source: soft/giet_vm/sys/ctx_handler.c @ 232

Last change on this file since 232 was 232, checked in by meunier, 11 years ago

Ajout du malloc dans le Giet.

File size: 7.0 KB
RevLine 
[199]1/////////////////////////////////////////////////////////////////////////////////////////
[158]2// File     : ctx_handler.c
3// Date     : 01/04/2012
4// Authors  : alain greiner & joel porquet
5// Copyright (c) UPMC-LIP6
[199]6/////////////////////////////////////////////////////////////////////////////////////////
[189]7// The ctx_handler.h and ctx_handler.c files are part of the GIET-VM nano-kernel.
[158]8// This code is used to support context switch when several tasks are executing
9// in time multiplexing on a single processor.
[199]10// The tasks are statically allocated to a processor in the boot phase, and
11// there is one private scheduler per processor. Each sheduler occupies 4K bytes,
12// and contains up to 14 task contexts (task_id is from 0 to 13).
13// The task context [14] is reserved for the "idle" task that does nothing, and
14// is launched by the scheduler when there is no other runable task.
15/////////////////////////////////////////////////////////////////////////////////////////
[189]16
17#include <giet_config.h>
18#include <drivers.h>
19#include <common.h>
20#include <ctx_handler.h>
21#include <mapping_info.h>
22#include <sys_handler.h>
23
[199]24/////////////////////////////////////////////////////////////////////////////////////////
[158]25// A task context is an array of 64 words = 256 bytes.
[199]26// It contains copies of processor registers (when the task is preempted):
27// - GPR[i], generally stored in slot (i). $0, *26 & $27 are not saved.
28// - HI & LO registers
29// - CP0 registers: EPC, SR, CR, BVAR
30// - CP2 registers : PTPR
31// It contains some general informations associated to the task:
[228]32// - TTY    : terminal global index
33// - FBDMA    : DMA channel global index
34// - NIC    : NIC channel global index
[199]35// - TIMER  : Timer global index
36// - PTAB   : page table virtual base address
[228]37// - LTID    : Task local index (in scheduler)
[199]38// - VSID   : Virtual space index
[228]39// - RUN    : Task state (0 => sleeping / 1 => runable )
[167]40//
[199]41// ctx[0]<- ***|ctx[8] <- $8 |ctx[16]<- $16|ctx[24]<- $24|ctx[32]<- EPC  |ctx[40]<- TTY
[218]42// ctx[1]<- $1 |ctx[9] <- $9 |ctx[17]<- $17|ctx[25]<- $25|ctx[33]<- CR   |ctx[41]<- DMA
[199]43// ctx[2]<- $2 |ctx[10]<- $10|ctx[18]<- $18|ctx[26]<- LO |ctx[34]<- SR   |ctx[42]<- NIC
44// ctx[3]<- $3 |ctx[11]<- $11|ctx[19]<- $19|ctx[27]<- HI |ctx[35]<- BVAR |ctx[43]<- TIMER
45// ctx[4]<- $4 |ctx[12]<- $12|ctx[20]<- $20|ctx[28]<- $28|ctx[36]<- ***  |ctx[44]<- PTAB
46// ctx[5]<- $5 |ctx[13]<- $13|ctx[21]<- $21|ctx[29]<- SP |ctx[37]<- ***  |ctx[45]<- LTID
47// ctx[6]<- $6 |ctx[14]<- $14|ctx[22]<- $22|ctx[30]<- $30|ctx[38]<- ***  |ctx[46]<- VSID
48// ctx[7]<- $7 |ctx[15]<- $15|ctx[23]<- $23|ctx[31]<- RA |ctx[39]<- PTPR |ctx[47]<- RUN
49//////////////////////////////////////////////////////////////////////////////////////////
[158]50
[228]51extern void _task_switch(unsigned int *, unsigned int *);
[158]52
53/////////////////////////////////////////////////////////////////////////////////
[228]54//    _ctx_switch()
[158]55// This function performs a context switch between the running task
[199]56// and  another task, using a round-robin sheduling policy between all
57// tasks allocated to a given processor (static allocation).
58// It selects the next runable task to resume execution.
59// If the only runable task is the current task, return without context switch.
60// If there is no runable task, the scheduler switch to the default "idle" task.
[189]61//
[199]62// Implementation notes:
63// - As we only have the scheduler physical address (in CP0_SCHED register),
64//   this function must use specific assess functions to access the scheduler.
65// - All the context switch procedure is executed with interrupts masked.
66// - The return address contained in $31 is saved in the current task context
67//   (in the ctx[31] slot), and the function actually returns to the address
68//   contained in the ctx[31] slot of the next task context.
[158]69/////////////////////////////////////////////////////////////////////////////////
[228]70void _ctx_switch() {
[189]71    // get scheduler physical address
[228]72    static_scheduler_t * psched = (static_scheduler_t *) _get_sched();
[158]73
[189]74    // get number of tasks allocated to scheduler
[228]75    unsigned int tasks = _get_tasks_number();
[158]76
[199]77    // get current task index
[232]78    unsigned int curr_task_id = _get_proc_task_id();
[199]79
80    // select the next task using a round-robin policy
[228]81    unsigned int next_task_id;
82    unsigned int tid;
83    unsigned int found = 0;
[199]84
[228]85    for (tid = curr_task_id + 1; tid < curr_task_id + 1 + tasks; tid++) {
[199]86        next_task_id = tid % tasks;
[158]87
[199]88        // test if the task is runable
[228]89        if (_get_context_slot(next_task_id, CTX_RUN_ID)) {
[199]90            found = 1;
[228]91            break;
[199]92        }
93    }
94
95    // launch "idle" task if no runable task
[228]96    if (found == 0) {
[199]97        next_task_id = IDLE_TASK_INDEX;
98    }
99
100    // no switch if no change
[228]101    if (curr_task_id != next_task_id) {
102        unsigned int * curr_ctx_paddr = &(psched->context[curr_task_id][0]);
103        unsigned int * next_ctx_paddr = &(psched->context[next_task_id][0]);
[199]104
[232]105        _set_proc_task_id(next_task_id);
[228]106        //_timer_reset_irq_cpt(cluster_id, local_id); // commented until not properly supported in soclib
107        // (the function is not yet present in drivers.c)
108        _task_switch(curr_ctx_paddr, next_ctx_paddr);
[189]109
[158]110#if GIET_DEBUG_SWITCH
[228]111        _get_lock(&_tty_put_lock);
112        _puts("\n[GIET DEBUG] Context switch for processor ");
113        _putd(_procid());
114        _puts(" at cycle ");
115        _putd(_proctime());
116        _puts("\n");
117        _puts(" - tasks        = ");
118        _putd(tasks);
119        _puts("\n");
120        _puts(" - curr_task_id = ");
121        _putd( curr_task_id );
122        _puts("\n");
123        _puts(" - next_task_id = ");
124        _putd(next_task_id);
125        _puts("\n");
126        _release_lock( &_tty_put_lock);
[158]127#endif
128
[199]129    }
130} //end _ctx_switch()
[165]131
[199]132/////////////////////////////////////////////////////////////////////////////////////
133// This function is executed as the"idle" task when no other task can be executed
134/////////////////////////////////////////////////////////////////////////////////////
[228]135void _ctx_idle() {
[199]136    unsigned int delay = 1000000;
[189]137
[228]138    while (1) {
139        asm volatile(
140                "move   $3,   %0          \n"
141                "loop:                    \n"
142                "addi   $3,   $3,   -1    \n"
143                "bnez   $3,   loop        \n"
144                "nop                      \n"
145                :
146                : "r"(delay)
147                : "$3" ); 
[189]148
[228]149        _get_lock(&_tty_put_lock);
150        _puts("\n[GIET WARNING] Processor ");
151        _putd(_procid());
152        _puts(" still idle at cycle ");
153        _putd(_proctime());
[199]154        _puts("\n");
[228]155        _release_lock(&_tty_put_lock);
156
[231]157        delay = 1000000;
[199]158    }
159} // end ctx_idle()
[189]160
[228]161
[199]162/////////////////////////////////////////////////////////////////////////////////
163// The address of this functionis used to initialise the return address
164// in the "idle" task context.
165/////////////////////////////////////////////////////////////////////////////////
[228]166void _ctx_eret() {
[199]167    asm volatile("eret");
168}
[189]169
170
[228]171// Local Variables:
172// tab-width: 4
173// c-basic-offset: 4
174// c-file-offsets:((innamespace . 0)(inline-open . 0))
175// indent-tabs-mode: nil
176// End:
177// vim: filetype=c:expandtab:shiftwidth=4:tabstop=4:softtabstop=4
178
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