2aa37e504824531e9d8e0504c862a84094b04277
[lunaix-os.git] / lunaix-os / hal / ahci / ahci.c
1 /**
2  * @file ahci.c
3  * @author Lunaixsky (zelong56@gmail.com)
4  * @brief A software implementation of Serial ATA AHCI 1.3.1 Specification
5  * @version 0.1
6  * @date 2022-06-28
7  *
8  * @copyright Copyright (c) 2022
9  *
10  */
11 #include <hal/ahci/ahci.h>
12 #include <hal/ahci/hba.h>
13 #include <hal/ahci/sata.h>
14 #include <hal/ahci/scsi.h>
15 #include <hal/pci.h>
16
17 #include <sys/pci_hba.h>
18 #include <sys/port_io.h>
19
20 #include <klibc/string.h>
21 #include <lunaix/block.h>
22 #include <lunaix/isrm.h>
23 #include <lunaix/mm/mmio.h>
24 #include <lunaix/mm/pmm.h>
25 #include <lunaix/mm/valloc.h>
26 #include <lunaix/mm/vmm.h>
27 #include <lunaix/spike.h>
28 #include <lunaix/syslog.h>
29
30 #define HBA_FIS_SIZE 256
31 #define HBA_CLB_SIZE 1024
32
33 #define HBA_MY_IE (HBA_PxINTR_DHR | HBA_PxINTR_TFE | HBA_PxINTR_OF)
34 #define AHCI_DEVCLASS DEVCLASS(DEVIF_PCI, DEVFN_STORAGE, DEV_SATA)
35
36 // #define DO_HBA_FULL_RESET
37
38 LOG_MODULE("AHCI")
39
40 DEFINE_LLIST(ahcis);
41
42 static char sata_ifs[][20] = { "Not detected",
43                                "SATA I (1.5Gbps)",
44                                "SATA II (3.0Gbps)",
45                                "SATA III (6.0Gbps)" };
46
47 static struct devclass ahci_class = AHCI_DEVCLASS;
48
49 extern void
50 ahci_fsexport(struct block_dev* bdev, void* fs_node);
51
52 extern void
53 __ahci_hba_isr(const isr_param* param);
54
55 extern void
56 __ahci_blkio_handler(struct blkio_req* req);
57
58 int
59 ahci_init_device(struct hba_port* port);
60
61 void
62 achi_register_ops(struct hba_port* port);
63
64 void
65 ahci_register_device(struct hba_device* hbadev);
66
67 void
68 __hba_reset_port(hba_reg_t* port_reg)
69 {
70     // 根据:SATA-AHCI spec section 10.4.2 描述的端口重置流程
71     port_reg[HBA_RPxCMD] &= ~HBA_PxCMD_ST;
72     port_reg[HBA_RPxCMD] &= ~HBA_PxCMD_FRE;
73     int cnt = wait_until_expire(!(port_reg[HBA_RPxCMD] & HBA_PxCMD_CR), 500000);
74     if (cnt) {
75         return;
76     }
77     // 如果port未响应,则继续执行重置
78     port_reg[HBA_RPxSCTL] = (port_reg[HBA_RPxSCTL] & ~0xf) | 1;
79     port_delay(100000); // 等待至少一毫秒,差不多就行了
80     port_reg[HBA_RPxSCTL] &= ~0xf;
81 }
82
83 int
84 ahci_driver_init(struct device_def* def, struct device* dev)
85 {
86     struct pci_device* ahci_dev = container_of(dev, struct pci_device, dev);
87
88     struct pci_base_addr* bar6 = &ahci_dev->bar[5];
89     assert_msg(bar6->type & BAR_TYPE_MMIO, "AHCI: BAR#6 is not MMIO.");
90
91     pci_reg_t cmd = pci_read_cspace(ahci_dev->cspace_base, PCI_REG_STATUS_CMD);
92
93     // 禁用传统中断(因为我们使用MSI),启用MMIO访问,允许PCI设备间访问
94     cmd |= (PCI_RCMD_MM_ACCESS | PCI_RCMD_DISABLE_INTR | PCI_RCMD_BUS_MASTER);
95
96     pci_write_cspace(ahci_dev->cspace_base, PCI_REG_STATUS_CMD, cmd);
97
98     int iv = isrm_ivexalloc(__ahci_hba_isr);
99     pci_setup_msi(ahci_dev, iv);
100     isrm_set_payload(iv, (ptr_t)&ahcis);
101
102     struct ahci_driver* ahci_drv = vzalloc(sizeof(*ahci_drv));
103     struct ahci_hba* hba = &ahci_drv->hba;
104     ahci_drv->id = iv;
105
106     llist_append(&ahcis, &ahci_drv->ahci_drvs);
107
108     hba->base = (hba_reg_t*)ioremap(bar6->start, bar6->size);
109
110 #ifdef DO_HBA_FULL_RESET
111     // 重置HBA
112     hba->base[HBA_RGHC] |= HBA_RGHC_RESET;
113     wait_until(!(hba->base[HBA_RGHC] & HBA_RGHC_RESET));
114 #endif
115
116     // 启用AHCI工作模式,启用中断
117     hba->base[HBA_RGHC] |= HBA_RGHC_ACHI_ENABLE;
118     hba->base[HBA_RGHC] |= HBA_RGHC_INTR_ENABLE;
119
120     // As per section 3.1.1, this is 0 based value.
121     hba_reg_t cap = hba->base[HBA_RCAP];
122     hba_reg_t pmap = hba->base[HBA_RPI];
123
124     hba->ports_num = (cap & 0x1f) + 1;  // CAP.PI
125     hba->cmd_slots = (cap >> 8) & 0x1f; // CAP.NCS
126     hba->version = hba->base[HBA_RVER];
127     hba->ports_bmp = pmap;
128
129     /* ------ HBA端口配置 ------ */
130     ptr_t clb_pg_addr = 0, fis_pg_addr = 0;
131     ptr_t clb_pa = 0, fis_pa = 0;
132
133     for (size_t i = 0, fisp = 0, clbp = 0; i < 32;
134          i++, pmap >>= 1, fisp = (fisp + 1) % 16, clbp = (clbp + 1) % 4) {
135         if (!(pmap & 0x1)) {
136             continue;
137         }
138
139         struct hba_port* port =
140           (struct hba_port*)valloc(sizeof(struct hba_port));
141         hba_reg_t* port_regs =
142           (hba_reg_t*)(&hba->base[HBA_RPBASE + i * HBA_RPSIZE]);
143
144 #ifndef DO_HBA_FULL_RESET
145         __hba_reset_port(port_regs);
146 #endif
147
148         if (!clbp) {
149             // 每页最多4个命令队列
150             clb_pa = pmm_alloc_page(KERNEL_PID, PP_FGLOCKED);
151             clb_pg_addr = (ptr_t)ioremap(clb_pa, 0x1000);
152             memset((void*)clb_pg_addr, 0, 0x1000);
153         }
154         if (!fisp) {
155             // 每页最多16个FIS
156             fis_pa = pmm_alloc_page(KERNEL_PID, PP_FGLOCKED);
157             fis_pg_addr = (ptr_t)ioremap(fis_pa, 0x1000);
158             memset((void*)fis_pg_addr, 0, 0x1000);
159         }
160
161         /* 重定向CLB与FIS */
162         port_regs[HBA_RPxCLB] = clb_pa + clbp * HBA_CLB_SIZE;
163         port_regs[HBA_RPxFB] = fis_pa + fisp * HBA_FIS_SIZE;
164
165         *port = (struct hba_port){
166             .regs = port_regs,
167             .ssts = port_regs[HBA_RPxSSTS],
168             .cmdlst = (struct hba_cmdh*)(clb_pg_addr + clbp * HBA_CLB_SIZE),
169             .fis = (void*)(fis_pg_addr + fisp * HBA_FIS_SIZE),
170             .hba = hba
171         };
172
173         /* 初始化端口,并置于就绪状态 */
174         port_regs[HBA_RPxCI] = 0;
175
176         hba_clear_reg(port_regs[HBA_RPxSERR]);
177
178         hba->ports[i] = port;
179
180         if (!HBA_RPxSSTS_IF(port->ssts)) {
181             continue;
182         }
183
184         wait_until(!(port_regs[HBA_RPxCMD] & HBA_PxCMD_CR));
185         port_regs[HBA_RPxCMD] |= HBA_PxCMD_FRE;
186         port_regs[HBA_RPxCMD] |= HBA_PxCMD_ST;
187
188         if (!ahci_init_device(port)) {
189             kprintf(KERROR "init fail: 0x%x@p%d\n", port->regs[HBA_RPxSIG], i);
190             continue;
191         }
192
193         struct hba_device* hbadev = port->device;
194         kprintf(KINFO "sata%d: %s, blk_size=%d, blk=0..%d\n",
195                 i,
196                 hbadev->model,
197                 hbadev->block_size,
198                 (u32_t)hbadev->max_lba);
199
200         ahci_register_device(hbadev);
201     }
202
203     dev->underlay = ahci_drv;
204     return 0;
205 }
206
207 void
208 ahci_register_device(struct hba_device* hbadev)
209 {
210     struct block_dev* bdev =
211       block_alloc_dev(hbadev->model, hbadev, __ahci_blkio_handler);
212
213     bdev->end_lba = hbadev->max_lba;
214     bdev->blk_size = hbadev->block_size;
215     bdev->class = &ahci_class;
216
217     block_mount(bdev, ahci_fsexport);
218 }
219
220 int
221 __get_free_slot(struct hba_port* port)
222 {
223     hba_reg_t pxsact = port->regs[HBA_RPxSACT];
224     hba_reg_t pxci = port->regs[HBA_RPxCI];
225     hba_reg_t free_bmp = pxsact | pxci;
226     u32_t i = 0;
227     for (; i <= port->hba->cmd_slots && (free_bmp & 0x1); i++, free_bmp >>= 1)
228         ;
229     return i | -(i > port->hba->cmd_slots);
230 }
231
232 void
233 sata_create_fis(struct sata_reg_fis* cmd_fis,
234                 u8_t command,
235                 lba_t lba,
236                 u16_t sector_count)
237 {
238     cmd_fis->head.type = SATA_REG_FIS_H2D;
239     cmd_fis->head.options = SATA_REG_FIS_COMMAND;
240     cmd_fis->head.status_cmd = command;
241     cmd_fis->dev = 0;
242
243     cmd_fis->lba0 = SATA_LBA_COMPONENT(lba, 0);
244     cmd_fis->lba8 = SATA_LBA_COMPONENT(lba, 8);
245     cmd_fis->lba16 = SATA_LBA_COMPONENT(lba, 16);
246     cmd_fis->lba24 = SATA_LBA_COMPONENT(lba, 24);
247
248     cmd_fis->lba32 = SATA_LBA_COMPONENT(lba, 32);
249     cmd_fis->lba40 = SATA_LBA_COMPONENT(lba, 40);
250
251     cmd_fis->count = sector_count;
252 }
253
254 int
255 hba_bind_sbuf(struct hba_cmdh* cmdh, struct hba_cmdt* cmdt, struct membuf mbuf)
256 {
257     assert_msg(mbuf.size <= 0x400000U, "HBA: Buffer too big");
258     cmdh->prdt_len = 1;
259     cmdt->entries[0] =
260       (struct hba_prdte){ .data_base = vmm_v2p((ptr_t)mbuf.buffer),
261                           .byte_count = mbuf.size - 1 };
262
263     return 0;
264 }
265
266 int
267 hba_bind_vbuf(struct hba_cmdh* cmdh, struct hba_cmdt* cmdt, struct vecbuf* vbuf)
268 {
269     size_t i = 0;
270     struct vecbuf* pos = vbuf;
271
272     do {
273         assert_msg(i < HBA_MAX_PRDTE, "HBA: Too many PRDTEs");
274         assert_msg(pos->buf.size <= 0x400000U, "HBA: Buffer too big");
275
276         cmdt->entries[i++] =
277           (struct hba_prdte){ .data_base = vmm_v2p((ptr_t)pos->buf.buffer),
278                               .byte_count = pos->buf.size - 1 };
279         pos = list_entry(pos->components.next, struct vecbuf, components);
280     } while (pos != vbuf);
281
282     cmdh->prdt_len = i + 1;
283
284     return 0;
285 }
286
287 int
288 hba_prepare_cmd(struct hba_port* port,
289                 struct hba_cmdt** cmdt,
290                 struct hba_cmdh** cmdh)
291 {
292     int slot = __get_free_slot(port);
293     assert_msg(slot >= 0, "HBA: No free slot");
294
295     // 构建命令头(Command Header)和命令表(Command Table)
296     struct hba_cmdh* cmd_header = &port->cmdlst[slot];
297     struct hba_cmdt* cmd_table = vzalloc_dma(sizeof(struct hba_cmdt));
298
299     memset(cmd_header, 0, sizeof(*cmd_header));
300
301     // 将命令表挂到命令头上
302     cmd_header->cmd_table_base = vmm_v2p((ptr_t)cmd_table);
303     cmd_header->options =
304       HBA_CMDH_FIS_LEN(sizeof(struct sata_reg_fis)) | HBA_CMDH_CLR_BUSY;
305
306     *cmdh = cmd_header;
307     *cmdt = cmd_table;
308
309     return slot;
310 }
311
312 int
313 ahci_init_device(struct hba_port* port)
314 {
315     /* 发送ATA命令,参考:SATA AHCI Spec Rev.1.3.1, section 5.5 */
316     struct hba_cmdt* cmd_table;
317     struct hba_cmdh* cmd_header;
318
319     // mask DHR interrupt
320     port->regs[HBA_RPxIE] &= ~HBA_MY_IE;
321
322     // 预备DMA接收缓存,用于存放HBA传回的数据
323     u16_t* data_in = (u16_t*)valloc_dma(512);
324
325     int slot = hba_prepare_cmd(port, &cmd_table, &cmd_header);
326     hba_bind_sbuf(
327       cmd_header, cmd_table, (struct membuf){ .buffer = data_in, .size = 512 });
328
329     port->device = vzalloc(sizeof(struct hba_device));
330     port->device->port = port;
331     port->device->hba = port->hba;
332
333     // 在命令表中构建命令FIS
334     struct sata_reg_fis* cmd_fis = (struct sata_reg_fis*)cmd_table->command_fis;
335
336     // 根据设备类型使用合适的命令
337     if (port->regs[HBA_RPxSIG] == HBA_DEV_SIG_ATA) {
338         // ATA 一般为硬盘
339         sata_create_fis(cmd_fis, ATA_IDENTIFY_DEVICE, 0, 0);
340     } else {
341         // ATAPI 一般为光驱,软驱,或者磁带机
342         port->device->flags |= HBA_DEV_FATAPI;
343         sata_create_fis(cmd_fis, ATA_IDENTIFY_PAKCET_DEVICE, 0, 0);
344     }
345
346     if (!ahci_try_send(port, slot)) {
347         goto fail;
348     }
349
350     /*
351         等待数据到达内存
352         解析IDENTIFY DEVICE传回来的数据。
353           参考:
354             * ATA/ATAPI Command Set - 3 (ACS-3), Section 7.12.7
355     */
356     ahci_parse_dev_info(port->device, data_in);
357
358     if (!(port->device->flags & HBA_DEV_FATAPI)) {
359         goto done;
360     }
361
362     /*
363         注意:ATAPI设备是无法通过IDENTIFY PACKET DEVICE 获取容量信息的。
364         我们需要使用SCSI命令的READ_CAPACITY(16)进行获取。
365         步骤如下:
366             1. 因为ATAPI走的是SCSI,而AHCI对此专门进行了SATA的封装,
367                也就是通过SATA的PACKET命令对SCSI命令进行封装。所以我们
368                首先需要构建一个PACKET命令的FIS
369             2. 接着,在ACMD中构建命令READ_CAPACITY的CDB - 一种SCSI命令的封装
370             3. 然后把cmd_header->options的A位置位,表示这是一个送往ATAPI的命令。
371                 一点细节:
372                     1. HBA往底层SATA控制器发送PACKET FIS
373                     2. SATA控制器回复PIO Setup FIS
374                     3. HBA读入ACMD中的CDB,打包成Data FIS进行答复
375                     4. SATA控制器解包,拿到CDB,通过SCSI协议转发往ATAPI设备。
376                     5. ATAPI设备回复Return Parameter,SATA通过DMA Setup FIS
377                        发起DMA请求,HBA介入,将Return Parameter写入我们在PRDT
378                        里设置的data_in位置。
379             4. 最后照常等待HBA把结果写入data_in,然后直接解析就好了。
380           参考:
381             * ATA/ATAPI Command Set - 3 (ACS-3), Section 7.18
382             * SATA AHCI HBA Spec, Section 5.3.7
383             * SCSI Command Reference Manual, Section 3.26
384     */
385
386     sata_create_fis(cmd_fis, ATA_PACKET, 512 << 8, 0);
387
388     // for dev use 12 bytes cdb, READ_CAPACITY must use the 10 bytes variation.
389     if (port->device->cbd_size == SCSI_CDB12) {
390         struct scsi_cdb12* cdb12 = (struct scsi_cdb12*)cmd_table->atapi_cmd;
391         // ugly tricks to construct 10 byte cdb from 12 byte cdb
392         scsi_create_packet12(cdb12, SCSI_READ_CAPACITY_10, 0, 512 << 8);
393     } else {
394         struct scsi_cdb16* cdb16 = (struct scsi_cdb16*)cmd_table->atapi_cmd;
395         scsi_create_packet16(cdb16, SCSI_READ_CAPACITY_16, 0, 512);
396         cdb16->misc1 = 0x10; // service action
397     }
398
399     cmd_header->transferred_size = 0;
400     cmd_header->options |= HBA_CMDH_ATAPI;
401
402     if (!ahci_try_send(port, slot)) {
403         goto fail;
404     }
405
406     scsi_parse_capacity(port->device, (u32_t*)data_in);
407
408 done:
409     // reset interrupt status and unmask D2HR interrupt
410     port->regs[HBA_RPxIE] |= HBA_MY_IE;
411     achi_register_ops(port);
412
413     vfree_dma(data_in);
414     vfree_dma(cmd_table);
415
416     return 1;
417
418 fail:
419     port->regs[HBA_RPxIE] |= HBA_MY_IE;
420     vfree_dma(data_in);
421     vfree_dma(cmd_table);
422
423     return 0;
424 }
425
426 int
427 ahci_identify_device(struct hba_device* device)
428 {
429     // 用于重新识别设备(比如在热插拔的情况下)
430     vfree(device);
431     return ahci_init_device(device->port);
432 }
433
434 void
435 achi_register_ops(struct hba_port* port)
436 {
437     port->device->ops.identify = ahci_identify_device;
438     if (!(port->device->flags & HBA_DEV_FATAPI)) {
439         port->device->ops.submit = sata_submit;
440     } else {
441         port->device->ops.submit = scsi_submit;
442     }
443 }
444
445 static struct pci_device_def ahcidef = {
446     .dev_class = AHCI_HBA_CLASS,
447     .ident_mask = PCI_MATCH_ANY,
448     .devdef = { .class = DEVCLASS(DEVIF_PCI, DEVFN_STORAGE, DEV_SATA),
449                 .name = "Serial ATA Controller",
450                 .init_for = ahci_driver_init }
451 };
452 EXPORT_PCI_DEVICE(ahci, &ahcidef);