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# ====================================================================
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#
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# hal_powerpc_cme555.cdl
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#
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# PowerPC/cme555 board HAL package configuration data
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#
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# ====================================================================
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#####ECOSGPLCOPYRIGHTBEGIN####
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## -------------------------------------------
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## This file is part of eCos, the Embedded Configurable Operating System.
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## Copyright (C) 1998, 1999, 2000, 2001, 2002 Red Hat, Inc.
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##
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## eCos is free software; you can redistribute it and/or modify it under
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## the terms of the GNU General Public License as published by the Free
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## Software Foundation; either version 2 or (at your option) any later version.
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##
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## eCos is distributed in the hope that it will be useful, but WITHOUT ANY
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## WARRANTY; without even the implied warranty of MERCHANTABILITY or
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## FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
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## for more details.
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##
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## You should have received a copy of the GNU General Public License along
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## with eCos; if not, write to the Free Software Foundation, Inc.,
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## 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA.
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##
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## As a special exception, if other files instantiate templates or use macros
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## or inline functions from this file, or you compile this file and link it
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## with other works to produce a work based on this file, this file does not
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## by itself cause the resulting work to be covered by the GNU General Public
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## License. However the source code for this file must still be made available
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## in accordance with section (3) of the GNU General Public License.
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##
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## This exception does not invalidate any other reasons why a work based on
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## this file might be covered by the GNU General Public License.
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##
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## Alternative licenses for eCos may be arranged by contacting Red Hat, Inc.
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## at http://sources.redhat.com/ecos/ecos-license/
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## -------------------------------------------
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#####ECOSGPLCOPYRIGHTEND####
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# ====================================================================
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######DESCRIPTIONBEGIN####
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#
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# Author(s): Bob Koninckx
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# Original data: bartv
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# Contributors:
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# Date: 1999-11-02
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#
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#####DESCRIPTIONEND####
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#
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# ====================================================================
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cdl_package CYGPKG_HAL_POWERPC_CME555 {
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display "CME555 MPC555 evaluation board"
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parent CYGPKG_HAL_POWERPC
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requires CYGPKG_HAL_POWERPC_MPC5xx
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define_header hal_powerpc_cme555.h
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include_dir cyg/hal
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description "
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The CME555 HAL package provides the support needed to run
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eCos on Axiom's CME555 MPC555 evaluation board."
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compile hal_diag.c plf_misc.c cme555.S plf_stub.c
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implements CYGINT_HAL_DEBUG_GDB_STUBS
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implements CYGINT_HAL_DEBUG_GDB_STUBS_BREAK
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implements CYGINT_HAL_VIRTUAL_VECTOR_SUPPORT
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implements CYGINT_HAL_VIRTUAL_VECTOR_COMM_BAUD_SUPPORT
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define_proc {
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puts $::cdl_system_header "#define CYGBLD_HAL_TARGET_H "
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puts $::cdl_system_header "#define CYGBLD_HAL_PLATFORM_H "
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}
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cdl_component CYG_HAL_STARTUP {
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display "Startup type"
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flavor data
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legal_values {"RAM" "ROM"}
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default_value {"RAM"}
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no_define
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define -file system.h CYG_HAL_STARTUP
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description "
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When targetting the CME555 board it is possible to build
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the system for either RAM bootstrap or ROM bootstrap. RAM
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bootstrap requires that the MPC555 internal flash contains a
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suitable ROM monitor or equivalent software that allows GDB
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to download the eCos application on to the board. The ROM
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bootstrap requires that the eCos application be blown into
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the MPC555 internal flash array. Both types of startup require
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the internal flash array to be enabled. Both startup types expect
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the boards RAM to be present on CS0 and the external flash on
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CS1. CS2 is not used by eCos and can e.g. be used for memory
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mapped I/O by your application. Typical use of the board could be
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to build GDB-stubs for ROM bootstrap, use AXIOM's monitor to
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program it in internal flash, and then change the necessary
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switches and jumpers to enable internal flash and get the memory
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map right. Consult the CME555 manual to make sure you have all
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jumper settings correct."
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}
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cdl_option CYGNUM_HAL_VIRTUAL_VECTOR_COMM_CHANNELS {
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display "Number of communication channels on the board"
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flavor data
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calculated 2
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description "
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The CME555 has two serial ports. Channel 0 is indicated as Comm1
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on the board, channel 1 has the indication Comm2."
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}
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cdl_option CYGNUM_HAL_VIRTUAL_VECTOR_DEBUG_CHANNEL {
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display "Debug serial port"
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flavor data
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legal_values 0 to 1
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default_value 0
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description "
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The CME555 has two serial ports. Channel 0 is indicated as Comm1
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on the board, channel 1 has the indication Comm2. This option
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chooses which port will be used to connect to a host running GDB."
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}
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cdl_option CYGNUM_HAL_VIRTUAL_VECTOR_CONSOLE_CHANNEL {
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display "Diagnostic serial port"
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flavor data
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legal_values 0 to CYGNUM_HAL_VIRTUAL_VECTOR_COMM_CHANNELS-1
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default_value 1
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description "
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The CME555 has two serial ports. Channel 0 is indicated as Comm1
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on the board, channel 1 has the indication Comm2. This option
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chooses which port will be used for diagnostic output."
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}
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cdl_option CYGHWR_HAL_POWERPC_BOARD_SPEED {
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display "Development board clock speed (MHz)"
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flavor data
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calculated 40
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description "
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The development boards is fitted with a 4MHz crystal. This frequency
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is internally boosted to maximum 40MHz. The value is fixed to the
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maximum since this board is not really suited for low power application
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anyway."
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}
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cdl_option CYGHWR_HAL_POWERPC_FORCE_VECTOR_BASE_LOW {
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display "Force vector base at address 0x0000 0000"
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flavor bool
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calculated 1
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description "
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The powerpc architecture allows the vectorbase to live at either
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0x0000 0000 or 0xfff0 0000. Since the CME-555 has no memory at the
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high addresses, vectors may never be located at 0xfff0 0000 for this
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board. They can be still be copied though if the internal flash is
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disabled and relocated to somewhere else"
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}
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cdl_option CYGNUM_HAL_VIRTUAL_VECTOR_CONSOLE_CHANNEL_BAUD {
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display "Baud rate for serial ports"
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flavor data
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legal_values 300 600 1200 2400 4800 9600 14400 19200 28800 38400 57600 115200
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default_value 38400
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description "
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This option determines the baud rate that will be used on both the console
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cannel and the debug channel."
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}
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# Real-time clock/counter specifics
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cdl_component CYGNUM_HAL_RTC_CONSTANTS {
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display "Real-time clock constants."
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description "
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Period is busclock/16/100."
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flavor none
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cdl_option CYGNUM_HAL_RTC_NUMERATOR {
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display "Real-time clock numerator"
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flavor data
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calculated 1000000000
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}
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cdl_option CYGNUM_HAL_RTC_DENOMINATOR {
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display "Real-time clock denominator"
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flavor data
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calculated 100
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}
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cdl_option CYGNUM_HAL_RTC_PERIOD {
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display "Real-time clock period"
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flavor data
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calculated { (((CYGHWR_HAL_POWERPC_BOARD_SPEED*1000000)/16)/100) }
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}
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}
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cdl_component CYGBLD_GLOBAL_OPTIONS {
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display "Global build options"
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flavor none
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parent CYGPKG_NONE
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description "
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Global build options including control over
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compiler flags, linker flags and choice of toolchain."
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cdl_option CYGBLD_GLOBAL_COMMAND_PREFIX {
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display "Global command prefix"
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flavor data
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no_define
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default_value { "powerpc-eabi" }
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description "
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This option specifies the command prefix used when
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invoking the build tools."
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}
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cdl_option CYGBLD_GLOBAL_CFLAGS {
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display "Global compiler flags"
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flavor data
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no_define
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default_value { "-mcpu=505 -Wall -Wpointer-arith -Wstrict-prototypes -Winline -Wundef -Woverloaded-virtual -g -O2 -ffunction-sections -fdata-sections -mmultiple -fno-rtti -fno-exceptions -finit-priority" }
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description "
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This option controls the global compiler flags which
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are used to compile all packages by
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default. Individual packages may define
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options which override these global flags."
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}
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cdl_option CYGBLD_GLOBAL_LDFLAGS {
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display "Global linker flags"
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flavor data
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no_define
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default_value { "-mcpu=505 -g -nostdlib -Wl,--gc-sections -Wl,-static" }
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description "
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This option controls the global linker flags. Individual
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packages may define options which override these global flags."
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}
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cdl_option CYGBLD_BUILD_GDB_STUBS {
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display "Build GDB stub ROM image"
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default_value 0
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requires { CYG_HAL_STARTUP == "ROM" }
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requires CYGSEM_HAL_ROM_MONITOR
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requires CYGBLD_BUILD_COMMON_GDB_STUBS
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requires CYGDBG_HAL_DEBUG_GDB_INCLUDE_STUBS
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requires CYGDBG_HAL_DEBUG_GDB_BREAK_SUPPORT
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requires CYGDBG_HAL_DEBUG_GDB_THREAD_SUPPORT
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requires ! CYGDBG_HAL_COMMON_INTERRUPTS_SAVE_MINIMUM_CONTEXT
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requires ! CYGDBG_HAL_COMMON_CONTEXT_SAVE_MINIMUM
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no_define
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description "
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This option enables the building of the GDB stubs for the
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board. The common HAL controls takes care of most of the
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build process, but the final conversion from ELF image to
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binary data is handled by the platform CDL, allowing
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relocation of the data if necessary."
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make -priority 320 {
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/bin/gdb_module.bin : /bin/gdb_module.img
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$(OBJCOPY) -O binary $< $@
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}
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}
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}
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cdl_component CYGHWR_MEMORY_LAYOUT {
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display "Memory layout"
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flavor data
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no_define
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calculated { CYG_HAL_STARTUP == "RAM" ? "powerpc_cme555_ram" : \
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"powerpc_cme555_rom" }
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cdl_option CYGHWR_MEMORY_LAYOUT_LDI {
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display "Memory layout linker script fragment"
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flavor data
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no_define
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define -file system.h CYGHWR_MEMORY_LAYOUT_LDI
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calculated { CYG_HAL_STARTUP == "RAM" ? "" : \
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"" }
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}
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cdl_option CYGHWR_MEMORY_LAYOUT_H {
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display "Memory layout header file"
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flavor data
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no_define
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define -file system.h CYGHWR_MEMORY_LAYOUT_H
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calculated { CYG_HAL_STARTUP == "RAM" ? "" : \
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"" }
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}
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}
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cdl_option CYGSEM_HAL_ROM_MONITOR {
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display "Behave as a ROM monitor"
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flavor bool
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default_value 0
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parent CYGPKG_HAL_ROM_MONITOR
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requires { CYG_HAL_STARTUP == "ROM" }
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description "
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Enable this option if this program is to be used as a ROM monitor,
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i.e. applications will be loaded into RAM on the board, and this
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ROM monitor may process exceptions or interrupts generated from the
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application. This enables features such as utilizing a separate
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interrupt stack when exceptions are generated."
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}
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}
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