOT get_parent_name(parent, user, &parent_name, &error))
goto out;
name_len = convert_from_bcpl_to_c_string(name,sizeof(name),bcpl_name);
if(path_name_is_invalid(name, name_len))
{
D(("'%s' is not a valid path name", name));
if(action == ACTION_FINDINPUT)
error = ERROR_OBJECT_NOT_FOUND;
else
error = ERROR_INVALID_COMPONENT_NAME;
goto out;
}
if(NOT ServerData->server.unicode_enabled)
{
error = translate_amiga_name_to_smb_name(name,name_len,sizeof(name));
if(error != OK)
goto out;
}
error = build_full_path_name(parent_name,name,name_len,&full_name);
if(error != OK)
goto out;
/* Trying to open the root directory? */
if(strcmp(full_name, SMB_ROOT_DIR_NAME) == SAME)
{
SHOWMSG("cannot open the root directory");
error = ERROR_OBJECT_WRONG_TYPE;
goto out;
}
fn = allocate_file_node((action == ACTION_FINDOUTPUT) ? EXCLUSIVE_LOCK : SHARED_LOCK,full_name,fh,NULL);
if(fn == NULL)
{
error = ERROR_NO_FREE_STORE;
goto out;
}
error = check_access_mode_collision(full_name,fn->fn_Mode);
if(error != OK)
goto out;
D(("full path name = '%s'",escape_name(fn->fn_FullName)));
/* Open an existing file for write access, create it if
* it doesn't exist yet?
*/
if(action == ACTION_FINDUPDATE)
{
D(("trying to open '%s' for write access, no truncation", full_name));
if(smba_open(ServerData,full_name,open_writable,open_dont_truncate,&fn->fn_File,&error) < 0)
{
int translated_error;
if(error == error_check_smb_error)
translated_error = smb_errno(((struct smb_server *)ServerData)->rcls,((struct smb_server *)ServerData)->err);
else
translated_error = error;
if(translated_error == ENOENT)
{
/* We couldn't open an existing file, so we'll have to create one. */
create_new_file = TRUE;
SHOWMSG("file didn't open, so we'll try to create it without truncating it now");
}
}
}
/* Create a new file for MODE_NEWFILE or MODE_READWRITE? */
if(create_new_file)
{
STRPTR dir_name,base_name;
smba_file_t * dir;
if(ReadOnly || WriteProtected)
{
error = ERROR_DISK_WRITE_PROTECTED;
goto out;
}
error = split_path_name(full_name,strlen(full_name),&temp,&dir_name,&base_name);
if(error != OK)
{
D(("could not split path '%s'",escape_name(full_name)));
goto out;
}
SHOWMSG("creating a file; finding parent path first");
D(("dir_name = '%s'",escape_name(dir_name)));
if(smba_open(ServerData,dir_name,open_read_only,open_dont_truncate,&dir,&error) < 0)
{
error = map_errno_to_ioerr(error);
goto out;
}
SHOWMSG("now trying to create the file");
D(("base name = '%s'",escape_name(base_name)));
/* Try to create a new file if it does not exist, but if
* it exists, can be opened and MODE_NEWFILE is used, set
* its size to 0.
*
* We don't care yet if it can be created, as the real test
* will be in opening the file.
*/
smba_create(dir,base_name,action == ACTION_FINDOUTPUT,&error);
smba_close(ServerData,dir);
}
/* The file may have been opened for ACTION_FINDUPDATE already,
* so don't reopen it by mistake.
*/
if(fn->fn_File == NULL)
{
/* Open the file for read access if MODE_OLDFILE is used and
* for write access if MODE_NEWFILE or MODE_READWRITE
* is used.
*
* If the file opens and MODE_NEWFILE is used, set the
* file size to 0.
*/
if(smba_open(ServerData,full_name,(action != ACTION_FINDINPUT),(action == ACTION_FINDOUTPUT),&fn->fn_File,&error) < 0)
{
error = map_errno_to_ioerr(error);
goto out;
}
}
/* Make sure that we ended opening a file, and not a directory.
* Embarrassing questions might otherwise be asked later...
*/
if(smba_getattr(fn->fn_File,&st,&error) < 0)
{
error = map_errno_to_ioerr(error);
goto out;
}
if(st.is_dir)
{
D(("ouch: '%s' is a directory, not a file",escape_name(full_name)));
error = ERROR_OBJECT_WRONG_TYPE;
goto out;
}
D(("all clear: '%s' is a file and not a directory",escape_name(full_name)));
fh->fh_Arg1 = (LONG)fn;
add_file_node(fn);
result = DOSTRUE;
full_name = NULL;
fn = NULL;
error = OK;
out:
free_memory(temp);
free_memory(full_name);
free_memory(fn);
free_memory(parent_path);
/* This can never be a read protection error (EACCES) for
* ACTION_FINDOUTPUT.
*/
if(error == ERROR_READ_PROTECTED && action == ACTION_FINDOUTPUT)
error = ERROR_WRITE_PROTECTED;
(*error_ptr) = error;
RETURN(result);
return(result);
}
/****************************************************************************/
static LONG
Action_Read(
struct FileNode * fn,
APTR mem,
LONG length,
LONG * error_ptr)
{
LONG result = 0;
int error = OK;
ENTER();
if(file_system_disabled)
{
error = ERROR_NO_DISK;
goto out;
}
if(file_is_invalid(fn,&error))
goto out;
D(("file opened on '%s'", escape_name(fn->fn_FullName)));
SHOWVALUE(length);
if(length > 0)
{
result = smba_read(fn->fn_File,mem,length,&fn->fn_OffsetQuad,&error);
if(result < 0)
{
error = map_errno_to_ioerr(error);
result = -1;
goto out;
}
add_64_plus_32_to_64(&fn->fn_OffsetQuad, result, &fn->fn_OffsetQuad);
}
error = OK;
out:
(*error_ptr) = error;
RETURN(result);
return(result);
}
/****************************************************************************/
static LONG
Action_Write(
struct FileNode * fn,
APTR mem,
LONG length,
LONG * error_ptr)
{
LONG result = DOSFALSE;
int error = OK;
ENTER();
if(file_system_disabled)
{
error = ERROR_NO_DISK;
goto out;
}
if(ReadOnly || WriteProtected)
{
error = ERROR_DISK_WRITE_PROTECTED;
goto out;
}
if(file_is_invalid(fn,&error))
goto out;
D(("file opened on '%s'", escape_name(fn->fn_FullName)));
SHOWVALUE(length);
if(length > 0)
{
result = smba_write(fn->fn_File,mem,length,&fn->fn_OffsetQuad,&error);
if(result < 0)
{
error = map_errno_to_ioerr(error);
result = -1;
goto out;
}
add_64_plus_32_to_64(&fn->fn_OffsetQuad, result, &fn->fn_OffsetQuad);
}
error = OK;
out:
/* This can never be a read protection error (EACCES). */
if(error == ERROR_READ_PROTECTED)
error = ERROR_WRITE_PROTECTED;
(*error_ptr) = error;
RETURN(result);
return(result);
}
/****************************************************************************/
static LONG
Action_End(
struct FileNode * which_fn,
LONG * error_ptr)
{
LONG result = DOSFALSE;
struct FileNode * fn;
struct FileNode * found;
struct splay_node * sn;
int error = OK;
ENTER();
if(file_system_disabled)
{
error = ERROR_NO_DISK;
goto out;
}
if(file_is_invalid(which_fn,&error))
goto out;
D(("file opened on '%s'", escape_name(which_fn->fn_FullName)));
/* Make sure that the file is still open. This is to avoid
* trouble if the client ends up trying to close the
* same file twice.
*/
found = NULL;
#ifndef USE_SPLAY_TREE
{
for(fn = (struct FileNode *)FileList.mlh_Head ;
fn->fn_MinNode.mln_Succ != NULL ;
fn = (struct FileNode *)fn->fn_MinNode.mln_Succ)
{
if(fn == which_fn)
{
found = fn;
break;
}
}
}
#else
{
SHOWMSG("looking up the file address (what happened to trust?)");
sn = splay_tree_find(&FileAddressTree, (splay_key_t)which_fn);
if(sn != NULL)
{
SHOWMSG("found it");
found = (struct FileNode *)sn->sn_userdata;
}
else
{
SHOWMSG("didn't find it (this should never happen)");
}
}
#endif /* USE_SPLAY_TREE */
if(found == NULL)
{
SHOWMSG("file not known");
error = ERROR_INVALID_LOCK;
goto out;
}
remove_file_node(found);
smba_close(ServerData,found->fn_File);
/* This will make the file_is_invalid() tests return
* TRUE, which should make it easier to detect
* files which have been closed already, should the
* file system receive them.
*/
found->fn_Magic = 0;
free_memory(found->fn_FullName);
free_memory(found);
result = DOSTRUE;
error = OK;
out:
(*error_ptr) = error;
RETURN(result);
return(result);
}
/****************************************************************************/
static LONG
Action_Seek(
struct FileNode * fn,
LONG position,
LONG mode,
LONG * error_ptr)
{
QUAD previous_position_quad;
QUAD reference_position_quad;
QUAD new_position_quad;
LONG result = -1;
smba_stat_t st;
int error;
ENTER();
if(file_system_disabled)
{
error = ERROR_NO_DISK;
goto out;
}
if(file_is_invalid(fn,&error))
goto out;
D(("file opened on '%s'", escape_name(fn->fn_FullName)));
previous_position_quad = fn->fn_OffsetQuad;
switch(mode)
{
case OFFSET_BEGINNING:
reference_position_quad.Low = 0;
reference_position_quad.High = 0;
break;
case OFFSET_CURRENT:
reference_position_quad = fn->fn_OffsetQuad;
break;
case OFFSET_END:
if(smba_getattr(fn->fn_File,&st,&error) < 0)
{
error = map_errno_to_ioerr(error);
goto out;
}
reference_position_quad.Low = st.size_low;
reference_position_quad.High = st.size_high;
break;
default:
D(("seek mode %ld not known", mode));
error = ERROR_ACTION_NOT_KNOWN;
goto out;
}
#if DEBUG
{
const TEXT * mode_name;
switch(mode)
{
case OFFSET_BEGINNING:
mode_name = "OFFSET_BEGINNING";
break;
case OFFSET_CURRENT:
mode_name = "OFFSET_CURRENT";
break;
default:
mode_name = "OFFSET_END";
break;
}
D(("Seek(..., %ld, %s); current position = %s", position, mode_name, convert_quad_to_string(&reference_position_quad)));
}
#endif /* DEBUG */
if(position < 0)
{
QUAD position_quad;
position_quad.Low = -position;
position_quad.High = 0;
/* We cannot seek back beyond the beginning of the file. */
if(compare_64_to_64(&reference_position_quad,&position_quad) < 0)
{
SHOWMSG("cannot seek back beyond the beginning of the file.");
error = ERROR_SEEK_ERROR;
goto out;
}
subtract_64_from_64_to_64(&reference_position_quad,&position_quad,&new_position_quad);
}
else
{
/* Careful, we need to check for overflow, too. */
if(add_64_plus_32_to_64(&reference_position_quad,position,&new_position_quad) > 0)
{
SHOWMSG("position is too large");
error = ERROR_SEEK_ERROR;
goto out;
}
}
error = OK;
fn->fn_OffsetQuad = new_position_quad;
result = truncate_64_bit_position(&previous_position_quad);
D(("new position = %s; returning %ld", convert_quad_to_string(&new_position_quad), result));
out:
(*error_ptr) = error;
RETURN(result);
return(result);
}
/****************************************************************************/
static LONG
Action_SetFileSize(
struct FileNode * fn,
LONG position,
LONG mode,
LONG * error_ptr)
{
QUAD previous_position_quad;
QUAD reference_position_quad;
QUAD new_position_quad;
LONG result = -1;
smba_stat_t st;
int error;
ENTER();
if(file_system_disabled)
{
error = ERROR_NO_DISK;
goto out;
}
if(ReadOnly || WriteProtected)
{
error = ERROR_DISK_WRITE_PROTECTED;
goto out;
}
if(file_is_invalid(fn,&error))
goto out;
D(("file opened on '%s'", escape_name(fn->fn_FullName)));
previous_position_quad = fn->fn_OffsetQuad;
switch(mode)
{
case OFFSET_BEGINNING:
reference_position_quad.Low = 0;
reference_position_quad.High = 0;
break;
case OFFSET_CURRENT:
reference_position_quad = fn->fn_OffsetQuad;
break;
case OFFSET_END:
if(smba_getattr(fn->fn_File,&st,&error) < 0)
{
error = map_errno_to_ioerr(error);
goto out;
}
reference_position_quad.Low = st.size_low;
reference_position_quad.High = st.size_high;
break;
default:
error = ERROR_ACTION_NOT_KNOWN;
goto out;
}
if(position < 0)
{
QUAD position_quad;
position_quad.Low = -position;
position_quad.High = 0;
/* We cannot seek back beyond the beginning of the file. */
if(compare_64_to_64(&reference_position_quad,&position_quad) < 0)
{
error = ERROR_SEEK_ERROR;
goto out;
}
subtract_64_from_64_to_64(&reference_position_quad,&position_quad,&new_position_quad);
}
else
{
/* Careful, we need to check for overflow, too. */
if(add_64_plus_32_to_64(&reference_position_quad,position,&new_position_quad) > 0)
{
error = ERROR_SEEK_ERROR;
goto out;
}
}
if(smba_setattr(fn->fn_File,NULL,&new_position_quad,&error) < 0)
{
error = map_errno_to_ioerr(error);
goto out;
}
error = OK;
/* If the current seek position reaches beyond the new
* size of the file, move it to the end of the file.
*/
if(compare_64_to_64(&fn->fn_OffsetQuad,&new_position_quad) > 0)
fn->fn_OffsetQuad = new_position_quad;
result = truncate_64_bit_position(&previous_position_quad);
out:
/* This can never be a read protection error (EACCES). */
if(error == ERROR_READ_PROTECTED)
error = ERROR_WRITE_PROTECTED;
(*error_ptr) = error;
RETURN(result);
return(result);
}
/****************************************************************************/
static LONG
Action_SetDate(
const struct MsgPort * user,
struct FileLock * parent,
const void * bcpl_name,
const struct DateStamp * ds,
LONG * error_ptr)
{
LONG result = DOSFALSE;
STRPTR full_name = NULL;
smba_file_t * file = NULL;
STRPTR parent_name;
TEXT name[MAX_FILENAME_LEN+1];
smba_stat_t st;
LONG seconds;
int name_len;
int error;
ENTER();
D(("name = '%b'",MKBADDR(bcpl_name)));
if(file_system_disabled)
{
error = ERROR_NO_DISK;
goto out;
}
if(ReadOnly || WriteProtected)
{
error = ERROR_DISK_WRITE_PROTECTED;
goto out;
}
if(CANNOT get_parent_name(parent, user, &parent_name, &error))
goto out;
name_len = convert_from_bcpl_to_c_string(name,sizeof(name),bcpl_name);
if(path_name_is_invalid(name, name_len))
{
D(("'%s' is not a valid path name", name));
error = ERROR_OBJECT_NOT_FOUND;
goto out;
}
if(NOT ServerData->server.unicode_enabled)
{
error = translate_amiga_name_to_smb_name(name,name_len,sizeof(name));
if(error != OK)
goto out;
}
error = build_full_path_name(parent_name,name,name_len,&full_name);
if(error != OK)
goto out;
/* Trying to change the date of the root directory? */
if(strcmp(full_name, SMB_ROOT_DIR_NAME) == SAME)
{
SHOWMSG("cannot change the date of the root directory");
error = ERROR_OBJECT_IN_USE;
goto out;
}
D(("full_name = '%s'",escape_name(full_name)));
if(smba_open(ServerData,full_name,open_writable,open_dont_truncate,&file,&error) < 0)
{
error = map_errno_to_ioerr(error);
goto out;
}
if(smba_getattr(file,&st,&error) < 0)
{
error = map_errno_to_ioerr(error);
goto out;
}
#if DEBUG
{
struct DateTime dat;
TEXT date[2 * LEN_DATSTRING],time[2 * LEN_DATSTRING];
memset(&dat,0,sizeof(dat));
memset(date,0,sizeof(date));
memset(time,0,sizeof(time));
dat.dat_Stamp = (*ds);
dat.dat_Format = FORMAT_DOS;
dat.dat_StrDate = date;
dat.dat_StrTime = time;
if(DateToStr(&dat))
{
D(("days=%ld/minutes=%ld/ticks=%ld: %s %s", ds->ds_Days, ds->ds_Minute, ds->ds_Tick, date, time));
}
else
{
D(("could not convert days=%ld/minutes=%ld/ticks=%ld", ds->ds_Days, ds->ds_Minute, ds->ds_Tick));
}
ASSERT( strlen(date) < LEN_DATSTRING );
ASSERT( strlen(time) < LEN_DATSTRING );
}
#endif /* DEBUG */
seconds = (ds->ds_Days * 24 * 60 + ds->ds_Minute) * 60 + (ds->ds_Tick / TICKS_PER_SECOND);
/* We change both the creation date/time and the last modification
* date/time because the SMB server may not initialize all four
* date/time records for ACTION_EXAMINE/ACTION_EXNEXT/ACTION_EXAMINE_ALL
* to use. The modification date/time may be missing, so the
* creation date/time is used in its stead.
*
* Unless we initialize it here, the ACTION_EXAMINE/ACTION_EXNEXT/ACTION_EXAMINE_ALL
* 'Date file last changed' may always end up using the creation time.
*/
st.ctime = seconds + UNIX_TIME_OFFSET + get_time_zone_delta();
st.mtime = st.ctime;
st.atime = 0;
D(("ctime = mtime = %lu",st.ctime));
if(smba_setattr(file,&st,NULL,&error) < 0)
{
error = map_errno_to_ioerr(error);
goto out;
}
result = DOSTRUE;
error = OK;
out:
if(file != NULL)
smba_close(ServerData,file);
free_memory(full_name);
/* This can never be a read protection error (EACCES). */
if(error == ERROR_READ_PROTECTED)
error = ERROR_WRITE_PROTECTED;
(*error_ptr) = error;
RETURN(result);
return(result);
}
/****************************************************************************/
static LONG
Action_ExamineFH(
struct FileNode * fn,
struct FileInfoBlock * fib,
LONG * error_ptr)
{
QUAD size_quad;
QUAD num_blocks_quad;
LONG result = DOSFALSE;
smba_stat_t st;
int error;
LONG seconds;
TEXT translated_name[MAX_FILENAME_LEN+1];
const TEXT * name;
int name_len;
ENTER();
memset(fib,0,sizeof(*fib));
fib->fib_DiskKey = -1;
if(file_system_disabled)
{
error = ERROR_NO_DISK;
goto out;
}
if(file_is_invalid(fn,&error))
goto out;
D(("file opened on '%s'", escape_name(fn->fn_FullName)));
if(smba_getattr(fn->fn_File,&st,&error) < 0)
{
error = map_errno_to_ioerr(error);
goto out;
}
name = get_base_name(fn->fn_FullName,strlen(fn->fn_FullName));
name_len = strlen(name);
if(NOT ServerData->server.unicode_enabled)
{
if(name_len >= (int)sizeof(translated_name))
{
D(("name is too long (%ld >= %ld)", name_len, sizeof(translated_name)));
error = ERROR_BUFFER_OVERFLOW;
goto out;
}
/* Length includes the terminating NUL byte. */
memcpy(translated_name,name,name_len+1);
error = translate_smb_name_to_amiga_name(translated_name,name_len,sizeof(translated_name));
if(error != OK)
{
SHOWMSG("name is not acceptable");
goto out;
}
name = translated_name;
name_len = strlen(name);
}
/* Check if this is a usable Amiga file or directory name. */
error = validate_amigados_file_name(name, name_len);
if(error != OK)
{
SHOWMSG("name contains unacceptable characters");
goto out;
}
/* Will the name fit? */
if(name_len >= (int)sizeof(fib->fib_FileName))
{
D(("name is too long (%ld >= %ld)", name_len, sizeof(fib->fib_FileName)));
error = ERROR_BUFFER_OVERFLOW;
goto out;
}
/* Store the file/directory name in the form expected
* by dos.library.
*/
convert_from_c_to_bcpl_string(fib->fib_FileName,sizeof(fib->fib_FileName),name,name_len);
/* Convert the size of the file into blocks, with 512 bytes per block. */
size_quad.Low = st.size_low;
size_quad.High = st.size_high;
/* Round up when dividing by 512. */
add_64_plus_32_to_64(&size_quad,511,&num_blocks_quad);
divide_64_by_32(&num_blocks_quad,512,&num_blocks_quad);
fib->fib_DirEntryType = ST_FILE;
fib->fib_EntryType = ST_FILE;
fib->fib_NumBlocks = num_blocks_quad.Low;
fib->fib_Size = truncate_64_bit_position(&size_quad);
D(("is read only = %s",st.is_read_only ? "yes" : "no"));
if(st.is_read_only)
fib->fib_Protection |= FIBF_DELETE;
/* Careful: the 'archive' attribute has exactly the opposite
* meaning in the Amiga and the SMB worlds.
*/
D(("was changed since last_archive = %s",st.was_changed_since_last_archive ? "yes" : "no"));
if(NOT st.was_changed_since_last_archive)
fib->fib_Protection |= FIBF_ARCHIVE;
/* If modification time is 0 use creation time instead (cyfm 2009-03-18). */
seconds = (st.mtime == 0 ? st.ctime : st.mtime);
seconds -= UNIX_TIME_OFFSET + get_time_zone_delta();
if(seconds < 0)
seconds = 0;
fib->fib_Date.ds_Days = (seconds / (24 * 60 * 60));
fib->fib_Date.ds_Minute = (seconds % (24 * 60 * 60)) / 60;
fib->fib_Date.ds_Tick = (seconds % 60) * TICKS_PER_SECOND;
#if DEBUG
{
struct DateTime dat;
TEXT date[2 * LEN_DATSTRING],time[2 * LEN_DATSTRING];
memset(&dat,0,sizeof(dat));
memset(date,0,sizeof(date));
memset(time,0,sizeof(time));
dat.dat_Stamp = fib->fib_Date;
dat.dat_Format = FORMAT_DOS;
dat.dat_StrDate = date;
dat.dat_StrTime = time;
if(DateToStr(&dat))
{
D(("days=%ld/minutes=%ld/ticks=%ld: %s %s", fib->fib_Date.ds_Days, fib->fib_Date.ds_Minute, fib->fib_Date.ds_Tick, date, time));
}
else
{
D(("could not convert days=%ld/minutes=%ld/ticks=%ld", fib->fib_Date.ds_Days, fib->fib_Date.ds_Minute, fib->fib_Date.ds_Tick));
}
ASSERT( strlen(date) < LEN_DATSTRING );
ASSERT( strlen(time) < LEN_DATSTRING );
}
#endif /* DEBUG */
result = DOSTRUE;
error = OK;
out:
(*error_ptr) = error;
RETURN(result);
return(result);
}
/****************************************************************************/
static BPTR
Action_ParentFH(
struct MsgPort * user,
struct FileNode * fn,
LONG * error_ptr)
{
BPTR result = ZERO;
struct LockNode * ln = NULL;
int error;
STRPTR parent_dir_name = NULL;
ENTER();
if(file_system_disabled)
{
error = ERROR_NO_DISK;
goto out;
}
if(file_is_invalid(fn,&error))
goto out;
D(("file opened on '%s'", escape_name(fn->fn_FullName)));
error = get_parent_dir_name(fn->fn_FullName,strlen(fn->fn_FullName),&parent_dir_name);
if(error != OK)
goto out;
ln = allocate_lock_node(SHARED_LOCK,parent_dir_name,user);
if(ln == NULL)
{
error = ERROR_NO_FREE_STORE;
goto out;
}
D(("parent_dir_name = '%s'",escape_name(parent_dir_name)));
if(smba_open(ServerData,parent_dir_name,open_read_only,open_dont_truncate,&ln->ln_File,&error) < 0)
{
error = map_errno_to_ioerr(error);
goto out;
}
add_lock_node(ln);
result = MKBADDR(&ln->ln_FileLock);
SHOWPOINTER(&ln->ln_FileLock);
parent_dir_name = NULL;
ln = NULL;
error = OK;
out:
free_memory(ln);
free_memory(parent_dir_name);
(*error_ptr) = error;
RETURN(result);
return(result);
}
/****************************************************************************/
static BPTR
Action_CopyDirFH(
const struct MsgPort * user,
struct FileNode * fn,
LONG * error_ptr)
{
BPTR result = ZERO;
struct LockNode * ln = NULL;
STRPTR full_name = NULL;
int error;
ENTER();
if(file_system_disabled)
{
error = ERROR_NO_DISK;
goto out;
}
if(file_is_invalid(fn,&error))
goto out;
D(("file opened on '%s'", escape_name(fn->fn_FullName)));
if(fn->fn_Mode != SHARED_LOCK)
{
error = ERROR_OBJECT_IN_USE;
goto out;
}
full_name = allocate_and_copy_string(fn->fn_FullName, strlen(fn->fn_FullName));
if(full_name == NULL)
{
error = ERROR_NO_FREE_STORE;
goto out;
}
ln = allocate_lock_node(SHARED_LOCK,full_name,user);
if(ln == NULL)
{
error = ERROR_NO_FREE_STORE;
goto out;
}
D(("full_name = '%s'",escape_name(full_name)));
if(smba_open(ServerData,full_name,open_read_only,open_dont_truncate,&ln->ln_File,&error) < 0)
{
error = map_errno_to_ioerr(error);
goto out;
}
add_lock_node(ln);
result = MKBADDR(&ln->ln_FileLock);
SHOWPOINTER(&ln->ln_FileLock);
full_name = NULL;
ln = NULL;
error = OK;
out:
free_memory(ln);
free_memory(full_name);
(*error_ptr) = error;
RETURN(result);
return(result);
}
/****************************************************************************/
static LONG
Action_FHFromLock(
struct FileHandle * fh,
struct FileLock * fl,
LONG * error_ptr)
{
LONG result = DOSFALSE;
struct FileNode * fn;
struct LockNode * ln;
int error = OK;
ENTER();
SHOWPOINTER(fl);
if(file_system_disabled)
{
error = ERROR_NO_DISK;
goto out;
}
if(lock_is_invalid(fl,&error))
goto out;
ln = (struct LockNode *)fl->fl_Key;
D(("lock on '%s'", escape_name(ln->ln_FullName)));
/* Is this a directory and not a file? */
if((ln->ln_File->dirent.attr & SMB_FILE_ATTRIBUTE_DIRECTORY) != 0)
{
SHOWMSG("this is not a lock for a file");
error = ERROR_OBJECT_WRONG_TYPE;
goto out;
}
fn = allocate_file_node(fl->fl_Access,ln->ln_FullName,fh,ln->ln_File);
if(fn == NULL)
{
error = ERROR_NO_FREE_STORE;
goto out;
}
/* The file handle absorbs the lock, which in this case includes
* the full path name and the SMB file.
*/
remove_lock_node(ln);
ln->ln_FullName = NULL;
free_memory(ln);
fh->fh_Arg1 = (LONG)fn;
add_file_node(fn);
result = DOSTRUE;
error = OK;
out:
(*error_ptr) = error;
RETURN(result);
return(result);
}
/****************************************************************************/
static LONG
Action_RenameDisk(
const void * bcpl_name,
LONG * error_ptr)
{
LONG result = DOSFALSE;
int error;
STRPTR old_name;
STRPTR new_name;
const TEXT * name;
int len;
ENTER();
if(file_system_disabled)
{
error = ERROR_NO_DISK;
goto out;
}
if(ReadOnly || WriteProtected)
{
error = ERROR_DISK_WRITE_PROTECTED;
goto out;
}
if(NOT VolumeNodeAdded)
{
error = ERROR_OBJECT_IN_USE;
goto out;
}
D(("name = '%b'",MKBADDR(bcpl_name)));
name = bcpl_name;
len = name[0];
/* Is this a proper name for a volume? */
if(NOT is_valid_device_name(name, len))
{
error = ERROR_INVALID_COMPONENT_NAME;
goto out;
}
/* Now for the really interesting part; the new name
* is to be a NUL-terminated BCPL string, and as such
* must be allocated via AllocVec().
*/
new_name = AllocVec(1 + len + 1,MEMF_ANY|MEMF_PUBLIC);
if(new_name == NULL)
{
error = ERROR_NO_FREE_STORE;
goto out;
}
new_name[0] = len;
memcpy(&new_name[1],&name[1],len);
new_name[len+1] = '\0';
Forbid();
old_name = BADDR(VolumeNode->dol_Name);
VolumeNode->dol_Name = MKBADDR(new_name);
Permit();
FreeVec(old_name);
if(VolumeNodeAdded)
send_disk_change_notification(IECLASS_DISKINSERTED);
result = DOSTRUE;
error = OK;
out:
(*error_ptr) = error;
RETURN(result);
return(result);
}
/****************************************************************************/
static LONG
Action_CurrentVolume(
struct FileNode * fn,
LONG * error_ptr)
{
LONG result = ZERO;
int error;
ENTER();
if(file_is_invalid(fn,&error))
goto out;
D(("file opened on '%s'", escape_name(fn->fn_FullName)));
if(NOT VolumeNodeAdded)
{
error = ERROR_ACTION_NOT_KNOWN;
goto out;
}
/* This is in support of the "Please insert volume XXXin any drive"
* requester. Not that it should be needed, but you never know...
*/
result = MKBADDR(VolumeNode);
error = 0; /* This is actually the unit number. */
out:
(*error_ptr) = error;
RETURN(result);
return(result);
}
/****************************************************************************/
static LONG
Action_ChangeMode(
const struct MsgPort * user,
LONG type,
APTR object,
LONG new_mode,
LONG * error_ptr)
{
LONG result = DOSFALSE;
struct FileLock * fl = NULL;
struct FileNode * fn = NULL;
struct LockNode * ln = NULL;
const TEXT * name;
LONG old_mode;
int error = OK;
ENTER();
if(file_system_disabled)
{
error = ERROR_NO_DISK;
goto out;
}
/* Bug compatibility: the ChangeMode() autodocs used to suggest that the
* 'new_mode' parameter should contain the new access mode without actually
* explaining what that mode should be. Consequently, no two file systems
* out of three are implementing this packet the same way.
*
* Some file systems allow SHARED_LOCK/EXCLUSIVE_LOCK for both file handles
* and file locks, some try to allow MODE_OLDFILE/MODE_READWRITE/MODE_NEWFILE
* for file handles but really assume that it should be SHARED_LOCK/EXCLUSIVE_LOCK
* with hilarious/tragic consequences. The only file system which sort of got
* this right was ram-handler.
*
* We accept MODE_OLDFILE, MODE_READWRITE and MODE_NEWFILE for files, as well
* as SHARED_LOCK and EXCLUSIVE_LOCK. This works because these five modes
* are represented by different numbers.
*
* For locks we only accept SHARED_LOCK and EXCLUSIVE_LOCK.
*/
if(type == CHANGE_FH)
{
/* We convert what we know and let the unexpected through
* to produce an error.
*/
if(new_mode == MODE_OLDFILE || new_mode == MODE_READWRITE)
new_mode = SHARED_LOCK;
else if (new_mode == MODE_NEWFILE)
new_mode = EXCLUSIVE_LOCK;
}
/* Sanity check; verify parameters */
if((type != CHANGE_LOCK && type != CHANGE_FH) ||
(new_mode != EXCLUSIVE_LOCK && new_mode != SHARED_LOCK))
{
error = ERROR_ACTION_NOT_KNOWN;
goto out;
}
/* Now obtain the data structures, name and mode
* associated with the object in question.
*/
if(type == CHANGE_LOCK)
{
if(lock_is_invalid(fl,&error))
goto out;
fl = object;
ln = (struct LockNode *)fl->fl_Key;
D(("lock on '%s'", escape_name(ln->ln_FullName)));
name = ln->ln_FullName;
old_mode = fl->fl_Access;
ln->ln_LastUser = user;
}
else
{
struct FileHandle * fh = object;
fn = (struct FileNode *)fh->fh_Arg1;
if(file_is_invalid(fn,&error))
goto out;
D(("file opened on '%s'", escape_name(fn->fn_FullName)));
name = fn->fn_FullName;
old_mode = fn->fn_Mode;
}
/* Do we need to change anything at all? */
if(new_mode != old_mode)
{
/* Change from shared to exclusive access? */
if(new_mode != SHARED_LOCK)
{
/* Is there another shared access lock
* which refers to the same object?
*/
if(find_lock_node_by_name(name,ln) != NULL)
{
error = ERROR_OBJECT_IN_USE;
goto out;
}
/* Is there another shared access file
* which refers to the same object?
*/
if(find_file_node_by_name(name,fn) != NULL)
{
error = ERROR_OBJECT_IN_USE;
goto out;
}
}
/* There is either just one single reference
* to this object or the object in question
* is configured for exclusive access.
*/
if(type == CHANGE_LOCK)
fl->fl_Access = new_mode;
else
fn->fn_Mode = new_mode;
}
result = DOSTRUE;
error = OK;
out:
(*error_ptr) = error;
RETURN(result);
return(result);
}
/****************************************************************************/
static LONG
Action_WriteProtect(
LONG flag,
ULONG key,
LONG * error_ptr)
{
LONG result = DOSFALSE;
BOOL changed = FALSE;
int error;
ENTER();
if(file_system_disabled)
{
error = ERROR_NO_DISK;
goto out;
}
if(flag == DOSFALSE)
{
if(WriteProtected)
{
if(key != WriteProtectKey)
{
error = ERROR_INVALID_LOCK;
goto out;
}
WriteProtected = FALSE;
changed = TRUE;
}
}
else
{
if(WriteProtected)
{
error = ERROR_INVALID_LOCK;
goto out;
}
WriteProtected = TRUE;
WriteProtectKey = key;
changed = TRUE;
}
if(changed && NOT ReadOnly && VolumeNodeAdded)
{
send_disk_change_notification(IECLASS_DISKREMOVED);
send_disk_change_notification(IECLASS_DISKINSERTED);
}
result = DOSTRUE;
error = OK;
out:
(*error_ptr) = error;
RETURN(result);
return(result);
}
/****************************************************************************/
static LONG
Action_MoreCache(
LONG buffer_delta,
LONG * error_ptr)
{
LONG result;
int old_size;
ENTER();
old_size = smba_get_dircache_size(ServerData);
result = smba_change_dircache_size(ServerData,old_size + buffer_delta);
if(result == old_size && buffer_delta != 0)
{
result = DOSFALSE;
(*error_ptr) = ERROR_NO_FREE_STORE;
}
RETURN(result);
return(result);
}
/****************************************************************************/
static LONG
Action_SetComment(
const struct MsgPort * user,
struct FileLock * parent,
const void * bcpl_name,
const void * bcpl_comment,
LONG * error_ptr)
{
LONG result = DOSFALSE;
STRPTR full_name = NULL;
smba_file_t * file = NULL;
STRPTR parent_name;
TEXT name[MAX_FILENAME_LEN+1];
int name_len;
int error;
ENTER();
D(("name = '%b', comment = '%b'",MKBADDR(bcpl_name),MKBADDR(bcpl_comment)));
if(file_system_disabled)
{
error = ERROR_NO_DISK;
goto out;
}
if(ReadOnly || WriteProtected)
{
error = ERROR_DISK_WRITE_PROTECTED;
goto out;
}
if(CANNOT get_parent_name(parent, user, &parent_name, &error))
goto out;
name_len = convert_from_bcpl_to_c_string(name,sizeof(name),bcpl_name);
if(path_name_is_invalid(name, name_len))
{
D(("'%s' is not a valid path name", name));
error = ERROR_OBJECT_NOT_FOUND;
goto out;
}
if(NOT ServerData->server.unicode_enabled)
{
error = translate_amiga_name_to_smb_name(name,name_len,sizeof(name));
if(error != OK)
goto out;
}
error = build_full_path_name(parent_name,name,name_len,&full_name);
if(error != OK)
goto out;
/* Trying to change the comment of the root directory? */
if(strcmp(full_name, SMB_ROOT_DIR_NAME) == SAME)
{
SHOWMSG("cannot change the comment of the root directory");
error = ERROR_OBJECT_IN_USE;
goto out;
}
D(("full_name = '%s'",escape_name(full_name)));
if(smba_open(ServerData,full_name,open_writable,open_dont_truncate,&file,&error) < 0)
{
error = map_errno_to_ioerr(error);
goto out;
}
/* All this work and we're only doing something very silly... */
result = DOSTRUE;
error = OK;
out:
if(file != NULL)
smba_close(ServerData,file);
free_memory(full_name);
(*error_ptr) = error;
RETURN(result);
return(result);
}
/****************************************************************************/
static LONG
Action_LockRecord(
struct FileNode * fn,
LONG offset,
LONG length,
LONG mode,
ULONG timeout,
LONG * error_ptr)
{
LONG result = DOSFALSE;
int error;
LONG umode;
ENTER();
if(file_system_disabled)
{
error = ERROR_NO_DISK;
goto out;
}
if(file_is_invalid(fn,&error))
goto out;
D(("file opened on '%s'", escape_name(fn->fn_FullName)));
/* Sanity checks... */
if(mode < REC_EXCLUSIVE || mode > REC_SHARED_IMMED)
{
error = ERROR_ACTION_NOT_KNOWN;
goto out;
}
/* Invalid offset, size or integer overflow? */
if(offset < 0 || length <= 0 || offset + length < offset)
{
error = ERROR_LOCK_COLLISION;
goto out;
}
if((mode == REC_SHARED) || (mode == REC_SHARED_IMMED))
umode = 1;
else
umode = 0;
if((mode == REC_SHARED_IMMED) || (mode == REC_EXCLUSIVE_IMMED))
timeout = 0;
/* If a timeout was given, it must be converted from ticks
* per second into milliseconds.
*/
if(timeout > 0)
{
/* Is the timeout too large to be converted into
* milliseconds?
*/
if(timeout > 0xFFFFFFFFUL / TICKS_PER_SECOND)
timeout = ~0UL; /* wait forever */
else
timeout *= 1000 / TICKS_PER_SECOND;
}
if(smba_lockrec (fn->fn_File, offset, length, umode, 0, (long)timeout, &error) < 0)
{
error = map_errno_to_ioerr(error);
goto out;
}
result = DOSTRUE;
error = OK;
out:
(*error_ptr) = error;
RETURN(result);
return(result);
}
/****************************************************************************/
static LONG
Action_FreeRecord(
struct FileNode * fn,
LONG offset,
LONG length,
LONG * error_ptr)
{
LONG result = DOSFALSE;
int error;
ENTER();
if(file_system_disabled)
{
error = ERROR_NO_DISK;
goto out;
}
if(file_is_invalid(fn,&error))
goto out;
D(("file opened on '%s'", escape_name(fn->fn_FullName)));
/* Sanity checks... */
if(offset < 0 || length <= 0 || offset + length < offset)
{
error = ERROR_RECORD_NOT_LOCKED;
goto out;
}
if(smba_lockrec (fn->fn_File, offset, length, 2, -1, 0, &error) < 0)
{
error = map_errno_to_ioerr(error);
goto out;
}
result = DOSTRUE;
error = OK;
out:
(*error_ptr) = error;
RETURN(result);
return(result);
}
/****************************************************************************/
#if defined(ACTION_FILESYSTEM_ATTR)
static LONG
Action_FilesystemAttr(
struct TagItem * args,
LONG * error_ptr)
{
LONG result = DOSFALSE;
struct TagItem * tags = args;
struct TagItem * ti;
ULONG * data;
ULONG length;
LONG error = OK;
ENTER();
while((ti = NextTagItem(&tags)) != NULL)
{
data = (ULONG *)ti->ti_Data;
switch(ti->ti_Tag)
{
case FSA_MaxFileNameLengthR:
(*data) = MaxNameLen > 0 ? MaxNameLen : sizeof(((struct FileInfoBlock *)0)->fib_FileName)-1;
D(("FSA_MaxFileNameLengthR = %ld", (*data)));
break;
case FSA_DOSTypeR:
(*data) = VolumeNode->dol_misc.dol_volume.dol_DiskType;
D(("FSA_DOSTypeR = 0x%08lx", (*data)));
break;
case FSA_VersionNumberR:
(*data) = (((ULONG)VERSION) << 16) | REVISION;
D(("FSA_VersionNumberR = 0x%08lx", (*data)));
break;
case FSA_VersionStringR:
length = GetTagData(FSA_VersionStringR_Len,0,args);
D(("FSA_VersionStringR_Len = %ld", length));
if(length > 0)
{
strlcpy((char *)data,VERS " (" DATE ")",length);
D(("FSA_VersionStringR = \"%s\"", (char *)data));
}
break;
case FSA_VersionStringR_Len:
continue;
case FSA_HasRecycledEntriesR:
(*data) = FALSE;
D(("FSA_HasRecycledEntriesR = %s", (*data) ? "TRUE" : "FALSE"));
break;
default:
error = ERROR_NOT_IMPLEMENTED;
goto out;
}
}
result = DOSTRUE;
out:
(*error_ptr) = error;
RETURN(result);
return(result);
}
#endif /* ACTION_FILESYSTEM_ATTR */
/****************************************************************************/
static void
file_system_handler(
BOOL raise_priority,
const TEXT * volume_name,
const TEXT * service_name)
{
struct Process * this_process = (struct Process *)FindTask(NULL);
BOOL check_for_netbios_keepalive = FALSE;
BOOL sign_off = FALSE;
int old_priority = 0;
fd_set read_fds;
int server_fd;
ULONG signal_mask;
ULONG signals;
BOOL done;
ENTER();
display_error_message_list();
if(NOT Quiet && WBStartup == NULL)
{
struct CommandLineInterface * cli;
cli = Cli();
if(NOT cli->cli_Background)
{
LONG max_cli;
LONG which;
LONG i;
/* Figure out which CLI process number
* this command is associated with.
*/
Forbid();
which = max_cli = MaxCli();
for(i = 1 ; i <= max_cli ; i++)
{
if(FindCliProc(i) == this_process)
{
which = i;
break;
}
}
Permit();
LocalFPrintf(ZERO, "Mounted '%s' as '%b:'; \"Break %ld\" or [Ctrl+C] to stop and unmount... ",
service_name,(volume_name != NULL && VolumeNodeAdded) ? VolumeNode->dol_Name : DeviceNode->dol_Name,which);
Flush(Output());
sign_off = TRUE;
}
}
/* Don't show any further error message in the shell, and
* certainly don't allocate memory for error messages which
* would have to be displayed in an error requester (which
* doesn't happen).
*/
Quiet = TRUE;
done = FALSE;
if(raise_priority)
{
/* Raise the Task priority of the file system to 10
* unless it already is running at priority 10 or higher.
*/
Forbid();
old_priority = this_process->pr_Task.tc_Node.ln_Pri;
if(old_priority < 10)
SetTaskPri((struct Task *)this_process, 10);
Permit();
}
/* Check periodically for NetBIOS keep alive messages. */
TimerRequest->tr_node.io_Command = TR_ADDREQUEST;
TimerRequest->tr_time.tv_secs = 10;
TimerRequest->tr_time.tv_micro = 0;
SendIO((struct IORequest *)TimerRequest);
TimerTicking = TRUE;
signal_mask = SIGBREAKF_CTRL_C | SIGBREAKF_CTRL_D | SIGBREAKF_CTRL_E | SIGBREAKF_CTRL_F | (1UL << FileSystemPort->mp_SigBit) | (1UL << TimerPort->mp_SigBit);
FD_ZERO(&read_fds);
do
{
/* If the server is currently connected, check if it has sent
* a NetBIOS "keep alive" message and deal with it.
*/
if(check_for_netbios_keepalive && (server_fd = ServerData->server.mount_data.fd) >= 0)
{
int n;
/* We want to know if this socket has readable data for us. */
FD_SET(server_fd, &read_fds);
signals = signal_mask;
/* Wait for the server to send something, a signal to be received
* or the next file system packet to arrive.
*/
PROFILE_OFF();
n = WaitSelect(server_fd+1,&read_fds,NULL,NULL,NULL,&signals);
PROFILE_ON();
if(n > 0)
{
int num_bytes;
UBYTE data[4];
int error;
/* We need to pick up everything that might be waiting to be
* read, but we need to stop reading from the socket as soon
* as there is no further data.
*/
while(TRUE)
{
/* Throw away what's waiting to be read. */
num_bytes = smb_discard_netbios_frames(&ServerData->server, server_fd, &error);
if(num_bytes != -1)
{
int non_blocking_io;
SHOWMSG("checking for more data...");
PROFILE_OFF();
non_blocking_io = TRUE;
IoctlSocket(server_fd, FIONBIO, &non_blocking_io);
/* If there's what might be one NetBIOS header worth
* of data waiting to be read, keep going.
*/
num_bytes = recv(server_fd, data, sizeof(data), MSG_PEEK);
if(num_bytes < 0)
error = errno;
non_blocking_io = FALSE;
IoctlSocket(server_fd, FIONBIO, &non_blocking_io);
PROFILE_ON();
if(num_bytes > 0)
{
D(("there's probably something waiting to be read... (%ld bytes)", num_bytes));
continue;
}
SHOWMSG("no more data's waiting");
}
/* If we ran into trouble we might want to shut down
* the server connection...
*/
if(num_bytes < 0 && error != EWOULDBLOCK)
{
D(("picked up trouble (error=%ld)",error));
smb_check_server_connection(&ServerData->server, error);
}
SHOWMSG("and were'done here");
break;
}
}
D(("signals = 0x%08lx",signals));
/* We don't want to call FD_ZERO() on each loop
* count because it is costly. This is why we
* clear the socket which we previously used on
* WaitSelect(), just in case the next loop
* iteration may end up changing the value of
* ServerData->server.mount_data.fd.
*/
FD_CLR(server_fd, &read_fds);
check_for_netbios_keepalive = FALSE;
TimerRequest->tr_node.io_Command = TR_ADDREQUEST;
TimerRequest->tr_time.tv_secs = 10;
TimerRequest->tr_time.tv_micro = 0;
SendIO((struct IORequest *)TimerRequest);
TimerTicking = TRUE;
}
/* The server connection isn't ready yet, so we wait for
* stop/debug signals and more file system packets.
*/
else
{
PROFILE_OFF();
signals = Wait(signal_mask);
PROFILE_ON();
}
/* Schedule an NetBIOS keep alive check? */
if(signals & (1UL << TimerPort->mp_SigBit))
{
SHOWMSG("scheduling a check for NetBIOS keep alive messages");
WaitIO((struct IORequest *)TimerRequest);
TimerTicking = FALSE;
check_for_netbios_keepalive = TRUE;
}
/* Stop the file system? */
if(signals & SIGBREAKF_CTRL_C)
{
SHOWMSG("stop signal received; trying to quit...");
Quit = TRUE;
}
/* Re-enable the file system? If both disable and enable signals
* are present, we always stick with keeping the file system
* enabled.
*/
if (signals & SIGBREAKF_CTRL_E)
{
/* Note that the volume node needs to be around so that
* the Workbench and others can correctly report that
* the file system is not currently operational.
*/
if(VolumeNodeAdded && file_system_disabled)
{
SHOWMSG("re-enabling the file system");
file_system_disabled = FALSE;
send_disk_change_notification(IECLASS_DISKINSERTED);
}
}
/* Disable the file system? */
else if (signals & SIGBREAKF_CTRL_D)
{
if(VolumeNodeAdded && NOT file_system_disabled)
{
SHOWMSG("disabling the file system");
file_system_disabled = TRUE;
send_disk_change_notification(IECLASS_DISKREMOVED);
}
}
if(signals & (1UL << FileSystemPort->mp_SigBit))
{
struct timeval start_time;
struct DosPacket * dp;
struct Message * mn;
LONG res1,res2;
while(TRUE)
{
/* Count the number of packets currently waiting to be processed. */
#if DEBUG
{
ULONG num_packets_waiting;
struct Node * ln;
Disable();
num_packets_waiting = 0;
for(ln = FileSystemPort->mp_MsgList.lh_Head ;
ln->ln_Succ != NULL ;
ln = ln->ln_Succ)
{
num_packets_waiting++;
}
Enable();
if (num_packets_waiting > 1)
D(("%lu packets are waiting to be processed", num_packets_waiting));
else if (num_packets_waiting == 1)
SHOWMSG("1 packet is waiting to be processed");
else
SHOWMSG("no packet is waiting to be processed");
}
#endif /* DEBUG */
mn = GetMsg(FileSystemPort);
if(mn == NULL)
break;
dp = (struct DosPacket *)mn->mn_Node.ln_Name;
#if DEBUG
{
/* We try to provide as much detail about the sender as
* possible.
*/
if((dp->dp_Port->mp_Flags & PF_ACTION) == PA_SIGNAL)
{
const struct Process * sender = (struct Process *)dp->dp_Port->mp_SigTask;
/* Is this even a valid address? */
if(sender == NULL || TypeOfMem((APTR)sender) == 0)
{
D(("got packet; sender 0x%08lx", (ULONG)sender));
}
/* Is the sender a Task? */
else if (sender->pr_Task.tc_Node.ln_Type == NT_TASK)
{
D(("got packet; sender '%s' (Task)",((struct Node *)dp->dp_Port->mp_SigTask)->ln_Name));
}
/* Is this a Process with a CLI attached, e.g. a shell
* command may have sent this packet?
*/
else if (sender->pr_Task.tc_Node.ln_Type == NT_PROCESS && sender->pr_CLI != ZERO)
{
const struct CommandLineInterface * cli = BADDR(sender->pr_CLI);
if (TypeOfMem((APTR)cli) != 0)
{
LONG cli_number = 0;
LONG max_cli, i;
TEXT command_name[256];
/* Is this a known interactive shell or just
* a pointer which looks good enough?
*/
for(max_cli = MaxCli(), i = 1 ; i <= max_cli ; i++)
{
if (FindCliProc(i) == sender)
{
cli_number = i;
break;
}
}
/* Try to figure out the name of the shell
* command, if possible.
*/
if(cli->cli_Module != ZERO)
{
TEXT * cmd = BADDR(cli->cli_CommandName);
int len;
len = cmd[0];
memcpy(command_name,&cmd[1],len);
command_name[len] = '\0';
}
else
{
command_name[0] = '\0';
}
/* Is a this a shell command? */
if(command_name[0] != '\0')
{
/* Is this a known interactive shell? */
if(cli_number > 0)
D(("got packet; sender '%s' (CLI #%ld)", command_name, cli_number));
else
D(("got packet; sender '%s' (CLI 0x%08lx)", command_name, (ULONG)cli));
}
/* No, it's just a shell. */
else
{
D(("got packet; sender '%s' (CLI 0x%08lx)",((struct Node *)dp->dp_Port->mp_SigTask)->ln_Name, (ULONG)cli));
}
}
/* Doesn't look like a valid CLI pointer. */
else
{
D(("got packet; sender '%s' (Process)",((struct Node *)dp->dp_Port->mp_SigTask)->ln_Name));
}
}
/* Just a process, no CLI. */
else if (sender->pr_Task.tc_Node.ln_Type == NT_PROCESS)
{
D(("got packet; sender '%s' (Process)",((struct Node *)dp->dp_Port->mp_SigTask)->ln_Name));
}
/* Something else (hopefully). */
else
{
D(("got packet; sender '%s'",((struct Node *)dp->dp_Port->mp_SigTask)->ln_Name));
}
}
else
{
D(("got packet (MsgPort=0x%08lx)", (ULONG)dp->dp_Port));
}
}
#endif /* DEBUG */
/* We want to know how long it takes to process this packet. */
#if DEBUG
{
GetSysTime((APTR)&start_time);
}
#endif /* DEBUG */
res2 = 0;
switch(dp->dp_Action)
{
case ACTION_DIE:
SHOWMSG("ACTION_DIE");
if(IsListEmpty((struct List *)&FileList) && IsListEmpty((struct List *)&LockList))
{
SHOWMSG("no locks or files pending; quitting");
res1 = DOSTRUE;
}
else
{
SHOWMSG("locks or files still pending; cannot quit yet");
res1 = DOSFALSE;
res2 = ERROR_OBJECT_IN_USE;
}
Quit = TRUE;
break;
case ACTION_CURRENT_VOLUME:
/* FileHandle->fh_Arg1 -> DeviceList, Unit */
res1 = Action_CurrentVolume((struct FileNode *)dp->dp_Arg1,&res2);
break;
case ACTION_LOCATE_OBJECT:
/* Lock,Name,Mode -> Lock */
res1 = Action_LocateObject(dp->dp_Port,(struct FileLock *)BADDR(dp->dp_Arg1),BADDR(dp->dp_Arg2),dp->dp_Arg3,&res2);
break;
case ACTION_RENAME_DISK:
/* Name -> Bool */
res1 = Action_RenameDisk(BADDR(dp->dp_Arg1),&res2);
break;
case ACTION_FREE_LOCK:
/* Lock -> Bool */
res1 = Action_FreeLock((struct FileLock *)BADDR(dp->dp_Arg1),&res2);
break;
case ACTION_DELETE_OBJECT:
/* Lock,Name -> Bool */
res1 = Action_DeleteObject(dp->dp_Port,(struct FileLock *)BADDR(dp->dp_Arg1),BADDR(dp->dp_Arg2),&res2);
break;
case ACTION_RENAME_OBJECT:
/* Source lock,source name,destination lock,destination name -> Bool */
res1 = Action_RenameObject(dp->dp_Port,(struct FileLock *)BADDR(dp->dp_Arg1),BADDR(dp->dp_Arg2),
(struct FileLock *)BADDR(dp->dp_Arg3),BADDR(dp->dp_Arg4),&res2);
break;
case ACTION_MORE_CACHE:
/* Buffer delta -> Total number of buffers */
/* Note: Documentation for this packet type is inconsistent;
* in the 'good old' 1.x days 'res1' was documented as
* the total number of buffers to be returned. In the
* 2.x documentation it is said that 'res1' should
* return the success code, with 'res2' to hold the
* total number of buffers.
*
* However, the 'AddBuffers' shell command doesn't work
* that way, and the dos.library implementation of
* 'AddBuffers()' doesn't work that way either.
*
* The 1.3 'AddBuffers' command appears to treat a zero
* result as failure and a non-zero result as success,
* which suggests that this is how the packet is supposed
* to work, contrary to what the official documentation
* says.
*/
res1 = Action_MoreCache(dp->dp_Arg1,&res2);
break;
case ACTION_COPY_DIR:
/* Lock -> Lock */
res1 = Action_CopyDir(dp->dp_Port,(struct FileLock *)BADDR(dp->dp_Arg1),&res2);
break;
case ACTION_SET_PROTECT:
/* (Ignore),Lock,Name,Mask -> Bool */
res1 = Action_SetProtect(dp->dp_Port,(struct FileLock *)BADDR(dp->dp_Arg2),BADDR(dp->dp_Arg3),dp->dp_Arg4,&res2);
break;
case ACTION_CREATE_DIR:
/* Lock,Name -> Lock */
res1 = Action_CreateDir(dp->dp_Port,(struct FileLock *)BADDR(dp->dp_Arg1),BADDR(dp->dp_Arg2),&res2);
break;
case ACTION_EXAMINE_OBJECT:
/* FileLock,FileInfoBlock -> Bool */
res1 = Action_ExamineObject(dp->dp_Port,(struct FileLock *)BADDR(dp->dp_Arg1),(struct FileInfoBlock *)BADDR(dp->dp_Arg2),&res2);
break;
case ACTION_EXAMINE_NEXT:
/* FileLock,FileInfoBlock -> Bool */
res1 = Action_ExamineNext(dp->dp_Port,(struct FileLock *)BADDR(dp->dp_Arg1),(struct FileInfoBlock *)BADDR(dp->dp_Arg2),&res2);
break;
case ACTION_DISK_INFO:
/* InfoData -> Bool */
Action_DiskInfo((struct InfoData *)BADDR(dp->dp_Arg1),&res2);
/* This should always work. */
res1 = DOSTRUE;
res2 = 0;
break;
case ACTION_INFO:
/* FileLock,InfoData -> Bool */
res1 = Action_Info(dp->dp_Port,(struct FileLock *)BADDR(dp->dp_Arg1),(struct InfoData *)BADDR(dp->dp_Arg2),&res2);
break;
case ACTION_SET_COMMENT:
/* (Ignore),FileLock,Name,Comment -> Bool */
res1 = Action_SetComment(dp->dp_Port,(struct FileLock *)BADDR(dp->dp_Arg2),BADDR(dp->dp_Arg3),BADDR(dp->dp_Arg4),&res2);
break;
case ACTION_PARENT:
/* Lock -> Lock */
res1 = Action_Parent(dp->dp_Port,(struct FileLock *)BADDR(dp->dp_Arg1),&res2);
break;
case ACTION_INHIBIT:
SHOWMSG("ACTION_INHIBIT");
res1 = DOSFALSE;
res2 = ERROR_ACTION_NOT_KNOWN;
break;
case ACTION_SET_DATE:
/* (Ignore),FileLock,Name,DateStamp(APTR) -> Bool */
res1 = Action_SetDate(dp->dp_Port,(struct FileLock *)BADDR(dp->dp_Arg2),BADDR(dp->dp_Arg3),(struct DateStamp *)dp->dp_Arg4,&res2);
break;
case ACTION_SAME_LOCK:
/* Lock,Lock -> Bool */
res1 = Action_SameLock(dp->dp_Port,(struct FileLock *)BADDR(dp->dp_Arg1),(struct FileLock *)BADDR(dp->dp_Arg2),&res2);
break;
case ACTION_READ:
/* FileHandle->fh_Arg1,Buffer(APTR),Length -> Length */
res1 = Action_Read((struct FileNode *)dp->dp_Arg1,(APTR)dp->dp_Arg2,dp->dp_Arg3,&res2);
break;
case ACTION_WRITE:
/* FileHandle->fh_Arg1,Buffer(APTR),Length -> Length */
res1 = Action_Write((struct FileNode *)dp->dp_Arg1,(APTR)dp->dp_Arg2,dp->dp_Arg3,&res2);
break;
case ACTION_FINDUPDATE:
case ACTION_FINDINPUT:
case ACTION_FINDOUTPUT:
/* FileHandle,FileLock,Name -> Bool */
res1 = Action_Find(dp->dp_Port,dp->dp_Action,(struct FileHandle *)BADDR(dp->dp_Arg1),(struct FileLock *)BADDR(dp->dp_Arg2),BADDR(dp->dp_Arg3),&res2);
break;
case ACTION_END:
/* FileHandle->fh_Arg1 -> Bool */
res1 = Action_End((struct FileNode *)dp->dp_Arg1,&res2);
break;
case ACTION_SEEK:
/* FileHandle->fh_Arg1,Position,Mode -> Position */
res1 = Action_Seek((struct FileNode *)dp->dp_Arg1,dp->dp_Arg2,dp->dp_Arg3,&res2);
break;
case ACTION_SET_FILE_SIZE:
/* FileHandle->fh_Arg1,Offset,Mode -> New file size */
res1 = Action_SetFileSize((struct FileNode *)dp->dp_Arg1,dp->dp_Arg2,dp->dp_Arg3,&res2);
break;
case ACTION_WRITE_PROTECT:
/* Flag,Key -> Bool */
res1 = Action_WriteProtect(dp->dp_Arg1,dp->dp_Arg2,&res2);
break;
case ACTION_FH_FROM_LOCK:
/* FileHandle(BPTR),FileLock -> Bool */
res1 = Action_FHFromLock((struct FileHandle *)BADDR(dp->dp_Arg1),(struct FileLock *)BADDR(dp->dp_Arg2),&res2);
break;
case ACTION_IS_FILESYSTEM:
SHOWMSG("ACTION_IS_FILESYSTEM");
res1 = DOSTRUE;
break;
case ACTION_CHANGE_MODE:
/* Type,Object,Mode -> Bool */
res1 = Action_ChangeMode(dp->dp_Port,dp->dp_Arg1,BADDR(dp->dp_Arg2),dp->dp_Arg3,&res2);
break;
case ACTION_COPY_DIR_FH:
/* FileHandle->fh_Arg1 -> Bool */
res1 = Action_CopyDirFH(dp->dp_Port,(struct FileNode *)dp->dp_Arg1,&res2);
break;
case ACTION_PARENT_FH:
/* FileHandle->fh_Arg1 -> Bool */
res1 = Action_ParentFH(dp->dp_Port,(struct FileNode *)dp->dp_Arg1,&res2);
break;
case ACTION_EXAMINE_ALL:
/* FileLock,ExAllData(APTR),Size,Type,ExAllControl(APTR) -> Bool */
/* Pretend that we do not support the ExAll() functionality? */
if(DisableExAll)
{
res1 = DOSFALSE;
res2 = ERROR_ACTION_NOT_KNOWN;
break;
}
res1 = Action_ExamineAll(dp->dp_Port,(struct FileLock *)BADDR(dp->dp_Arg1),(UBYTE *)dp->dp_Arg2,
dp->dp_Arg3,dp->dp_Arg4,(struct ExAllControl *)dp->dp_Arg5,&res2);
break;
case ACTION_EXAMINE_FH:
/* FileHandle->fh_Arg1,FileInfoBlock -> Bool */
res1 = Action_ExamineFH((struct FileNode *)dp->dp_Arg1,(struct FileInfoBlock *)BADDR(dp->dp_Arg2),&res2);
break;
case ACTION_EXAMINE_ALL_END:
/* FileLock,ExAllData(APTR),Size,Type,ExAllControl(APTR) -> Bool */
res1 = Action_ExamineAllEnd(dp->dp_Port,(struct FileLock *)BADDR(dp->dp_Arg1),(UBYTE *)dp->dp_Arg2,
dp->dp_Arg3,dp->dp_Arg4,(struct ExAllControl *)dp->dp_Arg5,&res2);
break;
case ACTION_LOCK_RECORD:
/* FileHandle->fh_Arg1,position,length,mode,time-out -> Bool */
res1 = Action_LockRecord((struct FileNode *)dp->dp_Arg1,dp->dp_Arg2,dp->dp_Arg3,dp->dp_Arg4,(ULONG)dp->dp_Arg5,&res2);
break;
case ACTION_FREE_RECORD:
/* FileHandle->fh_Arg1,position,length -> Bool */
res1 = Action_FreeRecord((struct FileNode *)dp->dp_Arg1,dp->dp_Arg2,dp->dp_Arg3,&res2);
break;
case ACTION_READ_LINK:
/* Return -1 for ACTION_READ_LINK, for which DOSFALSE (= 0)
* would otherwise be a valid response. Bug fix contributed
* by Harry 'Piru' Sintonen.
*/
res1 = -1;
res2 = ERROR_ACTION_NOT_KNOWN;
break;
#if defined(ACTION_FILESYSTEM_ATTR)
case ACTION_FILESYSTEM_ATTR:
res1 = Action_FilesystemAttr((struct TagItem *)dp->dp_Arg1,&res2);
break;
#endif /* ACTION_FILESYSTEM_ATTR */
default:
D(("Anything goes: dp->dp_Action=%ld (0x%lx)",dp->dp_Action,dp->dp_Action));
res1 = DOSFALSE;
res2 = ERROR_ACTION_NOT_KNOWN;
break;
}
#if DEBUG
{
struct timeval finish_time;
TEXT processing_time[30];
/* Figure out how long it took to process this
* packet. Because the system time may have been
* adjusted between the beginning of the processing
* and getting here, we need to make sure that time
* didn't flow backwards...
*/
GetSysTime(&finish_time);
if(-CmpTime(&finish_time,&start_time) >= 0)
{
int l;
SubTime(&finish_time,&start_time);
/* Print the processing time as the number of
* seconds which have passed, without trailing
* zeroes after the decimal point (and removing the
* decimal point altogether if all trailing zeroes
* have been removed.
*/
LocalSNPrintf(processing_time,sizeof(processing_time),"%lu.%06lu", finish_time.tv_secs, finish_time.tv_micro);
l = strlen(processing_time);
while(l > 0 && processing_time[l-1] == '0')
l--;
if(l > 0 && processing_time[l-1] == '.')
l--;
processing_time[l++] = 's';
processing_time[l] = '\0';
}
else
{
strlcpy(processing_time,"unknown",sizeof(processing_time));
}
D(("Returning packet with res1=%ld (0x%08lx) and res2=%ld (0x%08lx); processing time=%s\n",res1,res1,res2,res2,processing_time));
}
#endif /* DEBUG */
ReplyPkt(dp,res1,res2);
}
/* Let's get paranoid: check if we should quit. */
if(SetSignal(0,0) & SIGBREAKF_CTRL_C)
{
SHOWMSG("stop signal received; trying to quit...");
Quit = TRUE;
break;
}
}
#if DEBUG
{
if(signals & SIGBREAKF_CTRL_F)
{
struct FileNode * fn;
struct LockNode * ln;
SHOWMSG("list of open files:");
for(fn = (struct FileNode *)FileList.mlh_Head ;
fn->fn_MinNode.mln_Succ != NULL ;
fn = (struct FileNode *)fn->fn_MinNode.mln_Succ)
{
D((" name='%s'",escape_name(fn->fn_FullName)));
D((" mode=%ld, offset=%s",fn->fn_Mode,convert_quad_to_string(&fn->fn_OffsetQuad)));
D((""));
}
SHOWMSG("list of allocated locks:");
for(ln = (struct LockNode *)LockList.mlh_Head ;
ln->ln_MinNode.mln_Succ != NULL ;
ln = (struct LockNode *)ln->ln_MinNode.mln_Succ)
{
D((" name='%s'",escape_name(ln->ln_FullName)));
D((" mode=%ld",ln->ln_FileLock.fl_Access));
D((""));
}
}
}
#endif /* DEBUG */
if(Quit)
{
if(IsListEmpty((struct List *)&FileList) && IsListEmpty((struct List *)&LockList))
{
SHOWMSG("no locks or files pending; quitting");
done = TRUE;
}
else
{
SHOWMSG("locks or files still pending; cannot quit yet");
}
}
}
while(NOT done);
if(raise_priority)
{
/* Restore the priority of the file system, unless the priority
* has already been changed.
*/
Forbid();
if(old_priority < 10 && this_process->pr_Task.tc_Node.ln_Pri == 10)
SetTaskPri((struct Task *)this_process, old_priority);
Permit();
}
if(sign_off)
LocalFPrintf(ZERO, "stopped.\n");
LEAVE();
}
/****************************************************************************/
/* Convert an unsigned 64 bit integer into a string. The
* conversion uses a local static buffer and returns a pointer
* to the first digit of the string.
*/
const char *
convert_quad_to_string(const QUAD * number)
{
static char string[22]; /* 21 bytes should be sufficient. */
QUAD m = (*number);
ULONG n;
int len;
memset(string,'\0',sizeof(string));
for(len = sizeof(string) - 2 ; len >= 0 ; )
{
n = divide_64_by_32(&m,10,&m);
string[len--] = '0' + n;
if(m.High == 0 && m.Low == 0)
break;
}
ASSERT( len+1 >= 0 );
return(&string[len+1]);
}
/****************************************************************************/
/*
* Copy src to string dst of size siz. At most siz-1 characters
* will be copied. Always NUL terminates (unless siz == 0).
* Returns strlen(src); if retval >= siz, truncation occurred.
*/
size_t
strlcpy(char *dst, const char *src, size_t siz)
{
char *d = dst;
const char *s = src;
size_t n = siz;
size_t result;
/* Copy as many bytes as will fit */
if(n != 0 && --n != 0)
{
do
{
if(((*d++) = (*s++)) == '\0')
break;
}
while(--n != 0);
}
/* Not enough room in dst, add NUL and traverse rest of src */
if(n == 0)
{
if(siz != 0)
(*d) = '\0'; /* NUL-terminate dst */
while((*s++) != '\0')
;
}
result = s - src - 1; /* count does not include NUL */
return(result);
}
/*
* Appends src to string dst of size siz (unlike strncat, siz is the
* full size of dst, not space left). At most siz-1 characters
* will be copied. Always NUL terminates (unless siz <= strlen(dst)).
* Returns strlen(src) + MIN(siz, strlen(initial dst)).
* If retval >= siz, truncation occurred.
*/
size_t
strlcat(char *dst, const char *src, size_t siz)
{
char *d = dst;
const char *s = src;
size_t n = siz;
size_t dlen;
size_t result;
/* Find the end of dst and adjust bytes left but don't go past end */
while(n-- != 0 && (*d) != '\0')
d++;
dlen = d - dst;
n = siz - dlen;
if(n == 0)
{
result = dlen + strlen(s);
}
else
{
while((*s) != '\0')
{
if(n != 1)
{
(*d++) = (*s);
n--;
}
s++;
}
(*d) = '\0';
result = dlen + (s - src); /* count does not include NUL */
}
return(result);
}
/****************************************************************************/
/* Wrapper function for case-insensitive string comparison, as used
* by the SMB url parser.
*/
LONG
strncasecmp(const char *a, const char *b, LONG n)
{
return(Strnicmp((STRPTR)a, (STRPTR)b, n));
}