8a19b35a1b
* Makefile.in: Install gdbtcl dir instead of gdbtk.tcl. * gdbtk.c: Added some ifdefs for Windows. Changed GDBTK_FILENAME to GDBTK_LIBRARY, which is now a path to search. (gdb_path_conv): New function. Convert Cygwin32 pathname to DOS-style pathname. * aclocal.m4, configure.in: Changes for Windows builds. * configure: Rebuilt.
400 lines
15 KiB
Plaintext
400 lines
15 KiB
Plaintext
README.GDBTK
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Written by Stu Grossman
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Updated 9/26/95 by Fred Fish for gdb 4.15 release
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Updated 4/18/97 by Martin Hunt
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This file describes how to build, install, use and hack on GDBtk, a TK based
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GUI for GDB, the GNU debugger.
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Introduction
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============
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GDBtk is a version of GDB that uses Tcl/Tk to implement a graphical
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user inter-face. It is a fully integrated GUI, not a separate
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front-end program. The interface consists of several seperate
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windows, which use standard elements like buttons, scrollbars, entry
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boxes and such to create a fairly easy to use interface. Each window
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has a distinct content and purpose, and can be enabled or disabled
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individually. The windows contain things like the current source
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file, a disassembly of the current function, text commands (for things
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that aren't accessible via a button), and so forth.
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Building and installing
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=======================
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Building GDBtk is very straightforward. The main difference is that you will
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need to use the `--enable-gdbtk' option when you run configure in the top level
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directory. You will also need to install Tcl version 7.6 and Tk version 4.2.
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On Unix machines, you will also need to have X11 (R4/R5/R6) installed
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(this is a prerequisite to installing Tk).
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For Windows, you can obtain Tcl/Tk from ftp://ftp.smli.com:/pub/tcl/win76p2.exe.
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There is a bug in this version of Tcl/tk that requires you to set the
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environmental variable TK_LIBRARY to where the tk library directory is installed.
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There is also a problem with the colors in images on 16-bit displays under
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Windows, so some icons may look strange.
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[See the GDB README file for more details on configure options and such.]
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For example:
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host> cd gdbtk
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host> ./configure --enable-gdbtk
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host> make
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host> make install
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Using GDBtk
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===========
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Just run it like you would a normal GDB (in fact, it's actually called `gdb').
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If everything goes well, you should have several windows pop up. To get going,
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hit the start button, and go exploring.
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If you want to use GDB in command line mode, just use the -nw option. Or, you
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can undefine the DISPLAY environment variable.
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In the current version, you can have up to 6 windows active at once. They are:
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1) Command
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2) Source
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3) Assembly
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4) Register
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5) Auto Command
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6) Expression
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Most windows have a similar layout consisting of a menubar, display area,
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scrollbar, status box and window-specific buttons.
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The menubar contains the following items:
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File - General file control. Also has window close and quit buttons.
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Options - Window specific options.
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Window - A menu of other windows that can be popped up or created.
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Help - Mostly unimplemented.
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The status box indicates things like the current file and function, or the
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current PC and function depending upon the window.
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Command window:
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This can be used to type commands at GDB (useful for when there isn't a
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button for what you want to do).
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Source window:
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This contains the current source file. The margin displays line
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numbers, and has an indicator for lines that actually contain code (and
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therefore can have breakpoints as well). When a breakpoint is set at
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that line, the indicator is replaced with a stop sign icon.
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The buttons are:
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Start - Put a breakpoint at main, and then run.
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Stop - Stop the program (only active when program is running).
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Step, Next, Cont[inue], Finish, Up, Down - Same as the corresponding
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GDB command. (Finish runs the current subroutine until it's done.)
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Bottom - Does a `frame 0' to put you at the innermost call frame.
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There are also accelerators for various buttons (just type the letter
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without any control/meta/alt/shift in the text frame):
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s - Step
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n - Next
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c - Continue
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f - Finish
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u - Up
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d - Down
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The mouse can also be used to set and clear breakpoints when clicked
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in the margin (on a breakpoint indicator).
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Assembly window:
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This displays a disassembly of the current function. It's buttons are
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similar to those of the source window, except that it uses Stepi and
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Nexti to run one instruction at a time instead of one statement at a
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time. The accelerators and mouse actions are also similar.
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Additionally, there is an option to enable mixed source and assembly.
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Register window:
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This displays the registers. It may have to be resized to properly
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display all the registers. The displayed registers can be selected
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via the Options|Config menu item.
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Auto Command window:
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Using this window, you can specify a command to be executed frequently.
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The output will be automatically updated. Options|Accumulate-output
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can be used to avoid clearing the window each time so that you can
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accumulate a history.
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Expressions:
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The expression window can be used to just calculate an expression, or
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to watch the value of an expression (ala the `display' command), using
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the Update button. The expression window will also pop up
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automatically when an expression is double-clicked in the source window.
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Customizing GDBtk
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=================
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There are three primary ways to customize GDBtk. One is to modifiy the
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appropriate X resources. The other is to hack a ~/.gdbtkinit file. The last
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is to change the files in gdbtcl, which defines the most basic interface
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elements.
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X resources give you control over things like the choice of fonts, color
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schemes and some geometry info.
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For more serious customizations, you will probably need to hack your
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~/.gdbtkinit or gdbtcl files.
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X Resources
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===========
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The class name for GDBtk is `Gdb', and it's appname is `gdb'. The top-
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level windows have instance names of `src', 'asm', 'reg', and 'cmd'. The main
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display area in each has the class `Text'. So, to change the font in all the
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main display areas, something like the following will do:
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Gdb*Text*font: fixed
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To change the font in only the source window:
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Gdb*src*Text*font: fixed
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To find out the names of the widgets do the following (in the command window):
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tk info comm .*
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To get the list of resources (and their classes) for a given widget, do some-
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thing like:
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tk .asm.text config
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This will return a list of lists, where each sublist looks something like this:
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{-height height Height 24 25}
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The first item is the name of the config option used when creating the widget.
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The second item is the instance name of this resource, the third is the class
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name. The fourth item is the default value, and the last item is the current
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value.
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To get info about a single resource, add the config option name to the end of
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the previous command. Ie:
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tk .asm.text config -font
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will return just the info about the font.
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To find out the class of a window, just do:
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tk winfo class .asm.text
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Note that some things may be explicitly overridden by gdbtk.tcl. In
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particular, the `tk colormodel . monochrome' command should probably be
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disabled if you want to use color.
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Hacking ~/.gdbtkinit and gdbtcl
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==================================
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~/.gdbtkinit is sourced at the end of gdbtk.tcl. Currently there is no good
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doc on this. See gdbtcl/main.tcl for see what you can change.
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The GUI is primarily implemented by Tcl/Tk code which lives in gdbtcl and a
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C file called gdbtk.c. The Tcl/Tk code determines the look and feel, the
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layout, and the functions associated with all of the interface elements. The C
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code is mostly just glue between GDB internals and Tclland. In essence, all of
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the policy is implemented in Tcl/Tk, and is easily changed without recompiling.
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To make more serious changes to the interface, such as adding a new window or
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changing the framework, you will have to hack the tcl code. This directory is
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installed in $(libdir) (probably /usr/local/lib/). But, you will probably want
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to hack on your own private copy before putting it up for the rest of the
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users. To find the GDB tcl code, GDB first checks for the environment variable
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GDBTK_LIBRARY. This can be a directory name or a list of directories seperated
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by colons (semicolons on Windows). GDB will check each directory in order until
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it finds "main.tcl". If GDBTK_LIBRARY is not set, GDB will look for
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"gdbtcl/main.tcl" in the current directory, and finally, it will try to find
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the tcl directory in the sources.
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Note that the old GDBTK_FILENAME environment variable is no longer used.
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Internally, GDBtk is basically GDB, linked with Tcl/Tk, and some glue code that
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interfaces GDB internals to Tclland. This means that GDBtk operates as a
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single program, not a front-end to GDB. All GDB commands, and a great deal of
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the target program state are accessible to the Tcl programmer. In addition,
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there are many callbacks from GDB to notify Tclland of important events.
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Here is a brief rundown of the GDB<=>Tcl interfaces:
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Tcl->GDB calls:
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gdb_cmd - sends a text command to gdb. Returns the result
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gdb_loc - takes PC, and returns a list consisting of a short file name,
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the function name, a long file name, the line number and the
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PC (in case you didn't supply it).
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gdb_sourcelines - Takes a filename, and returns a list of lines that
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contain code.
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gdb_listfiles - Returns a list of all of the source files.
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gdb_stop - Stops the target process.
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gdb_regnames - Returns a list of all of the register names.
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gdb_fetch_registers - Returns the contents of the specified registers.
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gdb_changed_register_list - Returns a list of registers that have
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changed since the last call.
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gdb_disassemble - Takes a function or PC. Returns the text of a dis-
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assembly of the entire function.
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gdb_eval - Takes an expression. Returns it's value.
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gdb_get_breakpoint_list - Does the obvious.
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gdb_get_breakpoint_info - Takes a breakpoint number. Returns a list of
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info about that breakpoint.
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GDB->Tcl callbacks:
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gdb_tcl_fputs - Sends output into Tcl for the command window.
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gdb_tcl_query - Pops up a query window.
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gdbtk_tcl_breakpoint - Notifies Tcl of changes to a breakpoint.
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gdbtk_tcl_idle - Notifies Tcl that debugged process is now idle.
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gdbtk_tcl_busy - Notifies Tcl that debugged process is now running.
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For details, see the usage in gdbtk.tcl, or the definitions in gdbtk.c.
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Additionally, there is a new GDB command `tk', which can be used to poke at
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Tk/Tcl from the command window.
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Problems
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========
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During building, you may run into problems with finding Tcl, Tk or X11. Look
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in gdb/Makefile, and fix TCL_CFLAGS, TCL, TK_CFLAGS, TK, and ENABLE_CLIBS as
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appropriate.
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If you one of the following messages when you run gdb:
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Tcl_Init failed: can't find init.tcl; perhaps you need to
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install Tcl or set your TCL_LIBRARY environment variable?
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or
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Tk_Init failed: can't find tk.tcl; perhaps you need to
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install Tk or set your TK_LIBRARY environment variable?
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then you haven't installed Tcl or TK properly. Fix the appropriate environment
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variable to point at the {tcl tk}/library directory, and restart gdb.
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If you get the following:
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/usr/local/lib/gdbtk.tcl:1: couldn't read file "/usr/local/lib/gdbtk.tcl": No such file or directory
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Stack trace:
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can't unset "auto_index": no such variable
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while executing
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"unset auto_index"
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then GDBtk wasn't installed properly. You can set the GDBTK_FILENAME
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environment variable to point at the gdbtk.tcl in your source directory. Note
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that the stack trace displayed here is not valid. If you actually get an error
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in gdbtk.tcl, the stack trace is useful to pinpoint the location.
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Known Bugs
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==========
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generic problems
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o If you open an Assembly window before you have run the program, gdbtk
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pops up a dialog box titled "Error in Tcl Script" with the contents
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"Error: No function contains the specified address". Trying to then
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do other things brings up a dialog box with the contents "Error:
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can't read 'current_asm_label': no such variable.
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Solution: Close Assembly window when there is no program running.
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o If you open Registers window before you have run the program, gdbtk
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pops up a dialog box titled "Error in Tcl Script" with the contents
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"Error: No registers". Trying to then do other things, like use the
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Start button to run the program, repeatedly produce the same dialog
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box and the action is not performed.
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Solution: Close Registers window when there is no program running.
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o Expressions are sometimes not displayed correctly in the Expression
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window. I.E. "argc" works, as does "*(argv+argc)" but not "argv[argc]".
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Solution: None
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[ I believe this problem is fixed, but I have not tested it ]
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o The Breakpoint window does not get automatically updated and changes
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made in the window are not reflected back in the results from "info br".
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I.E. the breakpoint count in the window is not updated at each hit and
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enabling/disabling the breakpoint from the Breakpoint window has no effect.
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Solution: Use the command interface to control breakpoints and don't
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open a Breakpoint window.
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o Sometimes while an expression window is active you get a dialog box
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that complains "Error: invalide command name ".expr.e5.expr" for
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example. The Tcl stack trace looks something like:
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invalid command name ".expr.e5.expr"
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while executing
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"$e.expr get 0.0 end"
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invoked from within
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"set expr [$e.expr get 0.0 end]..."
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(procedure "update_expr" line 17)
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invoked from within
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"update_expr $expr_num"
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invoked from within
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"if $expr_update_list($expr_num) {
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update_expr $expr_num
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.
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.
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.
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Solution: None except close expression window and reopen it.
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o If you select the "Down" button in either the Source or Assembly
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window while in the bottom (innermost) frame, the error message that
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results goes just to the command window and may be missed if the
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command window is not open. This may also apply to other messages
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as well. It should probably put up a notification box instead.
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Solution: Keep Command window open to see error messages.
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o Not really a problem, but it would be nice to have a backtrace
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window.
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Solution: Do bt in command window?
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o Also not really a problem, but it might be nice to have a frame/stack
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window that displays the last N words on the stack, along with
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indications about which function owns a particular frame, how the
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frame pointers are chained, and possibly the names of variables
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alongside their frame slots.
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m68k-hp-hpux9.00:
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o Attempting to use a Register window results in a Tcl Script Error
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"Error: Erroneous arithmetic operation". The Tcl stack trace is:
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while executing
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"gdb_fetch_registers $reg_format $regnum"
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invoked from within
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"set regval [gdb_fetch_registers $reg_format $regnum]..."
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("foreach" body line 2)
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invoked from within
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"foreach regnum $reg_display_list {
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set regval [gdb_fetch_registers $reg_format $regnum]
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set regval [format "%-*s" $valwidth $regval]
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$win del ..."
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invoked from within
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"if {$which == "all"} {
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set lineindex 1
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foreach regnum $reg_display_list {
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set regval [gdb_fetch_registers $reg_format $regnum]
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set regval [f ..."
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(procedure "update_registers" line 16)
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invoked from within
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"update_registers all"
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.
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.
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.
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