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146 lines
4.6 KiB
C
146 lines
4.6 KiB
C
#include "sched.h"
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#include <common/kprint.h>
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struct sched_queue_t sched_cfs_ready_queue[MAX_CPU_NUM]; // 就绪队列
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/**
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* @brief 从就绪队列中取出PCB
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*
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* @return struct process_control_block*
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*/
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struct process_control_block *sched_cfs_dequeue()
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{
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if (list_empty(&sched_cfs_ready_queue[proc_current_cpu_id].proc_queue.list))
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{
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kdebug("list empty, count=%d", sched_cfs_ready_queue[proc_current_cpu_id].count);
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return &initial_proc_union.pcb;
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}
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struct process_control_block *proc = container_of(list_next(&sched_cfs_ready_queue[proc_current_cpu_id].proc_queue.list), struct process_control_block, list);
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list_del(&proc->list);
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--sched_cfs_ready_queue[proc_current_cpu_id].count;
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return proc;
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}
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/**
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* @brief 将PCB加入就绪队列
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*
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* @param pcb
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*/
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void sched_cfs_enqueue(struct process_control_block *pcb)
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{
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struct process_control_block *proc = container_of(list_next(&sched_cfs_ready_queue[proc_current_cpu_id].proc_queue.list), struct process_control_block, list);
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if (proc == &initial_proc_union.pcb)
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return;
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if ((list_empty(&sched_cfs_ready_queue[proc_current_cpu_id].proc_queue.list)) == 0)
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{
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while (proc->virtual_runtime < pcb->virtual_runtime)
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{
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proc = container_of(list_next(&proc->list), struct process_control_block, list);
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}
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}
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list_append(&proc->list, &pcb->list);
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++sched_cfs_ready_queue[proc_current_cpu_id].count;
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}
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/**
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* @brief 调度函数
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*
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*/
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void sched_cfs()
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{
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current_pcb->flags &= ~PROC_NEED_SCHED;
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struct process_control_block *proc = sched_cfs_dequeue();
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if (current_pcb->virtual_runtime >= proc->virtual_runtime || current_pcb->state != PROC_RUNNING) // 当前进程运行时间大于了下一进程的运行时间,进行切换
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{
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if (current_pcb->state = PROC_RUNNING) // 本次切换由于时间片到期引发,则再次加入就绪队列,否则交由其它功能模块进行管理
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sched_cfs_enqueue(current_pcb);
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if (sched_cfs_ready_queue[proc_current_cpu_id].cpu_exec_proc_jiffies <= 0)
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{
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switch (proc->priority)
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{
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case 0:
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case 1:
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sched_cfs_ready_queue[proc_current_cpu_id].cpu_exec_proc_jiffies = 4 / sched_cfs_ready_queue[proc_current_cpu_id].count;
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break;
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case 2:
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default:
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sched_cfs_ready_queue[proc_current_cpu_id].cpu_exec_proc_jiffies = (4 / sched_cfs_ready_queue[proc_current_cpu_id].count) << 2;
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break;
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}
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}
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kdebug("before switch, next.rip = %#018lx\tnext->gs=%#018lx", proc->thread->rip, proc->thread->gs);
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switch_proc(current_pcb, proc);
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}
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else // 不进行切换
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{
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// kdebug("not switch.");
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sched_cfs_enqueue(proc);
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if (sched_cfs_ready_queue[proc_current_cpu_id].cpu_exec_proc_jiffies <= 0)
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{
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switch (proc->priority)
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{
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case 0:
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case 1:
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sched_cfs_ready_queue[proc_current_cpu_id].cpu_exec_proc_jiffies = 4 / sched_cfs_ready_queue[proc_current_cpu_id].count;
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// sched_cfs_ready_queue.cpu_exec_proc_jiffies = 5;
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break;
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case 2:
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default:
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// sched_cfs_ready_queue.cpu_exec_proc_jiffies = 5;
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sched_cfs_ready_queue[proc_current_cpu_id].cpu_exec_proc_jiffies = (4 / sched_cfs_ready_queue[proc_current_cpu_id].count) << 2;
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break;
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}
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}
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}
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}
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/**
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* @brief 当时钟中断到达时,更新时间片
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*
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*/
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void sched_update_jiffies()
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{
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//if (current_pcb->cpu_id == 0)
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// return;
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switch (current_pcb->priority)
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{
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case 0:
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case 1:
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--sched_cfs_ready_queue[proc_current_cpu_id].cpu_exec_proc_jiffies;
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++current_pcb->virtual_runtime;
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break;
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case 2:
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default:
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sched_cfs_ready_queue[proc_current_cpu_id].cpu_exec_proc_jiffies -= 2;
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current_pcb->virtual_runtime += 2;
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break;
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}
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// 时间片耗尽,标记可调度
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if (sched_cfs_ready_queue[proc_current_cpu_id].cpu_exec_proc_jiffies <= 0)
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current_pcb->flags |= PROC_NEED_SCHED;
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}
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/**
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* @brief 初始化进程调度器
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*
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*/
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void sched_init()
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{
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memset(&sched_cfs_ready_queue, 0, sizeof(struct sched_queue_t) * MAX_CPU_NUM);
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for (int i = 0; i < MAX_CPU_NUM; ++i)
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{
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list_init(&sched_cfs_ready_queue[i].proc_queue.list);
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sched_cfs_ready_queue[i].count = 1; // 因为存在IDLE进程,因此为1
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sched_cfs_ready_queue[i].cpu_exec_proc_jiffies = 5;
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sched_cfs_ready_queue[i].proc_queue.virtual_runtime = 0x7fffffffffffffff;
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}
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} |