user_sdma.c 46.3 KB
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/*
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 * Copyright(c) 2015, 2016 Intel Corporation.
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 *
 * This file is provided under a dual BSD/GPLv2 license.  When using or
 * redistributing this file, you may do so under either license.
 *
 * GPL LICENSE SUMMARY
 *
 * This program is free software; you can redistribute it and/or modify
 * it under the terms of version 2 of the GNU General Public License as
 * published by the Free Software Foundation.
 *
 * This program is distributed in the hope that it will be useful, but
 * WITHOUT ANY WARRANTY; without even the implied warranty of
 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the GNU
 * General Public License for more details.
 *
 * BSD LICENSE
 *
 * Redistribution and use in source and binary forms, with or without
 * modification, are permitted provided that the following conditions
 * are met:
 *
 *  - Redistributions of source code must retain the above copyright
 *    notice, this list of conditions and the following disclaimer.
 *  - Redistributions in binary form must reproduce the above copyright
 *    notice, this list of conditions and the following disclaimer in
 *    the documentation and/or other materials provided with the
 *    distribution.
 *  - Neither the name of Intel Corporation nor the names of its
 *    contributors may be used to endorse or promote products derived
 *    from this software without specific prior written permission.
 *
 * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
 * "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
 * LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
 * A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
 * OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
 * SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
 * LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
 * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
 * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
 * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
 * OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
 *
 */
#include <linux/mm.h>
#include <linux/types.h>
#include <linux/device.h>
#include <linux/dmapool.h>
#include <linux/slab.h>
#include <linux/list.h>
#include <linux/highmem.h>
#include <linux/io.h>
#include <linux/uio.h>
#include <linux/rbtree.h>
#include <linux/spinlock.h>
#include <linux/delay.h>
#include <linux/kthread.h>
#include <linux/mmu_context.h>
#include <linux/module.h>
#include <linux/vmalloc.h>

#include "hfi.h"
#include "sdma.h"
#include "user_sdma.h"
#include "verbs.h"  /* for the headers */
#include "common.h" /* for struct hfi1_tid_info */
#include "trace.h"
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#include "mmu_rb.h"
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static uint hfi1_sdma_comp_ring_size = 128;
module_param_named(sdma_comp_size, hfi1_sdma_comp_ring_size, uint, S_IRUGO);
MODULE_PARM_DESC(sdma_comp_size, "Size of User SDMA completion ring. Default: 128");

/* The maximum number of Data io vectors per message/request */
#define MAX_VECTORS_PER_REQ 8
/*
 * Maximum number of packet to send from each message/request
 * before moving to the next one.
 */
#define MAX_PKTS_PER_QUEUE 16

#define num_pages(x) (1 + ((((x) - 1) & PAGE_MASK) >> PAGE_SHIFT))

#define req_opcode(x) \
	(((x) >> HFI1_SDMA_REQ_OPCODE_SHIFT) & HFI1_SDMA_REQ_OPCODE_MASK)
#define req_version(x) \
	(((x) >> HFI1_SDMA_REQ_VERSION_SHIFT) & HFI1_SDMA_REQ_OPCODE_MASK)
#define req_iovcnt(x) \
	(((x) >> HFI1_SDMA_REQ_IOVCNT_SHIFT) & HFI1_SDMA_REQ_IOVCNT_MASK)

/* Number of BTH.PSN bits used for sequence number in expected rcvs */
#define BTH_SEQ_MASK 0x7ffull

/*
 * Define fields in the KDETH header so we can update the header
 * template.
 */
#define KDETH_OFFSET_SHIFT        0
#define KDETH_OFFSET_MASK         0x7fff
#define KDETH_OM_SHIFT            15
#define KDETH_OM_MASK             0x1
#define KDETH_TID_SHIFT           16
#define KDETH_TID_MASK            0x3ff
#define KDETH_TIDCTRL_SHIFT       26
#define KDETH_TIDCTRL_MASK        0x3
#define KDETH_INTR_SHIFT          28
#define KDETH_INTR_MASK           0x1
#define KDETH_SH_SHIFT            29
#define KDETH_SH_MASK             0x1
#define KDETH_HCRC_UPPER_SHIFT    16
#define KDETH_HCRC_UPPER_MASK     0xff
#define KDETH_HCRC_LOWER_SHIFT    24
#define KDETH_HCRC_LOWER_MASK     0xff

#define PBC2LRH(x) ((((x) & 0xfff) << 2) - 4)
#define LRH2PBC(x) ((((x) >> 2) + 1) & 0xfff)

#define KDETH_GET(val, field)						\
	(((le32_to_cpu((val))) >> KDETH_##field##_SHIFT) & KDETH_##field##_MASK)
#define KDETH_SET(dw, field, val) do {					\
		u32 dwval = le32_to_cpu(dw);				\
		dwval &= ~(KDETH_##field##_MASK << KDETH_##field##_SHIFT); \
		dwval |= (((val) & KDETH_##field##_MASK) << \
			  KDETH_##field##_SHIFT);			\
		dw = cpu_to_le32(dwval);				\
	} while (0)

#define AHG_HEADER_SET(arr, idx, dw, bit, width, value)			\
	do {								\
		if ((idx) < ARRAY_SIZE((arr)))				\
			(arr)[(idx++)] = sdma_build_ahg_descriptor(	\
				(__force u16)(value), (dw), (bit),	\
							(width));	\
		else							\
			return -ERANGE;					\
	} while (0)

/* KDETH OM multipliers and switch over point */
#define KDETH_OM_SMALL     4
#define KDETH_OM_LARGE     64
#define KDETH_OM_MAX_SIZE  (1 << ((KDETH_OM_LARGE / KDETH_OM_SMALL) + 1))

/* Last packet in the request */
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#define TXREQ_FLAGS_REQ_LAST_PKT BIT(0)
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#define SDMA_REQ_IN_USE     0
#define SDMA_REQ_FOR_THREAD 1
#define SDMA_REQ_SEND_DONE  2
#define SDMA_REQ_HAVE_AHG   3
#define SDMA_REQ_HAS_ERROR  4
#define SDMA_REQ_DONE_ERROR 5

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#define SDMA_PKT_Q_INACTIVE BIT(0)
#define SDMA_PKT_Q_ACTIVE   BIT(1)
#define SDMA_PKT_Q_DEFERRED BIT(2)
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/*
 * Maximum retry attempts to submit a TX request
 * before putting the process to sleep.
 */
#define MAX_DEFER_RETRY_COUNT 1

static unsigned initial_pkt_count = 8;

#define SDMA_IOWAIT_TIMEOUT 1000 /* in milliseconds */

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struct sdma_mmu_node;

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struct user_sdma_iovec {
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	struct list_head list;
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	struct iovec iov;
	/* number of pages in this vector */
	unsigned npages;
	/* array of pinned pages for this vector */
	struct page **pages;
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	/*
	 * offset into the virtual address space of the vector at
	 * which we last left off.
	 */
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	u64 offset;
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	struct sdma_mmu_node *node;
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};

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#define SDMA_CACHE_NODE_EVICT BIT(0)

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struct sdma_mmu_node {
	struct mmu_rb_node rb;
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	struct list_head list;
	struct hfi1_user_sdma_pkt_q *pq;
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	atomic_t refcount;
	struct page **pages;
	unsigned npages;
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	unsigned long flags;
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};

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struct user_sdma_request {
	struct sdma_req_info info;
	struct hfi1_user_sdma_pkt_q *pq;
	struct hfi1_user_sdma_comp_q *cq;
	/* This is the original header from user space */
	struct hfi1_pkt_header hdr;
	/*
	 * Pointer to the SDMA engine for this request.
	 * Since different request could be on different VLs,
	 * each request will need it's own engine pointer.
	 */
	struct sdma_engine *sde;
	u8 ahg_idx;
	u32 ahg[9];
	/*
	 * KDETH.Offset (Eager) field
	 * We need to remember the initial value so the headers
	 * can be updated properly.
	 */
	u32 koffset;
	/*
	 * KDETH.OFFSET (TID) field
	 * The offset can cover multiple packets, depending on the
	 * size of the TID entry.
	 */
	u32 tidoffset;
	/*
	 * KDETH.OM
	 * Remember this because the header template always sets it
	 * to 0.
	 */
	u8 omfactor;
	/*
	 * We copy the iovs for this request (based on
	 * info.iovcnt). These are only the data vectors
	 */
	unsigned data_iovs;
	/* total length of the data in the request */
	u32 data_len;
	/* progress index moving along the iovs array */
	unsigned iov_idx;
	struct user_sdma_iovec iovs[MAX_VECTORS_PER_REQ];
	/* number of elements copied to the tids array */
	u16 n_tids;
	/* TID array values copied from the tid_iov vector */
	u32 *tids;
	u16 tididx;
	u32 sent;
	u64 seqnum;
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	u64 seqcomp;
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	u64 seqsubmitted;
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	struct list_head txps;
	unsigned long flags;
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	/* status of the last txreq completed */
	int status;
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};

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/*
 * A single txreq could span up to 3 physical pages when the MTU
 * is sufficiently large (> 4K). Each of the IOV pointers also
 * needs it's own set of flags so the vector has been handled
 * independently of each other.
 */
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struct user_sdma_txreq {
	/* Packet header for the txreq */
	struct hfi1_pkt_header hdr;
	struct sdma_txreq txreq;
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	struct list_head list;
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	struct user_sdma_request *req;
	u16 flags;
	unsigned busycount;
	u64 seqnum;
};

#define SDMA_DBG(req, fmt, ...)				     \
	hfi1_cdbg(SDMA, "[%u:%u:%u:%u] " fmt, (req)->pq->dd->unit, \
		 (req)->pq->ctxt, (req)->pq->subctxt, (req)->info.comp_idx, \
		 ##__VA_ARGS__)
#define SDMA_Q_DBG(pq, fmt, ...)			 \
	hfi1_cdbg(SDMA, "[%u:%u:%u] " fmt, (pq)->dd->unit, (pq)->ctxt, \
		 (pq)->subctxt, ##__VA_ARGS__)

static int user_sdma_send_pkts(struct user_sdma_request *, unsigned);
static int num_user_pages(const struct iovec *);
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static void user_sdma_txreq_cb(struct sdma_txreq *, int);
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static inline void pq_update(struct hfi1_user_sdma_pkt_q *);
static void user_sdma_free_request(struct user_sdma_request *, bool);
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static int pin_vector_pages(struct user_sdma_request *,
			    struct user_sdma_iovec *);
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static void unpin_vector_pages(struct mm_struct *, struct page **, unsigned,
			       unsigned);
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static int check_header_template(struct user_sdma_request *,
				 struct hfi1_pkt_header *, u32, u32);
static int set_txreq_header(struct user_sdma_request *,
			    struct user_sdma_txreq *, u32);
static int set_txreq_header_ahg(struct user_sdma_request *,
				struct user_sdma_txreq *, u32);
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static inline void set_comp_state(struct hfi1_user_sdma_pkt_q *,
				  struct hfi1_user_sdma_comp_q *,
				  u16, enum hfi1_sdma_comp_state, int);
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static inline u32 set_pkt_bth_psn(__be32, u8, u32);
static inline u32 get_lrh_len(struct hfi1_pkt_header, u32 len);

static int defer_packet_queue(
	struct sdma_engine *,
	struct iowait *,
	struct sdma_txreq *,
	unsigned seq);
static void activate_packet_queue(struct iowait *, int);
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static bool sdma_rb_filter(struct mmu_rb_node *, unsigned long, unsigned long);
static int sdma_rb_insert(struct rb_root *, struct mmu_rb_node *);
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static void sdma_rb_remove(struct rb_root *, struct mmu_rb_node *,
			   struct mm_struct *);
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static int sdma_rb_invalidate(struct rb_root *, struct mmu_rb_node *);

static struct mmu_rb_ops sdma_rb_ops = {
	.filter = sdma_rb_filter,
	.insert = sdma_rb_insert,
	.remove = sdma_rb_remove,
	.invalidate = sdma_rb_invalidate
};
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static int defer_packet_queue(
	struct sdma_engine *sde,
	struct iowait *wait,
	struct sdma_txreq *txreq,
	unsigned seq)
{
	struct hfi1_user_sdma_pkt_q *pq =
		container_of(wait, struct hfi1_user_sdma_pkt_q, busy);
	struct hfi1_ibdev *dev = &pq->dd->verbs_dev;
	struct user_sdma_txreq *tx =
		container_of(txreq, struct user_sdma_txreq, txreq);

	if (sdma_progress(sde, seq, txreq)) {
		if (tx->busycount++ < MAX_DEFER_RETRY_COUNT)
			goto eagain;
	}
	/*
	 * We are assuming that if the list is enqueued somewhere, it
	 * is to the dmawait list since that is the only place where
	 * it is supposed to be enqueued.
	 */
	xchg(&pq->state, SDMA_PKT_Q_DEFERRED);
	write_seqlock(&dev->iowait_lock);
	if (list_empty(&pq->busy.list))
		list_add_tail(&pq->busy.list, &sde->dmawait);
	write_sequnlock(&dev->iowait_lock);
	return -EBUSY;
eagain:
	return -EAGAIN;
}

static void activate_packet_queue(struct iowait *wait, int reason)
{
	struct hfi1_user_sdma_pkt_q *pq =
		container_of(wait, struct hfi1_user_sdma_pkt_q, busy);
	xchg(&pq->state, SDMA_PKT_Q_ACTIVE);
	wake_up(&wait->wait_dma);
};

static void sdma_kmem_cache_ctor(void *obj)
{
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	struct user_sdma_txreq *tx = obj;
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	memset(tx, 0, sizeof(*tx));
}

int hfi1_user_sdma_alloc_queues(struct hfi1_ctxtdata *uctxt, struct file *fp)
{
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	struct hfi1_filedata *fd;
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	int ret = 0;
	unsigned memsize;
	char buf[64];
	struct hfi1_devdata *dd;
	struct hfi1_user_sdma_comp_q *cq;
	struct hfi1_user_sdma_pkt_q *pq;
	unsigned long flags;

	if (!uctxt || !fp) {
		ret = -EBADF;
		goto done;
	}

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	fd = fp->private_data;

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	if (!hfi1_sdma_comp_ring_size) {
		ret = -EINVAL;
		goto done;
	}

	dd = uctxt->dd;

	pq = kzalloc(sizeof(*pq), GFP_KERNEL);
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	if (!pq)
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		goto pq_nomem;
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	memsize = sizeof(*pq->reqs) * hfi1_sdma_comp_ring_size;
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	pq->reqs = kzalloc(memsize, GFP_KERNEL);
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	if (!pq->reqs)
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		goto pq_reqs_nomem;
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	INIT_LIST_HEAD(&pq->list);
	pq->dd = dd;
	pq->ctxt = uctxt->ctxt;
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	pq->subctxt = fd->subctxt;
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	pq->n_max_reqs = hfi1_sdma_comp_ring_size;
	pq->state = SDMA_PKT_Q_INACTIVE;
	atomic_set(&pq->n_reqs, 0);
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	init_waitqueue_head(&pq->wait);
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	pq->sdma_rb_root = RB_ROOT;
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	INIT_LIST_HEAD(&pq->evict);
	spin_lock_init(&pq->evict_lock);
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	iowait_init(&pq->busy, 0, NULL, defer_packet_queue,
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		    activate_packet_queue, NULL);
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	pq->reqidx = 0;
	snprintf(buf, 64, "txreq-kmem-cache-%u-%u-%u", dd->unit, uctxt->ctxt,
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		 fd->subctxt);
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	pq->txreq_cache = kmem_cache_create(buf,
			       sizeof(struct user_sdma_txreq),
					    L1_CACHE_BYTES,
					    SLAB_HWCACHE_ALIGN,
					    sdma_kmem_cache_ctor);
	if (!pq->txreq_cache) {
		dd_dev_err(dd, "[%u] Failed to allocate TxReq cache\n",
			   uctxt->ctxt);
		goto pq_txreq_nomem;
	}
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	fd->pq = pq;
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	cq = kzalloc(sizeof(*cq), GFP_KERNEL);
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	if (!cq)
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		goto cq_nomem;

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	memsize = PAGE_ALIGN(sizeof(*cq->comps) * hfi1_sdma_comp_ring_size);
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	cq->comps = vmalloc_user(memsize);
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	if (!cq->comps)
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		goto cq_comps_nomem;
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	cq->nentries = hfi1_sdma_comp_ring_size;
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	fd->cq = cq;
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	ret = hfi1_mmu_rb_register(&pq->sdma_rb_root, &sdma_rb_ops);
	if (ret) {
		dd_dev_err(dd, "Failed to register with MMU %d", ret);
		goto done;
	}

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	spin_lock_irqsave(&uctxt->sdma_qlock, flags);
	list_add(&pq->list, &uctxt->sdma_queues);
	spin_unlock_irqrestore(&uctxt->sdma_qlock, flags);
	goto done;

cq_comps_nomem:
	kfree(cq);
cq_nomem:
	kmem_cache_destroy(pq->txreq_cache);
pq_txreq_nomem:
	kfree(pq->reqs);
pq_reqs_nomem:
	kfree(pq);
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	fd->pq = NULL;
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pq_nomem:
	ret = -ENOMEM;
done:
	return ret;
}

int hfi1_user_sdma_free_queues(struct hfi1_filedata *fd)
{
	struct hfi1_ctxtdata *uctxt = fd->uctxt;
	struct hfi1_user_sdma_pkt_q *pq;
	unsigned long flags;

	hfi1_cdbg(SDMA, "[%u:%u:%u] Freeing user SDMA queues", uctxt->dd->unit,
		  uctxt->ctxt, fd->subctxt);
	pq = fd->pq;
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	hfi1_mmu_rb_unregister(&pq->sdma_rb_root);
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	if (pq) {
		spin_lock_irqsave(&uctxt->sdma_qlock, flags);
		if (!list_empty(&pq->list))
			list_del_init(&pq->list);
		spin_unlock_irqrestore(&uctxt->sdma_qlock, flags);
		iowait_sdma_drain(&pq->busy);
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		/* Wait until all requests have been freed. */
		wait_event_interruptible(
			pq->wait,
			(ACCESS_ONCE(pq->state) == SDMA_PKT_Q_INACTIVE));
		kfree(pq->reqs);
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		kmem_cache_destroy(pq->txreq_cache);
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		kfree(pq);
		fd->pq = NULL;
	}
	if (fd->cq) {
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		vfree(fd->cq->comps);
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		kfree(fd->cq);
		fd->cq = NULL;
	}
	return 0;
}

int hfi1_user_sdma_process_request(struct file *fp, struct iovec *iovec,
				   unsigned long dim, unsigned long *count)
{
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	int ret = 0, i = 0;
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	struct hfi1_filedata *fd = fp->private_data;
	struct hfi1_ctxtdata *uctxt = fd->uctxt;
	struct hfi1_user_sdma_pkt_q *pq = fd->pq;
	struct hfi1_user_sdma_comp_q *cq = fd->cq;
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	struct hfi1_devdata *dd = pq->dd;
	unsigned long idx = 0;
	u8 pcount = initial_pkt_count;
	struct sdma_req_info info;
	struct user_sdma_request *req;
	u8 opcode, sc, vl;
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	int req_queued = 0;
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	if (iovec[idx].iov_len < sizeof(info) + sizeof(req->hdr)) {
		hfi1_cdbg(
		   SDMA,
		   "[%u:%u:%u] First vector not big enough for header %lu/%lu",
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		   dd->unit, uctxt->ctxt, fd->subctxt,
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		   iovec[idx].iov_len, sizeof(info) + sizeof(req->hdr));
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		return -EINVAL;
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	}
	ret = copy_from_user(&info, iovec[idx].iov_base, sizeof(info));
	if (ret) {
		hfi1_cdbg(SDMA, "[%u:%u:%u] Failed to copy info QW (%d)",
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			  dd->unit, uctxt->ctxt, fd->subctxt, ret);
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		return -EFAULT;
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	}
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	trace_hfi1_sdma_user_reqinfo(dd, uctxt->ctxt, fd->subctxt,
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				     (u16 *)&info);
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	if (cq->comps[info.comp_idx].status == QUEUED ||
	    test_bit(SDMA_REQ_IN_USE, &pq->reqs[info.comp_idx].flags)) {
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		hfi1_cdbg(SDMA, "[%u:%u:%u] Entry %u is in QUEUED state",
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			  dd->unit, uctxt->ctxt, fd->subctxt,
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536
			  info.comp_idx);
537
		return -EBADSLT;
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	}
	if (!info.fragsize) {
		hfi1_cdbg(SDMA,
			  "[%u:%u:%u:%u] Request does not specify fragsize",
542
			  dd->unit, uctxt->ctxt, fd->subctxt, info.comp_idx);
543
		return -EINVAL;
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	}
	/*
	 * We've done all the safety checks that we can up to this point,
	 * "allocate" the request entry.
	 */
	hfi1_cdbg(SDMA, "[%u:%u:%u] Using req/comp entry %u\n", dd->unit,
550
		  uctxt->ctxt, fd->subctxt, info.comp_idx);
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	req = pq->reqs + info.comp_idx;
	memset(req, 0, sizeof(*req));
	/* Mark the request as IN_USE before we start filling it in. */
	set_bit(SDMA_REQ_IN_USE, &req->flags);
	req->data_iovs = req_iovcnt(info.ctrl) - 1;
	req->pq = pq;
	req->cq = cq;
558
	req->status = -1;
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	INIT_LIST_HEAD(&req->txps);
560

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	memcpy(&req->info, &info, sizeof(info));

	if (req_opcode(info.ctrl) == EXPECTED)
		req->data_iovs--;

	if (!info.npkts || req->data_iovs > MAX_VECTORS_PER_REQ) {
		SDMA_DBG(req, "Too many vectors (%u/%u)", req->data_iovs,
			 MAX_VECTORS_PER_REQ);
569
		return -EINVAL;
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	}
	/* Copy the header from the user buffer */
	ret = copy_from_user(&req->hdr, iovec[idx].iov_base + sizeof(info),
			     sizeof(req->hdr));
	if (ret) {
		SDMA_DBG(req, "Failed to copy header template (%d)", ret);
		ret = -EFAULT;
		goto free_req;
	}

	/* If Static rate control is not enabled, sanitize the header. */
	if (!HFI1_CAP_IS_USET(STATIC_RATE_CTRL))
		req->hdr.pbc[2] = 0;

	/* Validate the opcode. Do not trust packets from user space blindly. */
	opcode = (be32_to_cpu(req->hdr.bth[0]) >> 24) & 0xff;
	if ((opcode & USER_OPCODE_CHECK_MASK) !=
	     USER_OPCODE_CHECK_VAL) {
		SDMA_DBG(req, "Invalid opcode (%d)", opcode);
		ret = -EINVAL;
		goto free_req;
	}
	/*
	 * Validate the vl. Do not trust packets from user space blindly.
	 * VL comes from PBC, SC comes from LRH, and the VL needs to
	 * match the SC look up.
	 */
	vl = (le16_to_cpu(req->hdr.pbc[0]) >> 12) & 0xF;
	sc = (((be16_to_cpu(req->hdr.lrh[0]) >> 12) & 0xF) |
	      (((le16_to_cpu(req->hdr.pbc[1]) >> 14) & 0x1) << 4));
	if (vl >= dd->pport->vls_operational ||
	    vl != sc_to_vlt(dd, sc)) {
		SDMA_DBG(req, "Invalid SC(%u)/VL(%u)", sc, vl);
		ret = -EINVAL;
		goto free_req;
	}

607 608 609 610 611 612 613
	/* Checking P_KEY for requests from user-space */
	if (egress_pkey_check(dd->pport, req->hdr.lrh, req->hdr.bth, sc,
			      PKEY_CHECK_INVALID)) {
		ret = -EINVAL;
		goto free_req;
	}

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	/*
	 * Also should check the BTH.lnh. If it says the next header is GRH then
	 * the RXE parsing will be off and will land in the middle of the KDETH
	 * or miss it entirely.
	 */
	if ((be16_to_cpu(req->hdr.lrh[0]) & 0x3) == HFI1_LRH_GRH) {
		SDMA_DBG(req, "User tried to pass in a GRH");
		ret = -EINVAL;
		goto free_req;
	}

	req->koffset = le32_to_cpu(req->hdr.kdeth.swdata[6]);
626 627 628 629
	/*
	 * Calculate the initial TID offset based on the values of
	 * KDETH.OFFSET and KDETH.OM that are passed in.
	 */
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	req->tidoffset = KDETH_GET(req->hdr.kdeth.ver_tid_offset, OFFSET) *
		(KDETH_GET(req->hdr.kdeth.ver_tid_offset, OM) ?
		 KDETH_OM_LARGE : KDETH_OM_SMALL);
	SDMA_DBG(req, "Initial TID offset %u", req->tidoffset);
	idx++;

	/* Save all the IO vector structures */
	while (i < req->data_iovs) {
638
		INIT_LIST_HEAD(&req->iovs[i].list);
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		memcpy(&req->iovs[i].iov, iovec + idx++, sizeof(struct iovec));
640 641 642 643 644
		ret = pin_vector_pages(req, &req->iovs[i]);
		if (ret) {
			req->status = ret;
			goto free_req;
		}
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		req->data_len += req->iovs[i++].iov.iov_len;
	}
	SDMA_DBG(req, "total data length %u", req->data_len);

	if (pcount > req->info.npkts)
		pcount = req->info.npkts;
	/*
	 * Copy any TID info
	 * User space will provide the TID info only when the
	 * request type is EXPECTED. This is true even if there is
	 * only one packet in the request and the header is already
	 * setup. The reason for the singular TID case is that the
	 * driver needs to perform safety checks.
	 */
	if (req_opcode(req->info.ctrl) == EXPECTED) {
		u16 ntids = iovec[idx].iov_len / sizeof(*req->tids);

		if (!ntids || ntids > MAX_TID_PAIR_ENTRIES) {
			ret = -EINVAL;
			goto free_req;
		}
		req->tids = kcalloc(ntids, sizeof(*req->tids), GFP_KERNEL);
		if (!req->tids) {
			ret = -ENOMEM;
			goto free_req;
		}
		/*
		 * We have to copy all of the tids because they may vary
		 * in size and, therefore, the TID count might not be
		 * equal to the pkt count. However, there is no way to
		 * tell at this point.
		 */
		ret = copy_from_user(req->tids, iovec[idx].iov_base,
				     ntids * sizeof(*req->tids));
		if (ret) {
			SDMA_DBG(req, "Failed to copy %d TIDs (%d)",
				 ntids, ret);
			ret = -EFAULT;
			goto free_req;
		}
		req->n_tids = ntids;
		idx++;
	}

	/* Have to select the engine */
	req->sde = sdma_select_engine_vl(dd,
691
					 (u32)(uctxt->ctxt + fd->subctxt),
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					 vl);
	if (!req->sde || !sdma_running(req->sde)) {
		ret = -ECOMM;
		goto free_req;
	}

	/* We don't need an AHG entry if the request contains only one packet */
	if (req->info.npkts > 1 && HFI1_CAP_IS_USET(SDMA_AHG)) {
		int ahg = sdma_ahg_alloc(req->sde);

		if (likely(ahg >= 0)) {
			req->ahg_idx = (u8)ahg;
			set_bit(SDMA_REQ_HAVE_AHG, &req->flags);
		}
	}

708 709
	set_comp_state(pq, cq, info.comp_idx, QUEUED, 0);
	atomic_inc(&pq->n_reqs);
710
	req_queued = 1;
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	/* Send the first N packets in the request to buy us some time */
712 713 714 715
	ret = user_sdma_send_pkts(req, pcount);
	if (unlikely(ret < 0 && ret != -EBUSY)) {
		req->status = ret;
		goto free_req;
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	}

718 719 720 721 722 723 724 725 726 727 728 729 730 731 732 733 734 735 736 737 738
	/*
	 * It is possible that the SDMA engine would have processed all the
	 * submitted packets by the time we get here. Therefore, only set
	 * packet queue state to ACTIVE if there are still uncompleted
	 * requests.
	 */
	if (atomic_read(&pq->n_reqs))
		xchg(&pq->state, SDMA_PKT_Q_ACTIVE);

	/*
	 * This is a somewhat blocking send implementation.
	 * The driver will block the caller until all packets of the
	 * request have been submitted to the SDMA engine. However, it
	 * will not wait for send completions.
	 */
	while (!test_bit(SDMA_REQ_SEND_DONE, &req->flags)) {
		ret = user_sdma_send_pkts(req, pcount);
		if (ret < 0) {
			if (ret != -EBUSY) {
				req->status = ret;
				set_bit(SDMA_REQ_DONE_ERROR, &req->flags);
739 740 741
				if (ACCESS_ONCE(req->seqcomp) ==
				    req->seqsubmitted - 1)
					goto free_req;
742
				return ret;
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Mike Marciniszyn 已提交
743
			}
744 745 746 747 748
			wait_event_interruptible_timeout(
				pq->busy.wait_dma,
				(pq->state == SDMA_PKT_Q_ACTIVE),
				msecs_to_jiffies(
					SDMA_IOWAIT_TIMEOUT));
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749 750 751
		}
	}
	*count += idx;
752
	return 0;
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free_req:
754
	user_sdma_free_request(req, true);
755 756
	if (req_queued)
		pq_update(pq);
757
	set_comp_state(pq, cq, info.comp_idx, ERROR, req->status);
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	return ret;
}

static inline u32 compute_data_length(struct user_sdma_request *req,
762
				      struct user_sdma_txreq *tx)
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{
	/*
	 * Determine the proper size of the packet data.
	 * The size of the data of the first packet is in the header
	 * template. However, it includes the header and ICRC, which need
	 * to be subtracted.
	 * The size of the remaining packets is the minimum of the frag
	 * size (MTU) or remaining data in the request.
	 */
	u32 len;

	if (!req->seqnum) {
		len = ((be16_to_cpu(req->hdr.lrh[2]) << 2) -
		       (sizeof(tx->hdr) - 4));
	} else if (req_opcode(req->info.ctrl) == EXPECTED) {
		u32 tidlen = EXP_TID_GET(req->tids[req->tididx], LEN) *
			PAGE_SIZE;
780 781 782 783
		/*
		 * Get the data length based on the remaining space in the
		 * TID pair.
		 */
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		len = min(tidlen - req->tidoffset, (u32)req->info.fragsize);
		/* If we've filled up the TID pair, move to the next one. */
		if (unlikely(!len) && ++req->tididx < req->n_tids &&
		    req->tids[req->tididx]) {
			tidlen = EXP_TID_GET(req->tids[req->tididx],
					     LEN) * PAGE_SIZE;
			req->tidoffset = 0;
			len = min_t(u32, tidlen, req->info.fragsize);
		}
793 794
		/*
		 * Since the TID pairs map entire pages, make sure that we
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795
		 * are not going to try to send more data that we have
796 797
		 * remaining.
		 */
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798
		len = min(len, req->data_len - req->sent);
799
	} else {
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		len = min(req->data_len - req->sent, (u32)req->info.fragsize);
801
	}
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	SDMA_DBG(req, "Data Length = %u", len);
	return len;
}

static inline u32 get_lrh_len(struct hfi1_pkt_header hdr, u32 len)
{
	/* (Size of complete header - size of PBC) + 4B ICRC + data length */
	return ((sizeof(hdr) - sizeof(hdr.pbc)) + 4 + len);
}

static int user_sdma_send_pkts(struct user_sdma_request *req, unsigned maxpkts)
{
	int ret = 0;
	unsigned npkts = 0;
	struct user_sdma_txreq *tx = NULL;
	struct hfi1_user_sdma_pkt_q *pq = NULL;
	struct user_sdma_iovec *iovec = NULL;

820 821
	if (!req->pq)
		return -EINVAL;
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	pq = req->pq;

825 826 827 828 829 830
	/* If tx completion has reported an error, we are done. */
	if (test_bit(SDMA_REQ_HAS_ERROR, &req->flags)) {
		set_bit(SDMA_REQ_DONE_ERROR, &req->flags);
		return -EFAULT;
	}

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	/*
	 * Check if we might have sent the entire request already
	 */
	if (unlikely(req->seqnum == req->info.npkts)) {
		if (!list_empty(&req->txps))
			goto dosend;
837
		return ret;
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838 839 840 841 842 843 844 845 846 847 848 849 850 851 852 853
	}

	if (!maxpkts || maxpkts > req->info.npkts - req->seqnum)
		maxpkts = req->info.npkts - req->seqnum;

	while (npkts < maxpkts) {
		u32 datalen = 0, queued = 0, data_sent = 0;
		u64 iov_offset = 0;

		/*
		 * Check whether any of the completions have come back
		 * with errors. If so, we are not going to process any
		 * more packets from this request.
		 */
		if (test_bit(SDMA_REQ_HAS_ERROR, &req->flags)) {
			set_bit(SDMA_REQ_DONE_ERROR, &req->flags);
854
			return -EFAULT;
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Mike Marciniszyn 已提交
855 856 857
		}

		tx = kmem_cache_alloc(pq->txreq_cache, GFP_KERNEL);
858 859 860
		if (!tx)
			return -ENOMEM;

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861 862 863
		tx->flags = 0;
		tx->req = req;
		tx->busycount = 0;
864
		INIT_LIST_HEAD(&tx->list);
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		if (req->seqnum == req->info.npkts - 1)
867
			tx->flags |= TXREQ_FLAGS_REQ_LAST_PKT;
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868 869 870 871 872 873 874 875 876 877 878 879 880 881 882 883 884 885 886 887 888 889 890 891 892 893 894 895 896 897 898 899 900 901 902 903 904 905 906 907 908 909 910 911 912 913 914 915 916 917 918 919 920 921 922 923 924 925 926 927 928 929 930 931 932 933 934 935 936 937 938 939 940 941 942 943 944 945 946 947 948 949 950 951 952 953 954 955 956 957 958 959 960 961 962

		/*
		 * Calculate the payload size - this is min of the fragment
		 * (MTU) size or the remaining bytes in the request but only
		 * if we have payload data.
		 */
		if (req->data_len) {
			iovec = &req->iovs[req->iov_idx];
			if (ACCESS_ONCE(iovec->offset) == iovec->iov.iov_len) {
				if (++req->iov_idx == req->data_iovs) {
					ret = -EFAULT;
					goto free_txreq;
				}
				iovec = &req->iovs[req->iov_idx];
				WARN_ON(iovec->offset);
			}

			datalen = compute_data_length(req, tx);
			if (!datalen) {
				SDMA_DBG(req,
					 "Request has data but pkt len is 0");
				ret = -EFAULT;
				goto free_tx;
			}
		}

		if (test_bit(SDMA_REQ_HAVE_AHG, &req->flags)) {
			if (!req->seqnum) {
				u16 pbclen = le16_to_cpu(req->hdr.pbc[0]);
				u32 lrhlen = get_lrh_len(req->hdr, datalen);
				/*
				 * Copy the request header into the tx header
				 * because the HW needs a cacheline-aligned
				 * address.
				 * This copy can be optimized out if the hdr
				 * member of user_sdma_request were also
				 * cacheline aligned.
				 */
				memcpy(&tx->hdr, &req->hdr, sizeof(tx->hdr));
				if (PBC2LRH(pbclen) != lrhlen) {
					pbclen = (pbclen & 0xf000) |
						LRH2PBC(lrhlen);
					tx->hdr.pbc[0] = cpu_to_le16(pbclen);
				}
				ret = sdma_txinit_ahg(&tx->txreq,
						      SDMA_TXREQ_F_AHG_COPY,
						      sizeof(tx->hdr) + datalen,
						      req->ahg_idx, 0, NULL, 0,
						      user_sdma_txreq_cb);
				if (ret)
					goto free_tx;
				ret = sdma_txadd_kvaddr(pq->dd, &tx->txreq,
							&tx->hdr,
							sizeof(tx->hdr));
				if (ret)
					goto free_txreq;
			} else {
				int changes;

				changes = set_txreq_header_ahg(req, tx,
							       datalen);
				if (changes < 0)
					goto free_tx;
				sdma_txinit_ahg(&tx->txreq,
						SDMA_TXREQ_F_USE_AHG,
						datalen, req->ahg_idx, changes,
						req->ahg, sizeof(req->hdr),
						user_sdma_txreq_cb);
			}
		} else {
			ret = sdma_txinit(&tx->txreq, 0, sizeof(req->hdr) +
					  datalen, user_sdma_txreq_cb);
			if (ret)
				goto free_tx;
			/*
			 * Modify the header for this packet. This only needs
			 * to be done if we are not going to use AHG. Otherwise,
			 * the HW will do it based on the changes we gave it
			 * during sdma_txinit_ahg().
			 */
			ret = set_txreq_header(req, tx, datalen);
			if (ret)
				goto free_txreq;
		}

		/*
		 * If the request contains any data vectors, add up to
		 * fragsize bytes to the descriptor.
		 */
		while (queued < datalen &&
		       (req->sent + data_sent) < req->data_len) {
			unsigned long base, offset;
			unsigned pageidx, len;

			base = (unsigned long)iovec->iov.iov_base;
963 964
			offset = offset_in_page(base + iovec->offset +
						iov_offset);
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Mike Marciniszyn 已提交
965 966 967 968 969 970 971 972 973
			pageidx = (((iovec->offset + iov_offset +
				     base) - (base & PAGE_MASK)) >> PAGE_SHIFT);
			len = offset + req->info.fragsize > PAGE_SIZE ?
				PAGE_SIZE - offset : req->info.fragsize;
			len = min((datalen - queued), len);
			ret = sdma_txadd_page(pq->dd, &tx->txreq,
					      iovec->pages[pageidx],
					      offset, len);
			if (ret) {
974 975
				SDMA_DBG(req, "SDMA txreq add page failed %d\n",
					 ret);
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Mike Marciniszyn 已提交
976 977 978 979 980 981 982
				goto free_txreq;
			}
			iov_offset += len;
			queued += len;
			data_sent += len;
			if (unlikely(queued < datalen &&
				     pageidx == iovec->npages &&
983
				     req->iov_idx < req->data_iovs - 1)) {
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984 985 986 987 988 989 990 991 992 993 994 995 996
				iovec->offset += iov_offset;
				iovec = &req->iovs[++req->iov_idx];
				iov_offset = 0;
			}
		}
		/*
		 * The txreq was submitted successfully so we can update
		 * the counters.
		 */
		req->koffset += datalen;
		if (req_opcode(req->info.ctrl) == EXPECTED)
			req->tidoffset += datalen;
		req->sent += data_sent;
997 998
		if (req->data_len)
			iovec->offset += iov_offset;
999
		list_add_tail(&tx->txreq.list, &req->txps);
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1000 1001 1002 1003 1004 1005 1006 1007 1008 1009
		/*
		 * It is important to increment this here as it is used to
		 * generate the BTH.PSN and, therefore, can't be bulk-updated
		 * outside of the loop.
		 */
		tx->seqnum = req->seqnum++;
		npkts++;
	}
dosend:
	ret = sdma_send_txlist(req->sde, &pq->busy, &req->txps);
1010 1011
	if (list_empty(&req->txps)) {
		req->seqsubmitted = req->seqnum;
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Mike Marciniszyn 已提交
1012 1013 1014 1015 1016 1017 1018 1019 1020 1021 1022
		if (req->seqnum == req->info.npkts) {
			set_bit(SDMA_REQ_SEND_DONE, &req->flags);
			/*
			 * The txreq has already been submitted to the HW queue
			 * so we can free the AHG entry now. Corruption will not
			 * happen due to the sequential manner in which
			 * descriptors are processed.
			 */
			if (test_bit(SDMA_REQ_HAVE_AHG, &req->flags))
				sdma_ahg_free(req->sde, req->ahg_idx);
		}
1023 1024 1025 1026
	} else if (ret > 0) {
		req->seqsubmitted += ret;
		ret = 0;
	}
1027 1028
	return ret;

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free_txreq:
	sdma_txclean(pq->dd, &tx->txreq);
free_tx:
	kmem_cache_free(pq->txreq_cache, tx);
	return ret;
}

/*
 * How many pages in this iovec element?
 */
static inline int num_user_pages(const struct iovec *iov)
{
1041
	const unsigned long addr  = (unsigned long)iov->iov_base;
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1042 1043 1044 1045 1046 1047 1048
	const unsigned long len   = iov->iov_len;
	const unsigned long spage = addr & PAGE_MASK;
	const unsigned long epage = (addr + len - 1) & PAGE_MASK;

	return 1 + ((epage - spage) >> PAGE_SHIFT);
}

1049 1050 1051 1052
static u32 sdma_cache_evict(struct hfi1_user_sdma_pkt_q *pq, u32 npages)
{
	u32 cleared = 0;
	struct sdma_mmu_node *node, *ptr;
1053
	struct list_head to_evict = LIST_HEAD_INIT(to_evict);
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Mike Marciniszyn 已提交
1054

1055
	spin_lock(&pq->evict_lock);
1056 1057 1058
	list_for_each_entry_safe_reverse(node, ptr, &pq->evict, list) {
		/* Make sure that no one is still using the node. */
		if (!atomic_read(&node->refcount)) {
1059 1060 1061
			set_bit(SDMA_CACHE_NODE_EVICT, &node->flags);
			list_del_init(&node->list);
			list_add(&node->list, &to_evict);
1062 1063 1064 1065
			cleared += node->npages;
			if (cleared >= npages)
				break;
		}
M
Mike Marciniszyn 已提交
1066
	}
1067 1068 1069 1070 1071
	spin_unlock(&pq->evict_lock);

	list_for_each_entry_safe(node, ptr, &to_evict, list)
		hfi1_mmu_rb_remove(&pq->sdma_rb_root, &node->rb);

1072 1073
	return cleared;
}
1074

M
Mike Marciniszyn 已提交
1075 1076
static int pin_vector_pages(struct user_sdma_request *req,
			    struct user_sdma_iovec *iovec) {
1077
	int ret = 0, pinned, npages, cleared;
1078 1079 1080 1081 1082
	struct page **pages;
	struct hfi1_user_sdma_pkt_q *pq = req->pq;
	struct sdma_mmu_node *node = NULL;
	struct mmu_rb_node *rb_node;

1083 1084 1085
	rb_node = hfi1_mmu_rb_extract(&pq->sdma_rb_root,
				      (unsigned long)iovec->iov.iov_base,
				      iovec->iov.iov_len);
1086
	if (rb_node && !IS_ERR(rb_node))
1087
		node = container_of(rb_node, struct sdma_mmu_node, rb);
1088 1089
	else
		rb_node = NULL;
1090 1091 1092 1093 1094

	if (!node) {
		node = kzalloc(sizeof(*node), GFP_KERNEL);
		if (!node)
			return -ENOMEM;
1095

1096
		node->rb.addr = (unsigned long)iovec->iov.iov_base;
1097
		node->pq = pq;
1098
		atomic_set(&node->refcount, 0);
1099
		INIT_LIST_HEAD(&node->list);
M
Mike Marciniszyn 已提交
1100
	}
1101

1102 1103 1104 1105 1106 1107 1108 1109 1110 1111 1112
	npages = num_user_pages(&iovec->iov);
	if (node->npages < npages) {
		pages = kcalloc(npages, sizeof(*pages), GFP_KERNEL);
		if (!pages) {
			SDMA_DBG(req, "Failed page array alloc");
			ret = -ENOMEM;
			goto bail;
		}
		memcpy(pages, node->pages, node->npages * sizeof(*pages));

		npages -= node->npages;
1113 1114 1115 1116 1117 1118 1119 1120 1121 1122 1123 1124 1125 1126 1127 1128

		/*
		 * If rb_node is NULL, it means that this is brand new node
		 * and, therefore not on the eviction list.
		 * If, however, the rb_node is non-NULL, it means that the
		 * node is already in RB tree and, therefore on the eviction
		 * list (nodes are unconditionally inserted in the eviction
		 * list). In that case, we have to remove the node prior to
		 * calling the eviction function in order to prevent it from
		 * freeing this node.
		 */
		if (rb_node) {
			spin_lock(&pq->evict_lock);
			list_del_init(&node->list);
			spin_unlock(&pq->evict_lock);
		}
1129 1130 1131 1132 1133 1134
retry:
		if (!hfi1_can_pin_pages(pq->dd, pq->n_locked, npages)) {
			cleared = sdma_cache_evict(pq, npages);
			if (cleared >= npages)
				goto retry;
		}
1135 1136 1137 1138 1139 1140 1141 1142 1143 1144
		pinned = hfi1_acquire_user_pages(
			((unsigned long)iovec->iov.iov_base +
			 (node->npages * PAGE_SIZE)), npages, 0,
			pages + node->npages);
		if (pinned < 0) {
			kfree(pages);
			ret = pinned;
			goto bail;
		}
		if (pinned != npages) {
1145 1146
			unpin_vector_pages(current->mm, pages, node->npages,
					   pinned);
1147 1148 1149 1150
			ret = -EFAULT;
			goto bail;
		}
		kfree(node->pages);
1151
		node->rb.len = iovec->iov.iov_len;
1152 1153 1154
		node->pages = pages;
		node->npages += pinned;
		npages = node->npages;
1155
		spin_lock(&pq->evict_lock);
1156
		list_add(&node->list, &pq->evict);
1157 1158
		pq->n_locked += pinned;
		spin_unlock(&pq->evict_lock);
1159 1160 1161
	}
	iovec->pages = node->pages;
	iovec->npages = npages;
1162
	iovec->node = node;
1163

1164 1165 1166 1167 1168 1169 1170 1171
	ret = hfi1_mmu_rb_insert(&req->pq->sdma_rb_root, &node->rb);
	if (ret) {
		spin_lock(&pq->evict_lock);
		if (!list_empty(&node->list))
			list_del(&node->list);
		pq->n_locked -= node->npages;
		spin_unlock(&pq->evict_lock);
		goto bail;
M
Mike Marciniszyn 已提交
1172
	}
1173
	return 0;
1174
bail:
1175 1176 1177
	if (rb_node)
		unpin_vector_pages(current->mm, node->pages, 0, node->npages);
	kfree(node);
1178
	return ret;
M
Mike Marciniszyn 已提交
1179 1180
}

1181
static void unpin_vector_pages(struct mm_struct *mm, struct page **pages,
1182
			       unsigned start, unsigned npages)
M
Mike Marciniszyn 已提交
1183
{
1184
	hfi1_release_user_pages(mm, pages + start, npages, 0);
1185
	kfree(pages);
M
Mike Marciniszyn 已提交
1186 1187 1188 1189 1190 1191 1192 1193 1194 1195 1196 1197 1198 1199 1200 1201 1202 1203 1204 1205 1206 1207 1208 1209 1210 1211 1212 1213 1214 1215 1216 1217 1218 1219 1220 1221 1222 1223 1224 1225 1226 1227 1228 1229 1230 1231 1232 1233 1234 1235 1236 1237 1238 1239 1240 1241 1242 1243 1244 1245 1246 1247 1248 1249 1250 1251 1252 1253 1254 1255 1256 1257 1258 1259 1260 1261 1262 1263 1264 1265 1266 1267 1268 1269 1270 1271 1272 1273 1274 1275 1276 1277 1278 1279 1280 1281 1282 1283 1284 1285 1286 1287 1288 1289 1290 1291 1292 1293 1294 1295 1296 1297 1298 1299 1300 1301 1302 1303 1304 1305 1306 1307 1308 1309 1310 1311 1312 1313 1314 1315
}

static int check_header_template(struct user_sdma_request *req,
				 struct hfi1_pkt_header *hdr, u32 lrhlen,
				 u32 datalen)
{
	/*
	 * Perform safety checks for any type of packet:
	 *    - transfer size is multiple of 64bytes
	 *    - packet length is multiple of 4bytes
	 *    - entire request length is multiple of 4bytes
	 *    - packet length is not larger than MTU size
	 *
	 * These checks are only done for the first packet of the
	 * transfer since the header is "given" to us by user space.
	 * For the remainder of the packets we compute the values.
	 */
	if (req->info.fragsize % PIO_BLOCK_SIZE ||
	    lrhlen & 0x3 || req->data_len & 0x3  ||
	    lrhlen > get_lrh_len(*hdr, req->info.fragsize))
		return -EINVAL;

	if (req_opcode(req->info.ctrl) == EXPECTED) {
		/*
		 * The header is checked only on the first packet. Furthermore,
		 * we ensure that at least one TID entry is copied when the
		 * request is submitted. Therefore, we don't have to verify that
		 * tididx points to something sane.
		 */
		u32 tidval = req->tids[req->tididx],
			tidlen = EXP_TID_GET(tidval, LEN) * PAGE_SIZE,
			tididx = EXP_TID_GET(tidval, IDX),
			tidctrl = EXP_TID_GET(tidval, CTRL),
			tidoff;
		__le32 kval = hdr->kdeth.ver_tid_offset;

		tidoff = KDETH_GET(kval, OFFSET) *
			  (KDETH_GET(req->hdr.kdeth.ver_tid_offset, OM) ?
			   KDETH_OM_LARGE : KDETH_OM_SMALL);
		/*
		 * Expected receive packets have the following
		 * additional checks:
		 *     - offset is not larger than the TID size
		 *     - TIDCtrl values match between header and TID array
		 *     - TID indexes match between header and TID array
		 */
		if ((tidoff + datalen > tidlen) ||
		    KDETH_GET(kval, TIDCTRL) != tidctrl ||
		    KDETH_GET(kval, TID) != tididx)
			return -EINVAL;
	}
	return 0;
}

/*
 * Correctly set the BTH.PSN field based on type of
 * transfer - eager packets can just increment the PSN but
 * expected packets encode generation and sequence in the
 * BTH.PSN field so just incrementing will result in errors.
 */
static inline u32 set_pkt_bth_psn(__be32 bthpsn, u8 expct, u32 frags)
{
	u32 val = be32_to_cpu(bthpsn),
		mask = (HFI1_CAP_IS_KSET(EXTENDED_PSN) ? 0x7fffffffull :
			0xffffffull),
		psn = val & mask;
	if (expct)
		psn = (psn & ~BTH_SEQ_MASK) | ((psn + frags) & BTH_SEQ_MASK);
	else
		psn = psn + frags;
	return psn & mask;
}

static int set_txreq_header(struct user_sdma_request *req,
			    struct user_sdma_txreq *tx, u32 datalen)
{
	struct hfi1_user_sdma_pkt_q *pq = req->pq;
	struct hfi1_pkt_header *hdr = &tx->hdr;
	u16 pbclen;
	int ret;
	u32 tidval = 0, lrhlen = get_lrh_len(*hdr, datalen);

	/* Copy the header template to the request before modification */
	memcpy(hdr, &req->hdr, sizeof(*hdr));

	/*
	 * Check if the PBC and LRH length are mismatched. If so
	 * adjust both in the header.
	 */
	pbclen = le16_to_cpu(hdr->pbc[0]);
	if (PBC2LRH(pbclen) != lrhlen) {
		pbclen = (pbclen & 0xf000) | LRH2PBC(lrhlen);
		hdr->pbc[0] = cpu_to_le16(pbclen);
		hdr->lrh[2] = cpu_to_be16(lrhlen >> 2);
		/*
		 * Third packet
		 * This is the first packet in the sequence that has
		 * a "static" size that can be used for the rest of
		 * the packets (besides the last one).
		 */
		if (unlikely(req->seqnum == 2)) {
			/*
			 * From this point on the lengths in both the
			 * PBC and LRH are the same until the last
			 * packet.
			 * Adjust the template so we don't have to update
			 * every packet
			 */
			req->hdr.pbc[0] = hdr->pbc[0];
			req->hdr.lrh[2] = hdr->lrh[2];
		}
	}
	/*
	 * We only have to modify the header if this is not the
	 * first packet in the request. Otherwise, we use the
	 * header given to us.
	 */
	if (unlikely(!req->seqnum)) {
		ret = check_header_template(req, hdr, lrhlen, datalen);
		if (ret)
			return ret;
		goto done;
	}

	hdr->bth[2] = cpu_to_be32(
		set_pkt_bth_psn(hdr->bth[2],
				(req_opcode(req->info.ctrl) == EXPECTED),
				req->seqnum));

	/* Set ACK request on last packet */
1316
	if (unlikely(tx->flags & TXREQ_FLAGS_REQ_LAST_PKT))
1317
		hdr->bth[2] |= cpu_to_be32(1UL << 31);
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Mike Marciniszyn 已提交
1318 1319 1320 1321 1322 1323 1324 1325 1326 1327 1328 1329 1330

	/* Set the new offset */
	hdr->kdeth.swdata[6] = cpu_to_le32(req->koffset);
	/* Expected packets have to fill in the new TID information */
	if (req_opcode(req->info.ctrl) == EXPECTED) {
		tidval = req->tids[req->tididx];
		/*
		 * If the offset puts us at the end of the current TID,
		 * advance everything.
		 */
		if ((req->tidoffset) == (EXP_TID_GET(tidval, LEN) *
					 PAGE_SIZE)) {
			req->tidoffset = 0;
1331 1332 1333 1334
			/*
			 * Since we don't copy all the TIDs, all at once,
			 * we have to check again.
			 */
M
Mike Marciniszyn 已提交
1335 1336 1337 1338 1339 1340 1341 1342 1343 1344 1345 1346 1347 1348 1349
			if (++req->tididx > req->n_tids - 1 ||
			    !req->tids[req->tididx]) {
				return -EINVAL;
			}
			tidval = req->tids[req->tididx];
		}
		req->omfactor = EXP_TID_GET(tidval, LEN) * PAGE_SIZE >=
			KDETH_OM_MAX_SIZE ? KDETH_OM_LARGE : KDETH_OM_SMALL;
		/* Set KDETH.TIDCtrl based on value for this TID. */
		KDETH_SET(hdr->kdeth.ver_tid_offset, TIDCTRL,
			  EXP_TID_GET(tidval, CTRL));
		/* Set KDETH.TID based on value for this TID */
		KDETH_SET(hdr->kdeth.ver_tid_offset, TID,
			  EXP_TID_GET(tidval, IDX));
		/* Clear KDETH.SH only on the last packet */
1350
		if (unlikely(tx->flags & TXREQ_FLAGS_REQ_LAST_PKT))
M
Mike Marciniszyn 已提交
1351 1352 1353 1354 1355 1356 1357 1358 1359 1360 1361 1362 1363 1364 1365 1366 1367 1368 1369 1370 1371 1372 1373 1374 1375 1376 1377 1378 1379 1380 1381 1382 1383 1384 1385 1386 1387 1388 1389 1390 1391 1392 1393
			KDETH_SET(hdr->kdeth.ver_tid_offset, SH, 0);
		/*
		 * Set the KDETH.OFFSET and KDETH.OM based on size of
		 * transfer.
		 */
		SDMA_DBG(req, "TID offset %ubytes %uunits om%u",
			 req->tidoffset, req->tidoffset / req->omfactor,
			 !!(req->omfactor - KDETH_OM_SMALL));
		KDETH_SET(hdr->kdeth.ver_tid_offset, OFFSET,
			  req->tidoffset / req->omfactor);
		KDETH_SET(hdr->kdeth.ver_tid_offset, OM,
			  !!(req->omfactor - KDETH_OM_SMALL));
	}
done:
	trace_hfi1_sdma_user_header(pq->dd, pq->ctxt, pq->subctxt,
				    req->info.comp_idx, hdr, tidval);
	return sdma_txadd_kvaddr(pq->dd, &tx->txreq, hdr, sizeof(*hdr));
}

static int set_txreq_header_ahg(struct user_sdma_request *req,
				struct user_sdma_txreq *tx, u32 len)
{
	int diff = 0;
	struct hfi1_user_sdma_pkt_q *pq = req->pq;
	struct hfi1_pkt_header *hdr = &req->hdr;
	u16 pbclen = le16_to_cpu(hdr->pbc[0]);
	u32 val32, tidval = 0, lrhlen = get_lrh_len(*hdr, len);

	if (PBC2LRH(pbclen) != lrhlen) {
		/* PBC.PbcLengthDWs */
		AHG_HEADER_SET(req->ahg, diff, 0, 0, 12,
			       cpu_to_le16(LRH2PBC(lrhlen)));
		/* LRH.PktLen (we need the full 16 bits due to byte swap) */
		AHG_HEADER_SET(req->ahg, diff, 3, 0, 16,
			       cpu_to_be16(lrhlen >> 2));
	}

	/*
	 * Do the common updates
	 */
	/* BTH.PSN and BTH.A */
	val32 = (be32_to_cpu(hdr->bth[2]) + req->seqnum) &
		(HFI1_CAP_IS_KSET(EXTENDED_PSN) ? 0x7fffffff : 0xffffff);
1394
	if (unlikely(tx->flags & TXREQ_FLAGS_REQ_LAST_PKT))
M
Mike Marciniszyn 已提交
1395 1396 1397 1398 1399 1400 1401 1402 1403 1404 1405 1406 1407 1408 1409 1410 1411 1412 1413 1414
		val32 |= 1UL << 31;
	AHG_HEADER_SET(req->ahg, diff, 6, 0, 16, cpu_to_be16(val32 >> 16));
	AHG_HEADER_SET(req->ahg, diff, 6, 16, 16, cpu_to_be16(val32 & 0xffff));
	/* KDETH.Offset */
	AHG_HEADER_SET(req->ahg, diff, 15, 0, 16,
		       cpu_to_le16(req->koffset & 0xffff));
	AHG_HEADER_SET(req->ahg, diff, 15, 16, 16,
		       cpu_to_le16(req->koffset >> 16));
	if (req_opcode(req->info.ctrl) == EXPECTED) {
		__le16 val;

		tidval = req->tids[req->tididx];

		/*
		 * If the offset puts us at the end of the current TID,
		 * advance everything.
		 */
		if ((req->tidoffset) == (EXP_TID_GET(tidval, LEN) *
					 PAGE_SIZE)) {
			req->tidoffset = 0;
1415 1416 1417 1418
			/*
			 * Since we don't copy all the TIDs, all at once,
			 * we have to check again.
			 */
M
Mike Marciniszyn 已提交
1419 1420 1421 1422 1423 1424 1425 1426 1427 1428 1429 1430 1431 1432 1433 1434 1435 1436
			if (++req->tididx > req->n_tids - 1 ||
			    !req->tids[req->tididx]) {
				return -EINVAL;
			}
			tidval = req->tids[req->tididx];
		}
		req->omfactor = ((EXP_TID_GET(tidval, LEN) *
				  PAGE_SIZE) >=
				 KDETH_OM_MAX_SIZE) ? KDETH_OM_LARGE :
			KDETH_OM_SMALL;
		/* KDETH.OM and KDETH.OFFSET (TID) */
		AHG_HEADER_SET(req->ahg, diff, 7, 0, 16,
			       ((!!(req->omfactor - KDETH_OM_SMALL)) << 15 |
				((req->tidoffset / req->omfactor) & 0x7fff)));
		/* KDETH.TIDCtrl, KDETH.TID */
		val = cpu_to_le16(((EXP_TID_GET(tidval, CTRL) & 0x3) << 10) |
					(EXP_TID_GET(tidval, IDX) & 0x3ff));
		/* Clear KDETH.SH on last packet */
1437
		if (unlikely(tx->flags & TXREQ_FLAGS_REQ_LAST_PKT)) {
M
Mike Marciniszyn 已提交
1438 1439 1440 1441
			val |= cpu_to_le16(KDETH_GET(hdr->kdeth.ver_tid_offset,
								INTR) >> 16);
			val &= cpu_to_le16(~(1U << 13));
			AHG_HEADER_SET(req->ahg, diff, 7, 16, 14, val);
1442
		} else {
M
Mike Marciniszyn 已提交
1443
			AHG_HEADER_SET(req->ahg, diff, 7, 16, 12, val);
1444
		}
M
Mike Marciniszyn 已提交
1445 1446 1447 1448 1449 1450 1451 1452
	}

	trace_hfi1_sdma_user_header_ahg(pq->dd, pq->ctxt, pq->subctxt,
					req->info.comp_idx, req->sde->this_idx,
					req->ahg_idx, req->ahg, diff, tidval);
	return diff;
}

1453 1454 1455 1456 1457 1458
/*
 * SDMA tx request completion callback. Called when the SDMA progress
 * state machine gets notification that the SDMA descriptors for this
 * tx request have been processed by the DMA engine. Called in
 * interrupt context.
 */
1459
static void user_sdma_txreq_cb(struct sdma_txreq *txreq, int status)
M
Mike Marciniszyn 已提交
1460 1461 1462
{
	struct user_sdma_txreq *tx =
		container_of(txreq, struct user_sdma_txreq, txreq);
1463
	struct user_sdma_request *req;
1464 1465 1466
	struct hfi1_user_sdma_pkt_q *pq;
	struct hfi1_user_sdma_comp_q *cq;
	u16 idx;
M
Mike Marciniszyn 已提交
1467

1468
	if (!tx->req)
M
Mike Marciniszyn 已提交
1469 1470
		return;

1471
	req = tx->req;
1472 1473
	pq = req->pq;
	cq = req->cq;
M
Mike Marciniszyn 已提交
1474 1475

	if (status != SDMA_TXREQ_S_OK) {
1476 1477
		SDMA_DBG(req, "SDMA completion with error %d",
			 status);
M
Mike Marciniszyn 已提交
1478
		set_bit(SDMA_REQ_HAS_ERROR, &req->flags);
1479 1480
	}

1481 1482 1483 1484 1485 1486 1487 1488 1489 1490 1491 1492
	req->seqcomp = tx->seqnum;
	kmem_cache_free(pq->txreq_cache, tx);
	tx = NULL;

	idx = req->info.comp_idx;
	if (req->status == -1 && status == SDMA_TXREQ_S_OK) {
		if (req->seqcomp == req->info.npkts - 1) {
			req->status = 0;
			user_sdma_free_request(req, false);
			pq_update(pq);
			set_comp_state(pq, cq, idx, COMPLETE, 0);
		}
M
Mike Marciniszyn 已提交
1493
	} else {
1494 1495
		if (status != SDMA_TXREQ_S_OK)
			req->status = status;
1496 1497 1498
		if (req->seqcomp == (ACCESS_ONCE(req->seqsubmitted) - 1) &&
		    (test_bit(SDMA_REQ_SEND_DONE, &req->flags) ||
		     test_bit(SDMA_REQ_DONE_ERROR, &req->flags))) {
1499 1500 1501 1502
			user_sdma_free_request(req, false);
			pq_update(pq);
			set_comp_state(pq, cq, idx, ERROR, req->status);
		}
1503 1504 1505
	}
}

1506
static inline void pq_update(struct hfi1_user_sdma_pkt_q *pq)
1507
{
1508
	if (atomic_dec_and_test(&pq->n_reqs)) {
M
Mike Marciniszyn 已提交
1509
		xchg(&pq->state, SDMA_PKT_Q_INACTIVE);
1510 1511
		wake_up(&pq->wait);
	}
M
Mike Marciniszyn 已提交
1512 1513
}

1514
static void user_sdma_free_request(struct user_sdma_request *req, bool unpin)
M
Mike Marciniszyn 已提交
1515 1516 1517 1518 1519 1520 1521 1522 1523 1524 1525 1526 1527
{
	if (!list_empty(&req->txps)) {
		struct sdma_txreq *t, *p;

		list_for_each_entry_safe(t, p, &req->txps, list) {
			struct user_sdma_txreq *tx =
				container_of(t, struct user_sdma_txreq, txreq);
			list_del_init(&t->list);
			sdma_txclean(req->pq->dd, t);
			kmem_cache_free(req->pq->txreq_cache, tx);
		}
	}
	if (req->data_iovs) {
1528
		struct sdma_mmu_node *node;
M
Mike Marciniszyn 已提交
1529 1530
		int i;

1531
		for (i = 0; i < req->data_iovs; i++) {
1532 1533
			node = req->iovs[i].node;
			if (!node)
1534 1535 1536 1537 1538 1539 1540 1541
				continue;

			if (unpin)
				hfi1_mmu_rb_remove(&req->pq->sdma_rb_root,
						   &node->rb);
			else
				atomic_dec(&node->refcount);
		}
M
Mike Marciniszyn 已提交
1542 1543 1544 1545 1546
	}
	kfree(req->tids);
	clear_bit(SDMA_REQ_IN_USE, &req->flags);
}

1547 1548 1549 1550
static inline void set_comp_state(struct hfi1_user_sdma_pkt_q *pq,
				  struct hfi1_user_sdma_comp_q *cq,
				  u16 idx, enum hfi1_sdma_comp_state state,
				  int ret)
M
Mike Marciniszyn 已提交
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{
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	hfi1_cdbg(SDMA, "[%u:%u:%u:%u] Setting completion status %u %d",
		  pq->dd->unit, pq->ctxt, pq->subctxt, idx, state, ret);
	cq->comps[idx].status = state;
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	if (state == ERROR)
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		cq->comps[idx].errcode = -ret;
	trace_hfi1_sdma_user_completion(pq->dd, pq->ctxt, pq->subctxt,
					idx, state, ret);
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Mike Marciniszyn 已提交
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}
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static bool sdma_rb_filter(struct mmu_rb_node *node, unsigned long addr,
			   unsigned long len)
{
	return (bool)(node->addr == addr);
}

static int sdma_rb_insert(struct rb_root *root, struct mmu_rb_node *mnode)
{
	struct sdma_mmu_node *node =
		container_of(mnode, struct sdma_mmu_node, rb);

	atomic_inc(&node->refcount);
	return 0;
}

static void sdma_rb_remove(struct rb_root *root, struct mmu_rb_node *mnode,
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			   struct mm_struct *mm)
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{
	struct sdma_mmu_node *node =
		container_of(mnode, struct sdma_mmu_node, rb);

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	spin_lock(&node->pq->evict_lock);
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	/*
	 * We've been called by the MMU notifier but this node has been
	 * scheduled for eviction. The eviction function will take care
	 * of freeing this node.
	 * We have to take the above lock first because we are racing
	 * against the setting of the bit in the eviction function.
	 */
	if (mm && test_bit(SDMA_CACHE_NODE_EVICT, &node->flags)) {
		spin_unlock(&node->pq->evict_lock);
		return;
	}

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	if (!list_empty(&node->list))
		list_del(&node->list);
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	node->pq->n_locked -= node->npages;
	spin_unlock(&node->pq->evict_lock);

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	/*
	 * If mm is set, we are being called by the MMU notifier and we
	 * should not pass a mm_struct to unpin_vector_page(). This is to
	 * prevent a deadlock when hfi1_release_user_pages() attempts to
	 * take the mmap_sem, which the MMU notifier has already taken.
	 */
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	unpin_vector_pages(mm ? NULL : current->mm, node->pages, 0,
			   node->npages);
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	/*
	 * If called by the MMU notifier, we have to adjust the pinned
	 * page count ourselves.
	 */
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	if (mm)
		mm->pinned_vm -= node->npages;
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	kfree(node);
}

static int sdma_rb_invalidate(struct rb_root *root, struct mmu_rb_node *mnode)
{
	struct sdma_mmu_node *node =
		container_of(mnode, struct sdma_mmu_node, rb);

	if (!atomic_read(&node->refcount))
		return 1;
	return 0;
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}