added some missing wrappers
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3 changed files with 2295 additions and 0 deletions
866
lib/wrappers/tcl.nim
Executable file
866
lib/wrappers/tcl.nim
Executable file
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#
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#
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# Nimrod's Runtime Library
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# (c) Copyright 2010 Andreas Rumpf
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#
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# See the file "copying.txt", included in this
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# distribution, for details about the copyright.
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#
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## This module is a wrapper for the TCL programming language.
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#
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# tcl.h --
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#
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# This header file describes the externally-visible facilities of the Tcl
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# interpreter.
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#
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# Translated to Pascal Copyright (c) 2002 by Max Artemev
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# aka Bert Raccoon (bert@furry.ru, bert_raccoon@freemail.ru)
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#
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#
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# Copyright (c) 1998-2000 by Scriptics Corporation.
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# Copyright (c) 1994-1998 Sun Microsystems, Inc.
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# Copyright (c) 1993-1996 Lucent Technologies.
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# Copyright (c) 1987-1994 John Ousterhout, The Regents of the
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# University of California, Berkeley.
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#
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# ***********************************************************************
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# This program is distributed in the hope that it will be useful,
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# but WITHOUT ANY WARRANTY; without even the implied warranty of
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# MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.
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# ***********************************************************************
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#
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{.deadCodeElim: on.}
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when defined(WIN32):
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const
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dllName = "tcl(85|84|83|82|81|80).dll"
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elif defined(macosx):
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const
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dllName = "libtcl(8.5|8.4|8.3|8.2|8.1).dynlib"
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else:
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const
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dllName = "libtcl(8.5|8.4|8.3|8.2|8.1).so.(1|0)"
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const
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TCL_DESTROYED* = 0xDEADDEAD
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TCL_OK* = 0
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TCL_ERROR* = 1
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TCL_RETURN* = 2
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TCL_BREAK* = 3
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TCL_CONTINUE* = 4
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RESULT_SIZE* = 200
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MAX_ARGV* = 0x00007FFF
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VERSION_MAJOR* = 0
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VERSION_MINOR* = 0
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NO_EVAL* = 0x00010000
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EVAL_GLOBAL* = 0x00020000 # Flag values passed to variable-related proc
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GLOBAL_ONLY* = 1
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NAMESPACE_ONLY* = 2
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APPEND_VALUE* = 4
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LIST_ELEMENT* = 8
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TRACE_READS* = 0x00000010
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TRACE_WRITES* = 0x00000020
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TRACE_UNSETS* = 0x00000040
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TRACE_DESTROYED* = 0x00000080
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INTERP_DESTROYED* = 0x00000100
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LEAVE_ERR_MSG* = 0x00000200
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PARSE_PART1* = 0x00000400 # Types for linked variables: *
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LINK_INT* = 1
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LINK_DOUBLE* = 2
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LINK_BOOLEAN* = 3
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LINK_STRING* = 4
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LINK_READ_ONLY* = 0x00000080
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SMALL_HASH_TABLE* = 4 # Hash Table *
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STRING_KEYS* = 0
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ONE_WORD_KEYS* = 1 # Const/enums Tcl_QueuePosition *
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QUEUE_TAIL* = 0
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QUEUE_HEAD* = 1
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QUEUE_MARK* = 2 # Tcl_QueuePosition;
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# Event Flags
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DONT_WAIT* = 1 shl 1
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WINDOW_EVENTS* = 1 shl 2
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FILE_EVENTS* = 1 shl 3
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TIMER_EVENTS* = 1 shl 4
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IDLE_EVENTS* = 1 shl 5 # WAS 0x10 ???? *
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ALL_EVENTS* = not DONT_WAIT
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VOLATILE* = 1
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STATIC* = 0
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DYNAMIC* = 3 # Channel
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TCL_STDIN* = 1 shl 1
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TCL_STDOUT* = 1 shl 2
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TCL_STDERR* = 1 shl 3
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ENFORCE_MODE* = 1 shl 4
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READABLE* = 1 shl 1
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WRITABLE* = 1 shl 2
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EXCEPTION* = 1 shl 3 # POSIX *
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EPERM* = 1 # Operation not permitted; only the owner of the file (or other
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# resource) or processes with special privileges can perform the
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# operation.
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#
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ENOENT* = 2 # No such file or directory. This is a "file doesn't exist" error
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# for ordinary files that are referenced in contexts where they are
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# expected to already exist.
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#
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ESRCH* = 3 # No process matches the specified process ID. *
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EINTR* = 4 # Interrupted function call; an asynchronous signal occurred and
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# prevented completion of the call. When this happens, you should
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# try the call again.
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#
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EIO* = 5 # Input/output error; usually used for physical read or write errors. *
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ENXIO* = 6 # No such device or address. The system tried to use the device
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# represented by a file you specified, and it couldn't find the
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# device. This can mean that the device file was installed
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# incorrectly, or that the physical device is missing or not
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# correctly attached to the computer.
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#
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E2BIG* = 7 # Argument list too long; used when the arguments passed to a new
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# program being executed with one of the `exec' functions (*note
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# Executing a File::.) occupy too much memory space. This condition
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# never arises in the GNU system.
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#
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ENOEXEC* = 8 # Invalid executable file format. This condition is detected by the
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# `exec' functions; see *Note Executing a File::.
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#
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EBADF* = 9 # Bad file descriptor; for example, I/O on a descriptor that has been
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# closed or reading from a descriptor open only for writing (or vice
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# versa).
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#
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ECHILD* = 10 # There are no child processes. This error happens on operations
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# that are supposed to manipulate child processes, when there aren't
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# any processes to manipulate.
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#
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EDEADLK* = 11 # Deadlock avoided; allocating a system resource would have resulted
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# in a deadlock situation. The system does not guarantee that it
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# will notice all such situations. This error means you got lucky
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# and the system noticed; it might just hang. *Note File Locks::,
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# for an example.
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#
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ENOMEM* = 12 # No memory available. The system cannot allocate more virtual
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# memory because its capacity is full.
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#
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EACCES* = 13 # Permission denied; the file permissions do not allow the attempted
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# operation.
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#
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EFAULT* = 14 # Bad address; an invalid pointer was detected. In the GNU system,
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# this error never happens; you get a signal instead.
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#
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ENOTBLK* = 15 # A file that isn't a block special file was given in a situation
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# that requires one. For example, trying to mount an ordinary file
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# as a file system in Unix gives this error.
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#
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EBUSY* = 16 # Resource busy; a system resource that can't be shared is already
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# in use. For example, if you try to delete a file that is the root
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# of a currently mounted filesystem, you get this error.
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#
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EEXIST* = 17 # File exists; an existing file was specified in a context where it
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# only makes sense to specify a new file.
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#
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EXDEV* = 18 # An attempt to make an improper link across file systems was
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# detected. This happens not only when you use `link' (*note Hard
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# Links::.) but also when you rename a file with `rename' (*note
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# Renaming Files::.).
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#
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ENODEV* = 19 # The wrong type of device was given to a function that expects a
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# particular sort of device.
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#
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ENOTDIR* = 20 # A file that isn't a directory was specified when a directory is
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# required.
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#
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EISDIR* = 21 # File is a directory; you cannot open a directory for writing, or
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# create or remove hard links to it.
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#
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EINVAL* = 22 # Invalid argument. This is used to indicate various kinds of
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# problems with passing the wrong argument to a library function.
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#
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EMFILE* = 24 # The current process has too many files open and can't open any
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# more. Duplicate descriptors do count toward this limit.
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#
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# In BSD and GNU, the number of open files is controlled by a
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# resource limit that can usually be increased. If you get this
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# error, you might want to increase the `RLIMIT_NOFILE' limit or
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# make it unlimited; *note Limits on Resources::..
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#
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ENFILE* = 23 # There are too many distinct file openings in the entire system.
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# Note that any number of linked channels count as just one file
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# opening; see *Note Linked Channels::. This error never occurs in
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# the GNU system.
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#
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ENOTTY* = 25 # Inappropriate I/O control operation, such as trying to set terminal
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# modes on an ordinary file.
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#
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ETXTBSY* = 26 # An attempt to execute a file that is currently open for writing, or
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# write to a file that is currently being executed. Often using a
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# debugger to run a program is considered having it open for writing
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# and will cause this error. (The name stands for "text file
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# busy".) This is not an error in the GNU system; the text is
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# copied as necessary.
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#
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EFBIG* = 27 # File too big; the size of a file would be larger than allowed by
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# the system.
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#
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ENOSPC* = 28 # No space left on device; write operation on a file failed because
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# the disk is full.
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#
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ESPIPE* = 29 # Invalid seek operation (such as on a pipe). *
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EROFS* = 30 # An attempt was made to modify something on a read-only file system. *
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EMLINK* = 31 # Too many links; the link count of a single file would become too
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# large. `rename' can cause this error if the file being renamed
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# already has as many links as it can take (*note Renaming Files::.).
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#
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EPIPE* = 32 # Broken pipe; there is no process reading from the other end of a
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# pipe. Every library function that returns this error code also
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# generates a `SIGPIPE' signal; this signal terminates the program
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# if not handled or blocked. Thus, your program will never actually
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# see `EPIPE' unless it has handled or blocked `SIGPIPE'.
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#
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EDOM* = 33 # Domain error; used by mathematical functions when an argument
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# value does not fall into the domain over which the function is
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# defined.
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#
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ERANGE* = 34 # Range error; used by mathematical functions when the result value
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# is not representable because of overflow or underflow.
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#
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EAGAIN* = 35 # Resource temporarily unavailable; the call might work if you try
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# again later. The macro `EWOULDBLOCK' is another name for `EAGAIN';
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# they are always the same in the GNU C library.
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#
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EWOULDBLOCK* = EAGAIN # In the GNU C library, this is another name for `EAGAIN' (above).
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# The values are always the same, on every operating system.
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# C libraries in many older Unix systems have `EWOULDBLOCK' as a
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# separate error code.
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#
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EINPROGRESS* = 36 # An operation that cannot complete immediately was initiated on an
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# object that has non-blocking mode selected. Some functions that
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# must always block (such as `connect'; *note Connecting::.) never
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# return `EAGAIN'. Instead, they return `EINPROGRESS' to indicate
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# that the operation has begun and will take some time. Attempts to
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# manipulate the object before the call completes return `EALREADY'.
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# You can use the `select' function to find out when the pending
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# operation has completed; *note Waiting for I/O::..
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#
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EALREADY* = 37 # An operation is already in progress on an object that has
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# non-blocking mode selected.
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#
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ENOTSOCK* = 38 # A file that isn't a socket was specified when a socket is required. *
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EDESTADDRREQ* = 39 # No default destination address was set for the socket. You get
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# this error when you try to transmit data over a connectionless
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# socket, without first specifying a destination for the data with
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# `connect'.
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#
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EMSGSIZE* = 40 # The size of a message sent on a socket was larger than the
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# supported maximum size.
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#
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EPROTOTYPE* = 41 # The socket type does not support the requested communications
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# protocol.
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#
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ENOPROTOOPT* = 42 # You specified a socket option that doesn't make sense for the
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# particular protocol being used by the socket. *Note Socket
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# Options::.
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#
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EPROTONOSUPPORT* = 43 # The socket domain does not support the requested communications
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# protocol (perhaps because the requested protocol is completely
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# invalid.) *Note Creating a Socket::.
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#
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ESOCKTNOSUPPORT* = 44 # The socket type is not supported. *
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EOPNOTSUPP* = 45 # The operation you requested is not supported. Some socket
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# functions don't make sense for all types of sockets, and others
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# may not be implemented for all communications protocols. In the
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# GNU system, this error can happen for many calls when the object
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# does not support the particular operation; it is a generic
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# indication that the server knows nothing to do for that call.
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#
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EPFNOSUPPORT* = 46 # The socket communications protocol family you requested is not
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# supported.
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#
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EAFNOSUPPORT* = 47 # The address family specified for a socket is not supported; it is
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# inconsistent with the protocol being used on the socket. *Note
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# Sockets::.
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#
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EADDRINUSE* = 48 # The requested socket address is already in use. *Note Socket
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# Addresses::.
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#
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EADDRNOTAVAIL* = 49 # The requested socket address is not available; for example, you
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# tried to give a socket a name that doesn't match the local host
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# name. *Note Socket Addresses::.
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#
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ENETDOWN* = 50 # A socket operation failed because the network was down. *
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ENETUNREACH* = 51 # A socket operation failed because the subnet containing the remote
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# host was unreachable.
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#
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ENETRESET* = 52 # A network connection was reset because the remote host crashed. *
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ECONNABORTED* = 53 # A network connection was aborted locally. *
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ECONNRESET* = 54 # A network connection was closed for reasons outside the control of
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# the local host, such as by the remote machine rebooting or an
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# unrecoverable protocol violation.
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#
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ENOBUFS* = 55 # The kernel's buffers for I/O operations are all in use. In GNU,
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# this error is always synonymous with `ENOMEM'; you may get one or
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# the other from network operations.
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#
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EISCONN* = 56 # You tried to connect a socket that is already connected. *Note
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# Connecting::.
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#
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ENOTCONN* = 57 # The socket is not connected to anything. You get this error when
|
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# you try to transmit data over a socket, without first specifying a
|
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# destination for the data. For a connectionless socket (for
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# datagram protocols, such as UDP), you get `EDESTADDRREQ' instead.
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#
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ESHUTDOWN* = 58 # The socket has already been shut down. *
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ETOOMANYREFS* = 59 # ??? *
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ETIMEDOUT* = 60 # A socket operation with a specified timeout received no response
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# during the timeout period.
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#
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ECONNREFUSED* = 61 # A remote host refused to allow the network connection (typically
|
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# because it is not running the requested service).
|
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#
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ELOOP* = 62 # Too many levels of symbolic links were encountered in looking up a
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# file name. This often indicates a cycle of symbolic links.
|
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#
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ENAMETOOLONG* = 63 # Filename too long (longer than `PATH_MAX'; *note Limits for
|
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# Files::.) or host name too long (in `gethostname' or
|
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# `sethostname'; *note Host Identification::.).
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#
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EHOSTDOWN* = 64 # The remote host for a requested network connection is down. *
|
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EHOSTUNREACH* = 65 # The remote host for a requested network connection is not
|
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# reachable.
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#
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ENOTEMPTY* = 66 # Directory not empty, where an empty directory was expected.
|
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# Typically, this error occurs when you are trying to delete a
|
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# directory.
|
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#
|
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EPROCLIM* = 67 # This means that the per-user limit on new process would be
|
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# exceeded by an attempted `fork'. *Note Limits on Resources::, for
|
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# details on the `RLIMIT_NPROC' limit.
|
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#
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EUSERS* = 68 # The file quota system is confused because there are too many users. *
|
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EDQUOT* = 69 # The user's disk quota was exceeded. *
|
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ESTALE* = 70 # Stale NFS file handle. This indicates an internal confusion in
|
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# the NFS system which is due to file system rearrangements on the
|
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# server host. Repairing this condition usually requires unmounting
|
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# and remounting the NFS file system on the local host.
|
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#
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EREMOTE* = 71 # An attempt was made to NFS-mount a remote file system with a file
|
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# name that already specifies an NFS-mounted file. (This is an
|
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# error on some operating systems, but we expect it to work properly
|
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# on the GNU system, making this error code impossible.)
|
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#
|
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EBADRPC* = 72 # ??? *
|
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ERPCMISMATCH* = 73 # ??? *
|
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EPROGUNAVAIL* = 74 # ??? *
|
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EPROGMISMATCH* = 75 # ??? *
|
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EPROCUNAVAIL* = 76 # ??? *
|
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ENOLCK* = 77 # No locks available. This is used by the file locking facilities;
|
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# see *Note File Locks::. This error is never generated by the GNU
|
||||
# system, but it can result from an operation to an NFS server
|
||||
# running another operating system.
|
||||
#
|
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ENOSYS* = 78 # Function not implemented. Some functions have commands or options
|
||||
# defined that might not be supported in all implementations, and
|
||||
# this is the kind of error you get if you request them and they are
|
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# not supported.
|
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#
|
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EFTYPE* = 79 # Inappropriate file type or format. The file was the wrong type
|
||||
# for the operation, or a data file had the wrong format.
|
||||
# On some systems `chmod' returns this error if you try to set the
|
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# sticky bit on a non-directory file; *note Setting Permissions::..
|
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#
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|
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type
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TArgv* = cstringArray
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TClientData* = pointer
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TFreeProc* = proc (theBlock: pointer){.cdecl.}
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PInterp* = ptr TInterp
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TInterp*{.final.} = object # Event Definitions
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result*: cstring # Do not access this directly. Use
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# Tcl_GetStringResult since result
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# may be pointing to an object
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#
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freeProc*: TFreeProc
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errorLine*: int
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TEventSetupProc* = proc (clientData: TClientData, flags: int){.cdecl.}
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TEventCheckProc* = TEventSetupProc
|
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PEvent* = ptr TEvent
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TEventProc* = proc (evPtr: PEvent, flags: int): int{.cdecl.}
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TEvent*{.final.} = object
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prc*: TEventProc
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nextPtr*: PEvent
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ClientData*: TObject # ClientData is just pointer.*
|
||||
|
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PTime* = ptr TTime
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TTime*{.final.} = object
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sec*: int32 # Seconds. *
|
||||
usec*: int32 # Microseconds. *
|
||||
|
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TTimerToken* = pointer
|
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PInteger* = ptr int
|
||||
PHashTable* = ptr THashTable
|
||||
PHashEntry* = ptr THashEntry
|
||||
PPHashEntry* = ptr PHashEntry
|
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THashEntry*{.final.} = object
|
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nextPtr*: PHashEntry
|
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tablePtr*: PHashTable
|
||||
bucketPtr*: PPHashEntry
|
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clientData*: TClientData
|
||||
key*: cstring
|
||||
|
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THashFindProc* = proc (tablePtr: PHashTable, key: cstring): PHashEntry{.
|
||||
cdecl.}
|
||||
THashCreateProc* = proc (tablePtr: PHashTable, key: cstring,
|
||||
newPtr: PInteger): PHashEntry{.cdecl.}
|
||||
THashTable*{.final.} = object
|
||||
buckets*: ppHashEntry
|
||||
staticBuckets*: array[0..SMALL_HASH_TABLE - 1, PHashEntry]
|
||||
numBuckets*: int
|
||||
numEntries*: int
|
||||
rebuildSize*: int
|
||||
downShift*: int
|
||||
mask*: int
|
||||
keyType*: int
|
||||
findProc*: THashFindProc
|
||||
createProc*: THashCreateProc
|
||||
|
||||
PHashSearch* = ptr THashSearch
|
||||
THashSearch*{.final.} = object
|
||||
tablePtr*: PHashTable
|
||||
nextIndex*: int
|
||||
nextEntryPtr*: PHashEntry
|
||||
|
||||
TAppInitProc* = proc (interp: pInterp): int{.cdecl.}
|
||||
TPackageInitProc* = proc (interp: pInterp): int{.cdecl.}
|
||||
TCmdProc* = proc (clientData: TClientData, interp: pInterp, argc: int,
|
||||
argv: TArgv): int{.cdecl.}
|
||||
TVarTraceProc* = proc (clientData: TClientData, interp: pInterp,
|
||||
varName: cstring, elemName: cstring, flags: int): cstring{.
|
||||
cdecl.}
|
||||
TInterpDeleteProc* = proc (clientData: TClientData, interp: pInterp){.cdecl.}
|
||||
TCmdDeleteProc* = proc (clientData: TClientData){.cdecl.}
|
||||
TNamespaceDeleteProc* = proc (clientData: TClientData){.cdecl.}
|
||||
|
||||
const
|
||||
DSTRING_STATIC_SIZE* = 200
|
||||
|
||||
type
|
||||
PDString* = ptr TDString
|
||||
TDString*{.final.} = object
|
||||
str*: cstring
|
||||
len*: int
|
||||
spaceAvl*: int
|
||||
staticSpace*: array[0..DSTRING_STATIC_SIZE - 1, char]
|
||||
|
||||
PChannel* = ptr TChannel
|
||||
TChannel*{.final.} = object
|
||||
TDriverBlockModeProc* = proc (instanceData: TClientData, mode: int): int{.
|
||||
cdecl.}
|
||||
TDriverCloseProc* = proc (instanceData: TClientData, interp: PInterp): int{.
|
||||
cdecl.}
|
||||
TDriverInputProc* = proc (instanceData: TClientData, buf: cstring,
|
||||
toRead: int, errorCodePtr: PInteger): int{.cdecl.}
|
||||
TDriverOutputProc* = proc (instanceData: TClientData, buf: cstring,
|
||||
toWrite: int, errorCodePtr: PInteger): int{.cdecl.}
|
||||
TDriverSeekProc* = proc (instanceData: TClientData, offset: int32,
|
||||
mode: int, errorCodePtr: PInteger): int{.cdecl.}
|
||||
TDriverSetOptionProc* = proc (instanceData: TClientData, interp: PInterp,
|
||||
optionName: cstring, value: cstring): int{.cdecl.}
|
||||
TDriverGetOptionProc* = proc (instanceData: TClientData, interp: pInterp,
|
||||
optionName: cstring, dsPtr: PDString): int{.
|
||||
cdecl.}
|
||||
TDriverWatchProc* = proc (instanceData: TClientData, mask: int){.cdecl.}
|
||||
TDriverGetHandleProc* = proc (instanceData: TClientData, direction: int,
|
||||
handlePtr: var TClientData): int{.cdecl.}
|
||||
PChannelType* = ptr TChannelType
|
||||
TChannelType*{.final.} = object
|
||||
typeName*: cstring
|
||||
blockModeProc*: TDriverBlockModeProc
|
||||
closeProc*: TDriverCloseProc
|
||||
inputProc*: TDriverInputProc
|
||||
ouputProc*: TDriverOutputProc
|
||||
seekProc*: TDriverSeekProc
|
||||
setOptionProc*: TDriverSetOptionProc
|
||||
getOptionProc*: TDriverGetOptionProc
|
||||
watchProc*: TDriverWatchProc
|
||||
getHandleProc*: TDriverGetHandleProc
|
||||
|
||||
TChannelProc* = proc (clientData: TClientData, mask: int){.cdecl.}
|
||||
PObj* = ptr TObj
|
||||
PPObj* = ptr PObj
|
||||
TObj*{.final.} = object
|
||||
refCount*: int # ...
|
||||
|
||||
TObjCmdProc* = proc (clientData: TClientData, interp: PInterp, objc: int,
|
||||
PPObj: PPObj): int{.cdecl.}
|
||||
PNamespace* = ptr TNamespace
|
||||
TNamespace*{.final.} = object
|
||||
name*: cstring
|
||||
fullName*: cstring
|
||||
clientData*: TClientData
|
||||
deleteProc*: TNamespaceDeleteProc
|
||||
parentPtr*: PNamespace
|
||||
|
||||
PCallFrame* = ptr TCallFrame
|
||||
TCallFrame*{.final.} = object
|
||||
nsPtr*: PNamespace
|
||||
dummy1*: int
|
||||
dummy2*: int
|
||||
dummy3*: cstring
|
||||
dummy4*: cstring
|
||||
dummy5*: cstring
|
||||
dummy6*: int
|
||||
dummy7*: cstring
|
||||
dummy8*: cstring
|
||||
dummy9*: int
|
||||
dummy10*: cstring
|
||||
|
||||
PCmdInfo* = ptr TCmdInfo
|
||||
TCmdInfo*{.final.} = object
|
||||
isNativeObjectProc*: int
|
||||
objProc*: TObjCmdProc
|
||||
objClientData*: TClientData
|
||||
prc*: TCmdProc
|
||||
clientData*: TClientData
|
||||
deleteProc*: TCmdDeleteProc
|
||||
deleteData*: TClientData
|
||||
namespacePtr*: pNamespace
|
||||
|
||||
pCommand* = ptr TCommand
|
||||
TCommand*{.final.} = object # hPtr : pTcl_HashEntry;
|
||||
# nsPtr : pTcl_Namespace;
|
||||
# refCount : integer;
|
||||
# isCmdEpoch : integer;
|
||||
# compileProc : pointer;
|
||||
# objProc : pointer;
|
||||
# objClientData : Tcl_ClientData;
|
||||
# proc : pointer;
|
||||
# clientData : Tcl_ClientData;
|
||||
# deleteProc : TTclCmdDeleteProc;
|
||||
# deleteData : Tcl_ClientData;
|
||||
# deleted : integer;
|
||||
# importRefPtr : pointer;
|
||||
#
|
||||
|
||||
type
|
||||
TPanicProc* = proc (fmt, arg1, arg2, arg3, arg4, arg5, arg6, arg7, arg8: cstring){.
|
||||
cdecl.} # 1/15/97 orig. Tcl style
|
||||
TClientDataProc* = proc (clientData: TClientData){.cdecl.}
|
||||
TIdleProc* = proc (clientData: TClientData){.cdecl.}
|
||||
TTimerProc* = TIdleProc
|
||||
TCreateCloseHandler* = proc (channel: pChannel, prc: TClientDataProc,
|
||||
clientData: TClientData){.cdecl.}
|
||||
TDeleteCloseHandler* = TCreateCloseHandler
|
||||
TEventDeleteProc* = proc (evPtr: pEvent, clientData: TClientData): int{.
|
||||
cdecl.}
|
||||
|
||||
proc Alloc*(size: int): cstring{.cdecl, dynlib: dllName,
|
||||
importc: "Tcl_Alloc".}
|
||||
proc CreateInterp*(): pInterp{.cdecl, dynlib: dllName,
|
||||
importc: "Tcl_CreateInterp".}
|
||||
proc DeleteInterp*(interp: pInterp){.cdecl, dynlib: dllName,
|
||||
importc: "Tcl_DeleteInterp".}
|
||||
proc ResetResult*(interp: pInterp){.cdecl, dynlib: dllName,
|
||||
importc: "Tcl_ResetResult".}
|
||||
proc Eval*(interp: pInterp, script: cstring): int{.cdecl, dynlib: dllName,
|
||||
importc: "Tcl_Eval".}
|
||||
proc EvalFile*(interp: pInterp, filename: cstring): int{.cdecl,
|
||||
dynlib: dllName, importc: "Tcl_EvalFile".}
|
||||
proc AddErrorInfo*(interp: pInterp, message: cstring){.cdecl,
|
||||
dynlib: dllName, importc: "Tcl_AddErrorInfo".}
|
||||
proc BackgroundError*(interp: pInterp){.cdecl, dynlib: dllName,
|
||||
importc: "Tcl_BackgroundError".}
|
||||
proc CreateCommand*(interp: pInterp, name: cstring, cmdProc: TCmdProc,
|
||||
clientData: TClientData, deleteProc: TCmdDeleteProc): pCommand{.
|
||||
cdecl, dynlib: dllName, importc: "Tcl_CreateCommand".}
|
||||
proc DeleteCommand*(interp: pInterp, name: cstring): int{.cdecl,
|
||||
dynlib: dllName, importc: "Tcl_DeleteCommand".}
|
||||
proc CallWhenDeleted*(interp: pInterp, prc: TInterpDeleteProc,
|
||||
clientData: TClientData){.cdecl, dynlib: dllName,
|
||||
importc: "Tcl_CallWhenDeleted".}
|
||||
proc DontCallWhenDeleted*(interp: pInterp, prc: TInterpDeleteProc,
|
||||
clientData: TClientData){.cdecl,
|
||||
dynlib: dllName, importc: "Tcl_DontCallWhenDeleted".}
|
||||
proc CommandComplete*(cmd: cstring): int{.cdecl, dynlib: dllName,
|
||||
importc: "Tcl_CommandComplete".}
|
||||
proc LinkVar*(interp: pInterp, varName: cstring, varAddr: pointer, typ: int): int{.
|
||||
cdecl, dynlib: dllName, importc: "Tcl_LinkVar".}
|
||||
proc UnlinkVar*(interp: pInterp, varName: cstring){.cdecl, dynlib: dllName,
|
||||
importc: "Tcl_UnlinkVar".}
|
||||
proc TraceVar*(interp: pInterp, varName: cstring, flags: int,
|
||||
prc: TVarTraceProc, clientData: TClientData): int{.cdecl,
|
||||
dynlib: dllName, importc: "Tcl_TraceVar".}
|
||||
proc TraceVar2*(interp: pInterp, varName: cstring, elemName: cstring,
|
||||
flags: int, prc: TVarTraceProc, clientData: TClientData): int{.
|
||||
cdecl, dynlib: dllName, importc: "Tcl_TraceVar2".}
|
||||
proc UntraceVar*(interp: pInterp, varName: cstring, flags: int,
|
||||
prc: TVarTraceProc, clientData: TClientData){.cdecl,
|
||||
dynlib: dllName, importc: "Tcl_UntraceVar".}
|
||||
proc UntraceVar2*(interp: pInterp, varName: cstring, elemName: cstring,
|
||||
flags: int, prc: TVarTraceProc, clientData: TClientData){.
|
||||
cdecl, dynlib: dllName, importc: "Tcl_UntraceVar2".}
|
||||
proc GetVar*(interp: pInterp, varName: cstring, flags: int): cstring{.cdecl,
|
||||
dynlib: dllName, importc: "Tcl_GetVar".}
|
||||
proc GetVar2*(interp: pInterp, varName: cstring, elemName: cstring,
|
||||
flags: int): cstring{.cdecl, dynlib: dllName,
|
||||
importc: "Tcl_GetVar2".}
|
||||
proc SetVar*(interp: pInterp, varName: cstring, newValue: cstring,
|
||||
flags: int): cstring{.cdecl, dynlib: dllName,
|
||||
importc: "Tcl_SetVar".}
|
||||
proc SetVar2*(interp: pInterp, varName: cstring, elemName: cstring,
|
||||
newValue: cstring, flags: int): cstring{.cdecl,
|
||||
dynlib: dllName, importc: "Tcl_SetVar2".}
|
||||
proc UnsetVar*(interp: pInterp, varName: cstring, flags: int): int{.cdecl,
|
||||
dynlib: dllName, importc: "Tcl_UnsetVar".}
|
||||
proc UnsetVar2*(interp: pInterp, varName: cstring, elemName: cstring,
|
||||
flags: int): int{.cdecl, dynlib: dllName,
|
||||
importc: "Tcl_UnsetVar2".}
|
||||
proc SetResult*(interp: pInterp, newValue: cstring, freeProc: TFreeProc){.
|
||||
cdecl, dynlib: dllName, importc: "Tcl_SetResult".}
|
||||
proc FirstHashEntry*(hashTbl: pHashTable, searchInfo: var THashSearch): pHashEntry{.
|
||||
cdecl, dynlib: dllName, importc: "Tcl_FirstHashEntry".}
|
||||
proc NextHashEntry*(searchInfo: var THashSearch): pHashEntry{.cdecl,
|
||||
dynlib: dllName, importc: "Tcl_NextHashEntry".}
|
||||
proc InitHashTable*(hashTbl: pHashTable, keyType: int){.cdecl,
|
||||
dynlib: dllName, importc: "Tcl_InitHashTable".}
|
||||
proc StringMatch*(str: cstring, pattern: cstring): int{.cdecl,
|
||||
dynlib: dllName, importc: "Tcl_StringMatch".}
|
||||
proc GetErrno*(): int{.cdecl, dynlib: dllName, importc: "Tcl_GetErrno".}
|
||||
proc SetErrno*(val: int){.cdecl, dynlib: dllName, importc: "Tcl_SetErrno".}
|
||||
proc SetPanicProc*(prc: TPanicProc){.cdecl, dynlib: dllName,
|
||||
importc: "Tcl_SetPanicProc".}
|
||||
proc PkgProvide*(interp: pInterp, name: cstring, version: cstring): int{.
|
||||
cdecl, dynlib: dllName, importc: "Tcl_PkgProvide".}
|
||||
proc StaticPackage*(interp: pInterp, pkgName: cstring,
|
||||
initProc: TPackageInitProc,
|
||||
safeInitProc: TPackageInitProc){.cdecl, dynlib: dllName,
|
||||
importc: "Tcl_StaticPackage".}
|
||||
proc CreateEventSource*(setupProc: TEventSetupProc,
|
||||
checkProc: TEventCheckProc,
|
||||
clientData: TClientData){.cdecl, dynlib: dllName,
|
||||
importc: "Tcl_CreateEventSource".}
|
||||
proc DeleteEventSource*(setupProc: TEventSetupProc,
|
||||
checkProc: TEventCheckProc,
|
||||
clientData: TClientData){.cdecl, dynlib: dllName,
|
||||
importc: "Tcl_DeleteEventSource".}
|
||||
proc QueueEvent*(evPtr: pEvent, pos: int){.cdecl, dynlib: dllName,
|
||||
importc: "Tcl_QueueEvent".}
|
||||
proc SetMaxBlockTime*(timePtr: pTime){.cdecl, dynlib: dllName,
|
||||
importc: "Tcl_SetMaxBlockTime".}
|
||||
proc DeleteEvents*(prc: TEventDeleteProc, clientData: TClientData){.
|
||||
cdecl, dynlib: dllName, importc: "Tcl_DeleteEvents".}
|
||||
proc DoOneEvent*(flags: int): int{.cdecl, dynlib: dllName,
|
||||
importc: "Tcl_DoOneEvent".}
|
||||
proc DoWhenIdle*(prc: TIdleProc, clientData: TClientData){.cdecl,
|
||||
dynlib: dllName, importc: "Tcl_DoWhenIdle".}
|
||||
proc CancelIdleCall*(prc: TIdleProc, clientData: TClientData){.cdecl,
|
||||
dynlib: dllName, importc: "Tcl_CancelIdleCall".}
|
||||
proc CreateTimerHandler*(milliseconds: int, prc: TTimerProc,
|
||||
clientData: TClientData): TTimerToken{.cdecl,
|
||||
dynlib: dllName, importc: "Tcl_CreateTimerHandler".}
|
||||
proc DeleteTimerHandler*(token: TTimerToken){.cdecl, dynlib: dllName,
|
||||
importc: "Tcl_DeleteTimerHandler".}
|
||||
# procedure Tcl_CreateModalTimeout(milliseconds: integer; prc: TTclTimerProc; clientData: Tcl_ClientData); cdecl; external dllName;
|
||||
# procedure Tcl_DeleteModalTimeout(prc: TTclTimerProc; clientData: Tcl_ClientData); cdecl; external dllName;
|
||||
proc SplitList*(interp: pInterp, list: cstring, argcPtr: var int,
|
||||
argvPtr: var TArgv): int{.cdecl, dynlib: dllName,
|
||||
importc: "Tcl_SplitList".}
|
||||
proc Merge*(argc: int, argv: TArgv): cstring{.cdecl, dynlib: dllName,
|
||||
importc: "Tcl_Merge".}
|
||||
proc Free*(p: cstring){.cdecl, dynlib: dllName, importc: "Tcl_Free".}
|
||||
proc Init*(interp: pInterp): int{.cdecl, dynlib: dllName,
|
||||
importc: "Tcl_Init".}
|
||||
# procedure Tcl_InterpDeleteProc(clientData: Tcl_ClientData; interp: pTcl_Interp); cdecl; external dllName;
|
||||
proc GetAssocData*(interp: pInterp, key: cstring, prc: var TInterpDeleteProc): TClientData{.
|
||||
cdecl, dynlib: dllName, importc: "Tcl_GetAssocData".}
|
||||
proc DeleteAssocData*(interp: pInterp, key: cstring){.cdecl,
|
||||
dynlib: dllName, importc: "Tcl_DeleteAssocData".}
|
||||
proc SetAssocData*(interp: pInterp, key: cstring, prc: TInterpDeleteProc,
|
||||
clientData: TClientData){.cdecl, dynlib: dllName,
|
||||
importc: "Tcl_SetAssocData".}
|
||||
proc IsSafe*(interp: pInterp): int{.cdecl, dynlib: dllName,
|
||||
importc: "Tcl_IsSafe".}
|
||||
proc MakeSafe*(interp: pInterp): int{.cdecl, dynlib: dllName,
|
||||
importc: "Tcl_MakeSafe".}
|
||||
proc CreateSlave*(interp: pInterp, slaveName: cstring, isSafe: int): pInterp{.
|
||||
cdecl, dynlib: dllName, importc: "Tcl_CreateSlave".}
|
||||
proc GetSlave*(interp: pInterp, slaveName: cstring): pInterp{.cdecl,
|
||||
dynlib: dllName, importc: "Tcl_GetSlave".}
|
||||
proc GetMaster*(interp: pInterp): pInterp{.cdecl, dynlib: dllName,
|
||||
importc: "Tcl_GetMaster".}
|
||||
proc GetInterpPath*(askingInterp: pInterp, slaveInterp: pInterp): int{.
|
||||
cdecl, dynlib: dllName, importc: "Tcl_GetInterpPath".}
|
||||
proc CreateAlias*(slaveInterp: pInterp, srcCmd: cstring,
|
||||
targetInterp: pInterp, targetCmd: cstring, argc: int,
|
||||
argv: TArgv): int{.cdecl, dynlib: dllName,
|
||||
importc: "Tcl_CreateAlias".}
|
||||
proc GetAlias*(interp: pInterp, srcCmd: cstring, targetInterp: var pInterp,
|
||||
targetCmd: var cstring, argc: var int, argv: var TArgv): int{.
|
||||
cdecl, dynlib: dllName, importc: "Tcl_GetAlias".}
|
||||
proc ExposeCommand*(interp: pInterp, hiddenCmdName: cstring,
|
||||
cmdName: cstring): int{.cdecl, dynlib: dllName,
|
||||
importc: "Tcl_ExposeCommand".}
|
||||
proc HideCommand*(interp: pInterp, cmdName: cstring, hiddenCmdName: cstring): int{.
|
||||
cdecl, dynlib: dllName, importc: "Tcl_HideCommand".}
|
||||
proc EventuallyFree*(clientData: TClientData, freeProc: TFreeProc){.
|
||||
cdecl, dynlib: dllName, importc: "Tcl_EventuallyFree".}
|
||||
proc Preserve*(clientData: TClientData){.cdecl, dynlib: dllName,
|
||||
importc: "Tcl_Preserve".}
|
||||
proc Release*(clientData: TClientData){.cdecl, dynlib: dllName,
|
||||
importc: "Tcl_Release".}
|
||||
proc InterpDeleted*(interp: pInterp): int{.cdecl, dynlib: dllName,
|
||||
importc: "Tcl_InterpDeleted".}
|
||||
proc GetCommandInfo*(interp: pInterp, cmdName: cstring,
|
||||
info: var TCmdInfo): int{.cdecl, dynlib: dllName,
|
||||
importc: "Tcl_GetCommandInfo".}
|
||||
proc SetCommandInfo*(interp: pInterp, cmdName: cstring,
|
||||
info: var TCmdInfo): int{.cdecl, dynlib: dllName,
|
||||
importc: "Tcl_SetCommandInfo".}
|
||||
proc FindExecutable*(path: cstring){.cdecl, dynlib: dllName,
|
||||
importc: "Tcl_FindExecutable".}
|
||||
proc GetStringResult*(interp: pInterp): cstring{.cdecl, dynlib: dllName,
|
||||
importc: "Tcl_GetStringResult".}
|
||||
#v1.0
|
||||
proc FindCommand*(interp: pInterp, cmdName: cstring,
|
||||
contextNsPtr: pNamespace, flags: int): TCommand{.cdecl,
|
||||
dynlib: dllName, importc: "Tcl_FindCommand".}
|
||||
#v1.0
|
||||
proc DeleteCommandFromToken*(interp: pInterp, cmd: pCommand): int{.cdecl,
|
||||
dynlib: dllName, importc: "Tcl_DeleteCommandFromToken".}
|
||||
proc CreateNamespace*(interp: pInterp, name: cstring,
|
||||
clientData: TClientData,
|
||||
deleteProc: TNamespaceDeleteProc): pNamespace{.cdecl,
|
||||
dynlib: dllName, importc: "Tcl_CreateNamespace".}
|
||||
#v1.0
|
||||
proc DeleteNamespace*(namespacePtr: pNamespace){.cdecl, dynlib: dllName,
|
||||
importc: "Tcl_DeleteNamespace".}
|
||||
proc FindNamespace*(interp: pInterp, name: cstring,
|
||||
contextNsPtr: pNamespace, flags: int): pNamespace{.
|
||||
cdecl, dynlib: dllName, importc: "Tcl_FindNamespace".}
|
||||
proc Tcl_Export*(interp: pInterp, namespacePtr: pNamespace, pattern: cstring,
|
||||
resetListFirst: int): int{.cdecl, dynlib: dllName,
|
||||
importc: "Tcl_Export".}
|
||||
proc Tcl_Import*(interp: pInterp, namespacePtr: pNamespace, pattern: cstring,
|
||||
allowOverwrite: int): int{.cdecl, dynlib: dllName,
|
||||
importc: "Tcl_Import".}
|
||||
proc GetCurrentNamespace*(interp: pInterp): pNamespace{.cdecl,
|
||||
dynlib: dllName, importc: "Tcl_GetCurrentNamespace".}
|
||||
proc GetGlobalNamespace*(interp: pInterp): pNamespace{.cdecl,
|
||||
dynlib: dllName, importc: "Tcl_GetGlobalNamespace".}
|
||||
proc PushCallFrame*(interp: pInterp, callFramePtr: var TCallFrame,
|
||||
namespacePtr: pNamespace, isProcCallFrame: int): int{.
|
||||
cdecl, dynlib: dllName, importc: "Tcl_PushCallFrame".}
|
||||
proc PopCallFrame*(interp: pInterp){.cdecl, dynlib: dllName,
|
||||
importc: "Tcl_PopCallFrame".}
|
||||
proc VarEval*(interp: pInterp): int{.cdecl, varargs, dynlib: dllName,
|
||||
importc: "Tcl_VarEval".}
|
||||
# For TkConsole.c *
|
||||
proc RecordAndEval*(interp: pInterp, cmd: cstring, flags: int): int{.cdecl,
|
||||
dynlib: dllName, importc: "Tcl_RecordAndEval".}
|
||||
proc GlobalEval*(interp: pInterp, command: cstring): int{.cdecl,
|
||||
dynlib: dllName, importc: "Tcl_GlobalEval".}
|
||||
proc DStringFree*(dsPtr: pDString){.cdecl, dynlib: dllName,
|
||||
importc: "Tcl_DStringFree".}
|
||||
proc DStringAppend*(dsPtr: pDString, str: cstring, length: int): cstring{.
|
||||
cdecl, dynlib: dllName, importc: "Tcl_DStringAppend".}
|
||||
proc DStringAppendElement*(dsPtr: pDString, str: cstring): cstring{.cdecl,
|
||||
dynlib: dllName, importc: "Tcl_DStringAppendElement".}
|
||||
proc DStringInit*(dsPtr: pDString){.cdecl, dynlib: dllName,
|
||||
importc: "Tcl_DStringInit".}
|
||||
proc AppendResult*(interp: pInterp){.cdecl, varargs, dynlib: dllName,
|
||||
importc: "Tcl_AppendResult".}
|
||||
# actually a "C" var array
|
||||
proc SetStdChannel*(channel: pChannel, typ: int){.cdecl, dynlib: dllName,
|
||||
importc: "Tcl_SetStdChannel".}
|
||||
proc SetChannelOption*(interp: pInterp, chan: pChannel, optionName: cstring,
|
||||
newValue: cstring): int{.cdecl, dynlib: dllName,
|
||||
importc: "Tcl_SetChannelOption".}
|
||||
proc GetChannelOption*(interp: pInterp, chan: pChannel, optionName: cstring,
|
||||
dsPtr: pDString): int{.cdecl, dynlib: dllName,
|
||||
importc: "Tcl_GetChannelOption".}
|
||||
proc CreateChannel*(typePtr: pChannelType, chanName: cstring,
|
||||
instanceData: TClientData, mask: int): pChannel{.
|
||||
cdecl, dynlib: dllName, importc: "Tcl_CreateChannel".}
|
||||
proc RegisterChannel*(interp: pInterp, channel: pChannel){.cdecl,
|
||||
dynlib: dllName, importc: "Tcl_RegisterChannel".}
|
||||
proc UnregisterChannel*(interp: pInterp, channel: pChannel): int{.cdecl,
|
||||
dynlib: dllName, importc: "Tcl_UnregisterChannel".}
|
||||
proc CreateChannelHandler*(chan: pChannel, mask: int, prc: TChannelProc,
|
||||
clientData: TClientData){.cdecl,
|
||||
dynlib: dllName, importc: "Tcl_CreateChannelHandler".}
|
||||
proc GetChannel*(interp: pInterp, chanName: cstring, modePtr: pInteger): pChannel{.
|
||||
cdecl, dynlib: dllName, importc: "Tcl_GetChannel".}
|
||||
proc GetStdChannel*(typ: int): pChannel{.cdecl, dynlib: dllName,
|
||||
importc: "Tcl_GetStdChannel".}
|
||||
proc Gets*(chan: pChannel, dsPtr: pDString): int{.cdecl, dynlib: dllName,
|
||||
importc: "Tcl_Gets".}
|
||||
proc Write*(chan: pChannel, s: cstring, slen: int): int{.cdecl,
|
||||
dynlib: dllName, importc: "Tcl_Write".}
|
||||
proc Flush*(chan: pChannel): int{.cdecl, dynlib: dllName,
|
||||
importc: "Tcl_Flush".}
|
||||
# TclWinLoadLibrary = function(name: PChar): HMODULE; cdecl; external dllName;
|
||||
proc CreateExitHandler*(prc: TClientDataProc, clientData: TClientData){.
|
||||
cdecl, dynlib: dllName, importc: "Tcl_CreateExitHandler".}
|
||||
proc DeleteExitHandler*(prc: TClientDataProc, clientData: TClientData){.
|
||||
cdecl, dynlib: dllName, importc: "Tcl_DeleteExitHandler".}
|
||||
proc GetStringFromObj*(pObj: pObj, pLen: pInteger): cstring{.cdecl,
|
||||
dynlib: dllName, importc: "Tcl_GetStringFromObj".}
|
||||
proc CreateObjCommand*(interp: pInterp, name: cstring, cmdProc: TObjCmdProc,
|
||||
clientData: TClientData,
|
||||
deleteProc: TCmdDeleteProc): pCommand{.cdecl,
|
||||
dynlib: dllName, importc: "Tcl_CreateObjCommand".}
|
||||
proc NewStringObj*(bytes: cstring, length: int): pObj{.cdecl,
|
||||
dynlib: dllName, importc: "Tcl_NewStringObj".}
|
||||
# procedure TclFreeObj(pObj: pTcl_Obj); cdecl; external dllName;
|
||||
proc EvalObj*(interp: pInterp, pObj: pObj): int{.cdecl, dynlib: dllName,
|
||||
importc: "Tcl_EvalObj".}
|
||||
proc GlobalEvalObj*(interp: pInterp, pObj: pObj): int{.cdecl,
|
||||
dynlib: dllName, importc: "Tcl_GlobalEvalObj".}
|
||||
proc RegComp*(exp: cstring): pointer{.cdecl, dynlib: dllName,
|
||||
importc: "TclRegComp".}
|
||||
|
||||
proc RegExec*(prog: pointer, str: cstring, start: cstring): int{.cdecl,
|
||||
dynlib: dllName, importc: "TclRegExec".}
|
||||
|
||||
proc RegError*(msg: cstring){.cdecl, dynlib: dllName, importc: "TclRegError".}
|
||||
|
||||
proc GetRegError*(): cstring{.cdecl, dynlib: dllName,
|
||||
importc: "TclGetRegError".}
|
||||
|
||||
proc RegExpRange*(prog: pointer, index: int, head: var cstring,
|
||||
tail: var cstring){.cdecl, dynlib: dllName,
|
||||
importc: "Tcl_RegExpRange".}
|
||||
|
||||
proc GetCommandTable*(interp: pInterp): pHashTable =
|
||||
if interp != nil:
|
||||
result = cast[pHashTable](cast[int](interp) + sizeof(Interp) +
|
||||
sizeof(pointer))
|
||||
|
||||
proc CreateHashEntry*(tablePtr: pHashTable, key: cstring,
|
||||
newPtr: pInteger): pHashEntry =
|
||||
result = cast[pHashTable](tablePtr).createProc(tablePtr, key, newPtr)
|
||||
|
||||
proc FindHashEntry*(tablePtr: pHashTable, key: cstring): pHashEntry =
|
||||
result = cast[pHashTable](tablePtr).findProc(tablePtr, key)
|
||||
|
||||
proc SetHashValue*(h: pHashEntry, clientData: TClientData) =
|
||||
h.clientData = clientData
|
||||
|
||||
proc GetHashValue*(h: pHashEntry): TClientData =
|
||||
result = h.clientData
|
||||
|
||||
proc IncrRefCount*(pObj: pObj) =
|
||||
inc(pObj.refCount)
|
||||
|
||||
proc DecrRefCount*(pObj: pObj) =
|
||||
dec(pObj.refCount)
|
||||
if pObj.refCount <= 0:
|
||||
dealloc(pObj)
|
||||
|
||||
proc IsShared*(pObj: pObj): bool =
|
||||
return pObj.refCount > 1
|
||||
|
||||
proc GetHashKey*(hashTbl: pHashTable, hashEntry: pHashEntry): cstring =
|
||||
if hashTbl == nil or hashEntry == nil:
|
||||
result = nil
|
||||
else:
|
||||
result = hashEntry.key
|
||||
Loading…
Add table
Add a link
Reference in a new issue