1 #include "apic.h"
2 #include "apic_timer.h"
3 #include <common/cpu.h>
4 #include <common/glib.h>
5 #include <common/kprint.h>
6 #include <common/printk.h>
7 #include <driver/acpi/acpi.h>
8 #include <exception/gate.h>
9 
10 #include <exception/softirq.h>
11 #include <process/process.h>
12 #include <sched/sched.h>
13 
14 #pragma GCC push_options
15 #pragma GCC optimize("O0")
16 // 导出定义在irq.c中的中段门表
17 extern void (*interrupt_table[24])(void);
18 
19 static bool flag_support_apic = false;
20 static bool flag_support_x2apic = false;
21 uint8_t __apic_enable_state = APIC_XAPIC_ENABLED;
22 static uint local_apic_version;
23 static uint local_apic_max_LVT_entries;
24 
25 static struct acpi_Multiple_APIC_Description_Table_t *madt;
26 static struct acpi_IO_APIC_Structure_t *io_apic_ICS;
27 
28 static void __local_apic_xapic_init();
29 static void __local_apic_x2apic_init();
30 
__send_eoi()31 static __always_inline void __send_eoi()
32 {
33     if (CURRENT_APIC_STATE == APIC_X2APIC_ENABLED)
34     {
35         __asm__ __volatile__("movq	$0x00,	%%rdx	\n\t"
36                              "movq	$0x00,	%%rax	\n\t"
37                              "movq 	$0x80b,	%%rcx	\n\t"
38                              "wrmsr	\n\t" ::
39                                  : "memory");
40     }
41     else
42     {
43 
44         io_mfence();
45         __write4b(APIC_LOCAL_APIC_VIRT_BASE_ADDR + LOCAL_APIC_OFFSET_Local_APIC_EOI, 0);
46         io_mfence();
47     }
48 }
49 
50 /**
51  * @brief 初始化io_apic
52  *
53  */
apic_io_apic_init()54 void apic_io_apic_init()
55 {
56 
57     ul madt_addr;
58     acpi_iter_SDT(acpi_get_MADT, &madt_addr);
59     madt = (struct acpi_Multiple_APIC_Description_Table_t *)madt_addr;
60 
61     // kdebug("MADT->local intr controller addr=%#018lx", madt->Local_Interrupt_Controller_Address);
62     // kdebug("MADT->length= %d bytes", madt->header.Length);
63     //  寻找io apic的ICS
64     void *ent = (void *)(madt_addr) + sizeof(struct acpi_Multiple_APIC_Description_Table_t);
65     struct apic_Interrupt_Controller_Structure_header_t *header =
66         (struct apic_Interrupt_Controller_Structure_header_t *)ent;
67     while (header->length > 2)
68     {
69         header = (struct apic_Interrupt_Controller_Structure_header_t *)ent;
70         if (header->type == 1)
71         {
72             struct acpi_IO_APIC_Structure_t *t = (struct acpi_IO_APIC_Structure_t *)ent;
73             // kdebug("IO apic addr = %#018lx", t->IO_APIC_Address);
74             io_apic_ICS = t;
75             break;
76         }
77 
78         ent += header->length;
79     }
80     // kdebug("Global_System_Interrupt_Base=%d", io_apic_ICS->Global_System_Interrupt_Base);
81 
82     apic_ioapic_map.addr_phys = io_apic_ICS->IO_APIC_Address;
83     apic_ioapic_map.virtual_index_addr = (unsigned char *)APIC_IO_APIC_VIRT_BASE_ADDR;
84     apic_ioapic_map.virtual_data_addr = (uint *)(APIC_IO_APIC_VIRT_BASE_ADDR + 0x10);
85     apic_ioapic_map.virtual_EOI_addr = (uint *)(APIC_IO_APIC_VIRT_BASE_ADDR + 0x40);
86 
87     // kdebug("(ul)apic_ioapic_map.virtual_index_addr=%#018lx", (ul)apic_ioapic_map.virtual_index_addr);
88     // 填写页表,完成地址映射
89     rs_map_phys((ul)apic_ioapic_map.virtual_index_addr, apic_ioapic_map.addr_phys, PAGE_2M_SIZE,
90                 PAGE_KERNEL_PAGE | PAGE_PWT | PAGE_PCD);
91 
92     // 设置IO APIC ID 为0x0f000000
93     *apic_ioapic_map.virtual_index_addr = 0x00;
94     io_mfence();
95     *apic_ioapic_map.virtual_data_addr = 0x0f000000;
96     io_mfence();
97 
98     // kdebug("I/O APIC ID:%#010x", ((*apic_ioapic_map.virtual_data_addr) >> 24) & 0xff);
99     io_mfence();
100 
101     // 获取IO APIC Version
102     *apic_ioapic_map.virtual_index_addr = 0x01;
103     io_mfence();
104     kdebug("IO APIC Version=%d, Max Redirection Entries=%d", *apic_ioapic_map.virtual_data_addr & 0xff,
105            (((*apic_ioapic_map.virtual_data_addr) >> 16) & 0xff) + 1);
106 
107     // 初始化RTE表项,将所有RTE表项屏蔽
108     for (int i = 0x10; i < 0x40; i += 2)
109     {
110         // 以0x20为起始中断向量号,初始化RTE
111         apic_ioapic_write_rte(i, 0x10020 + ((i - 0x10) >> 1));
112     }
113 
114     // 不需要手动启动IO APIC,只要初始化了RTE寄存器之后,io apic就会自动启用了。
115     // 而且不是每台电脑都有RCBA寄存器,因此不需要手动启用IO APIC
116 }
117 
118 /**
119  * @brief 初始化AP处理器的Local apic
120  *
121  */
apic_init_ap_core_local_apic()122 void apic_init_ap_core_local_apic()
123 {
124     kinfo("Initializing AP-core's local apic...");
125     uint eax, edx;
126     // 启用xAPIC 和x2APIC
127     uint64_t ia32_apic_base = rdmsr(0x1b);
128     ia32_apic_base |= (1 << 11);
129     if (flag_support_x2apic) // 如果支持x2apic,则启用
130     {
131         ia32_apic_base |= (1 << 10);
132         wrmsr(0x1b, ia32_apic_base);
133     }
134     ia32_apic_base = rdmsr(0x1b);
135     eax = ia32_apic_base & 0xffffffff;
136 
137     // 检测是否成功启用xAPIC和x2APIC
138     if ((eax & 0xc00) == 0xc00)
139         kinfo("xAPIC & x2APIC enabled!");
140     else if ((eax & 0x800) == 0x800)
141         kinfo("Only xAPIC enabled!");
142     else
143         kerror("Both xAPIC and x2APIC are not enabled.");
144 
145     // 设置SVR寄存器,开启local APIC、禁止EOI广播
146     if (flag_support_x2apic) // 当前为x2APIC
147         __local_apic_x2apic_init();
148     else // 当前为xapic
149         __local_apic_xapic_init();
150     barrier();
151     kdebug("AP-core's local apic initialized.");
152     barrier();
153 }
154 
155 /**
156  * @brief 当前使用xapic来初始化local apic
157  *
158  */
__local_apic_xapic_init()159 static void __local_apic_xapic_init()
160 {
161     __apic_enable_state = APIC_XAPIC_ENABLED;
162     // 设置svr的 apic软件使能位
163     uint64_t qword = *(uint64_t *)(APIC_LOCAL_APIC_VIRT_BASE_ADDR + LOCAL_APIC_OFFSET_Local_APIC_SVR);
164 
165     qword |= (1 << 8);
166     *(volatile uint64_t *)(APIC_LOCAL_APIC_VIRT_BASE_ADDR + LOCAL_APIC_OFFSET_Local_APIC_SVR) = qword;
167     qword = *(volatile uint64_t *)(APIC_LOCAL_APIC_VIRT_BASE_ADDR + LOCAL_APIC_OFFSET_Local_APIC_SVR);
168     if (qword & 0x100)
169         kinfo("APIC Software Enabled.");
170     if (qword & 0x1000)
171         kinfo("EOI-Broadcast Suppression Enabled.");
172     barrier();
173     // 从  Local APIC Version register 获取Local APIC Version
174     qword = *(volatile uint64_t *)(APIC_LOCAL_APIC_VIRT_BASE_ADDR + LOCAL_APIC_OFFSET_Local_APIC_Version);
175     qword &= 0xffffffff;
176 
177     local_apic_max_LVT_entries = ((qword >> 16) & 0xff) + 1;
178     local_apic_version = qword & 0xff;
179 
180     kdebug("local APIC Version:%#010x,Max LVT Entry:%#010x,SVR(Suppress EOI Broadcast):%#04x\t", local_apic_version,
181            local_apic_max_LVT_entries, (qword >> 24) & 0x1);
182 
183     if ((qword & 0xff) < 0x10)
184     {
185         kdebug("82489DX discrete APIC");
186     }
187     else if (((qword & 0xff) >= 0x10) && ((qword & 0xff) <= 0x15))
188         kdebug("Integrated APIC.");
189 
190     io_mfence();
191     // 如果写入这里的话,在有的机器上面会报错
192     // *(uint *)(APIC_LOCAL_APIC_VIRT_BASE_ADDR + LOCAL_APIC_OFFSET_Local_APIC_LVT_CMCI) = APIC_LVT_INT_MASKED;
193     io_mfence();
194     *(volatile uint *)(APIC_LOCAL_APIC_VIRT_BASE_ADDR + LOCAL_APIC_OFFSET_Local_APIC_LVT_TIMER) = APIC_LVT_INT_MASKED;
195     io_mfence();
196 
197     *(volatile uint *)(APIC_LOCAL_APIC_VIRT_BASE_ADDR + LOCAL_APIC_OFFSET_Local_APIC_LVT_THERMAL) = APIC_LVT_INT_MASKED;
198     io_mfence();
199     *(volatile uint *)(APIC_LOCAL_APIC_VIRT_BASE_ADDR + LOCAL_APIC_OFFSET_Local_APIC_LVT_PERFORMANCE_MONITOR) =
200         APIC_LVT_INT_MASKED;
201     io_mfence();
202     *(volatile uint *)(APIC_LOCAL_APIC_VIRT_BASE_ADDR + LOCAL_APIC_OFFSET_Local_APIC_LVT_LINT0) = APIC_LVT_INT_MASKED;
203     io_mfence();
204     *(volatile uint *)(APIC_LOCAL_APIC_VIRT_BASE_ADDR + LOCAL_APIC_OFFSET_Local_APIC_LVT_LINT1) = APIC_LVT_INT_MASKED;
205     io_mfence();
206     *(volatile uint *)(APIC_LOCAL_APIC_VIRT_BASE_ADDR + LOCAL_APIC_OFFSET_Local_APIC_LVT_ERROR) = APIC_LVT_INT_MASKED;
207     io_mfence();
208 
209     kdebug("All LVT Masked");
210 }
211 
212 /**
213  * @brief 当前使用x2apic来初始化local apic
214  *
215  */
__local_apic_x2apic_init()216 static void __local_apic_x2apic_init()
217 {
218     __apic_enable_state = APIC_X2APIC_ENABLED;
219     uint32_t eax, edx;
220     __asm__ __volatile__("movq $0x80f, %%rcx    \n\t"
221                          "rdmsr  \n\t"
222                          "bts $8, %%rax  \n\t"
223                          //                         "bts $12, %%rax \n\t"
224                          "movq $0x80f, %%rcx    \n\t"
225                          "wrmsr  \n\t"
226                          "movq $0x80f , %%rcx   \n\t"
227                          "rdmsr \n\t"
228                          : "=a"(eax), "=d"(edx)::"memory");
229     if (eax & 0x100)
230         kinfo("APIC Software Enabled.");
231     if (eax & 0x1000)
232         kinfo("EOI-Broadcast Suppression Enabled.");
233 
234     // 获取Local APIC Version
235     // 0x803处是 Local APIC Version register
236     __asm__ __volatile__("movq $0x803, %%rcx    \n\t"
237                          "rdmsr  \n\t"
238                          : "=a"(eax), "=d"(edx)::"memory");
239 
240     local_apic_max_LVT_entries = ((eax >> 16) & 0xff) + 1;
241     local_apic_version = eax & 0xff;
242 
243     kdebug("local APIC Version:%#010x,Max LVT Entry:%#010x,SVR(Suppress EOI Broadcast):%#04x\t", local_apic_version,
244            local_apic_max_LVT_entries, (eax >> 24) & 0x1);
245 
246     if ((eax & 0xff) < 0x10)
247         kdebug("82489DX discrete APIC");
248     else if (((eax & 0xff) >= 0x10) && ((eax & 0xff) <= 0x15))
249         kdebug("Integrated APIC.");
250 
251     // 由于尚未配置LVT对应的处理程序,因此先屏蔽所有的LVT
252     __asm__ __volatile__(             // "movq 	$0x82f,	%%rcx	\n\t" // CMCI
253                                       // "wrmsr	\n\t"
254         "movq 	$0x832,	%%rcx	\n\t" // Timer
255         "wrmsr	\n\t"
256         "movq 	$0x833,	%%rcx	\n\t" // Thermal Monitor
257         "wrmsr	\n\t"
258         "movq 	$0x834,	%%rcx	\n\t" // Performance Counter
259         "wrmsr	\n\t"
260         "movq 	$0x835,	%%rcx	\n\t" // LINT0
261         "wrmsr	\n\t"
262         "movq 	$0x836,	%%rcx	\n\t" // LINT1
263         "wrmsr	\n\t"
264         "movq 	$0x837,	%%rcx	\n\t" // Error
265         "wrmsr	\n\t"
266         :
267         : "a"(0x10000), "d"(0x00)
268         : "memory");
269     kdebug("All LVT Masked");
270 }
271 
272 /**
273  * @brief 初始化local apic
274  *
275  */
apic_local_apic_init()276 void apic_local_apic_init()
277 {
278     uint64_t ia32_apic_base = rdmsr(0x1b);
279     // kdebug("apic base=%#018lx", (ia32_apic_base & 0x1FFFFFFFFFF000));
280     // 映射Local APIC 寄存器地址
281     // todo:
282     rs_map_phys(APIC_LOCAL_APIC_VIRT_BASE_ADDR, (ia32_apic_base & 0x1FFFFFFFFFF000), PAGE_2M_SIZE, PAGE_KERNEL_PAGE | PAGE_PWT | PAGE_PCD);
283     uint a, b, c, d;
284 
285     cpu_cpuid(1, 0, &a, &b, &c, &d);
286 
287     // kdebug("CPUID 0x01, eax:%#010lx, ebx:%#010lx, ecx:%#010lx, edx:%#010lx", a, b, c, d);
288 
289     // 判断是否支持APIC和xAPIC
290     if ((1 << 9) & d)
291     {
292         flag_support_apic = true;
293         kdebug("This computer support APIC&xAPIC");
294     }
295     else
296     {
297         flag_support_apic = false;
298         kerror("This computer does not support APIC&xAPIC");
299         while (1)
300             ;
301     }
302 
303     // 判断是否支持x2APIC
304     if ((1 << 21) & c)
305     {
306         flag_support_x2apic = true;
307         kdebug("This computer support x2APIC");
308     }
309     else
310     {
311         flag_support_x2apic = false;
312         kwarn("This computer does not support x2APIC");
313     }
314 
315     uint eax, edx;
316     // 启用xAPIC 和x2APIC
317     ia32_apic_base = rdmsr(0x1b);
318     ia32_apic_base |= (1 << 11);
319     if (flag_support_x2apic) // 如果支持x2apic,则启用
320     {
321         ia32_apic_base |= (1 << 10);
322         wrmsr(0x1b, ia32_apic_base);
323     }
324     ia32_apic_base = rdmsr(0x1b);
325     eax = ia32_apic_base & 0xffffffff;
326 
327     // 检测是否成功启用xAPIC和x2APIC
328     if ((eax & 0xc00) == 0xc00)
329         kinfo("xAPIC & x2APIC enabled!");
330     else if ((eax & 0x800) == 0x800)
331         kinfo("Only xAPIC enabled!");
332     else
333         kerror("Both xAPIC and x2APIC are not enabled.");
334 
335     // 设置SVR寄存器,开启local APIC、禁止EOI广播
336     if (flag_support_x2apic) // 当前为x2APIC
337         __local_apic_x2apic_init();
338     else // 当前为xapic
339         __local_apic_xapic_init();
340 
341     // 获取Local APIC的基础信息 (参见英特尔开发手册Vol3A 10-39)
342     //                          Table 10-6. Local APIC Register Address Map Supported by x2APIC
343     // 获取 Local APIC ID
344     // 0x802处是x2APIC ID 位宽32bits 的 Local APIC ID register
345     /*
346     __asm__ __volatile__("movq $0x802, %%rcx    \n\t"
347                          "rdmsr  \n\t"
348                          : "=a"(eax), "=d"(edx)::"memory");
349     */
350     // kdebug("get Local APIC ID: edx=%#010x, eax=%#010x", edx, eax);
351     // kdebug("local_apic_id=%#018lx", *(uint *)(APIC_LOCAL_APIC_VIRT_BASE_ADDR + LOCAL_APIC_OFFSET_Local_APIC_ID));
352 }
353 
354 /**
355  * @brief 初始化apic控制器
356  *
357  */
apic_init()358 int apic_init()
359 {
360     kinfo("Initializing APIC...");
361     // 初始化中断门, 中断使用rsp0防止在软中断时发生嵌套,然后处理器重新加载导致数据被抹掉
362     for (int i = 32; i <= 55; ++i)
363         set_intr_gate(i, 0, interrupt_table[i - 32]);
364 
365     // 设置local apic中断门
366     for (int i = 150; i < 160; ++i)
367         set_intr_gate(i, 0, local_apic_interrupt_table[i - 150]);
368 
369     //  屏蔽类8259A芯片
370     io_out8(0x21, 0xff);
371 
372     io_out8(0xa1, 0xff);
373 
374     // 写入8259A pic的EOI位
375     io_out8(0x20, 0x20);
376     io_out8(0xa0, 0x20);
377 
378     kdebug("8259A Masked.");
379 
380     // enable IMCR
381     io_out8(0x22, 0x70);
382     io_out8(0x23, 0x01);
383 
384     apic_local_apic_init();
385 
386     apic_io_apic_init();
387 
388     // get RCBA address
389     io_out32(0xcf8, 0x8000f8f0);
390     uint32_t RCBA_phys = io_in32(0xcfc);
391 
392     // 获取RCBA寄存器的地址
393     if (RCBA_phys > 0xfec00000 && RCBA_phys < 0xfee00000)
394         RCBA_vaddr = SPECIAL_MEMOEY_MAPPING_VIRT_ADDR_BASE + RCBA_phys;
395     else
396     {
397         RCBA_vaddr = 0;
398         kwarn("Cannot get RCBA address. RCBA_phys=%#010lx", RCBA_phys);
399     }
400     kinfo("APIC initialized.");
401     sti();
402     return 0;
403 }
404 /**
405  * @brief 中断服务程序
406  *
407  * @param rsp 中断栈指针
408  * @param number 中断向量号
409  */
do_IRQ(struct pt_regs * rsp,ul number)410 void do_IRQ(struct pt_regs *rsp, ul number)
411 {
412 
413     if (number < 0x80 && number >= 32) // 以0x80为界限,低于0x80的是外部中断控制器,高于0x80的是Local APIC
414     {
415         // ==========外部中断控制器========
416         irq_desc_t *irq = &interrupt_desc[number - 32];
417 
418         // 执行中断上半部处理程序
419         if (irq != NULL && irq->handler != NULL)
420             irq->handler(number, irq->parameter, rsp);
421         else
422             kwarn("Intr vector [%d] does not have a handler!");
423         // 向中断控制器发送应答消息
424         if (irq->controller != NULL && irq->controller->ack != NULL)
425             irq->controller->ack(number);
426         else
427             __send_eoi();
428     }
429     else if (number >= 200)
430     {
431         apic_local_apic_edge_ack(number);
432 
433         {
434             irq_desc_t *irq = &SMP_IPI_desc[number - 200];
435             if (irq->handler != NULL)
436                 irq->handler(number, irq->parameter, rsp);
437         }
438     }
439     else if (number >= 150 && number < 200)
440     {
441         irq_desc_t *irq = &local_apic_interrupt_desc[number - 150];
442 
443         // 执行中断上半部处理程序
444         if (irq != NULL && irq->handler != NULL)
445             irq->handler(number, irq->parameter, rsp);
446         else
447             kwarn("Intr vector [%d] does not have a handler!");
448         // 向中断控制器发送应答消息
449         if (irq->controller != NULL && irq->controller->ack != NULL)
450             irq->controller->ack(number);
451         else
452             __send_eoi(); // 向EOI寄存器写入0x00表示结束中断
453     }
454     else
455     {
456 
457         kwarn("do IRQ receive: %d", number);
458         // 忽略未知中断
459         return;
460     }
461 
462     // kdebug("before softirq");
463     // 进入软中断处理程序
464     rs_do_softirq();
465 
466     // kdebug("after softirq");
467     // 检测当前进程是否持有自旋锁,若持有自旋锁,则不进行抢占式的进程调度
468     if (current_pcb->preempt_count > 0)
469         return;
470     else if (current_pcb->preempt_count < 0)
471         kBUG("current_pcb->preempt_count<0! pid=%d", current_pcb->pid); // should not be here
472 
473     // 检测当前进程是否可被调度
474     if (current_pcb->flags & PF_NEED_SCHED && number == APIC_TIMER_IRQ_NUM)
475     {
476         io_mfence();
477         sched();
478     }
479 }
480 
481 /**
482  * @brief 读取RTE寄存器
483  * 由于RTE位宽为64位而IO window寄存器只有32位,因此需要两次读取
484  * @param index 索引值
485  * @return ul
486  */
apic_ioapic_read_rte(unsigned char index)487 ul apic_ioapic_read_rte(unsigned char index)
488 {
489     // 由于处理器的乱序执行的问题,需要加入内存屏障以保证结果的正确性。
490     ul ret;
491     // 先读取高32bit
492     *apic_ioapic_map.virtual_index_addr = index + 1;
493     io_mfence();
494 
495     ret = *apic_ioapic_map.virtual_data_addr;
496     ret <<= 32;
497     io_mfence();
498 
499     // 读取低32bit
500     *apic_ioapic_map.virtual_index_addr = index;
501     io_mfence();
502     ret |= *apic_ioapic_map.virtual_data_addr;
503     io_mfence();
504 
505     return ret;
506 }
507 
508 /**
509  * @brief 写入RTE寄存器
510  *
511  * @param index 索引值
512  * @param value 要写入的值
513  */
apic_ioapic_write_rte(unsigned char index,ul value)514 void apic_ioapic_write_rte(unsigned char index, ul value)
515 {
516     // 先写入低32bit
517     *apic_ioapic_map.virtual_index_addr = index;
518     io_mfence();
519 
520     *apic_ioapic_map.virtual_data_addr = value & 0xffffffff;
521     io_mfence();
522     // 再写入高32bit
523     value >>= 32;
524     io_mfence();
525     *apic_ioapic_map.virtual_index_addr = index + 1;
526     io_mfence();
527     *apic_ioapic_map.virtual_data_addr = value & 0xffffffff;
528     io_mfence();
529 }
530 
531 // =========== 中断控制操作接口 ============
apic_ioapic_enable(ul irq_num)532 void apic_ioapic_enable(ul irq_num)
533 {
534     ul index = 0x10 + ((irq_num - 32) << 1);
535     ul value = apic_ioapic_read_rte(index);
536     value &= (~0x10000UL);
537     apic_ioapic_write_rte(index, value);
538 }
539 
apic_ioapic_disable(ul irq_num)540 void apic_ioapic_disable(ul irq_num)
541 {
542     ul index = 0x10 + ((irq_num - 32) << 1);
543     ul value = apic_ioapic_read_rte(index);
544     value |= (0x10000UL);
545     apic_ioapic_write_rte(index, value);
546 }
547 
apic_ioapic_install(ul irq_num,void * arg)548 ul apic_ioapic_install(ul irq_num, void *arg)
549 {
550     struct apic_IO_APIC_RTE_entry *entry = (struct apic_IO_APIC_RTE_entry *)arg;
551     // RTE表项值写入对应的RTE寄存器
552     apic_ioapic_write_rte(0x10 + ((irq_num - 32) << 1), *(ul *)entry);
553     return 0;
554 }
555 
apic_ioapic_uninstall(ul irq_num)556 void apic_ioapic_uninstall(ul irq_num)
557 {
558     // 将对应的RTE表项设置为屏蔽状态
559     apic_ioapic_write_rte(0x10 + ((irq_num - 32) << 1), 0x10000UL);
560 }
561 
apic_ioapic_level_ack(ul irq_num)562 void apic_ioapic_level_ack(ul irq_num) // 电平触发
563 {
564     __send_eoi();
565     *apic_ioapic_map.virtual_EOI_addr = irq_num;
566 }
567 
apic_ioapic_edge_ack(ul irq_num)568 void apic_ioapic_edge_ack(ul irq_num) // 边沿触发
569 {
570 
571     // 向EOI寄存器写入0x00表示结束中断
572     /*
573         uint *eoi = (uint *)(APIC_LOCAL_APIC_VIRT_BASE_ADDR + LOCAL_APIC_OFFSET_Local_APIC_EOI);
574         *eoi = 0x00;
575 
576         */
577     __send_eoi();
578 }
579 
580 /**
581  * @brief local apic 边沿触发应答
582  *
583  * @param irq_num
584  */
585 
apic_local_apic_edge_ack(ul irq_num)586 void apic_local_apic_edge_ack(ul irq_num)
587 {
588     // 向EOI寄存器写入0x00表示结束中断
589     __send_eoi();
590 }
591 
592 /**
593  * @brief 读取指定类型的 Interrupt Control Structure
594  *
595  * @param type ics的类型
596  * @param ret_vaddr 对应的ICS的虚拟地址数组
597  * @param total 返回数组的元素总个数
598  * @return uint
599  */
apic_get_ics(const uint type,ul ret_vaddr[],uint * total)600 uint apic_get_ics(const uint type, ul ret_vaddr[], uint *total)
601 {
602     void *ent = (void *)(madt) + sizeof(struct acpi_Multiple_APIC_Description_Table_t);
603     struct apic_Interrupt_Controller_Structure_header_t *header =
604         (struct apic_Interrupt_Controller_Structure_header_t *)ent;
605     bool flag = false;
606 
607     uint cnt = 0;
608 
609     while (header->length > 2)
610     {
611         header = (struct apic_Interrupt_Controller_Structure_header_t *)ent;
612         if (header->type == type)
613         {
614             ret_vaddr[cnt++] = (ul)ent;
615             flag = true;
616         }
617         ent += header->length;
618     }
619 
620     *total = cnt;
621     if (!flag)
622         return APIC_E_NOTFOUND;
623     else
624         return APIC_SUCCESS;
625 }
626 
627 /**
628  * @brief 构造RTE Entry结构体
629  *
630  * @param entry 返回的结构体
631  * @param vector 中断向量
632  * @param deliver_mode 投递模式
633  * @param dest_mode 目标模式
634  * @param deliver_status 投递状态
635  * @param polarity 电平触发极性
636  * @param irr 远程IRR标志位(只读)
637  * @param trigger 触发模式
638  * @param mask 屏蔽标志位,(0为未屏蔽, 1为已屏蔽)
639  * @param dest_apicID 目标apicID
640  */
apic_make_rte_entry(struct apic_IO_APIC_RTE_entry * entry,uint8_t vector,uint8_t deliver_mode,uint8_t dest_mode,uint8_t deliver_status,uint8_t polarity,uint8_t irr,uint8_t trigger,uint8_t mask,uint8_t dest_apicID)641 void apic_make_rte_entry(struct apic_IO_APIC_RTE_entry *entry, uint8_t vector, uint8_t deliver_mode, uint8_t dest_mode,
642                          uint8_t deliver_status, uint8_t polarity, uint8_t irr, uint8_t trigger, uint8_t mask,
643                          uint8_t dest_apicID)
644 {
645 
646     entry->vector = vector;
647     entry->deliver_mode = deliver_mode;
648     entry->dest_mode = dest_mode;
649     entry->deliver_status = deliver_status;
650     entry->polarity = polarity;
651     entry->remote_IRR = irr;
652     entry->trigger_mode = trigger;
653     entry->mask = mask;
654 
655     entry->reserved = 0;
656 
657     if (dest_mode == DEST_PHYSICAL)
658     {
659         entry->destination.physical.phy_dest = dest_apicID;
660         entry->destination.physical.reserved1 = 0;
661         entry->destination.physical.reserved2 = 0;
662     }
663     else
664     {
665         entry->destination.logical.logical_dest = dest_apicID;
666         entry->destination.logical.reserved1 = 0;
667     }
668 }
669 
670 /**
671  * @brief 获取当前处理器的local apic id
672  *
673  * @return uint32_t
674  */
apic_get_local_apic_id()675 uint32_t apic_get_local_apic_id()
676 {
677     // 获取Local APIC的基础信息 (参见英特尔开发手册Vol3A 10-39)
678     //                          Table 10-6. Local APIC Register Address Map Supported by x2APIC
679 
680     if (flag_support_x2apic)
681     {
682         // 获取 Local APIC ID
683         // 0x802处是x2APIC ID 位宽32bits 的 Local APIC ID register
684         uint32_t x = 0;
685         __asm__ __volatile__("movq $0x802, %%rcx    \n\t"
686                              "rdmsr  \n\t"
687                              : "=a"(x)::"memory");
688         return x;
689     }
690     else
691     {
692         // kdebug("get Local APIC ID: edx=%#010x, eax=%#010x", edx, eax);
693         // kdebug("local_apic_id=%#018lx", );
694 
695         uint32_t x = *(uint32_t *)(APIC_LOCAL_APIC_VIRT_BASE_ADDR + LOCAL_APIC_OFFSET_Local_APIC_ID);
696         x = ((x >> 24) & 0xff);
697         return x;
698     }
699 }
700 
701 /**
702  * 写入icr寄存器
703  *
704  * @param value 写入的值
705  */
apic_write_icr(uint64_t value)706 void apic_write_icr(uint64_t value)
707 {
708     if (flag_support_x2apic)
709     {
710         wrmsr(0x830, value);
711     }
712     else
713     {
714         // kdebug("to write icr: %#018lx", value);
715         const uint64_t PENDING = 1UL << 12;
716         while (*(volatile uint32_t *)(APIC_LOCAL_APIC_VIRT_BASE_ADDR + LOCAL_APIC_OFFSET_Local_APIC_ICR_31_0) & PENDING)
717             ;
718         // kdebug("write icr: %#018lx", value);
719         *(volatile uint32_t *)(APIC_LOCAL_APIC_VIRT_BASE_ADDR + LOCAL_APIC_OFFSET_Local_APIC_ICR_63_32) = (value >> 32) & 0xffffffff;
720         *(volatile uint32_t *)(APIC_LOCAL_APIC_VIRT_BASE_ADDR + LOCAL_APIC_OFFSET_Local_APIC_ICR_31_0) = value & 0xffffffff;
721 
722         while (*(volatile uint32_t *)(APIC_LOCAL_APIC_VIRT_BASE_ADDR + LOCAL_APIC_OFFSET_Local_APIC_ICR_31_0) & PENDING)
723             ;
724         // kdebug("write icr done");
725     }
726 }
727 
728 // 查询是否启用了x2APIC
apic_x2apic_enabled()729 bool apic_x2apic_enabled()
730 {
731     return flag_support_x2apic;
732 }
733 #pragma GCC pop_options