xref: /openbmc/qemu/hw/sd/ssi-sd.c (revision db725815)
1 /*
2  * SSI to SD card adapter.
3  *
4  * Copyright (c) 2007-2009 CodeSourcery.
5  * Written by Paul Brook
6  *
7  * This code is licensed under the GNU GPL v2.
8  *
9  * Contributions after 2012-01-13 are licensed under the terms of the
10  * GNU GPL, version 2 or (at your option) any later version.
11  */
12 
13 #include "qemu/osdep.h"
14 #include "sysemu/blockdev.h"
15 #include "hw/ssi/ssi.h"
16 #include "migration/vmstate.h"
17 #include "hw/sd/sd.h"
18 #include "qapi/error.h"
19 #include "qemu/module.h"
20 
21 //#define DEBUG_SSI_SD 1
22 
23 #ifdef DEBUG_SSI_SD
24 #define DPRINTF(fmt, ...) \
25 do { printf("ssi_sd: " fmt , ## __VA_ARGS__); } while (0)
26 #define BADF(fmt, ...) \
27 do { fprintf(stderr, "ssi_sd: error: " fmt , ## __VA_ARGS__); exit(1);} while (0)
28 #else
29 #define DPRINTF(fmt, ...) do {} while(0)
30 #define BADF(fmt, ...) \
31 do { fprintf(stderr, "ssi_sd: error: " fmt , ## __VA_ARGS__);} while (0)
32 #endif
33 
34 typedef enum {
35     SSI_SD_CMD = 0,
36     SSI_SD_CMDARG,
37     SSI_SD_RESPONSE,
38     SSI_SD_DATA_START,
39     SSI_SD_DATA_READ,
40 } ssi_sd_mode;
41 
42 typedef struct {
43     SSISlave ssidev;
44     uint32_t mode;
45     int cmd;
46     uint8_t cmdarg[4];
47     uint8_t response[5];
48     int32_t arglen;
49     int32_t response_pos;
50     int32_t stopping;
51     SDBus sdbus;
52 } ssi_sd_state;
53 
54 #define TYPE_SSI_SD "ssi-sd"
55 #define SSI_SD(obj) OBJECT_CHECK(ssi_sd_state, (obj), TYPE_SSI_SD)
56 
57 /* State word bits.  */
58 #define SSI_SDR_LOCKED          0x0001
59 #define SSI_SDR_WP_ERASE        0x0002
60 #define SSI_SDR_ERROR           0x0004
61 #define SSI_SDR_CC_ERROR        0x0008
62 #define SSI_SDR_ECC_FAILED      0x0010
63 #define SSI_SDR_WP_VIOLATION    0x0020
64 #define SSI_SDR_ERASE_PARAM     0x0040
65 #define SSI_SDR_OUT_OF_RANGE    0x0080
66 #define SSI_SDR_IDLE            0x0100
67 #define SSI_SDR_ERASE_RESET     0x0200
68 #define SSI_SDR_ILLEGAL_COMMAND 0x0400
69 #define SSI_SDR_COM_CRC_ERROR   0x0800
70 #define SSI_SDR_ERASE_SEQ_ERROR 0x1000
71 #define SSI_SDR_ADDRESS_ERROR   0x2000
72 #define SSI_SDR_PARAMETER_ERROR 0x4000
73 
74 static uint32_t ssi_sd_transfer(SSISlave *dev, uint32_t val)
75 {
76     ssi_sd_state *s = FROM_SSI_SLAVE(ssi_sd_state, dev);
77 
78     /* Special case: allow CMD12 (STOP TRANSMISSION) while reading data.  */
79     if (s->mode == SSI_SD_DATA_READ && val == 0x4d) {
80         s->mode = SSI_SD_CMD;
81         /* There must be at least one byte delay before the card responds.  */
82         s->stopping = 1;
83     }
84 
85     switch (s->mode) {
86     case SSI_SD_CMD:
87         if (val == 0xff) {
88             DPRINTF("NULL command\n");
89             return 0xff;
90         }
91         s->cmd = val & 0x3f;
92         s->mode = SSI_SD_CMDARG;
93         s->arglen = 0;
94         return 0xff;
95     case SSI_SD_CMDARG:
96         if (s->arglen == 4) {
97             SDRequest request;
98             uint8_t longresp[16];
99             /* FIXME: Check CRC.  */
100             request.cmd = s->cmd;
101             request.arg = ldl_be_p(s->cmdarg);
102             DPRINTF("CMD%d arg 0x%08x\n", s->cmd, request.arg);
103             s->arglen = sdbus_do_command(&s->sdbus, &request, longresp);
104             if (s->arglen <= 0) {
105                 s->arglen = 1;
106                 s->response[0] = 4;
107                 DPRINTF("SD command failed\n");
108             } else if (s->cmd == 58) {
109                 /* CMD58 returns R3 response (OCR)  */
110                 DPRINTF("Returned OCR\n");
111                 s->arglen = 5;
112                 s->response[0] = 1;
113                 memcpy(&s->response[1], longresp, 4);
114             } else if (s->arglen != 4) {
115                 BADF("Unexpected response to cmd %d\n", s->cmd);
116                 /* Illegal command is about as near as we can get.  */
117                 s->arglen = 1;
118                 s->response[0] = 4;
119             } else {
120                 /* All other commands return status.  */
121                 uint32_t cardstatus;
122                 uint16_t status;
123                 /* CMD13 returns a 2-byte statuse work. Other commands
124                    only return the first byte.  */
125                 s->arglen = (s->cmd == 13) ? 2 : 1;
126                 cardstatus = ldl_be_p(longresp);
127                 status = 0;
128                 if (((cardstatus >> 9) & 0xf) < 4)
129                     status |= SSI_SDR_IDLE;
130                 if (cardstatus & ERASE_RESET)
131                     status |= SSI_SDR_ERASE_RESET;
132                 if (cardstatus & ILLEGAL_COMMAND)
133                     status |= SSI_SDR_ILLEGAL_COMMAND;
134                 if (cardstatus & COM_CRC_ERROR)
135                     status |= SSI_SDR_COM_CRC_ERROR;
136                 if (cardstatus & ERASE_SEQ_ERROR)
137                     status |= SSI_SDR_ERASE_SEQ_ERROR;
138                 if (cardstatus & ADDRESS_ERROR)
139                     status |= SSI_SDR_ADDRESS_ERROR;
140                 if (cardstatus & CARD_IS_LOCKED)
141                     status |= SSI_SDR_LOCKED;
142                 if (cardstatus & (LOCK_UNLOCK_FAILED | WP_ERASE_SKIP))
143                     status |= SSI_SDR_WP_ERASE;
144                 if (cardstatus & SD_ERROR)
145                     status |= SSI_SDR_ERROR;
146                 if (cardstatus & CC_ERROR)
147                     status |= SSI_SDR_CC_ERROR;
148                 if (cardstatus & CARD_ECC_FAILED)
149                     status |= SSI_SDR_ECC_FAILED;
150                 if (cardstatus & WP_VIOLATION)
151                     status |= SSI_SDR_WP_VIOLATION;
152                 if (cardstatus & ERASE_PARAM)
153                     status |= SSI_SDR_ERASE_PARAM;
154                 if (cardstatus & (OUT_OF_RANGE | CID_CSD_OVERWRITE))
155                     status |= SSI_SDR_OUT_OF_RANGE;
156                 /* ??? Don't know what Parameter Error really means, so
157                    assume it's set if the second byte is nonzero.  */
158                 if (status & 0xff)
159                     status |= SSI_SDR_PARAMETER_ERROR;
160                 s->response[0] = status >> 8;
161                 s->response[1] = status;
162                 DPRINTF("Card status 0x%02x\n", status);
163             }
164             s->mode = SSI_SD_RESPONSE;
165             s->response_pos = 0;
166         } else {
167             s->cmdarg[s->arglen++] = val;
168         }
169         return 0xff;
170     case SSI_SD_RESPONSE:
171         if (s->stopping) {
172             s->stopping = 0;
173             return 0xff;
174         }
175         if (s->response_pos < s->arglen) {
176             DPRINTF("Response 0x%02x\n", s->response[s->response_pos]);
177             return s->response[s->response_pos++];
178         }
179         if (sdbus_data_ready(&s->sdbus)) {
180             DPRINTF("Data read\n");
181             s->mode = SSI_SD_DATA_START;
182         } else {
183             DPRINTF("End of command\n");
184             s->mode = SSI_SD_CMD;
185         }
186         return 0xff;
187     case SSI_SD_DATA_START:
188         DPRINTF("Start read block\n");
189         s->mode = SSI_SD_DATA_READ;
190         return 0xfe;
191     case SSI_SD_DATA_READ:
192         val = sdbus_read_data(&s->sdbus);
193         if (!sdbus_data_ready(&s->sdbus)) {
194             DPRINTF("Data read end\n");
195             s->mode = SSI_SD_CMD;
196         }
197         return val;
198     }
199     /* Should never happen.  */
200     return 0xff;
201 }
202 
203 static int ssi_sd_post_load(void *opaque, int version_id)
204 {
205     ssi_sd_state *s = (ssi_sd_state *)opaque;
206 
207     if (s->mode > SSI_SD_DATA_READ) {
208         return -EINVAL;
209     }
210     if (s->mode == SSI_SD_CMDARG &&
211         (s->arglen < 0 || s->arglen >= ARRAY_SIZE(s->cmdarg))) {
212         return -EINVAL;
213     }
214     if (s->mode == SSI_SD_RESPONSE &&
215         (s->response_pos < 0 || s->response_pos >= ARRAY_SIZE(s->response) ||
216         (!s->stopping && s->arglen > ARRAY_SIZE(s->response)))) {
217         return -EINVAL;
218     }
219 
220     return 0;
221 }
222 
223 static const VMStateDescription vmstate_ssi_sd = {
224     .name = "ssi_sd",
225     .version_id = 2,
226     .minimum_version_id = 2,
227     .post_load = ssi_sd_post_load,
228     .fields = (VMStateField []) {
229         VMSTATE_UINT32(mode, ssi_sd_state),
230         VMSTATE_INT32(cmd, ssi_sd_state),
231         VMSTATE_UINT8_ARRAY(cmdarg, ssi_sd_state, 4),
232         VMSTATE_UINT8_ARRAY(response, ssi_sd_state, 5),
233         VMSTATE_INT32(arglen, ssi_sd_state),
234         VMSTATE_INT32(response_pos, ssi_sd_state),
235         VMSTATE_INT32(stopping, ssi_sd_state),
236         VMSTATE_SSI_SLAVE(ssidev, ssi_sd_state),
237         VMSTATE_END_OF_LIST()
238     }
239 };
240 
241 static void ssi_sd_realize(SSISlave *d, Error **errp)
242 {
243     ssi_sd_state *s = FROM_SSI_SLAVE(ssi_sd_state, d);
244     DeviceState *carddev;
245     DriveInfo *dinfo;
246     Error *err = NULL;
247 
248     qbus_create_inplace(&s->sdbus, sizeof(s->sdbus), TYPE_SD_BUS,
249                         DEVICE(d), "sd-bus");
250 
251     /* Create and plug in the sd card */
252     /* FIXME use a qdev drive property instead of drive_get_next() */
253     dinfo = drive_get_next(IF_SD);
254     carddev = qdev_create(BUS(&s->sdbus), TYPE_SD_CARD);
255     if (dinfo) {
256         qdev_prop_set_drive(carddev, "drive", blk_by_legacy_dinfo(dinfo), &err);
257     }
258     object_property_set_bool(OBJECT(carddev), true, "spi", &err);
259     object_property_set_bool(OBJECT(carddev), true, "realized", &err);
260     if (err) {
261         error_setg(errp, "failed to init SD card: %s", error_get_pretty(err));
262         return;
263     }
264 }
265 
266 static void ssi_sd_reset(DeviceState *dev)
267 {
268     ssi_sd_state *s = SSI_SD(dev);
269 
270     s->mode = SSI_SD_CMD;
271     s->cmd = 0;
272     memset(s->cmdarg, 0, sizeof(s->cmdarg));
273     memset(s->response, 0, sizeof(s->response));
274     s->arglen = 0;
275     s->response_pos = 0;
276     s->stopping = 0;
277 }
278 
279 static void ssi_sd_class_init(ObjectClass *klass, void *data)
280 {
281     DeviceClass *dc = DEVICE_CLASS(klass);
282     SSISlaveClass *k = SSI_SLAVE_CLASS(klass);
283 
284     k->realize = ssi_sd_realize;
285     k->transfer = ssi_sd_transfer;
286     k->cs_polarity = SSI_CS_LOW;
287     dc->vmsd = &vmstate_ssi_sd;
288     dc->reset = ssi_sd_reset;
289     /* Reason: init() method uses drive_get_next() */
290     dc->user_creatable = false;
291 }
292 
293 static const TypeInfo ssi_sd_info = {
294     .name          = TYPE_SSI_SD,
295     .parent        = TYPE_SSI_SLAVE,
296     .instance_size = sizeof(ssi_sd_state),
297     .class_init    = ssi_sd_class_init,
298 };
299 
300 static void ssi_sd_register_types(void)
301 {
302     type_register_static(&ssi_sd_info);
303 }
304 
305 type_init(ssi_sd_register_types)
306