165 lines
6.5 KiB
C
165 lines
6.5 KiB
C
/************************************************************************************//**
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* \file Demo\ARM7_LPC2000_Olimex_LPC_L2294_Crossworks\Prog\main.c
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* \brief Demo program application source file.
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* \ingroup Prog_ARM7_LPC2000_Olimex_LPC_L2294_Crossworks
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* \internal
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*----------------------------------------------------------------------------------------
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* C O P Y R I G H T
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*----------------------------------------------------------------------------------------
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* Copyright (c) 2011 by Feaser http://www.feaser.com All rights reserved
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*
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*----------------------------------------------------------------------------------------
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* L I C E N S E
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*----------------------------------------------------------------------------------------
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* This file is part of OpenBLT. OpenBLT is free software: you can redistribute it and/or
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* modify it under the terms of the GNU General Public License as published by the Free
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* Software Foundation, either version 3 of the License, or (at your option) any later
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* version.
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*
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* OpenBLT is distributed in the hope that it will be useful, but WITHOUT ANY WARRANTY;
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* without even the implied warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR
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* PURPOSE. See the GNU General Public License for more details.
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*
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* You have received a copy of the GNU General Public License along with OpenBLT. It
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* should be located in ".\Doc\license.html". If not, contact Feaser to obtain a copy.
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*
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* \endinternal
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****************************************************************************************/
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/****************************************************************************************
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* Include files
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****************************************************************************************/
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#include "header.h" /* generic header */
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/****************************************************************************************
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* Function prototypes
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****************************************************************************************/
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static void Init(void);
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/****************************************************************************************
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* Constant data declarations
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****************************************************************************************/
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#if (BOOT_NVM_HOOKS_ENABLE > 0)
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/** \brief Array with test data to program in the external flash.
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* \details ROM data allocated to the external flash on the Olimex LPC-L2294 board to
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* test the programming of data in external flash. To test programming with
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* the additional external flash driver, build the bootloader and this program
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* with configurable BOOT_NVM_HOOKS_ENABLE set to 1 in blt_conf.h
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*/
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__attribute__((section (".rodata2"))) const unsigned long ExtFlashTestData[] =
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{
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0x00000000, 0x11111111, 0x22222222, 0x33333333,
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0x44444444, 0x55555555, 0x66666666, 0x77777777,
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0x88888888, 0x99999999, 0xAAAAAAAA, 0xBBBBBBBB,
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0xCCCCCCCC, 0xDDDDDDDD, 0xEEEEEEEE, 0xFFFFFFFF
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};
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#endif
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/************************************************************************************//**
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** \brief This is the entry point for the bootloader application and is called
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** by the reset interrupt vector after the C-startup routines executed.
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** \return Program return code.
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**
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****************************************************************************************/
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int main(void)
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{
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/* initialize the microcontroller */
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Init();
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/* initialize the bootloader interface */
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BootComInit();
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/* start the infinite program loop */
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while (1)
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{
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/* toggle LED with a fixed frequency */
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LedToggle();
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/* check for bootloader activation request */
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BootComCheckActivationRequest();
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}
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/* program should never get here */
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return 0;
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} /*** end of main ***/
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/************************************************************************************//**
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** \brief Initializes the microcontroller. The Fpll is set to 60MHz and Fvpb is
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** configured equal to Fpll. The GPIO pin of the status LED is configured
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** as digital output.
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** \return none.
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**
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****************************************************************************************/
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static void Init(void)
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{
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unsigned char m_sel; /* pll multiplier register value */
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unsigned char pll_dividers[] = { 1, 2, 4, 8 }; /* possible pll dividers */
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unsigned char p_sel_cnt; /* loop counter to find p_sel */
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unsigned long f_cco; /* current controller oscillator */
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/* calculate MSEL: M = round(Fcclk / Fosc) */
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m_sel = (BOOT_CPU_SYSTEM_SPEED_KHZ + ((BOOT_CPU_XTAL_SPEED_KHZ+1)/2)) / \
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BOOT_CPU_XTAL_SPEED_KHZ;
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/* value for the PLLCFG register is -1 */
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m_sel--;
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/* find PSEL value so that Fcco(= Fcclk * 2 * P) is in the 156000..320000 kHz range. */
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for (p_sel_cnt=0; p_sel_cnt<sizeof(pll_dividers)/sizeof(pll_dividers[0]); p_sel_cnt++)
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{
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/* check f_cco with this pll divider */
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f_cco = BOOT_CPU_SYSTEM_SPEED_KHZ * 2 * pll_dividers[p_sel_cnt];
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if ( (f_cco >= 156000) && (f_cco <= 320000) )
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{
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/* found a valid pll divider value */
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break;
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}
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}
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/* set multiplier and divider values */
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PLLCFG = (p_sel_cnt << 5) | m_sel;
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PLLFEED = 0xAA;
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PLLFEED = 0x55;
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/* enable the PLL */
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PLLCON = 0x1;
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PLLFEED = 0xAA;
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PLLFEED = 0x55;
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/* wait for the PLL to lock to set frequency */
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while(!(PLLSTAT & 0x400)) { ; }
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/* connect the PLL as the clock source */
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PLLCON = 0x3;
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PLLFEED = 0xAA;
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PLLFEED = 0x55;
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/* enable MAM and set number of clocks used for Flash memory fetch. Recommended:
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* Fcclk >= 60 MHz: 4 clock cycles
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* Fcclk >= 40 MHz: 3 clock cycles
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* Fcclk >= 20 MHz: 2 clock cycles
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* Fcclk < 20 MHz: 1 clock cycle
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*/
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MAMCR = 0x0;
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#if (BOOT_CPU_SYSTEM_SPEED_KHZ >= 60000)
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MAMTIM = 4;
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#elif (BOOT_CPU_SYSTEM_SPEED_KHZ >= 40000)
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MAMTIM = 3;
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#elif (BOOT_CPU_SYSTEM_SPEED_KHZ >= 20000)
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MAMTIM = 2;
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#else
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MAMTIM = 1;
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#endif
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MAMCR = 0x2;
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/* setting peripheral Clock (pclk) to System Clock (cclk) */
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VPBDIV = 0x1;
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/* init the led driver */
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LedInit();
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/* init the timer driver */
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TimerInit();
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/* enable IRQ's */
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IrqInterruptEnable();
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} /*** end of Init ***/
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/*********************************** end of main.c *************************************/
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