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This is the result of running the Coccinelle script from scripts/coccinelle/api/kmalloc_objs.cocci. The script is designed to avoid scalar types (which need careful case-by-case checking), and instead replace kmalloc-family calls that allocate struct or union object instances: Single allocations: kmalloc(sizeof(TYPE), ...) are replaced with: kmalloc_obj(TYPE, ...) Array allocations: kmalloc_array(COUNT, sizeof(TYPE), ...) are replaced with: kmalloc_objs(TYPE, COUNT, ...) Flex array allocations: kmalloc(struct_size(PTR, FAM, COUNT), ...) are replaced with: kmalloc_flex(*PTR, FAM, COUNT, ...) (where TYPE may also be *VAR) The resulting allocations no longer return "void *", instead returning "TYPE *". Signed-off-by: Kees Cook <kees@kernel.org>
302 lines
11 KiB
C
302 lines
11 KiB
C
/* SPDX-License-Identifier: GPL-2.0 */
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/*
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* drivers/s390/net/iucv.h
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* IUCV base support.
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*
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* S390 version
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* Copyright 2000, 2006 IBM Corporation
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* Author(s):Alan Altmark (Alan_Altmark@us.ibm.com)
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* Xenia Tkatschow (xenia@us.ibm.com)
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* Rewritten for af_iucv:
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* Martin Schwidefsky <schwidefsky@de.ibm.com>
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*
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*
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* Functionality:
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* To explore any of the IUCV functions, one must first register their
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* program using iucv_register(). Once your program has successfully
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* completed a register, it can exploit the other functions.
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* For further reference on all IUCV functionality, refer to the
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* CP Programming Services book, also available on the web thru
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* www.vm.ibm.com/pubs, manual # SC24-6084
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*
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* Definition of Return Codes
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* - All positive return codes including zero are reflected back
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* from CP. The definition of each return code can be found in
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* CP Programming Services book.
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* - Return Code of:
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* -EINVAL: Invalid value
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* -ENOMEM: storage allocation failed
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*/
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#include <linux/types.h>
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#include <linux/slab.h>
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#include <asm/dma-types.h>
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#include <asm/debug.h>
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/*
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* IUCV option flags usable by device drivers:
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*
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* IUCV_IPRMDATA Indicates that your program can handle a message in the
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* parameter list / a message is sent in the parameter list.
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* Used for iucv_path_accept, iucv_path_connect,
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* iucv_message_reply, iucv_message_send, iucv_message_send2way.
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* IUCV_IPQUSCE Indicates that you do not want to receive messages on this
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* path until an iucv_path_resume is issued.
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* Used for iucv_path_accept, iucv_path_connect.
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* IUCV_IPBUFLST Indicates that an address list is used for the message data.
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* Used for iucv_message_receive, iucv_message_send,
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* iucv_message_send2way.
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* IUCV_IPPRTY Specifies that you want to send priority messages.
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* Used for iucv_path_accept, iucv_path_connect,
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* iucv_message_reply, iucv_message_send, iucv_message_send2way.
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* IUCV_IPSYNC Indicates a synchronous send request.
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* Used for iucv_message_send, iucv_message_send2way.
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* IUCV_IPANSLST Indicates that an address list is used for the reply data.
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* Used for iucv_message_reply, iucv_message_send2way.
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* IUCV_IPLOCAL Specifies that the communication partner has to be on the
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* local system. If local is specified no target class can be
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* specified.
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* Used for iucv_path_connect.
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*
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* All flags are defined in the input field IPFLAGS1 of each function
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* and can be found in CP Programming Services.
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*/
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#define IUCV_IPRMDATA 0x80
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#define IUCV_IPQUSCE 0x40
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#define IUCV_IPBUFLST 0x40
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#define IUCV_IPPRTY 0x20
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#define IUCV_IPANSLST 0x08
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#define IUCV_IPSYNC 0x04
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#define IUCV_IPLOCAL 0x01
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/*
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* iucv_array : Defines buffer array.
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* Inside the array may be 31- bit addresses and 31-bit lengths.
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* Use a pointer to an iucv_array as the buffer, reply or answer
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* parameter on iucv_message_send, iucv_message_send2way, iucv_message_receive
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* and iucv_message_reply if IUCV_IPBUFLST or IUCV_IPANSLST are used.
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*/
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struct iucv_array {
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dma32_t address;
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u32 length;
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} __attribute__ ((aligned (8)));
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extern const struct bus_type iucv_bus;
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struct device_driver;
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struct device *iucv_alloc_device(const struct attribute_group **attrs,
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struct device_driver *driver, void *priv,
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const char *fmt, ...) __printf(4, 5);
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/*
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* struct iucv_path
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* pathid: 16 bit path identification
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* msglim: 16 bit message limit
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* flags: properties of the path: IPRMDATA, IPQUSCE, IPPRTY
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* handler: address of iucv handler structure
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* private: private information of the handler associated with the path
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* list: list_head for the iucv_handler path list.
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*/
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struct iucv_path {
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u16 pathid;
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u16 msglim;
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u8 flags;
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void *private;
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struct iucv_handler *handler;
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struct list_head list;
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};
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/*
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* struct iucv_message
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* id: 32 bit message id
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* audit: 32 bit error information of purged or replied messages
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* class: 32 bit target class of a message (source class for replies)
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* tag: 32 bit tag to be associated with the message
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* length: 32 bit length of the message / reply
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* reply_size: 32 bit maximum allowed length of the reply
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* rmmsg: 8 byte inline message
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* flags: message properties (IUCV_IPPRTY)
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*/
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struct iucv_message {
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u32 id;
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u32 audit;
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u32 class;
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u32 tag;
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u32 length;
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u32 reply_size;
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u8 rmmsg[8];
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u8 flags;
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} __packed;
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/*
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* struct iucv_handler
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*
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* A vector of functions that handle IUCV interrupts. Each functions gets
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* a parameter area as defined by the CP Programming Services and private
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* pointer that is provided by the user of the interface.
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*/
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struct iucv_handler {
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/*
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* The path_pending function is called after an iucv interrupt
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* type 0x01 has been received. The base code allocates a path
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* structure and "asks" the handler if this path belongs to the
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* handler. To accept the path the path_pending function needs
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* to call iucv_path_accept and return 0. If the callback returns
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* a value != 0 the iucv base code will continue with the next
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* handler. The order in which the path_pending functions are
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* called is the order of the registration of the iucv handlers
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* to the base code.
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*/
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int (*path_pending)(struct iucv_path *, u8 *ipvmid, u8 *ipuser);
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/*
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* The path_complete function is called after an iucv interrupt
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* type 0x02 has been received for a path that has been established
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* for this handler with iucv_path_connect and got accepted by the
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* peer with iucv_path_accept.
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*/
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void (*path_complete)(struct iucv_path *, u8 *ipuser);
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/*
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* The path_severed function is called after an iucv interrupt
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* type 0x03 has been received. The communication peer shutdown
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* his end of the communication path. The path still exists and
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* remaining messages can be received until a iucv_path_sever
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* shuts down the other end of the path as well.
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*/
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void (*path_severed)(struct iucv_path *, u8 *ipuser);
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/*
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* The path_quiesced function is called after an icuv interrupt
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* type 0x04 has been received. The communication peer has quiesced
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* the path. Delivery of messages is stopped until iucv_path_resume
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* has been called.
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*/
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void (*path_quiesced)(struct iucv_path *, u8 *ipuser);
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/*
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* The path_resumed function is called after an icuv interrupt
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* type 0x05 has been received. The communication peer has resumed
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* the path.
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*/
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void (*path_resumed)(struct iucv_path *, u8 *ipuser);
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/*
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* The message_pending function is called after an icuv interrupt
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* type 0x06 or type 0x07 has been received. A new message is
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* available and can be received with iucv_message_receive.
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*/
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void (*message_pending)(struct iucv_path *, struct iucv_message *);
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/*
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* The message_complete function is called after an icuv interrupt
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* type 0x08 or type 0x09 has been received. A message send with
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* iucv_message_send2way has been replied to. The reply can be
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* received with iucv_message_receive.
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*/
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void (*message_complete)(struct iucv_path *, struct iucv_message *);
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struct list_head list;
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struct list_head paths;
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};
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int iucv_register(struct iucv_handler *handler, int smp);
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void iucv_unregister(struct iucv_handler *handler, int smp);
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/**
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* iucv_path_alloc - Allocate a new path structure for use with iucv_connect.
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* @msglim: initial message limit
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* @flags: initial flags
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* @gfp: kmalloc allocation flag
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*
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* Returns: NULL if the memory allocation failed or a pointer to the
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* path structure.
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*/
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static inline struct iucv_path *iucv_path_alloc(u16 msglim, u8 flags, gfp_t gfp)
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{
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struct iucv_path *path;
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path = kzalloc_obj(struct iucv_path, gfp);
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if (path) {
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path->msglim = msglim;
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path->flags = flags;
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}
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return path;
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}
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/**
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* iucv_path_free - Frees a path structure.
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* @path: address of iucv path structure
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*/
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static inline void iucv_path_free(struct iucv_path *path)
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{
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kfree(path);
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}
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int iucv_path_accept(struct iucv_path *path, struct iucv_handler *handler,
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u8 *userdata, void *private);
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int iucv_path_connect(struct iucv_path *path, struct iucv_handler *handler,
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u8 *userid, u8 *system, u8 *userdata,
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void *private);
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int iucv_path_quiesce(struct iucv_path *path, u8 *userdata);
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int iucv_path_resume(struct iucv_path *path, u8 *userdata);
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int iucv_path_sever(struct iucv_path *path, u8 *userdata);
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int iucv_message_purge(struct iucv_path *path, struct iucv_message *msg,
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u32 srccls);
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int iucv_message_receive(struct iucv_path *path, struct iucv_message *msg,
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u8 flags, void *buffer, size_t size, size_t *residual);
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int __iucv_message_receive(struct iucv_path *path, struct iucv_message *msg,
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u8 flags, void *buffer, size_t size,
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size_t *residual);
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int iucv_message_reject(struct iucv_path *path, struct iucv_message *msg);
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int iucv_message_reply(struct iucv_path *path, struct iucv_message *msg,
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u8 flags, void *reply, size_t size);
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int iucv_message_send(struct iucv_path *path, struct iucv_message *msg,
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u8 flags, u32 srccls, void *buffer, size_t size);
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int __iucv_message_send(struct iucv_path *path, struct iucv_message *msg,
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u8 flags, u32 srccls, void *buffer, size_t size);
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int iucv_message_send2way(struct iucv_path *path, struct iucv_message *msg,
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u8 flags, u32 srccls, void *buffer, size_t size,
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void *answer, size_t asize, size_t *residual);
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struct iucv_interface {
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int (*message_receive)(struct iucv_path *path, struct iucv_message *msg,
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u8 flags, void *buffer, size_t size, size_t *residual);
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int (*__message_receive)(struct iucv_path *path,
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struct iucv_message *msg, u8 flags, void *buffer, size_t size,
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size_t *residual);
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int (*message_reply)(struct iucv_path *path, struct iucv_message *msg,
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u8 flags, void *reply, size_t size);
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int (*message_reject)(struct iucv_path *path, struct iucv_message *msg);
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int (*message_send)(struct iucv_path *path, struct iucv_message *msg,
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u8 flags, u32 srccls, void *buffer, size_t size);
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int (*__message_send)(struct iucv_path *path, struct iucv_message *msg,
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u8 flags, u32 srccls, void *buffer, size_t size);
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int (*message_send2way)(struct iucv_path *path,
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struct iucv_message *msg, u8 flags, u32 srccls, void *buffer,
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size_t size, void *answer, size_t asize, size_t *residual);
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int (*message_purge)(struct iucv_path *path, struct iucv_message *msg,
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u32 srccls);
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int (*path_accept)(struct iucv_path *path, struct iucv_handler *handler,
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u8 userdata[16], void *private);
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int (*path_connect)(struct iucv_path *path,
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struct iucv_handler *handler,
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u8 userid[8], u8 system[8], u8 userdata[16], void *private);
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int (*path_quiesce)(struct iucv_path *path, u8 userdata[16]);
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int (*path_resume)(struct iucv_path *path, u8 userdata[16]);
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int (*path_sever)(struct iucv_path *path, u8 userdata[16]);
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int (*iucv_register)(struct iucv_handler *handler, int smp);
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void (*iucv_unregister)(struct iucv_handler *handler, int smp);
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const struct bus_type *bus;
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struct device *root;
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};
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extern struct iucv_interface iucv_if;
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