2 * Support for dynamic reconfiguration for PCI, Memory, and CPU
3 * Hotplug and Dynamic Logical Partitioning on RPA platforms.
5 * Copyright (C) 2009 Nathan Fontenot
6 * Copyright (C) 2009 IBM Corporation
8 * This program is free software; you can redistribute it and/or
9 * modify it under the terms of the GNU General Public License version
10 * 2 as published by the Free Software Foundation.
13 #define pr_fmt(fmt) "dlpar: " fmt
15 #include <linux/kernel.h>
16 #include <linux/notifier.h>
17 #include <linux/spinlock.h>
18 #include <linux/cpu.h>
19 #include <linux/slab.h>
22 #include "of_helpers.h"
26 #include <asm/machdep.h>
27 #include <linux/uaccess.h>
30 static struct workqueue_struct *pseries_hp_wq;
32 struct pseries_hp_work {
33 struct work_struct work;
34 struct pseries_hp_errorlog *errlog;
35 struct completion *hp_completion;
47 void dlpar_free_cc_property(struct property *prop)
54 static struct property *dlpar_parse_cc_property(struct cc_workarea *ccwa)
56 struct property *prop;
60 prop = kzalloc(sizeof(*prop), GFP_KERNEL);
64 name = (char *)ccwa + be32_to_cpu(ccwa->name_offset);
65 prop->name = kstrdup(name, GFP_KERNEL);
67 prop->length = be32_to_cpu(ccwa->prop_length);
68 value = (char *)ccwa + be32_to_cpu(ccwa->prop_offset);
69 prop->value = kmemdup(value, prop->length, GFP_KERNEL);
71 dlpar_free_cc_property(prop);
78 static struct device_node *dlpar_parse_cc_node(struct cc_workarea *ccwa)
80 struct device_node *dn;
83 dn = kzalloc(sizeof(*dn), GFP_KERNEL);
87 name = (const char *)ccwa + be32_to_cpu(ccwa->name_offset);
88 dn->full_name = kstrdup(name, GFP_KERNEL);
94 of_node_set_flag(dn, OF_DYNAMIC);
100 static void dlpar_free_one_cc_node(struct device_node *dn)
102 struct property *prop;
104 while (dn->properties) {
105 prop = dn->properties;
106 dn->properties = prop->next;
107 dlpar_free_cc_property(prop);
110 kfree(dn->full_name);
114 void dlpar_free_cc_nodes(struct device_node *dn)
117 dlpar_free_cc_nodes(dn->child);
120 dlpar_free_cc_nodes(dn->sibling);
122 dlpar_free_one_cc_node(dn);
126 #define NEXT_SIBLING 1
128 #define NEXT_PROPERTY 3
129 #define PREV_PARENT 4
130 #define MORE_MEMORY 5
131 #define CALL_AGAIN -2
132 #define ERR_CFG_USE -9003
134 struct device_node *dlpar_configure_connector(__be32 drc_index,
135 struct device_node *parent)
137 struct device_node *dn;
138 struct device_node *first_dn = NULL;
139 struct device_node *last_dn = NULL;
140 struct property *property;
141 struct property *last_property = NULL;
142 struct cc_workarea *ccwa;
147 cc_token = rtas_token("ibm,configure-connector");
148 if (cc_token == RTAS_UNKNOWN_SERVICE)
151 data_buf = kzalloc(RTAS_DATA_BUF_SIZE, GFP_KERNEL);
155 ccwa = (struct cc_workarea *)&data_buf[0];
156 ccwa->drc_index = drc_index;
160 /* Since we release the rtas_data_buf lock between configure
161 * connector calls we want to re-populate the rtas_data_buffer
162 * with the contents of the previous call.
164 spin_lock(&rtas_data_buf_lock);
166 memcpy(rtas_data_buf, data_buf, RTAS_DATA_BUF_SIZE);
167 rc = rtas_call(cc_token, 2, 1, NULL, rtas_data_buf, NULL);
168 memcpy(data_buf, rtas_data_buf, RTAS_DATA_BUF_SIZE);
170 spin_unlock(&rtas_data_buf_lock);
177 dn = dlpar_parse_cc_node(ccwa);
181 dn->parent = last_dn->parent;
182 last_dn->sibling = dn;
187 dn = dlpar_parse_cc_node(ccwa);
195 dn->parent = last_dn;
204 property = dlpar_parse_cc_property(ccwa);
208 if (!last_dn->properties)
209 last_dn->properties = property;
211 last_property->next = property;
213 last_property = property;
217 last_dn = last_dn->parent;
226 printk(KERN_ERR "Unexpected Error (%d) "
227 "returned from configure-connector\n", rc);
237 dlpar_free_cc_nodes(first_dn);
245 int dlpar_attach_node(struct device_node *dn, struct device_node *parent)
251 rc = of_attach_node(dn);
253 printk(KERN_ERR "Failed to add device node %pOF\n", dn);
260 int dlpar_detach_node(struct device_node *dn)
262 struct device_node *child;
265 child = of_get_next_child(dn, NULL);
267 dlpar_detach_node(child);
268 child = of_get_next_child(dn, child);
271 rc = of_detach_node(dn);
278 #define DR_ENTITY_SENSE 9003
279 #define DR_ENTITY_PRESENT 1
280 #define DR_ENTITY_UNUSABLE 2
281 #define ALLOCATION_STATE 9003
282 #define ALLOC_UNUSABLE 0
283 #define ALLOC_USABLE 1
284 #define ISOLATION_STATE 9001
288 int dlpar_acquire_drc(u32 drc_index)
292 rc = rtas_call(rtas_token("get-sensor-state"), 2, 2, &dr_status,
293 DR_ENTITY_SENSE, drc_index);
294 if (rc || dr_status != DR_ENTITY_UNUSABLE)
297 rc = rtas_set_indicator(ALLOCATION_STATE, drc_index, ALLOC_USABLE);
301 rc = rtas_set_indicator(ISOLATION_STATE, drc_index, UNISOLATE);
303 rtas_set_indicator(ALLOCATION_STATE, drc_index, ALLOC_UNUSABLE);
310 int dlpar_release_drc(u32 drc_index)
314 rc = rtas_call(rtas_token("get-sensor-state"), 2, 2, &dr_status,
315 DR_ENTITY_SENSE, drc_index);
316 if (rc || dr_status != DR_ENTITY_PRESENT)
319 rc = rtas_set_indicator(ISOLATION_STATE, drc_index, ISOLATE);
323 rc = rtas_set_indicator(ALLOCATION_STATE, drc_index, ALLOC_UNUSABLE);
325 rtas_set_indicator(ISOLATION_STATE, drc_index, UNISOLATE);
332 static int handle_dlpar_errorlog(struct pseries_hp_errorlog *hp_elog)
336 /* pseries error logs are in BE format, convert to cpu type */
337 switch (hp_elog->id_type) {
338 case PSERIES_HP_ELOG_ID_DRC_COUNT:
339 hp_elog->_drc_u.drc_count =
340 be32_to_cpu(hp_elog->_drc_u.drc_count);
342 case PSERIES_HP_ELOG_ID_DRC_INDEX:
343 hp_elog->_drc_u.drc_index =
344 be32_to_cpu(hp_elog->_drc_u.drc_index);
346 case PSERIES_HP_ELOG_ID_DRC_IC:
347 hp_elog->_drc_u.ic.count =
348 be32_to_cpu(hp_elog->_drc_u.ic.count);
349 hp_elog->_drc_u.ic.index =
350 be32_to_cpu(hp_elog->_drc_u.ic.index);
353 switch (hp_elog->resource) {
354 case PSERIES_HP_ELOG_RESOURCE_MEM:
355 rc = dlpar_memory(hp_elog);
357 case PSERIES_HP_ELOG_RESOURCE_CPU:
358 rc = dlpar_cpu(hp_elog);
361 pr_warn_ratelimited("Invalid resource (%d) specified\n",
369 static void pseries_hp_work_fn(struct work_struct *work)
371 struct pseries_hp_work *hp_work =
372 container_of(work, struct pseries_hp_work, work);
375 *(hp_work->rc) = handle_dlpar_errorlog(hp_work->errlog);
377 handle_dlpar_errorlog(hp_work->errlog);
379 if (hp_work->hp_completion)
380 complete(hp_work->hp_completion);
382 kfree(hp_work->errlog);
386 void queue_hotplug_event(struct pseries_hp_errorlog *hp_errlog,
387 struct completion *hotplug_done, int *rc)
389 struct pseries_hp_work *work;
390 struct pseries_hp_errorlog *hp_errlog_copy;
392 hp_errlog_copy = kmalloc(sizeof(struct pseries_hp_errorlog),
394 memcpy(hp_errlog_copy, hp_errlog, sizeof(struct pseries_hp_errorlog));
396 work = kmalloc(sizeof(struct pseries_hp_work), GFP_KERNEL);
398 INIT_WORK((struct work_struct *)work, pseries_hp_work_fn);
399 work->errlog = hp_errlog_copy;
400 work->hp_completion = hotplug_done;
402 queue_work(pseries_hp_wq, (struct work_struct *)work);
405 kfree(hp_errlog_copy);
406 complete(hotplug_done);
410 static int dlpar_parse_resource(char **cmd, struct pseries_hp_errorlog *hp_elog)
414 arg = strsep(cmd, " ");
418 if (sysfs_streq(arg, "memory")) {
419 hp_elog->resource = PSERIES_HP_ELOG_RESOURCE_MEM;
420 } else if (sysfs_streq(arg, "cpu")) {
421 hp_elog->resource = PSERIES_HP_ELOG_RESOURCE_CPU;
423 pr_err("Invalid resource specified.\n");
430 static int dlpar_parse_action(char **cmd, struct pseries_hp_errorlog *hp_elog)
434 arg = strsep(cmd, " ");
438 if (sysfs_streq(arg, "add")) {
439 hp_elog->action = PSERIES_HP_ELOG_ACTION_ADD;
440 } else if (sysfs_streq(arg, "remove")) {
441 hp_elog->action = PSERIES_HP_ELOG_ACTION_REMOVE;
443 pr_err("Invalid action specified.\n");
450 static int dlpar_parse_id_type(char **cmd, struct pseries_hp_errorlog *hp_elog)
455 arg = strsep(cmd, " ");
459 if (sysfs_streq(arg, "indexed-count")) {
460 hp_elog->id_type = PSERIES_HP_ELOG_ID_DRC_IC;
461 arg = strsep(cmd, " ");
463 pr_err("No DRC count specified.\n");
467 if (kstrtou32(arg, 0, &count)) {
468 pr_err("Invalid DRC count specified.\n");
472 arg = strsep(cmd, " ");
474 pr_err("No DRC Index specified.\n");
478 if (kstrtou32(arg, 0, &index)) {
479 pr_err("Invalid DRC Index specified.\n");
483 hp_elog->_drc_u.ic.count = cpu_to_be32(count);
484 hp_elog->_drc_u.ic.index = cpu_to_be32(index);
485 } else if (sysfs_streq(arg, "index")) {
486 hp_elog->id_type = PSERIES_HP_ELOG_ID_DRC_INDEX;
487 arg = strsep(cmd, " ");
489 pr_err("No DRC Index specified.\n");
493 if (kstrtou32(arg, 0, &index)) {
494 pr_err("Invalid DRC Index specified.\n");
498 hp_elog->_drc_u.drc_index = cpu_to_be32(index);
499 } else if (sysfs_streq(arg, "count")) {
500 hp_elog->id_type = PSERIES_HP_ELOG_ID_DRC_COUNT;
501 arg = strsep(cmd, " ");
503 pr_err("No DRC count specified.\n");
507 if (kstrtou32(arg, 0, &count)) {
508 pr_err("Invalid DRC count specified.\n");
512 hp_elog->_drc_u.drc_count = cpu_to_be32(count);
514 pr_err("Invalid id_type specified.\n");
521 static ssize_t dlpar_store(struct class *class, struct class_attribute *attr,
522 const char *buf, size_t count)
524 struct pseries_hp_errorlog *hp_elog;
525 struct completion hotplug_done;
530 args = argbuf = kstrdup(buf, GFP_KERNEL);
531 hp_elog = kzalloc(sizeof(*hp_elog), GFP_KERNEL);
532 if (!hp_elog || !argbuf) {
533 pr_info("Could not allocate resources for DLPAR operation\n");
540 * Parse out the request from the user, this will be in the form:
541 * <resource> <action> <id_type> <id>
543 rc = dlpar_parse_resource(&args, hp_elog);
545 goto dlpar_store_out;
547 rc = dlpar_parse_action(&args, hp_elog);
549 goto dlpar_store_out;
551 rc = dlpar_parse_id_type(&args, hp_elog);
553 goto dlpar_store_out;
555 init_completion(&hotplug_done);
556 queue_hotplug_event(hp_elog, &hotplug_done, &rc);
557 wait_for_completion(&hotplug_done);
564 pr_err("Could not handle DLPAR request \"%s\"\n", buf);
566 return rc ? rc : count;
569 static ssize_t dlpar_show(struct class *class, struct class_attribute *attr,
572 return sprintf(buf, "%s\n", "memory,cpu");
575 static CLASS_ATTR_RW(dlpar);
577 static int __init pseries_dlpar_init(void)
579 pseries_hp_wq = alloc_workqueue("pseries hotplug workqueue",
581 return sysfs_create_file(kernel_kobj, &class_attr_dlpar.attr);
583 machine_device_initcall(pseries, pseries_dlpar_init);