211 lines
5.4 KiB
C
211 lines
5.4 KiB
C
/**
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* \file
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* <!--
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* This file is part of BeRTOS.
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*
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* Bertos is free software; you can redistribute it and/or modify
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* it under the terms of the GNU General Public License as published by
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* the Free Software Foundation; either version 2 of the License, or
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* (at your option) any later version.
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*
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* This program is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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* GNU General Public License for more details.
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*
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* You should have received a copy of the GNU General Public License
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* along with this program; if not, write to the Free Software
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* Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA
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*
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* As a special exception, you may use this file as part of a free software
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* library without restriction. Specifically, if other files instantiate
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* templates or use macros or inline functions from this file, or you compile
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* this file and link it with other files to produce an executable, this
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* file does not by itself cause the resulting executable to be covered by
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* the GNU General Public License. This exception does not however
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* invalidate any other reasons why the executable file might be covered by
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* the GNU General Public License.
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*
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* Copyright 2008 Develer S.r.l. (http://www.develer.com/)
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*
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* -->
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*
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* \brief ADC hardware-specific implementation
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*
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* This ADC module should be use both whit kernel or none.
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* If you are using a kernel, the adc drive does not wait the finish of
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* conversion but use a singal every time a required conversion are
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* ended. This signal wake up a process that return a result of
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* conversion. Otherwise, if you not use a kernl, this module wait
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* whit a loop the finishing of conversion.
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*
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*
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* \author Daniele Basile <asterix@develer.com>
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*/
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#include "adc_at91.h"
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#include <cpu/irq.h>
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#include "cfg/cfg_adc.h"
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#include "cfg/cfg_proc.h"
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#include "cfg/cfg_signal.h"
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#include <cfg/macros.h>
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#include <cfg/compiler.h>
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// Define log settings for cfg/log.h.
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#define LOG_LEVEL ADC_LOG_LEVEL
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#define LOG_FORMAT ADC_LOG_FORMAT
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#include <cfg/log.h>
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#include <drv/adc.h>
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#include <io/arm.h>
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#if CONFIG_KERN
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#include <cfg/module.h>
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#include <kern/proc.h>
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#include <kern/signal.h>
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#if !CONFIG_KERN_SIGNALS
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#error Signals must be active to use ADC with kernel
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#endif
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/* Signal adc convertion end */
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#define SIG_ADC_COMPLETE SIG_USER0
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/* ADC waiting process */
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static struct Process *adc_process;
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/**
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* ADC ISR.
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* Simply signal the adc process that convertion is complete.
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*/
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static DECLARE_ISR(adc_conversion_end_irq)
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{
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sig_post(adc_process, SIG_ADC_COMPLETE);
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/* Inform hw that we have served the IRQ */
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AIC_EOICR = 0;
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}
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static void adc_enable_irq(void)
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{
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// Disable all interrupt
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ADC_IDR = 0xFFFFFFFF;
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//Register interrupt vector
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AIC_SVR(ADC_ID) = adc_conversion_end_irq;
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AIC_SMR(ADC_ID) = AIC_SRCTYPE_INT_EDGE_TRIGGERED;
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AIC_IECR = BV(ADC_ID);
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//Enable data ready irq
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ADC_IER = BV(ADC_DRDY);
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}
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#endif /* CONFIG_KERN */
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/**
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* Select mux channel \a ch.
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* \todo only first 8 channels are selectable!
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*/
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void adc_hw_select_ch(uint8_t ch)
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{
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//Disable all channels
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ADC_CHDR = ADC_CH_MASK;
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//Enable select channel
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ADC_CHER = BV(ch);
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}
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/**
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* Start an ADC convertion.
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* If a kernel is present, preempt until convertion is complete, otherwise
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* a busy wait on ADC_DRDY bit is done.
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*/
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uint16_t adc_hw_read(void)
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{
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#if CONFIG_KERN
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/* Ensure ADC is not already in use by another process */
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ASSERT(adc_process == NULL);
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adc_process = proc_current();
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#endif
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// Start convertion
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ADC_CR = BV(ADC_START);
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#if CONFIG_KERN
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// Ensure IRQs enabled.
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IRQ_ASSERT_ENABLED();
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sig_wait(SIG_ADC_COMPLETE);
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/* Prevent race condition in case of preemptive kernel */
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uint16_t ret = ADC_LCDR;
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MEMORY_BARRIER;
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adc_process = NULL;
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return ret;
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#else
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//Wait in polling until is done
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while (!(ADC_SR & BV(ADC_DRDY)));
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//Return the last converted data
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return(ADC_LCDR);
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#endif
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}
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/**
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* Init ADC hardware.
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*/
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void adc_hw_init(void)
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{
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//Init ADC pins.
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ADC_INIT_PINS();
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/*
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* Set adc mode register:
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* - Disable hardware trigger and enable software trigger.
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* - Select normal mode.
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* - Set ADC_BITS bit convertion resolution.
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*
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* \{
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*/
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ADC_MR = 0;
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#if ADC_BITS == 10
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ADC_MR &= ~BV(ADC_LOWRES);
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#elif ADC_BITS == 8
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ADC_MR |= BV(ADC_LOWRES);
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#else
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#error No select bit resolution is supported to this CPU
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#endif
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/* \} */
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LOG_INFO("Computed ADC_CLOCK %ld\n", ADC_COMPUTED_CLOCK);
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LOG_INFO("prescaler[%ld], stup[%ld], shtim[%ld]\n",ADC_COMPUTED_PRESCALER, ADC_COMPUTED_STARTUPTIME, ADC_COMPUTED_SHTIME);
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//Apply computed prescaler value
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ADC_MR &= ~ADC_PRESCALER_MASK;
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ADC_MR |= ((ADC_COMPUTED_PRESCALER << ADC_PRESCALER_SHIFT) & ADC_PRESCALER_MASK);
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LOG_INFO("prescaler[%ld]\n", (ADC_COMPUTED_PRESCALER << ADC_PRESCALER_SHIFT) & ADC_PRESCALER_MASK);
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//Apply computed start up time
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ADC_MR &= ~ADC_STARTUP_MASK;
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ADC_MR |= ((ADC_COMPUTED_STARTUPTIME << ADC_STARTUP_SHIFT) & ADC_STARTUP_MASK);
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LOG_INFO("sttime[%ld]\n", (ADC_COMPUTED_STARTUPTIME << ADC_STARTUP_SHIFT) & ADC_STARTUP_MASK);
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//Apply computed sample and hold time
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ADC_MR &= ~ADC_SHTIME_MASK;
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ADC_MR |= ((ADC_COMPUTED_SHTIME << ADC_SHTIME_SHIFT) & ADC_SHTIME_MASK);
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LOG_INFO("shtime[%ld]\n", (ADC_COMPUTED_SHTIME << ADC_SHTIME_SHIFT) & ADC_SHTIME_MASK);
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#if CONFIG_KERN
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//Register and enable irq for adc.
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adc_enable_irq();
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#endif
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}
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