[283] | 1 | /////////////////////////////////////////////////////////////////////////////////// |
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[284] | 2 | // File : bdv_driver.c |
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| 3 | // Date : 23/05/2013 |
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[529] | 4 | // Author : alain greiner cesar fuguet |
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[283] | 5 | // Copyright (c) UPMC-LIP6 |
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| 6 | /////////////////////////////////////////////////////////////////////////////////// |
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[295] | 7 | // Implementation notes: |
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[529] | 8 | // All accesses to BDV registers are done by the two |
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| 9 | // _bdv_set_register() and _bdv_get_register() low-level functions, |
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| 10 | // that are handling virtual / physical extended addressing. |
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[283] | 11 | /////////////////////////////////////////////////////////////////////////////////// |
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| 12 | |
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| 13 | #include <giet_config.h> |
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[320] | 14 | #include <hard_config.h> |
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[295] | 15 | #include <bdv_driver.h> |
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| 16 | #include <xcu_driver.h> |
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[545] | 17 | #include <mmc_driver.h> |
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[529] | 18 | #include <kernel_locks.h> |
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[283] | 19 | #include <utils.h> |
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[456] | 20 | #include <tty0.h> |
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[283] | 21 | #include <ctx_handler.h> |
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[529] | 22 | #include <irq_handler.h> |
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[283] | 23 | |
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| 24 | /////////////////////////////////////////////////////////////////////////////// |
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[529] | 25 | // Global variables |
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[295] | 26 | /////////////////////////////////////////////////////////////////////////////// |
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| 27 | |
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[529] | 28 | // lock protecting single channel BDV peripheral |
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[496] | 29 | __attribute__((section(".kdata"))) |
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[456] | 30 | spin_lock_t _bdv_lock __attribute__((aligned(64))); |
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[496] | 31 | |
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[529] | 32 | // global index of the waiting task (only used in descheduling mode) |
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[496] | 33 | __attribute__((section(".kdata"))) |
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[529] | 34 | unsigned int _bdv_gtid; |
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[496] | 35 | |
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[529] | 36 | // BDV peripheral status (only used in descheduling mode) |
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[496] | 37 | __attribute__((section(".kdata"))) |
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[529] | 38 | unsigned int _bdv_status; |
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[295] | 39 | |
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| 40 | /////////////////////////////////////////////////////////////////////////////// |
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| 41 | // This low_level function returns the value contained in register (index). |
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| 42 | /////////////////////////////////////////////////////////////////////////////// |
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| 43 | unsigned int _bdv_get_register( unsigned int index ) |
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| 44 | { |
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[320] | 45 | unsigned int* vaddr = (unsigned int*)SEG_IOC_BASE + index; |
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[295] | 46 | return _io_extended_read( vaddr ); |
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| 47 | } |
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| 48 | |
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| 49 | /////////////////////////////////////////////////////////////////////////////// |
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| 50 | // This low-level function set a new value in register (index). |
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| 51 | /////////////////////////////////////////////////////////////////////////////// |
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| 52 | void _bdv_set_register( unsigned int index, |
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| 53 | unsigned int value ) |
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| 54 | { |
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[320] | 55 | unsigned int* vaddr = (unsigned int*)SEG_IOC_BASE + index; |
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[295] | 56 | _io_extended_write( vaddr, value ); |
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| 57 | } |
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| 58 | |
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| 59 | /////////////////////////////////////////////////////////////////////////////// |
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[529] | 60 | // Extern functions |
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[283] | 61 | /////////////////////////////////////////////////////////////////////////////// |
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[529] | 62 | |
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| 63 | ///////////////////////////////////////////////////// |
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| 64 | unsigned int _bdv_access( unsigned int use_irq, |
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| 65 | unsigned int to_mem, |
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| 66 | unsigned int lba, |
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| 67 | unsigned long long buf_paddr, |
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| 68 | unsigned int count) |
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[283] | 69 | { |
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[426] | 70 | unsigned int procid = _get_procid(); |
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| 71 | unsigned int x = procid >> (Y_WIDTH + P_WIDTH); |
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| 72 | unsigned int y = (procid >> P_WIDTH) & ((1<<Y_WIDTH) - 1); |
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| 73 | unsigned int p = procid & ((1<<P_WIDTH)-1); |
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[283] | 74 | |
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[593] | 75 | #if GIET_DEBUG_IOC |
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| 76 | if ( _get_proctime() > GIET_DEBUG_IOC ) |
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[529] | 77 | _printf("\n[BDV DEBUG] P[%d,%d,%d] enters _bdv_access at cycle %d\n" |
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| 78 | " use_irq = %d / to_mem = %d / lba = %x / paddr = %l / count = %d\n", |
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| 79 | x , y , p , _get_proctime() , use_irq , to_mem , lba , buf_paddr, count ); |
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[283] | 80 | #endif |
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| 81 | |
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[529] | 82 | // check buffer alignment |
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[593] | 83 | if( buf_paddr & 0x3F ) |
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[529] | 84 | { |
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[593] | 85 | _printf("\n[BDV ERROR] in _bdv_access() : buffer not cache ligne aligned\n"); |
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[529] | 86 | return -1; |
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| 87 | } |
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[283] | 88 | |
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[529] | 89 | unsigned int error; |
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| 90 | unsigned int status; |
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| 91 | |
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[295] | 92 | // get the lock protecting BDV |
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[469] | 93 | _spin_lock_acquire( &_bdv_lock ); |
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[283] | 94 | |
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[295] | 95 | // set device registers |
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| 96 | _bdv_set_register( BLOCK_DEVICE_BUFFER , (unsigned int)buf_paddr ); |
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| 97 | _bdv_set_register( BLOCK_DEVICE_BUFFER_EXT, (unsigned int)(buf_paddr>>32) ); |
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| 98 | _bdv_set_register( BLOCK_DEVICE_COUNT , count ); |
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| 99 | _bdv_set_register( BLOCK_DEVICE_LBA , lba ); |
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[283] | 100 | |
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[545] | 101 | #if USE_IOB // software L2/L3 cache coherence |
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| 102 | if ( to_mem ) _mmc_inval( buf_paddr, count<<9 ); |
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| 103 | else _mmc_sync( buf_paddr, count<<9 ); |
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| 104 | #endif // end software L2/L3 cache coherence |
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| 105 | |
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[529] | 106 | ///////////////////////////////////////////////////////////////////// |
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| 107 | // In synchronous mode, we launch transfer, |
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| 108 | // and poll the BDV_STATUS register until completion. |
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| 109 | ///////////////////////////////////////////////////////////////////// |
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| 110 | if ( use_irq == 0 ) |
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[283] | 111 | { |
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| 112 | // Launch transfert |
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[295] | 113 | if (to_mem == 0) _bdv_set_register( BLOCK_DEVICE_OP, BLOCK_DEVICE_WRITE ); |
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| 114 | else _bdv_set_register( BLOCK_DEVICE_OP, BLOCK_DEVICE_READ ); |
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[283] | 115 | |
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[593] | 116 | #if GIET_DEBUG_IOC |
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| 117 | if ( _get_proctime() > GIET_DEBUG_IOC ) |
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[529] | 118 | _printf("\n[BDV DEBUG] _bdv_access() : P[%d,%d,%d] launch transfer" |
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| 119 | " in polling mode at cycle %d\n", |
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| 120 | x , y , p , _get_proctime() ); |
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[333] | 121 | #endif |
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[529] | 122 | |
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[289] | 123 | do |
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[283] | 124 | { |
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[295] | 125 | status = _bdv_get_register( BLOCK_DEVICE_STATUS ); |
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[283] | 126 | |
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[593] | 127 | #if GIET_DEBUG_IOC |
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| 128 | if ( _get_proctime() > GIET_DEBUG_IOC ) |
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[529] | 129 | _printf("\n[BDV DEBUG] _bdv_access() : P[%d,%d,%d] wait on BDV_STATUS ...\n", |
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| 130 | x , y , p ); |
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[283] | 131 | #endif |
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[289] | 132 | } |
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| 133 | while( (status != BLOCK_DEVICE_READ_SUCCESS) && |
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| 134 | (status != BLOCK_DEVICE_READ_ERROR) && |
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| 135 | (status != BLOCK_DEVICE_WRITE_SUCCESS) && |
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[295] | 136 | (status != BLOCK_DEVICE_WRITE_ERROR) ); // busy waiting |
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[283] | 137 | |
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| 138 | // analyse status |
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| 139 | error = ( (status == BLOCK_DEVICE_READ_ERROR) || |
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| 140 | (status == BLOCK_DEVICE_WRITE_ERROR) ); |
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[529] | 141 | } |
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[283] | 142 | |
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[529] | 143 | ///////////////////////////////////////////////////////////////// |
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| 144 | // in descheduling mode, we deschedule the task |
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| 145 | // and use an interrupt to reschedule the task. |
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[295] | 146 | // We need a critical section, because we must reset the RUN bit |
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[529] | 147 | // before to launch the transfer, and we don't want to be |
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| 148 | // descheduled between these two operations. |
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| 149 | ///////////////////////////////////////////////////////////////// |
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[295] | 150 | else |
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[283] | 151 | { |
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[295] | 152 | unsigned int save_sr; |
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| 153 | unsigned int ltid = _get_current_task_id(); |
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[283] | 154 | |
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[529] | 155 | // activates BDV interrupt |
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[295] | 156 | _bdv_set_register( BLOCK_DEVICE_IRQ_ENABLE, 1 ); |
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| 157 | |
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[545] | 158 | // set _bdv_gtid |
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| 159 | _bdv_gtid = (procid<<16) + ltid; |
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| 160 | |
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[295] | 161 | // enters critical section |
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| 162 | _it_disable( &save_sr ); |
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[320] | 163 | |
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[545] | 164 | // reset runnable |
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[426] | 165 | _set_task_slot( x, y, p, ltid, CTX_RUN_ID, 0 ); |
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[283] | 166 | |
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[295] | 167 | // launch transfer |
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| 168 | if (to_mem == 0) _bdv_set_register( BLOCK_DEVICE_OP, BLOCK_DEVICE_WRITE ); |
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| 169 | else _bdv_set_register( BLOCK_DEVICE_OP, BLOCK_DEVICE_READ ); |
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[283] | 170 | |
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[593] | 171 | #if GIET_DEBUG_IOC |
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| 172 | if ( _get_proctime() > GIET_DEBUG_IOC ) |
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[529] | 173 | _printf("\n[BDV DEBUG] _bdv_access() : P[%d,%d,%d] launch transfer" |
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| 174 | " in descheduling mode at cycle %d\n", |
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| 175 | x , y , p , _get_proctime() ); |
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[333] | 176 | #endif |
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[437] | 177 | |
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[283] | 178 | // deschedule task |
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| 179 | _ctx_switch(); |
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| 180 | |
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[593] | 181 | #if GIET_DEBUG_IOC |
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| 182 | if ( _get_proctime() > GIET_DEBUG_IOC ) |
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[529] | 183 | _printf("\n[BDV DEBUG] _bdv_access() : P[%d,%d,%d] resume execution at cycle %d\n", |
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| 184 | x , y , p , _get_proctime() ); |
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[426] | 185 | #endif |
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[529] | 186 | |
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[295] | 187 | // restore SR |
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| 188 | _it_restore( &save_sr ); |
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| 189 | |
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[283] | 190 | // analyse status |
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[295] | 191 | error = ( (_bdv_status == BLOCK_DEVICE_READ_ERROR) || |
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| 192 | (_bdv_status == BLOCK_DEVICE_WRITE_ERROR) ); |
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[283] | 193 | } |
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| 194 | |
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[529] | 195 | // release lock |
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| 196 | _spin_lock_release( &_bdv_lock ); |
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| 197 | |
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[593] | 198 | #if GIET_DEBUG_IOC |
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| 199 | if ( _get_proctime() > GIET_DEBUG_IOC ) |
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[529] | 200 | _printf("\n[BDV DEBUG] _bdv_access() : P[%d,%d,%d] exit at cycle %d\n", |
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| 201 | x , y , p , _get_proctime() ); |
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[283] | 202 | #endif |
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| 203 | |
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| 204 | return error; |
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| 205 | } // end _bdv_access() |
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| 206 | |
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[437] | 207 | //////////////////////// |
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[295] | 208 | unsigned int _bdv_init() |
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[283] | 209 | { |
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[295] | 210 | if ( _bdv_get_register( BLOCK_DEVICE_BLOCK_SIZE ) != 512 ) |
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[283] | 211 | { |
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[437] | 212 | _puts("\n[GIET ERROR] in _bdv_init() : block size must be 512 bytes\n"); |
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[283] | 213 | return 1; |
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| 214 | } |
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| 215 | |
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[295] | 216 | _bdv_set_register( BLOCK_DEVICE_IRQ_ENABLE, 0 ); |
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[283] | 217 | return 0; |
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| 218 | } |
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| 219 | |
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[437] | 220 | ///////////////////////////////////// |
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[295] | 221 | void _bdv_isr( unsigned int irq_type, // HWI / WTI |
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| 222 | unsigned int irq_id, // index returned by ICU |
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| 223 | unsigned int channel ) // unused |
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| 224 | { |
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[529] | 225 | // get BDV status and reset BDV_IRQ |
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[297] | 226 | unsigned int status = _bdv_get_register( BLOCK_DEVICE_STATUS ); |
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[295] | 227 | |
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[297] | 228 | // check status: does nothing if IDLE or BUSY |
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| 229 | if ( (status == BLOCK_DEVICE_IDLE) || |
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| 230 | (status == BLOCK_DEVICE_BUSY) ) return; |
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| 231 | |
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[529] | 232 | // register status in global variable |
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| 233 | _bdv_status = status; |
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[295] | 234 | |
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| 235 | // identify task waiting on BDV |
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[426] | 236 | unsigned int remote_procid = _bdv_gtid>>16; |
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| 237 | unsigned int ltid = _bdv_gtid & 0xFFFF; |
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| 238 | unsigned int remote_cluster = remote_procid >> P_WIDTH; |
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| 239 | unsigned int remote_x = remote_cluster >> Y_WIDTH; |
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| 240 | unsigned int remote_y = remote_cluster & ((1<<Y_WIDTH)-1); |
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| 241 | unsigned int remote_p = remote_procid & ((1<<P_WIDTH)-1); |
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[295] | 242 | |
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[297] | 243 | // re-activates sleeping task |
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[426] | 244 | _set_task_slot( remote_x, |
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| 245 | remote_y, |
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| 246 | remote_p, |
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| 247 | ltid, |
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[297] | 248 | CTX_RUN_ID, // CTX_RUN slot |
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[529] | 249 | 1 ); // running value |
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[297] | 250 | |
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[529] | 251 | // send a WAKUP WTI to processor running the sleeping task |
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[426] | 252 | _xcu_send_wti( remote_cluster, |
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| 253 | remote_p, |
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[529] | 254 | 0 ); // don't force context switch |
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[297] | 255 | |
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[593] | 256 | #if GIET_DEBUG_IOC |
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[426] | 257 | unsigned int procid = _get_procid(); |
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| 258 | unsigned int x = procid >> (Y_WIDTH + P_WIDTH); |
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| 259 | unsigned int y = (procid >> P_WIDTH) & ((1<<Y_WIDTH)-1); |
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| 260 | unsigned int p = procid & ((1<<P_WIDTH)-1); |
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[593] | 261 | if ( _get_proctime() > GIET_DEBUG_IOC ) |
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[563] | 262 | _printf("\n[BDV DEBUG] Processor[%d,%d,%d] enters _bdv_isr() at cycle %d\n" |
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[529] | 263 | " for task %d running on P[%d,%d,%d] / bdv_status = %x\n", |
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| 264 | x , y , p , _get_proctime() , |
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| 265 | ltid , remote_x , remote_y , remote_p , status ); |
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[295] | 266 | #endif |
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| 267 | |
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[529] | 268 | } // end bdv_isr() |
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[295] | 269 | |
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| 270 | |
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[283] | 271 | // Local Variables: |
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| 272 | // tab-width: 4 |
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| 273 | // c-basic-offset: 4 |
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| 274 | // c-file-offsets:((innamespace . 0)(inline-open . 0)) |
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| 275 | // indent-tabs-mode: nil |
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| 276 | // End: |
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| 277 | // vim: filetype=c:expandtab:shiftwidth=4:tabstop=4:softtabstop=4 |
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| 278 | |
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