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The write instrumented design process will produce a new version of the VHDL files for the CPU design These files need to be synthesized as described in earlier chapters The output of the synthesis process is an EDIF netlist The EDIF netlist is placed and routed with the Altera Quartus tools to produce a file that is programmed into the Altera device
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Figure 18-5 Top Level Unit and Language Specified
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as described earlier Finally the new programming file is programmed into the Altera device with the Altera programming software
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Now that the device has been programmed with the new netlist, the device can be debugged with the Bridges2Silicon debugger The debugger is invoked, and the project created by the Bridges2Silicon instrumentor is loaded into the debugger This project loads the original source files for the project into the debugger The debugger now shows only instrumented signals and breakpoints
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To enable a breakpoint, click on the radio button next to it To put a watch expression on a signal, click the signal and specify a signal expression value
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Figure 18-6 Compiled Project with Debug Items Shown
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At Speed Debugging Techniques
A breakpoint is a simple way to specify a complex trigger expression A breakpoint behaves similar to a breakpoint in a software debugger except that a breakpoint in the debugger does not stop the hardware A breakpoint in the debugger represents a trigger condition that causes all instrumented signal values to be captured and sent to the debugger Figure 18-9 shows the breakpoint selected at the source line where current_state equals Load12 To activate this trigger, click on the Run button Clicking the Run button will download this trigger selection to the IICE hardware on the device and arm the trigger to sample data When signal current_state obtains the value Load12, the breakpoint triggers and the sample buffer is sent to the debugger through the JTAG port of the device The actual signal values are displayed on the source code as shown in Figure 18-10 Notice that the value of current_state is Load12 All the rest of the signals contain values captured when current_state changed to the value Load12 and the trigger condition was met With this capability a designer can use breakpoints to see the actual behavior of the real hardware to make sure that the design is behaving properly
Figure 18-7 IICE Configuration Dialog
Figure 18-8 Signals and Breakpoints Selected for Debug
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The sample buffer contains as many samples as specified by the sample depth in the instrumentor setup In this case 256 samples were captured into the sample buffer and sent to the debugger when the trigger occurred
Trigger Position
The position of the trigger in the sample buffer data can be controlled so that more history before the trigger is shown, history and future data size are the same, or less history and more future data is shown after the trigger In this example the history and future data is the same, which corresponds to the middle trigger position
Waveform Display
Another way to view the sample buffer data is via a waveform display In Figure 18-11 the sample buffer data are shown as a waveform The vertical
At Speed Debugging Techniques
Figure 18-9 Breakpoint Enabled on Loadl2
cursor shows the position of the trigger Also notice that the first two signals in the waveform display are Sample Clock and Cycle These are added signals used to provide reference points in the waveform The sample clock is used to show the reference edges where sample data was captured The cycle number shows the relative position within the sample buffer Cycle number 0 is the trigger point, positive values are after the trigger, and negative values are before the trigger
Set Watchpoint
Another way to specify trigger conditions is to specify watchpoint expressions on signals A watchpoint expression defines a value or transition that a signal will trigger When the signal value equals the trigger value or transitions from one value to another, the IICE will trigger and cause the sample buffer to be transferred to the debugger To set a watchpoint expression, click on a signal in the debugger source window The Watchpoint Expression dialog box appears (see Figure 18-12)
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