1 // SPDX-License-Identifier: GPL-2.0+
2 /*
3 * Mellanox BlueField SoC TmFifo driver
4 *
5 * Copyright (C) 2019 Mellanox Technologies
6 */
7
8 #include <linux/acpi.h>
9 #include <linux/bitfield.h>
10 #include <linux/circ_buf.h>
11 #include <linux/efi.h>
12 #include <linux/irq.h>
13 #include <linux/module.h>
14 #include <linux/mutex.h>
15 #include <linux/platform_device.h>
16 #include <linux/types.h>
17
18 #include <linux/virtio_config.h>
19 #include <linux/virtio_console.h>
20 #include <linux/virtio_ids.h>
21 #include <linux/virtio_net.h>
22 #include <linux/virtio_ring.h>
23
24 #include "mlxbf-tmfifo-regs.h"
25
26 /* Vring size. */
27 #define MLXBF_TMFIFO_VRING_SIZE SZ_1K
28
29 /* Console Tx buffer size. */
30 #define MLXBF_TMFIFO_CON_TX_BUF_SIZE SZ_32K
31
32 /* Console Tx buffer reserved space. */
33 #define MLXBF_TMFIFO_CON_TX_BUF_RSV_SIZE 8
34
35 /* House-keeping timer interval. */
36 #define MLXBF_TMFIFO_TIMER_INTERVAL (HZ / 10)
37
38 /* Virtual devices sharing the TM FIFO. */
39 #define MLXBF_TMFIFO_VDEV_MAX (VIRTIO_ID_CONSOLE + 1)
40
41 /*
42 * Reserve 1/16 of TmFifo space, so console messages are not starved by
43 * the networking traffic.
44 */
45 #define MLXBF_TMFIFO_RESERVE_RATIO 16
46
47 /* Message with data needs at least two words (for header & data). */
48 #define MLXBF_TMFIFO_DATA_MIN_WORDS 2
49
50 /* Tx timeout in milliseconds. */
51 #define TMFIFO_TX_TIMEOUT 2000
52
53 /* ACPI UID for BlueField-3. */
54 #define TMFIFO_BF3_UID 1
55
56 struct mlxbf_tmfifo;
57
58 /**
59 * struct mlxbf_tmfifo_vring - Structure of the TmFifo virtual ring
60 * @va: virtual address of the ring
61 * @dma: dma address of the ring
62 * @vq: pointer to the virtio virtqueue
63 * @desc: current descriptor of the pending packet
64 * @desc_head: head descriptor of the pending packet
65 * @drop_desc: dummy desc for packet dropping
66 * @cur_len: processed length of the current descriptor
67 * @rem_len: remaining length of the pending packet
68 * @rem_padding: remaining bytes to send as paddings
69 * @pkt_len: total length of the pending packet
70 * @next_avail: next avail descriptor id
71 * @num: vring size (number of descriptors)
72 * @align: vring alignment size
73 * @index: vring index
74 * @vdev_id: vring virtio id (VIRTIO_ID_xxx)
75 * @tx_timeout: expire time of last tx packet
76 * @fifo: pointer to the tmfifo structure
77 */
78 struct mlxbf_tmfifo_vring {
79 void *va;
80 dma_addr_t dma;
81 struct virtqueue *vq;
82 struct vring_desc *desc;
83 struct vring_desc *desc_head;
84 struct vring_desc drop_desc;
85 int cur_len;
86 int rem_len;
87 int rem_padding;
88 u32 pkt_len;
89 u16 next_avail;
90 int num;
91 int align;
92 int index;
93 int vdev_id;
94 unsigned long tx_timeout;
95 struct mlxbf_tmfifo *fifo;
96 };
97
98 /* Check whether vring is in drop mode. */
99 #define IS_VRING_DROP(_r) ({ \
100 typeof(_r) (r) = (_r); \
101 r->desc_head == &r->drop_desc; })
102
103 /* A stub length to drop maximum length packet. */
104 #define VRING_DROP_DESC_MAX_LEN GENMASK(15, 0)
105
106 /* Interrupt types. */
107 enum {
108 MLXBF_TM_RX_LWM_IRQ,
109 MLXBF_TM_RX_HWM_IRQ,
110 MLXBF_TM_TX_LWM_IRQ,
111 MLXBF_TM_TX_HWM_IRQ,
112 MLXBF_TM_MAX_IRQ
113 };
114
115 /* Ring types (Rx & Tx). */
116 enum {
117 MLXBF_TMFIFO_VRING_RX,
118 MLXBF_TMFIFO_VRING_TX,
119 MLXBF_TMFIFO_VRING_MAX
120 };
121
122 /**
123 * struct mlxbf_tmfifo_vdev - Structure of the TmFifo virtual device
124 * @vdev: virtio device, in which the vdev.id.device field has the
125 * VIRTIO_ID_xxx id to distinguish the virtual device.
126 * @status: status of the device
127 * @features: supported features of the device
128 * @vrings: array of tmfifo vrings of this device
129 * @config: non-anonymous union for cons and net
130 * @config.cons: virtual console config -
131 * select if vdev.id.device is VIRTIO_ID_CONSOLE
132 * @config.net: virtual network config -
133 * select if vdev.id.device is VIRTIO_ID_NET
134 * @tx_buf: tx buffer used to buffer data before writing into the FIFO
135 */
136 struct mlxbf_tmfifo_vdev {
137 struct virtio_device vdev;
138 u8 status;
139 u64 features;
140 struct mlxbf_tmfifo_vring vrings[MLXBF_TMFIFO_VRING_MAX];
141 union {
142 struct virtio_console_config cons;
143 struct virtio_net_config net;
144 } config;
145 struct circ_buf tx_buf;
146 };
147
148 /**
149 * struct mlxbf_tmfifo_irq_info - Structure of the interrupt information
150 * @fifo: pointer to the tmfifo structure
151 * @irq: interrupt number
152 * @index: index into the interrupt array
153 */
154 struct mlxbf_tmfifo_irq_info {
155 struct mlxbf_tmfifo *fifo;
156 int irq;
157 int index;
158 };
159
160 /**
161 * struct mlxbf_tmfifo_io - Structure of the TmFifo IO resource (for both rx & tx)
162 * @ctl: control register offset (TMFIFO_RX_CTL / TMFIFO_TX_CTL)
163 * @sts: status register offset (TMFIFO_RX_STS / TMFIFO_TX_STS)
164 * @data: data register offset (TMFIFO_RX_DATA / TMFIFO_TX_DATA)
165 */
166 struct mlxbf_tmfifo_io {
167 void __iomem *ctl;
168 void __iomem *sts;
169 void __iomem *data;
170 };
171
172 /**
173 * struct mlxbf_tmfifo - Structure of the TmFifo
174 * @vdev: array of the virtual devices running over the TmFifo
175 * @lock: lock to protect the TmFifo access
176 * @res0: mapped resource block 0
177 * @res1: mapped resource block 1
178 * @rx: rx io resource
179 * @tx: tx io resource
180 * @rx_fifo_size: number of entries of the Rx FIFO
181 * @tx_fifo_size: number of entries of the Tx FIFO
182 * @pend_events: pending bits for deferred events
183 * @irq_info: interrupt information
184 * @work: work struct for deferred process
185 * @timer: background timer
186 * @vring: Tx/Rx ring
187 * @spin_lock: Tx/Rx spin lock
188 * @is_ready: ready flag
189 */
190 struct mlxbf_tmfifo {
191 struct mlxbf_tmfifo_vdev *vdev[MLXBF_TMFIFO_VDEV_MAX];
192 struct mutex lock; /* TmFifo lock */
193 void __iomem *res0;
194 void __iomem *res1;
195 struct mlxbf_tmfifo_io rx;
196 struct mlxbf_tmfifo_io tx;
197 int rx_fifo_size;
198 int tx_fifo_size;
199 unsigned long pend_events;
200 struct mlxbf_tmfifo_irq_info irq_info[MLXBF_TM_MAX_IRQ];
201 struct work_struct work;
202 struct timer_list timer;
203 struct mlxbf_tmfifo_vring *vring[2];
204 spinlock_t spin_lock[2]; /* spin lock */
205 bool is_ready;
206 };
207
208 /**
209 * struct mlxbf_tmfifo_msg_hdr - Structure of the TmFifo message header
210 * @type: message type
211 * @len: payload length in network byte order. Messages sent into the FIFO
212 * will be read by the other side as data stream in the same byte order.
213 * The length needs to be encoded into network order so both sides
214 * could understand it.
215 */
216 struct mlxbf_tmfifo_msg_hdr {
217 u8 type;
218 __be16 len;
219 /* private: */
220 u8 unused[5];
221 } __packed __aligned(sizeof(u64));
222
223 /*
224 * Default MAC.
225 * This MAC address will be read from EFI persistent variable if configured.
226 * It can also be reconfigured with standard Linux tools.
227 */
228 static u8 mlxbf_tmfifo_net_default_mac[ETH_ALEN] = {
229 0x00, 0x1A, 0xCA, 0xFF, 0xFF, 0x01
230 };
231
232 /* EFI variable name of the MAC address. */
233 static efi_char16_t mlxbf_tmfifo_efi_name[] = L"RshimMacAddr";
234
235 /* Maximum L2 header length. */
236 #define MLXBF_TMFIFO_NET_L2_OVERHEAD (ETH_HLEN + VLAN_HLEN)
237
238 /* Supported virtio-net features. */
239 #define MLXBF_TMFIFO_NET_FEATURES \
240 (BIT_ULL(VIRTIO_NET_F_MTU) | BIT_ULL(VIRTIO_NET_F_STATUS) | \
241 BIT_ULL(VIRTIO_NET_F_MAC))
242
243 #define mlxbf_vdev_to_tmfifo(d) container_of(d, struct mlxbf_tmfifo_vdev, vdev)
244
245 /* Free vrings of the FIFO device. */
mlxbf_tmfifo_free_vrings(struct mlxbf_tmfifo * fifo,struct mlxbf_tmfifo_vdev * tm_vdev)246 static void mlxbf_tmfifo_free_vrings(struct mlxbf_tmfifo *fifo,
247 struct mlxbf_tmfifo_vdev *tm_vdev)
248 {
249 struct mlxbf_tmfifo_vring *vring;
250 int i, size;
251
252 for (i = 0; i < ARRAY_SIZE(tm_vdev->vrings); i++) {
253 vring = &tm_vdev->vrings[i];
254 if (vring->va) {
255 size = vring_size(vring->num, vring->align);
256 dma_free_coherent(tm_vdev->vdev.dev.parent, size,
257 vring->va, vring->dma);
258 vring->va = NULL;
259 if (vring->vq) {
260 vring_del_virtqueue(vring->vq);
261 vring->vq = NULL;
262 }
263 }
264 }
265 }
266
267 /* Allocate vrings for the FIFO. */
mlxbf_tmfifo_alloc_vrings(struct mlxbf_tmfifo * fifo,struct mlxbf_tmfifo_vdev * tm_vdev)268 static int mlxbf_tmfifo_alloc_vrings(struct mlxbf_tmfifo *fifo,
269 struct mlxbf_tmfifo_vdev *tm_vdev)
270 {
271 struct mlxbf_tmfifo_vring *vring;
272 struct device *dev;
273 dma_addr_t dma;
274 int i, size;
275 void *va;
276
277 for (i = 0; i < ARRAY_SIZE(tm_vdev->vrings); i++) {
278 vring = &tm_vdev->vrings[i];
279 vring->fifo = fifo;
280 vring->num = MLXBF_TMFIFO_VRING_SIZE;
281 vring->align = SMP_CACHE_BYTES;
282 vring->index = i;
283 vring->vdev_id = tm_vdev->vdev.id.device;
284 vring->drop_desc.len = cpu_to_virtio32(&tm_vdev->vdev,
285 VRING_DROP_DESC_MAX_LEN);
286 dev = &tm_vdev->vdev.dev;
287
288 size = vring_size(vring->num, vring->align);
289 va = dma_alloc_coherent(dev->parent, size, &dma, GFP_KERNEL);
290 if (!va) {
291 mlxbf_tmfifo_free_vrings(fifo, tm_vdev);
292 dev_err(dev->parent, "dma_alloc_coherent failed\n");
293 return -ENOMEM;
294 }
295
296 vring->va = va;
297 vring->dma = dma;
298 }
299
300 return 0;
301 }
302
303 /* Disable interrupts of the FIFO device. */
mlxbf_tmfifo_disable_irqs(struct mlxbf_tmfifo * fifo)304 static void mlxbf_tmfifo_disable_irqs(struct mlxbf_tmfifo *fifo)
305 {
306 int i, irq;
307
308 for (i = 0; i < MLXBF_TM_MAX_IRQ; i++) {
309 irq = fifo->irq_info[i].irq;
310 fifo->irq_info[i].irq = 0;
311 disable_irq(irq);
312 }
313 }
314
315 /* Interrupt handler. */
mlxbf_tmfifo_irq_handler(int irq,void * arg)316 static irqreturn_t mlxbf_tmfifo_irq_handler(int irq, void *arg)
317 {
318 struct mlxbf_tmfifo_irq_info *irq_info = arg;
319
320 if (!test_and_set_bit(irq_info->index, &irq_info->fifo->pend_events))
321 schedule_work(&irq_info->fifo->work);
322
323 return IRQ_HANDLED;
324 }
325
326 /* Get the next packet descriptor from the vring. */
327 static struct vring_desc *
mlxbf_tmfifo_get_next_desc(struct mlxbf_tmfifo_vring * vring)328 mlxbf_tmfifo_get_next_desc(struct mlxbf_tmfifo_vring *vring)
329 {
330 const struct vring *vr = virtqueue_get_vring(vring->vq);
331 struct virtio_device *vdev = vring->vq->vdev;
332 unsigned int idx, head;
333
334 if (vring->next_avail == virtio16_to_cpu(vdev, vr->avail->idx))
335 return NULL;
336
337 /* Make sure 'avail->idx' is visible already. */
338 virtio_rmb(false);
339
340 idx = vring->next_avail % vr->num;
341 head = virtio16_to_cpu(vdev, vr->avail->ring[idx]);
342 if (WARN_ON(head >= vr->num))
343 return NULL;
344
345 vring->next_avail++;
346
347 return &vr->desc[head];
348 }
349
350 /* Release virtio descriptor. */
mlxbf_tmfifo_release_desc(struct mlxbf_tmfifo_vring * vring,struct vring_desc * desc,u32 len)351 static void mlxbf_tmfifo_release_desc(struct mlxbf_tmfifo_vring *vring,
352 struct vring_desc *desc, u32 len)
353 {
354 const struct vring *vr = virtqueue_get_vring(vring->vq);
355 struct virtio_device *vdev = vring->vq->vdev;
356 u16 idx, vr_idx;
357
358 vr_idx = virtio16_to_cpu(vdev, vr->used->idx);
359 idx = vr_idx % vr->num;
360 vr->used->ring[idx].id = cpu_to_virtio32(vdev, desc - vr->desc);
361 vr->used->ring[idx].len = cpu_to_virtio32(vdev, len);
362
363 /*
364 * Virtio could poll and check the 'idx' to decide whether the desc is
365 * done or not. Add a memory barrier here to make sure the update above
366 * completes before updating the idx.
367 */
368 virtio_mb(false);
369 vr->used->idx = cpu_to_virtio16(vdev, vr_idx + 1);
370 }
371
372 /* Get the total length of the descriptor chain. */
mlxbf_tmfifo_get_pkt_len(struct mlxbf_tmfifo_vring * vring,struct vring_desc * desc)373 static u32 mlxbf_tmfifo_get_pkt_len(struct mlxbf_tmfifo_vring *vring,
374 struct vring_desc *desc)
375 {
376 const struct vring *vr = virtqueue_get_vring(vring->vq);
377 struct virtio_device *vdev = vring->vq->vdev;
378 u32 len = 0, idx;
379
380 while (desc) {
381 len += virtio32_to_cpu(vdev, desc->len);
382 if (!(virtio16_to_cpu(vdev, desc->flags) & VRING_DESC_F_NEXT))
383 break;
384 idx = virtio16_to_cpu(vdev, desc->next);
385 desc = &vr->desc[idx];
386 }
387
388 return len;
389 }
390
mlxbf_tmfifo_release_pkt(struct mlxbf_tmfifo_vring * vring)391 static void mlxbf_tmfifo_release_pkt(struct mlxbf_tmfifo_vring *vring)
392 {
393 struct vring_desc *desc_head;
394 u32 len = 0;
395
396 if (vring->desc_head) {
397 desc_head = vring->desc_head;
398 len = vring->pkt_len;
399 } else {
400 desc_head = mlxbf_tmfifo_get_next_desc(vring);
401 len = mlxbf_tmfifo_get_pkt_len(vring, desc_head);
402 }
403
404 if (desc_head)
405 mlxbf_tmfifo_release_desc(vring, desc_head, len);
406
407 vring->pkt_len = 0;
408 vring->desc = NULL;
409 vring->desc_head = NULL;
410 }
411
mlxbf_tmfifo_init_net_desc(struct mlxbf_tmfifo_vring * vring,struct vring_desc * desc,bool is_rx)412 static void mlxbf_tmfifo_init_net_desc(struct mlxbf_tmfifo_vring *vring,
413 struct vring_desc *desc, bool is_rx)
414 {
415 struct virtio_device *vdev = vring->vq->vdev;
416 struct virtio_net_hdr *net_hdr;
417
418 net_hdr = phys_to_virt(virtio64_to_cpu(vdev, desc->addr));
419 memset(net_hdr, 0, sizeof(*net_hdr));
420 }
421
422 /* Get and initialize the next packet. */
423 static struct vring_desc *
mlxbf_tmfifo_get_next_pkt(struct mlxbf_tmfifo_vring * vring,bool is_rx)424 mlxbf_tmfifo_get_next_pkt(struct mlxbf_tmfifo_vring *vring, bool is_rx)
425 {
426 struct vring_desc *desc;
427
428 desc = mlxbf_tmfifo_get_next_desc(vring);
429 if (desc && is_rx && vring->vdev_id == VIRTIO_ID_NET)
430 mlxbf_tmfifo_init_net_desc(vring, desc, is_rx);
431
432 vring->desc_head = desc;
433 vring->desc = desc;
434
435 return desc;
436 }
437
438 /* House-keeping timer. */
mlxbf_tmfifo_timer(struct timer_list * t)439 static void mlxbf_tmfifo_timer(struct timer_list *t)
440 {
441 struct mlxbf_tmfifo *fifo = container_of(t, struct mlxbf_tmfifo, timer);
442 int rx, tx;
443
444 rx = !test_and_set_bit(MLXBF_TM_RX_HWM_IRQ, &fifo->pend_events);
445 tx = !test_and_set_bit(MLXBF_TM_TX_LWM_IRQ, &fifo->pend_events);
446
447 if (rx || tx)
448 schedule_work(&fifo->work);
449
450 mod_timer(&fifo->timer, jiffies + MLXBF_TMFIFO_TIMER_INTERVAL);
451 }
452
453 /* Copy one console packet into the output buffer. */
mlxbf_tmfifo_console_output_one(struct mlxbf_tmfifo_vdev * cons,struct mlxbf_tmfifo_vring * vring,struct vring_desc * desc)454 static void mlxbf_tmfifo_console_output_one(struct mlxbf_tmfifo_vdev *cons,
455 struct mlxbf_tmfifo_vring *vring,
456 struct vring_desc *desc)
457 {
458 const struct vring *vr = virtqueue_get_vring(vring->vq);
459 struct virtio_device *vdev = &cons->vdev;
460 u32 len, idx, seg;
461 void *addr;
462
463 while (desc) {
464 addr = phys_to_virt(virtio64_to_cpu(vdev, desc->addr));
465 len = virtio32_to_cpu(vdev, desc->len);
466
467 seg = CIRC_SPACE_TO_END(cons->tx_buf.head, cons->tx_buf.tail,
468 MLXBF_TMFIFO_CON_TX_BUF_SIZE);
469 if (len <= seg) {
470 memcpy(cons->tx_buf.buf + cons->tx_buf.head, addr, len);
471 } else {
472 memcpy(cons->tx_buf.buf + cons->tx_buf.head, addr, seg);
473 addr += seg;
474 memcpy(cons->tx_buf.buf, addr, len - seg);
475 }
476 cons->tx_buf.head = (cons->tx_buf.head + len) %
477 MLXBF_TMFIFO_CON_TX_BUF_SIZE;
478
479 if (!(virtio16_to_cpu(vdev, desc->flags) & VRING_DESC_F_NEXT))
480 break;
481 idx = virtio16_to_cpu(vdev, desc->next);
482 desc = &vr->desc[idx];
483 }
484 }
485
486 /* Copy console data into the output buffer. */
mlxbf_tmfifo_console_output(struct mlxbf_tmfifo_vdev * cons,struct mlxbf_tmfifo_vring * vring)487 static void mlxbf_tmfifo_console_output(struct mlxbf_tmfifo_vdev *cons,
488 struct mlxbf_tmfifo_vring *vring)
489 {
490 struct vring_desc *desc;
491 u32 len, avail;
492
493 desc = mlxbf_tmfifo_get_next_desc(vring);
494 while (desc) {
495 /* Release the packet if not enough space. */
496 len = mlxbf_tmfifo_get_pkt_len(vring, desc);
497 avail = CIRC_SPACE(cons->tx_buf.head, cons->tx_buf.tail,
498 MLXBF_TMFIFO_CON_TX_BUF_SIZE);
499 if (len + MLXBF_TMFIFO_CON_TX_BUF_RSV_SIZE > avail) {
500 mlxbf_tmfifo_release_desc(vring, desc, len);
501 break;
502 }
503
504 mlxbf_tmfifo_console_output_one(cons, vring, desc);
505 mlxbf_tmfifo_release_desc(vring, desc, len);
506 desc = mlxbf_tmfifo_get_next_desc(vring);
507 }
508 }
509
510 /* Get the number of available words in Rx FIFO for receiving. */
mlxbf_tmfifo_get_rx_avail(struct mlxbf_tmfifo * fifo)511 static int mlxbf_tmfifo_get_rx_avail(struct mlxbf_tmfifo *fifo)
512 {
513 u64 sts;
514
515 sts = readq(fifo->rx.sts);
516 return FIELD_GET(MLXBF_TMFIFO_RX_STS__COUNT_MASK, sts);
517 }
518
519 /* Get the number of available words in the TmFifo for sending. */
mlxbf_tmfifo_get_tx_avail(struct mlxbf_tmfifo * fifo,int vdev_id)520 static int mlxbf_tmfifo_get_tx_avail(struct mlxbf_tmfifo *fifo, int vdev_id)
521 {
522 int tx_reserve;
523 u32 count;
524 u64 sts;
525
526 /* Reserve some room in FIFO for console messages. */
527 if (vdev_id == VIRTIO_ID_NET)
528 tx_reserve = fifo->tx_fifo_size / MLXBF_TMFIFO_RESERVE_RATIO;
529 else
530 tx_reserve = 1;
531
532 sts = readq(fifo->tx.sts);
533 count = FIELD_GET(MLXBF_TMFIFO_TX_STS__COUNT_MASK, sts);
534 return fifo->tx_fifo_size - tx_reserve - count;
535 }
536
537 /* Console Tx (move data from the output buffer into the TmFifo). */
mlxbf_tmfifo_console_tx(struct mlxbf_tmfifo * fifo,int avail)538 static void mlxbf_tmfifo_console_tx(struct mlxbf_tmfifo *fifo, int avail)
539 {
540 struct mlxbf_tmfifo_msg_hdr hdr;
541 struct mlxbf_tmfifo_vdev *cons;
542 unsigned long flags;
543 int size, seg;
544 void *addr;
545 u64 data;
546
547 /* Return if not enough space available. */
548 if (avail < MLXBF_TMFIFO_DATA_MIN_WORDS)
549 return;
550
551 cons = fifo->vdev[VIRTIO_ID_CONSOLE];
552 if (!cons || !cons->tx_buf.buf)
553 return;
554
555 /* Return if no data to send. */
556 size = CIRC_CNT(cons->tx_buf.head, cons->tx_buf.tail,
557 MLXBF_TMFIFO_CON_TX_BUF_SIZE);
558 if (size == 0)
559 return;
560
561 /* Adjust the size to available space. */
562 if (size + sizeof(hdr) > avail * sizeof(u64))
563 size = avail * sizeof(u64) - sizeof(hdr);
564
565 /* Write header. */
566 hdr.type = VIRTIO_ID_CONSOLE;
567 hdr.len = htons(size);
568 writeq(*(u64 *)&hdr, fifo->tx.data);
569
570 /* Use spin-lock to protect the 'cons->tx_buf'. */
571 spin_lock_irqsave(&fifo->spin_lock[0], flags);
572
573 while (size > 0) {
574 addr = cons->tx_buf.buf + cons->tx_buf.tail;
575
576 seg = CIRC_CNT_TO_END(cons->tx_buf.head, cons->tx_buf.tail,
577 MLXBF_TMFIFO_CON_TX_BUF_SIZE);
578 if (seg >= sizeof(u64)) {
579 memcpy(&data, addr, sizeof(u64));
580 } else {
581 memcpy(&data, addr, seg);
582 memcpy((u8 *)&data + seg, cons->tx_buf.buf,
583 sizeof(u64) - seg);
584 }
585 writeq(data, fifo->tx.data);
586
587 if (size >= sizeof(u64)) {
588 cons->tx_buf.tail = (cons->tx_buf.tail + sizeof(u64)) %
589 MLXBF_TMFIFO_CON_TX_BUF_SIZE;
590 size -= sizeof(u64);
591 } else {
592 cons->tx_buf.tail = (cons->tx_buf.tail + size) %
593 MLXBF_TMFIFO_CON_TX_BUF_SIZE;
594 size = 0;
595 }
596 }
597
598 spin_unlock_irqrestore(&fifo->spin_lock[0], flags);
599 }
600
601 /* Rx/Tx one word in the descriptor buffer. */
mlxbf_tmfifo_rxtx_word(struct mlxbf_tmfifo_vring * vring,struct vring_desc * desc,bool is_rx,int len)602 static void mlxbf_tmfifo_rxtx_word(struct mlxbf_tmfifo_vring *vring,
603 struct vring_desc *desc,
604 bool is_rx, int len)
605 {
606 struct virtio_device *vdev = vring->vq->vdev;
607 struct mlxbf_tmfifo *fifo = vring->fifo;
608 void *addr;
609 u64 data;
610
611 /* Get the buffer address of this desc. */
612 addr = phys_to_virt(virtio64_to_cpu(vdev, desc->addr));
613
614 /* Read a word from FIFO for Rx. */
615 if (is_rx)
616 data = readq(fifo->rx.data);
617
618 if (vring->cur_len + sizeof(u64) <= len) {
619 /* The whole word. */
620 if (is_rx) {
621 if (!IS_VRING_DROP(vring))
622 memcpy(addr + vring->cur_len, &data,
623 sizeof(u64));
624 } else {
625 memcpy(&data, addr + vring->cur_len,
626 sizeof(u64));
627 }
628 vring->cur_len += sizeof(u64);
629 } else {
630 /* Leftover bytes. */
631 if (is_rx) {
632 if (!IS_VRING_DROP(vring))
633 memcpy(addr + vring->cur_len, &data,
634 len - vring->cur_len);
635 } else {
636 data = 0;
637 memcpy(&data, addr + vring->cur_len,
638 len - vring->cur_len);
639 }
640 vring->cur_len = len;
641 }
642
643 /* Write the word into FIFO for Tx. */
644 if (!is_rx)
645 writeq(data, fifo->tx.data);
646 }
647
648 /*
649 * Rx/Tx packet header.
650 *
651 * In Rx case, the packet might be found to belong to a different vring since
652 * the TmFifo is shared by different services. In such case, the 'vring_change'
653 * flag is set.
654 */
mlxbf_tmfifo_rxtx_header(struct mlxbf_tmfifo_vring * vring,struct vring_desc ** desc,bool is_rx,bool * vring_change)655 static void mlxbf_tmfifo_rxtx_header(struct mlxbf_tmfifo_vring *vring,
656 struct vring_desc **desc,
657 bool is_rx, bool *vring_change)
658 {
659 struct mlxbf_tmfifo *fifo = vring->fifo;
660 struct virtio_net_config *config;
661 struct mlxbf_tmfifo_msg_hdr hdr;
662 int vdev_id, hdr_len;
663 bool drop_rx = false;
664
665 /* Read/Write packet header. */
666 if (is_rx) {
667 /* Drain one word from the FIFO. */
668 *(u64 *)&hdr = readq(fifo->rx.data);
669
670 /* Skip the length 0 packets (keepalive). */
671 if (hdr.len == 0)
672 return;
673
674 /* Check packet type. */
675 if (hdr.type == VIRTIO_ID_NET) {
676 vdev_id = VIRTIO_ID_NET;
677 hdr_len = sizeof(struct virtio_net_hdr);
678 config = &fifo->vdev[vdev_id]->config.net;
679 /* A legacy-only interface for now. */
680 if (ntohs(hdr.len) >
681 __virtio16_to_cpu(virtio_legacy_is_little_endian(),
682 config->mtu) +
683 MLXBF_TMFIFO_NET_L2_OVERHEAD)
684 drop_rx = true;
685 } else {
686 vdev_id = VIRTIO_ID_CONSOLE;
687 hdr_len = 0;
688 }
689
690 /*
691 * Check whether the new packet still belongs to this vring.
692 * If not, update the pkt_len of the new vring.
693 */
694 if (vdev_id != vring->vdev_id) {
695 struct mlxbf_tmfifo_vdev *tm_dev2 = fifo->vdev[vdev_id];
696
697 if (!tm_dev2)
698 return;
699 vring->desc = *desc;
700 vring = &tm_dev2->vrings[MLXBF_TMFIFO_VRING_RX];
701 *vring_change = true;
702 }
703
704 if (drop_rx && !IS_VRING_DROP(vring)) {
705 if (vring->desc_head)
706 mlxbf_tmfifo_release_pkt(vring);
707 *desc = &vring->drop_desc;
708 vring->desc_head = *desc;
709 vring->desc = *desc;
710 }
711
712 vring->pkt_len = ntohs(hdr.len) + hdr_len;
713 } else {
714 /* Network virtio has an extra header. */
715 hdr_len = (vring->vdev_id == VIRTIO_ID_NET) ?
716 sizeof(struct virtio_net_hdr) : 0;
717 vring->pkt_len = mlxbf_tmfifo_get_pkt_len(vring, *desc);
718 hdr.type = (vring->vdev_id == VIRTIO_ID_NET) ?
719 VIRTIO_ID_NET : VIRTIO_ID_CONSOLE;
720 hdr.len = htons(vring->pkt_len - hdr_len);
721 writeq(*(u64 *)&hdr, fifo->tx.data);
722 }
723
724 vring->cur_len = hdr_len;
725 vring->rem_len = vring->pkt_len;
726 fifo->vring[is_rx] = vring;
727 }
728
729 /*
730 * Rx/Tx one descriptor.
731 *
732 * Return true to indicate more data available.
733 */
mlxbf_tmfifo_rxtx_one_desc(struct mlxbf_tmfifo_vring * vring,bool is_rx,int * avail)734 static bool mlxbf_tmfifo_rxtx_one_desc(struct mlxbf_tmfifo_vring *vring,
735 bool is_rx, int *avail)
736 {
737 const struct vring *vr = virtqueue_get_vring(vring->vq);
738 struct mlxbf_tmfifo *fifo = vring->fifo;
739 struct virtio_device *vdev;
740 bool vring_change = false;
741 struct vring_desc *desc;
742 unsigned long flags;
743 u32 len, idx;
744
745 vdev = &fifo->vdev[vring->vdev_id]->vdev;
746
747 /* Get the descriptor of the next packet. */
748 if (!vring->desc) {
749 desc = mlxbf_tmfifo_get_next_pkt(vring, is_rx);
750 if (!desc) {
751 /* Drop next Rx packet to avoid stuck. */
752 if (is_rx) {
753 desc = &vring->drop_desc;
754 vring->desc_head = desc;
755 vring->desc = desc;
756 } else {
757 return false;
758 }
759 }
760 } else {
761 desc = vring->desc;
762 }
763
764 /* Beginning of a packet. Start to Rx/Tx packet header. */
765 if (vring->pkt_len == 0) {
766 mlxbf_tmfifo_rxtx_header(vring, &desc, is_rx, &vring_change);
767 (*avail)--;
768
769 /* Return if new packet is for another ring. */
770 if (vring_change)
771 return false;
772 goto mlxbf_tmfifo_desc_done;
773 }
774
775 /* Get the length of this desc. */
776 len = virtio32_to_cpu(vdev, desc->len);
777 if (len > vring->rem_len)
778 len = vring->rem_len;
779
780 /* Rx/Tx one word (8 bytes) if not done. */
781 if (vring->cur_len < len) {
782 mlxbf_tmfifo_rxtx_word(vring, desc, is_rx, len);
783 (*avail)--;
784 }
785
786 /* Check again whether it's done. */
787 if (vring->cur_len == len) {
788 vring->cur_len = 0;
789 vring->rem_len -= len;
790
791 /* Get the next desc on the chain. */
792 if (!IS_VRING_DROP(vring) && vring->rem_len > 0 &&
793 (virtio16_to_cpu(vdev, desc->flags) & VRING_DESC_F_NEXT)) {
794 idx = virtio16_to_cpu(vdev, desc->next);
795 desc = &vr->desc[idx];
796 goto mlxbf_tmfifo_desc_done;
797 }
798
799 /* Done and release the packet. */
800 desc = NULL;
801 fifo->vring[is_rx] = NULL;
802 if (!IS_VRING_DROP(vring)) {
803 mlxbf_tmfifo_release_pkt(vring);
804 } else {
805 vring->pkt_len = 0;
806 vring->desc_head = NULL;
807 vring->desc = NULL;
808 return false;
809 }
810
811 /*
812 * Make sure the load/store are in order before
813 * returning back to virtio.
814 */
815 virtio_mb(false);
816
817 /* Notify upper layer that packet is done. */
818 spin_lock_irqsave(&fifo->spin_lock[is_rx], flags);
819 vring_interrupt(0, vring->vq);
820 spin_unlock_irqrestore(&fifo->spin_lock[is_rx], flags);
821 }
822
823 mlxbf_tmfifo_desc_done:
824 /* Save the current desc. */
825 vring->desc = desc;
826
827 return true;
828 }
829
mlxbf_tmfifo_check_tx_timeout(struct mlxbf_tmfifo_vring * vring)830 static void mlxbf_tmfifo_check_tx_timeout(struct mlxbf_tmfifo_vring *vring)
831 {
832 unsigned long flags;
833
834 /* Only handle Tx timeout for network vdev. */
835 if (vring->vdev_id != VIRTIO_ID_NET)
836 return;
837
838 /* Initialize the timeout or return if not expired. */
839 if (!vring->tx_timeout) {
840 /* Initialize the timeout. */
841 vring->tx_timeout = jiffies +
842 msecs_to_jiffies(TMFIFO_TX_TIMEOUT);
843 return;
844 } else if (time_before(jiffies, vring->tx_timeout)) {
845 /* Return if not timeout yet. */
846 return;
847 }
848
849 /*
850 * Drop the packet after timeout. The outstanding packet is
851 * released and the remaining bytes will be sent with padding byte 0x00
852 * as a recovery. On the peer(host) side, the padding bytes 0x00 will be
853 * either dropped directly, or appended into existing outstanding packet
854 * thus dropped as corrupted network packet.
855 */
856 vring->rem_padding = round_up(vring->rem_len, sizeof(u64));
857 mlxbf_tmfifo_release_pkt(vring);
858 vring->cur_len = 0;
859 vring->rem_len = 0;
860 vring->fifo->vring[0] = NULL;
861
862 /*
863 * Make sure the load/store are in order before
864 * returning back to virtio.
865 */
866 virtio_mb(false);
867
868 /* Notify upper layer. */
869 spin_lock_irqsave(&vring->fifo->spin_lock[0], flags);
870 vring_interrupt(0, vring->vq);
871 spin_unlock_irqrestore(&vring->fifo->spin_lock[0], flags);
872 }
873
874 /* Rx & Tx processing of a queue. */
mlxbf_tmfifo_rxtx(struct mlxbf_tmfifo_vring * vring,bool is_rx)875 static void mlxbf_tmfifo_rxtx(struct mlxbf_tmfifo_vring *vring, bool is_rx)
876 {
877 int avail = 0, devid = vring->vdev_id;
878 struct mlxbf_tmfifo *fifo;
879 bool more;
880
881 fifo = vring->fifo;
882
883 /* Return if vdev is not ready. */
884 if (!fifo || !fifo->vdev[devid])
885 return;
886
887 /* Return if another vring is running. */
888 if (fifo->vring[is_rx] && fifo->vring[is_rx] != vring)
889 return;
890
891 /* Only handle console and network for now. */
892 if (WARN_ON(devid != VIRTIO_ID_NET && devid != VIRTIO_ID_CONSOLE))
893 return;
894
895 do {
896 retry:
897 /* Get available FIFO space. */
898 if (avail == 0) {
899 if (is_rx)
900 avail = mlxbf_tmfifo_get_rx_avail(fifo);
901 else
902 avail = mlxbf_tmfifo_get_tx_avail(fifo, devid);
903 if (avail <= 0)
904 break;
905 }
906
907 /* Insert paddings for discarded Tx packet. */
908 if (!is_rx) {
909 vring->tx_timeout = 0;
910 while (vring->rem_padding >= sizeof(u64)) {
911 writeq(0, vring->fifo->tx.data);
912 vring->rem_padding -= sizeof(u64);
913 if (--avail == 0)
914 goto retry;
915 }
916 }
917
918 /* Console output always comes from the Tx buffer. */
919 if (!is_rx && devid == VIRTIO_ID_CONSOLE) {
920 mlxbf_tmfifo_console_tx(fifo, avail);
921 break;
922 }
923
924 /* Handle one descriptor. */
925 more = mlxbf_tmfifo_rxtx_one_desc(vring, is_rx, &avail);
926 } while (more);
927
928 /* Check Tx timeout. */
929 if (avail <= 0 && !is_rx)
930 mlxbf_tmfifo_check_tx_timeout(vring);
931 }
932
933 /* Handle Rx or Tx queues. */
mlxbf_tmfifo_work_rxtx(struct mlxbf_tmfifo * fifo,int queue_id,int irq_id,bool is_rx)934 static void mlxbf_tmfifo_work_rxtx(struct mlxbf_tmfifo *fifo, int queue_id,
935 int irq_id, bool is_rx)
936 {
937 struct mlxbf_tmfifo_vdev *tm_vdev;
938 struct mlxbf_tmfifo_vring *vring;
939 int i;
940
941 if (!test_and_clear_bit(irq_id, &fifo->pend_events) ||
942 !fifo->irq_info[irq_id].irq)
943 return;
944
945 for (i = 0; i < MLXBF_TMFIFO_VDEV_MAX; i++) {
946 tm_vdev = fifo->vdev[i];
947 if (tm_vdev) {
948 vring = &tm_vdev->vrings[queue_id];
949 if (vring->vq)
950 mlxbf_tmfifo_rxtx(vring, is_rx);
951 }
952 }
953 }
954
955 /* Work handler for Rx and Tx case. */
mlxbf_tmfifo_work_handler(struct work_struct * work)956 static void mlxbf_tmfifo_work_handler(struct work_struct *work)
957 {
958 struct mlxbf_tmfifo *fifo;
959
960 fifo = container_of(work, struct mlxbf_tmfifo, work);
961 if (!fifo->is_ready)
962 return;
963
964 mutex_lock(&fifo->lock);
965
966 /* Tx (Send data to the TmFifo). */
967 mlxbf_tmfifo_work_rxtx(fifo, MLXBF_TMFIFO_VRING_TX,
968 MLXBF_TM_TX_LWM_IRQ, false);
969
970 /* Rx (Receive data from the TmFifo). */
971 mlxbf_tmfifo_work_rxtx(fifo, MLXBF_TMFIFO_VRING_RX,
972 MLXBF_TM_RX_HWM_IRQ, true);
973
974 mutex_unlock(&fifo->lock);
975 }
976
977 /* The notify function is called when new buffers are posted. */
mlxbf_tmfifo_virtio_notify(struct virtqueue * vq)978 static bool mlxbf_tmfifo_virtio_notify(struct virtqueue *vq)
979 {
980 struct mlxbf_tmfifo_vring *vring = vq->priv;
981 struct mlxbf_tmfifo_vdev *tm_vdev;
982 struct mlxbf_tmfifo *fifo;
983 unsigned long flags;
984
985 fifo = vring->fifo;
986
987 /*
988 * Virtio maintains vrings in pairs, even number ring for Rx
989 * and odd number ring for Tx.
990 */
991 if (vring->index & BIT(0)) {
992 /*
993 * Console could make blocking call with interrupts disabled.
994 * In such case, the vring needs to be served right away. For
995 * other cases, just set the TX LWM bit to start Tx in the
996 * worker handler.
997 */
998 if (vring->vdev_id == VIRTIO_ID_CONSOLE) {
999 spin_lock_irqsave(&fifo->spin_lock[0], flags);
1000 tm_vdev = fifo->vdev[VIRTIO_ID_CONSOLE];
1001 mlxbf_tmfifo_console_output(tm_vdev, vring);
1002 spin_unlock_irqrestore(&fifo->spin_lock[0], flags);
1003 set_bit(MLXBF_TM_TX_LWM_IRQ, &fifo->pend_events);
1004 } else if (test_and_set_bit(MLXBF_TM_TX_LWM_IRQ,
1005 &fifo->pend_events)) {
1006 return true;
1007 }
1008 } else {
1009 if (test_and_set_bit(MLXBF_TM_RX_HWM_IRQ, &fifo->pend_events))
1010 return true;
1011 }
1012
1013 schedule_work(&fifo->work);
1014
1015 return true;
1016 }
1017
1018 /* Get the array of feature bits for this device. */
mlxbf_tmfifo_virtio_get_features(struct virtio_device * vdev)1019 static u64 mlxbf_tmfifo_virtio_get_features(struct virtio_device *vdev)
1020 {
1021 struct mlxbf_tmfifo_vdev *tm_vdev = mlxbf_vdev_to_tmfifo(vdev);
1022
1023 return tm_vdev->features;
1024 }
1025
1026 /* Confirm device features to use. */
mlxbf_tmfifo_virtio_finalize_features(struct virtio_device * vdev)1027 static int mlxbf_tmfifo_virtio_finalize_features(struct virtio_device *vdev)
1028 {
1029 struct mlxbf_tmfifo_vdev *tm_vdev = mlxbf_vdev_to_tmfifo(vdev);
1030
1031 tm_vdev->features = vdev->features;
1032
1033 return 0;
1034 }
1035
1036 /* Free virtqueues found by find_vqs(). */
mlxbf_tmfifo_virtio_del_vqs(struct virtio_device * vdev)1037 static void mlxbf_tmfifo_virtio_del_vqs(struct virtio_device *vdev)
1038 {
1039 struct mlxbf_tmfifo_vdev *tm_vdev = mlxbf_vdev_to_tmfifo(vdev);
1040 struct mlxbf_tmfifo_vring *vring;
1041 struct virtqueue *vq;
1042 int i;
1043
1044 for (i = 0; i < ARRAY_SIZE(tm_vdev->vrings); i++) {
1045 vring = &tm_vdev->vrings[i];
1046
1047 /* Release the pending packet. */
1048 if (vring->desc)
1049 mlxbf_tmfifo_release_pkt(vring);
1050 vq = vring->vq;
1051 if (vq) {
1052 vring->vq = NULL;
1053 vring_del_virtqueue(vq);
1054 }
1055 }
1056 }
1057
1058 /* Create and initialize the virtual queues. */
mlxbf_tmfifo_virtio_find_vqs(struct virtio_device * vdev,unsigned int nvqs,struct virtqueue * vqs[],struct virtqueue_info vqs_info[],struct irq_affinity * desc)1059 static int mlxbf_tmfifo_virtio_find_vqs(struct virtio_device *vdev,
1060 unsigned int nvqs,
1061 struct virtqueue *vqs[],
1062 struct virtqueue_info vqs_info[],
1063 struct irq_affinity *desc)
1064 {
1065 struct mlxbf_tmfifo_vdev *tm_vdev = mlxbf_vdev_to_tmfifo(vdev);
1066 struct mlxbf_tmfifo_vring *vring;
1067 struct virtqueue *vq;
1068 int i, ret, size;
1069
1070 if (nvqs > ARRAY_SIZE(tm_vdev->vrings))
1071 return -EINVAL;
1072
1073 for (i = 0; i < nvqs; ++i) {
1074 struct virtqueue_info *vqi = &vqs_info[i];
1075
1076 if (!vqi->name) {
1077 ret = -EINVAL;
1078 goto error;
1079 }
1080 vring = &tm_vdev->vrings[i];
1081
1082 /* zero vring */
1083 size = vring_size(vring->num, vring->align);
1084 memset(vring->va, 0, size);
1085 vq = vring_new_virtqueue(i, vring->num, vring->align, vdev,
1086 false, false, vring->va,
1087 mlxbf_tmfifo_virtio_notify,
1088 vqi->callback, vqi->name);
1089 if (!vq) {
1090 dev_err(&vdev->dev, "vring_new_virtqueue failed\n");
1091 ret = -ENOMEM;
1092 goto error;
1093 }
1094
1095 vq->num_max = vring->num;
1096
1097 vq->priv = vring;
1098
1099 /* Make vq update visible before using it. */
1100 virtio_mb(false);
1101
1102 vqs[i] = vq;
1103 vring->vq = vq;
1104 }
1105
1106 return 0;
1107
1108 error:
1109 mlxbf_tmfifo_virtio_del_vqs(vdev);
1110 return ret;
1111 }
1112
1113 /* Read the status byte. */
mlxbf_tmfifo_virtio_get_status(struct virtio_device * vdev)1114 static u8 mlxbf_tmfifo_virtio_get_status(struct virtio_device *vdev)
1115 {
1116 struct mlxbf_tmfifo_vdev *tm_vdev = mlxbf_vdev_to_tmfifo(vdev);
1117
1118 return tm_vdev->status;
1119 }
1120
1121 /* Write the status byte. */
mlxbf_tmfifo_virtio_set_status(struct virtio_device * vdev,u8 status)1122 static void mlxbf_tmfifo_virtio_set_status(struct virtio_device *vdev,
1123 u8 status)
1124 {
1125 struct mlxbf_tmfifo_vdev *tm_vdev = mlxbf_vdev_to_tmfifo(vdev);
1126
1127 tm_vdev->status = status;
1128 }
1129
1130 /* Reset the device. Not much here for now. */
mlxbf_tmfifo_virtio_reset(struct virtio_device * vdev)1131 static void mlxbf_tmfifo_virtio_reset(struct virtio_device *vdev)
1132 {
1133 struct mlxbf_tmfifo_vdev *tm_vdev = mlxbf_vdev_to_tmfifo(vdev);
1134
1135 tm_vdev->status = 0;
1136 }
1137
1138 /* Read the value of a configuration field. */
mlxbf_tmfifo_virtio_get(struct virtio_device * vdev,unsigned int offset,void * buf,unsigned int len)1139 static void mlxbf_tmfifo_virtio_get(struct virtio_device *vdev,
1140 unsigned int offset,
1141 void *buf,
1142 unsigned int len)
1143 {
1144 struct mlxbf_tmfifo_vdev *tm_vdev = mlxbf_vdev_to_tmfifo(vdev);
1145
1146 if ((u64)offset + len > sizeof(tm_vdev->config))
1147 return;
1148
1149 memcpy(buf, (u8 *)&tm_vdev->config + offset, len);
1150 }
1151
1152 /* Write the value of a configuration field. */
mlxbf_tmfifo_virtio_set(struct virtio_device * vdev,unsigned int offset,const void * buf,unsigned int len)1153 static void mlxbf_tmfifo_virtio_set(struct virtio_device *vdev,
1154 unsigned int offset,
1155 const void *buf,
1156 unsigned int len)
1157 {
1158 struct mlxbf_tmfifo_vdev *tm_vdev = mlxbf_vdev_to_tmfifo(vdev);
1159
1160 if ((u64)offset + len > sizeof(tm_vdev->config))
1161 return;
1162
1163 memcpy((u8 *)&tm_vdev->config + offset, buf, len);
1164 }
1165
tmfifo_virtio_dev_release(struct device * device)1166 static void tmfifo_virtio_dev_release(struct device *device)
1167 {
1168 struct virtio_device *vdev =
1169 container_of(device, struct virtio_device, dev);
1170 struct mlxbf_tmfifo_vdev *tm_vdev = mlxbf_vdev_to_tmfifo(vdev);
1171
1172 kfree(tm_vdev);
1173 }
1174
1175 /* Virtio config operations. */
1176 static const struct virtio_config_ops mlxbf_tmfifo_virtio_config_ops = {
1177 .get_features = mlxbf_tmfifo_virtio_get_features,
1178 .finalize_features = mlxbf_tmfifo_virtio_finalize_features,
1179 .find_vqs = mlxbf_tmfifo_virtio_find_vqs,
1180 .del_vqs = mlxbf_tmfifo_virtio_del_vqs,
1181 .reset = mlxbf_tmfifo_virtio_reset,
1182 .set_status = mlxbf_tmfifo_virtio_set_status,
1183 .get_status = mlxbf_tmfifo_virtio_get_status,
1184 .get = mlxbf_tmfifo_virtio_get,
1185 .set = mlxbf_tmfifo_virtio_set,
1186 };
1187
1188 /* Create vdev for the FIFO. */
mlxbf_tmfifo_create_vdev(struct device * dev,struct mlxbf_tmfifo * fifo,int vdev_id,u64 features,void * config,u32 size)1189 static int mlxbf_tmfifo_create_vdev(struct device *dev,
1190 struct mlxbf_tmfifo *fifo,
1191 int vdev_id, u64 features,
1192 void *config, u32 size)
1193 {
1194 struct mlxbf_tmfifo_vdev *tm_vdev, *reg_dev = NULL;
1195 int ret;
1196
1197 mutex_lock(&fifo->lock);
1198
1199 tm_vdev = fifo->vdev[vdev_id];
1200 if (tm_vdev) {
1201 dev_err(dev, "vdev %d already exists\n", vdev_id);
1202 ret = -EEXIST;
1203 goto fail;
1204 }
1205
1206 tm_vdev = kzalloc(sizeof(*tm_vdev), GFP_KERNEL);
1207 if (!tm_vdev) {
1208 ret = -ENOMEM;
1209 goto fail;
1210 }
1211
1212 tm_vdev->vdev.id.device = vdev_id;
1213 tm_vdev->vdev.config = &mlxbf_tmfifo_virtio_config_ops;
1214 tm_vdev->vdev.dev.parent = dev;
1215 tm_vdev->vdev.dev.release = tmfifo_virtio_dev_release;
1216 tm_vdev->features = features;
1217 if (config)
1218 memcpy(&tm_vdev->config, config, size);
1219
1220 if (mlxbf_tmfifo_alloc_vrings(fifo, tm_vdev)) {
1221 dev_err(dev, "unable to allocate vring\n");
1222 ret = -ENOMEM;
1223 goto vdev_fail;
1224 }
1225
1226 /* Allocate an output buffer for the console device. */
1227 if (vdev_id == VIRTIO_ID_CONSOLE)
1228 tm_vdev->tx_buf.buf = devm_kmalloc(dev,
1229 MLXBF_TMFIFO_CON_TX_BUF_SIZE,
1230 GFP_KERNEL);
1231 fifo->vdev[vdev_id] = tm_vdev;
1232
1233 /* Register the virtio device. */
1234 ret = register_virtio_device(&tm_vdev->vdev);
1235 reg_dev = tm_vdev;
1236 if (ret) {
1237 dev_err(dev, "register_virtio_device failed\n");
1238 goto vdev_fail;
1239 }
1240
1241 mutex_unlock(&fifo->lock);
1242 return 0;
1243
1244 vdev_fail:
1245 mlxbf_tmfifo_free_vrings(fifo, tm_vdev);
1246 fifo->vdev[vdev_id] = NULL;
1247 if (reg_dev)
1248 put_device(&tm_vdev->vdev.dev);
1249 else
1250 kfree(tm_vdev);
1251 fail:
1252 mutex_unlock(&fifo->lock);
1253 return ret;
1254 }
1255
1256 /* Delete vdev for the FIFO. */
mlxbf_tmfifo_delete_vdev(struct mlxbf_tmfifo * fifo,int vdev_id)1257 static int mlxbf_tmfifo_delete_vdev(struct mlxbf_tmfifo *fifo, int vdev_id)
1258 {
1259 struct mlxbf_tmfifo_vdev *tm_vdev;
1260
1261 mutex_lock(&fifo->lock);
1262
1263 /* Unregister vdev. */
1264 tm_vdev = fifo->vdev[vdev_id];
1265 if (tm_vdev) {
1266 unregister_virtio_device(&tm_vdev->vdev);
1267 mlxbf_tmfifo_free_vrings(fifo, tm_vdev);
1268 fifo->vdev[vdev_id] = NULL;
1269 }
1270
1271 mutex_unlock(&fifo->lock);
1272
1273 return 0;
1274 }
1275
1276 /* Read the configured network MAC address from efi variable. */
mlxbf_tmfifo_get_cfg_mac(u8 * mac)1277 static void mlxbf_tmfifo_get_cfg_mac(u8 *mac)
1278 {
1279 efi_guid_t guid = EFI_GLOBAL_VARIABLE_GUID;
1280 unsigned long size = ETH_ALEN;
1281 u8 buf[ETH_ALEN];
1282 efi_status_t rc;
1283
1284 rc = efi.get_variable(mlxbf_tmfifo_efi_name, &guid, NULL, &size, buf);
1285 if (rc == EFI_SUCCESS && size == ETH_ALEN)
1286 ether_addr_copy(mac, buf);
1287 else
1288 ether_addr_copy(mac, mlxbf_tmfifo_net_default_mac);
1289 }
1290
1291 /* Set TmFifo thresholds which is used to trigger interrupts. */
mlxbf_tmfifo_set_threshold(struct mlxbf_tmfifo * fifo)1292 static void mlxbf_tmfifo_set_threshold(struct mlxbf_tmfifo *fifo)
1293 {
1294 u64 ctl;
1295
1296 /* Get Tx FIFO size and set the low/high watermark. */
1297 ctl = readq(fifo->tx.ctl);
1298 fifo->tx_fifo_size =
1299 FIELD_GET(MLXBF_TMFIFO_TX_CTL__MAX_ENTRIES_MASK, ctl);
1300 ctl = (ctl & ~MLXBF_TMFIFO_TX_CTL__LWM_MASK) |
1301 FIELD_PREP(MLXBF_TMFIFO_TX_CTL__LWM_MASK,
1302 fifo->tx_fifo_size / 2);
1303 ctl = (ctl & ~MLXBF_TMFIFO_TX_CTL__HWM_MASK) |
1304 FIELD_PREP(MLXBF_TMFIFO_TX_CTL__HWM_MASK,
1305 fifo->tx_fifo_size - 1);
1306 writeq(ctl, fifo->tx.ctl);
1307
1308 /* Get Rx FIFO size and set the low/high watermark. */
1309 ctl = readq(fifo->rx.ctl);
1310 fifo->rx_fifo_size =
1311 FIELD_GET(MLXBF_TMFIFO_RX_CTL__MAX_ENTRIES_MASK, ctl);
1312 ctl = (ctl & ~MLXBF_TMFIFO_RX_CTL__LWM_MASK) |
1313 FIELD_PREP(MLXBF_TMFIFO_RX_CTL__LWM_MASK, 0);
1314 ctl = (ctl & ~MLXBF_TMFIFO_RX_CTL__HWM_MASK) |
1315 FIELD_PREP(MLXBF_TMFIFO_RX_CTL__HWM_MASK, 1);
1316 writeq(ctl, fifo->rx.ctl);
1317 }
1318
mlxbf_tmfifo_cleanup(struct mlxbf_tmfifo * fifo)1319 static void mlxbf_tmfifo_cleanup(struct mlxbf_tmfifo *fifo)
1320 {
1321 int i;
1322
1323 fifo->is_ready = false;
1324 timer_delete_sync(&fifo->timer);
1325 mlxbf_tmfifo_disable_irqs(fifo);
1326 cancel_work_sync(&fifo->work);
1327 for (i = 0; i < MLXBF_TMFIFO_VDEV_MAX; i++)
1328 mlxbf_tmfifo_delete_vdev(fifo, i);
1329 }
1330
1331 /* Probe the TMFIFO. */
mlxbf_tmfifo_probe(struct platform_device * pdev)1332 static int mlxbf_tmfifo_probe(struct platform_device *pdev)
1333 {
1334 struct virtio_net_config net_config;
1335 struct device *dev = &pdev->dev;
1336 struct mlxbf_tmfifo *fifo;
1337 u64 dev_id;
1338 int i, rc;
1339
1340 rc = acpi_dev_uid_to_integer(ACPI_COMPANION(dev), &dev_id);
1341 if (rc) {
1342 dev_err(dev, "Cannot retrieve UID\n");
1343 return rc;
1344 }
1345
1346 fifo = devm_kzalloc(dev, sizeof(*fifo), GFP_KERNEL);
1347 if (!fifo)
1348 return -ENOMEM;
1349
1350 spin_lock_init(&fifo->spin_lock[0]);
1351 spin_lock_init(&fifo->spin_lock[1]);
1352 INIT_WORK(&fifo->work, mlxbf_tmfifo_work_handler);
1353 mutex_init(&fifo->lock);
1354
1355 /* Get the resource of the Rx FIFO. */
1356 fifo->res0 = devm_platform_ioremap_resource(pdev, 0);
1357 if (IS_ERR(fifo->res0))
1358 return PTR_ERR(fifo->res0);
1359
1360 /* Get the resource of the Tx FIFO. */
1361 fifo->res1 = devm_platform_ioremap_resource(pdev, 1);
1362 if (IS_ERR(fifo->res1))
1363 return PTR_ERR(fifo->res1);
1364
1365 if (dev_id == TMFIFO_BF3_UID) {
1366 fifo->rx.ctl = fifo->res1 + MLXBF_TMFIFO_RX_CTL_BF3;
1367 fifo->rx.sts = fifo->res1 + MLXBF_TMFIFO_RX_STS_BF3;
1368 fifo->rx.data = fifo->res0 + MLXBF_TMFIFO_RX_DATA_BF3;
1369 fifo->tx.ctl = fifo->res1 + MLXBF_TMFIFO_TX_CTL_BF3;
1370 fifo->tx.sts = fifo->res1 + MLXBF_TMFIFO_TX_STS_BF3;
1371 fifo->tx.data = fifo->res0 + MLXBF_TMFIFO_TX_DATA_BF3;
1372 } else {
1373 fifo->rx.ctl = fifo->res0 + MLXBF_TMFIFO_RX_CTL;
1374 fifo->rx.sts = fifo->res0 + MLXBF_TMFIFO_RX_STS;
1375 fifo->rx.data = fifo->res0 + MLXBF_TMFIFO_RX_DATA;
1376 fifo->tx.ctl = fifo->res1 + MLXBF_TMFIFO_TX_CTL;
1377 fifo->tx.sts = fifo->res1 + MLXBF_TMFIFO_TX_STS;
1378 fifo->tx.data = fifo->res1 + MLXBF_TMFIFO_TX_DATA;
1379 }
1380
1381 platform_set_drvdata(pdev, fifo);
1382
1383 timer_setup(&fifo->timer, mlxbf_tmfifo_timer, 0);
1384
1385 for (i = 0; i < MLXBF_TM_MAX_IRQ; i++) {
1386 fifo->irq_info[i].index = i;
1387 fifo->irq_info[i].fifo = fifo;
1388 fifo->irq_info[i].irq = platform_get_irq(pdev, i);
1389 rc = devm_request_irq(dev, fifo->irq_info[i].irq,
1390 mlxbf_tmfifo_irq_handler, 0,
1391 "tmfifo", &fifo->irq_info[i]);
1392 if (rc) {
1393 dev_err(dev, "devm_request_irq failed\n");
1394 fifo->irq_info[i].irq = 0;
1395 return rc;
1396 }
1397 }
1398
1399 mlxbf_tmfifo_set_threshold(fifo);
1400
1401 /* Create the console vdev. */
1402 rc = mlxbf_tmfifo_create_vdev(dev, fifo, VIRTIO_ID_CONSOLE, 0, NULL, 0);
1403 if (rc)
1404 goto fail;
1405
1406 /* Create the network vdev. */
1407 memset(&net_config, 0, sizeof(net_config));
1408
1409 /* A legacy-only interface for now. */
1410 net_config.mtu = __cpu_to_virtio16(virtio_legacy_is_little_endian(),
1411 ETH_DATA_LEN);
1412 net_config.status = __cpu_to_virtio16(virtio_legacy_is_little_endian(),
1413 VIRTIO_NET_S_LINK_UP);
1414 mlxbf_tmfifo_get_cfg_mac(net_config.mac);
1415 rc = mlxbf_tmfifo_create_vdev(dev, fifo, VIRTIO_ID_NET,
1416 MLXBF_TMFIFO_NET_FEATURES, &net_config,
1417 sizeof(net_config));
1418 if (rc)
1419 goto fail;
1420
1421 mod_timer(&fifo->timer, jiffies + MLXBF_TMFIFO_TIMER_INTERVAL);
1422
1423 /* Make all updates visible before setting the 'is_ready' flag. */
1424 virtio_mb(false);
1425
1426 fifo->is_ready = true;
1427 return 0;
1428
1429 fail:
1430 mlxbf_tmfifo_cleanup(fifo);
1431 return rc;
1432 }
1433
1434 /* Device remove function. */
mlxbf_tmfifo_remove(struct platform_device * pdev)1435 static void mlxbf_tmfifo_remove(struct platform_device *pdev)
1436 {
1437 struct mlxbf_tmfifo *fifo = platform_get_drvdata(pdev);
1438
1439 mlxbf_tmfifo_cleanup(fifo);
1440 }
1441
1442 static const struct acpi_device_id mlxbf_tmfifo_acpi_match[] = {
1443 { "MLNXBF01", 0 },
1444 {}
1445 };
1446 MODULE_DEVICE_TABLE(acpi, mlxbf_tmfifo_acpi_match);
1447
1448 static struct platform_driver mlxbf_tmfifo_driver = {
1449 .probe = mlxbf_tmfifo_probe,
1450 .remove = mlxbf_tmfifo_remove,
1451 .driver = {
1452 .name = "bf-tmfifo",
1453 .acpi_match_table = mlxbf_tmfifo_acpi_match,
1454 },
1455 };
1456
1457 module_platform_driver(mlxbf_tmfifo_driver);
1458
1459 MODULE_DESCRIPTION("Mellanox BlueField SoC TmFifo Driver");
1460 MODULE_LICENSE("GPL v2");
1461 MODULE_AUTHOR("Mellanox Technologies");
1462