[75] | 1 | /* |
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| 2 | * soclib_bdv.c - soclib simple block device driver implementation. |
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| 3 | * |
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[437] | 4 | * Author Alain Greiner (2016,2017,2018) |
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[75] | 5 | * |
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| 6 | * Copyright (c) UPMC Sorbonne Universites |
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| 7 | * |
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| 8 | * This file is part of ALMOS-MKH. |
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| 9 | * |
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| 10 | * ALMOS-MKH.is free software; you can redistribute it and/or modify it |
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| 11 | * under the terms of the GNU General Public License as published by |
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| 12 | * the Free Software Foundation; version 2.0 of the License. |
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| 13 | * |
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| 14 | * ALMOS-MKH.is distributed in the hope that it will be useful, but |
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| 15 | * WITHOUT ANY WARRANTY; without even the implied warranty of |
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| 16 | * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU |
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| 17 | * General Public License for more details. |
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| 18 | * |
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| 19 | * You should have received a copy of the GNU General Public License |
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| 20 | * along with ALMOS-MKH.; if not, write to the Free Software Foundation, |
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| 21 | * Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA |
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| 22 | */ |
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| 23 | |
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[451] | 24 | #include <soclib_bdv.h> |
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| 25 | #include <hal_kernel_types.h> |
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[75] | 26 | #include <chdev.h> |
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| 27 | #include <dev_ioc.h> |
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[265] | 28 | #include <printk.h> |
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[75] | 29 | #include <thread.h> |
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| 30 | |
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| 31 | /////////////////////////////////////// |
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| 32 | void soclib_bdv_init( chdev_t * chdev ) |
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| 33 | { |
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| 34 | // get extended pointer on SOCLIB_BDV peripheral base address |
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| 35 | xptr_t bdv_xp = chdev->base; |
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| 36 | |
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[211] | 37 | // set driver specific fields |
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| 38 | chdev->cmd = &soclib_bdv_cmd; |
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| 39 | chdev->isr = &soclib_bdv_isr; |
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| 40 | |
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[75] | 41 | // get hardware device cluster and local pointer |
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| 42 | cxy_t bdv_cxy = GET_CXY( bdv_xp ); |
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| 43 | uint32_t * bdv_ptr = (uint32_t *)GET_PTR( bdv_xp ); |
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| 44 | |
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| 45 | // get block_size and block_count |
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[570] | 46 | uint32_t block_size = hal_remote_l32( XPTR( bdv_cxy , bdv_ptr + BDV_BLOCK_SIZE_REG ) ); |
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| 47 | uint32_t block_count = hal_remote_l32( XPTR( bdv_cxy , bdv_ptr + BDV_SIZE_REG ) ); |
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[75] | 48 | |
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| 49 | // set IOC device descriptor extension |
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| 50 | chdev->ext.ioc.size = block_size; |
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| 51 | chdev->ext.ioc.count = block_count; |
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| 52 | |
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| 53 | } // end soclib_bdv_init() |
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| 54 | |
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| 55 | |
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| 56 | ////////////////////////////////////////////////////////////// |
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| 57 | void __attribute__ ((noinline)) soclib_bdv_cmd( xptr_t th_xp ) |
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| 58 | { |
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[279] | 59 | uint32_t cmd_type; // IOC_READ / IOC_WRITE / IOC_SYNC_READ |
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| 60 | uint32_t lba; |
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| 61 | uint32_t count; |
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| 62 | xptr_t buf_xp; |
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| 63 | xptr_t ioc_xp; |
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[75] | 64 | |
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| 65 | // get client thread cluster and local pointer |
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| 66 | cxy_t th_cxy = GET_CXY( th_xp ); |
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[440] | 67 | thread_t * th_ptr = GET_PTR( th_xp ); |
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[75] | 68 | |
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| 69 | // get command arguments and extended pointer on IOC device |
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[570] | 70 | cmd_type = hal_remote_l32 ( XPTR( th_cxy , &th_ptr->ioc_cmd.type ) ); |
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| 71 | lba = hal_remote_l32 ( XPTR( th_cxy , &th_ptr->ioc_cmd.lba ) ); |
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| 72 | count = hal_remote_l32 ( XPTR( th_cxy , &th_ptr->ioc_cmd.count ) ); |
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| 73 | buf_xp = (xptr_t)hal_remote_l64( XPTR( th_cxy , &th_ptr->ioc_cmd.buf_xp ) ); |
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| 74 | ioc_xp = (xptr_t)hal_remote_l64( XPTR( th_cxy , &th_ptr->ioc_cmd.dev_xp ) ); |
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[75] | 75 | |
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[438] | 76 | #if DEBUG_HAL_IOC_RX |
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[437] | 77 | uint32_t cycle = (uint32_t)hal_get_cycles(); |
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[438] | 78 | if( (DEBUG_HAL_IOC_RX < cycle) && (cmd_type != IOC_WRITE ) ) |
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[437] | 79 | printk("\n[DBG] %s : thread %x enter for RX / cycle %d\n", |
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| 80 | __FUNCTION__ , CURRENT_THREAD , cycle ); |
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| 81 | #endif |
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| 82 | |
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[438] | 83 | #if DEBUG_HAL_IOC_TX |
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[437] | 84 | uint32_t cycle = (uint32_t)hal_get_cycles(); |
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[438] | 85 | if( (DEBUG_HAL_IOC_TX < cycle) && (cmd_type == IOC_WRITE) ) |
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[437] | 86 | printk("\n[DBG] %s : thread %x enter for TX / cycle %d\n", |
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| 87 | __FUNCTION__ , CURRENT_THREAD , cycle ); |
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| 88 | #endif |
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| 89 | |
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[75] | 90 | // get IOC device cluster and local pointer |
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[279] | 91 | cxy_t ioc_cxy = GET_CXY( ioc_xp ); |
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[440] | 92 | chdev_t * ioc_ptr = GET_PTR( ioc_xp ); |
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[75] | 93 | |
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[440] | 94 | // get cluster and pointers for SOCLIB-BDV peripheral segment base |
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[570] | 95 | xptr_t seg_xp = (xptr_t)hal_remote_l64( XPTR( ioc_cxy , &ioc_ptr->base ) ); |
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[440] | 96 | cxy_t seg_cxy = GET_CXY( seg_xp ); |
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| 97 | uint32_t * seg_ptr = GET_PTR( seg_xp ); |
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[75] | 98 | |
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| 99 | // split buffer address in two 32 bits words |
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| 100 | uint32_t buf_lsb = (uint32_t)(buf_xp); |
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| 101 | uint32_t buf_msb = (uint32_t)(buf_xp>>32); |
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| 102 | |
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| 103 | // set operation |
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| 104 | uint32_t op; |
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| 105 | if( cmd_type == IOC_WRITE ) op = BDV_OP_WRITE; |
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| 106 | else op = BDV_OP_READ; |
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| 107 | |
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| 108 | // set SOCLIB_BDV registers to start one I/O operation |
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[570] | 109 | hal_remote_s32( XPTR( seg_cxy , seg_ptr + BDV_IRQ_ENABLE_REG ) , 1 ); |
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| 110 | hal_remote_s32( XPTR( seg_cxy , seg_ptr + BDV_BUFFER_REG ) , buf_lsb ); |
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| 111 | hal_remote_s32( XPTR( seg_cxy , seg_ptr + BDV_BUFFER_EXT_REG ) , buf_msb ); |
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| 112 | hal_remote_s32( XPTR( seg_cxy , seg_ptr + BDV_LBA_REG ) , lba ); |
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| 113 | hal_remote_s32( XPTR( seg_cxy , seg_ptr + BDV_COUNT_REG ) , count ); |
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| 114 | hal_remote_s32( XPTR( seg_cxy , seg_ptr + BDV_OP_REG ) , op ); |
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[75] | 115 | |
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| 116 | // waiting policy depends on the command type |
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[407] | 117 | // - for IOC_READ / IOC_WRITE commands, this function is called by the server thread |
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| 118 | // - for IOC_SYNC_READ command, this function is directly called by the client thread |
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[75] | 119 | |
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[407] | 120 | if( cmd_type == IOC_SYNC_READ ) // status polling policy |
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[75] | 121 | { |
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| 122 | uint32_t status; |
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| 123 | while (1) |
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| 124 | { |
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[570] | 125 | status = hal_remote_l32( XPTR( seg_cxy , seg_ptr + BDV_STATUS_REG ) ); |
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[75] | 126 | |
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| 127 | if( status == BDV_READ_SUCCESS ) // successfully completed |
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| 128 | { |
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[570] | 129 | hal_remote_s32( XPTR( th_cxy , &th_ptr->ioc_cmd.error ) , 0 ); |
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[75] | 130 | break; |
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| 131 | } |
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| 132 | else if( status == BDV_BUSY ) // non completed |
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| 133 | { |
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| 134 | continue; |
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| 135 | } |
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| 136 | else // error reported |
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| 137 | { |
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[570] | 138 | hal_remote_s32( XPTR( th_cxy , &th_ptr->ioc_cmd.error ) , 1 ); |
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[75] | 139 | break; |
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| 140 | } |
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| 141 | } |
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| 142 | } |
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| 143 | else // descheduling + IRQ policy |
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| 144 | { |
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[436] | 145 | thread_block( XPTR( local_cxy , CURRENT_THREAD ) , THREAD_BLOCKED_ISR ); |
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[408] | 146 | sched_yield("blocked on ISR"); |
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[407] | 147 | |
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| 148 | // the IO operation status is reported in the command by the ISR |
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[75] | 149 | } |
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| 150 | |
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[438] | 151 | #if DEBUG_HAL_IOC_RX |
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[437] | 152 | cycle = (uint32_t)hal_get_cycles(); |
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[438] | 153 | if( (DEBUG_HAL_IOC_RX < cycle) && (cmd_type != TXT_WRITE) ) |
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[437] | 154 | printk("\n[DBG] %s : thread %x exit after RX / cycle %d\n", |
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| 155 | __FUNCTION__ , CURRENT_THREAD , cycle ); |
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| 156 | #endif |
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| 157 | |
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[438] | 158 | #if DEBUG_HAL_IOC_TX |
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[437] | 159 | cycle = (uint32_t)hal_get_cycles(); |
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[438] | 160 | if( (DEBUG_HAL_IOC_TX < cycle) && (cmd_type == TXT_WRITE) ) |
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[437] | 161 | printk("\n[DBG] %s : thread %x exit after TX / cycle %d\n", |
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| 162 | __FUNCTION__ , CURRENT_THREAD , cycle ); |
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| 163 | #endif |
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| 164 | |
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[75] | 165 | } // end soclib_bdv_cmd() |
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| 166 | |
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| 167 | |
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| 168 | ///////////////////////////////////////////////////////////////// |
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| 169 | void __attribute__ ((noinline)) soclib_bdv_isr( chdev_t * chdev ) |
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| 170 | { |
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[437] | 171 | error_t error = 0; |
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| 172 | |
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[75] | 173 | // get extended pointer on client thread |
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| 174 | xptr_t root = XPTR( local_cxy , &chdev->wait_root ); |
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[570] | 175 | xptr_t client_xp = XLIST_FIRST( root , thread_t , wait_list ); |
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[75] | 176 | |
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| 177 | // get extended pointer on server thread |
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| 178 | xptr_t server_xp = XPTR( local_cxy , &chdev->server ); |
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| 179 | |
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| 180 | // get client thread cluster and local pointer |
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| 181 | cxy_t client_cxy = GET_CXY( client_xp ); |
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| 182 | thread_t * client_ptr = (thread_t *)GET_PTR( client_xp ); |
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| 183 | |
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[437] | 184 | // get command type |
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[570] | 185 | uint32_t cmd_type = hal_remote_l32( XPTR( client_cxy , &client_ptr->ioc_cmd.type ) ); |
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[437] | 186 | |
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[75] | 187 | // get SOCLIB_BDV device cluster and local pointer |
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| 188 | cxy_t bdv_cxy = GET_CXY( chdev->base ); |
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| 189 | uint32_t * bdv_ptr = (uint32_t *)GET_PTR( chdev->base ); |
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| 190 | |
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| 191 | // get BDV status register and acknowledge IRQ |
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[570] | 192 | uint32_t status = hal_remote_l32( XPTR( bdv_cxy , bdv_ptr + BDV_STATUS_REG ) ); |
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[75] | 193 | |
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[437] | 194 | if( cmd_type == IOC_READ ) |
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[75] | 195 | { |
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[437] | 196 | error = (status != BDV_READ_SUCCESS); |
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| 197 | |
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[438] | 198 | #if DEBUG_HAL_IOC_RX |
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[437] | 199 | uint32_t cycle = (uint32_t)hal_get_cycles(); |
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[438] | 200 | if( DEBUG_HAL_IOC_RX < cycle ) |
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[437] | 201 | printk("\n[DBG] %s : IOC_IRQ / RX transfer / client %x / server %x / cycle %d\n", |
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| 202 | __FUNCTION__, client_ptr , chdev->server , cycle ); |
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| 203 | #endif |
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| 204 | |
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[75] | 205 | } |
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[437] | 206 | else if( cmd_type == IOC_WRITE ) |
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[75] | 207 | { |
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[437] | 208 | error = (status != BDV_WRITE_SUCCESS); |
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| 209 | |
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[438] | 210 | #if DEBUG_HAL_IOC_TX |
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[437] | 211 | uint32_t cycle = (uint32_t)hal_get_cycles(); |
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[438] | 212 | if( DEBUG_HAL_IOC_TX < cycle ) |
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[437] | 213 | printk("\n[DBG] %s : IOC_IRQ / RX transfer / client %x / server %x / cycle %d\n", |
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| 214 | __FUNCTION__, client_ptr , chdev->server , cycle ); |
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| 215 | #endif |
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| 216 | |
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[75] | 217 | } |
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[437] | 218 | else |
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| 219 | { |
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[492] | 220 | assert( false , "IOC_SYNC_READ should not use IRQ" ); |
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[437] | 221 | } |
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[75] | 222 | |
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[437] | 223 | // set operation status in command |
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[570] | 224 | hal_remote_s32( XPTR( client_cxy , &client_ptr->ioc_cmd.error ) , error ); |
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[437] | 225 | |
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[75] | 226 | // unblock server thread |
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[436] | 227 | thread_unblock( server_xp , THREAD_BLOCKED_ISR ); |
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[75] | 228 | |
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| 229 | } // end soclib_bdv_isr() |
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| 230 | |
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| 231 | |
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| 232 | |
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