Mercurial > ecos-v2_0-branch
view packages/hal/sparclite/sleb/current/include/hal_xpic.h @ 64:c38311975d4f ecos-sw-2000-01-28
Merge from eCos master repository on 2000-01-28-04:28:11-GMT
| author | jlarmour |
|---|---|
| date | Fri, 28 Jan 2000 04:59:39 +0000 |
| parents | 443894e2e912 |
| children | bf00f99aec69 |
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#ifndef CYGONCE_HAL_XPIC_H #define CYGONCE_HAL_XPIC_H //============================================================================= // // hal_xpic.h // // HAL eXternal Programmable Interrupt Controller support // //============================================================================= //####COPYRIGHTBEGIN#### // // ------------------------------------------- // The contents of this file are subject to the Red Hat 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 // 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): nickg, gthomas, hmt // Contributors: nickg, gthomas, hmt // Date: 1999-01-28 // Purpose: Define Interrupt support // Description: The macros defined here provide the HAL APIs for handling // an external interrupt controller, and which interrupt is // used for what. // // Usage: // #include <cyg/hal/hal_intr.h> // which includes this file // ... // // //####DESCRIPTIONEND#### // //============================================================================= #include <cyg/hal/hal_hwio.h> // HAL_SPARC_86940_READ/WRITE //----------------------------------------------------------------------------- // Interrupt controller access // // In the Fuitsu SPARClite Evaluation Boards, when the external IRC (86940) // is used (set Switch 1, position 8 (SW1#8)), interrupts are as follows: // // 15 : NMI Push Switch (SW7) // 14 : N_INT# Ethernet LAN Controller (MB86964) // 13 : EX_IRQ13 from expansion board, active HIGH // 12 : EX_IRQ12 from expansion board, active LOW // 11 : EX_IRQ11 from expansion board, active LOW // 10 : RRDY0 Serial CH0 receive ready signal // 9 : TRDY0 Serial CH0 transmit ready signal // 8 : TIMER1 Timer 1 output counter // 7 : RRDY1 Serial CH1 receive ready signal // 6 : TRDY1 Serial CH1 transmit ready signal // 5 : EX_IRQ5 from expansion board, active LOW // 4 : EX_IRQ4 from expansion board, active LOW // 3 : EX_IRQ3 from expansion board, active HIGH // 2 : EX_IRQ2 from expansion board, active LOW // 1 : TIMER2 Timer 2 output counter // The vector used by the Real time clock //#define CYG_VECTOR_RTC CYG_VECTOR_INTERRUPT_8 #define CYGNUM_HAL_INTERRUPT_RTC CYGNUM_HAL_VECTOR_INTERRUPT_8 #define HAL_SPARC_86940_REG_IRC_TRGM0 ( 0 * 4 ) #define HAL_SPARC_86940_REG_IRC_TRGM1 ( 1 * 4 ) #define HAL_SPARC_86940_REG_IRC_RQSNS ( 2 * 4 ) #define HAL_SPARC_86940_REG_IRC_RQCLR ( 3 * 4 ) #define HAL_SPARC_86940_REG_IRC_IMASK ( 4 * 4 ) #define HAL_SPARC_86940_REG_IRC_CLIRL ( 5 * 4 ) #define HAL_SPARC_86940_FLAG_CLIRL_CL (0x10) #define HAL_SPARC_86940_IRC_IMASK_READ( r ) \ HAL_SPARC_86940_READ( HAL_SPARC_86940_REG_IRC_IMASK, r ) #define HAL_SPARC_86940_IRC_IMASK_WRITE( v ) \ HAL_SPARC_86940_WRITE( HAL_SPARC_86940_REG_IRC_IMASK, v ) #define HAL_SPARC_86940_IRC_RQSNS_READ( r ) \ HAL_SPARC_86940_READ( HAL_SPARC_86940_REG_IRC_RQSNS, r ) #define HAL_SPARC_86940_IRC_RQCLR_WRITE( v ) \ HAL_SPARC_86940_WRITE( HAL_SPARC_86940_REG_IRC_RQCLR, v ) #define HAL_SPARC_86940_IRC_CLIRL_READ( r ) \ HAL_SPARC_86940_READ( HAL_SPARC_86940_REG_IRC_CLIRL, r ) #define HAL_SPARC_86940_IRC_CLIRL_WRITE( v ) \ HAL_SPARC_86940_WRITE( HAL_SPARC_86940_REG_IRC_CLIRL, v ) //----------------------------------------------------------------------------- #define HAL_INTERRUPT_MASK( _vector_ ) CYG_MACRO_START \ cyg_uint32 _traps_, _mask_; \ HAL_DISABLE_TRAPS( _traps_ ); \ HAL_SPARC_86940_IRC_IMASK_READ( _mask_ ); \ _mask_ |= (1 << (_vector_) ); \ HAL_SPARC_86940_IRC_IMASK_WRITE( _mask_ ); \ HAL_SPARC_86940_IRC_RQCLR_WRITE( (1 << (_vector_) ) ); \ HAL_SPARC_86940_IRC_CLIRL_WRITE( HAL_SPARC_86940_FLAG_CLIRL_CL ); \ HAL_RESTORE_INTERRUPTS( _traps_ ); \ CYG_MACRO_END #define HAL_INTERRUPT_UNMASK( _vector_ ) CYG_MACRO_START \ cyg_uint32 _traps_, _mask_; \ HAL_DISABLE_TRAPS( _traps_ ); \ HAL_SPARC_86940_IRC_IMASK_READ( _mask_ ); \ _mask_ &=~ (1 << (_vector_) ); \ HAL_SPARC_86940_IRC_IMASK_WRITE( _mask_ ); \ HAL_RESTORE_INTERRUPTS( _traps_ ); \ CYG_MACRO_END #define HAL_INTERRUPT_ACKNOWLEDGE( _vector_ ) CYG_MACRO_START \ cyg_uint32 _traps_; \ cyg_uint32 _req_, _irl_; \ HAL_DISABLE_TRAPS( _traps_ ); \ HAL_SPARC_86940_IRC_RQCLR_WRITE( (1 << (_vector_) ) ); \ do { \ HAL_SPARC_86940_IRC_CLIRL_WRITE( HAL_SPARC_86940_FLAG_CLIRL_CL ); \ HAL_SPARC_86940_IRC_RQSNS_READ( _req_ ); \ HAL_SPARC_86940_IRC_CLIRL_READ( _irl_ ); \ _req_ &= (1 << (_vector_)); /* if there really is a new intr */ \ _irl_ &= 0x0f; /* then get out - else poll until */ \ } while ( (!_req_) && (_irl_ == (_vector_)) ); /* no intr here */ \ HAL_RESTORE_INTERRUPTS( _traps_ ); \ CYG_MACRO_END // Set an interrupt source's sensitivity: // _level_ != 0 ? level-sensitive : edge-sensitive // _up_ != 0 ? high/up : low/down // SPARClite's 86940 has values as follows: // 0 : high level // 1 : low level // 2 : rising edge // 3 : falling edge // TRGM0 controls sources 15-8, TRGM1 sources 7-1. #define HAL_INTERRUPT_CONFIGURE( _vector_, _level_, _up_ ) CYG_MACRO_START \ int _reg_ = (8 > (_vector_)) ? HAL_SPARC_86940_REG_IRC_TRGM1 \ : HAL_SPARC_86940_REG_IRC_TRGM0; \ int _val_, _myvect_ = (_vector_); \ cyg_uint32 _traps_; \ HAL_DISABLE_TRAPS( _traps_ ); \ (_myvect_) &= 7; \ (_myvect_) <<= 1; \ HAL_SPARC_86940_READ( _reg_, _val_ ); \ _val_ &=~ (3 << (_myvect_)); \ _val_ |= ( ((_level_) ? 0 : 2) + ((_up_) ? 0 : 1) ) << (_myvect_); \ HAL_SPARC_86940_WRITE( _reg_, _val_ ); \ HAL_INTERRUPT_ACKNOWLEDGE( _vector_ ); \ HAL_RESTORE_INTERRUPTS( _traps_ ); \ CYG_MACRO_END // This is not a standard macro - platform dependent for debugging only: // o level, up tell you how this source was configured as above. // o hipri returns the number of the highest prio requesting interrupt // o mask tells you whether this source is masked off // o req tells you whether this source is requesting right now. #define HAL_INTERRUPT_QUERY_INFO( _vector_, _level_, _up_, \ _hipri_, _mask_, _req_ ) CYG_MACRO_START \ int _reg_ = (8 > (_vector_)) ? HAL_SPARC_86940_REG_IRC_TRGM1 \ : HAL_SPARC_86940_REG_IRC_TRGM0; \ int _val_, _myvect_ = (_vector_); \ HAL_SPARC_86940_IRC_IMASK_READ( _val_ ); \ _mask_ = (0 != ((1 << (_vector_)) & _val_ )); \ HAL_SPARC_86940_IRC_RQSNS_READ( _val_ ); \ _req_ = (0 != ((1 << (_vector_)) & _val_ )); \ HAL_SPARC_86940_IRC_CLIRL_READ( _hipri_ ); \ (_myvect_) &= 7; \ (_myvect_) <<= 1; \ HAL_SPARC_86940_READ( _reg_, _val_ ); \ _val_ >>= (_myvect_); \ (_level_) = !(_val_ & 2); \ (_up_) = !(_val_ & 1); \ CYG_MACRO_END // This may set the priority of a vector to a particular level: // SPARClite does not support this. #define HAL_INTERRUPT_SET_LEVEL( _vector_, _level_ ) /* nothing */ //----------------------------------------------------------------------------- #endif // ifndef CYGONCE_HAL_XPIC_H // End of hal_xpic.h
