Mercurial > flash_v2
view packages/hal/sh/arch/current/cdl/hal_sh.cdl @ 128:0c2b7be0d798 ecos-sw-2000-10-12
Merge from eCos master repository on 2000-10-12-08:46:24-BST
| author | jlarmour |
|---|---|
| date | Thu, 12 Oct 2000 20:31:43 +0000 |
| parents | 0ec04793409a |
| children | eb9fd8c04db3 |
line wrap: on
line source
# ==================================================================== # # hal_sh.cdl # # SH architectural HAL package configuration data # # ==================================================================== #####COPYRIGHTBEGIN#### # # ------------------------------------------- # The contents of this file are subject to the Red Hat eCos Public License # Version 1.1 (the "License"); you may not use this file except in # compliance with the License. You may obtain a copy of the License at # http://www.redhat.com/ # # Software distributed under the License is distributed on an "AS IS" # basis, WITHOUT WARRANTY OF ANY KIND, either express or implied. See the # License for the specific language governing rights and limitations under # the License. # # The Original Code is eCos - Embedded Configurable Operating System, # released September 30, 1998. # # The Initial Developer of the Original Code is Red Hat. # Portions created by Red Hat are # Copyright (C) 1998, 1999, 2000 Red Hat, Inc. # All Rights Reserved. # ------------------------------------------- # #####COPYRIGHTEND#### # ==================================================================== ######DESCRIPTIONBEGIN#### # # Author(s): jskov # Original data: jskov # Contributors: # Date: 1999-10-29 # #####DESCRIPTIONEND#### # # ==================================================================== cdl_package CYGPKG_HAL_SH { display "SH architecture" parent CYGPKG_HAL hardware include_dir cyg/hal define_header hal_sh.h description " The SH (SuperH) architecture HAL package provides generic support for this processor architecture. It is also necessary to select a specific target platform HAL package." cdl_interface CYGINT_HAL_SH_VARIANT { display "Number of variant implementations in this configuration" no_define requires 1 == CYGINT_HAL_SH_VARIANT } compile hal_misc.c context.S sh_stub.c sh3_sci.c sh3_scif.c # The "-o file" is a workaround for CR100958 - without it the # output file would end up in the source directory under CygWin. # n.b. grep does not behave itself under win32 make -priority 1 { <PREFIX>/include/cyg/hal/sh_offsets.inc : <PACKAGE>/src/hal_mk_defs.c $(CC) $(CFLAGS) $(INCLUDE_PATH) -Wp,-MD,sh_offsets.tmp -o hal_mk_defs.tmp -S $< fgrep .equ hal_mk_defs.tmp | sed s/#// > $@ @echo $@ ": \\" > $(notdir $@).deps @tail +2 sh_offsets.tmp >> $(notdir $@).deps @echo >> $(notdir $@).deps @rm sh_offsets.tmp hal_mk_defs.tmp } make { <PREFIX>/lib/vectors.o : <PACKAGE>/src/vectors.S $(CC) -Wp,-MD,vectors.tmp $(INCLUDE_PATH) $(CFLAGS) -c -o $@ $< @echo $@ ": \\" > $(notdir $@).deps @tail +2 vectors.tmp >> $(notdir $@).deps @echo >> $(notdir $@).deps @rm vectors.tmp } make { <PREFIX>/lib/target.ld: <PACKAGE>/src/sh.ld $(CC) -E -P -Wp,-MD,target.tmp -DEXTRAS=1 -xc $(INCLUDE_PATH) $(CFLAGS) -o $@ $< @echo $@ ": \\" > $(notdir $@).deps @tail +2 target.tmp >> $(notdir $@).deps @echo >> $(notdir $@).deps @rm target.tmp } cdl_component CYGPKG_HAL_SH_CPU { display "CPU type and endian mode controls" flavor none no_define description " CPU type and endian mode can be selected using these option." cdl_option CYGPKG_HAL_SH_7707A { display "SH 7707A microprocessor" implements CYGINT_HAL_SH_VARIANT implements CYGINT_HAL_SH_CPG_V2 default_value 0 no_define define -file=system.h CYGPKG_HAL_SH_7707A description " The SH3 7707A microprocessor. This is an embedded part that in addition to the SH3 processor core has built in peripherals such as memory controllers, serial ports, LCD controller and timers/counters." define_proc { puts $cdl_system_header "#define CYGBLD_HAL_CPU_MODULES_H <cyg/hal/mod_7707a.h>" } } cdl_option CYGPKG_HAL_SH_7708 { display "SH 7708 microprocessor" implements CYGINT_HAL_SH_VARIANT implements CYGINT_HAL_SH_CPG_V1 default_value 0 no_define define -file=system.h CYGPKG_HAL_SH_7708 description " The SH3 7708 microprocessor. This is an embedded part that in addition to the SH3 processor core has built in peripherals such as memory controllers, serial ports and timers/counters." define_proc { puts $cdl_system_header "#define CYGBLD_HAL_CPU_MODULES_H <cyg/hal/mod_7708.h>" } } cdl_option CYGPKG_HAL_SH_7709A { display "SH 7709A microprocessor" implements CYGINT_HAL_SH_VARIANT implements CYGINT_HAL_SH_CPG_V3 default_value 0 no_define define -file=system.h CYGPKG_HAL_SH_7709A description " The SH3 7709A microprocessor. This is an embedded part that in addition to the SH3 processor core has built in peripherals such as memory controllers, DMA controllers, A/D and D/A converters, serial ports and timers/counters." define_proc { puts $cdl_system_header "#define CYGBLD_HAL_CPU_MODULES_H <cyg/hal/mod_7709a.h>" } } cdl_option CYGPKG_HAL_SH_7729 { display "SH 7729 microprocessor" implements CYGINT_HAL_SH_VARIANT implements CYGINT_HAL_SH_CPG_V3 default_value 0 no_define define -file=system.h CYGPKG_HAL_SH_7729 description " The SH3 7729 microprocessor. This is an embedded part that in addition to the SH3 processor core has built in peripherals such as memory controllers, serial ports, and timers/counters, and a DSP engine." define_proc { puts $cdl_system_header "#define CYGBLD_HAL_CPU_MODULES_H <cyg/hal/mod_7729.h>" } } cdl_option CYGHWR_HAL_SH_BIGENDIAN { display "Use big-endian mode" default_value 1 description " Use the CPU in big-endian mode." } } cdl_component CYGPKG_HAL_SH_INTERRUPT { display "Interrupt controls" flavor none no_define description " Initial interrupt settings can be specified using these option." cdl_option CYGHWR_HAL_SH_IRQ_HANDLE_SPURIOUS_INTERRUPTS { display "Handle spurious interrupts" default_value 0 description " The SH3 may generate spurious interrupts with INTEVT = 0 when changing the BL bit of the status register. Enabling this option will cause such interrupts to be identified very early in the interrupt handler and be ignored. Given that the SH HAL uses the I-mask to control interrupts, these spurious interrupts should not occur, and so there should be no reason to include the special handling code." } cdl_option CYGHWR_HAL_SH_IRQ_USE_IRQLVL { display "Use IRQ0-3 pins as IRL input" default_value 0 description " It is possible for the IRQ0-3 pins to be used as IRL inputs by enabling this option." } cdl_option CYGHWR_HAL_SH_IRQ_ENABLE_IRLS_INTERRUPTS { display "Enable IRLS interrupt pins" default_value 0 active_if CYGHWR_HAL_SH_IRQ_USE_IRQLVL description " IRLS interrupt pins must be specifically activated. When they are, they will cause the same type of interrupt as those caused by the IRL pins. If IRL and IRLS pins signal an interrupt at the same time, the highest level interrupt will be generated. Only available on some cores, and probably share pins with other interrupt sources (PINT) which cannot be used in this configuration." } } cdl_component CYGPKG_HAL_SH_CACHE { display "Cache controls" flavor none no_define description " Initial cache settings can be specified using these options." cdl_option CYGHWR_HAL_SH_CACHE_ENABLE { display "Enable cache on startup" default_value 1 description " Controls whether caches should be enabled on startup." } cdl_option CYGHWR_HAL_SH_CACHE_MODE_P0 { display "Select cache mode set for P0/U0/P3 at startup" default_value { "WRITE_BACK" } legal_values { "WRITE_BACK" "WRITE_THROUGH" } flavor data description " Controls what cache mode the cache should be put in at startup for areas P0, U0 and P3. Write-back mode improves performance by letting dirty data to be kept in the cache for a period of time, allowing mutiple writes to the same cache line to be written back to memory in one memory transaction. In Write-through mode, each individual write will cause a memory transaction." } cdl_option CYGHWR_HAL_SH_CACHE_MODE_P1 { display "Select cache mode set for P1 at startup" default_value { "WRITE_BACK" } legal_values { "WRITE_BACK" "WRITE_THROUGH" } flavor data description " Controls what cache mode the cache should be put in at startup for area P1. Write-back mode improves performance by letting dirty data to be kept in the cache for a period of time, allowing mutiple writes to the same cache line to be written back to memory in one memory transaction. In Write-through mode, each individual write will cause a memory transaction." } } cdl_component CYGHWR_HAL_SH_CLOCK_SETTINGS { display "SH on-chip generic clock controls" description " The various clocks used by the system are controlled by these options, some of which are derived from platform settings." flavor none no_define cdl_interface CYGINT_HAL_SH_CPG_V1 { display "Clock pulse generator type 1" } cdl_interface CYGINT_HAL_SH_CPG_V2 { display "Clock pulse generator type 2" } cdl_interface CYGINT_HAL_SH_CPG_V3 { display "Clock pulse generator type 3" } cdl_option CYGHWR_HAL_SH_TMU_PRESCALE_0 { display "TMU counter 0 prescaling" description " The peripheral clock is driving the counter used for the real-time clock, prescaled by this factor." flavor data legal_values { 4 16 64 256 } default_value 4 } cdl_option CYGHWR_HAL_SH_CLOCK_CKIO { display "CKIO clock" no_define flavor data # CKIO is either XTAL or PLL2 output calculated { CYGINT_HAL_SH_CPG_V1 ? ( (CYGHWR_HAL_SH_OOC_CLOCK_MODE == 7) ? (CYGHWR_HAL_SH_OOC_XTAL) : CYGHWR_HAL_SH_PLL2_OUTPUT ) : CYGINT_HAL_SH_CPG_V2 ? ( (CYGHWR_HAL_SH_OOC_CLOCK_MODE == 2) ? (CYGHWR_HAL_SH_OOC_XTAL) : CYGHWR_HAL_SH_PLL2_OUTPUT ) : CYGINT_HAL_SH_CPG_V3 ? ( (CYGHWR_HAL_SH_OOC_CLOCK_MODE == 7) ? (CYGHWR_HAL_SH_OOC_XTAL) : CYGHWR_HAL_SH_PLL2_OUTPUT ) : 0 } } cdl_option CYGHWR_HAL_SH_PLL1_OUTPUT { display "The clock output from PLL1" no_define flavor data calculated { CYGHWR_HAL_SH_CLOCK_CKIO * CYGHWR_HAL_SH_OOC_PLL_1 } } cdl_option CYGHWR_HAL_SH_PLL2_OUTPUT { display "The clock output from PLL2" no_define flavor data calculated { CYGINT_HAL_SH_CPG_V1 ? ( (CYGHWR_HAL_SH_OOC_XTAL * CYGHWR_HAL_SH_OOC_PLL_2) ) : CYGINT_HAL_SH_CPG_V2 ? ( (CYGHWR_HAL_SH_OOC_CLOCK_MODE == 5) ? (CYGHWR_HAL_SH_OOC_XTAL / 2) : (CYGHWR_HAL_SH_OOC_CLOCK_MODE == 6) ? (14745600) : (CYGHWR_HAL_SH_OOC_CLOCK_MODE == 7) ? (11075600) : (CYGHWR_HAL_SH_OOC_XTAL * CYGHWR_HAL_SH_OOC_PLL_2) ) : CYGINT_HAL_SH_CPG_V3 ? ( (CYGHWR_HAL_SH_OOC_XTAL * CYGHWR_HAL_SH_OOC_PLL_2) ) : 0 } } cdl_option CYGHWR_HAL_SH_DIVIDER1_INPUT { display "The clock input to divider 1" no_define flavor data # DIV1 input is either PLL2 output or PLL1 output calculated { (CYGHWR_HAL_SH_OOC_PLL_1 == 0) ? CYGHWR_HAL_SH_PLL2_OUTPUT : CYGHWR_HAL_SH_PLL1_OUTPUT } } cdl_option CYGHWR_HAL_SH_DIVIDER2_INPUT { display "The clock input to divider 2" no_define flavor data # DIV2 input is either PLL2 output or PLL1 output calculated { CYGINT_HAL_SH_CPG_V1 ? ( (CYGHWR_HAL_SH_OOC_CLOCK_MODE == 3 || CYGHWR_HAL_SH_OOC_CLOCK_MODE == 4) ? CYGHWR_HAL_SH_PLL2_OUTPUT : CYGHWR_HAL_SH_PLL1_OUTPUT ) : CYGINT_HAL_SH_CPG_V2 ? ( (CYGHWR_HAL_SH_OOC_CLOCK_MODE <= 2) ? CYGHWR_HAL_SH_PLL1_OUTPUT : CYGHWR_HAL_SH_PLL2_OUTPUT ) : CYGINT_HAL_SH_CPG_V3 ? ( (CYGHWR_HAL_SH_OOC_CLOCK_MODE == 3 || CYGHWR_HAL_SH_OOC_CLOCK_MODE == 4) ? CYGHWR_HAL_SH_PLL2_OUTPUT : CYGHWR_HAL_SH_PLL1_OUTPUT ) : 0 } } cdl_option CYGHWR_HAL_SH_PROCESSOR_SPEED { display "Processor clock speed (MHz)" flavor data calculated { CYGHWR_HAL_SH_DIVIDER1_INPUT / CYGHWR_HAL_SH_OOC_DIVIDER_1 } description " The core (CPU, cache and MMU) speed is computed from the input clock speed and the divider 1 setting." } cdl_option CYGHWR_HAL_SH_BOARD_SPEED { display "Platform bus clock speed (MHz)" flavor data calculated { CYGHWR_HAL_SH_CLOCK_CKIO } description " The platform bus speed is CKIO." } cdl_option CYGHWR_HAL_SH_ONCHIP_PERIPHERAL_SPEED { display "Processor on-chip peripheral clock speed (MHz)" flavor data calculated { CYGHWR_HAL_SH_DIVIDER2_INPUT / CYGHWR_HAL_SH_OOC_DIVIDER_2 } description " The peripheral speed is computed from the input clock speed and the divider 2 settings." } } # Real-time clock/counter specifics cdl_component CYGNUM_HAL_RTC_CONSTANTS { display "Real-time clock constants." description " The HAL uses TMU counter 0 for driving the real-time clock." flavor none cdl_option CYGNUM_HAL_RTC_NUMERATOR { display "Real-time clock numerator" flavor data calculated 1000000000 } cdl_option CYGNUM_HAL_RTC_DENOMINATOR { display "Real-time clock denominator" flavor data calculated 100 } cdl_option CYGNUM_HAL_RTC_PERIOD { display "Real-time clock period" flavor data calculated { CYGHWR_HAL_SH_ONCHIP_PERIPHERAL_SPEED/CYGNUM_HAL_RTC_DENOMINATOR / CYGHWR_HAL_SH_TMU_PRESCALE_0 } } } cdl_option CYGBLD_LINKER_SCRIPT { display "Linker script" flavor data no_define calculated { "src/sh.ld" } } }
