将内核定位到高地址(存在bug,中断时会访问低地址)

This commit is contained in:
fslongjin
2022-04-10 21:30:16 +08:00
parent 3063a340e2
commit f5f36aafd8
23 changed files with 689 additions and 238 deletions

View File

@ -15,10 +15,11 @@ static struct acpi_Processor_Local_APIC_Structure_t *proc_local_apic_structs[MAX
static uint32_t total_processor_num = 0;
int current_starting_cpu = 0;
int num_cpu_started = 1;
void smp_init()
{
spin_init(&multi_core_starting_lock); // 初始化多核启动锁
ul tmp_vaddr[MAX_SUPPORTED_PROCESSOR_NUM] = {0};
apic_get_ics(ACPI_ICS_TYPE_PROCESSOR_LOCAL_APIC, tmp_vaddr, &total_processor_num);
@ -29,17 +30,20 @@ void smp_init()
//*(uchar *)0x20000 = 0xf4; // 在内存的0x20000处写入HLT指令(AP处理器会执行物理地址0x20000的代码)
// 将引导程序复制到物理地址0x20000处
memcpy((unsigned char *)0x20000, _apu_boot_start, (unsigned long)&_apu_boot_end - (unsigned long)&_apu_boot_start);
memcpy((unsigned char *)phys_2_virt(0x20000), _apu_boot_start, (unsigned long)&_apu_boot_end - (unsigned long)&_apu_boot_start);
// 设置多核IPI中断门
for (int i = 200; i < 210; ++i)
set_intr_gate(i, 2, SMP_interrupt_table[i - 200]);
memset(SMP_IPI_desc, 0, sizeof(irq_desc_t) * SMP_IRQ_NUM);
memset((void *)SMP_IPI_desc, 0, sizeof(irq_desc_t) * SMP_IRQ_NUM);
ipi_send_IPI(DEST_PHYSICAL, IDLE, ICR_LEVEL_DE_ASSERT, EDGE_TRIGGER, 0x00, ICR_INIT, ICR_ALL_EXCLUDE_Self, true, 0x00);
for (int i = 1; i < total_processor_num; ++i) // i从1开始不初始化bsp
{
if (proc_local_apic_structs[i]->ACPI_Processor_UID == 0)
--total_processor_num;
spin_lock(&multi_core_starting_lock);
current_starting_cpu = i;
@ -49,15 +53,34 @@ void smp_init()
cpu_core_info[i].tss_vaddr = (uint64_t)kmalloc(128, 0);
set_tss_descriptor(10 + (i * 2), (void *)(cpu_core_info[i].tss_vaddr));
set_tss_descriptor(10 + (i * 2), (void *)virt_2_phys(cpu_core_info[i].tss_vaddr));
set_tss64((uint *)cpu_core_info[i].tss_vaddr, cpu_core_info[i].stack_start, cpu_core_info[i].stack_start, cpu_core_info[i].stack_start, cpu_core_info[i].stack_start, cpu_core_info[i].stack_start, cpu_core_info[i].stack_start, cpu_core_info[i].stack_start, cpu_core_info[i].stack_start, cpu_core_info[i].stack_start, cpu_core_info[i].stack_start);
kdebug("GDT Table %#018lx, \t %#018lx", GDT_Table[10 + i * 2], GDT_Table[10 + i * 2 + 1]);
kdebug("phys_2_virt(GDT_Table)=%#018lx",phys_2_virt(GDT_Table));
kdebug("GDT Table %#018lx, \t %#018lx", *(ul *)(phys_2_virt(GDT_Table) + 10 + i * 2), *(ul *)(phys_2_virt(GDT_Table) + 10 + i * 2 + 1));
// kdebug("(cpu_core_info[i].tss_vaddr)=%#018lx", (cpu_core_info[i].tss_vaddr));
// kdebug("(cpu_core_info[i].stack_start)=%#018lx", (cpu_core_info[i].stack_start));
kdebug("(cpu_core_info[i].stack_start)=%#018lx", (cpu_core_info[i].stack_start));
// 连续发送两次start-up IPI
ipi_send_IPI(DEST_PHYSICAL, IDLE, ICR_LEVEL_DE_ASSERT, EDGE_TRIGGER, 0x20, ICR_Start_up, ICR_No_Shorthand, true, proc_local_apic_structs[i]->ACPI_ID);
ipi_send_IPI(DEST_PHYSICAL, IDLE, ICR_LEVEL_DE_ASSERT, EDGE_TRIGGER, 0x20, ICR_Start_up, ICR_No_Shorthand, true, proc_local_apic_structs[i]->ACPI_ID);
}
while (num_cpu_started != total_processor_num)
__asm__ __volatile__("pause" ::
: "memory");
kinfo("Cleaning page table remapping...\n");
// 由于ap处理器初始化过程需要用到0x00处的地址因此初始化完毕后才取消内存地址的重映射
//todo: 取消低0-2M的地址映射
for (int i = 1; i < 128; ++i)
{
*(ul *)(phys_2_virt(global_CR3) + i) = 0UL;
}
kinfo("Successfully cleaned page table remapping!\n");
}
/**
@ -66,8 +89,9 @@ void smp_init()
*/
void smp_ap_start()
{
// 切换栈基地址
// uint64_t stack_start = (uint64_t)kmalloc(STACK_SIZE, 0) + STACK_SIZE;
// 切换栈基地址
// uint64_t stack_start = (uint64_t)kmalloc(STACK_SIZE, 0) + STACK_SIZE;
__asm__ __volatile__("movq %0, %%rbp \n\t" ::"m"(cpu_core_info[current_starting_cpu].stack_start)
: "memory");
__asm__ __volatile__("movq %0, %%rsp \n\t" ::"m"(cpu_core_info[current_starting_cpu].stack_start)
@ -78,15 +102,18 @@ void smp_ap_start()
__asm__ __volatile__("movq %0, %%rsp \n\t" ::"m"(stack_start)
: "memory");*/
ksuccess("AP core successfully started!");
kdebug("current cpu = %d", current_starting_cpu);
apic_init_ap_core_local_apic();
++num_cpu_started;
kdebug("current cpu = %d", current_starting_cpu);
apic_init_ap_core_local_apic();
load_TR(10 + current_starting_cpu * 2);
spin_unlock(&multi_core_starting_lock);
sti();
kdebug("IDT_addr = %#018lx", &IDT_Table);
while (1) // 这里要循环hlt原因是当收到中断后核心会被唤醒处理完中断之后不会自动hlt
kdebug("IDT_addr = %#018lx", phys_2_virt(IDT_Table));
spin_unlock(&multi_core_starting_lock);
while (1) // 这里要循环hlt原因是当收到中断后核心会被唤醒处理完中断之后不会自动hlt
hlt();
}