| 1 | ////////////////////////////////////////////////////////////////////////////////// |
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| 2 | // File : ctx_handler.c |
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| 3 | // Date : 01/04/2012 |
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| 4 | // Authors : alain greiner & joel porquet |
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| 5 | // Copyright (c) UPMC-LIP6 |
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| 6 | ////////////////////////////////////////////////////////////////////////////////// |
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| 7 | |
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| 8 | #include <giet_config.h> |
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| 9 | #include <tim_driver.h> |
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| 10 | #include <xcu_driver.h> |
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| 11 | #include <tty_driver.h> |
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| 12 | #include <utils.h> |
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| 13 | #include <ctx_handler.h> |
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| 14 | #include <mapping_info.h> |
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| 15 | #include <sys_handler.h> |
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| 16 | |
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| 17 | extern void _task_switch(unsigned int *, unsigned int *); |
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| 18 | |
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| 19 | ///////////////////////////////////////////////////////////////////////////////// |
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| 20 | // This function performs a context switch between the running task |
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| 21 | // and another task, using a round-robin sheduling policy between all |
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| 22 | // tasks allocated to a given processor (static allocation). |
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| 23 | // It selects the next runable task to resume execution. |
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| 24 | // If the only runable task is the current task, return without context switch. |
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| 25 | // If there is no runable task, the scheduler switch to the default "idle" task. |
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| 26 | ///////////////////////////////////////////////////////////////////////////////// |
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| 27 | // Implementation note |
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| 28 | // The return address contained in $31 is saved in the current task context |
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| 29 | // (in the ctx[31] slot), and the function actually returns to the address |
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| 30 | // contained in the ctx[31] slot of the next task context. |
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| 31 | ///////////////////////////////////////////////////////////////////////////////// |
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| 32 | void _ctx_switch() |
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| 33 | { |
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| 34 | unsigned int gpid = _get_procid(); |
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| 35 | unsigned int cluster_xy = gpid / NB_PROCS_MAX; |
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| 36 | unsigned int lpid = gpid % NB_PROCS_MAX; |
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| 37 | |
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| 38 | // get scheduler address |
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| 39 | static_scheduler_t* psched = (static_scheduler_t*)_get_sched(); |
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| 40 | |
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| 41 | // get number of tasks allocated to scheduler |
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| 42 | unsigned int tasks = psched->tasks; |
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| 43 | |
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| 44 | // get current task index |
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| 45 | unsigned int curr_task_id = psched->current; |
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| 46 | |
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| 47 | // select the next task using a round-robin policy |
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| 48 | unsigned int next_task_id; |
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| 49 | unsigned int tid; |
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| 50 | unsigned int found = 0; |
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| 51 | |
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| 52 | for (tid = curr_task_id + 1; tid < curr_task_id + 1 + tasks; tid++) |
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| 53 | { |
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| 54 | next_task_id = tid % tasks; |
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| 55 | // test if the task is runable |
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| 56 | if ( psched->context[next_task_id][CTX_RUN_ID] ) |
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| 57 | { |
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| 58 | found = 1; |
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| 59 | break; |
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| 60 | } |
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| 61 | } |
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| 62 | |
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| 63 | // launch "idle" task if no runable task |
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| 64 | if (found == 0) |
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| 65 | { |
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| 66 | next_task_id = IDLE_TASK_INDEX; |
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| 67 | } |
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| 68 | |
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| 69 | #if GIET_DEBUG_SWITCH |
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| 70 | unsigned int x = cluster_xy >> Y_WIDTH; |
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| 71 | unsigned int y = cluster_xy & ((1<<Y_WIDTH)-1); |
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| 72 | |
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| 73 | _printf("\n[TASK SWITCH] (%d) -> (%d) on processor[%d,%d,%d] at cycle %d\n", |
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| 74 | curr_task_id, next_task_id, x, y , lpid, _get_proctime() ); |
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| 75 | #endif |
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| 76 | |
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| 77 | if (curr_task_id != next_task_id) // actual task switch required |
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| 78 | { |
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| 79 | unsigned int* curr_ctx_vaddr = &(psched->context[curr_task_id][0]); |
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| 80 | unsigned int* next_ctx_vaddr = &(psched->context[next_task_id][0]); |
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| 81 | |
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| 82 | // reset timer counter. In each cluster, |
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| 83 | // the NB_PROCS_MAX timers are system timers (TICK) |
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| 84 | |
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| 85 | #if USE_XICU |
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| 86 | _xcu_timer_reset_cpt( cluster_xy, lpid ); |
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| 87 | #else |
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| 88 | _timer_reset_cpt( cluster_xy, lpid); |
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| 89 | #endif |
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| 90 | |
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| 91 | // set current task index |
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| 92 | psched->current = next_task_id; |
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| 93 | |
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| 94 | // makes context switch |
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| 95 | _task_switch(curr_ctx_vaddr, next_ctx_vaddr); |
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| 96 | } |
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| 97 | } //end _ctx_switch() |
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| 98 | |
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| 99 | ///////////////////////////////////////////////////////////////////////////////////// |
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| 100 | // This function is executed as the"idle" task when no other task can be executed |
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| 101 | ///////////////////////////////////////////////////////////////////////////////////// |
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| 102 | void _idle_task() |
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| 103 | { |
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| 104 | while(1) |
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| 105 | { |
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| 106 | unsigned int count = GIET_IDLE_TASK_PERIOD; |
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| 107 | |
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| 108 | // decounting loop |
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| 109 | asm volatile( |
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| 110 | "move $3, %0 \n" |
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| 111 | "_idle_task_loop: \n" |
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| 112 | "addi $3, $3, -1 \n" |
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| 113 | "bnez $3, _idle_task_loop \n" |
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| 114 | "nop \n" |
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| 115 | : |
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| 116 | : "r"(count) |
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| 117 | : "$3" ); |
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| 118 | |
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| 119 | // warning message |
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| 120 | unsigned int gpid = _get_procid(); |
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| 121 | unsigned int cluster_xy = gpid / NB_PROCS_MAX; |
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| 122 | unsigned int lpid = gpid % NB_PROCS_MAX; |
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| 123 | unsigned int x = cluster_xy >> Y_WIDTH; |
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| 124 | unsigned int y = cluster_xy & ((1<<Y_WIDTH)-1); |
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| 125 | |
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| 126 | _printf("\n[GIET WARNING] Processor[%d,%d,%d] still idle at cycle %d\n", |
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| 127 | x, y, lpid, _get_proctime() ); |
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| 128 | |
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| 129 | } |
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| 130 | } // end ctx_idle() |
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| 131 | |
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| 132 | |
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| 133 | ///////////////////////////////////////////////////////////////////////////////// |
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| 134 | // The address of this function is used to initialise the return address |
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| 135 | // in the "idle" task context. |
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| 136 | ///////////////////////////////////////////////////////////////////////////////// |
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| 137 | void _ctx_eret() |
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| 138 | { |
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| 139 | asm volatile("eret"); |
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| 140 | } |
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| 141 | |
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| 142 | |
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| 143 | // Local Variables: |
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| 144 | // tab-width: 4 |
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| 145 | // c-basic-offset: 4 |
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| 146 | // c-file-offsets:((innamespace . 0)(inline-open . 0)) |
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| 147 | // indent-tabs-mode: nil |
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| 148 | // End: |
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| 149 | // vim: filetype=c:expandtab:shiftwidth=4:tabstop=4:softtabstop=4 |
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| 150 | |
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