+++ /dev/null
-# Hey Emacs, this is a -*- makefile -*-
-
-# Goals available on make command line:
-#
-# [all] Default goal: build the project.
-# clean Clean up the project.
-# rebuild Rebuild the project.
-# ccversion Display CC version information.
-# cppfiles file.i Generate preprocessed files from C source files.
-# asfiles file.x Generate preprocessed assembler files from C and assembler source files.
-# objfiles file.o Generate object files from C and assembler source files.
-# a file.a Archive: create A output file from object files.
-# elf file.elf Link: create ELF output file from object files.
-# lss file.lss Create extended listing from target output file.
-# sym file.sym Create symbol table from target output file.
-# hex file.hex Create Intel HEX image from ELF output file.
-# bin file.bin Create binary image from ELF output file.
-# sizes Display target size information.
-# isp Use ISP instead of JTAGICE mkII when programming.
-# cpuinfo Get CPU information.
-# halt Stop CPU execution.
-# chiperase Perform a JTAG Chip Erase command.
-# erase Perform a flash chip erase.
-# program Program MCU memory from ELF output file.
-# secureflash Protect chip by setting security bit.
-# reset Reset MCU.
-# debug Open a debug connection with the MCU.
-# run Start CPU execution.
-# readregs Read CPU registers.
-# doc Build the documentation.
-# cleandoc Clean up the documentation.
-# rebuilddoc Rebuild the documentation.
-# verbose Display main executed commands.
-
-# Copyright (c) 2007, Atmel Corporation All rights reserved.
-#
-# Redistribution and use in source and binary forms, with or without
-# modification, are permitted provided that the following conditions are met:
-#
-# 1. Redistributions of source code must retain the above copyright notice, this
-# list of conditions and the following disclaimer.
-#
-# 2. Redistributions in binary form must reproduce the above copyright notice,
-# this list of conditions and the following disclaimer in the documentation and/
-# or other materials provided with the distribution.
-#
-# 3. The name of ATMEL may not be used to endorse or promote products derived
-# from this software without specific prior written permission.
-#
-# THIS SOFTWARE IS PROVIDED BY ATMEL ``AS IS'' AND ANY EXPRESS OR IMPLIED
-# WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF
-# MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE EXPRESSLY AND
-# SPECIFICALLY DISCLAIMED. IN NO EVENT SHALL ATMEL BE LIABLE FOR ANY DIRECT,
-# INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING,
-# BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
-# DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY
-# OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING
-# NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE,
-# EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
-
-
-# ** ** ** *** ** ** ** ** ** ** ** ** ** ** **
-# ENVIRONMENT SETTINGS
-# ** ** ** *** ** ** ** ** ** ** ** ** ** ** **
-
-FirstWord = $(if $(1),$(word 1,$(1)))
-LastWord = $(if $(1),$(word $(words $(1)),$(1)))
-
-MAKE = make
-MAKECFG = config.mk
-TGTTYPE = $(suffix $(TARGET))
-
-RM = rm -Rf
-
-AR = avr32-ar
-ARFLAGS = rcs
-
-CPP = $(CC) -E
-CPPFLAGS = -march=$(ARCH) -mpart=$(PART) $(WARNINGS) $(DEFS) \
- $(PLATFORM_INC_PATH:%=-I%) $(INC_PATH:%=-I%) $(CPP_EXTRA_FLAGS)
-DPNDFILES = $(CSRCS:.c=.d) $(ASSRCS:.S=.d)
-CPPFILES = $(CSRCS:.c=.i)
-
-CC = avr32-gcc
-CFLAGS = $(DEBUG) $(OPTIMIZATION) $(C_EXTRA_FLAGS) \
- $(PLATFORM_INC_PATH:%=-Wa,-I%) $(INC_PATH:%=-Wa,-I%) $(AS_EXTRA_FLAGS)
-ASFILES = $(CSRCS:.c=.x) $(ASSRCS:.S=.x)
-
-AS = avr32-as
-ASFLAGS = $(DEBUG) \
- $(PLATFORM_INC_PATH:%=-Wa,-I%) $(INC_PATH:%=-Wa,-I%) $(AS_EXTRA_FLAGS)
-OBJFILES = $(CSRCS:.c=.o) $(ASSRCS:.S=.o)
-
-LD = avr32-ld
-LDFLAGS = -march=$(ARCH) -mpart=$(PART) \
- $(LIB_PATH:%=-L%) $(LINKER_SCRIPT:%=-T%) $(LD_EXTRA_FLAGS)
-LOADLIBES =
-LDLIBS = $(LIBS:%=-l%)
-
-OBJDUMP = avr32-objdump
-LSS = $(TARGET:$(TGTTYPE)=.lss)
-
-NM = avr32-nm
-SYM = $(TARGET:$(TGTTYPE)=.sym)
-
-OBJCOPY = avr32-objcopy
-HEX = $(TARGET:$(TGTTYPE)=.hex)
-BIN = $(TARGET:$(TGTTYPE)=.bin)
-
-SIZE = avr32-size
-
-SLEEP = sleep
-SLEEPUSB = 9
-
-PROGRAM = avr32program
-
-ISP = batchisp
-ISPFLAGS = -device at32$(PART) -hardware usb -operation
-
-DBGPROXY = avr32gdbproxy
-
-DOCGEN = doxygen
-
-
-# ** ** ** *** ** ** ** ** ** ** ** ** ** ** **
-# MESSAGES
-# ** ** ** *** ** ** ** ** ** ** ** ** ** ** **
-
-ERR_TARGET_TYPE = Target type not supported: `$(TGTTYPE)'
-MSG_CLEANING = Cleaning project.
-MSG_PREPROCESSING = Preprocessing \`$<\' to \`$@\'.
-MSG_COMPILING = Compiling \`$<\' to \`$@\'.
-MSG_ASSEMBLING = Assembling \`$<\' to \`$@\'.
-MSG_ARCHIVING = Archiving to \`$@\'.
-MSG_LINKING = Linking to \`$@\'.
-MSG_EXTENDED_LISTING = Creating extended listing to \`$@\'.
-MSG_SYMBOL_TABLE = Creating symbol table to \`$@\'.
-MSG_IHEX_IMAGE = Creating Intel HEX image to \`$@\'.
-MSG_BINARY_IMAGE = Creating binary image to \`$@\'.
-MSG_GETTING_CPU_INFO = Getting CPU information.
-MSG_HALTING = Stopping CPU execution.
-MSG_ERASING_CHIP = Performing a JTAG Chip Erase command.
-MSG_ERASING = Performing a flash chip erase.
-MSG_PROGRAMMING = Programming MCU memory from \`$(TARGET)\'.
-MSG_SECURING_FLASH = Protecting chip by setting security bit.
-MSG_RESETTING = Resetting MCU.
-MSG_DEBUGGING = Opening debug connection with MCU.
-MSG_RUNNING = Starting CPU execution.
-MSG_READING_CPU_REGS = Reading CPU registers.
-MSG_CLEANING_DOC = Cleaning documentation.
-MSG_GENERATING_DOC = Generating documentation to \`$(DOC_PATH)\'.
-
-
-# ** ** ** *** ** ** ** ** ** ** ** ** ** ** **
-# MAKE RULES
-# ** ** ** *** ** ** ** ** ** ** ** ** ** ** **
-
-# Include the make configuration file.
-include $(MAKECFG)
-
-# ** ** TOP-LEVEL RULES ** **
-
-# Default goal: build the project.
-ifeq ($(TGTTYPE),.a)
-.PHONY: all
-all: ccversion a lss sym sizes
-else
-ifeq ($(TGTTYPE),.elf)
-.PHONY: all
-all: ccversion elf lss sym hex bin sizes
-else
-$(error $(ERR_TARGET_TYPE))
-endif
-endif
-
-# Clean up the project.
-.PHONY: clean
-clean:
- @echo $(MSG_CLEANING)
- -$(VERBOSE_CMD)$(RM) $(BIN)
- -$(VERBOSE_CMD)$(RM) $(HEX)
- -$(VERBOSE_CMD)$(RM) $(SYM)
- -$(VERBOSE_CMD)$(RM) $(LSS)
- -$(VERBOSE_CMD)$(RM) $(TARGET)
- -$(VERBOSE_CMD)$(RM) $(OBJFILES)
- -$(VERBOSE_CMD)$(RM) $(ASFILES)
- -$(VERBOSE_CMD)$(RM) $(CPPFILES)
- -$(VERBOSE_CMD)$(RM) $(DPNDFILES)
- $(VERBOSE_NL)
-
-# Rebuild the project.
-.PHONY: rebuild
-rebuild: clean all
-
-# Display CC version information.
-.PHONY: ccversion
-ccversion:
- @echo
- @echo
- @$(CC) --version
-
-# Generate preprocessed files from C source files.
-.PHONY: cppfiles
-cppfiles: $(CPPFILES)
-
-# Generate preprocessed assembler files from C and assembler source files.
-.PHONY: asfiles
-asfiles: $(ASFILES)
-
-# Generate object files from C and assembler source files.
-.PHONY: objfiles
-objfiles: $(OBJFILES)
-
-ifeq ($(TGTTYPE),.a)
-# Archive: create A output file from object files.
-.PHONY: a
-a: $(TARGET)
-else
-ifeq ($(TGTTYPE),.elf)
-# Link: create ELF output file from object files.
-.PHONY: elf
-elf: $(TARGET)
-endif
-endif
-
-# Create extended listing from target output file.
-.PHONY: lss
-lss: $(LSS)
-
-# Create symbol table from target output file.
-.PHONY: sym
-sym: $(SYM)
-
-ifeq ($(TGTTYPE),.elf)
-
-# Create Intel HEX image from ELF output file.
-.PHONY: hex
-hex: $(HEX)
-
-# Create binary image from ELF output file.
-.PHONY: bin
-bin: $(BIN)
-
-endif
-
-# Display target size information.
-.PHONY: sizes
-sizes: $(TARGET)
- @echo
- @echo
-ifeq ($(TGTTYPE),.a)
- @$(SIZE) -Bxt $<
-else
-ifeq ($(TGTTYPE),.elf)
- @$(SIZE) -Ax $<
- @$(SIZE) -Bx $<
-endif
-endif
- @echo
- @echo
-
-ifeq ($(TGTTYPE),.elf)
-
-# Use ISP instead of JTAGICE mkII when programming.
-.PHONY: isp
-ifeq ($(filter-out isp verbose,$(MAKECMDGOALS)),)
-isp: all
-else
-isp:
- @:
-endif
-
-ifeq ($(findstring isp,$(MAKECMDGOALS)),)
-
-# Get CPU information.
-.PHONY: cpuinfo
-cpuinfo:
- @echo
- @echo $(MSG_GETTING_CPU_INFO)
- $(VERBOSE_CMD)$(PROGRAM) cpuinfo
-ifneq ($(call LastWord,$(filter cpuinfo chiperase erase program secureflash reset debug run readregs,$(MAKECMDGOALS))),cpuinfo)
- @$(SLEEP) $(SLEEPUSB)
-else
- @echo
-endif
-
-# Stop CPU execution.
-.PHONY: halt
-halt:
-ifeq ($(filter cpuinfo chiperase erase program secureflash reset run readregs,$(MAKECMDGOALS)),)
- @echo
- @echo $(MSG_HALTING)
- $(VERBOSE_CMD)$(PROGRAM) halt
-ifneq ($(call LastWord,$(filter halt debug,$(MAKECMDGOALS))),halt)
- @$(SLEEP) $(SLEEPUSB)
-else
- @echo
-endif
-else
- @:
-endif
-
-# Perform a JTAG Chip Erase command.
-.PHONY: chiperase
-chiperase:
- @echo
- @echo $(MSG_ERASING_CHIP)
- $(VERBOSE_CMD)$(PROGRAM) chiperase
-ifneq ($(call LastWord,$(filter cpuinfo chiperase program secureflash reset debug run readregs,$(MAKECMDGOALS))),chiperase)
- @$(SLEEP) $(SLEEPUSB)
-else
- @echo
-endif
-
-# Perform a flash chip erase.
-.PHONY: erase
-erase:
-ifeq ($(filter chiperase program,$(MAKECMDGOALS)),)
- @echo
- @echo $(MSG_ERASING)
- $(VERBOSE_CMD)$(PROGRAM) erase $(FLASH:%=-f%)
-ifneq ($(call LastWord,$(filter cpuinfo erase secureflash reset debug run readregs,$(MAKECMDGOALS))),erase)
- @$(SLEEP) $(SLEEPUSB)
-else
- @echo
-endif
-else
- @:
-endif
-
-# Program MCU memory from ELF output file.
-.PHONY: program
-program: all
- @echo
- @echo $(MSG_PROGRAMMING)
- $(VERBOSE_CMD)$(PROGRAM) program $(FLASH:%=-f%) $(PROG_CLOCK:%=-c%) -e -v -R $(if $(findstring run,$(MAKECMDGOALS)),-r) $(TARGET)
-ifneq ($(call LastWord,$(filter cpuinfo chiperase program secureflash debug readregs,$(MAKECMDGOALS))),program)
- @$(SLEEP) $(SLEEPUSB)
-else
- @echo
-endif
-
-# Protect chip by setting security bit.
-.PHONY: secureflash
-secureflash:
- @echo
- @echo $(MSG_SECURING_FLASH)
- $(VERBOSE_CMD)$(PROGRAM) secureflash
-ifneq ($(call LastWord,$(filter cpuinfo chiperase erase program secureflash reset debug run readregs,$(MAKECMDGOALS))),secureflash)
- @$(SLEEP) $(SLEEPUSB)
-else
- @echo
-endif
-
-# Reset MCU.
-.PHONY: reset
-reset:
-ifeq ($(filter program run,$(MAKECMDGOALS)),)
- @echo
- @echo $(MSG_RESETTING)
- $(VERBOSE_CMD)$(PROGRAM) reset
-ifneq ($(call LastWord,$(filter cpuinfo chiperase erase secureflash reset debug readregs,$(MAKECMDGOALS))),reset)
- @$(SLEEP) $(SLEEPUSB)
-else
- @echo
-endif
-else
- @:
-endif
-
-# Open a debug connection with the MCU.
-.PHONY: debug
-debug:
- @echo
- @echo $(MSG_DEBUGGING)
- $(VERBOSE_CMD)$(DBGPROXY) $(FLASH:%=-f%)
-ifneq ($(call LastWord,$(filter cpuinfo halt chiperase erase program secureflash reset debug run readregs,$(MAKECMDGOALS))),debug)
- @$(SLEEP) $(SLEEPUSB)
-else
- @echo
-endif
-
-# Start CPU execution.
-.PHONY: run
-run:
-ifeq ($(findstring program,$(MAKECMDGOALS)),)
- @echo
- @echo $(MSG_RUNNING)
- $(VERBOSE_CMD)$(PROGRAM) run $(if $(findstring reset,$(MAKECMDGOALS)),-R)
-ifneq ($(call LastWord,$(filter cpuinfo chiperase erase secureflash debug run readregs,$(MAKECMDGOALS))),run)
- @$(SLEEP) $(SLEEPUSB)
-else
- @echo
-endif
-else
- @:
-endif
-
-# Read CPU registers.
-.PHONY: readregs
-readregs:
- @echo
- @echo $(MSG_READING_CPU_REGS)
- $(VERBOSE_CMD)$(PROGRAM) readregs
-ifneq ($(call LastWord,$(filter cpuinfo chiperase erase program secureflash reset debug run readregs,$(MAKECMDGOALS))),readregs)
- @$(SLEEP) $(SLEEPUSB)
-else
- @echo
-endif
-
-else
-
-# Perform a flash chip erase.
-.PHONY: erase
-erase:
-ifeq ($(findstring program,$(MAKECMDGOALS)),)
- @echo
- @echo $(MSG_ERASING)
- $(VERBOSE_CMD)$(ISP) $(ISPFLAGS) erase f memory flash blankcheck
-ifeq ($(call LastWord,$(filter erase secureflash debug run,$(MAKECMDGOALS))),erase)
- @echo
-endif
-else
- @:
-endif
-
-# Program MCU memory from ELF output file.
-.PHONY: program
-program: all
- @echo
- @echo $(MSG_PROGRAMMING)
- $(VERBOSE_CMD)$(ISP) $(ISPFLAGS) erase f memory flash blankcheck loadbuffer $(TARGET) program verify $(if $(findstring run,$(MAKECMDGOALS)),$(if $(findstring secureflash,$(MAKECMDGOALS)),,start $(if $(findstring reset,$(MAKECMDGOALS)),,no)reset 0))
-ifeq ($(call LastWord,$(filter program secureflash debug,$(MAKECMDGOALS))),program)
- @echo
-endif
-
-# Protect chip by setting security bit.
-.PHONY: secureflash
-secureflash:
- @echo
- @echo $(MSG_SECURING_FLASH)
- $(VERBOSE_CMD)$(ISP) $(ISPFLAGS) memory security addrange 0x0 0x0 fillbuffer 0x01 program $(if $(findstring run,$(MAKECMDGOALS)),start $(if $(findstring reset,$(MAKECMDGOALS)),,no)reset 0)
-ifeq ($(call LastWord,$(filter erase program secureflash debug,$(MAKECMDGOALS))),secureflash)
- @echo
-endif
-
-# Reset MCU.
-.PHONY: reset
-reset:
- @:
-
-# Open a debug connection with the MCU.
-.PHONY: debug
-debug:
- @echo
- @echo $(MSG_DEBUGGING)
- $(VERBOSE_CMD)$(DBGPROXY) $(FLASH:%=-f%)
-ifeq ($(call LastWord,$(filter erase program secureflash debug run,$(MAKECMDGOALS))),debug)
- @echo
-endif
-
-# Start CPU execution.
-.PHONY: run
-run:
-ifeq ($(filter program secureflash,$(MAKECMDGOALS)),)
- @echo
- @echo $(MSG_RUNNING)
- $(VERBOSE_CMD)$(ISP) $(ISPFLAGS) start $(if $(findstring reset,$(MAKECMDGOALS)),,no)reset 0
-ifeq ($(call LastWord,$(filter erase debug run,$(MAKECMDGOALS))),run)
- @echo
-endif
-else
- @:
-endif
-
-endif
-
-endif
-
-# Build the documentation.
-.PHONY: doc
-doc:
- @echo
- @echo $(MSG_GENERATING_DOC)
- $(VERBOSE_CMD)cd $(dir $(DOC_CFG)) && $(DOCGEN) $(notdir $(DOC_CFG))
- @echo
-
-# Clean up the documentation.
-.PHONY: cleandoc
-cleandoc:
- @echo $(MSG_CLEANING_DOC)
- -$(VERBOSE_CMD)$(RM) $(DOC_PATH)
- $(VERBOSE_NL)
-
-# Rebuild the documentation.
-.PHONY: rebuilddoc
-rebuilddoc: cleandoc doc
-
-# Display main executed commands.
-.PHONY: verbose
-ifeq ($(filter-out isp verbose,$(MAKECMDGOALS)),)
-verbose: all
-else
-verbose:
- @:
-endif
-ifneq ($(findstring verbose,$(MAKECMDGOALS)),)
-# Prefix displaying the following command if and only if verbose is a goal.
-VERBOSE_CMD =
-# New line displayed if and only if verbose is a goal.
-VERBOSE_NL = @echo
-else
-VERBOSE_CMD = @
-VERBOSE_NL =
-endif
-
-# ** ** COMPILATION RULES ** **
-
-# Include silently the dependency files.
--include $(DPNDFILES)
-
-# The dependency files are not built alone but along with first generation files.
-$(DPNDFILES):
-
-# First generation files depend on make files.
-$(CPPFILES) $(ASFILES) $(OBJFILES): Makefile $(MAKECFG)
-
-ifeq ($(TGTTYPE),.elf)
-# Files resulting from linking depend on linker script.
-$(TARGET): $(LINKER_SCRIPT)
-endif
-
-# Preprocess: create preprocessed files from C source files.
-%.i: %.c %.d
- @echo $(MSG_PREPROCESSING)
- $(VERBOSE_CMD)$(CPP) $(CPPFLAGS) -MD -MP -MT '$*.i $*.x $*.o' -o $@ $<
- @touch $*.d
- @touch $@
- $(VERBOSE_NL)
-
-# Preprocess & compile: create assembler files from C source files.
-%.x: %.c %.d
- @echo $(MSG_COMPILING)
- $(VERBOSE_CMD)$(CC) -S $(CPPFLAGS) -MD -MP -MT '$*.i $*.o' $(CFLAGS) -o $@ $<
- @touch $*.d
- @touch $@
- $(VERBOSE_NL)
-
-# Preprocess: create preprocessed files from assembler source files.
-%.x: %.S %.d
- @echo $(MSG_PREPROCESSING)
- $(VERBOSE_CMD)$(CPP) $(CPPFLAGS) -MD -MP -MT '$*.x $*.o' -o $@ $<
- @touch $*.d
- @touch $@
- $(VERBOSE_NL)
-
-# Preprocess, compile & assemble: create object files from C source files.
-%.o: %.c %.d
- @echo $(MSG_COMPILING)
- $(VERBOSE_CMD)$(CC) -c $(CPPFLAGS) -MD -MP -MT '$*.i $*.x' $(CFLAGS) -o $@ $<
- @touch $*.d
- @touch $@
- $(VERBOSE_NL)
-
-# Preprocess & assemble: create object files from assembler source files.
-%.o: %.S %.d
- @echo $(MSG_ASSEMBLING)
- $(VERBOSE_CMD)$(CC) -c $(CPPFLAGS) -MD -MP -MT '$*.x' $(ASFLAGS) -o $@ $<
- @touch $*.d
- @touch $@
- $(VERBOSE_NL)
-
-.PRECIOUS: $(OBJFILES)
-ifeq ($(TGTTYPE),.a)
-# Archive: create A output file from object files.
-.SECONDARY: $(TARGET)
-$(TARGET): $(OBJFILES)
- @echo $(MSG_ARCHIVING)
- $(VERBOSE_CMD)$(AR) $(ARFLAGS) $@ $(filter %.o,$+)
- $(VERBOSE_NL)
-else
-ifeq ($(TGTTYPE),.elf)
-# Link: create ELF output file from object files.
-.SECONDARY: $(TARGET)
-$(TARGET): $(OBJFILES)
- @echo $(MSG_LINKING)
- $(VERBOSE_CMD)$(CC) $(LDFLAGS) $(filter %.o,$+) $(LOADLIBES) $(LDLIBS) -o $@
- $(VERBOSE_NL)
-endif
-endif
-
-# Create extended listing from target output file.
-$(LSS): $(TARGET)
- @echo $(MSG_EXTENDED_LISTING)
- $(VERBOSE_CMD)$(OBJDUMP) -h -S $< > $@
- $(VERBOSE_NL)
-
-# Create symbol table from target output file.
-$(SYM): $(TARGET)
- @echo $(MSG_SYMBOL_TABLE)
- $(VERBOSE_CMD)$(NM) -n $< > $@
- $(VERBOSE_NL)
-
-ifeq ($(TGTTYPE),.elf)
-
-# Create Intel HEX image from ELF output file.
-$(HEX): $(TARGET)
- @echo $(MSG_IHEX_IMAGE)
- $(VERBOSE_CMD)$(OBJCOPY) -O ihex $< $@
- $(VERBOSE_NL)
-
-# Create binary image from ELF output file.
-$(BIN): $(TARGET)
- @echo $(MSG_BINARY_IMAGE)
- $(VERBOSE_CMD)$(OBJCOPY) -O binary $< $@
- $(VERBOSE_NL)
-
-endif
+++ /dev/null
-# Hey Emacs, this is a -*- makefile -*-
-
-# The purpose of this file is to define the build configuration variables used
-# by the generic Makefile. See Makefile header for further information.
-
-# Copyright (c) 2007, Atmel Corporation All rights reserved.
-#
-# Redistribution and use in source and binary forms, with or without
-# modification, are permitted provided that the following conditions are met:
-#
-# 1. Redistributions of source code must retain the above copyright notice, this
-# list of conditions and the following disclaimer.
-#
-# 2. Redistributions in binary form must reproduce the above copyright notice,
-# this list of conditions and the following disclaimer in the documentation and/
-# or other materials provided with the distribution.
-#
-# 3. The name of ATMEL may not be used to endorse or promote products derived
-# from this software without specific prior written permission.
-#
-# THIS SOFTWARE IS PROVIDED BY ATMEL ``AS IS'' AND ANY EXPRESS OR IMPLIED
-# WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF
-# MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE EXPRESSLY AND
-# SPECIFICALLY DISCLAIMED. IN NO EVENT SHALL ATMEL BE LIABLE FOR ANY DIRECT,
-# INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING,
-# BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
-# DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY
-# OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING
-# NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE,
-# EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
-
-
-# Base paths
-PRJ_PATH = ../..
-APPS_PATH = $(PRJ_PATH)/APPLICATIONS
-BRDS_PATH = $(PRJ_PATH)/BOARDS
-COMP_PATH = $(PRJ_PATH)/COMPONENTS
-DRVR_PATH = $(PRJ_PATH)/DRIVERS
-SERV_PATH = $(PRJ_PATH)/SERVICES
-UTIL_PATH = $(PRJ_PATH)/UTILS
-
-# CPU architecture: {ap|uc}
-ARCH = uc
-
-# Part: {none|ap7xxx|uc3xxxxx}
-PART = uc3a0512
-
-# Flash memories: [{cfi|internal}@address,size]...
-FLASH = internal@0x80000000,512Kb
-
-# Clock source to use when programming: [{xtal|extclk|int}]
-PROG_CLOCK = xtal
-
-# Device/Platform/Board include path
-PLATFORM_INC_PATH = \
- $(BRDS_PATH)/
-
-# Target name: {*.a|*.elf}
-TARGET = $(PART)-rtosdemo.elf
-
-# Definitions: [-D name[=definition]...] [-U name...]
-# Things that might be added to DEFS:
-# BOARD Board used: {EVKxxxx}
-# EXT_BOARD Extension board used (if any): {EXTxxxx}
-DEFS = -D BOARD=EVK1100
-
-# Include path
-INC_PATH = \
- $(UTIL_PATH)/ \
- $(UTIL_PATH)/PREPROCESSOR/ \
- $(SERV_PATH)/USB/CLASS/DFU/EXAMPLES/ISP/BOOT/ \
- $(DRVR_PATH)/INTC/ \
- $(DRVR_PATH)/PM/ \
- $(DRVR_PATH)/GPIO/ \
- $(DRVR_PATH)/TC/ \
- ../../../../Source/portable/GCC/AVR32_UC3/ \
- ../../../../Source/include/ \
- ../../../Common/include/ \
- ../../
-
-# C source files
-CSRCS = \
- $(BRDS_PATH)/EVK1100/led.c \
- $(DRVR_PATH)/INTC/intc.c \
- $(DRVR_PATH)/PM/pm.c \
- $(DRVR_PATH)/GPIO/gpio.c \
- $(DRVR_PATH)/TC/tc.c \
- ../../../../Source/portable/GCC/AVR32_UC3/port.c \
- ../../../../Source/portable/MemMang/heap_3.c \
- ../../../../Source/list.c \
- ../../../../Source/queue.c \
- ../../../../Source/tasks.c \
- ../../../Common/Minimal/BlockQ.c \
- ../../../Common/Minimal/comtest.c \
- ../../../Common/Minimal/death.c \
- ../../../Common/Minimal/dynamic.c \
- ../../../Common/Minimal/flash.c \
- ../../../Common/Minimal/flop.c \
- ../../../Common/Minimal/integer.c \
- ../../../Common/Minimal/PollQ.c \
- ../../../Common/Minimal/semtest.c \
- ../../ParTest/ParTest.c \
- ../../serial/serial.c \
- ../../main.c
-
-# Assembler source files
-ASSRCS = \
- $(SERV_PATH)/USB/CLASS/DFU/EXAMPLES/ISP/BOOT/trampoline.S \
- ../../../../Source/portable/GCC/AVR32_UC3/exception.S
-
-# Library path
-LIB_PATH =
-
-# Libraries to link with the project
-LIBS =
-
-# Linker script file if any
-LINKER_SCRIPT = $(UTIL_PATH)/LINKER_SCRIPTS/AT32UC3A/0512/GCC/link_uc3a0512.lds
-
-# Options to request or suppress warnings: [-fsyntax-only] [-pedantic[-errors]] [-w] [-Wwarning...]
-# For further details, refer to the chapter "GCC Command Options" of the GCC manual.
-WARNINGS = -Wall
-
-# Options for debugging: [-g]...
-# For further details, refer to the chapter "GCC Command Options" of the GCC manual.
-DEBUG = -g
-
-# Options that control optimization: [-O[0|1|2|3|s]]...
-# For further details, refer to the chapter "GCC Command Options" of the GCC manual.
-OPTIMIZATION = -O0 -ffunction-sections -fdata-sections
-
-# Extra flags to use when preprocessing
-CPP_EXTRA_FLAGS =
-
-# Extra flags to use when compiling
-C_EXTRA_FLAGS =
-
-# Extra flags to use when assembling
-AS_EXTRA_FLAGS =
-
-# Extra flags to use when linking
-LD_EXTRA_FLAGS = -Wl,--gc-sections -Wl,-e,_trampoline
-
-# Documentation path
-DOC_PATH = \
- ../../DOC/
-
-# Documentation configuration file
-DOC_CFG = \
- ../doxyfile.doxygen
+++ /dev/null
-target extended-remote :1024
-symbol uc3a0512-rtosdemo.elf
-
-b _handle_Unrecoverable_Exception
-b _handle_TLB_Multiple_Hit
-b _handle_Bus_Error_Data_Fetch
-b _handle_Bus_Error_Instruction_Fetch
-b _handle_NMI
-b _handle_Instruction_Address
-b _handle_ITLB_Protection
-b _handle_Breakpoint
-b _handle_Illegal_Opcode
-b _handle_Unimplemented_Instruction
-b _handle_Privilege_Violation
-b _handle_Floating_Point
-b _handle_Coprocessor_Absent
-b _handle_Data_Address_Read
-b _handle_Data_Address_Write
-b _handle_DTLB_Protection_Read
-b _handle_DTLB_Protection_Write
-b _handle_DTLB_Modified
-b _handle_ITLB_Miss
-b _handle_DTLB_Miss_Read
-b _handle_DTLB_Miss_Write
-
-define current_task
-printf "Task name: %s\n", ((tskTCB *)pxCurrentTCB)->pcTaskName
-printf "pxTopOfStack: %x\n", ((tskTCB *)pxCurrentTCB)->pxTopOfStack
-end
+++ /dev/null
-target extended-remote :4711\r
-symbol uc3a0512-rtosdemo.elf\r
-\r
-b _handle_Unrecoverable_Exception\r
-b _handle_TLB_Multiple_Hit\r
-b _handle_Bus_Error_Data_Fetch\r
-b _handle_Bus_Error_Instruction_Fetch\r
-b _handle_NMI\r
-b _handle_Instruction_Address\r
-b _handle_ITLB_Protection\r
-b _handle_Breakpoint\r
-b _handle_Illegal_Opcode\r
-b _handle_Unimplemented_Instruction\r
-b _handle_Privilege_Violation\r
-b _handle_Floating_Point\r
-b _handle_Coprocessor_Absent\r
-b _handle_Data_Address_Read\r
-b _handle_Data_Address_Write\r
-b _handle_DTLB_Protection_Read\r
-b _handle_DTLB_Protection_Write\r
-b _handle_DTLB_Modified\r
-b _handle_ITLB_Miss\r
-b _handle_DTLB_Miss_Read\r
-b _handle_DTLB_Miss_Write\r
-\r
-define current_task\r
-printf "Task name: %s\n", ((tskTCB *)pxCurrentTCB)->pcTaskName\r
-printf "pxTopOfStack: %x\n", ((tskTCB *)pxCurrentTCB)->pxTopOfStack\r
-end\r
+++ /dev/null
-This is an internal working file generated by the Source Browser.\r
-20:15 21s\r
-C:\E\Dev\FreeRTOS\Releases\Code\V4.5.0\Demo\AVR32_UC3\AT32UC3A\IAR\Debug\Obj\BlockQ.pbi\r
-C:\E\Dev\FreeRTOS\Releases\Code\V4.5.0\Demo\AVR32_UC3\AT32UC3A\IAR\Debug\Obj\ParTest.pbi\r
-C:\E\Dev\FreeRTOS\Releases\Code\V4.5.0\Demo\AVR32_UC3\AT32UC3A\IAR\Debug\Obj\PollQ.pbi\r
-C:\E\Dev\FreeRTOS\Releases\Code\V4.5.0\Demo\AVR32_UC3\AT32UC3A\IAR\Debug\Obj\comtest.pbi\r
-C:\E\Dev\FreeRTOS\Releases\Code\V4.5.0\Demo\AVR32_UC3\AT32UC3A\IAR\Debug\Obj\death.pbi\r
-C:\E\Dev\FreeRTOS\Releases\Code\V4.5.0\Demo\AVR32_UC3\AT32UC3A\IAR\Debug\Obj\dynamic.pbi\r
-C:\E\Dev\FreeRTOS\Releases\Code\V4.5.0\Demo\AVR32_UC3\AT32UC3A\IAR\Debug\Obj\flash.pbi\r
-C:\E\Dev\FreeRTOS\Releases\Code\V4.5.0\Demo\AVR32_UC3\AT32UC3A\IAR\Debug\Obj\flop.pbi\r
-C:\E\Dev\FreeRTOS\Releases\Code\V4.5.0\Demo\AVR32_UC3\AT32UC3A\IAR\Debug\Obj\gpio.pbi\r
-C:\E\Dev\FreeRTOS\Releases\Code\V4.5.0\Demo\AVR32_UC3\AT32UC3A\IAR\Debug\Obj\heap_3.pbi\r
-C:\E\Dev\FreeRTOS\Releases\Code\V4.5.0\Demo\AVR32_UC3\AT32UC3A\IAR\Debug\Obj\intc.pbi\r
-C:\E\Dev\FreeRTOS\Releases\Code\V4.5.0\Demo\AVR32_UC3\AT32UC3A\IAR\Debug\Obj\integer.pbi\r
-C:\E\Dev\FreeRTOS\Releases\Code\V4.5.0\Demo\AVR32_UC3\AT32UC3A\IAR\Debug\Obj\led.pbi\r
-C:\E\Dev\FreeRTOS\Releases\Code\V4.5.0\Demo\AVR32_UC3\AT32UC3A\IAR\Debug\Obj\list.pbi\r
-C:\E\Dev\FreeRTOS\Releases\Code\V4.5.0\Demo\AVR32_UC3\AT32UC3A\IAR\Debug\Obj\main.pbi\r
-C:\E\Dev\FreeRTOS\Releases\Code\V4.5.0\Demo\AVR32_UC3\AT32UC3A\IAR\Debug\Obj\pm.pbi\r
-C:\E\Dev\FreeRTOS\Releases\Code\V4.5.0\Demo\AVR32_UC3\AT32UC3A\IAR\Debug\Obj\port.pbi\r
-C:\E\Dev\FreeRTOS\Releases\Code\V4.5.0\Demo\AVR32_UC3\AT32UC3A\IAR\Debug\Obj\queue.pbi\r
-C:\E\Dev\FreeRTOS\Releases\Code\V4.5.0\Demo\AVR32_UC3\AT32UC3A\IAR\Debug\Obj\read.pbi\r
-C:\E\Dev\FreeRTOS\Releases\Code\V4.5.0\Demo\AVR32_UC3\AT32UC3A\IAR\Debug\Obj\semtest.pbi\r
-C:\E\Dev\FreeRTOS\Releases\Code\V4.5.0\Demo\AVR32_UC3\AT32UC3A\IAR\Debug\Obj\serial.pbi\r
-C:\E\Dev\FreeRTOS\Releases\Code\V4.5.0\Demo\AVR32_UC3\AT32UC3A\IAR\Debug\Obj\tasks.pbi\r
-C:\E\Dev\FreeRTOS\Releases\Code\V4.5.0\Demo\AVR32_UC3\AT32UC3A\IAR\Debug\Obj\tc.pbi\r
-C:\E\Dev\FreeRTOS\Releases\Code\V4.5.0\Demo\AVR32_UC3\AT32UC3A\IAR\Debug\Obj\usart.pbi\r
-C:\E\Dev\FreeRTOS\Releases\Code\V4.5.0\Demo\AVR32_UC3\AT32UC3A\IAR\Debug\Obj\write.pbi\r
+++ /dev/null
-<?xml version="1.0" encoding="iso-8859-1"?>\r
-\r
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- </toolchain>\r
- <debug>1</debug>\r
- <settings>\r
- <name>C-SPY</name>\r
- <archiveVersion>2</archiveVersion>\r
- <data>\r
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- <name>CInput</name>\r
- <state>1</state>\r
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- <state>main</state>\r
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- <name>CMacFile</name>\r
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- <archiveVersion>3</archiveVersion>\r
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- <name>CJtagIceMkIIReset</name>\r
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- <name>CJtagIceMkIISWBreakpoints</name>\r
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- <name>CJtagIceMkIISuppressDownload</name>\r
- <state>0</state>\r
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- <name>CJtagIceMkIIVerifyDownload</name>\r
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- <name>CJTagIceMkIICommunicationLogging</name>\r
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- <name>CJtagIceMkIICommLogFile</name>\r
- <state></state>\r
- </option>\r
- <option>\r
- <name>CJtagIceMkIIConnectionRage</name>\r
- <version>0</version>\r
- <state>2</state>\r
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- <name>CJtagIceMkIIConnectionPort</name>\r
- <version>0</version>\r
- <state>0</state>\r
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- <name>CJtagIceMkIIJtagFrequence</name>\r
- <version>0</version>\r
- <state>8</state>\r
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- <option>\r
- <name>CJtagIceMkIIDaisyChain</name>\r
- <state>0</state>\r
- </option>\r
- <option>\r
- <name>CJtagIceMkIIDaisyChainBeforeDevices</name>\r
- <state>0</state>\r
- </option>\r
- <option>\r
- <name>CJtagIceMkIIDaisyChainBeforeBits</name>\r
- <state>0</state>\r
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- <name>CJtagIceMkIIDaisyChainAfterDevices</name>\r
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- <name>CJtagIceMkIIDaisyChainAfterBits</name>\r
- <state>0</state>\r
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- <option>\r
- <name>FlashLoaders</name>\r
- <state></state>\r
- </option>\r
- <option>\r
- <name>UseFlashLoader</name>\r
- <state>0</state>\r
- </option>\r
- </data>\r
- </settings>\r
- <settings>\r
- <name>SIMAVR32</name>\r
- <archiveVersion>2</archiveVersion>\r
- <data>\r
- <version>0</version>\r
- <wantNonLocal>1</wantNonLocal>\r
- <debug>1</debug>\r
- <option>\r
- <name>CSimMandatory</name>\r
- <state>1</state>\r
- </option>\r
- </data>\r
- </settings>\r
- <debuggerPlugins>\r
- <plugin>\r
- <file>$EW_DIR$\common\plugins\CodeCoverage\CodeCoverage.ENU.ewplugin</file>\r
- <loadFlag>1</loadFlag>\r
- </plugin>\r
- <plugin>\r
- <file>$EW_DIR$\common\plugins\Orti\Orti.ENU.ewplugin</file>\r
- <loadFlag>0</loadFlag>\r
- </plugin>\r
- <plugin>\r
- <file>$EW_DIR$\common\plugins\Profiling\Profiling.ENU.ewplugin</file>\r
- <loadFlag>1</loadFlag>\r
- </plugin>\r
- <plugin>\r
- <file>$EW_DIR$\common\plugins\Stack\Stack.ENU.ewplugin</file>\r
- <loadFlag>1</loadFlag>\r
- </plugin>\r
- </debuggerPlugins>\r
- </configuration>\r
- <configuration>\r
- <name>Release</name>\r
- <toolchain>\r
- <name>AVR32</name>\r
- </toolchain>\r
- <debug>0</debug>\r
- <settings>\r
- <name>C-SPY</name>\r
- <archiveVersion>2</archiveVersion>\r
- <data>\r
- <version>0</version>\r
- <wantNonLocal>1</wantNonLocal>\r
- <debug>0</debug>\r
- <option>\r
- <name>CMandatory</name>\r
- <state>1</state>\r
- </option>\r
- <option>\r
- <name>CInput</name>\r
- <state>1</state>\r
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- <option>\r
- <name>CCore</name>\r
- <state>0</state>\r
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- <option>\r
- <name>CRunToEnable</name>\r
- <state>1</state>\r
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- <name>CRunToName</name>\r
- <state>main</state>\r
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- <state>0</state>\r
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- <option>\r
- <name>CMacFile</name>\r
- <state></state>\r
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- <name>DynDriver</name>\r
- <state>JTAGICEMKIIAVR32</state>\r
- </option>\r
- <option>\r
- <name>DDFOverride</name>\r
- <state>0</state>\r
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- <option>\r
- <name>DDFFile</name>\r
- <state>$TOOLKIT_DIR$\config\iouc3a0512.ddf</state>\r
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- <state>0</state>\r
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- <name>IExtraOptionsCheck</name>\r
- <state>0</state>\r
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- <name>IExtraOptions</name>\r
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- <state>1</state>\r
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- </settings>\r
- <debuggerPlugins>\r
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- <file>$EW_DIR$\common\plugins\CodeCoverage\CodeCoverage.ENU.ewplugin</file>\r
- <loadFlag>1</loadFlag>\r
- </plugin>\r
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- <file>$EW_DIR$\common\plugins\Orti\Orti.ENU.ewplugin</file>\r
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- </plugin>\r
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- </plugin>\r
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- <file>$EW_DIR$\common\plugins\Stack\Stack.ENU.ewplugin</file>\r
- <loadFlag>1</loadFlag>\r
- </plugin>\r
- </debuggerPlugins>\r
- </configuration>\r
-</project>\r
-\r
-\r
+++ /dev/null
-<?xml version="1.0" encoding="iso-8859-1"?>\r
-\r
-<project>\r
- <fileVersion>1</fileVersion>\r
- <configuration>\r
- <name>Debug</name>\r
- <toolchain>\r
- <name>AVR32</name>\r
- </toolchain>\r
- <debug>1</debug>\r
- <settings>\r
- <name>General</name>\r
- <archiveVersion>2</archiveVersion>\r
- <data>\r
- <version>0</version>\r
- <wantNonLocal>1</wantNonLocal>\r
- <debug>1</debug>\r
- <option>\r
- <name>ProcessorCoreDyn</name>\r
- <state>at32uc3a0512</state>\r
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- <state>at32uc3a0512</state>\r
- </option>\r
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- <name>CodeModel</name>\r
- <state>1</state>\r
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- <name>DataModel</name>\r
- <state>1</state>\r
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- <state>0</state>\r
- </option>\r
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- <name>EnableRmwInstructions</name>\r
- <state>1</state>\r
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- <name>GAllowUnaligned</name>\r
- <state>0</state>\r
- </option>\r
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- <name>ExePath</name>\r
- <state>Debug\Exe</state>\r
- </option>\r
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- <name>ObjPath</name>\r
- <state>Debug\Obj</state>\r
- </option>\r
- <option>\r
- <name>ListPath</name>\r
- <state>Debug\List</state>\r
- </option>\r
- <option>\r
- <name>GRuntimeLibSelect</name>\r
- <version>0</version>\r
- <state>2</state>\r
- </option>\r
- <option>\r
- <name>GRuntimeLibSelectSlave</name>\r
- <version>0</version>\r
- <state>2</state>\r
- </option>\r
- <option>\r
- <name>RTDescription</name>\r
- <state>Use the full configuration of the C/EC++ runtime library. Full locale interface, C locale, file descriptor support, multibytes in printf and scanf, and hex floats in strtod.</state>\r
- </option>\r
- <option>\r
- <name>RTLibraryPath</name>\r
- <state>$TOOLKIT_DIR$\lib\dlavr32allaf.r82</state>\r
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- <name>RTConfigPath</name>\r
- <state>$TOOLKIT_DIR$\lib\dlavr32allaf.h</state>\r
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- <name>Input variant</name>\r
- <version>0</version>\r
- <state>1</state>\r
- </option>\r
- <option>\r
- <name>Input description</name>\r
- <state>No specifier n, no float.</state>\r
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- <option>\r
- <name>Output variant</name>\r
- <version>0</version>\r
- <state>1</state>\r
- </option>\r
- <option>\r
- <name>Output description</name>\r
- <state>No specifier a or A.</state>\r
- </option>\r
- <option>\r
- <name>GUnhandledInterrupts</name>\r
- <state>0</state>\r
- </option>\r
- <option>\r
- <name>GUnhandledExceptions</name>\r
- <state>0</state>\r
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- <name>GEnableTrace</name>\r
- <state>0</state>\r
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- <name>GTraceBufferSize</name>\r
- <version>0</version>\r
- <state>0</state>\r
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+++ /dev/null
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+++ /dev/null
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-endif
-
-# Perform a flash chip erase.
-.PHONY: erase
-erase:
-ifeq ($(filter chiperase program,$(MAKECMDGOALS)),)
- @echo
- @echo $(MSG_ERASING)
- $(VERBOSE_CMD)$(PROGRAM) erase $(FLASH:%=-f%)
-ifneq ($(call LastWord,$(filter cpuinfo erase secureflash reset debug run readregs,$(MAKECMDGOALS))),erase)
- @$(SLEEP) $(SLEEPUSB)
-else
- @echo
-endif
-else
- @:
-endif
-
-# Program MCU memory from ELF output file.
-.PHONY: program
-program: all
- @echo
- @echo $(MSG_PROGRAMMING)
- $(VERBOSE_CMD)$(PROGRAM) program $(FLASH:%=-f%) $(PROG_CLOCK:%=-c%) -e -v -R $(if $(findstring run,$(MAKECMDGOALS)),-r) $(TARGET)
-ifneq ($(call LastWord,$(filter cpuinfo chiperase program secureflash debug readregs,$(MAKECMDGOALS))),program)
- @$(SLEEP) $(SLEEPUSB)
-else
- @echo
-endif
-
-# Protect chip by setting security bit.
-.PHONY: secureflash
-secureflash:
- @echo
- @echo $(MSG_SECURING_FLASH)
- $(VERBOSE_CMD)$(PROGRAM) secureflash
-ifneq ($(call LastWord,$(filter cpuinfo chiperase erase program secureflash reset debug run readregs,$(MAKECMDGOALS))),secureflash)
- @$(SLEEP) $(SLEEPUSB)
-else
- @echo
-endif
-
-# Reset MCU.
-.PHONY: reset
-reset:
-ifeq ($(filter program run,$(MAKECMDGOALS)),)
- @echo
- @echo $(MSG_RESETTING)
- $(VERBOSE_CMD)$(PROGRAM) reset
-ifneq ($(call LastWord,$(filter cpuinfo chiperase erase secureflash reset debug readregs,$(MAKECMDGOALS))),reset)
- @$(SLEEP) $(SLEEPUSB)
-else
- @echo
-endif
-else
- @:
-endif
-
-# Open a debug connection with the MCU.
-.PHONY: debug
-debug:
- @echo
- @echo $(MSG_DEBUGGING)
- $(VERBOSE_CMD)$(DBGPROXY) $(FLASH:%=-f%)
-ifneq ($(call LastWord,$(filter cpuinfo halt chiperase erase program secureflash reset debug run readregs,$(MAKECMDGOALS))),debug)
- @$(SLEEP) $(SLEEPUSB)
-else
- @echo
-endif
-
-# Start CPU execution.
-.PHONY: run
-run:
-ifeq ($(findstring program,$(MAKECMDGOALS)),)
- @echo
- @echo $(MSG_RUNNING)
- $(VERBOSE_CMD)$(PROGRAM) run $(if $(findstring reset,$(MAKECMDGOALS)),-R)
-ifneq ($(call LastWord,$(filter cpuinfo chiperase erase secureflash debug run readregs,$(MAKECMDGOALS))),run)
- @$(SLEEP) $(SLEEPUSB)
-else
- @echo
-endif
-else
- @:
-endif
-
-# Read CPU registers.
-.PHONY: readregs
-readregs:
- @echo
- @echo $(MSG_READING_CPU_REGS)
- $(VERBOSE_CMD)$(PROGRAM) readregs
-ifneq ($(call LastWord,$(filter cpuinfo chiperase erase program secureflash reset debug run readregs,$(MAKECMDGOALS))),readregs)
- @$(SLEEP) $(SLEEPUSB)
-else
- @echo
-endif
-
-else
-
-# Perform a flash chip erase.
-.PHONY: erase
-erase:
-ifeq ($(findstring program,$(MAKECMDGOALS)),)
- @echo
- @echo $(MSG_ERASING)
- $(VERBOSE_CMD)$(ISP) $(ISPFLAGS) erase f memory flash blankcheck
-ifeq ($(call LastWord,$(filter erase secureflash debug run,$(MAKECMDGOALS))),erase)
- @echo
-endif
-else
- @:
-endif
-
-# Program MCU memory from ELF output file.
-.PHONY: program
-program: all
- @echo
- @echo $(MSG_PROGRAMMING)
- $(VERBOSE_CMD)$(ISP) $(ISPFLAGS) erase f memory flash blankcheck loadbuffer $(TARGET) program verify $(if $(findstring run,$(MAKECMDGOALS)),$(if $(findstring secureflash,$(MAKECMDGOALS)),,start $(if $(findstring reset,$(MAKECMDGOALS)),,no)reset 0))
-ifeq ($(call LastWord,$(filter program secureflash debug,$(MAKECMDGOALS))),program)
- @echo
-endif
-
-# Protect chip by setting security bit.
-.PHONY: secureflash
-secureflash:
- @echo
- @echo $(MSG_SECURING_FLASH)
- $(VERBOSE_CMD)$(ISP) $(ISPFLAGS) memory security addrange 0x0 0x0 fillbuffer 0x01 program $(if $(findstring run,$(MAKECMDGOALS)),start $(if $(findstring reset,$(MAKECMDGOALS)),,no)reset 0)
-ifeq ($(call LastWord,$(filter erase program secureflash debug,$(MAKECMDGOALS))),secureflash)
- @echo
-endif
-
-# Reset MCU.
-.PHONY: reset
-reset:
- @:
-
-# Open a debug connection with the MCU.
-.PHONY: debug
-debug:
- @echo
- @echo $(MSG_DEBUGGING)
- $(VERBOSE_CMD)$(DBGPROXY) $(FLASH:%=-f%)
-ifeq ($(call LastWord,$(filter erase program secureflash debug run,$(MAKECMDGOALS))),debug)
- @echo
-endif
-
-# Start CPU execution.
-.PHONY: run
-run:
-ifeq ($(filter program secureflash,$(MAKECMDGOALS)),)
- @echo
- @echo $(MSG_RUNNING)
- $(VERBOSE_CMD)$(ISP) $(ISPFLAGS) start $(if $(findstring reset,$(MAKECMDGOALS)),,no)reset 0
-ifeq ($(call LastWord,$(filter erase debug run,$(MAKECMDGOALS))),run)
- @echo
-endif
-else
- @:
-endif
-
-endif
-
-endif
-
-# Build the documentation.
-.PHONY: doc
-doc:
- @echo
- @echo $(MSG_GENERATING_DOC)
- $(VERBOSE_CMD)cd $(dir $(DOC_CFG)) && $(DOCGEN) $(notdir $(DOC_CFG))
- @echo
-
-# Clean up the documentation.
-.PHONY: cleandoc
-cleandoc:
- @echo $(MSG_CLEANING_DOC)
- -$(VERBOSE_CMD)$(RM) $(DOC_PATH)
- $(VERBOSE_NL)
-
-# Rebuild the documentation.
-.PHONY: rebuilddoc
-rebuilddoc: cleandoc doc
-
-# Display main executed commands.
-.PHONY: verbose
-ifeq ($(filter-out isp verbose,$(MAKECMDGOALS)),)
-verbose: all
-else
-verbose:
- @:
-endif
-ifneq ($(findstring verbose,$(MAKECMDGOALS)),)
-# Prefix displaying the following command if and only if verbose is a goal.
-VERBOSE_CMD =
-# New line displayed if and only if verbose is a goal.
-VERBOSE_NL = @echo
-else
-VERBOSE_CMD = @
-VERBOSE_NL =
-endif
-
-# ** ** COMPILATION RULES ** **
-
-# Include silently the dependency files.
--include $(DPNDFILES)
-
-# The dependency files are not built alone but along with first generation files.
-$(DPNDFILES):
-
-# First generation files depend on make files.
-$(CPPFILES) $(ASFILES) $(OBJFILES): Makefile $(MAKECFG)
-
-ifeq ($(TGTTYPE),.elf)
-# Files resulting from linking depend on linker script.
-$(TARGET): $(LINKER_SCRIPT)
-endif
-
-# Preprocess: create preprocessed files from C source files.
-%.i: %.c %.d
- @echo $(MSG_PREPROCESSING)
- $(VERBOSE_CMD)$(CPP) $(CPPFLAGS) -MD -MP -MT '$*.i $*.x $*.o' -o $@ $<
- @touch $*.d
- @touch $@
- $(VERBOSE_NL)
-
-# Preprocess & compile: create assembler files from C source files.
-%.x: %.c %.d
- @echo $(MSG_COMPILING)
- $(VERBOSE_CMD)$(CC) -S $(CPPFLAGS) -MD -MP -MT '$*.i $*.o' $(CFLAGS) -o $@ $<
- @touch $*.d
- @touch $@
- $(VERBOSE_NL)
-
-# Preprocess: create preprocessed files from assembler source files.
-%.x: %.S %.d
- @echo $(MSG_PREPROCESSING)
- $(VERBOSE_CMD)$(CPP) $(CPPFLAGS) -MD -MP -MT '$*.x $*.o' -o $@ $<
- @touch $*.d
- @touch $@
- $(VERBOSE_NL)
-
-# Preprocess, compile & assemble: create object files from C source files.
-%.o: %.c %.d
- @echo $(MSG_COMPILING)
- $(VERBOSE_CMD)$(CC) -c $(CPPFLAGS) -MD -MP -MT '$*.i $*.x' $(CFLAGS) -o $@ $<
- @touch $*.d
- @touch $@
- $(VERBOSE_NL)
-
-# Preprocess & assemble: create object files from assembler source files.
-%.o: %.S %.d
- @echo $(MSG_ASSEMBLING)
- $(VERBOSE_CMD)$(CC) -c $(CPPFLAGS) -MD -MP -MT '$*.x' $(ASFLAGS) -o $@ $<
- @touch $*.d
- @touch $@
- $(VERBOSE_NL)
-
-.PRECIOUS: $(OBJFILES)
-ifeq ($(TGTTYPE),.a)
-# Archive: create A output file from object files.
-.SECONDARY: $(TARGET)
-$(TARGET): $(OBJFILES)
- @echo $(MSG_ARCHIVING)
- $(VERBOSE_CMD)$(AR) $(ARFLAGS) $@ $(filter %.o,$+)
- $(VERBOSE_NL)
-else
-ifeq ($(TGTTYPE),.elf)
-# Link: create ELF output file from object files.
-.SECONDARY: $(TARGET)
-$(TARGET): $(OBJFILES)
- @echo $(MSG_LINKING)
- $(VERBOSE_CMD)$(CC) $(LDFLAGS) $(filter %.o,$+) $(LOADLIBES) $(LDLIBS) -o $@
- $(VERBOSE_NL)
-endif
-endif
-
-# Create extended listing from target output file.
-$(LSS): $(TARGET)
- @echo $(MSG_EXTENDED_LISTING)
- $(VERBOSE_CMD)$(OBJDUMP) -h -S $< > $@
- $(VERBOSE_NL)
-
-# Create symbol table from target output file.
-$(SYM): $(TARGET)
- @echo $(MSG_SYMBOL_TABLE)
- $(VERBOSE_CMD)$(NM) -n $< > $@
- $(VERBOSE_NL)
-
-ifeq ($(TGTTYPE),.elf)
-
-# Create Intel HEX image from ELF output file.
-$(HEX): $(TARGET)
- @echo $(MSG_IHEX_IMAGE)
- $(VERBOSE_CMD)$(OBJCOPY) -O ihex $< $@
- $(VERBOSE_NL)
-
-# Create binary image from ELF output file.
-$(BIN): $(TARGET)
- @echo $(MSG_BINARY_IMAGE)
- $(VERBOSE_CMD)$(OBJCOPY) -O binary $< $@
- $(VERBOSE_NL)
-
-endif
+++ /dev/null
-# Hey Emacs, this is a -*- makefile -*-
-
-# The purpose of this file is to define the build configuration variables used
-# by the generic Makefile. See Makefile header for further information.
-
-# Copyright (c) 2007, Atmel Corporation All rights reserved.
-#
-# Redistribution and use in source and binary forms, with or without
-# modification, are permitted provided that the following conditions are met:
-#
-# 1. Redistributions of source code must retain the above copyright notice, this
-# list of conditions and the following disclaimer.
-#
-# 2. Redistributions in binary form must reproduce the above copyright notice,
-# this list of conditions and the following disclaimer in the documentation and/
-# or other materials provided with the distribution.
-#
-# 3. The name of ATMEL may not be used to endorse or promote products derived
-# from this software without specific prior written permission.
-#
-# THIS SOFTWARE IS PROVIDED BY ATMEL ``AS IS'' AND ANY EXPRESS OR IMPLIED
-# WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF
-# MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE EXPRESSLY AND
-# SPECIFICALLY DISCLAIMED. IN NO EVENT SHALL ATMEL BE LIABLE FOR ANY DIRECT,
-# INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING,
-# BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
-# DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY
-# OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING
-# NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE,
-# EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
-
-
-# Base paths
-PRJ_PATH = ../..
-APPS_PATH = $(PRJ_PATH)/APPLICATIONS
-BRDS_PATH = $(PRJ_PATH)/BOARDS
-COMP_PATH = $(PRJ_PATH)/COMPONENTS
-DRVR_PATH = $(PRJ_PATH)/DRIVERS
-SERV_PATH = $(PRJ_PATH)/SERVICES
-UTIL_PATH = $(PRJ_PATH)/UTILS
-
-# CPU architecture: {ap|uc}
-ARCH = uc
-
-# Part: {none|ap7xxx|uc3xxxxx}
-PART = uc3b0256
-
-# Flash memories: [{cfi|internal}@address,size]...
-FLASH = internal@0x80000000,256Kb
-
-# Clock source to use when programming: [{xtal|extclk|int}]
-PROG_CLOCK = xtal
-
-# Device/Platform/Board include path
-PLATFORM_INC_PATH = \
- $(BRDS_PATH)/
-
-# Target name: {*.a|*.elf}
-TARGET = $(PART)-rtosdemo.elf
-
-# Definitions: [-D name[=definition]...] [-U name...]
-# Things that might be added to DEFS:
-# BOARD Board used: {EVKxxxx}
-# EXT_BOARD Extension board used (if any): {EXTxxxx}
-DEFS = -D BOARD=EVK1101
-
-# Include path
-INC_PATH = \
- $(UTIL_PATH)/ \
- $(UTIL_PATH)/PREPROCESSOR/ \
- $(SERV_PATH)/USB/CLASS/DFU/EXAMPLES/ISP/BOOT/ \
- $(DRVR_PATH)/INTC/ \
- $(DRVR_PATH)/PM/ \
- $(DRVR_PATH)/GPIO/ \
- $(DRVR_PATH)/TC/ \
- ../../../../Source/portable/GCC/AVR32_UC3/ \
- ../../../../Source/include/ \
- ../../../Common/include/ \
- ../../
-
-# C source files
-CSRCS = \
- $(BRDS_PATH)/EVK1101/led.c \
- $(DRVR_PATH)/INTC/intc.c \
- $(DRVR_PATH)/PM/pm.c \
- $(DRVR_PATH)/GPIO/gpio.c \
- $(DRVR_PATH)/TC/tc.c \
- ../../../../Source/portable/GCC/AVR32_UC3/port.c \
- ../../../../Source/portable/MemMang/heap_3.c \
- ../../../../Source/list.c \
- ../../../../Source/queue.c \
- ../../../../Source/tasks.c \
- ../../../Common/Minimal/BlockQ.c \
- ../../../Common/Minimal/comtest.c \
- ../../../Common/Minimal/death.c \
- ../../../Common/Minimal/dynamic.c \
- ../../../Common/Minimal/flash.c \
- ../../../Common/Minimal/flop.c \
- ../../../Common/Minimal/integer.c \
- ../../../Common/Minimal/PollQ.c \
- ../../../Common/Minimal/semtest.c \
- ../../ParTest/ParTest.c \
- ../../serial/serial.c \
- ../../main.c
-
-# Assembler source files
-ASSRCS = \
- $(SERV_PATH)/USB/CLASS/DFU/EXAMPLES/ISP/BOOT/trampoline.S \
- ../../../../Source/portable/GCC/AVR32_UC3/exception.S
-
-# Library path
-LIB_PATH =
-
-# Libraries to link with the project
-LIBS =
-
-# Linker script file if any
-LINKER_SCRIPT = $(UTIL_PATH)/LINKER_SCRIPTS/AT32UC3B/0256/GCC/link_uc3b0256.lds
-
-# Options to request or suppress warnings: [-fsyntax-only] [-pedantic[-errors]] [-w] [-Wwarning...]
-# For further details, refer to the chapter "GCC Command Options" of the GCC manual.
-WARNINGS = -Wall
-
-# Options for debugging: [-g]...
-# For further details, refer to the chapter "GCC Command Options" of the GCC manual.
-DEBUG = -g
-
-# Options that control optimization: [-O[0|1|2|3|s]]...
-# For further details, refer to the chapter "GCC Command Options" of the GCC manual.
-OPTIMIZATION = -O0 -ffunction-sections -fdata-sections
-
-# Extra flags to use when preprocessing
-CPP_EXTRA_FLAGS =
-
-# Extra flags to use when compiling
-C_EXTRA_FLAGS =
-
-# Extra flags to use when assembling
-AS_EXTRA_FLAGS =
-
-# Extra flags to use when linking
-LD_EXTRA_FLAGS = -Wl,--gc-sections -Wl,-e,_trampoline
-
-# Documentation path
-DOC_PATH = \
- ../../DOC/
-
-# Documentation configuration file
-DOC_CFG = \
- ../doxyfile.doxygen
+++ /dev/null
-target extended-remote :4711\r
-symbol uc3b0256-rtosdemo.elf\r
-\r
-b _handle_Unrecoverable_Exception\r
-b _handle_TLB_Multiple_Hit\r
-b _handle_Bus_Error_Data_Fetch\r
-b _handle_Bus_Error_Instruction_Fetch\r
-b _handle_NMI\r
-b _handle_Instruction_Address\r
-b _handle_ITLB_Protection\r
-b _handle_Breakpoint\r
-b _handle_Illegal_Opcode\r
-b _handle_Unimplemented_Instruction\r
-b _handle_Privilege_Violation\r
-b _handle_Floating_Point\r
-b _handle_Coprocessor_Absent\r
-b _handle_Data_Address_Read\r
-b _handle_Data_Address_Write\r
-b _handle_DTLB_Protection_Read\r
-b _handle_DTLB_Protection_Write\r
-b _handle_DTLB_Modified\r
-b _handle_ITLB_Miss\r
-b _handle_DTLB_Miss_Read\r
-b _handle_DTLB_Miss_Write\r
-\r
-define current_task\r
-printf "Task name: %s\n", ((tskTCB *)pxCurrentTCB)->pcTaskName\r
-printf "pxTopOfStack: %x\n", ((tskTCB *)pxCurrentTCB)->pxTopOfStack\r
-end\r
+++ /dev/null
-# Doxyfile 1.4.7
-
-#---------------------------------------------------------------------------
-# Project related configuration options
-#---------------------------------------------------------------------------
-PROJECT_NAME = "AVR32 UC3 - FreeRTOS Real Time Kernel"
-PROJECT_NUMBER =
-OUTPUT_DIRECTORY = ../DOC
-CREATE_SUBDIRS = NO
-OUTPUT_LANGUAGE = English
-USE_WINDOWS_ENCODING = YES
-BRIEF_MEMBER_DESC = YES
-REPEAT_BRIEF = YES
-ABBREVIATE_BRIEF =
-ALWAYS_DETAILED_SEC = NO
-INLINE_INHERITED_MEMB = NO
-FULL_PATH_NAMES = NO
-STRIP_FROM_PATH =
-STRIP_FROM_INC_PATH =
-SHORT_NAMES = NO
-JAVADOC_AUTOBRIEF = YES
-MULTILINE_CPP_IS_BRIEF = NO
-DETAILS_AT_TOP = YES
-INHERIT_DOCS = YES
-SEPARATE_MEMBER_PAGES = NO
-TAB_SIZE = 4
-ALIASES =
-OPTIMIZE_OUTPUT_FOR_C = YES
-OPTIMIZE_OUTPUT_JAVA = NO
-BUILTIN_STL_SUPPORT = NO
-DISTRIBUTE_GROUP_DOC = NO
-SUBGROUPING = YES
-#---------------------------------------------------------------------------
-# Build related configuration options
-#---------------------------------------------------------------------------
-EXTRACT_ALL = YES
-EXTRACT_PRIVATE = NO
-EXTRACT_STATIC = YES
-EXTRACT_LOCAL_CLASSES = YES
-EXTRACT_LOCAL_METHODS = NO
-HIDE_UNDOC_MEMBERS = NO
-HIDE_UNDOC_CLASSES = NO
-HIDE_FRIEND_COMPOUNDS = NO
-HIDE_IN_BODY_DOCS = NO
-INTERNAL_DOCS = YES
-CASE_SENSE_NAMES = YES
-HIDE_SCOPE_NAMES = NO
-SHOW_INCLUDE_FILES = YES
-INLINE_INFO = YES
-SORT_MEMBER_DOCS = YES
-SORT_BRIEF_DOCS = YES
-SORT_BY_SCOPE_NAME = NO
-GENERATE_TODOLIST = YES
-GENERATE_TESTLIST = YES
-GENERATE_BUGLIST = YES
-GENERATE_DEPRECATEDLIST= YES
-ENABLED_SECTIONS =
-MAX_INITIALIZER_LINES = 30
-SHOW_USED_FILES = NO
-SHOW_DIRECTORIES = NO
-FILE_VERSION_FILTER =
-#---------------------------------------------------------------------------
-# configuration options related to warning and progress messages
-#---------------------------------------------------------------------------
-QUIET = YES
-WARNINGS = YES
-WARN_IF_UNDOCUMENTED = YES
-WARN_IF_DOC_ERROR = YES
-WARN_NO_PARAMDOC = NO
-WARN_FORMAT = "$file:$line: $text"
-WARN_LOGFILE =
-#---------------------------------------------------------------------------
-# configuration options related to the input files
-#---------------------------------------------------------------------------
-INPUT = ./../ ./../../../Source ./../../Common/include ./../../Common/Minimal
-FILE_PATTERNS = *.c \
- *.h \
- *.S
-RECURSIVE = YES
-EXCLUDE =
-EXCLUDE_SYMLINKS = NO
-EXCLUDE_PATTERNS =
-EXAMPLE_PATH =
-EXAMPLE_PATTERNS =
-EXAMPLE_RECURSIVE = NO
-IMAGE_PATH = ./../
-INPUT_FILTER =
-FILTER_PATTERNS =
-FILTER_SOURCE_FILES = NO
-#---------------------------------------------------------------------------
-# configuration options related to source browsing
-#---------------------------------------------------------------------------
-SOURCE_BROWSER = YES
-INLINE_SOURCES = YES
-STRIP_CODE_COMMENTS = YES
-REFERENCED_BY_RELATION = YES
-REFERENCES_RELATION = YES
-REFERENCES_LINK_SOURCE = YES
-USE_HTAGS = NO
-VERBATIM_HEADERS = YES
-#---------------------------------------------------------------------------
-# configuration options related to the alphabetical class index
-#---------------------------------------------------------------------------
-ALPHABETICAL_INDEX = NO
-COLS_IN_ALPHA_INDEX = 5
-IGNORE_PREFIX =
-#---------------------------------------------------------------------------
-# configuration options related to the HTML output
-#---------------------------------------------------------------------------
-GENERATE_HTML = YES
-HTML_OUTPUT =
-HTML_FILE_EXTENSION = .html
-HTML_HEADER =
-HTML_FOOTER =
-HTML_STYLESHEET =
-HTML_ALIGN_MEMBERS = YES
-GENERATE_HTMLHELP = NO
-CHM_FILE =
-HHC_LOCATION =
-GENERATE_CHI = NO
-BINARY_TOC = NO
-TOC_EXPAND = NO
-DISABLE_INDEX = NO
-ENUM_VALUES_PER_LINE = 4
-GENERATE_TREEVIEW = YES
-TREEVIEW_WIDTH = 250
-#---------------------------------------------------------------------------
-# configuration options related to the LaTeX output
-#---------------------------------------------------------------------------
-GENERATE_LATEX = NO
-LATEX_OUTPUT = latex
-LATEX_CMD_NAME = latex
-MAKEINDEX_CMD_NAME = makeindex
-COMPACT_LATEX = NO
-PAPER_TYPE = a4wide
-EXTRA_PACKAGES =
-LATEX_HEADER =
-PDF_HYPERLINKS = NO
-USE_PDFLATEX = NO
-LATEX_BATCHMODE = NO
-LATEX_HIDE_INDICES = NO
-#---------------------------------------------------------------------------
-# configuration options related to the RTF output
-#---------------------------------------------------------------------------
-GENERATE_RTF = NO
-RTF_OUTPUT = RTF
-COMPACT_RTF = NO
-RTF_HYPERLINKS = YES
-RTF_STYLESHEET_FILE =
-RTF_EXTENSIONS_FILE =
-#---------------------------------------------------------------------------
-# configuration options related to the man page output
-#---------------------------------------------------------------------------
-GENERATE_MAN = NO
-MAN_OUTPUT = man
-MAN_EXTENSION = .3
-MAN_LINKS = NO
-#---------------------------------------------------------------------------
-# configuration options related to the XML output
-#---------------------------------------------------------------------------
-GENERATE_XML = NO
-XML_OUTPUT = xml
-XML_SCHEMA =
-XML_DTD =
-XML_PROGRAMLISTING = YES
-#---------------------------------------------------------------------------
-# configuration options for the AutoGen Definitions output
-#---------------------------------------------------------------------------
-GENERATE_AUTOGEN_DEF = NO
-#---------------------------------------------------------------------------
-# configuration options related to the Perl module output
-#---------------------------------------------------------------------------
-GENERATE_PERLMOD = NO
-PERLMOD_LATEX = NO
-PERLMOD_PRETTY = YES
-PERLMOD_MAKEVAR_PREFIX =
-#---------------------------------------------------------------------------
-# Configuration options related to the preprocessor
-#---------------------------------------------------------------------------
-ENABLE_PREPROCESSING = YES
-MACRO_EXPANSION = YES
-EXPAND_ONLY_PREDEF = YES
-SEARCH_INCLUDES = YES
-INCLUDE_PATH = ../../../../../BOARDS/
-INCLUDE_FILE_PATTERNS =
-PREDEFINED = __GNUC__=4 \
- __attribute__()= \
- __AVR32__=1 \
- __AVR32_UC3B0256__=1 \
- __AVR32_ABI_COMPILER__ \
- BOARD=EVK1101
-EXPAND_AS_DEFINED =
-SKIP_FUNCTION_MACROS = YES
-#---------------------------------------------------------------------------
-# Configuration::additions related to external references
-#---------------------------------------------------------------------------
-TAGFILES =
-GENERATE_TAGFILE =
-ALLEXTERNALS = NO
-EXTERNAL_GROUPS = YES
-PERL_PATH = /usr/bin/perl
-#---------------------------------------------------------------------------
-# Configuration options related to the dot tool
-#---------------------------------------------------------------------------
-CLASS_DIAGRAMS = NO
-HIDE_UNDOC_RELATIONS = YES
-HAVE_DOT = NO
-CLASS_GRAPH = NO
-COLLABORATION_GRAPH = NO
-GROUP_GRAPHS = NO
-UML_LOOK = YES
-TEMPLATE_RELATIONS = YES
-INCLUDE_GRAPH = NO
-INCLUDED_BY_GRAPH = NO
-CALL_GRAPH = NO
-CALLER_GRAPH = NO
-GRAPHICAL_HIERARCHY = NO
-DIRECTORY_GRAPH = NO
-DOT_IMAGE_FORMAT = png
-DOT_PATH =
-DOTFILE_DIRS =
-MAX_DOT_GRAPH_WIDTH = 1024
-MAX_DOT_GRAPH_HEIGHT = 1024
-MAX_DOT_GRAPH_DEPTH = 0
-DOT_TRANSPARENT = NO
-DOT_MULTI_TARGETS = NO
-GENERATE_LEGEND = YES
-DOT_CLEANUP = YES
-#---------------------------------------------------------------------------
-# Configuration::additions related to the search engine
-#---------------------------------------------------------------------------
-SEARCHENGINE = NO
+++ /dev/null
-/*This file has been prepared for Doxygen automatic documentation generation.*/\r
-/*! \file *********************************************************************\r
- *\r
- * \brief GPIO driver for AVR32 UC3.\r
- *\r
- * This file defines a useful set of functions for the GPIO.\r
- *\r
- * - Compiler: IAR EWAVR32 and GNU GCC for AVR32\r
- * - Supported devices: All AVR32 devices with a GPIO module can be used.\r
- * - AppNote:\r
- *\r
- * \author Atmel Corporation: http://www.atmel.com \n\r
- * Support and FAQ: http://support.atmel.no/\r
- *\r
- *****************************************************************************/\r
-\r
-/* Copyright (c) 2007, Atmel Corporation All rights reserved.\r
- *\r
- * Redistribution and use in source and binary forms, with or without\r
- * modification, are permitted provided that the following conditions are met:\r
- *\r
- * 1. Redistributions of source code must retain the above copyright notice,\r
- * this list of conditions and the following disclaimer.\r
- *\r
- * 2. Redistributions in binary form must reproduce the above copyright notice,\r
- * this list of conditions and the following disclaimer in the documentation\r
- * and/or other materials provided with the distribution.\r
- *\r
- * 3. The name of ATMEL may not be used to endorse or promote products derived\r
- * from this software without specific prior written permission.\r
- *\r
- * THIS SOFTWARE IS PROVIDED BY ATMEL ``AS IS'' AND ANY EXPRESS OR IMPLIED\r
- * WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF\r
- * MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE EXPRESSLY AND\r
- * SPECIFICALLY DISCLAIMED. IN NO EVENT SHALL ATMEL BE LIABLE FOR ANY DIRECT,\r
- * INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES\r
- * (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;\r
- * LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND\r
- * ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT\r
- * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF\r
- * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.\r
- */\r
-\r
-\r
-#include "gpio.h"\r
-\r
-\r
-//! GPIO module instance.\r
-#define GPIO AVR32_GPIO\r
-\r
-\r
-int gpio_enable_module(const gpio_map_t gpiomap, unsigned int size)\r
-{\r
- int status = GPIO_SUCCESS;\r
- unsigned int i;\r
-\r
- for (i = 0; i < size; i++)\r
- {\r
- status |= gpio_enable_module_pin(gpiomap->pin, gpiomap->function);\r
- gpiomap++;\r
- }\r
-\r
- return status;\r
-}\r
-\r
-\r
-int gpio_enable_module_pin(unsigned int pin, unsigned int function)\r
-{\r
- volatile avr32_gpio_port_t *gpio_port = &GPIO.port[pin >> 5];\r
-\r
- // Enable the correct function.\r
- switch (function)\r
- {\r
- case 0: // A function.\r
- gpio_port->pmr0c = 1 << (pin & 0x1F);\r
- gpio_port->pmr1c = 1 << (pin & 0x1F);\r
- break;\r
-\r
- case 1: // B function.\r
- gpio_port->pmr0s = 1 << (pin & 0x1F);\r
- gpio_port->pmr1c = 1 << (pin & 0x1F);\r
- break;\r
-\r
- case 2: // C function.\r
- gpio_port->pmr0c = 1 << (pin & 0x1F);\r
- gpio_port->pmr1s = 1 << (pin & 0x1F);\r
- break;\r
-\r
- default:\r
- return GPIO_INVALID_ARGUMENT;\r
- }\r
-\r
- // Disable GPIO control.\r
- gpio_port->gperc = 1 << (pin & 0x1F);\r
-\r
- return GPIO_SUCCESS;\r
-}\r
-\r
-\r
-void gpio_enable_gpio(const gpio_map_t gpiomap, unsigned int size)\r
-{\r
- unsigned int i;\r
-\r
- for (i = 0; i < size; i++)\r
- {\r
- gpio_enable_gpio_pin(gpiomap->pin);\r
- gpiomap++;\r
- }\r
-}\r
-\r
-\r
-void gpio_enable_gpio_pin(unsigned int pin)\r
-{\r
- volatile avr32_gpio_port_t *gpio_port = &GPIO.port[pin >> 5];\r
- gpio_port->oderc = 1 << (pin & 0x1F);\r
- gpio_port->gpers = 1 << (pin & 0x1F);\r
-}\r
-\r
-\r
-void gpio_enable_pin_open_drain(unsigned int pin)\r
-{\r
- volatile avr32_gpio_port_t *gpio_port = &GPIO.port[pin >> 5];\r
- gpio_port->odmers = 1 << (pin & 0x1F);\r
-}\r
-\r
-\r
-void gpio_disable_pin_open_drain(unsigned int pin)\r
-{\r
- volatile avr32_gpio_port_t *gpio_port = &GPIO.port[pin >> 5];\r
- gpio_port->odmerc = 1 << (pin & 0x1F);\r
-}\r
-\r
-\r
-void gpio_enable_pin_pull_up(unsigned int pin)\r
-{\r
- volatile avr32_gpio_port_t *gpio_port = &GPIO.port[pin >> 5];\r
- gpio_port->puers = 1 << (pin & 0x1F);\r
-}\r
-\r
-\r
-void gpio_disable_pin_pull_up(unsigned int pin)\r
-{\r
- volatile avr32_gpio_port_t *gpio_port = &GPIO.port[pin >> 5];\r
- gpio_port->puerc = 1 << (pin & 0x1F);\r
-}\r
-\r
-\r
-int gpio_get_pin_value(unsigned int pin)\r
-{\r
- volatile avr32_gpio_port_t *gpio_port = &GPIO.port[pin >> 5];\r
- return (gpio_port->pvr >> (pin & 0x1F)) & 1;\r
-}\r
-\r
-\r
-int gpio_get_gpio_pin_output_value(unsigned int pin)\r
-{\r
- volatile avr32_gpio_port_t *gpio_port = &GPIO.port[pin >> 5];\r
- return (gpio_port->ovr >> (pin & 0x1F)) & 1;\r
-}\r
-\r
-\r
-void gpio_set_gpio_pin(unsigned int pin)\r
-{\r
- volatile avr32_gpio_port_t *gpio_port = &GPIO.port[pin >> 5];\r
-\r
- gpio_port->ovrs = 1 << (pin & 0x1F); // Value to be driven on the I/O line: 1.\r
- gpio_port->oders = 1 << (pin & 0x1F); // The GPIO output driver is enabled for that pin.\r
- gpio_port->gpers = 1 << (pin & 0x1F); // The GPIO module controls that pin.\r
-}\r
-\r
-\r
-void gpio_clr_gpio_pin(unsigned int pin)\r
-{\r
- volatile avr32_gpio_port_t *gpio_port = &GPIO.port[pin >> 5];\r
-\r
- gpio_port->ovrc = 1 << (pin & 0x1F); // Value to be driven on the I/O line: 0.\r
- gpio_port->oders = 1 << (pin & 0x1F); // The GPIO output driver is enabled for that pin.\r
- gpio_port->gpers = 1 << (pin & 0x1F); // The GPIO module controls that pin.\r
-}\r
-\r
-\r
-void gpio_tgl_gpio_pin(unsigned int pin)\r
-{\r
- volatile avr32_gpio_port_t *gpio_port = &GPIO.port[pin >> 5];\r
-\r
- gpio_port->ovrt = 1 << (pin & 0x1F); // Toggle the I/O line.\r
- gpio_port->oders = 1 << (pin & 0x1F); // The GPIO output driver is enabled for that pin.\r
- gpio_port->gpers = 1 << (pin & 0x1F); // The GPIO module controls that pin.\r
-}\r
-\r
-\r
-void gpio_enable_pin_glitch_filter(unsigned int pin)\r
-{\r
- volatile avr32_gpio_port_t *gpio_port = &GPIO.port[pin >> 5];\r
- gpio_port->gfers = 1 << (pin & 0x1F);\r
-}\r
-\r
-\r
-void gpio_disable_pin_glitch_filter(unsigned int pin)\r
-{\r
- volatile avr32_gpio_port_t *gpio_port = &GPIO.port[pin >> 5];\r
- gpio_port->gferc = 1 << (pin & 0x1F);\r
-}\r
-\r
-\r
-int gpio_enable_pin_interrupt(unsigned int pin, unsigned int mode)\r
-{\r
- volatile avr32_gpio_port_t *gpio_port = &GPIO.port[pin >> 5];\r
-\r
- // Enable the glitch filter.\r
- gpio_port->gfers = 1 << (pin & 0x1F);\r
-\r
- // Configure the edge detector.\r
- switch (mode)\r
- {\r
- case GPIO_PIN_CHANGE:\r
- gpio_port->imr0c = 1 << (pin & 0x1F);\r
- gpio_port->imr1c = 1 << (pin & 0x1F);\r
- break;\r
-\r
- case GPIO_RISING_EDGE:\r
- gpio_port->imr0s = 1 << (pin & 0x1F);\r
- gpio_port->imr1c = 1 << (pin & 0x1F);\r
- break;\r
-\r
- case GPIO_FALLING_EDGE:\r
- gpio_port->imr0c = 1 << (pin & 0x1F);\r
- gpio_port->imr1s = 1 << (pin & 0x1F);\r
- break;\r
-\r
- default:\r
- return GPIO_INVALID_ARGUMENT;\r
- }\r
-\r
- // Enable interrupt.\r
- gpio_port->iers = 1 << (pin & 0x1F);\r
-\r
- return GPIO_SUCCESS;\r
-}\r
-\r
-\r
-void gpio_disable_pin_interrupt(unsigned int pin)\r
-{\r
- volatile avr32_gpio_port_t *gpio_port = &GPIO.port[pin >> 5];\r
- gpio_port->ierc = 1 << (pin & 0x1F);\r
-}\r
-\r
-\r
-int gpio_get_pin_interrupt_flag(unsigned int pin)\r
-{\r
- volatile avr32_gpio_port_t *gpio_port = &GPIO.port[pin >> 5];\r
- return (gpio_port->ifr >> (pin & 0x1F)) & 1;\r
-}\r
-\r
-\r
-void gpio_clear_pin_interrupt_flag(unsigned int pin)\r
-{\r
- volatile avr32_gpio_port_t *gpio_port = &GPIO.port[pin >> 5];\r
- gpio_port->ifrc = 1 << (pin & 0x1F);\r
-}\r
+++ /dev/null
-/*This file has been prepared for Doxygen automatic documentation generation.*/\r
-/*! \file *********************************************************************\r
- *\r
- * \brief GPIO header for AVR32 UC3.\r
- *\r
- * This file contains basic GPIO driver functions.\r
- *\r
- * - Compiler: IAR EWAVR32 and GNU GCC for AVR32\r
- * - Supported devices: All AVR32 devices with a GPIO module can be used.\r
- * - AppNote:\r
- *\r
- * \author Atmel Corporation: http://www.atmel.com \n\r
- * Support and FAQ: http://support.atmel.no/\r
- *\r
- *****************************************************************************/\r
-\r
-/* Copyright (c) 2007, Atmel Corporation All rights reserved.\r
- *\r
- * Redistribution and use in source and binary forms, with or without\r
- * modification, are permitted provided that the following conditions are met:\r
- *\r
- * 1. Redistributions of source code must retain the above copyright notice,\r
- * this list of conditions and the following disclaimer.\r
- *\r
- * 2. Redistributions in binary form must reproduce the above copyright notice,\r
- * this list of conditions and the following disclaimer in the documentation\r
- * and/or other materials provided with the distribution.\r
- *\r
- * 3. The name of ATMEL may not be used to endorse or promote products derived\r
- * from this software without specific prior written permission.\r
- *\r
- * THIS SOFTWARE IS PROVIDED BY ATMEL ``AS IS'' AND ANY EXPRESS OR IMPLIED\r
- * WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF\r
- * MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE EXPRESSLY AND\r
- * SPECIFICALLY DISCLAIMED. IN NO EVENT SHALL ATMEL BE LIABLE FOR ANY DIRECT,\r
- * INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES\r
- * (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;\r
- * LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND\r
- * ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT\r
- * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF\r
- * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.\r
- */\r
-\r
-\r
-#ifndef _GPIO_H_\r
-#define _GPIO_H_\r
-\r
-#include <avr32/io.h>\r
-\r
-\r
-/*! \name Return Values of the GPIO API\r
- */\r
-//! @{\r
-#define GPIO_SUCCESS 0 //!< Function successfully completed.\r
-#define GPIO_INVALID_ARGUMENT 1 //!< Input parameters are out of range.\r
-//! @}\r
-\r
-\r
-/*! \name Interrupt Trigger Modes\r
- */\r
-//! @{\r
-#define GPIO_PIN_CHANGE 0 //!< Interrupt triggered upon pin change.\r
-#define GPIO_RISING_EDGE 1 //!< Interrupt triggered upon rising edge.\r
-#define GPIO_FALLING_EDGE 2 //!< Interrupt triggered upon falling edge.\r
-//! @}\r
-\r
-\r
-//! A type definition of pins and modules connectivity.\r
-typedef struct\r
-{\r
- unsigned char pin; //!< Module pin.\r
- unsigned char function; //!< Module function.\r
-} gpio_map_t[];\r
-\r
-\r
-/*! \brief Enables specific module modes for a set of pins.\r
- *\r
- * \param gpiomap The pin map.\r
- * \param size The number of pins in \a gpiomap.\r
- *\r
- * \return \ref GPIO_SUCCESS or \ref GPIO_INVALID_ARGUMENT.\r
- */\r
-extern int gpio_enable_module(const gpio_map_t gpiomap, unsigned int size);\r
-\r
-/*! \brief Enables a specific module mode for a pin.\r
- *\r
- * \param pin The pin number.\n\r
- * Refer to the product header file `uc3x.h' (where x is the part\r
- * number; e.g. x = a0512) for module pins. E.g., to enable a PWM\r
- * channel output, the pin number can be AVR32_PWM_PWM_3_PIN for PWM\r
- * channel 3.\r
- * \param function The pin function.\n\r
- * Refer to the product header file `uc3x.h' (where x is the\r
- * part number; e.g. x = a0512) for module pin functions. E.g.,\r
- * to enable a PWM channel output, the pin function can be\r
- * AVR32_PWM_PWM_3_FUNCTION for PWM channel 3.\r
- *\r
- * \return \ref GPIO_SUCCESS or \ref GPIO_INVALID_ARGUMENT.\r
- */\r
-extern int gpio_enable_module_pin(unsigned int pin, unsigned int function);\r
-\r
-/*! \brief Enables the GPIO mode of a set of pins.\r
- *\r
- * \param gpiomap The pin map.\r
- * \param size The number of pins in \a gpiomap.\r
- */\r
-extern void gpio_enable_gpio(const gpio_map_t gpiomap, unsigned int size);\r
-\r
-/*! \brief Enables the GPIO mode of a pin.\r
- *\r
- * \param pin The pin number.\n\r
- * Refer to the product header file `uc3x.h' (where x is the part\r
- * number; e.g. x = a0512) for pin definitions. E.g., to enable the\r
- * GPIO mode of PX21, AVR32_PIN_PX21 can be used. Module pins such as\r
- * AVR32_PWM_PWM_3_PIN for PWM channel 3 can also be used to release\r
- * module pins for GPIO.\r
- */\r
-extern void gpio_enable_gpio_pin(unsigned int pin);\r
-\r
-/*! \brief Enables the open-drain mode of a pin.\r
- *\r
- * \param pin The pin number.\r
- */\r
-extern void gpio_enable_pin_open_drain(unsigned int pin);\r
-\r
-/*! \brief Disables the open-drain mode of a pin.\r
- *\r
- * \param pin The pin number.\r
- */\r
-extern void gpio_disable_pin_open_drain(unsigned int pin);\r
-\r
-/*! \brief Enables the pull-up resistor of a pin.\r
- *\r
- * \param pin The pin number.\r
- */\r
-extern void gpio_enable_pin_pull_up(unsigned int pin);\r
-\r
-/*! \brief Disables the pull-up resistor of a pin.\r
- *\r
- * \param pin The pin number.\r
- */\r
-extern void gpio_disable_pin_pull_up(unsigned int pin);\r
-\r
-/*! \brief Returns the value of a pin.\r
- *\r
- * \param pin The pin number.\r
- *\r
- * \return The pin value.\r
- */\r
-extern int gpio_get_pin_value(unsigned int pin);\r
-\r
-/*! \brief Returns the output value set for a GPIO pin.\r
- *\r
- * \param pin The pin number.\r
- *\r
- * \return The pin output value.\r
- */\r
-extern int gpio_get_gpio_pin_output_value(unsigned int pin);\r
-\r
-/*! \brief Drives a GPIO pin to 1.\r
- *\r
- * \param pin The pin number.\r
- */\r
-extern void gpio_set_gpio_pin(unsigned int pin);\r
-\r
-/*! \brief Drives a GPIO pin to 0.\r
- *\r
- * \param pin The pin number.\r
- */\r
-extern void gpio_clr_gpio_pin(unsigned int pin);\r
-\r
-/*! \brief Toggles a GPIO pin.\r
- *\r
- * \param pin The pin number.\r
- */\r
-extern void gpio_tgl_gpio_pin(unsigned int pin);\r
-\r
-/*! \brief Enables the glitch filter of a pin.\r
- *\r
- * When the glitch filter is enabled, a glitch with duration of less than 1\r
- * clock cycle is automatically rejected, while a pulse with duration of 2 clock\r
- * cycles or more is accepted. For pulse durations between 1 clock cycle and 2\r
- * clock cycles, the pulse may or may not be taken into account, depending on\r
- * the precise timing of its occurrence. Thus for a pulse to be guaranteed\r
- * visible it must exceed 2 clock cycles, whereas for a glitch to be reliably\r
- * filtered out, its duration must not exceed 1 clock cycle. The filter\r
- * introduces 2 clock cycles latency.\r
- *\r
- * \param pin The pin number.\r
- */\r
-extern void gpio_enable_pin_glitch_filter(unsigned int pin);\r
-\r
-/*! \brief Disables the glitch filter of a pin.\r
- *\r
- * \param pin The pin number.\r
- */\r
-extern void gpio_disable_pin_glitch_filter(unsigned int pin);\r
-\r
-/*! \brief Enables the interrupt of a pin with the specified settings.\r
- *\r
- * \param pin The pin number.\r
- * \param mode The trigger mode (\ref GPIO_PIN_CHANGE, \ref GPIO_RISING_EDGE or\r
- * \ref GPIO_FALLING_EDGE).\r
- *\r
- * \return \ref GPIO_SUCCESS or \ref GPIO_INVALID_ARGUMENT.\r
- */\r
-extern int gpio_enable_pin_interrupt(unsigned int pin, unsigned int mode);\r
-\r
-/*! \brief Disables the interrupt of a pin.\r
- *\r
- * \param pin The pin number.\r
- */\r
-extern void gpio_disable_pin_interrupt(unsigned int pin);\r
-\r
-/*! \brief Gets the interrupt flag of a pin.\r
- *\r
- * \param pin The pin number.\r
- *\r
- * \return The pin interrupt flag.\r
- */\r
-extern int gpio_get_pin_interrupt_flag(unsigned int pin);\r
-\r
-/*! \brief Clears the interrupt flag of a pin.\r
- *\r
- * \param pin The pin number.\r
- */\r
-extern void gpio_clear_pin_interrupt_flag(unsigned int pin);\r
-\r
-\r
-#endif // _GPIO_H_\r
+++ /dev/null
-/*This file is prepared for Doxygen automatic documentation generation.*/\r
-/*! \file *********************************************************************\r
- *\r
- * \brief INTC driver for AVR32 UC3.\r
- *\r
- * AVR32 Interrupt Controller driver module.\r
- *\r
- * - Compiler: IAR EWAVR32 and GNU GCC for AVR32\r
- * - Supported devices: All AVR32 devices with an INTC module can be used.\r
- * - AppNote:\r
- *\r
- * \author Atmel Corporation: http://www.atmel.com \n\r
- * Support and FAQ: http://support.atmel.no/\r
- *\r
- ******************************************************************************/\r
-\r
-/* Copyright (c) 2007, Atmel Corporation All rights reserved.\r
- *\r
- * Redistribution and use in source and binary forms, with or without\r
- * modification, are permitted provided that the following conditions are met:\r
- *\r
- * 1. Redistributions of source code must retain the above copyright notice,\r
- * this list of conditions and the following disclaimer.\r
- *\r
- * 2. Redistributions in binary form must reproduce the above copyright notice,\r
- * this list of conditions and the following disclaimer in the documentation\r
- * and/or other materials provided with the distribution.\r
- *\r
- * 3. The name of ATMEL may not be used to endorse or promote products derived\r
- * from this software without specific prior written permission.\r
- *\r
- * THIS SOFTWARE IS PROVIDED BY ATMEL ``AS IS'' AND ANY EXPRESS OR IMPLIED\r
- * WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF\r
- * MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE EXPRESSLY AND\r
- * SPECIFICALLY DISCLAIMED. IN NO EVENT SHALL ATMEL BE LIABLE FOR ANY DIRECT,\r
- * INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES\r
- * (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;\r
- * LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND\r
- * ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT\r
- * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF\r
- * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.\r
- */\r
-\r
-\r
-#include <avr32/io.h>\r
-#include "compiler.h"\r
-#include "preprocessor.h"\r
-#include "intc.h"\r
-\r
-\r
-//! Values to store in the interrupt priority registers for the various interrupt priority levels.\r
-extern const unsigned int ipr_val[AVR32_INTC_NUM_INT_LEVELS];\r
-\r
-//! Creates a table of interrupt line handlers per interrupt group in order to optimize RAM space.\r
-//! Each line handler table contains a set of pointers to interrupt handlers.\r
-#if __GNUC__\r
-#define DECL_INT_LINE_HANDLER_TABLE(GRP, unused) \\r
-static volatile __int_handler _int_line_handler_table_##GRP[Max(AVR32_INTC_NUM_IRQS_PER_GRP##GRP, 1)];\r
-#elif __ICCAVR32__\r
-#define DECL_INT_LINE_HANDLER_TABLE(GRP, unused) \\r
-static volatile __no_init __int_handler _int_line_handler_table_##GRP[Max(AVR32_INTC_NUM_IRQS_PER_GRP##GRP, 1)];\r
-#endif\r
-MREPEAT(AVR32_INTC_NUM_INT_GRPS, DECL_INT_LINE_HANDLER_TABLE, ~);\r
-#undef DECL_INT_LINE_HANDLER_TABLE\r
-\r
-//! Table containing for each interrupt group the number of interrupt request\r
-//! lines and a pointer to the table of interrupt line handlers.\r
-static const struct\r
-{\r
- unsigned int num_irqs;\r
- volatile __int_handler *_int_line_handler_table;\r
-} _int_handler_table[AVR32_INTC_NUM_INT_GRPS] =\r
-{\r
-#define INSERT_INT_LINE_HANDLER_TABLE(GRP, unused) \\r
- {AVR32_INTC_NUM_IRQS_PER_GRP##GRP, _int_line_handler_table_##GRP},\r
- MREPEAT(AVR32_INTC_NUM_INT_GRPS, INSERT_INT_LINE_HANDLER_TABLE, ~)\r
-#undef INSERT_INT_LINE_HANDLER_TABLE\r
-};\r
-\r
-\r
-/*! \brief Default interrupt handler.\r
- *\r
- * \note Taken and adapted from Newlib.\r
- */\r
-#if __GNUC__\r
-__attribute__((__interrupt__))\r
-#elif __ICCAVR32__\r
-__interrupt\r
-#endif\r
-static void _unhandled_interrupt(void)\r
-{\r
- // Catch unregistered interrupts.\r
- while (TRUE);\r
-}\r
-\r
-\r
-/*! \brief Gets the interrupt handler of the current event at the \a int_lev\r
- * interrupt priority level (called from exception.S).\r
- *\r
- * \param int_lev Interrupt priority level to handle.\r
- *\r
- * \return Interrupt handler to execute.\r
- *\r
- * \note Taken and adapted from Newlib.\r
- */\r
-__int_handler _get_interrupt_handler(unsigned int int_lev)\r
-{\r
- // ICR3 is mapped first, ICR0 last.\r
- // Code in exception.S puts int_lev in R12 which is used by AVR32-GCC to pass\r
- // a single argument to a function.\r
- unsigned int int_grp = (&AVR32_INTC.icr3)[INT3 - int_lev];\r
- unsigned int int_req = AVR32_INTC.irr[int_grp];\r
-\r
- // As an interrupt may disappear while it is being fetched by the CPU\r
- // (spurious interrupt caused by a delayed response from an MCU peripheral to\r
- // an interrupt flag clear or interrupt disable instruction), check if there\r
- // are remaining interrupt lines to process.\r
- // If a spurious interrupt occurs, the status register (SR) contains an\r
- // execution mode and interrupt level masks corresponding to a level 0\r
- // interrupt, whatever the interrupt priority level causing the spurious\r
- // event. This behavior has been chosen because a spurious interrupt has not\r
- // to be a priority one and because it may not cause any trouble to other\r
- // interrupts.\r
- // However, these spurious interrupts place the hardware in an unstable state\r
- // and could give problems in other/future versions of the CPU, so the\r
- // software has to be written so that they never occur. The only safe way of\r
- // achieving this is to always clear or disable peripheral interrupts with the\r
- // following sequence:\r
- // 1: Mask the interrupt in the CPU by setting GM (or IxM) in SR.\r
- // 2: Perform the bus access to the peripheral register that clears or\r
- // disables the interrupt.\r
- // 3: Wait until the interrupt has actually been cleared or disabled by the\r
- // peripheral. This is usually performed by reading from a register in the\r
- // same peripheral (it DOES NOT have to be the same register that was\r
- // accessed in step 2, but it MUST be in the same peripheral), what takes\r
- // bus system latencies into account, but peripheral internal latencies\r
- // (generally 0 cycle) also have to be considered.\r
- // 4: Unmask the interrupt in the CPU by clearing GM (or IxM) in SR.\r
- // Note that steps 1 and 4 are useless inside interrupt handlers as the\r
- // corresponding interrupt level is automatically masked by IxM (unless IxM is\r
- // explicitly cleared by the software).\r
- //\r
- // Get the right IRQ handler.\r
- //\r
- // If several interrupt lines are active in the group, the interrupt line with\r
- // the highest number is selected. This is to be coherent with the\r
- // prioritization of interrupt groups performed by the hardware interrupt\r
- // controller.\r
- //\r
- // If no handler has been registered for the pending interrupt,\r
- // _unhandled_interrupt will be selected thanks to the initialization of\r
- // _int_line_handler_table_x by INTC_init_interrupts.\r
- //\r
- // exception.S will provide the interrupt handler with a clean interrupt stack\r
- // frame, with nothing more pushed onto the stack. The interrupt handler must\r
- // manage the `rete' instruction, what can be done thanks to pure assembly,\r
- // inline assembly or the `__attribute__((__interrupt__))' C function\r
- // attribute.\r
- return (int_req) ? _int_handler_table[int_grp]._int_line_handler_table[32 - clz(int_req) - 1] : NULL;\r
-}\r
-\r
-\r
-void INTC_init_interrupts(void)\r
-{\r
- unsigned int int_grp, int_req;\r
-\r
- // For all interrupt groups,\r
- for (int_grp = 0; int_grp < AVR32_INTC_NUM_INT_GRPS; int_grp++)\r
- {\r
- // For all interrupt request lines of each group,\r
- for (int_req = 0; int_req < _int_handler_table[int_grp].num_irqs; int_req++)\r
- {\r
- // Assign _unhandled_interrupt as default interrupt handler.\r
- _int_handler_table[int_grp]._int_line_handler_table[int_req] = &_unhandled_interrupt;\r
- }\r
-\r
- // Set the interrupt group priority register to its default value.\r
- // By default, all interrupt groups are linked to the interrupt priority\r
- // level 0 and to the interrupt vector _int0.\r
- AVR32_INTC.ipr[int_grp] = ipr_val[INT0];\r
- }\r
-}\r
-\r
-\r
-void INTC_register_interrupt(__int_handler handler, unsigned int irq, unsigned int int_lev)\r
-{\r
- // Determine the group of the IRQ.\r
- unsigned int int_grp = irq / AVR32_INTC_MAX_NUM_IRQS_PER_GRP;\r
-\r
- // Store in _int_line_handler_table_x the pointer to the interrupt handler, so\r
- // that _get_interrupt_handler can retrieve it when the interrupt is vectored.\r
- _int_handler_table[int_grp]._int_line_handler_table[irq % AVR32_INTC_MAX_NUM_IRQS_PER_GRP] = handler;\r
-\r
- // Program the corresponding IPRX register to set the interrupt priority level\r
- // and the interrupt vector offset that will be fetched by the core interrupt\r
- // system.\r
- // NOTE: The _intx functions are intermediate assembly functions between the\r
- // core interrupt system and the user interrupt handler.\r
- AVR32_INTC.ipr[int_grp] = ipr_val[int_lev & (AVR32_INTC_IPR0_INTLEV_MASK >> AVR32_INTC_IPR0_INTLEV_OFFSET)];\r
-}\r
+++ /dev/null
-/*This file is prepared for Doxygen automatic documentation generation.*/\r
-/*! \file *********************************************************************\r
- *\r
- * \brief INTC driver for AVR32 UC3.\r
- *\r
- * AVR32 Interrupt Controller driver module.\r
- *\r
- * - Compiler: IAR EWAVR32 and GNU GCC for AVR32\r
- * - Supported devices: All AVR32 devices with an INTC module can be used.\r
- * - AppNote:\r
- *\r
- * \author Atmel Corporation: http://www.atmel.com \n\r
- * Support and FAQ: http://support.atmel.no/\r
- *\r
- ******************************************************************************/\r
-\r
-/* Copyright (c) 2007, Atmel Corporation All rights reserved.\r
- *\r
- * Redistribution and use in source and binary forms, with or without\r
- * modification, are permitted provided that the following conditions are met:\r
- *\r
- * 1. Redistributions of source code must retain the above copyright notice,\r
- * this list of conditions and the following disclaimer.\r
- *\r
- * 2. Redistributions in binary form must reproduce the above copyright notice,\r
- * this list of conditions and the following disclaimer in the documentation\r
- * and/or other materials provided with the distribution.\r
- *\r
- * 3. The name of ATMEL may not be used to endorse or promote products derived\r
- * from this software without specific prior written permission.\r
- *\r
- * THIS SOFTWARE IS PROVIDED BY ATMEL ``AS IS'' AND ANY EXPRESS OR IMPLIED\r
- * WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF\r
- * MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE EXPRESSLY AND\r
- * SPECIFICALLY DISCLAIMED. IN NO EVENT SHALL ATMEL BE LIABLE FOR ANY DIRECT,\r
- * INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES\r
- * (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;\r
- * LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND\r
- * ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT\r
- * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF\r
- * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.\r
- */\r
-\r
-\r
-#ifndef _INTC_H_\r
-#define _INTC_H_\r
-\r
-#include "compiler.h"\r
-\r
-\r
-//! Maximal number of interrupt request lines per group.\r
-#define AVR32_INTC_MAX_NUM_IRQS_PER_GRP 32\r
-\r
-//! Number of interrupt priority levels.\r
-#define AVR32_INTC_NUM_INT_LEVELS (1 << AVR32_INTC_IPR0_INTLEV_SIZE)\r
-\r
-/*! \name Interrupt Priority Levels\r
- */\r
-//! @{\r
-#define INT0 0 //!< Lowest interrupt priority level.\r
-#define INT1 1\r
-#define INT2 2\r
-#define INT3 3 //!< Highest interrupt priority level.\r
-//! @}\r
-\r
-\r
-#ifdef __AVR32_ABI_COMPILER__ // Automatically defined when compiling for AVR32, not when assembling.\r
-\r
-//! Pointer to interrupt handler.\r
-#if __GNUC__\r
-typedef void (*__int_handler)(void);\r
-#elif __ICCAVR32__\r
-typedef void (__interrupt *__int_handler)(void);\r
-#endif\r
-\r
-\r
-/*! \brief Initializes the hardware interrupt controller driver.\r
- *\r
- * \note Taken and adapted from Newlib.\r
- */\r
-extern void INTC_init_interrupts(void);\r
-\r
-/*! \brief Registers an interrupt handler.\r
- *\r
- * \param handler Interrupt handler to register.\r
- * \param irq IRQ of the interrupt handler to register.\r
- * \param int_lev Interrupt priority level to assign to the group of this IRQ.\r
- *\r
- * \warning The interrupt handler must manage the `rete' instruction, what can\r
- * be done thanks to pure assembly, inline assembly or the\r
- * `__attribute__((__interrupt__))' C function attribute.\r
- *\r
- * \warning If several interrupt handlers of a same group are registered with\r
- * different priority levels, only the latest priority level set will\r
- * be effective.\r
- *\r
- * \note Taken and adapted from Newlib.\r
- */\r
-extern void INTC_register_interrupt(__int_handler handler, unsigned int irq, unsigned int int_lev);\r
-\r
-#endif // __AVR32_ABI_COMPILER__\r
-\r
-\r
-#endif // _INTC_H_\r
+++ /dev/null
-/*This file has been prepared for Doxygen automatic documentation generation.*/\r
-/*! \file *********************************************************************\r
- *\r
- * \brief Power Manager driver.\r
- *\r
- *\r
- * - Compiler: IAR EWAVR32 and GNU GCC for AVR32\r
- * - Supported devices: All AVR32 devices.\r
- * - AppNote:\r
- *\r
- * \author Atmel Corporation: http://www.atmel.com \n\r
- * Support and FAQ: http://support.atmel.no/\r
- *\r
- *****************************************************************************/\r
-\r
-/* Copyright (c) 2007, Atmel Corporation All rights reserved.\r
- *\r
- * Redistribution and use in source and binary forms, with or without\r
- * modification, are permitted provided that the following conditions are met:\r
- *\r
- * 1. Redistributions of source code must retain the above copyright notice,\r
- * this list of conditions and the following disclaimer.\r
- *\r
- * 2. Redistributions in binary form must reproduce the above copyright notice,\r
- * this list of conditions and the following disclaimer in the documentation\r
- * and/or other materials provided with the distribution.\r
- *\r
- * 3. The name of ATMEL may not be used to endorse or promote products derived\r
- * from this software without specific prior written permission.\r
- *\r
- * THIS SOFTWARE IS PROVIDED BY ATMEL ``AS IS'' AND ANY EXPRESS OR IMPLIED\r
- * WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF\r
- * MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE EXPRESSLY AND\r
- * SPECIFICALLY DISCLAIMED. IN NO EVENT SHALL ATMEL BE LIABLE FOR ANY DIRECT,\r
- * INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES\r
- * (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;\r
- * LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND\r
- * ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT\r
- * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF\r
- * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.\r
- */\r
-\r
-\r
-#include "pm.h"\r
-\r
-\r
-/*! \name PM Writable Bit-Field Registers\r
- */\r
-//! @{\r
-\r
-typedef union\r
-{\r
- unsigned long mcctrl;\r
- avr32_pm_mcctrl_t MCCTRL;\r
-} u_avr32_pm_mcctrl_t;\r
-\r
-typedef union\r
-{\r
- unsigned long cksel;\r
- avr32_pm_cksel_t CKSEL;\r
-} u_avr32_pm_cksel_t;\r
-\r
-typedef union\r
-{\r
- unsigned long pll;\r
- avr32_pm_pll_t PLL;\r
-} u_avr32_pm_pll_t;\r
-\r
-typedef union\r
-{\r
- unsigned long oscctrl0;\r
- avr32_pm_oscctrl0_t OSCCTRL0;\r
-} u_avr32_pm_oscctrl0_t;\r
-\r
-typedef union\r
-{\r
- unsigned long oscctrl1;\r
- avr32_pm_oscctrl1_t OSCCTRL1;\r
-} u_avr32_pm_oscctrl1_t;\r
-\r
-typedef union\r
-{\r
- unsigned long oscctrl32;\r
- avr32_pm_oscctrl32_t OSCCTRL32;\r
-} u_avr32_pm_oscctrl32_t;\r
-\r
-typedef union\r
-{\r
- unsigned long ier;\r
- avr32_pm_ier_t IER;\r
-} u_avr32_pm_ier_t;\r
-\r
-typedef union\r
-{\r
- unsigned long idr;\r
- avr32_pm_idr_t IDR;\r
-} u_avr32_pm_idr_t;\r
-\r
-typedef union\r
-{\r
- unsigned long icr;\r
- avr32_pm_icr_t ICR;\r
-} u_avr32_pm_icr_t;\r
-\r
-typedef union\r
-{\r
- unsigned long gcctrl;\r
- avr32_pm_gcctrl_t GCCTRL;\r
-} u_avr32_pm_gcctrl_t;\r
-\r
-typedef union\r
-{\r
- unsigned long rccr;\r
- avr32_pm_rccr_t RCCR;\r
-} u_avr32_pm_rccr_t;\r
-\r
-typedef union\r
-{\r
- unsigned long bgcr;\r
- avr32_pm_bgcr_t BGCR;\r
-} u_avr32_pm_bgcr_t;\r
-\r
-typedef union\r
-{\r
- unsigned long vregcr;\r
- avr32_pm_vregcr_t VREGCR;\r
-} u_avr32_pm_vregcr_t;\r
-\r
-typedef union\r
-{\r
- unsigned long bod;\r
- avr32_pm_bod_t BOD;\r
-} u_avr32_pm_bod_t;\r
-\r
-//! @}\r
-\r
-\r
-/*! \brief Sets the mode of the oscillator 0.\r
- *\r
- * \param pm Base address of the Power Manager (i.e. &AVR32_PM).\r
- * \param mode Oscillator 0 mode (i.e. AVR32_PM_OSCCTRL0_MODE_x).\r
- */\r
-static void pm_set_osc0_mode(volatile avr32_pm_t *pm, unsigned int mode)\r
-{\r
- // Read\r
- u_avr32_pm_oscctrl0_t u_avr32_pm_oscctrl0 = {pm->oscctrl0};\r
- // Modify\r
- u_avr32_pm_oscctrl0.OSCCTRL0.mode = mode;\r
- // Write\r
- pm->oscctrl0 = u_avr32_pm_oscctrl0.oscctrl0;\r
-}\r
-\r
-\r
-void pm_enable_osc0_ext_clock(volatile avr32_pm_t *pm)\r
-{\r
- pm_set_osc0_mode(pm, AVR32_PM_OSCCTRL0_MODE_EXT_CLOCK);\r
-}\r
-\r
-\r
-void pm_enable_osc0_crystal(volatile avr32_pm_t *pm, unsigned int fosc0)\r
-{\r
- pm_set_osc0_mode(pm, (fosc0 < 8000000) ? AVR32_PM_OSCCTRL0_MODE_CRYSTAL_G2 :\r
- AVR32_PM_OSCCTRL0_MODE_CRYSTAL_G3);\r
-}\r
-\r
-\r
-void pm_enable_clk0(volatile avr32_pm_t *pm, unsigned int startup)\r
-{\r
- pm_enable_clk0_no_wait(pm, startup);\r
- pm_wait_for_clk0_ready(pm);\r
-}\r
-\r
-\r
-void pm_disable_clk0(volatile avr32_pm_t *pm)\r
-{\r
- pm->mcctrl &= ~AVR32_PM_MCCTRL_OSC0EN_MASK;\r
-}\r
-\r
-\r
-void pm_enable_clk0_no_wait(volatile avr32_pm_t *pm, unsigned int startup)\r
-{\r
- // Read register\r
- u_avr32_pm_oscctrl0_t u_avr32_pm_oscctrl0 = {pm->oscctrl0};\r
- // Modify\r
- u_avr32_pm_oscctrl0.OSCCTRL0.startup = startup;\r
- // Write back\r
- pm->oscctrl0 = u_avr32_pm_oscctrl0.oscctrl0;\r
-\r
- pm->mcctrl |= AVR32_PM_MCCTRL_OSC0EN_MASK;\r
-}\r
-\r
-\r
-void pm_wait_for_clk0_ready(volatile avr32_pm_t *pm)\r
-{\r
- while (!(pm->poscsr & AVR32_PM_POSCSR_OSC0RDY_MASK));\r
-}\r
-\r
-\r
-/*! \brief Sets the mode of the oscillator 1.\r
- *\r
- * \param pm Base address of the Power Manager (i.e. &AVR32_PM).\r
- * \param mode Oscillator 1 mode (i.e. AVR32_PM_OSCCTRL1_MODE_x).\r
- */\r
-static void pm_set_osc1_mode(volatile avr32_pm_t *pm, unsigned int mode)\r
-{\r
- // Read\r
- u_avr32_pm_oscctrl1_t u_avr32_pm_oscctrl1 = {pm->oscctrl1};\r
- // Modify\r
- u_avr32_pm_oscctrl1.OSCCTRL1.mode = mode;\r
- // Write\r
- pm->oscctrl1 = u_avr32_pm_oscctrl1.oscctrl1;\r
-}\r
-\r
-\r
-void pm_enable_osc1_ext_clock(volatile avr32_pm_t *pm)\r
-{\r
- pm_set_osc1_mode(pm, AVR32_PM_OSCCTRL1_MODE_EXT_CLOCK);\r
-}\r
-\r
-\r
-void pm_enable_osc1_crystal(volatile avr32_pm_t *pm, unsigned int fosc1)\r
-{\r
- pm_set_osc1_mode(pm, (fosc1 < 8000000) ? AVR32_PM_OSCCTRL1_MODE_CRYSTAL_G2 :\r
- AVR32_PM_OSCCTRL1_MODE_CRYSTAL_G3);\r
-}\r
-\r
-\r
-void pm_enable_clk1(volatile avr32_pm_t *pm, unsigned int startup)\r
-{\r
- pm_enable_clk1_no_wait(pm, startup);\r
- pm_wait_for_clk1_ready(pm);\r
-}\r
-\r
-\r
-void pm_disable_clk1(volatile avr32_pm_t *pm)\r
-{\r
- pm->mcctrl &= ~AVR32_PM_MCCTRL_OSC1EN_MASK;\r
-}\r
-\r
-\r
-void pm_enable_clk1_no_wait(volatile avr32_pm_t *pm, unsigned int startup)\r
-{\r
- // Read register\r
- u_avr32_pm_oscctrl1_t u_avr32_pm_oscctrl1 = {pm->oscctrl1};\r
- // Modify\r
- u_avr32_pm_oscctrl1.OSCCTRL1.startup = startup;\r
- // Write back\r
- pm->oscctrl1 = u_avr32_pm_oscctrl1.oscctrl1;\r
-\r
- pm->mcctrl |= AVR32_PM_MCCTRL_OSC1EN_MASK;\r
-}\r
-\r
-\r
-void pm_wait_for_clk1_ready(volatile avr32_pm_t *pm)\r
-{\r
- while (!(pm->poscsr & AVR32_PM_POSCSR_OSC1RDY_MASK));\r
-}\r
-\r
-\r
-/*! \brief Sets the mode of the 32-kHz oscillator.\r
- *\r
- * \param pm Base address of the Power Manager (i.e. &AVR32_PM).\r
- * \param mode 32-kHz oscillator mode (i.e. AVR32_PM_OSCCTRL32_MODE_x).\r
- */\r
-static void pm_set_osc32_mode(volatile avr32_pm_t *pm, unsigned int mode)\r
-{\r
- // Read\r
- u_avr32_pm_oscctrl32_t u_avr32_pm_oscctrl32 = {pm->oscctrl32};\r
- // Modify\r
- u_avr32_pm_oscctrl32.OSCCTRL32.mode = mode;\r
- // Write\r
- pm->oscctrl32 = u_avr32_pm_oscctrl32.oscctrl32;\r
-}\r
-\r
-\r
-void pm_enable_osc32_ext_clock(volatile avr32_pm_t *pm)\r
-{\r
- pm_set_osc32_mode(pm, AVR32_PM_OSCCTRL32_MODE_EXT_CLOCK);\r
-}\r
-\r
-\r
-void pm_enable_osc32_crystal(volatile avr32_pm_t *pm)\r
-{\r
- pm_set_osc32_mode(pm, AVR32_PM_OSCCTRL32_MODE_CRYSTAL);\r
-}\r
-\r
-\r
-void pm_enable_clk32(volatile avr32_pm_t *pm, unsigned int startup)\r
-{\r
- pm_enable_clk32_no_wait(pm, startup);\r
- pm_wait_for_clk32_ready(pm);\r
-}\r
-\r
-\r
-void pm_disable_clk32(volatile avr32_pm_t *pm)\r
-{\r
- pm->oscctrl32 &= ~AVR32_PM_OSCCTRL32_OSC32EN_MASK;\r
-}\r
-\r
-\r
-void pm_enable_clk32_no_wait(volatile avr32_pm_t *pm, unsigned int startup)\r
-{\r
- // Read register\r
- u_avr32_pm_oscctrl32_t u_avr32_pm_oscctrl32 = {pm->oscctrl32};\r
- // Modify\r
- u_avr32_pm_oscctrl32.OSCCTRL32.osc32en = 1;\r
- u_avr32_pm_oscctrl32.OSCCTRL32.startup = startup;\r
- // Write back\r
- pm->oscctrl32 = u_avr32_pm_oscctrl32.oscctrl32;\r
-}\r
-\r
-\r
-void pm_wait_for_clk32_ready(volatile avr32_pm_t *pm)\r
-{\r
- while (!(pm->poscsr & AVR32_PM_POSCSR_OSC32RDY_MASK));\r
-}\r
-\r
-\r
-void pm_cksel(volatile avr32_pm_t *pm,\r
- unsigned int pbadiv,\r
- unsigned int pbasel,\r
- unsigned int pbbdiv,\r
- unsigned int pbbsel,\r
- unsigned int hsbdiv,\r
- unsigned int hsbsel)\r
-{\r
- u_avr32_pm_cksel_t u_avr32_pm_cksel = {0};\r
-\r
- u_avr32_pm_cksel.CKSEL.cpusel = hsbsel;\r
- u_avr32_pm_cksel.CKSEL.cpudiv = hsbdiv;\r
- u_avr32_pm_cksel.CKSEL.hsbsel = hsbsel;\r
- u_avr32_pm_cksel.CKSEL.hsbdiv = hsbdiv;\r
- u_avr32_pm_cksel.CKSEL.pbasel = pbasel;\r
- u_avr32_pm_cksel.CKSEL.pbadiv = pbadiv;\r
- u_avr32_pm_cksel.CKSEL.pbbsel = pbbsel;\r
- u_avr32_pm_cksel.CKSEL.pbbdiv = pbbdiv;\r
-\r
- pm->cksel = u_avr32_pm_cksel.cksel;\r
-\r
- // Wait for ckrdy bit and then clear it\r
- while (!(pm->poscsr & AVR32_PM_POSCSR_CKRDY_MASK));\r
-}\r
-\r
-\r
-void pm_gc_setup(volatile avr32_pm_t *pm,\r
- unsigned int gc,\r
- unsigned int osc_or_pll, // Use Osc (=0) or PLL (=1)\r
- unsigned int pll_osc, // Sel Osc0/PLL0 or Osc1/PLL1\r
- unsigned int diven,\r
- unsigned int div)\r
-{\r
- u_avr32_pm_gcctrl_t u_avr32_pm_gcctrl = {0};\r
-\r
- u_avr32_pm_gcctrl.GCCTRL.oscsel = pll_osc;\r
- u_avr32_pm_gcctrl.GCCTRL.pllsel = osc_or_pll;\r
- u_avr32_pm_gcctrl.GCCTRL.diven = diven;\r
- u_avr32_pm_gcctrl.GCCTRL.div = div;\r
-\r
- pm->gcctrl[gc] = u_avr32_pm_gcctrl.gcctrl;\r
-}\r
-\r
-\r
-void pm_gc_enable(volatile avr32_pm_t *pm,\r
- unsigned int gc)\r
-{\r
- pm->gcctrl[gc] |= AVR32_PM_GCCTRL_CEN_MASK;\r
-}\r
-\r
-\r
-void pm_gc_disable(volatile avr32_pm_t *pm,\r
- unsigned int gc)\r
-{\r
- pm->gcctrl[gc] &= ~AVR32_PM_GCCTRL_CEN_MASK;\r
-}\r
-\r
-\r
-void pm_pll_setup(volatile avr32_pm_t *pm,\r
- unsigned int pll,\r
- unsigned int mul,\r
- unsigned int div,\r
- unsigned int osc,\r
- unsigned int lockcount)\r
-{\r
- u_avr32_pm_pll_t u_avr32_pm_pll = {0};\r
-\r
- u_avr32_pm_pll.PLL.pllosc = osc;\r
- u_avr32_pm_pll.PLL.plldiv = div;\r
- u_avr32_pm_pll.PLL.pllmul = mul;\r
- u_avr32_pm_pll.PLL.pllcount = lockcount;\r
-\r
- pm->pll[pll] = u_avr32_pm_pll.pll;\r
-}\r
-\r
-\r
-void pm_pll_set_option(volatile avr32_pm_t *pm,\r
- unsigned int pll,\r
- unsigned int pll_freq,\r
- unsigned int pll_div2,\r
- unsigned int pll_wbwdisable)\r
-{\r
- u_avr32_pm_pll_t u_avr32_pm_pll = {pm->pll[pll]};\r
- u_avr32_pm_pll.PLL.pllopt = pll_freq | (pll_div2 << 1) | (pll_wbwdisable << 2);\r
- pm->pll[pll] = u_avr32_pm_pll.pll;\r
-}\r
-\r
-\r
-unsigned int pm_pll_get_option(volatile avr32_pm_t *pm,\r
- unsigned int pll)\r
-{\r
- return (pm->pll[pll] & AVR32_PM_PLLOPT_MASK) >> AVR32_PM_PLLOPT_OFFSET;\r
-}\r
-\r
-\r
-void pm_pll_enable(volatile avr32_pm_t *pm,\r
- unsigned int pll)\r
-{\r
- pm->pll[pll] |= AVR32_PM_PLLEN_MASK;\r
-}\r
-\r
-\r
-void pm_pll_disable(volatile avr32_pm_t *pm,\r
- unsigned int pll)\r
-{\r
- pm->pll[pll] &= ~AVR32_PM_PLLEN_MASK;\r
-}\r
-\r
-\r
-void pm_wait_for_pll0_locked(volatile avr32_pm_t *pm)\r
-{\r
- while (!(pm->poscsr & AVR32_PM_POSCSR_LOCK0_MASK));\r
-\r
- // Bypass the lock signal of the PLL\r
- pm->pll[0] |= AVR32_PM_PLL0_PLLBPL_MASK;\r
-}\r
-\r
-\r
-void pm_wait_for_pll1_locked(volatile avr32_pm_t *pm)\r
-{\r
- while (!(pm->poscsr & AVR32_PM_POSCSR_LOCK1_MASK));\r
-\r
- // Bypass the lock signal of the PLL\r
- pm->pll[1] |= AVR32_PM_PLL1_PLLBPL_MASK;\r
-}\r
-\r
-\r
-void pm_switch_to_clock(volatile avr32_pm_t *pm, unsigned long clock)\r
-{\r
- // Read\r
- u_avr32_pm_mcctrl_t u_avr32_pm_mcctrl = {pm->mcctrl};\r
- // Modify\r
- u_avr32_pm_mcctrl.MCCTRL.mcsel = clock;\r
- // Write back\r
- pm->mcctrl = u_avr32_pm_mcctrl.mcctrl;\r
-}\r
-\r
-\r
-void pm_switch_to_osc0(volatile avr32_pm_t *pm, unsigned int fosc0, unsigned int startup)\r
-{\r
- pm_enable_osc0_crystal(pm, fosc0); // Enable the Osc0 in crystal mode\r
- pm_enable_clk0(pm, startup); // Crystal startup time - This parameter is critical and depends on the characteristics of the crystal\r
- pm_switch_to_clock(pm, AVR32_PM_MCSEL_OSC0); // Then switch main clock to Osc0\r
-}\r
-\r
-\r
-void pm_bod_enable_irq(volatile avr32_pm_t *pm)\r
-{\r
- pm->ier = AVR32_PM_IER_BODDET_MASK;\r
-}\r
-\r
-\r
-void pm_bod_disable_irq(volatile avr32_pm_t *pm)\r
-{\r
- pm->idr = AVR32_PM_IDR_BODDET_MASK;\r
-}\r
-\r
-\r
-void pm_bod_clear_irq(volatile avr32_pm_t *pm)\r
-{\r
- pm->icr = AVR32_PM_ICR_BODDET_MASK;\r
-}\r
-\r
-\r
-unsigned long pm_bod_get_irq_status(volatile avr32_pm_t *pm)\r
-{\r
- return ((pm->isr & AVR32_PM_ISR_BODDET_MASK) != 0);\r
-}\r
-\r
-\r
-unsigned long pm_bod_get_irq_enable_bit(volatile avr32_pm_t *pm)\r
-{\r
- return ((pm->imr & AVR32_PM_IMR_BODDET_MASK) != 0);\r
-}\r
-\r
-\r
-unsigned long pm_bod_get_level(volatile avr32_pm_t *pm)\r
-{\r
- return (pm->bod & AVR32_PM_BOD_LEVEL_MASK) >> AVR32_PM_BOD_LEVEL_OFFSET;\r
-}\r
-\r
-\r
-void pm_write_gplp(volatile avr32_pm_t *pm,unsigned long gplp, unsigned long value)\r
-{\r
- pm->gplp[gplp] = value;\r
-}\r
-\r
-\r
-unsigned long pm_read_gplp(volatile avr32_pm_t *pm,unsigned long gplp)\r
-{\r
- return pm->gplp[gplp];\r
-}\r
+++ /dev/null
-/*This file has been prepared for Doxygen automatic documentation generation.*/\r
-/*! \file *********************************************************************\r
- *\r
- * \brief Power Manager driver.\r
- *\r
- *\r
- * - Compiler: IAR EWAVR32 and GNU GCC for AVR32\r
- * - Supported devices: All AVR32 devices.\r
- * - AppNote:\r
- *\r
- * \author Atmel Corporation: http://www.atmel.com \n\r
- * Support and FAQ: http://support.atmel.no/\r
- *\r
- *****************************************************************************/\r
-\r
-/* Copyright (c) 2007, Atmel Corporation All rights reserved.\r
- *\r
- * Redistribution and use in source and binary forms, with or without\r
- * modification, are permitted provided that the following conditions are met:\r
- *\r
- * 1. Redistributions of source code must retain the above copyright notice,\r
- * this list of conditions and the following disclaimer.\r
- *\r
- * 2. Redistributions in binary form must reproduce the above copyright notice,\r
- * this list of conditions and the following disclaimer in the documentation\r
- * and/or other materials provided with the distribution.\r
- *\r
- * 3. The name of ATMEL may not be used to endorse or promote products derived\r
- * from this software without specific prior written permission.\r
- *\r
- * THIS SOFTWARE IS PROVIDED BY ATMEL ``AS IS'' AND ANY EXPRESS OR IMPLIED\r
- * WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF\r
- * MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE EXPRESSLY AND\r
- * SPECIFICALLY DISCLAIMED. IN NO EVENT SHALL ATMEL BE LIABLE FOR ANY DIRECT,\r
- * INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES\r
- * (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;\r
- * LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND\r
- * ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT\r
- * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF\r
- * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.\r
- */\r
-\r
-\r
-#ifndef _PM_H_\r
-#define _PM_H_\r
-\r
-#include <avr32/io.h>\r
-#include "compiler.h"\r
-#include "preprocessor.h"\r
-\r
-\r
-/*! \brief Sets the MCU in the specified sleep mode.\r
- *\r
- * \param mode Sleep mode:\r
- * \arg \c AVR32_PM_SMODE_IDLE: Idle;\r
- * \arg \c AVR32_PM_SMODE_FROZEN: Frozen;\r
- * \arg \c AVR32_PM_SMODE_STANDBY: Standby;\r
- * \arg \c AVR32_PM_SMODE_STOP: Stop;\r
- * \arg \c AVR32_PM_SMODE_SHUTDOWN: Shutdown (DeepStop);\r
- * \arg \c AVR32_PM_SMODE_STATIC: Static.\r
- */\r
-#define SLEEP(mode) {__asm__ __volatile__ ("sleep "STRINGZ(mode));}\r
-\r
-\r
-/*! \brief Gets the MCU reset cause.\r
- *\r
- * \param pm Base address of the Power Manager instance (i.e. &AVR32_PM).\r
- *\r
- * \return The MCU reset cause which can be masked with the\r
- * \c AVR32_PM_RCAUSE_x_MASK bit-masks to isolate specific causes.\r
- */\r
-#if __GNUC__\r
-__attribute__((__always_inline__))\r
-#endif\r
-extern __inline__ unsigned int pm_get_reset_cause(volatile avr32_pm_t *pm)\r
-{\r
- return pm->rcause;\r
-}\r
-\r
-\r
-/*!\r
- * \brief This function will enable the external clock mode of the oscillator 0.\r
- * \param pm Base address of the Power Manager (i.e. &AVR32_PM)\r
- */\r
-extern void pm_enable_osc0_ext_clock(volatile avr32_pm_t *pm);\r
-\r
-\r
-/*!\r
- * \brief This function will enable the crystal mode of the oscillator 0.\r
- * \param pm Base address of the Power Manager (i.e. &AVR32_PM)\r
- * \param fosc0 Oscillator 0 crystal frequency (Hz)\r
- */\r
-extern void pm_enable_osc0_crystal(volatile avr32_pm_t *pm, unsigned int fosc0);\r
-\r
-\r
-/*!\r
- * \brief This function will enable the oscillator 0 to be used with a startup time.\r
- * \param pm Base address of the Power Manager (i.e. &AVR32_PM)\r
- * \param startup Clock 0 startup time. Time is expressed in term of RCOsc periods (3-bit value)\r
- */\r
-extern void pm_enable_clk0(volatile avr32_pm_t *pm, unsigned int startup);\r
-\r
-\r
-/*!\r
- * \brief This function will disable the oscillator 0.\r
- * \param pm Base address of the Power Manager (i.e. &AVR32_PM)\r
- */\r
-extern void pm_disable_clk0(volatile avr32_pm_t *pm);\r
-\r
-\r
-/*!\r
- * \brief This function will enable the oscillator 0 to be used with no startup time.\r
- * \param pm Base address of the Power Manager (i.e. &AVR32_PM)\r
- * \param startup Clock 0 startup time. Time is expressed in term of RCOsc periods (3-bit value) but not checked.\r
- */\r
-extern void pm_enable_clk0_no_wait(volatile avr32_pm_t *pm, unsigned int startup);\r
-\r
-\r
-/*!\r
- * \brief This function will wait until the Osc0 clock is ready.\r
- * \param pm Base address of the Power Manager (i.e. &AVR32_PM)\r
- */\r
-extern void pm_wait_for_clk0_ready(volatile avr32_pm_t *pm);\r
-\r
-\r
-/*!\r
- * \brief This function will enable the external clock mode of the oscillator 1.\r
- * \param pm Base address of the Power Manager (i.e. &AVR32_PM)\r
- */\r
-extern void pm_enable_osc1_ext_clock(volatile avr32_pm_t *pm);\r
-\r
-\r
-/*!\r
- * \brief This function will enable the crystal mode of the oscillator 1.\r
- * \param pm Base address of the Power Manager (i.e. &AVR32_PM)\r
- * \param fosc1 Oscillator 1 crystal frequency (Hz)\r
- */\r
-extern void pm_enable_osc1_crystal(volatile avr32_pm_t *pm, unsigned int fosc1);\r
-\r
-\r
-/*!\r
- * \brief This function will enable the oscillator 1 to be used with a startup time.\r
- * \param pm Base address of the Power Manager (i.e. &AVR32_PM)\r
- * \param startup Clock 1 startup time. Time is expressed in term of RCOsc periods (3-bit value)\r
- */\r
-extern void pm_enable_clk1(volatile avr32_pm_t *pm, unsigned int startup);\r
-\r
-\r
-/*!\r
- * \brief This function will disable the oscillator 1.\r
- * \param pm Base address of the Power Manager (i.e. &AVR32_PM)\r
- */\r
-extern void pm_disable_clk1(volatile avr32_pm_t *pm);\r
-\r
-\r
-/*!\r
- * \brief This function will enable the oscillator 1 to be used with no startup time.\r
- * \param pm Base address of the Power Manager (i.e. &AVR32_PM)\r
- * \param startup Clock 1 startup time. Time is expressed in term of RCOsc periods (3-bit value) but not checked.\r
- */\r
-extern void pm_enable_clk1_no_wait(volatile avr32_pm_t *pm, unsigned int startup);\r
-\r
-\r
-/*!\r
- * \brief This function will wait until the Osc1 clock is ready.\r
- * \param pm Base address of the Power Manager (i.e. &AVR32_PM)\r
- */\r
-extern void pm_wait_for_clk1_ready(volatile avr32_pm_t *pm);\r
-\r
-\r
-/*!\r
- * \brief This function will enable the external clock mode of the 32-kHz oscillator.\r
- * \param pm Base address of the Power Manager (i.e. &AVR32_PM)\r
- */\r
-extern void pm_enable_osc32_ext_clock(volatile avr32_pm_t *pm);\r
-\r
-\r
-/*!\r
- * \brief This function will enable the crystal mode of the 32-kHz oscillator.\r
- * \param pm Base address of the Power Manager (i.e. &AVR32_PM)\r
- */\r
-extern void pm_enable_osc32_crystal(volatile avr32_pm_t *pm);\r
-\r
-\r
-/*!\r
- * \brief This function will enable the oscillator 32 to be used with a startup time.\r
- * \param pm Base address of the Power Manager (i.e. &AVR32_PM)\r
- * \param startup Clock 32 kHz startup time. Time is expressed in term of RCOsc periods (3-bit value)\r
- */\r
-extern void pm_enable_clk32(volatile avr32_pm_t *pm, unsigned int startup);\r
-\r
-\r
-/*!\r
- * \brief This function will disable the oscillator 32.\r
- * \param pm Base address of the Power Manager (i.e. &AVR32_PM)\r
- */\r
-extern void pm_disable_clk32(volatile avr32_pm_t *pm);\r
-\r
-\r
-/*!\r
- * \brief This function will enable the oscillator 32 to be used with no startup time.\r
- * \param pm Base address of the Power Manager (i.e. &AVR32_PM)\r
- * \param startup Clock 32 kHz startup time. Time is expressed in term of RCOsc periods (3-bit value) but not checked.\r
- */\r
-extern void pm_enable_clk32_no_wait(volatile avr32_pm_t *pm, unsigned int startup);\r
-\r
-\r
-/*!\r
- * \brief This function will wait until the osc32 clock is ready.\r
- * \param pm Base address of the Power Manager (i.e. &AVR32_PM)\r
- */\r
-extern void pm_wait_for_clk32_ready(volatile avr32_pm_t *pm);\r
-\r
-\r
-/*!\r
- * \brief This function will select all the power manager clocks.\r
- * \param pm Base address of the Power Manager (i.e. &AVR32_PM)\r
- * \param pbadiv Peripheral Bus A clock divisor enable\r
- * \param pbasel Peripheral Bus A select\r
- * \param pbbdiv Peripheral Bus B clock divisor enable\r
- * \param pbbsel Peripheral Bus B select\r
- * \param hsbdiv High Speed Bus clock divisor enable (CPU clock = HSB clock)\r
- * \param hsbsel High Speed Bus select (CPU clock = HSB clock )\r
- */\r
-extern void pm_cksel(volatile avr32_pm_t *pm, unsigned int pbadiv, unsigned int pbasel, unsigned int pbbdiv, unsigned int pbbsel, unsigned int hsbdiv, unsigned int hsbsel);\r
-\r
-\r
-/*!\r
- * \brief This function will setup a generic clock.\r
- * \param pm Base address of the Power Manager (i.e. &AVR32_PM)\r
- * \param gc generic clock number (0 for gc0...)\r
- * \param osc_or_pll Use OSC (=0) or PLL (=1)\r
- * \param pll_osc Select Osc0/PLL0 or Osc1/PLL1\r
- * \param diven Generic clock divisor enable\r
- * \param div Generic clock divisor\r
- */\r
-extern void pm_gc_setup(volatile avr32_pm_t *pm, unsigned int gc, unsigned int osc_or_pll, unsigned int pll_osc, unsigned int diven, unsigned int div);\r
-\r
-\r
-/*!\r
- * \brief This function will enable a generic clock.\r
- * \param pm Base address of the Power Manager (i.e. &AVR32_PM)\r
- * \param gc generic clock number (0 for gc0...)\r
- */\r
-extern void pm_gc_enable(volatile avr32_pm_t *pm, unsigned int gc);\r
-\r
-\r
-/*!\r
- * \brief This function will disable a generic clock.\r
- * \param pm Base address of the Power Manager (i.e. &AVR32_PM)\r
- * \param gc generic clock number (0 for gc0...)\r
- */\r
-extern void pm_gc_disable(volatile avr32_pm_t *pm, unsigned int gc);\r
-\r
-\r
-/*!\r
- * \brief This function will setup a PLL.\r
- * \param pm Base address of the Power Manager (i.e. &AVR32_PM)\r
- * \param pll PLL number(0 for PLL0, 1 for PLL1)\r
- * \param mul PLL MUL in the PLL formula\r
- * \param div PLL DIV in the PLL formula\r
- * \param osc OSC number (0 for osc0, 1 for osc1)\r
- * \param lockcount PLL lockount\r
- */\r
-extern void pm_pll_setup(volatile avr32_pm_t *pm, unsigned int pll, unsigned int mul, unsigned int div, unsigned int osc, unsigned int lockcount);\r
-\r
-\r
-/*!\r
- * \brief This function will set a PLL option.\r
- * \param pm Base address of the Power Manager (i.e. &AVR32_PM)\r
- * \param pll PLL number(0 for PLL0, 1 for PLL1)\r
- * \param pll_freq Set to 1 for VCO frequency range 80-180MHz, set to 0 for VCO frequency range 160-240Mhz.\r
- * \param pll_div2 Divide the PLL output frequency by 2 (this settings does not change the FVCO value)\r
- * \param pll_wbwdisable 1 Disable the Wide-Bandith Mode (Wide-Bandwith mode allow a faster startup time and out-of-lock time). 0 to enable the Wide-Bandith Mode.\r
- */\r
-extern void pm_pll_set_option(volatile avr32_pm_t *pm, unsigned int pll, unsigned int pll_freq, unsigned int pll_div2, unsigned int pll_wbwdisable);\r
-\r
-\r
-/*!\r
- * \brief This function will get a PLL option.\r
- * \param pm Base address of the Power Manager (i.e. &AVR32_PM)\r
- * \param pll PLL number(0 for PLL0, 1 for PLL1)\r
- * \return Option\r
- */\r
-extern unsigned int pm_pll_get_option(volatile avr32_pm_t *pm, unsigned int pll);\r
-\r
-\r
-/*!\r
- * \brief This function will enable a PLL.\r
- * \param pm Base address of the Power Manager (i.e. &AVR32_PM)\r
- * \param pll PLL number(0 for PLL0, 1 for PLL1)\r
- */\r
-extern void pm_pll_enable(volatile avr32_pm_t *pm, unsigned int pll);\r
-\r
-\r
-/*!\r
- * \brief This function will disable a PLL.\r
- * \param pm Base address of the Power Manager (i.e. &AVR32_PM)\r
- * \param pll PLL number(0 for PLL0, 1 for PLL1)\r
- */\r
-extern void pm_pll_disable(volatile avr32_pm_t *pm, unsigned int pll);\r
-\r
-\r
-/*!\r
- * \brief This function will wait for PLL0 locked\r
- * \param pm Base address of the Power Manager (i.e. &AVR32_PM)\r
- */\r
-extern void pm_wait_for_pll0_locked(volatile avr32_pm_t *pm);\r
-\r
-\r
-/*!\r
- * \brief This function will wait for PLL1 locked\r
- * \param pm Base address of the Power Manager (i.e. &AVR32_PM)\r
- */\r
-extern void pm_wait_for_pll1_locked(volatile avr32_pm_t *pm);\r
-\r
-\r
-/*!\r
- * \brief This function will switch the power manager main clock.\r
- * \param pm Base address of the Power Manager (i.e. &AVR32_PM)\r
- * \param clock Clock to be switched on. AVR32_PM_MCSEL_SLOW for RCOsc, AVR32_PM_MCSEL_OSC0 for Osc0, AVR32_PM_MCSEL_PLL0 for PLL0.\r
- */\r
-extern void pm_switch_to_clock(volatile avr32_pm_t *pm, unsigned long clock);\r
-\r
-\r
-/*!\r
- * \brief Switch main clock to clock Osc0 (crystal mode)\r
- * \param pm Base address of the Power Manager (i.e. &AVR32_PM)\r
- * \param fosc0 Oscillator 0 crystal frequency (Hz)\r
- * \param startup Crystal 0 startup time. Time is expressed in term of RCOsc periods (3-bit value)\r
- */\r
-extern void pm_switch_to_osc0(volatile avr32_pm_t *pm, unsigned int fosc0, unsigned int startup);\r
-\r
-\r
-#endif // _PM_H_\r
+++ /dev/null
-/*This file is prepared for Doxygen automatic documentation generation.*/\r
-/*! \file *********************************************************************\r
- *\r
- * \brief TC driver for AVR32 UC3.\r
- *\r
- * AVR32 Timer/Counter driver module.\r
- *\r
- * - Compiler: IAR EWAVR32 and GNU GCC for AVR32\r
- * - Supported devices: All AVR32 devices with a TC module can be used.\r
- * - AppNote:\r
- *\r
- * \author Atmel Corporation: http://www.atmel.com \n\r
- * Support and FAQ: http://support.atmel.no/\r
- *\r
- ******************************************************************************/\r
-\r
-/* Copyright (c) 2007, Atmel Corporation All rights reserved.\r
- *\r
- * Redistribution and use in source and binary forms, with or without\r
- * modification, are permitted provided that the following conditions are met:\r
- *\r
- * 1. Redistributions of source code must retain the above copyright notice,\r
- * this list of conditions and the following disclaimer.\r
- *\r
- * 2. Redistributions in binary form must reproduce the above copyright notice,\r
- * this list of conditions and the following disclaimer in the documentation\r
- * and/or other materials provided with the distribution.\r
- *\r
- * 3. The name of ATMEL may not be used to endorse or promote products derived\r
- * from this software without specific prior written permission.\r
- *\r
- * THIS SOFTWARE IS PROVIDED BY ATMEL ``AS IS'' AND ANY EXPRESS OR IMPLIED\r
- * WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF\r
- * MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE EXPRESSLY AND\r
- * SPECIFICALLY DISCLAIMED. IN NO EVENT SHALL ATMEL BE LIABLE FOR ANY DIRECT,\r
- * INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES\r
- * (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;\r
- * LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND\r
- * ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT\r
- * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF\r
- * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.\r
- */\r
-\r
-\r
-#include <avr32/io.h>\r
-#include "compiler.h"\r
-#include "tc.h"\r
-\r
-\r
-int tc_get_interrupt_settings(volatile avr32_tc_t *tc, unsigned int channel)\r
-{\r
- // Check for valid input.\r
- if (channel >= TC_NUMBER_OF_CHANNELS)\r
- return TC_INVALID_ARGUMENT;\r
-\r
- return tc->channel[channel].imr;\r
-}\r
-\r
-\r
-int tc_configure_interrupts(volatile avr32_tc_t *tc, unsigned int channel, const tc_interrupt_t *bitfield)\r
-{\r
- // Check for valid input.\r
- if (channel >= TC_NUMBER_OF_CHANNELS)\r
- return TC_INVALID_ARGUMENT;\r
-\r
- // Enable the appropriate interrupts.\r
- tc->channel[channel].ier = bitfield->etrgs << AVR32_TC_ETRGS_OFFSET |\r
- bitfield->ldrbs << AVR32_TC_LDRBS_OFFSET |\r
- bitfield->ldras << AVR32_TC_LDRAS_OFFSET |\r
- bitfield->cpcs << AVR32_TC_CPCS_OFFSET |\r
- bitfield->cpbs << AVR32_TC_CPBS_OFFSET |\r
- bitfield->cpas << AVR32_TC_CPAS_OFFSET |\r
- bitfield->lovrs << AVR32_TC_LOVRS_OFFSET |\r
- bitfield->covfs << AVR32_TC_COVFS_OFFSET;\r
-\r
- // Disable the appropriate interrupts.\r
- tc->channel[channel].idr = (~bitfield->etrgs & 1) << AVR32_TC_ETRGS_OFFSET |\r
- (~bitfield->ldrbs & 1) << AVR32_TC_LDRBS_OFFSET |\r
- (~bitfield->ldras & 1) << AVR32_TC_LDRAS_OFFSET |\r
- (~bitfield->cpcs & 1) << AVR32_TC_CPCS_OFFSET |\r
- (~bitfield->cpbs & 1) << AVR32_TC_CPBS_OFFSET |\r
- (~bitfield->cpas & 1) << AVR32_TC_CPAS_OFFSET |\r
- (~bitfield->lovrs & 1) << AVR32_TC_LOVRS_OFFSET |\r
- (~bitfield->covfs & 1) << AVR32_TC_COVFS_OFFSET;\r
-\r
- return 0;\r
-}\r
-\r
-\r
-int tc_select_external_clock(volatile avr32_tc_t *tc, unsigned int channel, unsigned int ext_clk_sig_src)\r
-{\r
- // Check for valid input.\r
- if (channel >= TC_NUMBER_OF_CHANNELS || ext_clk_sig_src >= 1 << AVR32_TC_BMR_TC0XC0S_SIZE)\r
- return TC_INVALID_ARGUMENT;\r
-\r
- // Clear bit-field and set the correct behavior.\r
- tc->bmr = (tc->bmr & ~(AVR32_TC_BMR_TC0XC0S_MASK << (channel * AVR32_TC_BMR_TC0XC0S_SIZE))) |\r
- (ext_clk_sig_src << (channel * AVR32_TC_BMR_TC0XC0S_SIZE));\r
-\r
- return 0;\r
-}\r
-\r
-\r
-int tc_init_capture(volatile avr32_tc_t *tc, const tc_capture_opt_t *opt)\r
-{\r
- // Check for valid input.\r
- if (opt->channel >= TC_NUMBER_OF_CHANNELS)\r
- return TC_INVALID_ARGUMENT;\r
-\r
- // MEASURE SIGNALS: Capture operating mode.\r
- tc->channel[opt->channel].cmr = opt->ldrb << AVR32_TC_LDRB_OFFSET |\r
- opt->ldra << AVR32_TC_LDRA_OFFSET |\r
- 0 << AVR32_TC_WAVE_OFFSET |\r
- opt->cpctrg << AVR32_TC_CPCTRG_OFFSET |\r
- opt->abetrg << AVR32_TC_ABETRG_OFFSET |\r
- opt->etrgedg << AVR32_TC_ETRGEDG_OFFSET|\r
- opt->ldbdis << AVR32_TC_LDBDIS_OFFSET |\r
- opt->ldbstop << AVR32_TC_LDBSTOP_OFFSET |\r
- opt->burst << AVR32_TC_BURST_OFFSET |\r
- opt->clki << AVR32_TC_CLKI_OFFSET |\r
- opt->tcclks << AVR32_TC_TCCLKS_OFFSET;\r
-\r
- return 0;\r
-}\r
-\r
-\r
-int tc_init_waveform(volatile avr32_tc_t *tc, const tc_waveform_opt_t *opt)\r
-{\r
- // Check for valid input.\r
- if (opt->channel >= TC_NUMBER_OF_CHANNELS)\r
- return TC_INVALID_ARGUMENT;\r
-\r
- // GENERATE SIGNALS: Waveform operating mode.\r
- tc->channel[opt->channel].cmr = opt->bswtrg << AVR32_TC_BSWTRG_OFFSET |\r
- opt->beevt << AVR32_TC_BEEVT_OFFSET |\r
- opt->bcpc << AVR32_TC_BCPC_OFFSET |\r
- opt->bcpb << AVR32_TC_BCPB_OFFSET |\r
- opt->aswtrg << AVR32_TC_ASWTRG_OFFSET |\r
- opt->aeevt << AVR32_TC_AEEVT_OFFSET |\r
- opt->acpc << AVR32_TC_ACPC_OFFSET |\r
- opt->acpa << AVR32_TC_ACPA_OFFSET |\r
- 1 << AVR32_TC_WAVE_OFFSET |\r
- opt->wavsel << AVR32_TC_WAVSEL_OFFSET |\r
- opt->enetrg << AVR32_TC_ENETRG_OFFSET |\r
- opt->eevt << AVR32_TC_EEVT_OFFSET |\r
- opt->eevtedg << AVR32_TC_EEVTEDG_OFFSET |\r
- opt->cpcdis << AVR32_TC_CPCDIS_OFFSET |\r
- opt->cpcstop << AVR32_TC_CPCSTOP_OFFSET |\r
- opt->burst << AVR32_TC_BURST_OFFSET |\r
- opt->clki << AVR32_TC_CLKI_OFFSET |\r
- opt->tcclks << AVR32_TC_TCCLKS_OFFSET;\r
-\r
- return 0;\r
-}\r
-\r
-\r
-int tc_start(volatile avr32_tc_t *tc, unsigned int channel)\r
-{\r
- // Check for valid input.\r
- if (channel >= TC_NUMBER_OF_CHANNELS)\r
- return TC_INVALID_ARGUMENT;\r
-\r
- // Enable, reset and start the selected timer/counter channel.\r
- tc->channel[channel].ccr = AVR32_TC_SWTRG_MASK | AVR32_TC_CLKEN_MASK;\r
-\r
- return 0;\r
-}\r
-\r
-\r
-int tc_stop(volatile avr32_tc_t *tc, unsigned int channel)\r
-{\r
- // Check for valid input.\r
- if (channel >= TC_NUMBER_OF_CHANNELS)\r
- return TC_INVALID_ARGUMENT;\r
-\r
- // Disable the selected timer/counter channel.\r
- tc->channel[channel].ccr = AVR32_TC_CLKDIS_MASK;\r
-\r
- return 0;\r
-}\r
-\r
-\r
-int tc_software_trigger(volatile avr32_tc_t *tc, unsigned int channel)\r
-{\r
- // Check for valid input.\r
- if (channel >= TC_NUMBER_OF_CHANNELS)\r
- return TC_INVALID_ARGUMENT;\r
-\r
- // Reset the selected timer/counter channel.\r
- tc->channel[channel].ccr = AVR32_TC_SWTRG_MASK;\r
-\r
- return 0;\r
-}\r
-\r
-\r
-void tc_sync_trigger(volatile avr32_tc_t *tc)\r
-{\r
- // Reset all channels of the selected timer/counter.\r
- tc->bcr = AVR32_TC_BCR_SYNC_MASK;\r
-}\r
-\r
-\r
-int tc_read_sr(volatile avr32_tc_t *tc, unsigned int channel)\r
-{\r
- // Check for valid input.\r
- if (channel >= TC_NUMBER_OF_CHANNELS)\r
- return TC_INVALID_ARGUMENT;\r
-\r
- return tc->channel[channel].sr;\r
-}\r
-\r
-\r
-int tc_read_tc(volatile avr32_tc_t *tc, unsigned int channel)\r
-{\r
- // Check for valid input.\r
- if (channel >= TC_NUMBER_OF_CHANNELS)\r
- return TC_INVALID_ARGUMENT;\r
-\r
- return Rd_bitfield(tc->channel[channel].cv, AVR32_TC_CV_MASK);\r
-}\r
-\r
-\r
-int tc_read_ra(volatile avr32_tc_t *tc, unsigned int channel)\r
-{\r
- // Check for valid input.\r
- if (channel >= TC_NUMBER_OF_CHANNELS)\r
- return TC_INVALID_ARGUMENT;\r
-\r
- return Rd_bitfield(tc->channel[channel].ra, AVR32_TC_RA_MASK);\r
-}\r
-\r
-\r
-int tc_read_rb(volatile avr32_tc_t *tc, unsigned int channel)\r
-{\r
- // Check for valid input.\r
- if (channel >= TC_NUMBER_OF_CHANNELS)\r
- return TC_INVALID_ARGUMENT;\r
-\r
- return Rd_bitfield(tc->channel[channel].rb, AVR32_TC_RB_MASK);\r
-}\r
-\r
-\r
-int tc_read_rc(volatile avr32_tc_t *tc, unsigned int channel)\r
-{\r
- // Check for valid input.\r
- if (channel >= TC_NUMBER_OF_CHANNELS)\r
- return TC_INVALID_ARGUMENT;\r
-\r
- return Rd_bitfield(tc->channel[channel].rc, AVR32_TC_RC_MASK);\r
-}\r
-\r
-\r
-int tc_write_ra(volatile avr32_tc_t *tc, unsigned int channel, unsigned short value)\r
-{\r
- // Check for valid input.\r
- if (channel >= TC_NUMBER_OF_CHANNELS)\r
- return TC_INVALID_ARGUMENT;\r
-\r
- // This function is only available in WAVEFORM mode.\r
- if (Tst_bits(tc->channel[channel].cmr, AVR32_TC_WAVE_MASK))\r
- Wr_bitfield(tc->channel[channel].ra, AVR32_TC_RA_MASK, value);\r
-\r
- return value;\r
-}\r
-\r
-\r
-int tc_write_rb(volatile avr32_tc_t *tc, unsigned int channel, unsigned short value)\r
-{\r
- // Check for valid input.\r
- if (channel >= TC_NUMBER_OF_CHANNELS)\r
- return TC_INVALID_ARGUMENT;\r
-\r
- // This function is only available in WAVEFORM mode.\r
- if (Tst_bits(tc->channel[channel].cmr, AVR32_TC_WAVE_MASK))\r
- Wr_bitfield(tc->channel[channel].rb, AVR32_TC_RB_MASK, value);\r
-\r
- return value;\r
-}\r
-\r
-\r
-int tc_write_rc(volatile avr32_tc_t *tc, unsigned int channel, unsigned short value)\r
-{\r
- // Check for valid input.\r
- if (channel >= TC_NUMBER_OF_CHANNELS)\r
- return TC_INVALID_ARGUMENT;\r
-\r
- // This function is only available in WAVEFORM mode.\r
- if (Tst_bits(tc->channel[channel].cmr, AVR32_TC_WAVE_MASK))\r
- Wr_bitfield(tc->channel[channel].rc, AVR32_TC_RC_MASK, value);\r
-\r
- return value;\r
-}\r
+++ /dev/null
-/*This file is prepared for Doxygen automatic documentation generation.*/\r
-/*! \file *********************************************************************\r
- *\r
- * \brief Timer/Counter driver for AVR32 UC3.\r
- *\r
- * AVR32 Timer/Counter driver module.\r
- *\r
- * - Compiler: IAR EWAVR32 and GNU GCC for AVR32\r
- * - Supported devices: All AVR32 devices with a TC module can be used.\r
- * - AppNote:\r
- *\r
- * \author Atmel Corporation: http://www.atmel.com \n\r
- * Support and FAQ: http://support.atmel.no/\r
- *\r
- ******************************************************************************/\r
-\r
-/* Copyright (c) 2007, Atmel Corporation All rights reserved.\r
- *\r
- * Redistribution and use in source and binary forms, with or without\r
- * modification, are permitted provided that the following conditions are met:\r
- *\r
- * 1. Redistributions of source code must retain the above copyright notice,\r
- * this list of conditions and the following disclaimer.\r
- *\r
- * 2. Redistributions in binary form must reproduce the above copyright notice,\r
- * this list of conditions and the following disclaimer in the documentation\r
- * and/or other materials provided with the distribution.\r
- *\r
- * 3. The name of ATMEL may not be used to endorse or promote products derived\r
- * from this software without specific prior written permission.\r
- *\r
- * THIS SOFTWARE IS PROVIDED BY ATMEL ``AS IS'' AND ANY EXPRESS OR IMPLIED\r
- * WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF\r
- * MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE EXPRESSLY AND\r
- * SPECIFICALLY DISCLAIMED. IN NO EVENT SHALL ATMEL BE LIABLE FOR ANY DIRECT,\r
- * INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES\r
- * (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;\r
- * LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND\r
- * ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT\r
- * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF\r
- * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.\r
- */\r
-\r
-\r
-#ifndef _TC_H_\r
-#define _TC_H_\r
-\r
-#include <avr32/io.h>\r
-\r
-\r
-//! TC driver functions return value in case of invalid argument(s).\r
-#define TC_INVALID_ARGUMENT (-1)\r
-\r
-//! Number of timer/counter channels.\r
-#define TC_NUMBER_OF_CHANNELS (sizeof(((avr32_tc_t *)0)->channel) / sizeof(avr32_tc_channel_t))\r
-\r
-/*! \name External Clock Signal 0 Selection\r
- */\r
-//! @{\r
-#define TC_CH0_EXT_CLK0_SRC_TCLK0 AVR32_TC_TC0XC0S_TCLK0\r
-#define TC_CH0_EXT_CLK0_SRC_NO_CLK AVR32_TC_TC0XC0S_NO_CLK\r
-#define TC_CH0_EXT_CLK0_SRC_TIOA1 AVR32_TC_TC0XC0S_TIOA1\r
-#define TC_CH0_EXT_CLK0_SRC_TIOA2 AVR32_TC_TC0XC0S_TIOA2\r
-//! @}\r
-\r
-/*! \name External Clock Signal 1 Selection\r
- */\r
-//! @{\r
-#define TC_CH1_EXT_CLK1_SRC_TCLK1 AVR32_TC_TC1XC1S_TCLK1\r
-#define TC_CH1_EXT_CLK1_SRC_NO_CLK AVR32_TC_TC1XC1S_NO_CLK\r
-#define TC_CH1_EXT_CLK1_SRC_TIOA0 AVR32_TC_TC1XC1S_TIOA0\r
-#define TC_CH1_EXT_CLK1_SRC_TIOA2 AVR32_TC_TC1XC1S_TIOA2\r
-//! @}\r
-\r
-/*! \name External Clock Signal 2 Selection\r
- */\r
-//! @{\r
-#define TC_CH2_EXT_CLK2_SRC_TCLK2 AVR32_TC_TC2XC2S_TCLK2\r
-#define TC_CH2_EXT_CLK2_SRC_NO_CLK AVR32_TC_TC2XC2S_NO_CLK\r
-#define TC_CH2_EXT_CLK2_SRC_TIOA0 AVR32_TC_TC2XC2S_TIOA0\r
-#define TC_CH2_EXT_CLK2_SRC_TIOA1 AVR32_TC_TC2XC2S_TIOA1\r
-//! @}\r
-\r
-/*! \name Event/Trigger Actions on Output\r
- */\r
-//! @{\r
-#define TC_EVT_EFFECT_NOOP AVR32_TC_NONE\r
-#define TC_EVT_EFFECT_SET AVR32_TC_SET\r
-#define TC_EVT_EFFECT_CLEAR AVR32_TC_CLEAR\r
-#define TC_EVT_EFFECT_TOGGLE AVR32_TC_TOGGLE\r
-//! @}\r
-\r
-/*! \name RC Compare Trigger Enable\r
- */\r
-//! @{\r
-#define TC_NO_TRIGGER_COMPARE_RC 0\r
-#define TC_TRIGGER_COMPARE_RC 1\r
-//! @}\r
-\r
-/*! \name Waveform Selection\r
- */\r
-//! @{\r
-#define TC_WAVEFORM_SEL_UP_MODE AVR32_TC_WAVSEL_UP_NO_AUTO\r
-#define TC_WAVEFORM_SEL_UP_MODE_RC_TRIGGER AVR32_TC_WAVSEL_UP_AUTO\r
-#define TC_WAVEFORM_SEL_UPDOWN_MODE AVR32_TC_WAVSEL_UPDOWN_NO_AUTO\r
-#define TC_WAVEFORM_SEL_UPDOWN_MODE_RC_TRIGGER AVR32_TC_WAVSEL_UPDOWN_AUTO\r
-//! @}\r
-\r
-/*! \name TIOA or TIOB External Trigger Selection\r
- */\r
-//! @{\r
-#define TC_EXT_TRIG_SEL_TIOA 1\r
-#define TC_EXT_TRIG_SEL_TIOB 0\r
-//! @}\r
-\r
-/*! \name External Event Selection\r
- */\r
-//! @{\r
-#define TC_EXT_EVENT_SEL_TIOB_INPUT AVR32_TC_EEVT_TIOB_INPUT\r
-#define TC_EXT_EVENT_SEL_XC0_OUTPUT AVR32_TC_EEVT_XC0_OUTPUT\r
-#define TC_EXT_EVENT_SEL_XC1_OUTPUT AVR32_TC_EEVT_XC1_OUTPUT\r
-#define TC_EXT_EVENT_SEL_XC2_OUTPUT AVR32_TC_EEVT_XC2_OUTPUT\r
-//! @}\r
-\r
-/*! \name Edge Selection\r
- */\r
-//! @{\r
-#define TC_SEL_NO_EDGE AVR32_TC_EEVTEDG_NO_EDGE\r
-#define TC_SEL_RISING_EDGE AVR32_TC_EEVTEDG_POS_EDGE\r
-#define TC_SEL_FALLING_EDGE AVR32_TC_EEVTEDG_NEG_EDGE\r
-#define TC_SEL_EACH_EDGE AVR32_TC_EEVTEDG_BOTH_EDGES\r
-//! @}\r
-\r
-/*! \name Burst Signal Selection\r
- */\r
-//! @{\r
-#define TC_BURST_NOT_GATED AVR32_TC_BURST_NOT_GATED\r
-#define TC_BURST_CLK_AND_XC0 AVR32_TC_BURST_CLK_AND_XC0\r
-#define TC_BURST_CLK_AND_XC1 AVR32_TC_BURST_CLK_AND_XC1\r
-#define TC_BURST_CLK_AND_XC2 AVR32_TC_BURST_CLK_AND_XC2\r
-//! @}\r
-\r
-/*! \name Clock Invert\r
- */\r
-//! @{\r
-#define TC_CLOCK_RISING_EDGE 0\r
-#define TC_CLOCK_FALLING_EDGE 1\r
-//! @}\r
-\r
-/*! \name Clock Selection\r
- */\r
-//! @{\r
-#define TC_CLOCK_SOURCE_TC1 AVR32_TC_TCCLKS_TIMER_DIV1_CLOCK\r
-#define TC_CLOCK_SOURCE_TC2 AVR32_TC_TCCLKS_TIMER_DIV2_CLOCK\r
-#define TC_CLOCK_SOURCE_TC3 AVR32_TC_TCCLKS_TIMER_DIV3_CLOCK\r
-#define TC_CLOCK_SOURCE_TC4 AVR32_TC_TCCLKS_TIMER_DIV4_CLOCK\r
-#define TC_CLOCK_SOURCE_TC5 AVR32_TC_TCCLKS_TIMER_DIV5_CLOCK\r
-#define TC_CLOCK_SOURCE_XC0 AVR32_TC_TCCLKS_XC0\r
-#define TC_CLOCK_SOURCE_XC1 AVR32_TC_TCCLKS_XC1\r
-#define TC_CLOCK_SOURCE_XC2 AVR32_TC_TCCLKS_XC2\r
-//! @}\r
-\r
-\r
-//! Timer/counter interrupts.\r
-typedef struct\r
-{\r
- unsigned int :24;\r
-\r
- //! External trigger interrupt.\r
- unsigned int etrgs : 1;\r
-\r
- //! RB load interrupt.\r
- unsigned int ldrbs : 1;\r
-\r
- //! RA load interrupt.\r
- unsigned int ldras : 1;\r
-\r
- //! RC compare interrupt.\r
- unsigned int cpcs : 1;\r
-\r
- //! RB compare interrupt.\r
- unsigned int cpbs : 1;\r
-\r
- //! RA compare interrupt.\r
- unsigned int cpas : 1;\r
-\r
- //! Load overrun interrupt.\r
- unsigned int lovrs : 1;\r
-\r
- //! Counter overflow interrupt.\r
- unsigned int covfs : 1;\r
-} tc_interrupt_t;\r
-\r
-//! Parameters when initializing a timer/counter in capture mode.\r
-typedef struct\r
-{\r
- //! Channel to initialize.\r
- unsigned int channel ;\r
-\r
- unsigned int :12;\r
-\r
- //! RB loading selection:\n\r
- //! - \ref TC_SEL_NO_EDGE;\n\r
- //! - \ref TC_SEL_RISING_EDGE;\n\r
- //! - \ref TC_SEL_FALLING_EDGE;\n\r
- //! - \ref TC_SEL_EACH_EDGE.\r
- unsigned int ldrb : 2;\r
-\r
- //! RA loading selection:\n\r
- //! - \ref TC_SEL_NO_EDGE;\n\r
- //! - \ref TC_SEL_RISING_EDGE;\n\r
- //! - \ref TC_SEL_FALLING_EDGE;\n\r
- //! - \ref TC_SEL_EACH_EDGE.\r
- unsigned int ldra : 2;\r
-\r
- unsigned int : 1;\r
-\r
- //! RC compare trigger enable:\n\r
- //! - \ref TC_NO_TRIGGER_COMPARE_RC;\n\r
- //! - \ref TC_TRIGGER_COMPARE_RC.\r
- unsigned int cpctrg : 1;\r
-\r
- unsigned int : 3;\r
-\r
- //! TIOA or TIOB external trigger selection:\n\r
- //! - \ref TC_EXT_TRIG_SEL_TIOA;\n\r
- //! - \ref TC_EXT_TRIG_SEL_TIOB.\r
- unsigned int abetrg : 1;\r
-\r
- //! External trigger edge selection:\n\r
- //! - \ref TC_SEL_NO_EDGE;\n\r
- //! - \ref TC_SEL_RISING_EDGE;\n\r
- //! - \ref TC_SEL_FALLING_EDGE;\n\r
- //! - \ref TC_SEL_EACH_EDGE.\r
- unsigned int etrgedg : 2;\r
-\r
- //! Counter clock disable with RB loading:\n\r
- //! - \c FALSE;\n\r
- //! - \c TRUE.\r
- unsigned int ldbdis : 1;\r
-\r
- //! Counter clock stopped with RB loading:\n\r
- //! - \c FALSE;\n\r
- //! - \c TRUE.\r
- unsigned int ldbstop : 1;\r
-\r
- //! Burst signal selection:\n\r
- //! - \ref TC_BURST_NOT_GATED;\n\r
- //! - \ref TC_BURST_CLK_AND_XC0;\n\r
- //! - \ref TC_BURST_CLK_AND_XC1;\n\r
- //! - \ref TC_BURST_CLK_AND_XC2.\r
- unsigned int burst : 2;\r
-\r
- //! Clock invert:\n\r
- //! - \ref TC_CLOCK_RISING_EDGE;\n\r
- //! - \ref TC_CLOCK_FALLING_EDGE.\r
- unsigned int clki : 1;\r
-\r
- //! Clock selection:\n\r
- //! - \ref TC_CLOCK_SOURCE_TC1;\n\r
- //! - \ref TC_CLOCK_SOURCE_TC2;\n\r
- //! - \ref TC_CLOCK_SOURCE_TC3;\n\r
- //! - \ref TC_CLOCK_SOURCE_TC4;\n\r
- //! - \ref TC_CLOCK_SOURCE_TC5;\n\r
- //! - \ref TC_CLOCK_SOURCE_XC0;\n\r
- //! - \ref TC_CLOCK_SOURCE_XC1;\n\r
- //! - \ref TC_CLOCK_SOURCE_XC2.\r
- unsigned int tcclks : 3;\r
-} tc_capture_opt_t;\r
-\r
-//! Parameters when initializing a timer/counter in waveform mode.\r
-typedef struct\r
-{\r
- //! Channel to initialize.\r
- unsigned int channel ;\r
-\r
- //! Software trigger effect on TIOB:\n\r
- //! - \ref TC_EVT_EFFECT_NOOP;\n\r
- //! - \ref TC_EVT_EFFECT_SET;\n\r
- //! - \ref TC_EVT_EFFECT_CLEAR;\n\r
- //! - \ref TC_EVT_EFFECT_TOGGLE.\r
- unsigned int bswtrg : 2;\r
-\r
- //! External event effect on TIOB:\n\r
- //! - \ref TC_EVT_EFFECT_NOOP;\n\r
- //! - \ref TC_EVT_EFFECT_SET;\n\r
- //! - \ref TC_EVT_EFFECT_CLEAR;\n\r
- //! - \ref TC_EVT_EFFECT_TOGGLE.\r
- unsigned int beevt : 2;\r
-\r
- //! RC compare effect on TIOB:\n\r
- //! - \ref TC_EVT_EFFECT_NOOP;\n\r
- //! - \ref TC_EVT_EFFECT_SET;\n\r
- //! - \ref TC_EVT_EFFECT_CLEAR;\n\r
- //! - \ref TC_EVT_EFFECT_TOGGLE.\r
- unsigned int bcpc : 2;\r
-\r
- //! RB compare effect on TIOB:\n\r
- //! - \ref TC_EVT_EFFECT_NOOP;\n\r
- //! - \ref TC_EVT_EFFECT_SET;\n\r
- //! - \ref TC_EVT_EFFECT_CLEAR;\n\r
- //! - \ref TC_EVT_EFFECT_TOGGLE.\r
- unsigned int bcpb : 2;\r
-\r
- //! Software trigger effect on TIOA:\n\r
- //! - \ref TC_EVT_EFFECT_NOOP;\n\r
- //! - \ref TC_EVT_EFFECT_SET;\n\r
- //! - \ref TC_EVT_EFFECT_CLEAR;\n\r
- //! - \ref TC_EVT_EFFECT_TOGGLE.\r
- unsigned int aswtrg : 2;\r
-\r
- //! External event effect on TIOA:\n\r
- //! - \ref TC_EVT_EFFECT_NOOP;\n\r
- //! - \ref TC_EVT_EFFECT_SET;\n\r
- //! - \ref TC_EVT_EFFECT_CLEAR;\n\r
- //! - \ref TC_EVT_EFFECT_TOGGLE.\r
- unsigned int aeevt : 2;\r
-\r
- //! RC compare effect on TIOA:\n\r
- //! - \ref TC_EVT_EFFECT_NOOP;\n\r
- //! - \ref TC_EVT_EFFECT_SET;\n\r
- //! - \ref TC_EVT_EFFECT_CLEAR;\n\r
- //! - \ref TC_EVT_EFFECT_TOGGLE.\r
- unsigned int acpc : 2;\r
-\r
- //! RA compare effect on TIOA:\n\r
- //! - \ref TC_EVT_EFFECT_NOOP;\n\r
- //! - \ref TC_EVT_EFFECT_SET;\n\r
- //! - \ref TC_EVT_EFFECT_CLEAR;\n\r
- //! - \ref TC_EVT_EFFECT_TOGGLE.\r
- unsigned int acpa : 2;\r
-\r
- unsigned int : 1;\r
-\r
- //! Waveform selection:\n\r
- //! - \ref TC_WAVEFORM_SEL_UP_MODE;\n\r
- //! - \ref TC_WAVEFORM_SEL_UP_MODE_RC_TRIGGER;\n\r
- //! - \ref TC_WAVEFORM_SEL_UPDOWN_MODE;\n\r
- //! - \ref TC_WAVEFORM_SEL_UPDOWN_MODE_RC_TRIGGER.\r
- unsigned int wavsel : 2;\r
-\r
- //! External event trigger enable:\n\r
- //! - \c FALSE;\n\r
- //! - \c TRUE.\r
- unsigned int enetrg : 1;\r
-\r
- //! External event selection:\n\r
- //! - \ref TC_EXT_EVENT_SEL_TIOB_INPUT;\n\r
- //! - \ref TC_EXT_EVENT_SEL_XC0_OUTPUT;\n\r
- //! - \ref TC_EXT_EVENT_SEL_XC1_OUTPUT;\n\r
- //! - \ref TC_EXT_EVENT_SEL_XC2_OUTPUT.\r
- unsigned int eevt : 2;\r
-\r
- //! External event edge selection:\n\r
- //! - \ref TC_SEL_NO_EDGE;\n\r
- //! - \ref TC_SEL_RISING_EDGE;\n\r
- //! - \ref TC_SEL_FALLING_EDGE;\n\r
- //! - \ref TC_SEL_EACH_EDGE.\r
- unsigned int eevtedg : 2;\r
-\r
- //! Counter clock disable with RC compare:\n\r
- //! - \c FALSE;\n\r
- //! - \c TRUE.\r
- unsigned int cpcdis : 1;\r
-\r
- //! Counter clock stopped with RC compare:\n\r
- //! - \c FALSE;\n\r
- //! - \c TRUE.\r
- unsigned int cpcstop : 1;\r
-\r
- //! Burst signal selection:\n\r
- //! - \ref TC_BURST_NOT_GATED;\n\r
- //! - \ref TC_BURST_CLK_AND_XC0;\n\r
- //! - \ref TC_BURST_CLK_AND_XC1;\n\r
- //! - \ref TC_BURST_CLK_AND_XC2.\r
- unsigned int burst : 2;\r
-\r
- //! Clock invert:\n\r
- //! - \ref TC_CLOCK_RISING_EDGE;\n\r
- //! - \ref TC_CLOCK_FALLING_EDGE.\r
- unsigned int clki : 1;\r
-\r
- //! Clock selection:\n\r
- //! - \ref TC_CLOCK_SOURCE_TC1;\n\r
- //! - \ref TC_CLOCK_SOURCE_TC2;\n\r
- //! - \ref TC_CLOCK_SOURCE_TC3;\n\r
- //! - \ref TC_CLOCK_SOURCE_TC4;\n\r
- //! - \ref TC_CLOCK_SOURCE_TC5;\n\r
- //! - \ref TC_CLOCK_SOURCE_XC0;\n\r
- //! - \ref TC_CLOCK_SOURCE_XC1;\n\r
- //! - \ref TC_CLOCK_SOURCE_XC2.\r
- unsigned int tcclks : 3;\r
-} tc_waveform_opt_t;\r
-\r
-\r
-/*! \brief Reads timer/counter interrupt settings.\r
- *\r
- * \param tc Pointer to the TC instance to access.\r
- * \param channel The TC instance channel to access.\r
- *\r
- * \retval >=0 The interrupt enable configuration organized according to \ref tc_interrupt_t.\r
- * \retval TC_INVALID_ARGUMENT Invalid argument(s).\r
- */\r
-extern int tc_get_interrupt_settings(volatile avr32_tc_t *tc, unsigned int channel);\r
-\r
-/*! \brief Enables various timer/counter interrupts.\r
- *\r
- * \param tc Pointer to the TC instance to access.\r
- * \param channel The TC instance channel to access.\r
- * \param bitfield The interrupt enable configuration.\r
- *\r
- * \retval 0 Success.\r
- * \retval TC_INVALID_ARGUMENT Invalid argument(s).\r
- */\r
-extern int tc_configure_interrupts(volatile avr32_tc_t *tc, unsigned int channel, const tc_interrupt_t *bitfield);\r
-\r
-/*! \brief Selects which external clock to use and how to configure it.\r
- *\r
- * \param tc Pointer to the TC instance to access.\r
- * \param channel The TC instance channel to access.\r
- * \param ext_clk_sig_src External clock signal selection:\r
- * \arg \c TC_CH0_EXT_CLK0_SRC_TCLK0;\r
- * \arg \c TC_CH0_EXT_CLK0_SRC_NO_CLK;\r
- * \arg \c TC_CH0_EXT_CLK0_SRC_TIOA1;\r
- * \arg \c TC_CH0_EXT_CLK0_SRC_TIOA2;\r
- * \arg \c TC_CH1_EXT_CLK1_SRC_TCLK1;\r
- * \arg \c TC_CH1_EXT_CLK1_SRC_NO_CLK;\r
- * \arg \c TC_CH1_EXT_CLK1_SRC_TIOA0;\r
- * \arg \c TC_CH1_EXT_CLK1_SRC_TIOA2;\r
- * \arg \c TC_CH2_EXT_CLK2_SRC_TCLK2;\r
- * \arg \c TC_CH2_EXT_CLK2_SRC_NO_CLK;\r
- * \arg \c TC_CH2_EXT_CLK2_SRC_TIOA0;\r
- * \arg \c TC_CH2_EXT_CLK2_SRC_TIOA1.\r
- *\r
- * \retval 0 Success.\r
- * \retval TC_INVALID_ARGUMENT Invalid argument(s).\r
- */\r
-extern int tc_select_external_clock(volatile avr32_tc_t *tc, unsigned int channel, unsigned int ext_clk_sig_src);\r
-\r
-/*! \brief Sets options for timer/counter capture initialization.\r
- *\r
- * \param tc Pointer to the TC instance to access.\r
- * \param opt Options for capture mode.\r
- *\r
- * \retval 0 Success.\r
- * \retval TC_INVALID_ARGUMENT Invalid argument(s).\r
- */\r
-extern int tc_init_capture(volatile avr32_tc_t *tc, const tc_capture_opt_t *opt);\r
-\r
-/*! \brief Sets options for timer/counter waveform initialization.\r
- *\r
- * \param tc Pointer to the TC instance to access.\r
- * \param opt Options for waveform generation.\r
- *\r
- * \retval 0 Success.\r
- * \retval TC_INVALID_ARGUMENT Invalid argument(s).\r
- */\r
-extern int tc_init_waveform(volatile avr32_tc_t *tc, const tc_waveform_opt_t *opt);\r
-\r
-/*! \brief Starts a timer/counter.\r
- *\r
- * \param tc Pointer to the TC instance to access.\r
- * \param channel The TC instance channel to access.\r
- *\r
- * \retval 0 Success.\r
- * \retval TC_INVALID_ARGUMENT Invalid argument(s).\r
- */\r
-extern int tc_start(volatile avr32_tc_t *tc, unsigned int channel);\r
-\r
-/*! \brief Stops a timer/counter.\r
- *\r
- * \param tc Pointer to the TC instance to access.\r
- * \param channel The TC instance channel to access.\r
- *\r
- * \retval 0 Success.\r
- * \retval TC_INVALID_ARGUMENT Invalid argument(s).\r
- */\r
-extern int tc_stop(volatile avr32_tc_t *tc, unsigned int channel);\r
-\r
-/*! \brief Performs a software trigger: the counter is reset and the clock is started.\r
- *\r
- * \param tc Pointer to the TC instance to access.\r
- * \param channel The TC instance channel to access.\r
- *\r
- * \retval 0 Success.\r
- * \retval TC_INVALID_ARGUMENT Invalid argument(s).\r
- */\r
-extern int tc_software_trigger(volatile avr32_tc_t *tc, unsigned int channel);\r
-\r
-/*! \brief Asserts a SYNC signal to generate a software trigger and reset all channels.\r
- *\r
- * \param tc Pointer to the TC instance to access.\r
- */\r
-extern void tc_sync_trigger(volatile avr32_tc_t *tc);\r
-\r
-/*! \brief Reads the status register.\r
- *\r
- * \param tc Pointer to the TC instance to access.\r
- * \param channel The TC instance channel to access.\r
- *\r
- * \retval >=0 Status register value.\r
- * \retval TC_INVALID_ARGUMENT Invalid argument(s).\r
- */\r
-extern int tc_read_sr(volatile avr32_tc_t *tc, unsigned int channel);\r
-\r
-/*! \brief Reads the channel's TC counter and returns the value.\r
- *\r
- * \param tc Pointer to the TC instance to access.\r
- * \param channel The TC instance channel to access.\r
- *\r
- * \retval >=0 TC counter value.\r
- * \retval TC_INVALID_ARGUMENT Invalid argument(s).\r
- */\r
-extern int tc_read_tc(volatile avr32_tc_t *tc, unsigned int channel);\r
-\r
-/*! \brief Reads the channel's RA register and returns the value.\r
- *\r
- * \param tc Pointer to the TC instance to access.\r
- * \param channel The TC instance channel to access.\r
- *\r
- * \retval >=0 RA register value.\r
- * \retval TC_INVALID_ARGUMENT Invalid argument(s).\r
- */\r
-extern int tc_read_ra(volatile avr32_tc_t *tc, unsigned int channel);\r
-\r
-/*! \brief Reads the channel's RB register and returns the value.\r
- *\r
- * \param tc Pointer to the TC instance to access.\r
- * \param channel The TC instance channel to access.\r
- *\r
- * \retval >=0 RB register value.\r
- * \retval TC_INVALID_ARGUMENT Invalid argument(s).\r
- */\r
-extern int tc_read_rb(volatile avr32_tc_t *tc, unsigned int channel);\r
-\r
-/*! \brief Reads the channel's RC register and returns the value.\r
- *\r
- * \param tc Pointer to the TC instance to access.\r
- * \param channel The TC instance channel to access.\r
- *\r
- * \retval >=0 RC register value.\r
- * \retval TC_INVALID_ARGUMENT Invalid argument(s).\r
- */\r
-extern int tc_read_rc(volatile avr32_tc_t *tc, unsigned int channel);\r
-\r
-/*! \brief Writes a value to the channel's RA register.\r
- *\r
- * \param tc Pointer to the TC instance to access.\r
- * \param channel The TC instance channel to access.\r
- * \param value Value to write to the RA register.\r
- *\r
- * \retval >=0 Written value.\r
- * \retval TC_INVALID_ARGUMENT Invalid argument(s).\r
- */\r
-extern int tc_write_ra(volatile avr32_tc_t *tc, unsigned int channel, unsigned short value);\r
-\r
-/*! \brief Writes a value to the channel's RB register.\r
- *\r
- * \param tc Pointer to the TC instance to access.\r
- * \param channel The TC instance channel to access.\r
- * \param value Value to write to the RB register.\r
- *\r
- * \retval >=0 Written value.\r
- * \retval TC_INVALID_ARGUMENT Invalid argument(s).\r
- */\r
-extern int tc_write_rb(volatile avr32_tc_t *tc, unsigned int channel, unsigned short value);\r
-\r
-/*! \brief Writes a value to the channel's RC register.\r
- *\r
- * \param tc Pointer to the TC instance to access.\r
- * \param channel The TC instance channel to access.\r
- * \param value Value to write to the RC register.\r
- *\r
- * \retval >=0 Written value.\r
- * \retval TC_INVALID_ARGUMENT Invalid argument(s).\r
- */\r
-extern int tc_write_rc(volatile avr32_tc_t *tc, unsigned int channel, unsigned short value);\r
-\r
-\r
-#endif // _TC_H_\r
+++ /dev/null
-/*This file is prepared for Doxygen automatic documentation generation.*/\r
-/*! \file *********************************************************************\r
- *\r
- * \brief USART driver for AVR32 UC3.\r
- *\r
- * This file contains basic functions for the AVR32 USART, with support for all\r
- * modes, settings and clock speeds.\r
- *\r
- * - Compiler: IAR EWAVR32 and GNU GCC for AVR32\r
- * - Supported devices: All AVR32 devices with a USART module can be used.\r
- * - AppNote:\r
- *\r
- * \author Atmel Corporation: http://www.atmel.com \n\r
- * Support and FAQ: http://support.atmel.no/\r
- *\r
- ******************************************************************************/\r
-\r
-/* Copyright (c) 2007, Atmel Corporation All rights reserved.\r
- *\r
- * Redistribution and use in source and binary forms, with or without\r
- * modification, are permitted provided that the following conditions are met:\r
- *\r
- * 1. Redistributions of source code must retain the above copyright notice,\r
- * this list of conditions and the following disclaimer.\r
- *\r
- * 2. Redistributions in binary form must reproduce the above copyright notice,\r
- * this list of conditions and the following disclaimer in the documentation\r
- * and/or other materials provided with the distribution.\r
- *\r
- * 3. The name of ATMEL may not be used to endorse or promote products derived\r
- * from this software without specific prior written permission.\r
- *\r
- * THIS SOFTWARE IS PROVIDED BY ATMEL ``AS IS'' AND ANY EXPRESS OR IMPLIED\r
- * WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF\r
- * MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE EXPRESSLY AND\r
- * SPECIFICALLY DISCLAIMED. IN NO EVENT SHALL ATMEL BE LIABLE FOR ANY DIRECT,\r
- * INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES\r
- * (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;\r
- * LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND\r
- * ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT\r
- * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF\r
- * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.\r
- */\r
-\r
-\r
-#include "usart.h"\r
-\r
-\r
-//------------------------------------------------------------------------------\r
-/*! \name Private Functions\r
- */\r
-//! @{\r
-\r
-\r
-/*! \brief Checks if the USART is in multidrop mode.\r
- *\r
- * \param usart Base address of the USART instance.\r
- *\r
- * \return \c 1 if the USART is in multidrop mode, otherwise \c 0.\r
- */\r
-#if __GNUC__\r
-__attribute__((__always_inline__))\r
-#endif\r
-static __inline__ int usart_mode_is_multidrop(volatile avr32_usart_t *usart)\r
-{\r
- return ((usart->mr >> AVR32_USART_MR_PAR_OFFSET) & AVR32_USART_MR_PAR_MULTI) == AVR32_USART_MR_PAR_MULTI;\r
-}\r
-\r
-\r
-/*! \brief Calculates a clock divider (\e CD) that gets the USART as close to a\r
- * wanted baudrate as possible.\r
- *\r
- * \todo manage the FP fractal part to avoid big errors\r
- *\r
- * Baudrate calculation:\r
- * \f$ baudrate = \frac{Selected Clock}{16 \times CD} \f$ with 16x oversampling or\r
- * \f$ baudrate = \frac{Selected Clock}{8 \times CD} \f$ with 8x oversampling or\r
- * \f$ baudrate = \frac{Selected Clock}{CD} \f$ with SYNC bit set to allow high speed.\r
- *\r
- * \param usart Base address of the USART instance.\r
- * \param baudrate Wanted baudrate.\r
- * \param pba_hz USART module input clock frequency (PBA clock, Hz).\r
- *\r
- * \retval USART_SUCCESS Baudrate successfully initialized.\r
- * \retval USART_INVALID_INPUT Wanted baudrate is impossible with given clock speed.\r
- */\r
-\r
-static int usart_set_baudrate(volatile avr32_usart_t *usart, unsigned int baudrate, long pba_hz)\r
-{\r
- // Clock divider.\r
- int cd;\r
-\r
- // Baudrate calculation.\r
- if (baudrate < pba_hz / 16)\r
- {\r
- // Use 16x oversampling, clear SYNC bit.\r
- usart->mr &=~ (AVR32_USART_MR_OVER_MASK | AVR32_USART_MR_SYNC_MASK);\r
- cd = (pba_hz + 8 * baudrate) / (16 * baudrate); \r
-\r
- if ((cd >65535)) return USART_INVALID_INPUT;\r
- }\r
- else if (baudrate < pba_hz / 8)\r
- {\r
- // Use 8x oversampling.\r
- usart->mr |= AVR32_USART_MR_OVER_MASK;\r
- // clear SYNC bit\r
- usart->mr &=~ AVR32_USART_MR_SYNC_MASK;\r
- \r
- cd = (pba_hz + 4 * baudrate) / (8 * baudrate);\r
-\r
- if ((cd < 1)||(cd >65535)) return USART_INVALID_INPUT;\r
- }\r
- else\r
- {\r
- // set SYNC to 1 \r
- usart->mr |= AVR32_USART_MR_SYNC_MASK;\r
- // use PBA/BaudRate\r
- cd = (pba_hz / baudrate); \r
- }\r
- usart->brgr = cd << AVR32_USART_BRGR_CD_OFFSET;\r
-\r
- return USART_SUCCESS;\r
-}\r
-\r
-//! @}\r
-\r
-\r
-//------------------------------------------------------------------------------\r
-/*! \name Initialization Functions\r
- */\r
-//! @{\r
-\r
-\r
-void usart_reset(volatile avr32_usart_t *usart)\r
-{\r
- // Disable all USART interrupts.\r
- // Interrupts needed should be set explicitly on every reset.\r
- usart->idr = 0xFFFFFFFF;\r
-\r
- // Reset mode and other registers that could cause unpredictable behavior after reset.\r
- usart->mr = 0;\r
- usart->rtor = 0;\r
- usart->ttgr = 0;\r
-\r
- // Shutdown TX and RX (will be re-enabled when setup has successfully completed),\r
- // reset status bits and turn off DTR and RTS.\r
- usart->cr = AVR32_USART_CR_RSTRX_MASK |\r
- AVR32_USART_CR_RSTTX_MASK |\r
- AVR32_USART_CR_RSTSTA_MASK |\r
- AVR32_USART_CR_RSTIT_MASK |\r
- AVR32_USART_CR_RSTNACK_MASK |\r
- AVR32_USART_CR_DTRDIS_MASK |\r
- AVR32_USART_CR_RTSDIS_MASK;\r
-}\r
-\r
-\r
-int usart_init_rs232(volatile avr32_usart_t *usart, const usart_options_t *opt, long pba_hz)\r
-{\r
- // Reset the USART and shutdown TX and RX.\r
- usart_reset(usart);\r
-\r
- // Check input values.\r
- if (!opt) // Null pointer.\r
- return USART_INVALID_INPUT;\r
- if (opt->charlength < 5 || opt->charlength > 9 ||\r
- opt->paritytype > 7 ||\r
- opt->stopbits > 2 + 255 ||\r
- opt->channelmode > 3)\r
- return USART_INVALID_INPUT;\r
-\r
- if (usart_set_baudrate(usart, opt->baudrate, pba_hz) == USART_INVALID_INPUT)\r
- return USART_INVALID_INPUT;\r
-\r
- if (opt->charlength == 9)\r
- {\r
- // Character length set to 9 bits. MODE9 dominates CHRL.\r
- usart->mr |= AVR32_USART_MR_MODE9_MASK;\r
- }\r
- else\r
- {\r
- // CHRL gives the character length (- 5) when MODE9 = 0.\r
- usart->mr |= (opt->charlength - 5) << AVR32_USART_MR_CHRL_OFFSET;\r
- }\r
-\r
- usart->mr |= (opt->channelmode << AVR32_USART_MR_CHMODE_OFFSET) |\r
- (opt->paritytype << AVR32_USART_MR_PAR_OFFSET);\r
-\r
- if (opt->stopbits > USART_2_STOPBITS)\r
- {\r
- // Set two stop bits\r
- usart->mr |= AVR32_USART_MR_NBSTOP_2 << AVR32_USART_MR_NBSTOP_OFFSET;\r
- // and a timeguard period gives the rest.\r
- usart->ttgr = opt->stopbits - USART_2_STOPBITS;\r
- }\r
- else\r
- // Insert 1, 1.5 or 2 stop bits.\r
- usart->mr |= opt->stopbits << AVR32_USART_MR_NBSTOP_OFFSET;\r
-\r
- // Setup complete; enable communication.\r
- // Enable input and output.\r
- usart->cr |= AVR32_USART_CR_TXEN_MASK |\r
- AVR32_USART_CR_RXEN_MASK;\r
-\r
- return USART_SUCCESS;\r
-}\r
-\r
-\r
-int usart_init_hw_handshaking(volatile avr32_usart_t *usart, const usart_options_t *opt, long pba_hz)\r
-{\r
- // First: Setup standard RS232.\r
- if (usart_init_rs232(usart, opt, pba_hz) == USART_INVALID_INPUT)\r
- return USART_INVALID_INPUT;\r
-\r
- // Clear previous mode.\r
- usart->mr &= ~AVR32_USART_MR_MODE_MASK;\r
- // Hardware handshaking.\r
- usart->mr |= USART_MODE_HW_HSH << AVR32_USART_MR_MODE_OFFSET;\r
-\r
- return USART_SUCCESS;\r
-}\r
-\r
-\r
-int usart_init_IrDA(volatile avr32_usart_t *usart, const usart_options_t *opt,\r
- long pba_hz, unsigned char irda_filter)\r
-{\r
- // First: Setup standard RS232.\r
- if (usart_init_rs232(usart, opt, pba_hz) == USART_INVALID_INPUT)\r
- return USART_INVALID_INPUT;\r
-\r
- // Set IrDA counter.\r
- usart->ifr = irda_filter;\r
-\r
- // Activate "low-pass filtering" of input.\r
- usart->mr |= AVR32_USART_MR_FILTER_MASK;\r
-\r
- return USART_SUCCESS;\r
-}\r
-\r
-\r
-int usart_init_modem(volatile avr32_usart_t *usart, const usart_options_t *opt, long pba_hz)\r
-{\r
- // First: Setup standard RS232.\r
- if (usart_init_rs232(usart, opt, pba_hz) == USART_INVALID_INPUT)\r
- return USART_INVALID_INPUT;\r
-\r
- // Clear previous mode.\r
- usart->mr &= ~AVR32_USART_MR_MODE_MASK;\r
- // Set modem mode.\r
- usart->mr |= USART_MODE_MODEM << AVR32_USART_MR_MODE_OFFSET;\r
-\r
- return USART_SUCCESS;\r
-}\r
-\r
-\r
-int usart_init_rs485(volatile avr32_usart_t *usart, const usart_options_t *opt, long pba_hz)\r
-{\r
- // First: Setup standard RS232.\r
- if (usart_init_rs232(usart, opt, pba_hz) == USART_INVALID_INPUT)\r
- return USART_INVALID_INPUT;\r
-\r
- // Clear previous mode.\r
- usart->mr &= ~AVR32_USART_MR_MODE_MASK;\r
- // Set RS485 mode.\r
- usart->mr |= USART_MODE_RS485 << AVR32_USART_MR_MODE_OFFSET;\r
-\r
- return USART_SUCCESS;\r
-}\r
-\r
-\r
-int usart_init_iso7816(volatile avr32_usart_t *usart, const iso7816_options_t *opt, int t, long pba_hz)\r
-{\r
- // Reset the USART and shutdown TX and RX.\r
- usart_reset(usart);\r
-\r
- // Check input values.\r
- if (!opt) // Null pointer.\r
- return USART_INVALID_INPUT;\r
-\r
- if (t == 0)\r
- {\r
- // Set USART mode to ISO7816, T=0.\r
- // The T=0 protocol always uses 2 stop bits.\r
- usart->mr = (USART_MODE_ISO7816_T0 << AVR32_USART_MR_MODE_OFFSET) |\r
- (AVR32_USART_MR_NBSTOP_2 << AVR32_USART_MR_NBSTOP_OFFSET) |\r
- (opt->bit_order << AVR32_USART_MR_MSBF_OFFSET); // Allow MSBF in T=0.\r
- }\r
- else if (t == 1)\r
- {\r
- // Only LSB first in the T=1 protocol.\r
- // max_iterations field is only used in T=0 mode.\r
- if (opt->bit_order != 0 ||\r
- opt->max_iterations != 0)\r
- return USART_INVALID_INPUT;\r
- // Set USART mode to ISO7816, T=1.\r
- // The T=1 protocol always uses 1 stop bit.\r
- usart->mr = (USART_MODE_ISO7816_T1 << AVR32_USART_MR_MODE_OFFSET) |\r
- (AVR32_USART_MR_NBSTOP_1 << AVR32_USART_MR_NBSTOP_OFFSET);\r
- }\r
- else\r
- return USART_INVALID_INPUT;\r
-\r
- if (usart_set_baudrate(usart, opt->iso7816_hz, pba_hz) == USART_INVALID_INPUT)\r
- return USART_INVALID_INPUT;\r
-\r
- // Set FIDI register: bit rate = selected clock/FI_DI_ratio/16.\r
- usart->fidi = opt->fidi_ratio;\r
- // Set ISO7816 spesific options in the MODE register.\r
- usart->mr |= (opt->inhibit_nack << AVR32_USART_MR_INACK_OFFSET) |\r
- (opt->dis_suc_nack << AVR32_USART_MR_DSNACK_OFFSET) |\r
- (opt->max_iterations << AVR32_USART_MR_MAX_ITERATION_OFFSET) |\r
- AVR32_USART_MR_CLKO_MASK; // Enable clock output.\r
-\r
- // Setup complete; enable input.\r
- // Leave TX disabled for now.\r
- usart->cr |= AVR32_USART_CR_RXEN_MASK;\r
-\r
- return USART_SUCCESS;\r
-}\r
-//! @}\r
-\r
-\r
-//------------------------------------------------------------------------------\r
-/*! \name Transmit/Receive Functions\r
- */\r
-//! @{\r
-\r
-\r
-int usart_send_address(volatile avr32_usart_t *usart, int address)\r
-{\r
- // Check if USART is in multidrop / RS485 mode.\r
- if (!usart_mode_is_multidrop(usart)) return USART_MODE_FAULT;\r
-\r
- // Prepare to send an address.\r
- usart->cr |= AVR32_USART_CR_SENDA_MASK;\r
-\r
- // Write the address to TX.\r
- usart_bw_write_char(usart, address);\r
-\r
- return USART_SUCCESS;\r
-}\r
-\r
-\r
-int usart_write_char(volatile avr32_usart_t *usart, int c)\r
-{\r
- if (usart->csr & AVR32_USART_CSR_TXRDY_MASK)\r
- {\r
- usart->thr = c;\r
- return USART_SUCCESS;\r
- }\r
- else\r
- return USART_TX_BUSY;\r
-}\r
-\r
-\r
-int usart_putchar(volatile avr32_usart_t *usart, int c)\r
-{\r
- int timeout = USART_DEFAULT_TIMEOUT;\r
-\r
- if (c == '\n')\r
- {\r
- do\r
- {\r
- if (!timeout--) return USART_FAILURE;\r
- } while (usart_write_char(usart, '\r') != USART_SUCCESS);\r
-\r
- timeout = USART_DEFAULT_TIMEOUT;\r
- }\r
-\r
- do\r
- {\r
- if (!timeout--) return USART_FAILURE;\r
- } while (usart_write_char(usart, c) != USART_SUCCESS);\r
-\r
- return USART_SUCCESS;\r
-}\r
-\r
-\r
-int usart_read_char(volatile avr32_usart_t *usart, int *c)\r
-{\r
- // Check for errors: frame, parity and overrun. In RS485 mode, a parity error\r
- // would mean that an address char has been received.\r
- if (usart->csr & (AVR32_USART_CSR_OVRE_MASK |\r
- AVR32_USART_CSR_FRAME_MASK |\r
- AVR32_USART_CSR_PARE_MASK))\r
- return USART_RX_ERROR;\r
-\r
- // No error; if we really did receive a char, read it and return SUCCESS.\r
- if (usart->csr & AVR32_USART_CSR_RXRDY_MASK)\r
- {\r
- *c = (unsigned short)usart->rhr;\r
- return USART_SUCCESS;\r
- }\r
- else\r
- return USART_RX_EMPTY;\r
-}\r
-\r
-\r
-int usart_getchar(volatile avr32_usart_t *usart)\r
-{\r
- int c, ret;\r
-\r
- while ((ret = usart_read_char(usart, &c)) == USART_RX_EMPTY);\r
-\r
- if (ret == USART_RX_ERROR)\r
- return USART_FAILURE;\r
-\r
- return c;\r
-}\r
-\r
-\r
-void usart_write_line(volatile avr32_usart_t *usart, const char *string)\r
-{\r
- while (*string != '\0')\r
- usart_putchar(usart, *string++);\r
-}\r
-\r
-\r
-int usart_get_echo_line(volatile avr32_usart_t *usart)\r
-{\r
- int rx_char;\r
- int retval = USART_SUCCESS;\r
-\r
- while (1)\r
- {\r
- rx_char = usart_getchar(usart);\r
- if (rx_char == USART_FAILURE)\r
- {\r
- usart_write_line(usart, "Error!!!\n");\r
- break;\r
- }\r
- if (rx_char == '\x03')\r
- {\r
- retval = USART_FAILURE;\r
- break;\r
- }\r
- usart_putchar(usart, rx_char);\r
- if (rx_char == '\r')\r
- {\r
- usart_putchar(usart, '\n');\r
- break;\r
- }\r
- }\r
-\r
- return retval;\r
-}\r
-\r
-\r
-//! @}\r
+++ /dev/null
-/*This file is prepared for Doxygen automatic documentation generation.*/\r
-/*! \file *********************************************************************\r
- *\r
- * \brief USART driver for AVR32 UC3.\r
- *\r
- * This file contains basic functions for the AVR32 USART, with support for all\r
- * modes, settings and clock speeds.\r
- *\r
- * - Compiler: IAR EWAVR32 and GNU GCC for AVR32\r
- * - Supported devices: All AVR32 devices with a USART module can be used.\r
- * - AppNote:\r
- *\r
- * \author Atmel Corporation: http://www.atmel.com \n\r
- * Support and FAQ: http://support.atmel.no/\r
- *\r
- ******************************************************************************/\r
-\r
-/* Copyright (c) 2007, Atmel Corporation All rights reserved.\r
- *\r
- * Redistribution and use in source and binary forms, with or without\r
- * modification, are permitted provided that the following conditions are met:\r
- *\r
- * 1. Redistributions of source code must retain the above copyright notice,\r
- * this list of conditions and the following disclaimer.\r
- *\r
- * 2. Redistributions in binary form must reproduce the above copyright notice,\r
- * this list of conditions and the following disclaimer in the documentation\r
- * and/or other materials provided with the distribution.\r
- *\r
- * 3. The name of ATMEL may not be used to endorse or promote products derived\r
- * from this software without specific prior written permission.\r
- *\r
- * THIS SOFTWARE IS PROVIDED BY ATMEL ``AS IS'' AND ANY EXPRESS OR IMPLIED\r
- * WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF\r
- * MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE EXPRESSLY AND\r
- * SPECIFICALLY DISCLAIMED. IN NO EVENT SHALL ATMEL BE LIABLE FOR ANY DIRECT,\r
- * INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES\r
- * (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;\r
- * LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND\r
- * ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT\r
- * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF\r
- * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.\r
- */\r
-\r
-\r
-#ifndef _USART_H_\r
-#define _USART_H_\r
-\r
-#include <avr32/io.h>\r
-#include "compiler.h"\r
-\r
-\r
-/*! \name Return Values\r
- */\r
-//! @{\r
-#define USART_SUCCESS 0 //!< Successful completion.\r
-#define USART_FAILURE -1 //!< Failure because of some unspecified reason.\r
-#define USART_INVALID_INPUT 1 //!< Input value out of range.\r
-#define USART_INVALID_ARGUMENT -1 //!< Argument value out of range.\r
-#define USART_TX_BUSY 2 //!< Transmitter was busy.\r
-#define USART_RX_EMPTY 3 //!< Nothing was received.\r
-#define USART_RX_ERROR 4 //!< Transmission error occurred.\r
-#define USART_MODE_FAULT 5 //!< USART not in the appropriate mode.\r
-//! @}\r
-\r
-//! Default time-out value (number of attempts).\r
-#define USART_DEFAULT_TIMEOUT 10000\r
-\r
-/*! \name Parity Settings\r
- */\r
-//! @{\r
-#define USART_EVEN_PARITY AVR32_USART_MR_PAR_EVEN //!< Use even parity on character transmission.\r
-#define USART_ODD_PARITY AVR32_USART_MR_PAR_ODD //!< Use odd parity on character transmission.\r
-#define USART_SPACE_PARITY AVR32_USART_MR_PAR_SPACE //!< Use a space as parity bit.\r
-#define USART_MARK_PARITY AVR32_USART_MR_PAR_MARK //!< Use a mark as parity bit.\r
-#define USART_NO_PARITY AVR32_USART_MR_PAR_NONE //!< Don't use a parity bit.\r
-#define USART_MULTIDROP_PARITY AVR32_USART_MR_PAR_MULTI //!< Parity bit is used to flag address characters.\r
-//! @}\r
-\r
-/*! \name Operating Modes\r
- */\r
-//! @{\r
-#define USART_MODE_NORMAL AVR32_USART_MR_MODE_NORMAL //!< Normal RS232 mode.\r
-#define USART_MODE_RS485 AVR32_USART_MR_MODE_RS485 //!< RS485 mode.\r
-#define USART_MODE_HW_HSH AVR32_USART_MR_MODE_HARDWARE //!< RS232 mode with hardware handshaking.\r
-#define USART_MODE_MODEM AVR32_USART_MR_MODE_MODEM //!< Modem mode.\r
-#define USART_MODE_ISO7816_T0 AVR32_USART_MR_MODE_ISO7816_T0 //!< ISO7816, T = 0 mode.\r
-#define USART_MODE_ISO7816_T1 AVR32_USART_MR_MODE_ISO7816_T1 //!< ISO7816, T = 1 mode.\r
-#define USART_MODE_IRDA AVR32_USART_MR_MODE_IRDA //!< IrDA mode.\r
-#define USART_MODE_SW_HSH AVR32_USART_MR_MODE_SOFTWARE //!< RS232 mode with software handshaking.\r
-//! @}\r
-\r
-\r
-/*! \name Channel Modes\r
- */\r
-//! @{\r
-#define USART_NORMAL_CHMODE AVR32_USART_MR_CHMODE_NORMAL //!< Normal communication.\r
-#define USART_AUTO_ECHO AVR32_USART_MR_CHMODE_ECHO //!< Echo data.\r
-#define USART_LOCAL_LOOPBACK AVR32_USART_MR_CHMODE_LOCAL_LOOP //!< Local loopback.\r
-#define USART_REMOTE_LOOPBACK AVR32_USART_MR_CHMODE_REMOTE_LOOP //!< Remote loopback.\r
-//! @}\r
-\r
-/*! \name Stop Bits Settings\r
- */\r
-//! @{\r
-#define USART_1_STOPBIT AVR32_USART_MR_NBSTOP_1 //!< Use 1 stop bit.\r
-#define USART_1_5_STOPBITS AVR32_USART_MR_NBSTOP_1_5 //!< Use 1.5 stop bits.\r
-#define USART_2_STOPBITS AVR32_USART_MR_NBSTOP_2 //!< Use 2 stop bits (for more, just give the number of bits).\r
-//! @}\r
-\r
-\r
-//! Input parameters when initializing RS232 and similar modes.\r
-typedef struct\r
-{\r
- //! Set baudrate of the USART.\r
- unsigned long baudrate;\r
-\r
- //! Number of bits to transmit as a character (5 to 9).\r
- unsigned char charlength;\r
-\r
- //! How to calculate the parity bit: \ref USART_EVEN_PARITY, \ref USART_ODD_PARITY,\r
- //! \ref USART_SPACE_PARITY, \ref USART_MARK_PARITY, \ref USART_NO_PARITY or\r
- //! \ref USART_MULTIDROP_PARITY.\r
- unsigned char paritytype;\r
-\r
- //! Number of stop bits between two characters: \ref USART_1_STOPBIT,\r
- //! \ref USART_1_5_STOPBITS, \ref USART_2_STOPBITS or any number from 3 to 257\r
- //! which will result in a time guard period of that length between characters.\r
- unsigned short stopbits;\r
-\r
- //! Run the channel in testmode: \ref USART_NORMAL_CHMODE, \ref USART_AUTO_ECHO,\r
- //! \ref USART_LOCAL_LOOPBACK or \ref USART_REMOTE_LOOPBACK.\r
- unsigned char channelmode;\r
-} usart_options_t;\r
-\r
-//! Input parameters when initializing ISO7816 modes.\r
-typedef struct\r
-{\r
- //! Set the frequency of the ISO7816 clock.\r
- unsigned long iso7816_hz;\r
-\r
- //! The number of ISO7816 clock ticks in every bit period (1 to 2047, 0 = disable clock).\r
- //! Bit rate = \ref iso7816_hz / \ref fidi_ratio.\r
- unsigned short fidi_ratio;\r
-\r
- //! Inhibit Non Acknowledge:\n\r
- //! - 0: the NACK is generated;\n\r
- //! - 1: the NACK is not generated.\r
- //!\r
- //! \note This bit will be used only in ISO7816 mode, protocol T = 0 receiver.\r
- int inhibit_nack;\r
-\r
- //! Disable successive NACKs.\r
- //! Successive parity errors are counted up to the value in the \ref max_iterations field.\r
- //! These parity errors generate a NACK on the ISO line. As soon as this value is reached,\r
- //! no addititional NACK is sent on the ISO line. The ITERATION flag is asserted.\r
- int dis_suc_nack;\r
-\r
- //! Max number of repetitions (0 to 7).\r
- unsigned char max_iterations;\r
-\r
- //! Bit order in transmitted characters:\n\r
- //! - 0: LSB first;\n\r
- //! - 1: MSB first.\r
- int bit_order;\r
-} iso7816_options_t;\r
-\r
-//! Input parameters when initializing ISO7816 modes.\r
-typedef struct\r
-{\r
- //! Set the frequency of the SPI clock.\r
- unsigned long baudrate;\r
-\r
- //! Number of bits to transmit as a character (5 to 9).\r
- unsigned char charlength;\r
-\r
- //! Run the channel in testmode: \ref USART_NORMAL_CHMODE, \ref USART_AUTO_ECHO,\r
- //! \ref USART_LOCAL_LOOPBACK or \ref USART_REMOTE_LOOPBACK.\r
- unsigned char channelmode; \r
- \r
- //! Which SPI mode to use when transmitting.\r
- unsigned char spimode;\r
-} usart_spi_options_t;\r
- \r
- \r
-\r
-\r
-\r
-//------------------------------------------------------------------------------\r
-/*! \name Initialization Functions\r
- */\r
-//! @{\r
-\r
-/*! \brief Resets the USART and disables TX and RX.\r
- *\r
- * \param usart Base address of the USART instance.\r
- */\r
-extern void usart_reset(volatile avr32_usart_t *usart);\r
-\r
-/*! \brief Sets up the USART to use the standard RS232 protocol.\r
- *\r
- * \param usart Base address of the USART instance.\r
- * \param opt Options needed to set up RS232 communication (see \ref usart_options_t).\r
- * \param pba_hz USART module input clock frequency (PBA clock, Hz).\r
- *\r
- * \retval USART_SUCCESS Mode successfully initialized.\r
- * \retval USART_INVALID_INPUT One or more of the arguments is out of valid range.\r
- */\r
-extern int usart_init_rs232(volatile avr32_usart_t *usart, const usart_options_t *opt, long pba_hz);\r
-\r
-/*! \brief Sets up the USART to use hardware handshaking.\r
- *\r
- * \param usart Base address of the USART instance.\r
- * \param opt Options needed to set up RS232 communication (see \ref usart_options_t).\r
- * \param pba_hz USART module input clock frequency (PBA clock, Hz).\r
- *\r
- * \retval USART_SUCCESS Mode successfully initialized.\r
- * \retval USART_INVALID_INPUT One or more of the arguments is out of valid range.\r
- *\r
- * \note \ref usart_init_rs232 does not need to be invoked before this function.\r
- */\r
-extern int usart_init_hw_handshaking(volatile avr32_usart_t *usart, const usart_options_t *opt, long pba_hz);\r
-\r
-/*! \brief Sets up the USART to use the IrDA protocol.\r
- *\r
- * \param usart Base address of the USART instance.\r
- * \param opt Options needed to set up RS232 communication (see \ref usart_options_t).\r
- * \param pba_hz USART module input clock frequency (PBA clock, Hz).\r
- * \param irda_filter Counter used to distinguish received ones from zeros.\r
- *\r
- * \retval USART_SUCCESS Mode successfully initialized.\r
- * \retval USART_INVALID_INPUT One or more of the arguments is out of valid range.\r
- */\r
-extern int usart_init_IrDA(volatile avr32_usart_t *usart, const usart_options_t *opt,\r
- long pba_hz, unsigned char irda_filter);\r
-\r
-/*! \brief Sets up the USART to use the modem protocol, activating dedicated inputs/outputs.\r
- *\r
- * \param usart Base address of the USART instance.\r
- * \param opt Options needed to set up RS232 communication (see \ref usart_options_t).\r
- * \param pba_hz USART module input clock frequency (PBA clock, Hz).\r
- *\r
- * \retval USART_SUCCESS Mode successfully initialized.\r
- * \retval USART_INVALID_INPUT One or more of the arguments is out of valid range.\r
- */\r
-extern int usart_init_modem(volatile avr32_usart_t *usart, const usart_options_t *opt, long pba_hz);\r
-\r
-/*! \brief Sets up the USART to use the RS485 protocol.\r
- *\r
- * \param usart Base address of the USART instance.\r
- * \param opt Options needed to set up RS232 communication (see \ref usart_options_t).\r
- * \param pba_hz USART module input clock frequency (PBA clock, Hz).\r
- *\r
- * \retval USART_SUCCESS Mode successfully initialized.\r
- * \retval USART_INVALID_INPUT One or more of the arguments is out of valid range.\r
- */\r
-extern int usart_init_rs485(volatile avr32_usart_t *usart, const usart_options_t *opt, long pba_hz);\r
-\r
-/*! \brief Sets up the USART to use the ISO7816 T=0 or T=1 smartcard protocols.\r
- *\r
- * \param usart Base address of the USART instance.\r
- * \param opt Options needed to set up ISO7816 communication (see \ref iso7816_options_t).\r
- * \param t ISO7816 mode to use (T=0 or T=1).\r
- * \param pba_hz USART module input clock frequency (PBA clock, Hz).\r
- *\r
- * \retval USART_SUCCESS Mode successfully initialized.\r
- * \retval USART_INVALID_INPUT One or more of the arguments is out of valid range.\r
- */\r
-extern int usart_init_iso7816(volatile avr32_usart_t *usart, const iso7816_options_t *opt, int t, long pba_hz);\r
-\r
-/*! \brief Sets up the USART to use the SPI mode as master.\r
- *\r
- * \param usart Base address of the USART instance.\r
- * \param opt Options needed to set up SPI mode (see \ref usart_spi_options_t).\r
- * \param pba_hz USART module input clock frequency (PBA clock, Hz).\r
- *\r
- * \retval USART_SUCCESS Mode successfully initialized.\r
- * \retval USART_INVALID_INPUT One or more of the arguments is out of valid range.\r
- */\r
-extern int usart_init_spi_master(volatile avr32_usart_t *usart, const usart_spi_options_t *opt, long pba_hz);\r
-\r
-\r
-/*! \brief Sets up the USART to use the SPI mode as slave.\r
- *\r
- * \param usart Base address of the USART instance.\r
- * \param opt Options needed to set up SPI mode (see \ref usart_spi_options_t).\r
- * \param pba_hz USART module input clock frequency (PBA clock, Hz).\r
- *\r
- * \retval USART_SUCCESS Mode successfully initialized.\r
- * \retval USART_INVALID_INPUT One or more of the arguments is out of valid range.\r
- */\r
-extern int usart_init_spi_slave(volatile avr32_usart_t *usart, const usart_spi_options_t *opt, long pba_hz);\r
-\r
-//! @}\r
-\r
-//------------------------------------------------------------------------------\r
-/*! \brief Selects slave chip.\r
- *\r
- * \param usart Base address of the USART instance.\r
- *\r
- * \return Status.\r
- * \retval USART_SUCCESS Success.\r
- */\r
-extern int usart_spi_selectChip(volatile avr32_usart_t *usart);\r
-\r
-/*! \brief Unselects slave chip.\r
- *\r
- * \param usart Base address of the USART instance.\r
- *\r
- * \return Status.\r
- * \retval USART_SUCCESS Success.\r
- * \retval USART_FAILURE Time out.\r
- */\r
-extern int usart_spi_unselectChip(volatile avr32_usart_t *usart);\r
-\r
-//------------------------------------------------------------------------------\r
-/*! \name Read and Reset Error Status Bits\r
- */\r
-//! @{\r
-\r
-/*! \brief Resets the error status.\r
- *\r
- * This function resets the status bits indicating that a parity error,\r
- * framing error or overrun has occurred. The RXBRK bit, indicating\r
- * a start/end of break condition on the RX line, is also reset.\r
- *\r
- * \param usart Base address of the USART instance.\r
- */\r
-#if __GNUC__\r
-__attribute__((__always_inline__))\r
-#endif\r
-extern __inline__ void usart_reset_status(volatile avr32_usart_t *usart)\r
-{\r
- usart->cr |= AVR32_USART_CR_RSTSTA_MASK;\r
-}\r
-\r
-/*! \brief Checks if a parity error has occurred since last status reset.\r
- *\r
- * \param usart Base address of the USART instance.\r
- *\r
- * \return \c 1 if a parity error has been detected, otherwise \c 0.\r
- */\r
-#if __GNUC__\r
-__attribute__((__always_inline__))\r
-#endif\r
-extern __inline__ int usart_parity_error(volatile avr32_usart_t *usart)\r
-{\r
- return (usart->csr & AVR32_USART_CSR_PARE_MASK) != 0;\r
-}\r
-\r
-/*! \brief Checks if a framing error has occurred since last status reset.\r
- *\r
- * \param usart Base address of the USART instance.\r
- *\r
- * \return \c 1 if a framing error has been detected, otherwise \c 0.\r
- */\r
-#if __GNUC__\r
-__attribute__((__always_inline__))\r
-#endif\r
-extern __inline__ int usart_framing_error(volatile avr32_usart_t *usart)\r
-{\r
- return (usart->csr & AVR32_USART_CSR_FRAME_MASK) != 0;\r
-}\r
-\r
-/*! \brief Checks if an overrun error has occurred since last status reset.\r
- *\r
- * \param usart Base address of the USART instance.\r
- *\r
- * \return \c 1 if a overrun error has been detected, otherwise \c 0.\r
- */\r
-#if __GNUC__\r
-__attribute__((__always_inline__))\r
-#endif\r
-extern __inline__ int usart_overrun_error(volatile avr32_usart_t *usart)\r
-{\r
- return (usart->csr & AVR32_USART_CSR_OVRE_MASK) != 0;\r
-}\r
-\r
-//! @}\r
-\r
-\r
-//------------------------------------------------------------------------------\r
-/*! \name Transmit/Receive Functions\r
- */\r
-//! @{\r
-\r
-/*! \brief Addresses a receiver.\r
- *\r
- * While in RS485 mode, receivers only accept data addressed to them.\r
- * A packet/char with the address tag set has to precede any data.\r
- * This function is used to address a receiver. This receiver should read\r
- * all the following data, until an address packet addresses another receiver.\r
- *\r
- * \param usart Base address of the USART instance.\r
- * \param address Address of the target device.\r
- *\r
- * \retval USART_SUCCESS Address successfully sent (if current mode is RS485).\r
- * \retval USART_MODE_FAULT Wrong operating mode.\r
- */\r
-extern int usart_send_address(volatile avr32_usart_t *usart, int address);\r
-\r
-/*! \brief Writes the given character to the TX buffer if the transmitter is ready.\r
- *\r
- * \param usart Base address of the USART instance.\r
- * \param c The character (up to 9 bits) to transmit.\r
- *\r
- * \retval USART_SUCCESS The transmitter was ready.\r
- * \retval USART_TX_BUSY The transmitter was busy.\r
- */\r
-extern int usart_write_char(volatile avr32_usart_t *usart, int c);\r
-\r
-/*! \brief An active wait writing a character to the USART.\r
- *\r
- * \param usart Base address of the USART instance.\r
- * \param c The character (up to 9 bits) to transmit.\r
- */\r
-#if __GNUC__\r
-__attribute__((__always_inline__))\r
-#endif\r
-extern __inline__ void usart_bw_write_char(volatile avr32_usart_t *usart, int c)\r
-{\r
- while (usart_write_char(usart, c) != USART_SUCCESS);\r
-}\r
-\r
-/*! \brief Sends a character with the USART.\r
- *\r
- * \param usart Base address of the USART instance.\r
- * \param c Character to write.\r
- *\r
- * \retval USART_SUCCESS The character was written.\r
- * \retval USART_FAILURE The function timed out before the USART transmitter became ready to send.\r
- */\r
-extern int usart_putchar(volatile avr32_usart_t *usart, int c);\r
-\r
-/*! \brief Checks the RX buffer for a received character, and stores it at the\r
- * given memory location.\r
- *\r
- * \param usart Base address of the USART instance.\r
- * \param c Pointer to the where the read character should be stored\r
- * (must be at least short in order to accept 9-bit characters).\r
- *\r
- * \retval USART_SUCCESS The character was read successfully.\r
- * \retval USART_RX_EMPTY The RX buffer was empty.\r
- * \retval USART_RX_ERROR An error was deteceted.\r
- */\r
-extern int usart_read_char(volatile avr32_usart_t *usart, int *c);\r
-\r
-/*! \brief Waits until a character is received, and returns it.\r
- *\r
- * \param usart Base address of the USART instance.\r
- *\r
- * \return The received character, or \ref USART_FAILURE upon error.\r
- */\r
-extern int usart_getchar(volatile avr32_usart_t *usart);\r
-\r
-/*! \brief Writes one character string to the USART.\r
- *\r
- * \param usart Base address of the USART instance.\r
- * \param string String to be written.\r
- */\r
-extern void usart_write_line(volatile avr32_usart_t *usart, const char *string);\r
-\r
-/*! \brief Gets and echoes characters until end of line.\r
- *\r
- * \param usart Base address of the USART instance.\r
- *\r
- * \retval USART_SUCCESS Success.\r
- * \retval USART_FAILURE ETX character received.\r
- */\r
-extern int usart_get_echo_line(volatile avr32_usart_t *usart);\r
-\r
-//! @}\r
-\r
-\r
-#endif // _USART_H_\r