dd2543c809ac56e4d6bf08967ab3596411920a29
[dpdk.git] / drivers / raw / ioat / ioat_rawdev.c
1 /* SPDX-License-Identifier: BSD-3-Clause
2  * Copyright(c) 2019 Intel Corporation
3  */
4
5 #include <rte_cycles.h>
6 #include <rte_bus_pci.h>
7 #include <rte_memzone.h>
8 #include <rte_string_fns.h>
9 #include <rte_rawdev_pmd.h>
10
11 #include "rte_ioat_rawdev.h"
12 #include "ioat_spec.h"
13 #include "ioat_private.h"
14
15 static struct rte_pci_driver ioat_pmd_drv;
16
17 #define IOAT_VENDOR_ID          0x8086
18 #define IOAT_DEVICE_ID_SKX      0x2021
19 #define IOAT_DEVICE_ID_BDX0     0x6f20
20 #define IOAT_DEVICE_ID_BDX1     0x6f21
21 #define IOAT_DEVICE_ID_BDX2     0x6f22
22 #define IOAT_DEVICE_ID_BDX3     0x6f23
23 #define IOAT_DEVICE_ID_BDX4     0x6f24
24 #define IOAT_DEVICE_ID_BDX5     0x6f25
25 #define IOAT_DEVICE_ID_BDX6     0x6f26
26 #define IOAT_DEVICE_ID_BDX7     0x6f27
27 #define IOAT_DEVICE_ID_BDXE     0x6f2E
28 #define IOAT_DEVICE_ID_BDXF     0x6f2F
29 #define IOAT_DEVICE_ID_ICX      0x0b00
30
31 RTE_LOG_REGISTER(ioat_pmd_logtype, rawdev.ioat, INFO);
32
33 #define DESC_SZ sizeof(struct rte_ioat_generic_hw_desc)
34 #define COMPLETION_SZ sizeof(__m128i)
35
36 static int
37 ioat_dev_configure(const struct rte_rawdev *dev, rte_rawdev_obj_t config,
38                 size_t config_size)
39 {
40         struct rte_ioat_rawdev_config *params = config;
41         struct rte_ioat_rawdev *ioat = dev->dev_private;
42         char mz_name[RTE_MEMZONE_NAMESIZE];
43         unsigned short i;
44
45         if (dev->started)
46                 return -EBUSY;
47
48         if (params == NULL || config_size != sizeof(*params))
49                 return -EINVAL;
50
51         if (params->ring_size > 4096 || params->ring_size < 64 ||
52                         !rte_is_power_of_2(params->ring_size))
53                 return -EINVAL;
54
55         ioat->ring_size = params->ring_size;
56         ioat->hdls_disable = params->hdls_disable;
57         if (ioat->desc_ring != NULL) {
58                 rte_memzone_free(ioat->desc_mz);
59                 ioat->desc_ring = NULL;
60                 ioat->desc_mz = NULL;
61         }
62
63         /* allocate one block of memory for both descriptors
64          * and completion handles.
65          */
66         snprintf(mz_name, sizeof(mz_name), "rawdev%u_desc_ring", dev->dev_id);
67         ioat->desc_mz = rte_memzone_reserve(mz_name,
68                         (DESC_SZ + COMPLETION_SZ) * ioat->ring_size,
69                         dev->device->numa_node, RTE_MEMZONE_IOVA_CONTIG);
70         if (ioat->desc_mz == NULL)
71                 return -ENOMEM;
72         ioat->desc_ring = ioat->desc_mz->addr;
73         ioat->hdls = (void *)&ioat->desc_ring[ioat->ring_size];
74
75         ioat->ring_addr = ioat->desc_mz->iova;
76
77         /* configure descriptor ring - each one points to next */
78         for (i = 0; i < ioat->ring_size; i++) {
79                 ioat->desc_ring[i].next = ioat->ring_addr +
80                                 (((i + 1) % ioat->ring_size) * DESC_SZ);
81         }
82
83         return 0;
84 }
85
86 static int
87 ioat_dev_start(struct rte_rawdev *dev)
88 {
89         struct rte_ioat_rawdev *ioat = dev->dev_private;
90
91         if (ioat->ring_size == 0 || ioat->desc_ring == NULL)
92                 return -EBUSY;
93
94         /* inform hardware of where the descriptor ring is */
95         ioat->regs->chainaddr = ioat->ring_addr;
96         /* inform hardware of where to write the status/completions */
97         ioat->regs->chancmp = ioat->status_addr;
98
99         /* prime the status register to be set to the last element */
100         ioat->status =  ioat->ring_addr + ((ioat->ring_size - 1) * DESC_SZ);
101         return 0;
102 }
103
104 static void
105 ioat_dev_stop(struct rte_rawdev *dev)
106 {
107         RTE_SET_USED(dev);
108 }
109
110 static int
111 ioat_dev_info_get(struct rte_rawdev *dev, rte_rawdev_obj_t dev_info,
112                 size_t dev_info_size)
113 {
114         struct rte_ioat_rawdev_config *cfg = dev_info;
115         struct rte_ioat_rawdev *ioat = dev->dev_private;
116
117         if (dev_info == NULL || dev_info_size != sizeof(*cfg))
118                 return -EINVAL;
119
120         cfg->ring_size = ioat->ring_size;
121         cfg->hdls_disable = ioat->hdls_disable;
122         return 0;
123 }
124
125 static int
126 ioat_dev_close(struct rte_rawdev *dev __rte_unused)
127 {
128         return 0;
129 }
130
131 extern int ioat_rawdev_test(uint16_t dev_id);
132
133 static int
134 ioat_rawdev_create(const char *name, struct rte_pci_device *dev)
135 {
136         static const struct rte_rawdev_ops ioat_rawdev_ops = {
137                         .dev_configure = ioat_dev_configure,
138                         .dev_start = ioat_dev_start,
139                         .dev_stop = ioat_dev_stop,
140                         .dev_close = ioat_dev_close,
141                         .dev_info_get = ioat_dev_info_get,
142                         .xstats_get = ioat_xstats_get,
143                         .xstats_get_names = ioat_xstats_get_names,
144                         .xstats_reset = ioat_xstats_reset,
145                         .dev_selftest = ioat_rawdev_test,
146         };
147
148         struct rte_rawdev *rawdev = NULL;
149         struct rte_ioat_rawdev *ioat = NULL;
150         const struct rte_memzone *mz = NULL;
151         char mz_name[RTE_MEMZONE_NAMESIZE];
152         int ret = 0;
153         int retry = 0;
154
155         if (!name) {
156                 IOAT_PMD_ERR("Invalid name of the device!");
157                 ret = -EINVAL;
158                 goto cleanup;
159         }
160
161         /* Allocate device structure */
162         rawdev = rte_rawdev_pmd_allocate(name, sizeof(struct rte_ioat_rawdev),
163                                          dev->device.numa_node);
164         if (rawdev == NULL) {
165                 IOAT_PMD_ERR("Unable to allocate raw device");
166                 ret = -ENOMEM;
167                 goto cleanup;
168         }
169
170         snprintf(mz_name, sizeof(mz_name), "rawdev%u_private", rawdev->dev_id);
171         mz = rte_memzone_reserve(mz_name, sizeof(struct rte_ioat_rawdev),
172                         dev->device.numa_node, RTE_MEMZONE_IOVA_CONTIG);
173         if (mz == NULL) {
174                 IOAT_PMD_ERR("Unable to reserve memzone for private data\n");
175                 ret = -ENOMEM;
176                 goto cleanup;
177         }
178
179         rawdev->dev_private = mz->addr;
180         rawdev->dev_ops = &ioat_rawdev_ops;
181         rawdev->device = &dev->device;
182         rawdev->driver_name = dev->device.driver->name;
183
184         ioat = rawdev->dev_private;
185         ioat->type = RTE_IOAT_DEV;
186         ioat->rawdev = rawdev;
187         ioat->mz = mz;
188         ioat->regs = dev->mem_resource[0].addr;
189         ioat->doorbell = &ioat->regs->dmacount;
190         ioat->ring_size = 0;
191         ioat->desc_ring = NULL;
192         ioat->status_addr = ioat->mz->iova +
193                         offsetof(struct rte_ioat_rawdev, status);
194
195         /* do device initialization - reset and set error behaviour */
196         if (ioat->regs->chancnt != 1)
197                 IOAT_PMD_ERR("%s: Channel count == %d\n", __func__,
198                                 ioat->regs->chancnt);
199
200         if (ioat->regs->chanctrl & 0x100) { /* locked by someone else */
201                 IOAT_PMD_WARN("%s: Channel appears locked\n", __func__);
202                 ioat->regs->chanctrl = 0;
203         }
204
205         ioat->regs->chancmd = RTE_IOAT_CHANCMD_SUSPEND;
206         rte_delay_ms(1);
207         ioat->regs->chancmd = RTE_IOAT_CHANCMD_RESET;
208         rte_delay_ms(1);
209         while (ioat->regs->chancmd & RTE_IOAT_CHANCMD_RESET) {
210                 ioat->regs->chainaddr = 0;
211                 rte_delay_ms(1);
212                 if (++retry >= 200) {
213                         IOAT_PMD_ERR("%s: cannot reset device. CHANCMD=0x%"PRIx8", CHANSTS=0x%"PRIx64", CHANERR=0x%"PRIx32"\n",
214                                         __func__,
215                                         ioat->regs->chancmd,
216                                         ioat->regs->chansts,
217                                         ioat->regs->chanerr);
218                         ret = -EIO;
219                 }
220         }
221         ioat->regs->chanctrl = RTE_IOAT_CHANCTRL_ANY_ERR_ABORT_EN |
222                         RTE_IOAT_CHANCTRL_ERR_COMPLETION_EN;
223
224         return 0;
225
226 cleanup:
227         if (rawdev)
228                 rte_rawdev_pmd_release(rawdev);
229
230         return ret;
231 }
232
233 static int
234 ioat_rawdev_destroy(const char *name)
235 {
236         int ret;
237         struct rte_rawdev *rdev;
238
239         if (!name) {
240                 IOAT_PMD_ERR("Invalid device name");
241                 return -EINVAL;
242         }
243
244         rdev = rte_rawdev_pmd_get_named_dev(name);
245         if (!rdev) {
246                 IOAT_PMD_ERR("Invalid device name (%s)", name);
247                 return -EINVAL;
248         }
249
250         if (rdev->dev_private != NULL) {
251                 struct rte_ioat_rawdev *ioat = rdev->dev_private;
252                 rdev->dev_private = NULL;
253                 rte_memzone_free(ioat->desc_mz);
254                 rte_memzone_free(ioat->mz);
255         }
256
257         /* rte_rawdev_close is called by pmd_release */
258         ret = rte_rawdev_pmd_release(rdev);
259         if (ret)
260                 IOAT_PMD_DEBUG("Device cleanup failed");
261
262         return 0;
263 }
264
265 static int
266 ioat_rawdev_probe(struct rte_pci_driver *drv, struct rte_pci_device *dev)
267 {
268         char name[32];
269         int ret = 0;
270
271
272         rte_pci_device_name(&dev->addr, name, sizeof(name));
273         IOAT_PMD_INFO("Init %s on NUMA node %d", name, dev->device.numa_node);
274
275         dev->device.driver = &drv->driver;
276         ret = ioat_rawdev_create(name, dev);
277         return ret;
278 }
279
280 static int
281 ioat_rawdev_remove(struct rte_pci_device *dev)
282 {
283         char name[32];
284         int ret;
285
286         rte_pci_device_name(&dev->addr, name, sizeof(name));
287
288         IOAT_PMD_INFO("Closing %s on NUMA node %d",
289                         name, dev->device.numa_node);
290
291         ret = ioat_rawdev_destroy(name);
292         return ret;
293 }
294
295 static const struct rte_pci_id pci_id_ioat_map[] = {
296         { RTE_PCI_DEVICE(IOAT_VENDOR_ID, IOAT_DEVICE_ID_SKX) },
297         { RTE_PCI_DEVICE(IOAT_VENDOR_ID, IOAT_DEVICE_ID_BDX0) },
298         { RTE_PCI_DEVICE(IOAT_VENDOR_ID, IOAT_DEVICE_ID_BDX1) },
299         { RTE_PCI_DEVICE(IOAT_VENDOR_ID, IOAT_DEVICE_ID_BDX2) },
300         { RTE_PCI_DEVICE(IOAT_VENDOR_ID, IOAT_DEVICE_ID_BDX3) },
301         { RTE_PCI_DEVICE(IOAT_VENDOR_ID, IOAT_DEVICE_ID_BDX4) },
302         { RTE_PCI_DEVICE(IOAT_VENDOR_ID, IOAT_DEVICE_ID_BDX5) },
303         { RTE_PCI_DEVICE(IOAT_VENDOR_ID, IOAT_DEVICE_ID_BDX6) },
304         { RTE_PCI_DEVICE(IOAT_VENDOR_ID, IOAT_DEVICE_ID_BDX7) },
305         { RTE_PCI_DEVICE(IOAT_VENDOR_ID, IOAT_DEVICE_ID_BDXE) },
306         { RTE_PCI_DEVICE(IOAT_VENDOR_ID, IOAT_DEVICE_ID_BDXF) },
307         { RTE_PCI_DEVICE(IOAT_VENDOR_ID, IOAT_DEVICE_ID_ICX) },
308         { .vendor_id = 0, /* sentinel */ },
309 };
310
311 static struct rte_pci_driver ioat_pmd_drv = {
312         .id_table = pci_id_ioat_map,
313         .drv_flags = RTE_PCI_DRV_NEED_MAPPING | RTE_PCI_DRV_INTR_LSC,
314         .probe = ioat_rawdev_probe,
315         .remove = ioat_rawdev_remove,
316 };
317
318 RTE_PMD_REGISTER_PCI(IOAT_PMD_RAWDEV_NAME, ioat_pmd_drv);
319 RTE_PMD_REGISTER_PCI_TABLE(IOAT_PMD_RAWDEV_NAME, pci_id_ioat_map);
320 RTE_PMD_REGISTER_KMOD_DEP(IOAT_PMD_RAWDEV_NAME, "* igb_uio | uio_pci_generic");