Mercurial > ecos-v2_0-branch
view packages/hal/mips/arch/current/include/hal_cache.h @ 18:7253dcc42a09 ecos-sw-1999-06-25
Merge from eCos master repository on 1999-06-25-15:31:50-BST
| author | jlarmour |
|---|---|
| date | Fri, 25 Jun 1999 08:28:05 +0000 |
| parents | d3fbcdfa1b2f |
| children | 306eee292492 |
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#ifndef CYGONCE_HAL_CACHE_H #define CYGONCE_HAL_CACHE_H //============================================================================= // // hal_cache.h // // HAL cache control API // //============================================================================= //####COPYRIGHTBEGIN#### // // ------------------------------------------- // The contents of this file are subject to the Cygnus eCos Public License // Version 1.0 (the "License"); you may not use this file except in // compliance with the License. You may obtain a copy of the License at // http://sourceware.cygnus.com/ecos // // 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 Cygnus Operating System, released // September 30, 1998. // // The Initial Developer of the Original Code is Cygnus. Portions created // by Cygnus are Copyright (C) 1998,1999 Cygnus Solutions. All Rights Reserved. // ------------------------------------------- // //####COPYRIGHTEND#### //============================================================================= //#####DESCRIPTIONBEGIN#### // // Author(s): nickg // Contributors: nickg // Date: 1998-02-17 // Purpose: Cache control API // Description: The macros defined here provide the HAL APIs for handling // cache control operations. // Usage: // #include <cyg/hal/hal_cache.h> // ... // // //####DESCRIPTIONEND#### // //============================================================================= #include <pkgconf/hal.h> #include <cyg/infra/cyg_type.h> #include <cyg/hal/var_cache.h> //============================================================================= // Default Implementation. This uses the standard MIPS CP0 registers and // cache instructions. Note that not all variants will have all of the // functionality defined here. //----------------------------------------------------------------------------- // Cache dimensions. // These really should be defined in var_cache.h. If they are not, then provide // a set of numbers that are typical of many variants. #ifndef HAL_DCACHE_SIZE // Data cache #define HAL_DCACHE_SIZE 4096 // Size of data cache in bytes #define HAL_DCACHE_LINE_SIZE 16 // Size of a data cache line #define HAL_DCACHE_WAYS 2 // Associativity of the cache // Instruction cache #define HAL_ICACHE_SIZE 4096 // Size of cache in bytes #define HAL_ICACHE_LINE_SIZE 16 // Size of a cache line #define HAL_ICACHE_WAYS 2 // Associativity of the cache #define HAL_DCACHE_SETS (HAL_DCACHE_SIZE/(HAL_DCACHE_LINE_SIZE*HAL_DCACHE_WAYS)) #define HAL_ICACHE_SETS (HAL_ICACHE_SIZE/(HAL_ICACHE_LINE_SIZE*HAL_ICACHE_WAYS)) #endif //----------------------------------------------------------------------------- // Global control of data cache // Enable the data cache // There is no default mechanism for enabling or disabling the caches. #ifndef HAL_DCACHE_ENABLE_DEFINED #define HAL_DCACHE_ENABLE() #endif // Disable the data cache #ifndef HAL_DCACHE_DISABLE_DEFINED #define HAL_DCACHE_DISABLE() #endif #ifndef HAL_DCACHE_IS_ENABLED_DEFINED #define HAL_DCACHE_IS_ENABLED(_state_) (_state_) = 1; #endif // Invalidate the entire cache // We simply use HAL_DCACHE_SYNC() to do this. For writeback caches this // is not quite what we want, but there is no index-invalidate operation // available. #ifndef HAL_DCACHE_INVALIDATE_ALL_DEFINED #define HAL_DCACHE_INVALIDATE_ALL() HAL_DCACHE_SYNC() #endif // Synchronize the contents of the cache with memory. // This uses the index-writeback-invalidate operation. #ifndef HAL_DCACHE_SYNC_DEFINED #define HAL_DCACHE_SYNC() \ { \ register CYG_ADDRESS _baddr_ = 0x80000000; \ register CYG_ADDRESS _addr_ = 0x80000000; \ register CYG_WORD _size_ = HAL_DCACHE_SIZE; \ register CYG_WORD _state_; \ HAL_DCACHE_IS_ENABLED( _state_ ); \ if( _state_ ) \ for( ; _addr_ <= _baddr_+_size_; _addr_ += HAL_DCACHE_LINE_SIZE ) \ { asm volatile ("cache 0x01,0(%0)" : : "r"(_addr_) ); } \ } #endif // Set the data cache refill burst size //#define HAL_DCACHE_BURST_SIZE(_size_) // Set the data cache write mode //#define HAL_DCACHE_WRITE_MODE( _mode_ ) //#define HAL_DCACHE_WRITETHRU_MODE 0 //#define HAL_DCACHE_WRITEBACK_MODE 1 // Load the contents of the given address range into the data cache // and then lock the cache so that it stays there. // This uses the fetch-and-lock cache operation. #ifndef HAL_DCACHE_LOCK_DEFINED #define HAL_DCACHE_LOCK(_base_, _asize_) \ CYG_MACRO_START \ register CYG_ADDRESS _baddr_ = (CYG_ADDRESS)(_base_); \ register CYG_ADDRESS _addr_ = (CYG_ADDRESS)(_base_); \ register CYG_WORD _size_ = (_asize_); \ register CYG_WORD _state_; \ HAL_DCACHE_IS_ENABLED( _state_ ); \ if( _state_ ) \ for( ; _addr_ <= _baddr_+_size_; _addr_ += HAL_DCACHE_LINE_SIZE ) \ { asm volatile ("cache 0x1d,0(%0)" : : "r"(_addr_) ); } \ CYG_MACRO_END #endif // Undo a previous lock operation. // Do this by flushing the cache, which is defined to clear the lock bit. #ifndef HAL_DCACHE_UNLOCK_DEFINED #define HAL_DCACHE_UNLOCK(_base_, _size_) \ HAL_DCACHE_FLUSH( _base_, _size_ ) #endif // Unlock entire cache #ifndef HAL_DCACHE_UNLOCK_ALL_DEFINED #define HAL_DCACHE_UNLOCK_ALL() \ HAL_DCACHE_INVALIDATE_ALL() #endif //----------------------------------------------------------------------------- // Data cache line control // Allocate cache lines for the given address range without reading its // contents from memory. //#define HAL_DCACHE_ALLOCATE( _base_ , _size_ ) // Write dirty cache lines to memory and invalidate the cache entries // for the given address range. // This uses the hit-writeback-invalidate cache operation. #ifndef HAL_DCACHE_FLUSH_DEFINED #define HAL_DCACHE_FLUSH( _base_ , _asize_ ) \ { \ register CYG_ADDRESS _baddr_ = (CYG_ADDRESS)(_base_); \ register CYG_ADDRESS _addr_ = (CYG_ADDRESS)(_base_); \ register CYG_WORD _size_ = (_asize_); \ register CYG_WORD _state_; \ HAL_DCACHE_IS_ENABLED( _state_ ); \ if( _state_ ) \ for( ; _addr_ <= _baddr_+_size_; _addr_ += HAL_DCACHE_LINE_SIZE ) \ { asm volatile ("cache 0x15,0(%0)" : : "r"(_addr_) ); } \ } #endif // Invalidate cache lines in the given range without writing to memory. // This uses the hit-invalidate cache operation. #ifndef HAL_DCACHE_INVALIDATE_DEFINED #define HAL_DCACHE_INVALIDATE( _base_ , _asize_ ) \ { \ register CYG_ADDRESS _baddr_ = (CYG_ADDRESS)(_base_); \ register CYG_ADDRESS _addr_ = (CYG_ADDRESS)(_base_); \ register CYG_WORD _size_ = (_asize_); \ register CYG_WORD _state_; \ HAL_DCACHE_IS_ENABLED( _state_ ); \ if( _state_ ) \ for( ; _addr_ <= _baddr_+_size_; _addr_ += HAL_DCACHE_LINE_SIZE ) \ { asm volatile ("cache 0x11,0(%0)" : : "r"(_addr_) ); } \ } #endif // Write dirty cache lines to memory for the given address range. // This uses the hit-writeback cache operation. #ifndef HAL_DCACHE_STORE_DEFINED #define HAL_DCACHE_STORE( _base_ , _asize_ ) \ { \ register CYG_ADDRESS _baddr_ = (CYG_ADDRESS)(_base_); \ register CYG_ADDRESS _addr_ = (CYG_ADDRESS)(_base_); \ register CYG_WORD _size_ = (_asize_); \ register CYG_WORD _state_; \ HAL_DCACHE_IS_ENABLED( _state_ ); \ if( _state_ ) \ for( ; _addr_ <= _baddr_+_size_; _addr_ += HAL_DCACHE_LINE_SIZE ) \ { asm volatile ("cache 0x19,0(%0)" : : "r"(_addr_) ); } \ } #endif // Preread the given range into the cache with the intention of reading // from it later. //#define HAL_DCACHE_READ_HINT( _base_ , _size_ ) // Preread the given range into the cache with the intention of writing // to it later. //#define HAL_DCACHE_WRITE_HINT( _base_ , _size_ ) // Allocate and zero the cache lines associated with the given range. //#define HAL_DCACHE_ZERO( _base_ , _size_ ) //----------------------------------------------------------------------------- // Global control of Instruction cache // Enable the instruction cache // There is no default mechanism for enabling or disabling the caches. #ifndef HAL_ICACHE_ENABLE_DEFINED #define HAL_ICACHE_ENABLE() #endif // Disable the instruction cache #ifndef HAL_ICACHE_DISABLE_DEFINED #define HAL_ICACHE_DISABLE() #endif #ifndef HAL_ICACHE_IS_ENABLED_DEFINED #define HAL_ICACHE_IS_ENABLED(_state_) (_state_) = 1; #endif // Invalidate the entire cache // This uses the index-invalidate cache operation. #ifndef HAL_ICACHE_INVALIDATE_ALL_DEFINED #define HAL_ICACHE_INVALIDATE_ALL() \ { \ register CYG_ADDRESS _baddr_ = 0x80000000; \ register CYG_ADDRESS _addr_ = 0x80000000; \ register CYG_WORD _state_; \ HAL_ICACHE_IS_ENABLED( _state_ ); \ if( _state_ ) \ for( ; _addr_ < _baddr_+HAL_ICACHE_SIZE; _addr_ += HAL_ICACHE_LINE_SIZE ) \ { asm volatile ("cache 0x00,0(%0)" : : "r"(_addr_) ); } \ } #endif // Synchronize the contents of the cache with memory. // Simply force the cache to reload. #ifndef HAL_ICACHE_SYNC_DEFINED #define HAL_ICACHE_SYNC() HAL_ICACHE_INVALIDATE_ALL() #endif // Set the instruction cache refill burst size //#define HAL_ICACHE_BURST_SIZE(_size_) // Load the contents of the given address range into the instruction cache // and then lock the cache so that it stays there. // This uses the fetch-and-lock cache operation. #ifndef HAL_ICACHE_LOCK_DEFINED #define HAL_ICACHE_LOCK(_base_, _asize_) \ CYG_MACRO_START \ register CYG_ADDRESS _baddr_ = (CYG_ADDRESS)(_base_); \ register CYG_ADDRESS _addr_ = (CYG_ADDRESS)(_base_); \ register CYG_WORD _size_ = (_asize_); \ register CYG_WORD _state_; \ HAL_ICACHE_IS_ENABLED( _state_ ); \ if( _state_ ) \ for( ; _addr_ <= _baddr_+_size_; _addr_ += HAL_DCACHE_LINE_SIZE ) \ { asm volatile ("cache 0x1c,0(%0)" : : "r"(_addr_) ); } \ CYG_MACRO_END #endif // Undo a previous lock operation. // Do this by invalidating the cache, which is defined to clear the lock bit. #ifndef HAL_ICACHE_UNLOCK_DEFINED #define HAL_ICACHE_UNLOCK(_base_, _size_) \ HAL_ICACHE_INVALIDATE( _base_, _size_ ) #endif // Unlock entire cache //#define HAL_ICACHE_UNLOCK_ALL() //----------------------------------------------------------------------------- // Instruction cache line control // Invalidate cache lines in the given range without writing to memory. // This uses the hit-invalidate cache operation. #ifndef HAL_ICACHE_INVALIDATE_DEFINED #define HAL_ICACHE_INVALIDATE( _base_ , _asize_ ) \ { \ register CYG_ADDRESS _baddr_ = (CYG_ADDRESS)(_base_); \ register CYG_ADDRESS _addr_ = (CYG_ADDRESS)(_base_); \ register CYG_WORD _size_ = (_asize_); \ register CYG_WORD _state_; \ HAL_ICACHE_IS_ENABLED( _state_ ); \ if( _state_ ) \ for( ; _addr_ <= _baddr_+_size_; _addr_ += HAL_ICACHE_LINE_SIZE ) \ { asm volatile ("cache 0x10,0(%0)" : : "r"(_addr_) ); } \ } #endif //----------------------------------------------------------------------------- // Check that a supported configuration has actually defined some macros. #ifndef HAL_DCACHE_ENABLE #error Unsupported MIPS configuration #endif //----------------------------------------------------------------------------- #endif // ifndef CYGONCE_HAL_CACHE_H // End of hal_cache.h
