sgi-xp: use standard bitops macros and functions
[deliverable/linux.git] / drivers / misc / sgi-xp / xpc.h
CommitLineData
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1/*
2 * This file is subject to the terms and conditions of the GNU General Public
3 * License. See the file "COPYING" in the main directory of this archive
4 * for more details.
5 *
45d9ca49 6 * Copyright (c) 2004-2008 Silicon Graphics, Inc. All Rights Reserved.
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7 */
8
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9/*
10 * Cross Partition Communication (XPC) structures and macros.
11 */
12
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13#ifndef _DRIVERS_MISC_SGIXP_XPC_H
14#define _DRIVERS_MISC_SGIXP_XPC_H
89eb8eb9 15
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16#include <linux/interrupt.h>
17#include <linux/sysctl.h>
18#include <linux/device.h>
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19#include <linux/mutex.h>
20#include <linux/completion.h>
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21#include <asm/pgtable.h>
22#include <asm/processor.h>
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23#include <asm/sn/clksupport.h>
24#include <asm/sn/addrs.h>
25#include <asm/sn/mspec.h>
26#include <asm/sn/shub_mmr.h>
45d9ca49 27#include "xp.h"
89eb8eb9 28
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29/*
30 * XPC Version numbers consist of a major and minor number. XPC can always
31 * talk to versions with same major #, and never talk to versions with a
32 * different major #.
33 */
34#define _XPC_VERSION(_maj, _min) (((_maj) << 4) | ((_min) & 0xf))
35#define XPC_VERSION_MAJOR(_v) ((_v) >> 4)
36#define XPC_VERSION_MINOR(_v) ((_v) & 0xf)
37
04de7418 38/* define frequency of the heartbeat and frequency how often it's checked */
89eb8eb9 39#define XPC_HB_DEFAULT_INTERVAL 5 /* incr HB every x secs */
a607c389 40#define XPC_HB_CHECK_DEFAULT_INTERVAL 20 /* check HB every x secs */
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41
42/* define the process name of HB checker and the CPU it is pinned to */
43#define XPC_HB_CHECK_THREAD_NAME "xpc_hb"
44#define XPC_HB_CHECK_CPU 0
45
46/* define the process name of the discovery thread */
47#define XPC_DISCOVERY_THREAD_NAME "xpc_discovery"
48
89eb8eb9 49/*
4b38fcd4 50 * the reserved page
89eb8eb9 51 *
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52 * SAL reserves one page of memory per partition for XPC. Though a full page
53 * in length (16384 bytes), its starting address is not page aligned, but it
54 * is cacheline aligned. The reserved page consists of the following:
55 *
56 * reserved page header
57 *
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58 * The first two 64-byte cachelines of the reserved page contain the
59 * header (struct xpc_rsvd_page). Before SAL initialization has completed,
4b38fcd4 60 * SAL has set up the following fields of the reserved page header:
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61 * SAL_signature, SAL_version, SAL_partid, and SAL_nasids_size. The
62 * other fields are set up by XPC. (xpc_rsvd_page points to the local
4b38fcd4 63 * partition's reserved page.)
89eb8eb9 64 *
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65 * part_nasids mask
66 * mach_nasids mask
67 *
68 * SAL also sets up two bitmaps (or masks), one that reflects the actual
69 * nasids in this partition (part_nasids), and the other that reflects
70 * the actual nasids in the entire machine (mach_nasids). We're only
71 * interested in the even numbered nasids (which contain the processors
72 * and/or memory), so we only need half as many bits to represent the
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73 * nasids. When mapping nasid to bit in a mask (or bit to nasid) be sure
74 * to either divide or multiply by 2. The part_nasids mask is located
75 * starting at the first cacheline following the reserved page header. The
76 * mach_nasids mask follows right after the part_nasids mask. The size in
77 * bytes of each mask is reflected by the reserved page header field
78 * 'SAL_nasids_size'. (Local partition's mask pointers are xpc_part_nasids
79 * and xpc_mach_nasids.)
4b38fcd4 80 *
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81 * vars (ia64-sn2 only)
82 * vars part (ia64-sn2 only)
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83 *
84 * Immediately following the mach_nasids mask are the XPC variables
85 * required by other partitions. First are those that are generic to all
86 * partitions (vars), followed on the next available cacheline by those
87 * which are partition specific (vars part). These are setup by XPC.
88 * (Local partition's vars pointers are xpc_vars and xpc_vars_part.)
89eb8eb9 89 *
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90 * Note: Until 'stamp' is set non-zero, the partition XPC code has not been
91 * initialized.
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92 */
93struct xpc_rsvd_page {
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94 u64 SAL_signature; /* SAL: unique signature */
95 u64 SAL_version; /* SAL: version */
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96 short SAL_partid; /* SAL: partition ID */
97 short max_npartitions; /* value of XPC_MAX_PARTITIONS */
89eb8eb9 98 u8 version;
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99 u8 pad1[3]; /* align to next u64 in 1st 64-byte cacheline */
100 union {
101 u64 vars_pa; /* physical address of struct xpc_vars */
102 u64 activate_mq_gpa; /* global phys address of activate_mq */
103 } sn;
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104 unsigned long stamp; /* time when reserved page was setup by XPC */
105 u64 pad2[10]; /* align to last u64 in 2nd 64-byte cacheline */
94bd2708 106 u64 SAL_nasids_size; /* SAL: size of each nasid mask in bytes */
89eb8eb9 107};
89eb8eb9 108
94bd2708 109#define XPC_RP_VERSION _XPC_VERSION(2, 0) /* version 2.0 of the reserved page */
a607c389 110
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111/*
112 * Define the structures by which XPC variables can be exported to other
113 * partitions. (There are two: struct xpc_vars and struct xpc_vars_part)
114 */
115
116/*
117 * The following structure describes the partition generic variables
118 * needed by other partitions in order to properly initialize.
119 *
120 * struct xpc_vars version number also applies to struct xpc_vars_part.
121 * Changes to either structure and/or related functionality should be
122 * reflected by incrementing either the major or minor version numbers
123 * of struct xpc_vars.
124 */
33ba3c77 125struct xpc_vars_sn2 {
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126 u8 version;
127 u64 heartbeat;
33ba3c77 128 DECLARE_BITMAP(heartbeating_to_mask, XP_MAX_NPARTITIONS_SN2);
780d09e8 129 u64 heartbeat_offline; /* if 0, heartbeat should be changing */
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130 int activate_IRQ_nasid;
131 int activate_IRQ_phys_cpuid;
89eb8eb9 132 u64 vars_part_pa;
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133 u64 amos_page_pa; /* paddr of page of amos from MSPEC driver */
134 struct amo *amos_page; /* vaddr of page of amos from MSPEC driver */
89eb8eb9 135};
89eb8eb9 136
2c2b94f9 137#define XPC_V_VERSION _XPC_VERSION(3, 1) /* version 3.1 of the cross vars */
a607c389 138
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139/*
140 * The following structure describes the per partition specific variables.
141 *
142 * An array of these structures, one per partition, will be defined. As a
143 * partition becomes active XPC will copy the array entry corresponding to
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144 * itself from that partition. It is desirable that the size of this structure
145 * evenly divides into a 128-byte cacheline, such that none of the entries in
146 * this array crosses a 128-byte cacheline boundary. As it is now, each entry
e17d416b 147 * occupies 64-bytes.
89eb8eb9 148 */
e17d416b 149struct xpc_vars_part_sn2 {
2c2b94f9 150 u64 magic;
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151
152 u64 openclose_args_pa; /* physical address of open and close args */
153 u64 GPs_pa; /* physical address of Get/Put values */
154
c39838ce 155 u64 chctl_amo_pa; /* physical address of chctl flags' amo */
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156
157 int notify_IRQ_nasid; /* nasid of where to send notify IRQs */
158 int notify_IRQ_phys_cpuid; /* CPUID of where to send notify IRQs */
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159
160 u8 nchannels; /* #of defined channels supported */
161
162 u8 reserved[23]; /* pad to a full 64 bytes */
163};
164
165/*
166 * The vars_part MAGIC numbers play a part in the first contact protocol.
167 *
168 * MAGIC1 indicates that the per partition specific variables for a remote
169 * partition have been initialized by this partition.
170 *
171 * MAGIC2 indicates that this partition has pulled the remote partititions
172 * per partition variables that pertain to this partition.
173 */
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174#define XPC_VP_MAGIC1 0x0053524156435058L /* 'XPCVARS\0'L (little endian) */
175#define XPC_VP_MAGIC2 0x0073726176435058L /* 'XPCvars\0'L (little endian) */
89eb8eb9 176
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177/* the reserved page sizes and offsets */
178
179#define XPC_RP_HEADER_SIZE L1_CACHE_ALIGN(sizeof(struct xpc_rsvd_page))
33ba3c77 180#define XPC_RP_VARS_SIZE L1_CACHE_ALIGN(sizeof(struct xpc_vars_sn2))
4b38fcd4 181
2c2b94f9 182#define XPC_RP_PART_NASIDS(_rp) ((u64 *)((u8 *)(_rp) + XPC_RP_HEADER_SIZE))
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183#define XPC_RP_MACH_NASIDS(_rp) (XPC_RP_PART_NASIDS(_rp) + \
184 xpc_nasid_mask_nlongs)
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185#define XPC_RP_VARS(_rp) ((struct xpc_vars_sn2 *) \
186 (XPC_RP_MACH_NASIDS(_rp) + \
04de7418 187 xpc_nasid_mask_nlongs))
4b38fcd4 188
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189/*
190 * Functions registered by add_timer() or called by kernel_thread() only
191 * allow for a single 64-bit argument. The following macros can be used to
192 * pack and unpack two (32-bit, 16-bit or 8-bit) arguments into or out from
193 * the passed argument.
194 */
195#define XPC_PACK_ARGS(_arg1, _arg2) \
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196 ((((u64)_arg1) & 0xffffffff) | \
197 ((((u64)_arg2) & 0xffffffff) << 32))
89eb8eb9 198
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199#define XPC_UNPACK_ARG1(_args) (((u64)_args) & 0xffffffff)
200#define XPC_UNPACK_ARG2(_args) ((((u64)_args) >> 32) & 0xffffffff)
89eb8eb9 201
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202/*
203 * Define a Get/Put value pair (pointers) used with a message queue.
204 */
205struct xpc_gp {
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206 s64 get; /* Get value */
207 s64 put; /* Put value */
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208};
209
210#define XPC_GP_SIZE \
bc63d387 211 L1_CACHE_ALIGN(sizeof(struct xpc_gp) * XPC_MAX_NCHANNELS)
89eb8eb9 212
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213/*
214 * Define a structure that contains arguments associated with opening and
215 * closing a channel.
216 */
217struct xpc_openclose_args {
218 u16 reason; /* reason why channel is closing */
219 u16 msg_size; /* sizeof each message entry */
220 u16 remote_nentries; /* #of message entries in remote msg queue */
221 u16 local_nentries; /* #of message entries in local msg queue */
222 u64 local_msgqueue_pa; /* physical address of local message queue */
223};
224
225#define XPC_OPENCLOSE_ARGS_SIZE \
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226 L1_CACHE_ALIGN(sizeof(struct xpc_openclose_args) * \
227 XPC_MAX_NCHANNELS)
89eb8eb9 228
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229/* struct xpc_msg flags */
230
231#define XPC_M_DONE 0x01 /* msg has been received/consumed */
232#define XPC_M_READY 0x02 /* msg is ready to be sent */
233#define XPC_M_INTERRUPT 0x04 /* send interrupt when msg consumed */
234
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235#define XPC_MSG_ADDRESS(_payload) \
236 ((struct xpc_msg *)((u8 *)(_payload) - XPC_MSG_PAYLOAD_OFFSET))
237
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238/*
239 * Defines notify entry.
240 *
241 * This is used to notify a message's sender that their message was received
242 * and consumed by the intended recipient.
243 */
244struct xpc_notify {
2c2b94f9 245 u8 type; /* type of notification */
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246
247 /* the following two fields are only used if type == XPC_N_CALL */
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248 xpc_notify_func func; /* user's notify function */
249 void *key; /* pointer to user's key */
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250};
251
252/* struct xpc_notify type of notification */
253
254#define XPC_N_CALL 0x01 /* notify function provided by user */
255
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256/*
257 * Define the structure that manages all the stuff required by a channel. In
258 * particular, they are used to manage the messages sent across the channel.
259 *
260 * This structure is private to a partition, and is NOT shared across the
261 * partition boundary.
262 *
263 * There is an array of these structures for each remote partition. It is
264 * allocated at the time a partition becomes active. The array contains one
265 * of these structures for each potential channel connection to that partition.
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266 */
267
268/*
269 * The following is sn2 only.
89eb8eb9 270 *
ea57f80c 271 * Each channel structure manages two message queues (circular buffers).
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272 * They are allocated at the time a channel connection is made. One of
273 * these message queues (local_msgqueue) holds the locally created messages
274 * that are destined for the remote partition. The other of these message
275 * queues (remote_msgqueue) is a locally cached copy of the remote partition's
276 * own local_msgqueue.
277 *
278 * The following is a description of the Get/Put pointers used to manage these
279 * two message queues. Consider the local_msgqueue to be on one partition
280 * and the remote_msgqueue to be its cached copy on another partition. A
281 * description of what each of the lettered areas contains is included.
282 *
283 *
284 * local_msgqueue remote_msgqueue
285 *
286 * |/////////| |/////////|
287 * w_remote_GP.get --> +---------+ |/////////|
288 * | F | |/////////|
289 * remote_GP.get --> +---------+ +---------+ <-- local_GP->get
290 * | | | |
291 * | | | E |
292 * | | | |
293 * | | +---------+ <-- w_local_GP.get
294 * | B | |/////////|
295 * | | |////D////|
296 * | | |/////////|
297 * | | +---------+ <-- w_remote_GP.put
298 * | | |////C////|
299 * local_GP->put --> +---------+ +---------+ <-- remote_GP.put
300 * | | |/////////|
301 * | A | |/////////|
302 * | | |/////////|
303 * w_local_GP.put --> +---------+ |/////////|
304 * |/////////| |/////////|
305 *
306 *
307 * ( remote_GP.[get|put] are cached copies of the remote
308 * partition's local_GP->[get|put], and thus their values can
309 * lag behind their counterparts on the remote partition. )
310 *
311 *
312 * A - Messages that have been allocated, but have not yet been sent to the
313 * remote partition.
314 *
315 * B - Messages that have been sent, but have not yet been acknowledged by the
316 * remote partition as having been received.
317 *
318 * C - Area that needs to be prepared for the copying of sent messages, by
319 * the clearing of the message flags of any previously received messages.
320 *
321 * D - Area into which sent messages are to be copied from the remote
322 * partition's local_msgqueue and then delivered to their intended
323 * recipients. [ To allow for a multi-message copy, another pointer
324 * (next_msg_to_pull) has been added to keep track of the next message
325 * number needing to be copied (pulled). It chases after w_remote_GP.put.
326 * Any messages lying between w_local_GP.get and next_msg_to_pull have
327 * been copied and are ready to be delivered. ]
328 *
329 * E - Messages that have been copied and delivered, but have not yet been
330 * acknowledged by the recipient as having been received.
331 *
332 * F - Messages that have been acknowledged, but XPC has not yet notified the
333 * sender that the message was received by its intended recipient.
334 * This is also an area that needs to be prepared for the allocating of
335 * new messages, by the clearing of the message flags of the acknowledged
336 * messages.
337 */
ea57f80c 338
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339struct xpc_channel_sn2 {
340
341 /* various flavors of local and remote Get/Put values */
342
343 struct xpc_gp *local_GP; /* local Get/Put values */
344 struct xpc_gp remote_GP; /* remote Get/Put values */
345 struct xpc_gp w_local_GP; /* working local Get/Put values */
346 struct xpc_gp w_remote_GP; /* working remote Get/Put values */
347 s64 next_msg_to_pull; /* Put value of next msg to pull */
348
349 struct mutex msg_to_pull_mutex; /* next msg to pull serialization */
350};
351
352struct xpc_channel_uv {
ea57f80c 353 /* !!! code is coming */
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354};
355
89eb8eb9 356struct xpc_channel {
64d032ba 357 short partid; /* ID of remote partition connected */
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358 spinlock_t lock; /* lock for updating this structure */
359 u32 flags; /* general flags */
89eb8eb9 360
65c17b80 361 enum xp_retval reason; /* reason why channel is disconnect'g */
4a3ad2dd 362 int reason_line; /* line# disconnect initiated from */
89eb8eb9 363
4a3ad2dd 364 u16 number; /* channel # */
89eb8eb9 365
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366 u16 msg_size; /* sizeof each msg entry */
367 u16 local_nentries; /* #of msg entries in local msg queue */
368 u16 remote_nentries; /* #of msg entries in remote msg queue */
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369
370 void *local_msgqueue_base; /* base address of kmalloc'd space */
371 struct xpc_msg *local_msgqueue; /* local message queue */
372 void *remote_msgqueue_base; /* base address of kmalloc'd space */
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373 struct xpc_msg *remote_msgqueue; /* cached copy of remote partition's */
374 /* local message queue */
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375 u64 remote_msgqueue_pa; /* phys addr of remote partition's */
376 /* local message queue */
89eb8eb9 377
4a3ad2dd 378 atomic_t references; /* #of external references to queues */
89eb8eb9 379
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380 atomic_t n_on_msg_allocate_wq; /* #on msg allocation wait queue */
381 wait_queue_head_t msg_allocate_wq; /* msg allocation wait queue */
89eb8eb9 382
7fb5e59d 383 u8 delayed_chctl_flags; /* chctl flags received, but delayed */
4a3ad2dd 384 /* action until channel disconnected */
e54af724 385
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386 /* queue of msg senders who want to be notified when msg received */
387
4a3ad2dd 388 atomic_t n_to_notify; /* #of msg senders to notify */
2c2b94f9 389 struct xpc_notify *notify_queue; /* notify queue for messages sent */
89eb8eb9 390
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391 xpc_channel_func func; /* user's channel function */
392 void *key; /* pointer to user's key */
89eb8eb9 393
2c2b94f9 394 struct completion wdisconnect_wait; /* wait for channel disconnect */
89eb8eb9 395
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396 struct xpc_openclose_args *local_openclose_args; /* args passed on */
397 /* opening or closing of channel */
89eb8eb9 398
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399 /* kthread management related fields */
400
89eb8eb9 401 atomic_t kthreads_assigned; /* #of kthreads assigned to channel */
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402 u32 kthreads_assigned_limit; /* limit on #of kthreads assigned */
403 atomic_t kthreads_idle; /* #of kthreads idle waiting for work */
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404 u32 kthreads_idle_limit; /* limit on #of kthreads idle */
405 atomic_t kthreads_active; /* #of kthreads actively working */
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406
407 wait_queue_head_t idle_wq; /* idle kthread wait queue */
408
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409 union {
410 struct xpc_channel_sn2 sn2;
411 struct xpc_channel_uv uv;
412 } sn;
413
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414} ____cacheline_aligned;
415
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416/* struct xpc_channel flags */
417
4a3ad2dd 418#define XPC_C_WASCONNECTED 0x00000001 /* channel was connected */
89eb8eb9 419
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420#define XPC_C_ROPENREPLY 0x00000002 /* remote open channel reply */
421#define XPC_C_OPENREPLY 0x00000004 /* local open channel reply */
2c2b94f9 422#define XPC_C_ROPENREQUEST 0x00000008 /* remote open channel request */
4a3ad2dd 423#define XPC_C_OPENREQUEST 0x00000010 /* local open channel request */
89eb8eb9 424
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425#define XPC_C_SETUP 0x00000020 /* channel's msgqueues are alloc'd */
426#define XPC_C_CONNECTEDCALLOUT 0x00000040 /* connected callout initiated */
4c2cd966 427#define XPC_C_CONNECTEDCALLOUT_MADE \
2c2b94f9 428 0x00000080 /* connected callout completed */
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429#define XPC_C_CONNECTED 0x00000100 /* local channel is connected */
430#define XPC_C_CONNECTING 0x00000200 /* channel is being connected */
4c2cd966 431
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432#define XPC_C_RCLOSEREPLY 0x00000400 /* remote close channel reply */
433#define XPC_C_CLOSEREPLY 0x00000800 /* local close channel reply */
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434#define XPC_C_RCLOSEREQUEST 0x00001000 /* remote close channel request */
435#define XPC_C_CLOSEREQUEST 0x00002000 /* local close channel request */
4c2cd966 436
4a3ad2dd 437#define XPC_C_DISCONNECTED 0x00004000 /* channel is disconnected */
2c2b94f9 438#define XPC_C_DISCONNECTING 0x00008000 /* channel is being disconnected */
4c2cd966 439#define XPC_C_DISCONNECTINGCALLOUT \
2c2b94f9 440 0x00010000 /* disconnecting callout initiated */
4c2cd966 441#define XPC_C_DISCONNECTINGCALLOUT_MADE \
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442 0x00020000 /* disconnecting callout completed */
443#define XPC_C_WDISCONNECT 0x00040000 /* waiting for channel disconnect */
89eb8eb9 444
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445/*
446 * The channel control flags (chctl) union consists of a 64-bit variable which
447 * is divided up into eight bytes, ordered from right to left. Byte zero
448 * pertains to channel 0, byte one to channel 1, and so on. Each channel's byte
449 * can have one or more of the chctl flags set in it.
450 */
451
452union xpc_channel_ctl_flags {
453 u64 all_flags;
454 u8 flags[XPC_MAX_NCHANNELS];
455};
456
457/* chctl flags */
458#define XPC_CHCTL_CLOSEREQUEST 0x01
459#define XPC_CHCTL_CLOSEREPLY 0x02
460#define XPC_CHCTL_OPENREQUEST 0x04
461#define XPC_CHCTL_OPENREPLY 0x08
462#define XPC_CHCTL_MSGREQUEST 0x10
463
464#define XPC_OPENCLOSE_CHCTL_FLAGS \
465 (XPC_CHCTL_CLOSEREQUEST | XPC_CHCTL_CLOSEREPLY | \
466 XPC_CHCTL_OPENREQUEST | XPC_CHCTL_OPENREPLY)
467#define XPC_MSG_CHCTL_FLAGS XPC_CHCTL_MSGREQUEST
468
469static inline int
470xpc_any_openclose_chctl_flags_set(union xpc_channel_ctl_flags *chctl)
471{
472 int ch_number;
473
474 for (ch_number = 0; ch_number < XPC_MAX_NCHANNELS; ch_number++) {
475 if (chctl->flags[ch_number] & XPC_OPENCLOSE_CHCTL_FLAGS)
476 return 1;
477 }
478 return 0;
479}
480
481static inline int
482xpc_any_msg_chctl_flags_set(union xpc_channel_ctl_flags *chctl)
483{
484 int ch_number;
485
486 for (ch_number = 0; ch_number < XPC_MAX_NCHANNELS; ch_number++) {
487 if (chctl->flags[ch_number] & XPC_MSG_CHCTL_FLAGS)
488 return 1;
489 }
490 return 0;
491}
492
89eb8eb9 493/*
ea57f80c 494 * Manage channels on a partition basis. There is one of these structures
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495 * for each partition (a partition will never utilize the structure that
496 * represents itself).
497 */
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498
499struct xpc_partition_sn2 {
500 u64 remote_amos_page_pa; /* phys addr of partition's amos page */
501 int activate_IRQ_nasid; /* active partition's act/deact nasid */
502 int activate_IRQ_phys_cpuid; /* active part's act/deact phys cpuid */
503
504 u64 remote_vars_pa; /* phys addr of partition's vars */
505 u64 remote_vars_part_pa; /* phys addr of partition's vars part */
506 u8 remote_vars_version; /* version# of partition's vars */
507
508 void *local_GPs_base; /* base address of kmalloc'd space */
509 struct xpc_gp *local_GPs; /* local Get/Put values */
510 void *remote_GPs_base; /* base address of kmalloc'd space */
511 struct xpc_gp *remote_GPs; /* copy of remote partition's local */
512 /* Get/Put values */
513 u64 remote_GPs_pa; /* phys address of remote partition's local */
514 /* Get/Put values */
515
516 u64 remote_openclose_args_pa; /* phys addr of remote's args */
517
7fb5e59d
DN
518 int notify_IRQ_nasid; /* nasid of where to send notify IRQs */
519 int notify_IRQ_phys_cpuid; /* CPUID of where to send notify IRQs */
520 char notify_IRQ_owner[8]; /* notify IRQ's owner's name */
a47d5dac 521
c39838ce
DN
522 struct amo *remote_chctl_amo_va; /* addr of remote chctl flags' amo */
523 struct amo *local_chctl_amo_va; /* address of chctl flags' amo */
a47d5dac
DN
524
525 struct timer_list dropped_notify_IRQ_timer; /* dropped IRQ timer */
526};
527
528struct xpc_partition_uv {
ea57f80c 529 /* !!! code is coming */
a47d5dac
DN
530};
531
89eb8eb9
DN
532struct xpc_partition {
533
534 /* XPC HB infrastructure */
535
4a3ad2dd 536 u8 remote_rp_version; /* version# of partition's rsvd pg */
aaa3cd69 537 unsigned long remote_rp_stamp; /* time when rsvd pg was initialized */
4a3ad2dd 538 u64 remote_rp_pa; /* phys addr of partition's rsvd pg */
4a3ad2dd 539 u64 last_heartbeat; /* HB at last read */
6e41017a 540 u32 activate_IRQ_rcvd; /* IRQs since activation */
4a3ad2dd
DN
541 spinlock_t act_lock; /* protect updating of act_state */
542 u8 act_state; /* from XPC HB viewpoint */
65c17b80 543 enum xp_retval reason; /* reason partition is deactivating */
4a3ad2dd 544 int reason_line; /* line# deactivation initiated from */
4a3ad2dd 545
a47d5dac
DN
546 unsigned long disengage_timeout; /* timeout in jiffies */
547 struct timer_list disengage_timer;
a607c389 548
89eb8eb9
DN
549 /* XPC infrastructure referencing and teardown control */
550
2c2b94f9 551 u8 setup_state; /* infrastructure setup state */
89eb8eb9 552 wait_queue_head_t teardown_wq; /* kthread waiting to teardown infra */
4a3ad2dd 553 atomic_t references; /* #of references to infrastructure */
89eb8eb9 554
4a3ad2dd 555 u8 nchannels; /* #of defined channels supported */
2c2b94f9
DN
556 atomic_t nchannels_active; /* #of channels that are not DISCONNECTED */
557 atomic_t nchannels_engaged; /* #of channels engaged with remote part */
4a3ad2dd
DN
558 struct xpc_channel *channels; /* array of channel structures */
559
7fb5e59d
DN
560 /* fields used for managing channel avialability and activity */
561
562 union xpc_channel_ctl_flags chctl; /* chctl flags yet to be processed */
563 spinlock_t chctl_lock; /* chctl flags lock */
89eb8eb9 564
2c2b94f9
DN
565 void *local_openclose_args_base; /* base address of kmalloc'd space */
566 struct xpc_openclose_args *local_openclose_args; /* local's args */
567 void *remote_openclose_args_base; /* base address of kmalloc'd space */
568 struct xpc_openclose_args *remote_openclose_args; /* copy of remote's */
569 /* args */
89eb8eb9 570
89eb8eb9
DN
571 /* channel manager related fields */
572
573 atomic_t channel_mgr_requests; /* #of requests to activate chan mgr */
4a3ad2dd 574 wait_queue_head_t channel_mgr_wq; /* channel mgr's wait queue */
89eb8eb9 575
a47d5dac
DN
576 union {
577 struct xpc_partition_sn2 sn2;
578 struct xpc_partition_uv uv;
579 } sn;
580
89eb8eb9
DN
581} ____cacheline_aligned;
582
89eb8eb9
DN
583/* struct xpc_partition act_state values (for XPC HB) */
584
585#define XPC_P_INACTIVE 0x00 /* partition is not active */
586#define XPC_P_ACTIVATION_REQ 0x01 /* created thread to activate */
587#define XPC_P_ACTIVATING 0x02 /* activation thread started */
588#define XPC_P_ACTIVE 0x03 /* xpc_partition_up() was called */
589#define XPC_P_DEACTIVATING 0x04 /* partition deactivation initiated */
590
89eb8eb9
DN
591#define XPC_DEACTIVATE_PARTITION(_p, _reason) \
592 xpc_deactivate_partition(__LINE__, (_p), (_reason))
593
89eb8eb9
DN
594/* struct xpc_partition setup_state values */
595
596#define XPC_P_UNSET 0x00 /* infrastructure was never setup */
597#define XPC_P_SETUP 0x01 /* infrastructure is setup */
598#define XPC_P_WTEARDOWN 0x02 /* waiting to teardown infrastructure */
599#define XPC_P_TORNDOWN 0x03 /* infrastructure is torndown */
600
89eb8eb9 601/*
7fb5e59d
DN
602 * struct xpc_partition_sn2's dropped notify IRQ timer is set to wait the
603 * following interval #of seconds before checking for dropped notify IRQs.
604 * These can occur whenever an IRQ's associated amo write doesn't complete
605 * until after the IRQ was received.
89eb8eb9 606 */
7fb5e59d 607#define XPC_DROPPED_NOTIFY_IRQ_WAIT_INTERVAL (0.25 * HZ)
89eb8eb9 608
a607c389 609/* number of seconds to wait for other partitions to disengage */
a47d5dac 610#define XPC_DISENGAGE_DEFAULT_TIMELIMIT 90
a607c389 611
a47d5dac
DN
612/* interval in seconds to print 'waiting deactivation' messages */
613#define XPC_DEACTIVATE_PRINTMSG_INTERVAL 10
a607c389 614
64d032ba 615#define XPC_PARTID(_p) ((short)((_p) - &xpc_partitions[0]))
89eb8eb9 616
89eb8eb9
DN
617/* found in xp_main.c */
618extern struct xpc_registration xpc_registrations[];
619
e54af724 620/* found in xpc_main.c */
89eb8eb9
DN
621extern struct device *xpc_part;
622extern struct device *xpc_chan;
a47d5dac
DN
623extern int xpc_disengage_timelimit;
624extern int xpc_disengage_timedout;
6e41017a
DN
625extern atomic_t xpc_activate_IRQ_rcvd;
626extern wait_queue_head_t xpc_activate_IRQ_wq;
33ba3c77 627extern void *xpc_heartbeating_to_mask;
e54af724 628extern void xpc_activate_partition(struct xpc_partition *);
89eb8eb9 629extern void xpc_activate_kthreads(struct xpc_channel *, int);
a460ef8d 630extern void xpc_create_kthreads(struct xpc_channel *, int, int);
89eb8eb9 631extern void xpc_disconnect_wait(int);
94bd2708 632extern enum xp_retval (*xpc_rsvd_page_init) (struct xpc_rsvd_page *);
33ba3c77
DN
633extern void (*xpc_heartbeat_init) (void);
634extern void (*xpc_heartbeat_exit) (void);
635extern void (*xpc_increment_heartbeat) (void);
636extern void (*xpc_offline_heartbeat) (void);
637extern void (*xpc_online_heartbeat) (void);
638extern void (*xpc_check_remote_hb) (void);
e17d416b 639extern enum xp_retval (*xpc_make_first_contact) (struct xpc_partition *);
7fb5e59d 640extern u64 (*xpc_get_chctl_all_flags) (struct xpc_partition *);
185c3a1b
DN
641extern enum xp_retval (*xpc_allocate_msgqueues) (struct xpc_channel *);
642extern void (*xpc_free_msgqueues) (struct xpc_channel *);
a47d5dac 643extern void (*xpc_notify_senders_of_disconnect) (struct xpc_channel *);
7fb5e59d 644extern void (*xpc_process_msg_chctl_flags) (struct xpc_partition *, int);
a47d5dac 645extern int (*xpc_n_of_deliverable_msgs) (struct xpc_channel *);
e17d416b 646extern struct xpc_msg *(*xpc_get_deliverable_msg) (struct xpc_channel *);
a47d5dac
DN
647extern void (*xpc_request_partition_activation) (struct xpc_rsvd_page *, u64,
648 int);
649extern void (*xpc_request_partition_reactivation) (struct xpc_partition *);
650extern void (*xpc_request_partition_deactivation) (struct xpc_partition *);
651extern void (*xpc_cancel_partition_deactivation_request) (
652 struct xpc_partition *);
6e41017a 653extern void (*xpc_process_activate_IRQ_rcvd) (int);
e17d416b
DN
654extern enum xp_retval (*xpc_setup_infrastructure) (struct xpc_partition *);
655extern void (*xpc_teardown_infrastructure) (struct xpc_partition *);
a47d5dac
DN
656
657extern void (*xpc_indicate_partition_engaged) (struct xpc_partition *);
658extern int (*xpc_partition_engaged) (short);
659extern int (*xpc_any_partition_engaged) (void);
660extern void (*xpc_indicate_partition_disengaged) (struct xpc_partition *);
661extern void (*xpc_assume_partition_disengaged) (short);
662
7fb5e59d 663extern void (*xpc_send_chctl_closerequest) (struct xpc_channel *,
a47d5dac 664 unsigned long *);
7fb5e59d
DN
665extern void (*xpc_send_chctl_closereply) (struct xpc_channel *,
666 unsigned long *);
667extern void (*xpc_send_chctl_openrequest) (struct xpc_channel *,
a47d5dac 668 unsigned long *);
7fb5e59d 669extern void (*xpc_send_chctl_openreply) (struct xpc_channel *, unsigned long *);
33ba3c77 670
97bf1aa1 671extern enum xp_retval (*xpc_send_msg) (struct xpc_channel *, u32, void *, u16,
33ba3c77
DN
672 u8, xpc_notify_func, void *);
673extern void (*xpc_received_msg) (struct xpc_channel *, struct xpc_msg *);
94bd2708
DN
674
675/* found in xpc_sn2.c */
6e41017a
DN
676extern int xpc_init_sn2(void);
677extern void xpc_exit_sn2(void);
94bd2708
DN
678
679/* found in xpc_uv.c */
680extern void xpc_init_uv(void);
6e41017a 681extern void xpc_exit_uv(void);
94bd2708 682
89eb8eb9
DN
683/* found in xpc_partition.c */
684extern int xpc_exiting;
04de7418 685extern int xpc_nasid_mask_nlongs;
89eb8eb9 686extern struct xpc_rsvd_page *xpc_rsvd_page;
04de7418 687extern unsigned long *xpc_mach_nasids;
bc63d387 688extern struct xpc_partition *xpc_partitions;
7682a4c6 689extern void *xpc_kmalloc_cacheline_aligned(size_t, gfp_t, void **);
94bd2708 690extern struct xpc_rsvd_page *xpc_setup_rsvd_page(void);
6e41017a 691extern int xpc_identify_activate_IRQ_sender(void);
a607c389 692extern int xpc_partition_disengaged(struct xpc_partition *);
65c17b80 693extern enum xp_retval xpc_mark_partition_active(struct xpc_partition *);
89eb8eb9
DN
694extern void xpc_mark_partition_inactive(struct xpc_partition *);
695extern void xpc_discovery(void);
04de7418
DN
696extern enum xp_retval xpc_get_remote_rp(int, unsigned long *,
697 struct xpc_rsvd_page *, u64 *);
89eb8eb9 698extern void xpc_deactivate_partition(const int, struct xpc_partition *,
65c17b80 699 enum xp_retval);
64d032ba 700extern enum xp_retval xpc_initiate_partid_to_nasids(short, void *);
89eb8eb9 701
89eb8eb9
DN
702/* found in xpc_channel.c */
703extern void xpc_initiate_connect(int);
704extern void xpc_initiate_disconnect(int);
33ba3c77 705extern enum xp_retval xpc_allocate_msg_wait(struct xpc_channel *);
97bf1aa1
DN
706extern enum xp_retval xpc_initiate_send(short, int, u32, void *, u16);
707extern enum xp_retval xpc_initiate_send_notify(short, int, u32, void *, u16,
65c17b80 708 xpc_notify_func, void *);
64d032ba 709extern void xpc_initiate_received(short, int, void *);
7fb5e59d 710extern void xpc_process_sent_chctl_flags(struct xpc_partition *);
89eb8eb9
DN
711extern void xpc_connected_callout(struct xpc_channel *);
712extern void xpc_deliver_msg(struct xpc_channel *);
713extern void xpc_disconnect_channel(const int, struct xpc_channel *,
65c17b80
DN
714 enum xp_retval, unsigned long *);
715extern void xpc_disconnect_callout(struct xpc_channel *, enum xp_retval);
716extern void xpc_partition_going_down(struct xpc_partition *, enum xp_retval);
89eb8eb9 717
33ba3c77
DN
718static inline int
719xpc_hb_allowed(short partid, void *heartbeating_to_mask)
720{
721 return test_bit(partid, heartbeating_to_mask);
722}
723
724static inline int
725xpc_any_hbs_allowed(void)
726{
727 DBUG_ON(xpc_heartbeating_to_mask == NULL);
728 return !bitmap_empty(xpc_heartbeating_to_mask, xp_max_npartitions);
729}
730
731static inline void
732xpc_allow_hb(short partid)
733{
734 DBUG_ON(xpc_heartbeating_to_mask == NULL);
735 set_bit(partid, xpc_heartbeating_to_mask);
736}
737
738static inline void
739xpc_disallow_hb(short partid)
740{
741 DBUG_ON(xpc_heartbeating_to_mask == NULL);
742 clear_bit(partid, xpc_heartbeating_to_mask);
743}
744
745static inline void
746xpc_disallow_all_hbs(void)
747{
748 DBUG_ON(xpc_heartbeating_to_mask == NULL);
749 bitmap_zero(xpc_heartbeating_to_mask, xp_max_npartitions);
750}
751
89eb8eb9
DN
752static inline void
753xpc_wakeup_channel_mgr(struct xpc_partition *part)
754{
2c2b94f9 755 if (atomic_inc_return(&part->channel_mgr_requests) == 1)
89eb8eb9 756 wake_up(&part->channel_mgr_wq);
89eb8eb9
DN
757}
758
89eb8eb9
DN
759/*
760 * These next two inlines are used to keep us from tearing down a channel's
761 * msg queues while a thread may be referencing them.
762 */
763static inline void
764xpc_msgqueue_ref(struct xpc_channel *ch)
765{
766 atomic_inc(&ch->references);
767}
768
769static inline void
770xpc_msgqueue_deref(struct xpc_channel *ch)
771{
772 s32 refs = atomic_dec_return(&ch->references);
773
774 DBUG_ON(refs < 0);
2c2b94f9 775 if (refs == 0)
89eb8eb9 776 xpc_wakeup_channel_mgr(&xpc_partitions[ch->partid]);
89eb8eb9
DN
777}
778
89eb8eb9
DN
779#define XPC_DISCONNECT_CHANNEL(_ch, _reason, _irqflgs) \
780 xpc_disconnect_channel(__LINE__, _ch, _reason, _irqflgs)
781
89eb8eb9
DN
782/*
783 * These two inlines are used to keep us from tearing down a partition's
784 * setup infrastructure while a thread may be referencing it.
785 */
786static inline void
787xpc_part_deref(struct xpc_partition *part)
788{
789 s32 refs = atomic_dec_return(&part->references);
790
89eb8eb9 791 DBUG_ON(refs < 0);
2c2b94f9 792 if (refs == 0 && part->setup_state == XPC_P_WTEARDOWN)
89eb8eb9 793 wake_up(&part->teardown_wq);
89eb8eb9
DN
794}
795
796static inline int
797xpc_part_ref(struct xpc_partition *part)
798{
799 int setup;
800
89eb8eb9
DN
801 atomic_inc(&part->references);
802 setup = (part->setup_state == XPC_P_SETUP);
2c2b94f9 803 if (!setup)
89eb8eb9 804 xpc_part_deref(part);
2c2b94f9 805
89eb8eb9
DN
806 return setup;
807}
808
89eb8eb9
DN
809/*
810 * The following macro is to be used for the setting of the reason and
811 * reason_line fields in both the struct xpc_channel and struct xpc_partition
812 * structures.
813 */
814#define XPC_SET_REASON(_p, _reason, _line) \
815 { \
816 (_p)->reason = _reason; \
817 (_p)->reason_line = _line; \
818 }
819
45d9ca49 820#endif /* _DRIVERS_MISC_SGIXP_XPC_H */
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