numam-spdk/include/spdk/io_channel.h
Dariusz Stojaczyk 73358c99e1 util/nvme: added io_device unregister callback
Patch afe860ae deferred freeing the io_device. However, for nvme, the
io_device context (spdk_nvme_ctrlr) is still being destructed before
io_channels are destroyed, causing segfaults on hotremove.

This patch defers io_device context destruction and fixes nvme
hotremove.

Fixes: afe860aeb1 ("channel: Correctly defer unregisters if channels exist")
Fixes: 5533c3d208 ("util: defer put_io_channel")

Change-Id: I7af699174cac0c6c6a6faa2cc65418c47347eb9a
Signed-off-by: Dariusz Stojaczyk <dariuszx.stojaczyk@intel.com>
Reviewed-on: https://review.gerrithub.io/370459
Tested-by: SPDK Automated Test System <sys_sgsw@intel.com>
Reviewed-by: Ben Walker <benjamin.walker@intel.com>
Reviewed-by: Daniel Verkamp <daniel.verkamp@intel.com>
2017-07-20 16:07:02 -04:00

167 lines
6.6 KiB
C

/*-
* BSD LICENSE
*
* Copyright (c) Intel Corporation.
* All rights reserved.
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/** \file
* IO channel
*/
#ifndef SPDK_IO_CHANNEL_H_
#define SPDK_IO_CHANNEL_H_
#include "spdk/stdinc.h"
#include "spdk/queue.h"
struct spdk_thread;
struct spdk_io_channel;
typedef void (*spdk_thread_fn)(void *ctx);
typedef void (*spdk_thread_pass_msg)(spdk_thread_fn fn, void *ctx,
void *thread_ctx);
typedef int (*spdk_io_channel_create_cb)(void *io_device, void *ctx_buf);
typedef void (*spdk_io_channel_destroy_cb)(void *io_device, void *ctx_buf);
typedef void (*spdk_io_device_unregister_cb)(void *io_device);
typedef void (*spdk_channel_msg)(void *io_device, struct spdk_io_channel *ch,
void *ctx);
typedef void (*spdk_channel_for_each_cpl)(void *io_device, void *ctx);
/**
* \brief Initializes the calling thread for I/O channel allocation.
*
* @param fn A function that may be called from any thread and is
* passed a function pointer (spdk_thread_fn) that must be
* called on the same thread that spdk_allocate_thread
* was called from.
* @param thread_ctx Context that will be passed to fn.
*/
struct spdk_thread *spdk_allocate_thread(spdk_thread_pass_msg fn, void *thread_ctx);
/**
* \brief Releases any resources related to the calling thread for I/O channel allocation.
*
* All I/O channel references related to the calling thread must be released using
* spdk_put_io_channel() prior to calling this function.
*/
void spdk_free_thread(void);
/**
* \brief Get a handle to the current thread. This handle may be passed
* to other threads and used as the target of spdk_thread_send_msg().
*
* \sa spdk_io_channel_get_thread()
*/
struct spdk_thread *spdk_get_thread(void);
/**
* \brief Send a message to the given thread. The message
* may be sent asynchronously - i.e. spdk_thread_send_msg
* may return prior to `fn` being called.
*
* @param thread The target thread.
* @param fn This function will be called on the given thread.
* @param ctx This context will be passed to fn when called.
*/
void spdk_thread_send_msg(const struct spdk_thread *thread, spdk_thread_fn fn, void *ctx);
/**
* \brief Register the opaque io_device context as an I/O device.
*
* After an I/O device is registered, it can return I/O channels using the
* spdk_get_io_channel() function. create_cb is the callback function invoked
* to allocate any resources required for a new I/O channel. destroy_cb is the
* callback function invoked to release the resources for an I/O channel. ctx_size
* is the size of the context buffer allocated to store references to allocated I/O
* channel resources.
*/
void spdk_io_device_register(void *io_device, spdk_io_channel_create_cb create_cb,
spdk_io_channel_destroy_cb destroy_cb, uint32_t ctx_size);
/**
* \brief Unregister the opaque io_device context as an I/O device.
*
* The actual unregistration might be deferred until all active I/O channels are destroyed.
* unregister_cb is an optional callback function invoked to release any references to
* this I/O device.
*/
void spdk_io_device_unregister(void *io_device, spdk_io_device_unregister_cb unregister_cb);
/**
* \brief Gets an I/O channel for the specified io_device to be used by the calling thread.
*
* The io_device context pointer specified must have previously been registered using
* spdk_io_device_register(). If an existing I/O channel does not exist yet for the given
* io_device on the calling thread, it will allocate an I/O channel and invoke the create_cb
* function pointer specified in spdk_io_device_register(). If an I/O channel already
* exists for the given io_device on the calling thread, its reference is returned rather
* than creating a new I/O channel.
*/
struct spdk_io_channel *spdk_get_io_channel(void *io_device);
/**
* \brief Releases a reference to an I/O channel. This happens asynchronously.
*
* Actual release will happen on the same thread that called spdk_get_io_channel() for the
* specified I/O channel. If this releases the last reference to the I/O channel, The
* destroy_cb function specified in spdk_io_device_register() will be invoked to release
* any associated resources.
*/
void spdk_put_io_channel(struct spdk_io_channel *ch);
/**
* \brief Returns the context buffer associated with an I/O channel.
*/
void *spdk_io_channel_get_ctx(struct spdk_io_channel *ch);
/**
* \brief Returns the spdk_thread associated with an I/O channel.
*/
struct spdk_thread *spdk_io_channel_get_thread(struct spdk_io_channel *ch);
/**
* \brief Call 'fn' on each channel associated with io_device. This happens
* asynchronously, so fn may be called after spdk_for_each_channel returns.
* 'fn' will be called on the correct thread for each channel. 'fn' will be
* called for each channel serially, such that two calls to 'fn' will not
* overlap in time.
*
* Once 'fn' has been called on each channel, 'cpl' will be called
* on the thread that spdk_for_each_channel was initially called from.
*/
void spdk_for_each_channel(void *io_device, spdk_channel_msg fn, void *ctx,
spdk_channel_for_each_cpl cpl);
#endif /* SPDK_IO_CHANNEL_H_ */