564 lines
21 KiB
Plaintext
564 lines
21 KiB
Plaintext
'\"
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'\" Copyright (c) 1993-1997 Bell Labs Innovations for Lucent Technologies
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'\" Copyright (c) 1997 Sun Microsystems, Inc.
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'\"
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'\" See the file "license.terms" for information on usage and redistribution
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'\" of this file, and for a DISCLAIMER OF ALL WARRANTIES.
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'\"
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'\" SCCS: @(#) namespace.n 1.9 97/08/13 17:08:25
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'\"
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.so man.macros
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.TH namespace n 8.0 Tcl "Tcl Built-In Commands"
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.BS
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'\" Note: do not modify the .SH NAME line immediately below!
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.SH NAME
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namespace \- create and manipulate contexts for commands and variables
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.SH SYNOPSIS
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\fBnamespace \fR?\fIoption\fR? ?\fIarg ...\fR?
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.BE
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.SH DESCRIPTION
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.PP
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The \fBnamespace\fR command lets you create, access, and destroy
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separate contexts for commands and variables.
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See the section \fBWHAT IS A NAMESPACE?\fR below
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for a brief overview of namespaces.
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The legal \fIoption\fR's are listed below.
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Note that you can abbreviate the \fIoption\fR's.
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.TP
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\fBnamespace children \fR?\fInamespace\fR? ?\fIpattern\fR?
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Returns a list of all child namespaces that belong to the
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namespace \fInamespace\fR.
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If \fInamespace\fR is not specified,
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then the children are returned for the current namespace.
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This command returns fully-qualified names,
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which start with \fB::\fR.
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If the optional \fIpattern\fR is given,
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then this command returns only the names that match the glob-style pattern.
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The actual pattern used is determined as follows:
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a pattern that starts with \fB::\fR is used directly,
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otherwise the namespace \fInamespace\fR
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(or the fully-qualified name of the current namespace)
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is prepended onto the the pattern.
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.TP
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\fBnamespace code \fIscript\fR
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Captures the current namespace context for later execution
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of the script \fIscript\fR.
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It returns a new script in which \fIscript\fR has been wrapped
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in a \fBnamespace code\fR command.
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The new script has two important properties.
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First, it can be evaluated in any namespace and will cause
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\fIscript\fR to be evaluated in the current namespace
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(the one where the \fBnamespace code\fR command was invoked).
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Second, additional arguments can be appended to the resulting script
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and they will be passed to \fIscript\fR as additional arguments.
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For example, suppose the command
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\fBset script [namespace code {foo bar}]\fR
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is invoked in namespace \fB::a::b\fR.
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Then \fBeval "$script x y"\fR
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can be executed in any namespace (assuming the value of
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\fBscript\fR has been passed in properly)
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and will have the same effect as the command
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\fBnamespace eval ::a::b {foo bar x y}\fR.
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This command is needed because
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extensions like Tk normally execute callback scripts
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in the global namespace.
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A scoped command captures a command together with its namespace context
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in a way that allows it to be executed properly later.
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See the section \fBSCOPED VALUES\fR for some examples
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of how this is used to create callback scripts.
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.TP
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\fBnamespace current\fR
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Returns the fully-qualified name for the current namespace.
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The actual name of the global namespace is ``''
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(i.e., an empty string),
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but this command returns \fB::\fR for the global namespace
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as a convenience to programmers.
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.TP
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\fBnamespace delete \fR?\fInamespace namespace ...\fR?
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Each namespace \fInamespace\fR is deleted
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and all variables, procedures, and child namespaces
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contained in the namespace are deleted.
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If a procedure is currently executing inside the namespace,
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the namespace will be kept alive until the procedure returns;
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however, the namespace is marked to prevent other code from
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looking it up by name.
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If a namespace doesn't exist, this command returns an error.
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If no namespace names are given, this command does nothing.
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.TP
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\fBnamespace eval\fR \fInamespace arg\fR ?\fIarg ...\fR?
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Activates a namespace called \fInamespace\fR and evaluates some code
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in that context.
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If the namespace does not already exist, it is created.
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If more than one \fIarg\fR argument is specified,
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the arguments are concatenated together with a space between each one
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in the same fashion as the \fBeval\fR command,
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and the result is evaluated.
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.br
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.sp
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If \fInamespace\fR has leading namespace qualifiers
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and any leading namespaces do not exist,
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they are automatically created.
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.TP
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\fBnamespace export \fR?\-\fBclear\fR? ?\fIpattern pattern ...\fR?
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Specifies which commands are exported from a namespace.
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The exported commands are those that can be later imported
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into another namespace using a \fBnamespace import\fR command.
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Both commands defined in a namespace and
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commands the namespace has previously imported
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can be exported by a namespace.
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The commands do not have to be defined
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at the time the \fBnamespace export\fR command is executed.
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Each \fIpattern\fR may contain glob-style special characters,
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but it may not include any namespace qualifiers.
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That is, the pattern can only specify commands
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in the current (exporting) namespace.
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Each \fIpattern\fR is appended onto the namespace's list of export patterns.
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If the \-\fBclear\fR flag is given,
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the namespace's export pattern list is reset to empty before any
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\fIpattern\fR arguments are appended.
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If no \fIpattern\fRs are given and the \-\fBclear\fR flag isn't given,
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this command returns the namespace's current export list.
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.TP
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\fBnamespace forget \fR?\fIpattern pattern ...\fR?
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Removes previously imported commands from a namespace.
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Each \fIpattern\fR is a qualified name such as
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\fBfoo::x\fR or \fBa::b::p*\fR.
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Qualified names contain \fB::\fRs and qualify a name
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with the name of one or more namespaces.
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Each \fIpattern\fR is qualified with the name of an exporting namespace
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and may have glob-style special characters in the command name
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at the end of the qualified name.
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Glob characters may not appear in a namespace name.
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This command first finds the matching exported commands.
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It then checks whether any of those those commands
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were previously imported by the current namespace.
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If so, this command deletes the corresponding imported commands.
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In effect, this un-does the action of a \fBnamespace import\fR command.
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.TP
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\fBnamespace import \fR?\fB\-force\fR? ?\fIpattern\fR \fIpattern ...\fR?
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Imports commands into a namespace.
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Each \fIpattern\fR is a qualified name like
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\fBfoo::x\fR or \fBa::p*\fR.
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That is, it includes the name of an exporting namespace
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and may have glob-style special characters in the command name
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at the end of the qualified name.
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Glob characters may not appear in a namespace name.
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All the commands that match a \fIpattern\fR string
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and which are currently exported from their namespace
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are added to the current namespace.
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This is done by creating a new command in the current namespace
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that points to the exported command in its original namespace;
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when the new imported command is called, it invokes the exported command.
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This command normally returns an error
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if an imported command conflicts with an existing command.
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However, if the \-\fBforce\fR option is given,
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imported commands will silently replace existing commands.
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The \fBnamespace import\fR command has snapshot semantics:
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that is, only requested commands that are currently defined
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in the exporting namespace are imported.
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In other words, you can import only the commands that are in a namespace
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at the time when the \fBnamespace import\fR command is executed.
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If another command is defined and exported in this namespace later on,
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it will not be imported.
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.TP
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\fBnamespace inscope\fR \fInamespace arg\fR ?\fIarg ...\fR?
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Executes a script in the context of a particular namespace.
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This command is not expected to be used directly by programmers;
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calls to it are generated implicitly when applications
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use \fBnamespace code\fR commands to create callback scripts
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that the applications then register with, e.g., Tk widgets.
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The \fBnamespace inscope\fR command is much like the \fBnamespace eval\fR
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command except that it has \fBlappend\fR semantics
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and the namespace must already exist.
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It treats the first argument as a list,
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and appends any arguments after the first
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onto the end as proper list elements.
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\fBnamespace inscope ::foo a x y z\fR
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is equivalent to
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\fBnamespace eval ::foo [concat a [list x y z]]\fR
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This \fBlappend\fR semantics is important because many callback scripts
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are actually prefixes.
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.TP
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\fBnamespace origin \fIcommand\fR
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Returns the fully-qualified name of the original command
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to which the imported command \fIcommand\fR refers.
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When a command is imported into a namespace,
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a new command is created in that namespace
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that points to the actual command in the exporting namespace.
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If a command is imported into a sequence of namespaces
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\fIa, b,...,n\fR where each successive namespace
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just imports the command from the previous namespace,
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this command returns the fully-qualified name of the original command
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in the first namespace, \fIa\fR.
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If \fIcommand\fR does not refer to an imported command,
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the command's own fully-qualified name is returned.
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.TP
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\fBnamespace parent\fR ?\fInamespace\fR?
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Returns the fully-qualified name of the parent namespace
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for namespace \fInamespace\fR.
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If \fInamespace\fR is not specified,
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the fully-qualified name of the current namespace's parent is returned.
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.TP
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\fBnamespace qualifiers\fR \fIstring\fR
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Returns any leading namespace qualifiers for \fIstring\fR.
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Qualifiers are namespace names separated by \fB::\fRs.
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For the \fIstring\fR \fB::foo::bar::x\fR,
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this command returns \fB::foo::bar\fR,
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and for \fB::\fR it returns \fB``''\fR (an empty string).
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This command is the complement of the \fBnamespace tail\fR command.
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Note that it does not check whether the
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namespace names are, in fact,
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the names of currently defined namespaces.
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.TP
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\fBnamespace tail\fR \fIstring\fR
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Returns the simple name at the end of a qualified string.
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Qualifiers are namespace names separated by \fB::\fRs.
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For the \fIstring\fR \fB::foo::bar::x\fR,
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this command returns \fBx\fR,
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and for \fB::\fR it returns \fB``''\fR (an empty string).
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This command is the complement of the \fBnamespace qualifiers\fR command.
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It does not check whether the namespace names are, in fact,
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the names of currently defined namespaces.
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.TP
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\fBnamespace which\fR ?\-\fBcommand\fR? ?\-\fBvariable\fR? \fIname\fR
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Looks up \fIname\fR as either a command or variable
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and returns its fully-qualified name.
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For example, if \fIname\fR does not exist in the current namespace
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but does exist in the global namespace,
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this command returns a fully-qualified name in the global namespace.
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If the command or variable does not exist,
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this command returns an empty string.
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If no flag is given, \fIname\fR is treated as a command name.
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See the section \fBNAME RESOLUTION\fR below for an explanation of
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the rules regarding name resolution.
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.SH "WHAT IS A NAMESPACE?"
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.PP
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A namespace is a collection of commands and variables.
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It encapsulates the commands and variables to ensure that they
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won't interfere with the commands and variables of other namespaces.
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Tcl has always had one such collection,
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which we refer to as the \fIglobal namespace\fR.
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The global namespace holds all global variables and commands.
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The \fBnamespace eval\fR command lets you create new namespaces.
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For example,
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.CS
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\fBnamespace eval Counter {
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namespace export Bump
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variable num 0
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proc Bump {} {
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variable num
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incr num
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}
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}\fR
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.CE
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creates a new namespace containing the variable \fBnum\fR and
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the procedure \fBBump\fR.
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The commands and variables in this namespace are separate from
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other commands and variables in the same program.
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If there is a command named \fBBump\fR in the global namespace,
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for example, it will be different from the command \fBBump\fR
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in the \fBCounter\fR namespace.
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.PP
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Namespace variables resemble global variables in Tcl.
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They exist outside of the procedures in a namespace
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but can be accessed in a procedure via the \fBvariable\fR command,
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as shown in the example above.
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.PP
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Namespaces are dynamic.
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You can add and delete commands and variables at any time,
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so you can build up the contents of a
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namespace over time using a series of \fBnamespace eval\fR commands.
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For example, the following series of commands has the same effect
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as the namespace definition shown above:
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.CS
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\fBnamespace eval Counter {
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variable num 0
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proc Bump {} {
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variable num
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return [incr num]
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}
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}
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namespace eval Counter {
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proc test {args} {
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return $args
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}
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}
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namespace eval Counter {
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rename test ""
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}\fR
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.CE
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Note that the \fBtest\fR procedure is added to the \fBCounter\fR namespace,
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and later removed via the \fBrename\fR command.
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.PP
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Namespaces can have other namespaces within them,
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so they nest hierarchically.
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A nested namespace is encapsulated inside its parent namespace
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and can not interfere with other namespaces.
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.SH "QUALIFIED NAMES"
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.PP
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Each namespace has a textual name such as
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\fBhistory\fR or \fB::safe::interp\fR.
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Since namespaces may nest,
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qualified names are used to refer to
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commands, variables, and child namespaces contained inside namespaces.
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Qualified names are similar to the hierarchical path names for
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Unix files or Tk widgets,
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except that \fB::\fR is used as the separator
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instead of \fB/\fR or \fB.\fR.
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The topmost or global namespace has the name ``'' (i.e., an empty string),
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although \fB::\fR is a synonym.
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As an example, the name \fB::safe::interp::create\fR
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refers to the command \fBcreate\fR in the namespace \fBinterp\fR
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that is a child of of namespace \fB::safe\fR,
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which in turn is a child of the global namespace \fB::\fR.
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.PP
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If you want to access commands and variables from another namespace,
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you must use some extra syntax.
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Names must be qualified by the namespace that contains them.
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From the global namespace,
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we might access the \fBCounter\fR procedures like this:
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.CS
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\fBCounter::Bump 5
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Counter::Reset\fR
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.CE
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We could access the current count like this:
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.CS
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\fBputs "count = $Counter::num"\fR
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.CE
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When one namespace contains another, you may need more than one
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qualifier to reach its elements.
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If we had a namespace \fBFoo\fR that contained the namespace \fBCounter\fR,
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you could invoke its \fBBump\fR procedure
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from the global namespace like this:
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.CS
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\fBFoo::Counter::Bump 3\fR
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.CE
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.PP
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You can also use qualified names when you create and rename commands.
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For example, you could add a procedure to the \fBFoo\fR
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namespace like this:
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.CS
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\fBproc Foo::Test {args} {return $args}\fR
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.CE
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And you could move the same procedure to another namespace like this:
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.CS
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\fBrename Foo::Test Bar::Test\fR
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.CE
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.PP
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There are a few remaining points about qualified names
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that we should cover.
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Namespaces have nonempty names except for the global namespace.
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\fB::\fR is disallowed in simple command, variable, and namespace names
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except as a namespace separator.
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Extra \fB:\fRs in a qualified name are ignored;
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that is, two or more \fB:\fRs are treated as a namespace separator.
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A trailing \fB::\fR in a qualified variable or command name
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refers to the variable or command named {}.
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However, a trailing \fB::\fR in a qualified namespace name is ignored.
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.SH "NAME RESOLUTION"
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.PP
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In general, all Tcl commands that take variable and command names
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support qualified names.
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This means you can give qualified names to such commands as
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\fBset\fR, \fBproc\fR, \fBrename\fR, and \fBinterp alias\fR.
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If you provide a fully-qualified name that starts with a \fB::\fR,
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there is no question about what command, variable, or namespace
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you mean.
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However, if the name does not start with a \fB::\fR
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(i.e., is \fIrelative\fR),
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Tcl follows a fixed rule for looking it up:
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Command and variable names are always resolved
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by looking first in the current namespace,
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and then in the global namespace.
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Namespace names, on the other hand, are always resolved
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by looking in only the current namespace.
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.PP
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In the following example,
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.CS
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\fBset traceLevel 0
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namespace eval Debug {
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printTrace $traceLevel
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}\fR
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.CE
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Tcl looks for \fBtraceLevel\fR in the namespace \fBDebug\fR
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and then in the global namespace.
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It looks up the command \fBprintTrace\fR in the same way.
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If a variable or command name is not found in either context,
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the name is undefined.
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To make this point absolutely clear, consider the following example:
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.CS
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\fBset traceLevel 0
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namespace eval Foo {
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variable traceLevel 3
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namespace eval Debug {
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printTrace $traceLevel
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}
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}\fR
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.CE
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Here Tcl looks for \fBtraceLevel\fR first in the namespace \fBFoo::Debug\fR.
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Since it is not found there, Tcl then looks for it
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in the global namespace.
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The variable \fBFoo::traceLevel\fR is completely ignored
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during the name resolution process.
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.PP
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You can use the \fBnamespace which\fR command to clear up any question
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about name resolution.
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For example, the command:
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.CS
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\fBnamespace eval Foo::Debug {namespace which \-variable traceLevel}\fR
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.CE
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returns \fB::traceLevel\fR.
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On the other hand, the command,
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.CS
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\fBnamespace eval Foo {namespace which \-variable traceLevel}\fR
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.CE
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returns \fB::Foo::traceLevel\fR.
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.PP
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As mentioned above,
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namespace names are looked up differently
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than the names of variables and commands.
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Namespace names are always resolved in the current namespace.
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This means, for example,
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that a \fBnamespace eval\fR command that creates a new namespace
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always creates a child of the current namespace
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unless the new namespace name begins with a \fB::\fR.
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.PP
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Tcl has no access control to limit what variables, commands,
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or namespaces you can reference.
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If you provide a qualified name that resolves to an element
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by the name resolution rule above,
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you can access the element.
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.PP
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You can access a namespace variable
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from a procedure in the same namespace
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by using the \fBvariable\fR command.
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Much like the \fBglobal\fR command,
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this creates a local link to the namespace variable.
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If necessary, it also creates the variable in the current namespace
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and initializes it.
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Note that the \fBglobal\fR command only creates links
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to variables in the global namespace.
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It is not necessary to use a \fBvariable\fR command
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if you always refer to the namespace variable using an
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appropriate qualified name.
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.SH "IMPORTING COMMANDS"
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.PP
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Namespaces are often used to represent libraries.
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Some library commands are used so frequently
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that it is a nuisance to type their qualified names.
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For example, suppose that all of the commands in a package
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like BLT are contained in a namespace called \fBBlt\fR.
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Then you might access these commands like this:
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.CS
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\fBBlt::graph .g \-background red
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Blt::table . .g 0,0\fR
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.CE
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If you use the \fBgraph\fR and \fBtable\fR commands frequently,
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|
you may want to access them without the \fBBlt::\fR prefix.
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|
You can do this by importing the commands into the current namespace,
|
|
like this:
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|
.CS
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|
\fBnamespace import Blt::*\fR
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|
.CE
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|
This adds all exported commands from the \fBBlt\fR namespace
|
|
into the current namespace context, so you can write code like this:
|
|
.CS
|
|
\fBgraph .g \-background red
|
|
table . .g 0,0\fR
|
|
.CE
|
|
The \fBnamespace import\fR command only imports commands
|
|
from a namespace that that namespace exported
|
|
with a \fBnamespace export\fR command.
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|
.PP
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|
Importing \fIevery\fR command from a namespace is generally
|
|
a bad idea since you don't know what you will get.
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|
It is better to import just the specific commands you need.
|
|
For example, the command
|
|
.CS
|
|
\fBnamespace import Blt::graph Blt::table\fR
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|
.CE
|
|
imports only the \fBgraph\fR and \fBtable\fR commands into the
|
|
current context.
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|
.PP
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|
If you try to import a command that already exists, you will get an
|
|
error. This prevents you from importing the same command from two
|
|
different packages. But from time to time (perhaps when debugging),
|
|
you may want to get around this restriction. You may want to
|
|
reissue the \fBnamespace import\fR command to pick up new commands
|
|
that have appeared in a namespace. In that case, you can use the
|
|
\fB\-force\fR option, and existing commands will be silently overwritten:
|
|
.CS
|
|
\fBnamespace import \-force Blt::graph Blt::table\fR
|
|
.CE
|
|
If for some reason, you want to stop using the imported commands,
|
|
you can remove them with an \fBnamespace forget\fR command, like this:
|
|
.CS
|
|
\fBnamespace forget Blt::*\fR
|
|
.CE
|
|
This searches the current namespace for any commands imported from \fBBlt\fR.
|
|
If it finds any, it removes them. Otherwise, it does nothing.
|
|
After this, the \fBBlt\fR commands must be accessed with the \fBBlt::\fR
|
|
prefix.
|
|
.PP
|
|
When you delete a command from the exporting namespace like this:
|
|
.CS
|
|
\fBrename Blt::graph ""\fR
|
|
.CE
|
|
the command is automatically removed from all namespaces that import it.
|
|
|
|
.SH "EXPORTING COMMANDS"
|
|
You can export commands from a namespace like this:
|
|
.CS
|
|
\fBnamespace eval Counter {
|
|
namespace export Bump Reset
|
|
variable num 0
|
|
variable max 100
|
|
|
|
proc Bump {{by 1}} {
|
|
variable num
|
|
incr num $by
|
|
check
|
|
return $num
|
|
}
|
|
proc Reset {} {
|
|
variable num
|
|
set num 0
|
|
}
|
|
proc check {} {
|
|
variable num
|
|
variable max
|
|
if {$num > $max} {
|
|
error "too high!"
|
|
}
|
|
}
|
|
}\fR
|
|
.CE
|
|
The procedures \fBBump\fR and \fBReset\fR are exported,
|
|
so they are included when you import from the \fBCounter\fR namespace,
|
|
like this:
|
|
.CS
|
|
\fBnamespace import Counter::*\fR
|
|
.CE
|
|
However, the \fBcheck\fR procedure is not exported,
|
|
so it is ignored by the import operation.
|
|
.PP
|
|
The \fBnamespace import\fR command only imports commands
|
|
that were declared as exported by their namespace.
|
|
The \fBnamespace export\fR command specifies what commands
|
|
may be imported by other namespaces.
|
|
If a \fBnamespace import\fR command specifies a command
|
|
that is not exported, the command is not imported.
|
|
|
|
.SH "SEE ALSO"
|
|
variable(n)
|
|
|
|
.SH KEYWORDS
|
|
exported, internal, variable
|