Mercurial > ecos
view packages/hal/powerpc/ppc40x/current/include/variant.inc @ 136:a9ac27ec7abc ecos-sw-2000-11-17
Merge from eCos master repository on 2000-11-17-18:24:25-GMT
| author | jlarmour |
|---|---|
| date | Fri, 17 Nov 2000 23:16:43 +0000 |
| parents | d2f49caf9e38 |
| children | 289bf90c6a9b |
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#ifndef CYGONCE_HAL_VARIANT_INC #define CYGONCE_HAL_VARIANT_INC ##============================================================================= ## ## variant.inc ## ## PPC40x family assembler header file ## ##============================================================================= #####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 ## Contributors:jskov, gthomas ## Date: 2000-08-27 ## Purpose: MPCxxx family definitions. ## Description: This file contains various definitions and macros that are ## useful for writing assembly code for the PPC40x CPU family. ## Usage: ## #include <cyg/hal/variant.inc> ## ... ## ## ######DESCRIPTIONEND#### ## ##============================================================================= #include <pkgconf/hal.h> #undef CYG_MSR_COMMON #define CYG_MSR_COMMON (MSR_ME | MSR_RI) #include <cyg/hal/arch.inc> ##----------------------------------------------------------------------------- ## PPC40x defined vectors ## Special code to handle the various timers which generate non-standard ## interrupts. There are really three VSRs here, each 0x10 apart. .macro timer_vector name .p2align 8 .globl __exception_\name __exception_\name: # Variable timer interrupt mtspr SPRG1,r3 # stash some work registers away mtspr SPRG2,r4 li r4,0x1000 # vector offset b 0f # Fixed timer interrupt mtspr SPRG1,r3 # stash some work registers away mtspr SPRG2,r4 li r4,0x1010 # vector offset b 0f # Watchdog timer interrupt mtspr SPRG1,r3 # stash some work registers away mtspr SPRG2,r4 li r4,0x1020 # vector offset 0: mtspr SPRG3,r5 lwi r3,hal_vsr_table+(0x1000>>6) # table base lwz r3,0(r3) # address of vsr mflr r5 # save link register mtlr r3 # put vsr address into it mr r3,r4 # original vector mfcr r4 # stash CR blr # go to common code .endm .macro hal_extra_vectors timer_vector ppc40x_timers exception_vector data_TLB_miss exception_vector instr_TLB_miss exception_vector reserved_01300 exception_vector reserved_01400 exception_vector reserved_01500 exception_vector reserved_01600 exception_vector reserved_01700 exception_vector reserved_01800 exception_vector reserved_01900 exception_vector reserved_01A00 exception_vector reserved_01B00 exception_vector reserved_01C00 exception_vector reserved_01D00 exception_vector reserved_01E00 exception_vector reserved_01F00 exception_vector ppc40x_debug .endm ##----------------------------------------------------------------------------- ## PPC40x CPU initialization ## ## Initialize CPU to a post-reset state, ensuring the ground doesn''t ## shift under us while we try to set things up. .macro hal_cpu_init # Set up MSR (disable MMU for now) lwi r3,(CYG_MSR & ~(MSR_IR | MSR_DR)) sync mfmsr r4 mtmsr r3 sync .endm ##----------------------------------------------------------------------------- ## PPC40x monitor initialization #ifndef CYGPKG_HAL_PPC_MON_DEFINED #if defined(CYG_HAL_STARTUP_ROM) || \ ( defined(CYG_HAL_STARTUP_RAM) && \ !defined(CYGSEM_HAL_USE_ROM_MONITOR)) .macro hal_mon_init #ifdef CYGSEM_HAL_POWERPC_COPY_VECTORS # If we are starting up from ROM and want vectors in RAM # or we are starting in RAM and NOT using a ROM monitor, # copy exception handler code to 0. lwi r3,rom_vectors # r3 = rom start lwi r4,0 # r4 = ram start lwi r5,rom_vectors_end # r5 = rom end cmplw r3,r5 # skip if no vectors beq 2f subi r3,r3,4 subi r4,r4,4 subi r5,r5,4 1: lwzu r0,4(r3) # get word from ROM stwu r0,4(r4) # store in RAM cmplw r3,r5 # compare blt 1b # loop if not yet done 2: # Ensure that the vectors will come from 0x0000 lwi r4,0 mtspr SPR_EVPR,r4 #endif # Next initialize the VSR table. This happens whether the # vectors were copied to RAM or not. # First fill with exception handlers lwi r3,cyg_hal_default_exception_vsr lwi r4,hal_vsr_table subi r4,r4,4 li r5,CYGNUM_HAL_VSR_COUNT 1: stwu r3,4(r4) subi r5,r5,1 cmpwi r5,0 bne 1b # Then fill in the special vectors lwi r3,cyg_hal_default_interrupt_vsr lwi r4,hal_vsr_table stw r3,CYGNUM_HAL_VECTOR_INTERRUPT*4(r4) stw r3,CYGNUM_HAL_VECTOR_DECREMENTER*4(r4) stw r3,CYGNUM_HAL_VECTOR_TIMERS*4(r4) .endm #elif defined(CYG_HAL_STARTUP_RAM) && defined(CYGSEM_HAL_USE_ROM_MONITOR) # Initialize the VSR table entries # We only take control of the interrupt vectors, # the rest are left to the ROM for now... .macro hal_mon_init lwi r3,cyg_hal_default_interrupt_vsr lwi r4,hal_vsr_table stw r3,CYGNUM_HAL_VECTOR_INTERRUPT*4(r4) stw r3,CYGNUM_HAL_VECTOR_DECREMENTER*4(r4) stw r3,CYGNUM_HAL_VECTOR_TIMERS*4(r4) .endm #else .macro hal_mon_init .endm #endif #define CYGPKG_HAL_PPC_MON_DEFINED #endif // CYGPKG_HAL_PPC_MON_DEFINED ##----------------------------------------------------------------------------- ## PPC40x exception state handling .macro hal_variant_save regs .endm .macro hal_variant_load regs .endm ##----------------------------------------------------------------------------- ## Indicate that the ISR tables are defined in variant.S #define CYG_HAL_PPC_ISR_TABLES_DEFINED ##----------------------------------------------------------------------------- ## MPC4xx interrupt handling. ## Decode the EXISR appropriately #define CYGPKG_HAL_POWERPC_INTC_DEFINED # decode the interrupt # the interrupt vector will be 0x500 or 0x10x0 # 0x0500 = external, must be decoded via EXISR # 0x10X0 = timer, X is the timer type # r3 used as scratch .macro hal_intc_decode dreg,state lwz \dreg,CYGARC_PPCREG_VECTOR(\state) # retrieve vector number, extrwi. \dreg,\dreg,1,19 # isolate bit 19 beq 0f # timer interrupt = 1 lwz \dreg,CYGARC_PPCREG_VECTOR(\state) # retrieve vector number, extrwi \dreg,\dreg,2,26 # isolate bits 26-27 addi \dreg,\dreg,CYGNUM_HAL_INTERRUPT_VAR_TIMER # FIXME b 1f 0: mfdcr r3,DCR_EXISR # Interrupt status register lwi \dreg,0x8FF0001F # significant bits and \dreg,\dreg,r3 cntlzw r3,\dreg # find highest "1" bit slwi r3,r3,2 lwi \dreg,EXISR_TAB # convert bit # to signal # lwz \dreg,0(\dreg) 1: stw \dreg,CYGARC_PPCREG_VECTOR(\state) # update vector in state frame. slwi \dreg,\dreg,2 # convert to byte offset. .endm #------------------------------------------------------------------------------ #endif // ifndef CYGONCE_HAL_VARIANT_INC # end of variant.inc
