bus/fslmc: sanitize device name parsing for clarity
[dpdk.git] / drivers / bus / fslmc / fslmc_bus.c
1 /* SPDX-License-Identifier: BSD-3-Clause
2  *
3  *   Copyright 2016,2018-2019 NXP
4  *
5  */
6
7 #include <string.h>
8 #include <dirent.h>
9 #include <stdbool.h>
10
11 #include <rte_log.h>
12 #include <rte_bus.h>
13 #include <rte_malloc.h>
14 #include <rte_devargs.h>
15 #include <rte_memcpy.h>
16 #include <rte_ethdev_driver.h>
17
18 #include <rte_fslmc.h>
19 #include <fslmc_vfio.h>
20 #include "fslmc_logs.h"
21
22 #include <dpaax_iova_table.h>
23
24 int dpaa2_logtype_bus;
25
26 #define VFIO_IOMMU_GROUP_PATH "/sys/kernel/iommu_groups"
27 #define FSLMC_BUS_NAME  fslmc
28
29 struct rte_fslmc_bus rte_fslmc_bus;
30 uint8_t dpaa2_virt_mode;
31
32 uint32_t
33 rte_fslmc_get_device_count(enum rte_dpaa2_dev_type device_type)
34 {
35         if (device_type >= DPAA2_DEVTYPE_MAX)
36                 return 0;
37         return rte_fslmc_bus.device_count[device_type];
38 }
39
40 RTE_DEFINE_PER_LCORE(struct dpaa2_portal_dqrr, dpaa2_held_bufs);
41
42 static void
43 cleanup_fslmc_device_list(void)
44 {
45         struct rte_dpaa2_device *dev;
46         struct rte_dpaa2_device *t_dev;
47
48         TAILQ_FOREACH_SAFE(dev, &rte_fslmc_bus.device_list, next, t_dev) {
49                 TAILQ_REMOVE(&rte_fslmc_bus.device_list, dev, next);
50                 free(dev);
51                 dev = NULL;
52         }
53 }
54
55 static int
56 compare_dpaa2_devname(struct rte_dpaa2_device *dev1,
57                       struct rte_dpaa2_device *dev2)
58 {
59         int comp;
60
61         if (dev1->dev_type > dev2->dev_type) {
62                 comp = 1;
63         } else if (dev1->dev_type < dev2->dev_type) {
64                 comp = -1;
65         } else {
66                 /* Check the ID as types match */
67                 if (dev1->object_id > dev2->object_id)
68                         comp = 1;
69                 else if (dev1->object_id < dev2->object_id)
70                         comp = -1;
71                 else
72                         comp = 0; /* Duplicate device name */
73         }
74
75         return comp;
76 }
77
78 static void
79 insert_in_device_list(struct rte_dpaa2_device *newdev)
80 {
81         int comp, inserted = 0;
82         struct rte_dpaa2_device *dev = NULL;
83         struct rte_dpaa2_device *tdev = NULL;
84
85         TAILQ_FOREACH_SAFE(dev, &rte_fslmc_bus.device_list, next, tdev) {
86                 comp = compare_dpaa2_devname(newdev, dev);
87                 if (comp < 0) {
88                         TAILQ_INSERT_BEFORE(dev, newdev, next);
89                         inserted = 1;
90                         break;
91                 }
92         }
93
94         if (!inserted)
95                 TAILQ_INSERT_TAIL(&rte_fslmc_bus.device_list, newdev, next);
96 }
97
98 static struct rte_devargs *
99 fslmc_devargs_lookup(struct rte_dpaa2_device *dev)
100 {
101         struct rte_devargs *devargs;
102         char dev_name[32];
103
104         RTE_EAL_DEVARGS_FOREACH("fslmc", devargs) {
105                 devargs->bus->parse(devargs->name, &dev_name);
106                 if (strcmp(dev_name, dev->device.name) == 0) {
107                         DPAA2_BUS_INFO("**Devargs matched %s", dev_name);
108                         return devargs;
109                 }
110         }
111         return NULL;
112 }
113
114 static void
115 dump_device_list(void)
116 {
117         struct rte_dpaa2_device *dev;
118         uint32_t global_log_level;
119         int local_log_level;
120
121         /* Only if the log level has been set to Debugging, print list */
122         global_log_level = rte_log_get_global_level();
123         local_log_level = rte_log_get_level(dpaa2_logtype_bus);
124         if (global_log_level == RTE_LOG_DEBUG ||
125             local_log_level == RTE_LOG_DEBUG) {
126                 DPAA2_BUS_LOG(DEBUG, "List of devices scanned on bus:");
127                 TAILQ_FOREACH(dev, &rte_fslmc_bus.device_list, next) {
128                         DPAA2_BUS_LOG(DEBUG, "\t\t%s", dev->device.name);
129                 }
130         }
131 }
132
133 static int
134 scan_one_fslmc_device(char *dev_name)
135 {
136         char *dup_dev_name, *t_ptr;
137         struct rte_dpaa2_device *dev = NULL;
138         int ret = -1;
139
140         if (!dev_name)
141                 return ret;
142
143         /* Ignore the Container name itself */
144         if (!strncmp("dprc", dev_name, 4))
145                 return 0;
146
147         /* Creating a temporary copy to perform cut-parse over string */
148         dup_dev_name = strdup(dev_name);
149         if (!dup_dev_name) {
150                 DPAA2_BUS_ERR("Unable to allocate device name memory");
151                 return -ENOMEM;
152         }
153
154         /* For all other devices, we allocate rte_dpaa2_device.
155          * For those devices where there is no driver, probe would release
156          * the memory associated with the rte_dpaa2_device after necessary
157          * initialization.
158          */
159         dev = calloc(1, sizeof(struct rte_dpaa2_device));
160         if (!dev) {
161                 DPAA2_BUS_ERR("Unable to allocate device object");
162                 free(dup_dev_name);
163                 return -ENOMEM;
164         }
165
166         dev->device.bus = &rte_fslmc_bus.bus;
167
168         /* Parse the device name and ID */
169         t_ptr = strtok(dup_dev_name, ".");
170         if (!t_ptr) {
171                 DPAA2_BUS_ERR("Invalid device found: (%s)", dup_dev_name);
172                 ret = -EINVAL;
173                 goto cleanup;
174         }
175         if (!strncmp("dpni", t_ptr, 4))
176                 dev->dev_type = DPAA2_ETH;
177         else if (!strncmp("dpseci", t_ptr, 6))
178                 dev->dev_type = DPAA2_CRYPTO;
179         else if (!strncmp("dpcon", t_ptr, 5))
180                 dev->dev_type = DPAA2_CON;
181         else if (!strncmp("dpbp", t_ptr, 4))
182                 dev->dev_type = DPAA2_BPOOL;
183         else if (!strncmp("dpio", t_ptr, 4))
184                 dev->dev_type = DPAA2_IO;
185         else if (!strncmp("dpci", t_ptr, 4))
186                 dev->dev_type = DPAA2_CI;
187         else if (!strncmp("dpmcp", t_ptr, 5))
188                 dev->dev_type = DPAA2_MPORTAL;
189         else if (!strncmp("dpdmai", t_ptr, 6))
190                 dev->dev_type = DPAA2_QDMA;
191         else if (!strncmp("dpdmux", t_ptr, 6))
192                 dev->dev_type = DPAA2_MUX;
193         else if (!strncmp("dprtc", t_ptr, 5))
194                 dev->dev_type = DPAA2_DPRTC;
195         else
196                 dev->dev_type = DPAA2_UNKNOWN;
197
198         t_ptr = strtok(NULL, ".");
199         if (!t_ptr) {
200                 DPAA2_BUS_ERR("Skipping invalid device (%s)", dup_dev_name);
201                 ret = 0;
202                 goto cleanup;
203         }
204
205         sscanf(t_ptr, "%hu", &dev->object_id);
206         dev->device.name = strdup(dev_name);
207         if (!dev->device.name) {
208                 DPAA2_BUS_ERR("Unable to clone device name. Out of memory");
209                 ret = -ENOMEM;
210                 goto cleanup;
211         }
212         dev->device.devargs = fslmc_devargs_lookup(dev);
213
214         /* Update the device found into the device_count table */
215         rte_fslmc_bus.device_count[dev->dev_type]++;
216
217         /* Add device in the fslmc device list */
218         insert_in_device_list(dev);
219
220         /* Don't need the duplicated device filesystem entry anymore */
221         if (dup_dev_name)
222                 free(dup_dev_name);
223
224         return 0;
225 cleanup:
226         if (dup_dev_name)
227                 free(dup_dev_name);
228         if (dev)
229                 free(dev);
230         return ret;
231 }
232
233 static int
234 rte_fslmc_parse(const char *name, void *addr)
235 {
236         uint16_t dev_id;
237         char *t_ptr;
238         const char *sep;
239         uint8_t sep_exists = 0;
240         int ret = -1;
241
242         DPAA2_BUS_DEBUG("Parsing dev=(%s)", name);
243
244         /* There are multiple ways this can be called, with bus:dev, name=dev
245          * or just dev. In all cases, the 'addr' is actually a string.
246          */
247         sep = strchr(name, ':');
248         if (!sep) {
249                 /* check for '=' */
250                 sep = strchr(name, '=');
251                 if (!sep)
252                         sep_exists = 0;
253                 else
254                         sep_exists = 1;
255         } else
256                 sep_exists = 1;
257
258         /* Check if starting part if either of 'fslmc:' or 'name=', separator
259          * exists.
260          */
261         if (sep_exists) {
262                 /* If either of "fslmc" or "name" are starting part */
263                 if (!strncmp(name, RTE_STR(FSLMC_BUS_NAME),
264                              strlen(RTE_STR(FSLMC_BUS_NAME))) ||
265                    (!strncmp(name, "name", strlen("name")))) {
266                         goto jump_out;
267                 } else {
268                         DPAA2_BUS_DEBUG("Invalid device for matching (%s).",
269                                         name);
270                         ret = -EINVAL;
271                         goto err_out;
272                 }
273         } else
274                 sep = name;
275
276 jump_out:
277         /* Validate device name */
278         if (strncmp("dpni", sep, 4) &&
279             strncmp("dpseci", sep, 6) &&
280             strncmp("dpcon", sep, 5) &&
281             strncmp("dpbp", sep, 4) &&
282             strncmp("dpio", sep, 4) &&
283             strncmp("dpci", sep, 4) &&
284             strncmp("dpmcp", sep, 5) &&
285             strncmp("dpdmai", sep, 6) &&
286             strncmp("dpdmux", sep, 6)) {
287                 DPAA2_BUS_DEBUG("Unknown or unsupported device (%s)", sep);
288                 ret = -EINVAL;
289                 goto err_out;
290         }
291
292         t_ptr = strchr(sep, '.');
293         if (!t_ptr || sscanf(t_ptr + 1, "%hu", &dev_id) != 1) {
294                 DPAA2_BUS_ERR("Missing device id in device name (%s)", sep);
295                 ret = -EINVAL;
296                 goto err_out;
297         }
298
299         if (addr)
300                 strcpy(addr, sep);
301
302         ret = 0;
303 err_out:
304         return ret;
305 }
306
307 static int
308 rte_fslmc_scan(void)
309 {
310         int ret;
311         int device_count = 0;
312         char fslmc_dirpath[PATH_MAX];
313         DIR *dir;
314         struct dirent *entry;
315         static int process_once;
316         int groupid;
317
318         if (process_once) {
319                 DPAA2_BUS_DEBUG("Fslmc bus already scanned. Not rescanning");
320                 return 0;
321         }
322         process_once = 1;
323
324         ret = fslmc_get_container_group(&groupid);
325         if (ret != 0)
326                 goto scan_fail;
327
328         /* Scan devices on the group */
329         sprintf(fslmc_dirpath, "%s/%s", SYSFS_FSL_MC_DEVICES, fslmc_container);
330         dir = opendir(fslmc_dirpath);
331         if (!dir) {
332                 DPAA2_BUS_ERR("Unable to open VFIO group directory");
333                 goto scan_fail;
334         }
335
336         while ((entry = readdir(dir)) != NULL) {
337                 if (entry->d_name[0] == '.' || entry->d_type != DT_DIR)
338                         continue;
339
340                 ret = scan_one_fslmc_device(entry->d_name);
341                 if (ret != 0) {
342                         /* Error in parsing directory - exit gracefully */
343                         goto scan_fail_cleanup;
344                 }
345                 device_count += 1;
346         }
347
348         closedir(dir);
349
350         DPAA2_BUS_INFO("FSLMC Bus scan completed");
351         /* If debugging is enabled, device list is dumped to log output */
352         dump_device_list();
353
354         return 0;
355
356 scan_fail_cleanup:
357         closedir(dir);
358
359         /* Remove all devices in the list */
360         cleanup_fslmc_device_list();
361 scan_fail:
362         DPAA2_BUS_DEBUG("FSLMC Bus Not Available. Skipping (%d)", ret);
363         /* Irrespective of failure, scan only return success */
364         return 0;
365 }
366
367 static int
368 rte_fslmc_match(struct rte_dpaa2_driver *dpaa2_drv,
369                 struct rte_dpaa2_device *dpaa2_dev)
370 {
371         if (dpaa2_drv->drv_type == dpaa2_dev->dev_type)
372                 return 0;
373
374         return 1;
375 }
376
377 static int
378 rte_fslmc_probe(void)
379 {
380         int ret = 0;
381         int probe_all;
382
383         struct rte_dpaa2_device *dev;
384         struct rte_dpaa2_driver *drv;
385
386         if (TAILQ_EMPTY(&rte_fslmc_bus.device_list))
387                 return 0;
388
389         ret = fslmc_vfio_setup_group();
390         if (ret) {
391                 DPAA2_BUS_ERR("Unable to setup VFIO %d", ret);
392                 return 0;
393         }
394
395         /* Map existing segments as well as, in case of hotpluggable memory,
396          * install callback handler.
397          */
398         if (rte_eal_process_type() == RTE_PROC_PRIMARY) {
399                 ret = rte_fslmc_vfio_dmamap();
400                 if (ret) {
401                         DPAA2_BUS_ERR("Unable to DMA map existing VAs: (%d)",
402                                       ret);
403                         /* Not continuing ahead */
404                         DPAA2_BUS_ERR("FSLMC VFIO Mapping failed");
405                         return 0;
406                 }
407         }
408
409         ret = fslmc_vfio_process_group();
410         if (ret) {
411                 DPAA2_BUS_ERR("Unable to setup devices %d", ret);
412                 return 0;
413         }
414
415         probe_all = rte_fslmc_bus.bus.conf.scan_mode != RTE_BUS_SCAN_WHITELIST;
416
417         /* In case of PA, the FD addresses returned by qbman APIs are physical
418          * addresses, which need conversion into equivalent VA address for
419          * rte_mbuf. For that, a table (a serial array, in memory) is used to
420          * increase translation efficiency.
421          * This has to be done before probe as some device initialization
422          * (during) probe allocate memory (dpaa2_sec) which needs to be pinned
423          * to this table.
424          *
425          * Error is ignored as relevant logs are handled within dpaax and
426          * handling for unavailable dpaax table too is transparent to caller.
427          *
428          * And, the IOVA table is only applicable in case of PA mode.
429          */
430         if (rte_eal_iova_mode() == RTE_IOVA_PA)
431                 dpaax_iova_table_populate();
432
433         TAILQ_FOREACH(dev, &rte_fslmc_bus.device_list, next) {
434                 TAILQ_FOREACH(drv, &rte_fslmc_bus.driver_list, next) {
435                         ret = rte_fslmc_match(drv, dev);
436                         if (ret)
437                                 continue;
438
439                         if (!drv->probe)
440                                 continue;
441
442                         if (rte_dev_is_probed(&dev->device))
443                                 continue;
444
445                         if (dev->device.devargs &&
446                           dev->device.devargs->policy == RTE_DEV_BLACKLISTED) {
447                                 DPAA2_BUS_LOG(DEBUG, "%s Blacklisted, skipping",
448                                               dev->device.name);
449                                 continue;
450                         }
451
452                         if (probe_all ||
453                            (dev->device.devargs &&
454                            dev->device.devargs->policy ==
455                            RTE_DEV_WHITELISTED)) {
456                                 ret = drv->probe(drv, dev);
457                                 if (ret) {
458                                         DPAA2_BUS_ERR("Unable to probe");
459                                 } else {
460                                         dev->driver = drv;
461                                         dev->device.driver = &drv->driver;
462                                 }
463                         }
464                         break;
465                 }
466         }
467
468         if (rte_eal_iova_mode() == RTE_IOVA_VA)
469                 dpaa2_virt_mode = 1;
470
471         return 0;
472 }
473
474 static struct rte_device *
475 rte_fslmc_find_device(const struct rte_device *start, rte_dev_cmp_t cmp,
476                       const void *data)
477 {
478         const struct rte_dpaa2_device *dstart;
479         struct rte_dpaa2_device *dev;
480
481         DPAA2_BUS_DEBUG("Finding a device named %s\n", (const char *)data);
482
483         /* find_device is always called with an opaque object which should be
484          * passed along to the 'cmp' function iterating over all device obj
485          * on the bus.
486          */
487
488         if (start != NULL) {
489                 dstart = RTE_DEV_TO_FSLMC_CONST(start);
490                 dev = TAILQ_NEXT(dstart, next);
491         } else {
492                 dev = TAILQ_FIRST(&rte_fslmc_bus.device_list);
493         }
494         while (dev != NULL) {
495                 if (cmp(&dev->device, data) == 0) {
496                         DPAA2_BUS_DEBUG("Found device (%s)\n",
497                                         dev->device.name);
498                         return &dev->device;
499                 }
500                 dev = TAILQ_NEXT(dev, next);
501         }
502
503         return NULL;
504 }
505
506 /*register a fslmc bus based dpaa2 driver */
507 void
508 rte_fslmc_driver_register(struct rte_dpaa2_driver *driver)
509 {
510         RTE_VERIFY(driver);
511
512         TAILQ_INSERT_TAIL(&rte_fslmc_bus.driver_list, driver, next);
513         /* Update Bus references */
514         driver->fslmc_bus = &rte_fslmc_bus;
515 }
516
517 /*un-register a fslmc bus based dpaa2 driver */
518 void
519 rte_fslmc_driver_unregister(struct rte_dpaa2_driver *driver)
520 {
521         struct rte_fslmc_bus *fslmc_bus;
522
523         fslmc_bus = driver->fslmc_bus;
524
525         /* Cleanup the PA->VA Translation table; From whereever this function
526          * is called from.
527          */
528         if (rte_eal_iova_mode() == RTE_IOVA_PA)
529                 dpaax_iova_table_depopulate();
530
531         TAILQ_REMOVE(&fslmc_bus->driver_list, driver, next);
532         /* Update Bus references */
533         driver->fslmc_bus = NULL;
534 }
535
536 /*
537  * All device has iova as va
538  */
539 static inline int
540 fslmc_all_device_support_iova(void)
541 {
542         int ret = 0;
543         struct rte_dpaa2_device *dev;
544         struct rte_dpaa2_driver *drv;
545
546         TAILQ_FOREACH(dev, &rte_fslmc_bus.device_list, next) {
547                 TAILQ_FOREACH(drv, &rte_fslmc_bus.driver_list, next) {
548                         ret = rte_fslmc_match(drv, dev);
549                         if (ret)
550                                 continue;
551                         /* if the driver is not supporting IOVA */
552                         if (!(drv->drv_flags & RTE_DPAA2_DRV_IOVA_AS_VA))
553                                 return 0;
554                 }
555         }
556         return 1;
557 }
558
559 /*
560  * Get iommu class of DPAA2 devices on the bus.
561  */
562 static enum rte_iova_mode
563 rte_dpaa2_get_iommu_class(void)
564 {
565         bool is_vfio_noiommu_enabled = 1;
566         bool has_iova_va;
567
568         if (TAILQ_EMPTY(&rte_fslmc_bus.device_list))
569                 return RTE_IOVA_DC;
570
571 #ifdef RTE_LIBRTE_DPAA2_USE_PHYS_IOVA
572         return RTE_IOVA_PA;
573 #endif
574
575         /* check if all devices on the bus support Virtual addressing or not */
576         has_iova_va = fslmc_all_device_support_iova();
577
578 #ifdef VFIO_PRESENT
579         is_vfio_noiommu_enabled = rte_vfio_noiommu_is_enabled() == true ?
580                                                 true : false;
581 #endif
582
583         if (has_iova_va && !is_vfio_noiommu_enabled)
584                 return RTE_IOVA_VA;
585
586         return RTE_IOVA_PA;
587 }
588
589 static int
590 fslmc_bus_plug(struct rte_device *dev __rte_unused)
591 {
592         /* No operation is performed while plugging the device */
593         return 0;
594 }
595
596 static int
597 fslmc_bus_unplug(struct rte_device *dev __rte_unused)
598 {
599         /* No operation is performed while unplugging the device */
600         return 0;
601 }
602
603 static void *
604 fslmc_bus_dev_iterate(const void *start, const char *str,
605                       const struct rte_dev_iterator *it __rte_unused)
606 {
607         const struct rte_dpaa2_device *dstart;
608         struct rte_dpaa2_device *dev;
609         char *dup, *dev_name = NULL;
610
611         /* Expectation is that device would be name=device_name */
612         if (strncmp(str, "name=", 5) != 0) {
613                 DPAA2_BUS_DEBUG("Invalid device string (%s)\n", str);
614                 return NULL;
615         }
616
617         /* Now that name=device_name format is available, split */
618         dup = strdup(str);
619         dev_name = dup + strlen("name=");
620
621         if (start != NULL) {
622                 dstart = RTE_DEV_TO_FSLMC_CONST(start);
623                 dev = TAILQ_NEXT(dstart, next);
624         } else {
625                 dev = TAILQ_FIRST(&rte_fslmc_bus.device_list);
626         }
627
628         while (dev != NULL) {
629                 if (strcmp(dev->device.name, dev_name) == 0) {
630                         free(dup);
631                         return &dev->device;
632                 }
633                 dev = TAILQ_NEXT(dev, next);
634         }
635
636         free(dup);
637         return NULL;
638 }
639
640 struct rte_fslmc_bus rte_fslmc_bus = {
641         .bus = {
642                 .scan = rte_fslmc_scan,
643                 .probe = rte_fslmc_probe,
644                 .parse = rte_fslmc_parse,
645                 .find_device = rte_fslmc_find_device,
646                 .get_iommu_class = rte_dpaa2_get_iommu_class,
647                 .plug = fslmc_bus_plug,
648                 .unplug = fslmc_bus_unplug,
649                 .dev_iterate = fslmc_bus_dev_iterate,
650         },
651         .device_list = TAILQ_HEAD_INITIALIZER(rte_fslmc_bus.device_list),
652         .driver_list = TAILQ_HEAD_INITIALIZER(rte_fslmc_bus.driver_list),
653         .device_count = {0},
654 };
655
656 RTE_REGISTER_BUS(FSLMC_BUS_NAME, rte_fslmc_bus.bus);
657
658 RTE_INIT(fslmc_init_log)
659 {
660         /* Bus level logs */
661         dpaa2_logtype_bus = rte_log_register("bus.fslmc");
662         if (dpaa2_logtype_bus >= 0)
663                 rte_log_set_level(dpaa2_logtype_bus, RTE_LOG_NOTICE);
664 }