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// Copyright (c) 1994-2009 Nokia Corporation and/or its subsidiary(-ies).
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// All rights reserved.
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// This component and the accompanying materials are made available
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// under the terms of the License "Eclipse Public License v1.0"
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// which accompanies this distribution, and is available
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// at the URL "http://www.eclipse.org/legal/epl-v10.html".
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//
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// Initial Contributors:
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// Nokia Corporation - initial contribution.
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//
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// Contributors:
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//
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// Description:
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// template\template_variant\specific\monitor.cpp
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// Kernel crash debugger - Template specific
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//
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//
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#include <kernel/monitor.h>
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#include "variant.h"
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//
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// UART code
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//
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void CrashDebugger::InitUart()
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{
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// Wait for last kernel trace to appear
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TTemplate::BootWaitMilliSeconds(100);
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//
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// TO DO: (mandatory)
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//
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// Initialise the UART for outputing debug strings. Need to work with the following settings:
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// - 115200Baud
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// - 8 data bits, 1 stop bit
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// - No parity
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// Obtain and use UART linear base address to access the UART registers, e.g.
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// TUint32 debugPortBase = TTemplate::DebugPortAddr();
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//
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}
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void CrashDebugger::UartOut(TUint aChar)
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{
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//
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// TO DO: (mandatory)
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//
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// Output aChar through debug UART
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// Obtain and use UART linear base address to access the UART register, e.g.
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// Should take in consideration software flow control and check if Power is stable as per example below (pseudo-code):
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//
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TUint c=0;
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// TUint32 debugPortBase = TTemplate::DebugPortAddr(); TO DO: (mandatory): Uncomment this
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// while (!(input FIFO empty)) TO DO: (mandatory): Implement
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{
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if (CheckPower())
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return;
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// c=(read received char); TO DO: (mandatory): Implement
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if (c==19) // XOFF
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{
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FOREVER
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{
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// wait for XON
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// while((input FIFO empty)) TO DO: (mandatory): Implement
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{
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if (CheckPower())
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return;
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}
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// c=(read received char); TO DO: (mandatory): Implement
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if (c==17) // XON
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break;
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else if (c==3) // Ctrl C
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Leave(KErrCancel);
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}
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}
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// coverity[dead_error_condition]
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// The next line should be reachable when this template file is edited for use
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else if (c==3) // Ctrl C
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Leave(KErrCancel);
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}
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// while ((output FIFO full)) TO DO: (mandatory): wait for last char to leave the FIFO (Implement)
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CheckPower();
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// (write aChar to output port - or FIFO); TO DO: (mandatory): Implement
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}
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TUint8 CrashDebugger::UartIn()
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{
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//
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// TO DO: (mandatory)
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//
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// Wait for a char to arrive at input port, read it and return its value
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// Use the UART linear base address obtained as in below example to access the UART registers
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// Example below is pseudo-code:
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//
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// TUint32 debugPortBase = TTemplate::DebugPortAddr(); TO DO: (mandatory): Uncomment this
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// while ((input FIFO empty)) TO DO: (mandatory): wait for a character to arrive (Implement)
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{
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if (CheckPower())
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return 0x0d;
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}
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// return (read received char); TO DO: (mandatory): Implement
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return 0; // EXAMPLE ONLY
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}
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TBool CrashDebugger::CheckPower()
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{
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//
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// TO DO: (mandatory)
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//
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// Check if power supply is stable and return ETrue if not
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//
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return EFalse; // EXAMPLE ONLY
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}
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