docs: move specs to a separate folder
Handle legacy/obsolete specs as well List all specs in extensions.html Mark 'OLD' extensions as obsolete in extensions.html Update the spec location in old relnotes Signed-off-by: Emil Velikov <emil.l.velikov@gmail.com> Reviewed-by: Brian Paul <brianp@vmware.com>
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docs/specs/OLD/MESA_program_debug.spec
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docs/specs/OLD/MESA_program_debug.spec
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Name
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MESA_program_debug
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Name Strings
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GL_MESA_program_debug
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Contact
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Brian Paul (brian.paul 'at' tungstengraphics.com)
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Status
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XXX - Not complete yet!!!
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Version
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Last Modified Date: July 20, 2003
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Author Revision: 1.0
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Number
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TBD
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Dependencies
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OpenGL 1.4 is required
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The extension is written against the OpenGL 1.4 specification.
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ARB_vertex_program or ARB_fragment_program or NV_vertex_program
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or NV_fragment_program is required.
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Overview
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The extension provides facilities for implementing debuggers for
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vertex and fragment programs.
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The concept is that vertex and fragment program debuggers will be
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implemented outside of the GL as a utility package. This extension
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only provides the minimal hooks required to implement a debugger.
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There are facilities to do the following:
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1. Have the GL call a user-specified function prior to executing
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each vertex or fragment instruction.
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2. Query the current program string's execution position.
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3. Query the current values of intermediate program values.
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The main feature is the ProgramCallbackMESA function. It allows the
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user to register a callback function with the GL. The callback will
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be called prior to executing each vertex or fragment program instruction.
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From within the callback, the user may issue Get* commands to
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query current GL state. The GetProgramRegisterfvMESA function allows
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current program values to be queried (such as temporaries, input
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attributes, and result registers).
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There are flags for enabling/disabling the program callbacks.
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The current execution position (as an offset from the start of the
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program string) can be queried with
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GetIntegerv(GL_FRAGMENT_PROGRAM_POSITION_MESA, &pos) or
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GetIntegerv(GL_VERTEX_PROGRAM_POSITION_MESA, &pos).
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IP Status
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None
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Issues
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1. Is this the right model for a debugger?
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It seems prudent to minimize the scope of this extension and leave
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it up to the developer (or developer community) to write debuggers
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that layer on top of this extension.
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If the debugger were fully implemented within the GL it's not
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clear how terminal and GUI-based interfaces would work, for
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example.
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2. There aren't any other extensions that register callbacks with
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the GL. Isn't there another solution?
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If we want to be able to single-step through vertex/fragment
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programs I don't see another way to do it.
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3. How do we prevent the user from doing something crazy in the
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callback function, like trying to call glBegin (leading to
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recursion)?
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The rule is that the callback function can only issue glGet*()
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functions and no other GL commands. It could be difficult to
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enforce this, however. Therefore, calling any non-get GL
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command from within the callback will result in undefined
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results.
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4. Is this extension amenable to hardware implementation?
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Hopefully, but if not, the GL implementation will have to fall
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back to a software path when debugging. This may be acceptable
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for debugging.
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5. What's the <data> parameter to ProgramCallbackMESA for?
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It's a common programming practice to associate a user-supplied
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value with callback functions.
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6. Debuggers often allow one to modify intermediate program values,
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then continue. Does this extension support that?
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No.
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New Procedures and Functions (and datatypes)
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typedef void (*programcallbackMESA)(enum target, void *data)
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void ProgramCallbackMESA(enum target, programcallbackMESA callback,
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void *data)
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void GetProgramRegisterfvMESA(enum target, sizei len,
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const ubyte *registerName, float *v)
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New Tokens
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Accepted by the <cap> parameter of Enable, Disable, IsEnabled,
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GetBooleanv, GetDoublev, GetFloatv and GetIntegerv:
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FRAGMENT_PROGRAM_CALLBACK_MESA 0x8bb1
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VERTEX_PROGRAM_CALLBACK_MESA 0x8bb4
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Accepted by the <pname> parameter GetBooleanv, GetDoublev,
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GetFloatv and GetIntegerv:
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FRAGMENT_PROGRAM_POSITION_MESA 0x8bb0
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VERTEX_PROGRAM_POSITION_MESA 0x8bb4
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Accepted by the <pname> parameter of GetPointerv:
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FRAGMENT_PROGRAM_CALLBACK_FUNC_MESA 0x8bb2
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FRAGMENT_PROGRAM_CALLBACK_DATA_MESA 0x8bb3
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VERTEX_PROGRAM_CALLBACK_FUNC_MESA 0x8bb6
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VERTEX_PROGRAM_CALLBACK_DATA_MESA 0x8bb7
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Additions to Chapter 2 of the OpenGL 1.4 Specification (OpenGL Operation)
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None.
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Additions to Chapter 3 of the OpenGL 1.4 Specification (Rasterization)
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None.
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Additions to Chapter 4 of the OpenGL 1.4 Specification (Per-Fragment
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Operations and the Frame Buffer)
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None.
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Additions to Chapter 5 of the OpenGL 1.4 Specification (Special Functions)
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In section 5.4 "Display Lists", page 202, add the following command
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to the list of those that are not compiled into display lists:
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ProgramCallbackMESA.
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Add a new section 5.7 "Callback Functions"
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The function
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void ProgramCallbackMESA(enum target, programcallbackMESA callback,
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void *data)
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registers a user-defined callback function with the GL. <target>
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may be FRAGMENT_PROGRAM_ARB or VERTEX_PROGRAM_ARB. The enabled
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callback functions registered with these targets will be called
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prior to executing each instruction in the current fragment or
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vertex program, respectively. The callbacks are enabled and
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disabled by calling Enable or Disable with <cap>
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FRAGMENT_PROGRAM_ARB or VERTEX_PROGRAM_ARB.
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The callback function's signature must match the typedef
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typedef void (*programcallbackMESA)(enum target, void *data)
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When the callback function is called, <target> will either be
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FRAGMENT_PROGRAM_ARB or VERTEX_PROGRAM_ARB to indicate which
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program is currently executing and <data> will be the value
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specified when ProgramCallbackMESA was called.
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From within the callback function, only the following GL commands
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may be called:
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GetBooleanv
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GetDoublev
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GetFloatv
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GetIntegerv
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GetProgramLocalParameter
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GetProgramEnvParameter
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GetProgramRegisterfvMESA
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GetProgramivARB
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GetProgramStringARB
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GetError
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Calling any other command from within the callback results in
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undefined behaviour.
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Additions to Chapter 6 of the OpenGL 1.4 Specification (State and
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State Requests)
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Add a new section 6.1.3 "Program Value Queries":
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The command
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void GetProgramRegisterfvMESA(enum target, sizei len,
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const ubyte *registerName,
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float *v)
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Is used to query the value of program variables and registers
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during program execution. GetProgramRegisterfvMESA may only be
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called from within a callback function registered with
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ProgramCallbackMESA.
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<registerName> and <len> specify the name a variable, input
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attribute, temporary, or result register in the program string.
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The current value of the named variable is returned as four
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values in <v>. If <name> doesn't exist in the program string,
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the error INVALID_OPERATION is generated.
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Additions to Appendix A of the OpenGL 1.4 Specification (Invariance)
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None.
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Additions to the AGL/GLX/WGL Specifications
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None.
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GLX Protocol
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XXX TBD
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Dependencies on NV_vertex_program and NV_fragment_program
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If NV_vertex_program and/or NV_fragment_program are supported,
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vertex and/or fragment programs defined by those extensions may
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be debugged as well. Register queries will use the syntax used
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by those extensions (i.e. "v[X]" to query vertex attributes,
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"o[X]" for vertex outputs, etc.)
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Errors
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INVALID_OPERATION is generated if ProgramCallbackMESA is called
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between Begin and End.
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INVALID_ENUM is generated by ProgramCallbackMESA if <target> is not
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a supported vertex or fragment program type.
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Note: INVALID_OPERAION IS NOT generated by GetProgramRegisterfvMESA,
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GetBooleanv, GetDoublev, GetFloatv, or GetIntegerv if called between
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Begin and End when a vertex or fragment program is currently executing.
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INVALID_ENUM is generated by ProgramCallbackMESA,
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GetProgramRegisterfvMESA if <target> is not a program target supported
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by ARB_vertex_program, ARB_fragment_program (or NV_vertex_program or
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NV_fragment_program).
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INVALID_VALUE is generated by GetProgramRegisterfvMESA if <registerName>
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does not name a known program register or variable.
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INVALID_OPERATION is generated by GetProgramRegisterfvMESA when a
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register query is attempted for a program target that's not currently
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being executed.
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New State
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XXX finish
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(table 6.N, p. ###)
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Initial
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Get Value Type Get Command Value Description Sec. Attribute
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--------- ---- ----------- ----- ----------- ---- ---------
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FRAGMENT_PROGRAM_CALLBACK_MESA B IsEnabled FALSE XXX XXX enable
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VERTEX_PROGRAM_CALLBACK_MESA B IsEnabled FALSE XXX XXX enable
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FRAGMENT_PROGRAM_POSITION_MESA Z+ GetIntegerv -1 XXX XXX -
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VERTEX_PROGRAM_POSITION_MESA Z+ GetIntegerv -1 XXX XXX -
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FRAGMENT_PROGRAM_CALLBACK_FUNC_MESA P GetPointerv NULL XXX XXX -
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VERTEX_PROGRAM_CALLBACK_FUNC_MESA P GetPointerv NULL XXX XXX -
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FRAGMENT_PROGRAM_CALLBACK_DATA_MESA P GetPointerv NULL XXX XXX -
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VERTEX_PROGRAM_CALLBACK_DATA_MESA P GetPointerv NULL XXX XXX -
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XXX more?
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New Implementation Dependent State
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None.
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Revision History
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8 July 2003
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Initial draft. (Brian Paul)
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11 July 2003
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Second draft. (Brian Paul)
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20 July 2003
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Third draft. Lots of fundamental changes. (Brian Paul)
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23 July 2003
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Added chapter 5 and 6 spec language. (Brian Paul)
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Example Usage
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The following is a very simple example of how this extension may
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be used to print the values of R0, R1, R2 and R3 while executing
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vertex programs.
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/* This is called by the GL when the vertex program is executing.
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* We can only make glGet* calls from within this function!
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*/
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void DebugCallback(GLenum target, GLvoid *data)
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{
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GLint pos;
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GLuint i;
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/* Get PC and current instruction string */
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glGetIntegerv(GL_VERTEX_PROGRAM_POSITION_ARB, &pos);
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printf("Current position: %d\n", pos);
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printf("Current temporary registers:\n");
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for (i = 0; i < 4; i++) {
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GLfloat v[4];
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char s[10];
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sprintf(s, "R%d", i);
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glGetProgramRegisterfvMESA(GL_VERTEX_PROGRAM_ARB, strlen(s), s, v);
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printf("R%d = %g, %g, %g, %g\n", i, v[0], v[1], v[2], v[3]);
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}
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}
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/*
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* elsewhere...
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*/
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/* Register our debugger callback function */
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glProgramCallbackMESA(GL_VERTEX_PROGRAM_ARB, DebugCallback, NULL);
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glEnable(GL_VERTEX_PROGRAM_CALLBACK_MESA);
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/* define/bind a vertex program */
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glEnable(GL_VERTEX_PROGRAM);
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/* render something */
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glBegin(GL_POINTS);
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glVertex2f(0, 0);
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glEnd();
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