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📄 hal_arm_xscale_prpmc1100.cdl

📁 eCos操作系统源码
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# ====================================================================##      hal_arm_xscale_prpmc1100.cdl##      Motorola PrPMC1100 Board HAL package## ====================================================================#####ECOSGPLCOPYRIGHTBEGIN###### -------------------------------------------## This file is part of eCos, the Embedded Configurable Operating System.## Copyright (C) 1998, 1999, 2000, 2001, 2002, 2003 Red Hat, Inc.#### eCos is free software; you can redistribute it and/or modify it under## the terms of the GNU General Public License as published by the Free## Software Foundation; either version 2 or (at your option) any later version.#### eCos is distributed in the hope that it will be useful, but WITHOUT ANY## WARRANTY; without even the implied warranty of MERCHANTABILITY or## FITNESS FOR A PARTICULAR PURPOSE.  See the GNU General Public License## for more details.#### You should have received a copy of the GNU General Public License along## with eCos; if not, write to the Free Software Foundation, Inc.,## 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA.#### As a special exception, if other files instantiate templates or use macros## or inline functions from this file, or you compile this file and link it## with other works to produce a work based on this file, this file does not## by itself cause the resulting work to be covered by the GNU General Public## License. However the source code for this file must still be made available## in accordance with section (3) of the GNU General Public License.#### This exception does not invalidate any other reasons why a work based on## this file might be covered by the GNU General Public License.#### Alternative licenses for eCos may be arranged by contacting Red Hat, Inc.## at http://sources.redhat.com/ecos/ecos-license/## -------------------------------------------#####ECOSGPLCOPYRIGHTEND##### ====================================================================######DESCRIPTIONBEGIN###### Author(s):      msalter# Contributors:   msalter# Date:           2003-03-27######DESCRIPTIONEND###### ====================================================================cdl_package CYGPKG_HAL_ARM_XSCALE_PRPMC1100 {    display       "Motorola PrPMC1100 Processor PMC"    parent        CYGPKG_HAL_ARM_XSCALE    implements    CYGINT_HAL_ARM_BIGENDIAN    hardware    include_dir   cyg/hal    define_header hal_arm_xscale_prpmc1100.h    description   "        This HAL platform package provides support for the        Motorola PrPMC1100 for the Intel XScale IXC1100	Control Plane Processor."    compile       prpmc1100_misc.c prpmc1100_pci.c    define_proc {        puts $::cdl_system_header "#define CYGBLD_HAL_TARGET_H   <pkgconf/hal_arm.h>"        puts $::cdl_system_header "#define CYGBLD_HAL_VARIANT_H  <pkgconf/hal_arm_xscale_ixp425.h>"        puts $::cdl_system_header "#define CYGBLD_HAL_PLATFORM_H <pkgconf/hal_arm_xscale_prpmc1100.h>"        puts $::cdl_header "#define CYGBLD_HAL_PLF_INTS_H <cyg/hal/hal_plf_ints.h>"	puts $::cdl_header "#define HAL_PLATFORM_CPU    \"XScale\""        puts $::cdl_header "#define HAL_PLATFORM_BOARD  \"Motorola PrPMC1100\""        puts $::cdl_header "#define HAL_PLATFORM_EXTRA  \"\""        puts $::cdl_header "#define HAL_PLATFORM_MACHINE_TYPE  290"    }    cdl_component CYG_HAL_STARTUP {        display       "Startup type"        flavor        data        default_value {"RAM"}        legal_values  {"RAM" "ROM"}	no_define	define -file system.h CYG_HAL_STARTUP        description   "           When targeting the PrPMC1100 board it is possible to configure the           system for either RAM bootstrap or ROM bootstrap(s). Select 'ram'	   when building programs to load into RAM using onboard debug software           such as RedBoot or eCos GDB stubs."    }    cdl_component CYGBLD_GLOBAL_OPTIONS {        display "Global build options"        flavor  none        no_define        description   "	    Global build options including control over compiler            flags, linker flags and choice of toolchain."        parent  CYGPKG_NONE        cdl_option CYGBLD_GLOBAL_COMMAND_PREFIX {            display "Global command prefix"            flavor  data            no_define            default_value { "arm-elf" }            description "                This option specifies the command prefix used when                invoking the build tools."        }        cdl_option CYGBLD_GLOBAL_CFLAGS {            display "Global compiler flags"            flavor  data            no_define            default_value { "-mcpu=xscale -mbig-endian -Wall -Wpointer-arith -Wstrict-prototypes -Winline -Wundef -Woverloaded-virtual -g -O2 -ffunction-sections -fdata-sections -fno-rtti -fno-exceptions -fvtable-gc -finit-priority -mapcs-frame" }            description   "                This option controls the global compiler flags which are used to                compile all packages by default. Individual packages may define                options which override these global flags."        }        cdl_option CYGBLD_GLOBAL_LDFLAGS {            display "Global linker flags"            flavor  data            no_define            default_value { "-mcpu=xscale -mbig-endian -Wl,--gc-sections -Wl,-static -g -O2 -nostdlib" }            description   "                This option controls the global linker flags. Individual                packages may define options which override these global flags."        }        cdl_option CYGBLD_BUILD_GDB_STUBS {            display "Build GDB stub ROM image"            default_value 0            requires { CYG_HAL_STARTUP == "ROM" }            requires CYGSEM_HAL_ROM_MONITOR            requires CYGBLD_BUILD_COMMON_GDB_STUBS            requires CYGDBG_HAL_DEBUG_GDB_INCLUDE_STUBS            requires CYGDBG_HAL_DEBUG_GDB_BREAK_SUPPORT            requires CYGDBG_HAL_DEBUG_GDB_THREAD_SUPPORT            requires ! CYGDBG_HAL_COMMON_INTERRUPTS_SAVE_MINIMUM_CONTEXT            requires ! CYGDBG_HAL_COMMON_CONTEXT_SAVE_MINIMUM            no_define            description "                This option enables the building of the GDB stubs for the                board. The common HAL controls takes care of most of the                build process, but the final conversion from ELF image to                binary data is handled by the platform CDL, allowing                relocation of the data if necessary."            make -priority 320 {                <PREFIX>/bin/gdb_module.bin : <PREFIX>/bin/gdb_module.img                $(OBJCOPY) --remove-section=.fixed_vectors -O binary $< $@            }        }    }    cdl_component CYGPKG_HAL_ARM_XSCALE_PRPMC1100_OPTIONS {        display "Motorola PrPMC1100 build options"        flavor  none        no_define        description   "	    Package specific build options including control over	    compiler flags used only in building this package,	    and details of which tests are built."        cdl_option CYGPKG_HAL_ARM_XSCALE_PRPMC1100_CFLAGS_ADD {            display "Additional compiler flags"            flavor  data            no_define            default_value { "" }            description   "                This option modifies the set of compiler flags for                building the XScale PRPMC1100 HAL. These flags are used in addition                to the set of global flags."        }        cdl_option CYGPKG_HAL_ARM_XSCALE_PRPMC1100_CFLAGS_REMOVE {            display "Suppressed compiler flags"            flavor  data            no_define            default_value { "" }            description   "                This option modifies the set of compiler flags for                building the XScale PRPMC1100 HAL. These flags are removed from                the set of global flags if present."        }	cdl_option CYGNUM_HAL_BREAKPOINT_LIST_SIZE {            display       "Number of breakpoints supported by the HAL."            flavor        data            default_value 32            description   "                This option determines the number of breakpoints supported by the HAL."        }    }    cdl_option CYGSEM_HAL_IXP425_PLF_USES_UART1 {        display       "PRPMC1100 uses IXP425 high-speed UART"        flavor        bool        default_value 1        description   "            Enable this option if the IXP425 high-speed UART is used            as a virtual vector communications channel."    }    cdl_option CYGSEM_HAL_IXP425_PLF_USES_UART2 {        display       "PRPMC1100 uses IXP425 console UART"        flavor        bool        default_value 1        description   "            Enable this option if the IXP425 console UART is to be used	    as a virtual vector communications channel."    }    cdl_component CYGHWR_MEMORY_LAYOUT {        display "Memory layout"        flavor data        no_define        calculated { CYG_HAL_STARTUP == "RAM" ? "arm_xscale_prpmc1100_ram" : \	                                        "arm_xscale_prpmc1100_rom" }        cdl_option CYGHWR_MEMORY_LAYOUT_LDI {            display "Memory layout linker script fragment"            flavor data            no_define            define -file system.h CYGHWR_MEMORY_LAYOUT_LDI            calculated { CYG_HAL_STARTUP == "RAM" ? "<pkgconf/mlt_arm_xscale_prpmc1100_ram.ldi>" : \						    "<pkgconf/mlt_arm_xscale_prpmc1100_rom.ldi>" }        }        cdl_option CYGHWR_MEMORY_LAYOUT_H {            display "Memory layout header file"            flavor data            no_define            define -file system.h CYGHWR_MEMORY_LAYOUT_H            calculated { CYG_HAL_STARTUP == "RAM" ? "<pkgconf/mlt_arm_xscale_prpmc1100_ram.h>" : \                                                    "<pkgconf/mlt_arm_xscale_prpmc1100_rom.h>" }        }    }    cdl_option CYGSEM_HAL_ROM_MONITOR {        display       "Behave as a ROM monitor"        flavor        bool        default_value 0        parent        CYGPKG_HAL_ROM_MONITOR        requires      { CYG_HAL_STARTUP == "ROM" }        description   "            Enable this option if this program is to be used as a ROM monitor,            i.e. applications will be loaded into RAM on the board, and this            ROM monitor may process exceptions or interrupts generated from the            application. This enables features such as utilizing a separate            interrupt stack when exceptions are generated."    }    cdl_option CYGSEM_HAL_USE_ROM_MONITOR {         display       "Work with a ROM monitor"         flavor        booldata         legal_values  { "Generic" "GDB_stubs" }         default_value { CYG_HAL_STARTUP == "RAM" ? "GDB_stubs" : 0 }         parent        CYGPKG_HAL_ROM_MONITOR         requires      { CYG_HAL_STARTUP == "RAM" }         description   "             Support can be enabled for different varieties of ROM monitor.             This support changes various eCos semantics such as the encoding             of diagnostic output, or the overriding of hardware interrupt             vectors.             Firstly there is \"Generic\" support which prevents the HAL             from overriding the hardware vectors that it does not use, to             instead allow an installed ROM monitor to handle them. This is             the most basic support which is likely to be common to most             implementations of ROM monitor.             \"GDB_stubs\" provides support when GDB stubs are included in             the ROM monitor or boot ROM."     }    cdl_component CYGPKG_REDBOOT_HAL_OPTIONS {        display       "Redboot HAL options"        flavor        none        no_define        parent        CYGPKG_REDBOOT        active_if     CYGPKG_REDBOOT        description   "            This option lists the target's requirements for a valid Redboot            configuration."        cdl_option CYGBLD_BUILD_REDBOOT_BIN {            display       "Build Redboot ROM binary image"            active_if     CYGBLD_BUILD_REDBOOT            default_value 1            no_define            description "This option enables the conversion of the Redboot ELF                         image to a binary image suitable for ROM programming."            make -priority 325 {                <PREFIX>/bin/redboot.bin : <PREFIX>/bin/redboot.elf                $(OBJCOPY) --strip-debug $< $(@:.bin=.img)                 $(OBJCOPY) -O srec $< $(@:.bin=.srec)                $(OBJCOPY) -O binary $< $@            }        }    }}

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