lib/idxd: add support for batching dualcast commands

Signed-off-by: paul luse <paul.e.luse@intel.com>
Change-Id: Ia5b5a346ae5c8470d9792766dba2bcf68c6fe2fd
Reviewed-on: https://review.spdk.io/gerrit/c/spdk/spdk/+/2915
Community-CI: Mellanox Build Bot
Tested-by: SPDK CI Jenkins <sys_sgci@intel.com>
Reviewed-by: Jim Harris <james.r.harris@intel.com>
Reviewed-by: Ben Walker <benjamin.walker@intel.com>
This commit is contained in:
paul luse 2020-06-16 13:24:35 -04:00 committed by Tomasz Zawadzki
parent ec086e6f3f
commit 22058d70fc
4 changed files with 87 additions and 3 deletions

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@ -32,7 +32,7 @@
*/
/** \file
* IDXD accel engine driver public interface
* IDXD driver public interface
*/
#ifndef SPDK_IDXD_H
@ -193,7 +193,28 @@ int spdk_idxd_batch_prep_copy(struct spdk_idxd_io_channel *chan, struct idxd_bat
void *dst, const void *src, uint64_t nbytes, spdk_idxd_req_cb cb_fn, void *cb_arg);
/**
* Build and submit a idxd memory copy request.
* Synchronous call to prepare a dualcast request into a previously initialized batch
* created with spdk_idxd_batch_create(). The callback will be called when the dualcast
* completes after the batch has been submitted by an asynchronous call to
* spdk_idxd_batch_submit().
*
* \param chan IDXD channel to submit request.
* \param batch Handle provided when the batch was started with spdk_idxd_batch_create().
* \param dst1 First destination virtual address (must be 4K aligned).
* \param dst2 Second destination virtual address (must be 4K aligned).
* \param src Source virtual address.
* \param nbytes Number of bytes to copy.
* \param cb_fn Callback function which will be called when the request is complete.
* \param cb_arg Opaque value which will be passed back as the arg parameter in
* the completion callback.
*
* \return 0 on success, negative errno on failure.
*/
int spdk_idxd_batch_prep_dualcast(struct spdk_idxd_io_channel *chan, struct idxd_batch *batch,
void *dst1, void *dst2, const void *src, uint64_t nbytes, spdk_idxd_req_cb cb_fn, void *cb_arg);
/**
* Build and submit an idxd memory copy request.
*
* This function will build the copy descriptor and then immediately submit
* by writing to the proper device portal.
@ -213,7 +234,7 @@ int spdk_idxd_submit_copy(struct spdk_idxd_io_channel *chan,
spdk_idxd_req_cb cb_fn, void *cb_arg);
/**
* Build and submit an idxd dual cast copy request.
* Build and submit an idxd dualcast request.
*
* This function will build the dual cast descriptor and then immediately submit
* by writing to the proper device portal.

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@ -1005,6 +1005,50 @@ spdk_idxd_batch_prep_copy(struct spdk_idxd_io_channel *chan, struct idxd_batch *
return 0;
}
int
spdk_idxd_batch_prep_dualcast(struct spdk_idxd_io_channel *chan, struct idxd_batch *batch,
void *dst1, void *dst2, const void *src, uint64_t nbytes, spdk_idxd_req_cb cb_fn, void *cb_arg)
{
struct idxd_hw_desc *desc;
struct idxd_comp *comp;
if ((uintptr_t)dst1 & (ALIGN_4K - 1) || (uintptr_t)dst2 & (ALIGN_4K - 1)) {
SPDK_ERRLOG("Dualcast requires 4K alignment on dst addresses\n");
return -EINVAL;
}
if (_does_batch_exist(batch, chan) == false) {
SPDK_ERRLOG("Attempt to add to a batch that doesn't exist\n.");
return -EINVAL;
}
if ((batch->cur_index - batch->start_index) == DESC_PER_BATCH) {
SPDK_ERRLOG("Attempt to add to a batch that is already full\n.");
return -ENOMEM;
}
desc = &chan->ring_ctrl.user_desc[batch->cur_index];
comp = &chan->ring_ctrl.user_completions[batch->cur_index];
SPDK_DEBUGLOG(SPDK_LOG_IDXD, "Prep batch %p index %u\n", batch, batch->cur_index);
batch->cur_index++;
assert(batch->cur_index > batch->start_index);
desc->flags = IDXD_FLAG_COMPLETION_ADDR_VALID | IDXD_FLAG_REQUEST_COMPLETION;
desc->opcode = IDXD_OPCODE_DUALCAST;
desc->src_addr = (uint64_t)src;
desc->dst_addr = (uint64_t)dst1;
desc->dest2 = (uint64_t)dst2;
desc->xfer_size = nbytes;
desc->completion_addr = (uint64_t)&comp->hw;
comp->cb_arg = cb_arg;
comp->cb_fn = cb_fn;
comp->batch = batch;
return 0;
}
static void
_dump_error_reg(struct spdk_idxd_io_channel *chan)
{
@ -1070,6 +1114,7 @@ _spdk_idxd_process_batch_events(struct spdk_idxd_io_channel *chan)
status = comp->hw.result;
}
break;
case IDXD_OPCODE_DUALCAST:
case IDXD_OPCODE_MEMMOVE:
break;
default:

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@ -7,6 +7,7 @@
spdk_idxd_probe;
spdk_idxd_detach;
spdk_idxd_batch_prep_copy;
spdk_idxd_batch_prep_dualcast;
spdk_idxd_batch_submit;
spdk_idxd_batch_create;
spdk_idxd_batch_get_max;

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@ -47,6 +47,8 @@
#include "spdk/util.h"
#include "spdk/json.h"
#define ALIGN_4K 0x1000
static bool g_idxd_enable = false;
uint32_t g_config_number;
@ -494,12 +496,27 @@ idxd_batch_prep_copy(void *cb_arg, struct spdk_io_channel *ch, struct spdk_accel
idxd_done, idxd_task);
}
static int
idxd_batch_prep_dualcast(void *cb_arg, struct spdk_io_channel *ch, struct spdk_accel_batch *_batch,
void *dst1, void *dst2, void *src, uint64_t nbytes, spdk_accel_completion_cb cb)
{
struct idxd_task *idxd_task = (struct idxd_task *)cb_arg;
struct idxd_io_channel *chan = spdk_io_channel_get_ctx(ch);
struct idxd_batch *batch = (struct idxd_batch *)_batch;
idxd_task->cb = cb;
return spdk_idxd_batch_prep_dualcast(chan->chan, batch, dst1, dst2, src, nbytes, idxd_done,
idxd_task);
}
static struct spdk_accel_engine idxd_accel_engine = {
.get_capabilities = idxd_get_capabilities,
.copy = idxd_submit_copy,
.batch_get_max = idxd_batch_get_max,
.batch_create = idxd_batch_start,
.batch_prep_copy = idxd_batch_prep_copy,
.batch_prep_dualcast = idxd_batch_prep_dualcast,
.batch_submit = idxd_batch_submit,
.dualcast = idxd_submit_dualcast,
.compare = idxd_submit_compare,