reg.c 62.5 KB
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/*
 * Copyright 2002-2005, Instant802 Networks, Inc.
 * Copyright 2005-2006, Devicescape Software, Inc.
 * Copyright 2007	Johannes Berg <johannes@sipsolutions.net>
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 * Copyright 2008-2011	Luis R. Rodriguez <mcgrof@qca.qualcomm.com>
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 *
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 * Permission to use, copy, modify, and/or distribute this software for any
 * purpose with or without fee is hereby granted, provided that the above
 * copyright notice and this permission notice appear in all copies.
 *
 * THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES
 * WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF
 * MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR
 * ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES
 * WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN
 * ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF
 * OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE.
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 */

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/**
 * DOC: Wireless regulatory infrastructure
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 *
 * The usual implementation is for a driver to read a device EEPROM to
 * determine which regulatory domain it should be operating under, then
 * looking up the allowable channels in a driver-local table and finally
 * registering those channels in the wiphy structure.
 *
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 * Another set of compliance enforcement is for drivers to use their
 * own compliance limits which can be stored on the EEPROM. The host
 * driver or firmware may ensure these are used.
 *
 * In addition to all this we provide an extra layer of regulatory
 * conformance. For drivers which do not have any regulatory
 * information CRDA provides the complete regulatory solution.
 * For others it provides a community effort on further restrictions
 * to enhance compliance.
 *
 * Note: When number of rules --> infinity we will not be able to
 * index on alpha2 any more, instead we'll probably have to
 * rely on some SHA1 checksum of the regdomain for example.
 *
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 */
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#define pr_fmt(fmt) KBUILD_MODNAME ": " fmt

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#include <linux/kernel.h>
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#include <linux/export.h>
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#include <linux/slab.h>
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#include <linux/list.h>
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#include <linux/ctype.h>
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#include <linux/nl80211.h>
#include <linux/platform_device.h>
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#include <linux/moduleparam.h>
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#include <net/cfg80211.h>
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#include "core.h"
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#include "reg.h"
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#include "regdb.h"
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#include "nl80211.h"
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#ifdef CONFIG_CFG80211_REG_DEBUG
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#define REG_DBG_PRINT(format, args...)			\
	printk(KERN_DEBUG pr_fmt(format), ##args)
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#else
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#define REG_DBG_PRINT(args...)
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#endif

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enum reg_request_treatment {
	REG_REQ_OK,
	REG_REQ_IGNORE,
	REG_REQ_INTERSECT,
	REG_REQ_ALREADY_SET,
};

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static struct regulatory_request core_request_world = {
	.initiator = NL80211_REGDOM_SET_BY_CORE,
	.alpha2[0] = '0',
	.alpha2[1] = '0',
	.intersect = false,
	.processed = true,
	.country_ie_env = ENVIRON_ANY,
};

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/* Receipt of information from last regulatory request */
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static struct regulatory_request *last_request = &core_request_world;
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/* To trigger userspace events */
static struct platform_device *reg_pdev;
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static struct device_type reg_device_type = {
	.uevent = reg_device_uevent,
};

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/*
 * Central wireless core regulatory domains, we only need two,
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 * the current one and a world regulatory domain in case we have no
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 * information to give us an alpha2.
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 */
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const struct ieee80211_regdomain __rcu *cfg80211_regdomain;
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/*
 * Protects static reg.c components:
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 *	- cfg80211_regdomain (if not used with RCU)
 *	- cfg80211_world_regdom
 *	- last_request
 *	- reg_num_devs_support_basehint
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 */
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static DEFINE_MUTEX(reg_mutex);
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/*
 * Number of devices that registered to the core
 * that support cellular base station regulatory hints
 */
static int reg_num_devs_support_basehint;

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static inline void assert_reg_lock(void)
{
	lockdep_assert_held(&reg_mutex);
}
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static const struct ieee80211_regdomain *get_cfg80211_regdom(void)
{
	return rcu_dereference_protected(cfg80211_regdomain,
					 lockdep_is_held(&reg_mutex));
}

static const struct ieee80211_regdomain *get_wiphy_regdom(struct wiphy *wiphy)
{
	return rcu_dereference_protected(wiphy->regd,
					 lockdep_is_held(&reg_mutex));
}

static void rcu_free_regdom(const struct ieee80211_regdomain *r)
{
	if (!r)
		return;
	kfree_rcu((struct ieee80211_regdomain *)r, rcu_head);
}

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/* Used to queue up regulatory hints */
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static LIST_HEAD(reg_requests_list);
static spinlock_t reg_requests_lock;

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/* Used to queue up beacon hints for review */
static LIST_HEAD(reg_pending_beacons);
static spinlock_t reg_pending_beacons_lock;

/* Used to keep track of processed beacon hints */
static LIST_HEAD(reg_beacon_list);

struct reg_beacon {
	struct list_head list;
	struct ieee80211_channel chan;
};

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static void reg_todo(struct work_struct *work);
static DECLARE_WORK(reg_work, reg_todo);

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static void reg_timeout_work(struct work_struct *work);
static DECLARE_DELAYED_WORK(reg_timeout, reg_timeout_work);

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/* We keep a static world regulatory domain in case of the absence of CRDA */
static const struct ieee80211_regdomain world_regdom = {
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	.n_reg_rules = 6,
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	.alpha2 =  "00",
	.reg_rules = {
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		/* IEEE 802.11b/g, channels 1..11 */
		REG_RULE(2412-10, 2462+10, 40, 6, 20, 0),
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		/* IEEE 802.11b/g, channels 12..13. */
		REG_RULE(2467-10, 2472+10, 40, 6, 20,
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			NL80211_RRF_PASSIVE_SCAN |
			NL80211_RRF_NO_IBSS),
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		/* IEEE 802.11 channel 14 - Only JP enables
		 * this and for 802.11b only */
		REG_RULE(2484-10, 2484+10, 20, 6, 20,
			NL80211_RRF_PASSIVE_SCAN |
			NL80211_RRF_NO_IBSS |
			NL80211_RRF_NO_OFDM),
		/* IEEE 802.11a, channel 36..48 */
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		REG_RULE(5180-10, 5240+10, 40, 6, 20,
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                        NL80211_RRF_PASSIVE_SCAN |
                        NL80211_RRF_NO_IBSS),
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		/* NB: 5260 MHz - 5700 MHz requies DFS */

		/* IEEE 802.11a, channel 149..165 */
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		REG_RULE(5745-10, 5825+10, 40, 6, 20,
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			NL80211_RRF_PASSIVE_SCAN |
			NL80211_RRF_NO_IBSS),
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		/* IEEE 802.11ad (60gHz), channels 1..3 */
		REG_RULE(56160+2160*1-1080, 56160+2160*3+1080, 2160, 0, 0, 0),
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	}
};

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static const struct ieee80211_regdomain *cfg80211_world_regdom =
	&world_regdom;
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static char *ieee80211_regdom = "00";
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static char user_alpha2[2];
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module_param(ieee80211_regdom, charp, 0444);
MODULE_PARM_DESC(ieee80211_regdom, "IEEE 802.11 regulatory domain code");

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static void reset_regdomains(bool full_reset,
			     const struct ieee80211_regdomain *new_regdom)
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{
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	const struct ieee80211_regdomain *r;

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	assert_reg_lock();

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	r = get_cfg80211_regdom();

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	/* avoid freeing static information or freeing something twice */
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	if (r == cfg80211_world_regdom)
		r = NULL;
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	if (cfg80211_world_regdom == &world_regdom)
		cfg80211_world_regdom = NULL;
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	if (r == &world_regdom)
		r = NULL;
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	rcu_free_regdom(r);
	rcu_free_regdom(cfg80211_world_regdom);
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	cfg80211_world_regdom = &world_regdom;
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	rcu_assign_pointer(cfg80211_regdomain, new_regdom);
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	if (!full_reset)
		return;

	if (last_request != &core_request_world)
		kfree(last_request);
	last_request = &core_request_world;
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}

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/*
 * Dynamic world regulatory domain requested by the wireless
 * core upon initialization
 */
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static void update_world_regdomain(const struct ieee80211_regdomain *rd)
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{
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	WARN_ON(!last_request);
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	assert_reg_lock();

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	reset_regdomains(false, rd);
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	cfg80211_world_regdom = rd;
}

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bool is_world_regdom(const char *alpha2)
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{
	if (!alpha2)
		return false;
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	return alpha2[0] == '0' && alpha2[1] == '0';
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}
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static bool is_alpha2_set(const char *alpha2)
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{
	if (!alpha2)
		return false;
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	return alpha2[0] && alpha2[1];
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}
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static bool is_unknown_alpha2(const char *alpha2)
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{
	if (!alpha2)
		return false;
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	/*
	 * Special case where regulatory domain was built by driver
	 * but a specific alpha2 cannot be determined
	 */
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	return alpha2[0] == '9' && alpha2[1] == '9';
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}
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static bool is_intersected_alpha2(const char *alpha2)
{
	if (!alpha2)
		return false;
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	/*
	 * Special case where regulatory domain is the
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	 * result of an intersection between two regulatory domain
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	 * structures
	 */
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	return alpha2[0] == '9' && alpha2[1] == '8';
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}

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static bool is_an_alpha2(const char *alpha2)
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{
	if (!alpha2)
		return false;
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	return isalpha(alpha2[0]) && isalpha(alpha2[1]);
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}
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static bool alpha2_equal(const char *alpha2_x, const char *alpha2_y)
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{
	if (!alpha2_x || !alpha2_y)
		return false;
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	return alpha2_x[0] == alpha2_y[0] && alpha2_x[1] == alpha2_y[1];
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}

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static bool regdom_changes(const char *alpha2)
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{
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	const struct ieee80211_regdomain *r = get_cfg80211_regdom();
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	if (!r)
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		return true;
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	return !alpha2_equal(r->alpha2, alpha2);
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}

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/*
 * The NL80211_REGDOM_SET_BY_USER regdom alpha2 is cached, this lets
 * you know if a valid regulatory hint with NL80211_REGDOM_SET_BY_USER
 * has ever been issued.
 */
static bool is_user_regdom_saved(void)
{
	if (user_alpha2[0] == '9' && user_alpha2[1] == '7')
		return false;

	/* This would indicate a mistake on the design */
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	if (WARN(!is_world_regdom(user_alpha2) && !is_an_alpha2(user_alpha2),
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		 "Unexpected user alpha2: %c%c\n",
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		 user_alpha2[0], user_alpha2[1]))
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		return false;

	return true;
}

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static const struct ieee80211_regdomain *
reg_copy_regd(const struct ieee80211_regdomain *src_regd)
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{
	struct ieee80211_regdomain *regd;
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	int size_of_regd;
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	unsigned int i;

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	size_of_regd =
		sizeof(struct ieee80211_regdomain) +
		src_regd->n_reg_rules * sizeof(struct ieee80211_reg_rule);
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	regd = kzalloc(size_of_regd, GFP_KERNEL);
	if (!regd)
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		return ERR_PTR(-ENOMEM);
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	memcpy(regd, src_regd, sizeof(struct ieee80211_regdomain));

	for (i = 0; i < src_regd->n_reg_rules; i++)
		memcpy(&regd->reg_rules[i], &src_regd->reg_rules[i],
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		       sizeof(struct ieee80211_reg_rule));
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	return regd;
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}

#ifdef CONFIG_CFG80211_INTERNAL_REGDB
struct reg_regdb_search_request {
	char alpha2[2];
	struct list_head list;
};

static LIST_HEAD(reg_regdb_search_list);
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static DEFINE_MUTEX(reg_regdb_search_mutex);
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static void reg_regdb_search(struct work_struct *work)
{
	struct reg_regdb_search_request *request;
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	const struct ieee80211_regdomain *curdom, *regdom = NULL;
	int i;
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	mutex_lock(&cfg80211_mutex);
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	mutex_lock(&reg_regdb_search_mutex);
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	while (!list_empty(&reg_regdb_search_list)) {
		request = list_first_entry(&reg_regdb_search_list,
					   struct reg_regdb_search_request,
					   list);
		list_del(&request->list);

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		for (i = 0; i < reg_regdb_size; i++) {
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			curdom = reg_regdb[i];

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			if (alpha2_equal(request->alpha2, curdom->alpha2)) {
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				regdom = reg_copy_regd(curdom);
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				break;
			}
		}

		kfree(request);
	}
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	mutex_unlock(&reg_regdb_search_mutex);
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	if (!IS_ERR_OR_NULL(regdom))
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		set_regdom(regdom);

	mutex_unlock(&cfg80211_mutex);
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}

static DECLARE_WORK(reg_regdb_work, reg_regdb_search);

static void reg_regdb_query(const char *alpha2)
{
	struct reg_regdb_search_request *request;

	if (!alpha2)
		return;

	request = kzalloc(sizeof(struct reg_regdb_search_request), GFP_KERNEL);
	if (!request)
		return;

	memcpy(request->alpha2, alpha2, 2);

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	mutex_lock(&reg_regdb_search_mutex);
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	list_add_tail(&request->list, &reg_regdb_search_list);
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	mutex_unlock(&reg_regdb_search_mutex);
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	schedule_work(&reg_regdb_work);
}
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/* Feel free to add any other sanity checks here */
static void reg_regdb_size_check(void)
{
	/* We should ideally BUILD_BUG_ON() but then random builds would fail */
	WARN_ONCE(!reg_regdb_size, "db.txt is empty, you should update it...");
}
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#else
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static inline void reg_regdb_size_check(void) {}
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static inline void reg_regdb_query(const char *alpha2) {}
#endif /* CONFIG_CFG80211_INTERNAL_REGDB */

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/*
 * This lets us keep regulatory code which is updated on a regulatory
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 * basis in userspace. Country information is filled in by
 * reg_device_uevent
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 */
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static int call_crda(const char *alpha2)
{
	if (!is_world_regdom((char *) alpha2))
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		pr_info("Calling CRDA for country: %c%c\n",
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			alpha2[0], alpha2[1]);
	else
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		pr_info("Calling CRDA to update world regulatory domain\n");
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	/* query internal regulatory database (if it exists) */
	reg_regdb_query(alpha2);

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	return kobject_uevent(&reg_pdev->dev.kobj, KOBJ_CHANGE);
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}

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static bool reg_is_valid_request(const char *alpha2)
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{
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	assert_reg_lock();

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	if (!last_request)
		return false;

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	if (last_request->processed)
		return false;

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	return alpha2_equal(last_request->alpha2, alpha2);
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}
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/* Sanity check on a regulatory rule */
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static bool is_valid_reg_rule(const struct ieee80211_reg_rule *rule)
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{
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	const struct ieee80211_freq_range *freq_range = &rule->freq_range;
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	u32 freq_diff;

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	if (freq_range->start_freq_khz <= 0 || freq_range->end_freq_khz <= 0)
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		return false;

	if (freq_range->start_freq_khz > freq_range->end_freq_khz)
		return false;

	freq_diff = freq_range->end_freq_khz - freq_range->start_freq_khz;

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	if (freq_range->end_freq_khz <= freq_range->start_freq_khz ||
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	    freq_range->max_bandwidth_khz > freq_diff)
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		return false;

	return true;
}

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static bool is_valid_rd(const struct ieee80211_regdomain *rd)
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{
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	const struct ieee80211_reg_rule *reg_rule = NULL;
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	unsigned int i;
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	if (!rd->n_reg_rules)
		return false;
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	if (WARN_ON(rd->n_reg_rules > NL80211_MAX_SUPP_REG_RULES))
		return false;

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	for (i = 0; i < rd->n_reg_rules; i++) {
		reg_rule = &rd->reg_rules[i];
		if (!is_valid_reg_rule(reg_rule))
			return false;
	}

	return true;
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}

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static bool reg_does_bw_fit(const struct ieee80211_freq_range *freq_range,
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			    u32 center_freq_khz, u32 bw_khz)
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{
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	u32 start_freq_khz, end_freq_khz;

	start_freq_khz = center_freq_khz - (bw_khz/2);
	end_freq_khz = center_freq_khz + (bw_khz/2);

	if (start_freq_khz >= freq_range->start_freq_khz &&
	    end_freq_khz <= freq_range->end_freq_khz)
		return true;

	return false;
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}
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/**
 * freq_in_rule_band - tells us if a frequency is in a frequency band
 * @freq_range: frequency rule we want to query
 * @freq_khz: frequency we are inquiring about
 *
 * This lets us know if a specific frequency rule is or is not relevant to
 * a specific frequency's band. Bands are device specific and artificial
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 * definitions (the "2.4 GHz band", the "5 GHz band" and the "60GHz band"),
 * however it is safe for now to assume that a frequency rule should not be
 * part of a frequency's band if the start freq or end freq are off by more
 * than 2 GHz for the 2.4 and 5 GHz bands, and by more than 10 GHz for the
 * 60 GHz band.
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 * This resolution can be lowered and should be considered as we add
 * regulatory rule support for other "bands".
 **/
static bool freq_in_rule_band(const struct ieee80211_freq_range *freq_range,
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			      u32 freq_khz)
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{
#define ONE_GHZ_IN_KHZ	1000000
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	/*
	 * From 802.11ad: directional multi-gigabit (DMG):
	 * Pertaining to operation in a frequency band containing a channel
	 * with the Channel starting frequency above 45 GHz.
	 */
	u32 limit = freq_khz > 45 * ONE_GHZ_IN_KHZ ?
			10 * ONE_GHZ_IN_KHZ : 2 * ONE_GHZ_IN_KHZ;
	if (abs(freq_khz - freq_range->start_freq_khz) <= limit)
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		return true;
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	if (abs(freq_khz - freq_range->end_freq_khz) <= limit)
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		return true;
	return false;
#undef ONE_GHZ_IN_KHZ
}

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/*
 * Helper for regdom_intersect(), this does the real
 * mathematical intersection fun
 */
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static int reg_rules_intersect(const struct ieee80211_reg_rule *rule1,
			       const struct ieee80211_reg_rule *rule2,
			       struct ieee80211_reg_rule *intersected_rule)
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{
	const struct ieee80211_freq_range *freq_range1, *freq_range2;
	struct ieee80211_freq_range *freq_range;
	const struct ieee80211_power_rule *power_rule1, *power_rule2;
	struct ieee80211_power_rule *power_rule;
	u32 freq_diff;

	freq_range1 = &rule1->freq_range;
	freq_range2 = &rule2->freq_range;
	freq_range = &intersected_rule->freq_range;

	power_rule1 = &rule1->power_rule;
	power_rule2 = &rule2->power_rule;
	power_rule = &intersected_rule->power_rule;

	freq_range->start_freq_khz = max(freq_range1->start_freq_khz,
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					 freq_range2->start_freq_khz);
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	freq_range->end_freq_khz = min(freq_range1->end_freq_khz,
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				       freq_range2->end_freq_khz);
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	freq_range->max_bandwidth_khz = min(freq_range1->max_bandwidth_khz,
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					    freq_range2->max_bandwidth_khz);
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	freq_diff = freq_range->end_freq_khz - freq_range->start_freq_khz;
	if (freq_range->max_bandwidth_khz > freq_diff)
		freq_range->max_bandwidth_khz = freq_diff;

	power_rule->max_eirp = min(power_rule1->max_eirp,
		power_rule2->max_eirp);
	power_rule->max_antenna_gain = min(power_rule1->max_antenna_gain,
		power_rule2->max_antenna_gain);

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	intersected_rule->flags = rule1->flags | rule2->flags;
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	if (!is_valid_reg_rule(intersected_rule))
		return -EINVAL;

	return 0;
}

/**
 * regdom_intersect - do the intersection between two regulatory domains
 * @rd1: first regulatory domain
 * @rd2: second regulatory domain
 *
 * Use this function to get the intersection between two regulatory domains.
 * Once completed we will mark the alpha2 for the rd as intersected, "98",
 * as no one single alpha2 can represent this regulatory domain.
 *
 * Returns a pointer to the regulatory domain structure which will hold the
 * resulting intersection of rules between rd1 and rd2. We will
 * kzalloc() this structure for you.
 */
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static struct ieee80211_regdomain *
regdom_intersect(const struct ieee80211_regdomain *rd1,
		 const struct ieee80211_regdomain *rd2)
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{
	int r, size_of_regd;
	unsigned int x, y;
	unsigned int num_rules = 0, rule_idx = 0;
	const struct ieee80211_reg_rule *rule1, *rule2;
	struct ieee80211_reg_rule *intersected_rule;
	struct ieee80211_regdomain *rd;
	/* This is just a dummy holder to help us count */
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	struct ieee80211_reg_rule dummy_rule;
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	if (!rd1 || !rd2)
		return NULL;

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	/*
	 * First we get a count of the rules we'll need, then we actually
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	 * build them. This is to so we can malloc() and free() a
	 * regdomain once. The reason we use reg_rules_intersect() here
	 * is it will return -EINVAL if the rule computed makes no sense.
632 633
	 * All rules that do check out OK are valid.
	 */
634 635 636 637 638

	for (x = 0; x < rd1->n_reg_rules; x++) {
		rule1 = &rd1->reg_rules[x];
		for (y = 0; y < rd2->n_reg_rules; y++) {
			rule2 = &rd2->reg_rules[y];
639
			if (!reg_rules_intersect(rule1, rule2, &dummy_rule))
640 641 642 643 644 645 646 647
				num_rules++;
		}
	}

	if (!num_rules)
		return NULL;

	size_of_regd = sizeof(struct ieee80211_regdomain) +
648
		       num_rules * sizeof(struct ieee80211_reg_rule);
649 650 651 652 653

	rd = kzalloc(size_of_regd, GFP_KERNEL);
	if (!rd)
		return NULL;

654
	for (x = 0; x < rd1->n_reg_rules && rule_idx < num_rules; x++) {
655
		rule1 = &rd1->reg_rules[x];
656
		for (y = 0; y < rd2->n_reg_rules && rule_idx < num_rules; y++) {
657
			rule2 = &rd2->reg_rules[y];
658 659
			/*
			 * This time around instead of using the stack lets
660
			 * write to the target rule directly saving ourselves
661 662
			 * a memcpy()
			 */
663
			intersected_rule = &rd->reg_rules[rule_idx];
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Johannes Berg 已提交
664
			r = reg_rules_intersect(rule1, rule2, intersected_rule);
665 666 667 668
			/*
			 * No need to memset here the intersected rule here as
			 * we're not using the stack anymore
			 */
669 670 671 672 673 674 675 676 677 678 679 680 681 682 683 684 685 686
			if (r)
				continue;
			rule_idx++;
		}
	}

	if (rule_idx != num_rules) {
		kfree(rd);
		return NULL;
	}

	rd->n_reg_rules = num_rules;
	rd->alpha2[0] = '9';
	rd->alpha2[1] = '8';

	return rd;
}

687 688 689 690
/*
 * XXX: add support for the rest of enum nl80211_reg_rule_flags, we may
 * want to just have the channel structure use these
 */
691 692 693 694 695 696 697 698 699
static u32 map_regdom_flags(u32 rd_flags)
{
	u32 channel_flags = 0;
	if (rd_flags & NL80211_RRF_PASSIVE_SCAN)
		channel_flags |= IEEE80211_CHAN_PASSIVE_SCAN;
	if (rd_flags & NL80211_RRF_NO_IBSS)
		channel_flags |= IEEE80211_CHAN_NO_IBSS;
	if (rd_flags & NL80211_RRF_DFS)
		channel_flags |= IEEE80211_CHAN_RADAR;
700 701
	if (rd_flags & NL80211_RRF_NO_OFDM)
		channel_flags |= IEEE80211_CHAN_NO_OFDM;
702 703 704
	return channel_flags;
}

705
static int freq_reg_info_regd(struct wiphy *wiphy, u32 center_freq,
706
			      const struct ieee80211_reg_rule **reg_rule,
707
			      const struct ieee80211_regdomain *regd)
708 709
{
	int i;
710
	bool band_rule_found = false;
711 712
	bool bw_fits = false;

713
	if (!regd)
714 715
		return -EINVAL;

716
	for (i = 0; i < regd->n_reg_rules; i++) {
717 718 719
		const struct ieee80211_reg_rule *rr;
		const struct ieee80211_freq_range *fr = NULL;

720
		rr = &regd->reg_rules[i];
721
		fr = &rr->freq_range;
722

723 724
		/*
		 * We only need to know if one frequency rule was
725
		 * was in center_freq's band, that's enough, so lets
726 727
		 * not overwrite it once found
		 */
728 729 730
		if (!band_rule_found)
			band_rule_found = freq_in_rule_band(fr, center_freq);

731
		bw_fits = reg_does_bw_fit(fr, center_freq, MHZ_TO_KHZ(20));
732

733
		if (band_rule_found && bw_fits) {
734
			*reg_rule = rr;
735
			return 0;
736 737 738
		}
	}

739 740 741
	if (!band_rule_found)
		return -ERANGE;

742
	return -EINVAL;
743 744
}

745
int freq_reg_info(struct wiphy *wiphy, u32 center_freq,
746
		  const struct ieee80211_reg_rule **reg_rule)
747
{
748 749 750
	const struct ieee80211_regdomain *regd;

	assert_reg_lock();
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751

752 753 754 755 756 757 758
	/*
	 * Follow the driver's regulatory domain, if present, unless a country
	 * IE has been processed or a user wants to help complaince further
	 */
	if (last_request->initiator != NL80211_REGDOM_SET_BY_COUNTRY_IE &&
	    last_request->initiator != NL80211_REGDOM_SET_BY_USER &&
	    wiphy->regd)
759
		regd = get_wiphy_regdom(wiphy);
760
	else
761
		regd = get_cfg80211_regdom();
762

763
	return freq_reg_info_regd(wiphy, center_freq, reg_rule, regd);
764
}
765
EXPORT_SYMBOL(freq_reg_info);
766

767 768 769 770 771 772 773 774 775 776 777 778 779 780 781 782 783
#ifdef CONFIG_CFG80211_REG_DEBUG
static const char *reg_initiator_name(enum nl80211_reg_initiator initiator)
{
	switch (initiator) {
	case NL80211_REGDOM_SET_BY_CORE:
		return "Set by core";
	case NL80211_REGDOM_SET_BY_USER:
		return "Set by user";
	case NL80211_REGDOM_SET_BY_DRIVER:
		return "Set by driver";
	case NL80211_REGDOM_SET_BY_COUNTRY_IE:
		return "Set by country IE";
	default:
		WARN_ON(1);
		return "Set by bug";
	}
}
784 785 786 787 788 789 790 791 792 793 794 795 796 797 798 799

static void chan_reg_rule_print_dbg(struct ieee80211_channel *chan,
				    const struct ieee80211_reg_rule *reg_rule)
{
	const struct ieee80211_power_rule *power_rule;
	const struct ieee80211_freq_range *freq_range;
	char max_antenna_gain[32];

	power_rule = &reg_rule->power_rule;
	freq_range = &reg_rule->freq_range;

	if (!power_rule->max_antenna_gain)
		snprintf(max_antenna_gain, 32, "N/A");
	else
		snprintf(max_antenna_gain, 32, "%d", power_rule->max_antenna_gain);

800 801
	REG_DBG_PRINT("Updating information on frequency %d MHz with regulatory rule:\n",
		      chan->center_freq);
802

803
	REG_DBG_PRINT("%d KHz - %d KHz @ %d KHz), (%s mBi, %d mBm)\n",
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804 805
		      freq_range->start_freq_khz, freq_range->end_freq_khz,
		      freq_range->max_bandwidth_khz, max_antenna_gain,
806 807 808 809 810 811 812 813
		      power_rule->max_eirp);
}
#else
static void chan_reg_rule_print_dbg(struct ieee80211_channel *chan,
				    const struct ieee80211_reg_rule *reg_rule)
{
	return;
}
814 815
#endif

816 817 818
/*
 * Note that right now we assume the desired channel bandwidth
 * is always 20 MHz for each individual channel (HT40 uses 20 MHz
819
 * per channel, the primary and the extension channel).
820
 */
821 822
static void handle_channel(struct wiphy *wiphy,
			   enum nl80211_reg_initiator initiator,
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823
			   struct ieee80211_channel *chan)
824 825
{
	int r;
826
	u32 flags, bw_flags = 0;
827 828
	const struct ieee80211_reg_rule *reg_rule = NULL;
	const struct ieee80211_power_rule *power_rule = NULL;
829
	const struct ieee80211_freq_range *freq_range = NULL;
830
	struct wiphy *request_wiphy = NULL;
831

832 833
	request_wiphy = wiphy_idx_to_wiphy(last_request->wiphy_idx);

834
	flags = chan->orig_flags;
835

836
	r = freq_reg_info(wiphy, MHZ_TO_KHZ(chan->center_freq), &reg_rule);
837 838 839
	if (r) {
		/*
		 * We will disable all channels that do not match our
L
Lucas De Marchi 已提交
840
		 * received regulatory rule unless the hint is coming
841 842 843 844 845 846 847 848 849 850 851
		 * from a Country IE and the Country IE had no information
		 * about a band. The IEEE 802.11 spec allows for an AP
		 * to send only a subset of the regulatory rules allowed,
		 * so an AP in the US that only supports 2.4 GHz may only send
		 * a country IE with information for the 2.4 GHz band
		 * while 5 GHz is still supported.
		 */
		if (initiator == NL80211_REGDOM_SET_BY_COUNTRY_IE &&
		    r == -ERANGE)
			return;

852
		REG_DBG_PRINT("Disabling freq %d MHz\n", chan->center_freq);
853
		chan->flags = IEEE80211_CHAN_DISABLED;
854
		return;
855
	}
856

857
	chan_reg_rule_print_dbg(chan, reg_rule);
858

859
	power_rule = &reg_rule->power_rule;
860 861 862 863
	freq_range = &reg_rule->freq_range;

	if (freq_range->max_bandwidth_khz < MHZ_TO_KHZ(40))
		bw_flags = IEEE80211_CHAN_NO_HT40;
864

865
	if (last_request->initiator == NL80211_REGDOM_SET_BY_DRIVER &&
866
	    request_wiphy && request_wiphy == wiphy &&
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867
	    request_wiphy->flags & WIPHY_FLAG_STRICT_REGULATORY) {
868
		/*
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869
		 * This guarantees the driver's requested regulatory domain
870
		 * will always be used as a base for further regulatory
871 872
		 * settings
		 */
873
		chan->flags = chan->orig_flags =
874
			map_regdom_flags(reg_rule->flags) | bw_flags;
875 876
		chan->max_antenna_gain = chan->orig_mag =
			(int) MBI_TO_DBI(power_rule->max_antenna_gain);
877
		chan->max_reg_power = chan->max_power = chan->orig_mpwr =
878 879 880 881
			(int) MBM_TO_DBM(power_rule->max_eirp);
		return;
	}

882
	chan->beacon_found = false;
883
	chan->flags = flags | bw_flags | map_regdom_flags(reg_rule->flags);
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884 885 886
	chan->max_antenna_gain =
		min_t(int, chan->orig_mag,
		      MBI_TO_DBI(power_rule->max_antenna_gain));
887
	chan->max_reg_power = (int) MBM_TO_DBM(power_rule->max_eirp);
888 889 890 891 892 893 894 895 896 897 898 899 900 901 902
	if (chan->orig_mpwr) {
		/*
		 * Devices that have their own custom regulatory domain
		 * but also use WIPHY_FLAG_STRICT_REGULATORY will follow the
		 * passed country IE power settings.
		 */
		if (initiator == NL80211_REGDOM_SET_BY_COUNTRY_IE &&
		    wiphy->flags & WIPHY_FLAG_CUSTOM_REGULATORY &&
		    wiphy->flags & WIPHY_FLAG_STRICT_REGULATORY)
			chan->max_power = chan->max_reg_power;
		else
			chan->max_power = min(chan->orig_mpwr,
					      chan->max_reg_power);
	} else
		chan->max_power = chan->max_reg_power;
903 904
}

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905 906 907
static void handle_band(struct wiphy *wiphy,
			enum nl80211_reg_initiator initiator,
			struct ieee80211_supported_band *sband)
908
{
909 910
	unsigned int i;

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Johannes Berg 已提交
911 912
	if (!sband)
		return;
913 914

	for (i = 0; i < sband->n_channels; i++)
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915
		handle_channel(wiphy, initiator, &sband->channels[i]);
916 917
}

918 919 920 921
static bool reg_request_cell_base(struct regulatory_request *request)
{
	if (request->initiator != NL80211_REGDOM_SET_BY_USER)
		return false;
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922
	return request->user_reg_hint_type == NL80211_USER_REG_HINT_CELL_BASE;
923 924 925 926
}

bool reg_last_request_cell_base(void)
{
927
	bool val;
J
Johannes Berg 已提交
928

929
	mutex_lock(&reg_mutex);
930
	val = reg_request_cell_base(last_request);
931
	mutex_unlock(&reg_mutex);
J
Johannes Berg 已提交
932

933
	return val;
934 935 936 937
}

#ifdef CONFIG_CFG80211_CERTIFICATION_ONUS
/* Core specific check */
938 939
static enum reg_request_treatment
reg_ignore_cell_hint(struct regulatory_request *pending_request)
940 941
{
	if (!reg_num_devs_support_basehint)
942
		return REG_REQ_IGNORE;
943

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Johannes Berg 已提交
944 945
	if (reg_request_cell_base(last_request) &&
	    !regdom_changes(pending_request->alpha2))
946
		return REG_REQ_ALREADY_SET;
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947

948
	return REG_REQ_OK;
949 950 951 952 953
}

/* Device specific check */
static bool reg_dev_ignore_cell_hint(struct wiphy *wiphy)
{
J
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954
	return !(wiphy->features & NL80211_FEATURE_CELL_BASE_REG_HINTS);
955 956 957 958
}
#else
static int reg_ignore_cell_hint(struct regulatory_request *pending_request)
{
959
	return REG_REQ_IGNORE;
960
}
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961 962

static bool reg_dev_ignore_cell_hint(struct wiphy *wiphy)
963 964 965 966 967 968
{
	return true;
}
#endif


969 970
static bool ignore_reg_update(struct wiphy *wiphy,
			      enum nl80211_reg_initiator initiator)
971
{
972
	if (!last_request) {
J
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973
		REG_DBG_PRINT("Ignoring regulatory request %s since last_request is not set\n",
974
			      reg_initiator_name(initiator));
975
		return true;
976 977
	}

978
	if (initiator == NL80211_REGDOM_SET_BY_CORE &&
979
	    wiphy->flags & WIPHY_FLAG_CUSTOM_REGULATORY) {
J
Johannes Berg 已提交
980
		REG_DBG_PRINT("Ignoring regulatory request %s since the driver uses its own custom regulatory domain\n",
981
			      reg_initiator_name(initiator));
982
		return true;
983 984
	}

985 986 987 988
	/*
	 * wiphy->regd will be set once the device has its own
	 * desired regulatory domain set
	 */
J
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989
	if (wiphy->flags & WIPHY_FLAG_STRICT_REGULATORY && !wiphy->regd &&
990
	    initiator != NL80211_REGDOM_SET_BY_COUNTRY_IE &&
991
	    !is_world_regdom(last_request->alpha2)) {
J
Johannes Berg 已提交
992
		REG_DBG_PRINT("Ignoring regulatory request %s since the driver requires its own regulatory domain to be set first\n",
993
			      reg_initiator_name(initiator));
994
		return true;
995 996
	}

997 998 999
	if (reg_request_cell_base(last_request))
		return reg_dev_ignore_cell_hint(wiphy);

1000 1001 1002
	return false;
}

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1003
static void handle_reg_beacon(struct wiphy *wiphy, unsigned int chan_idx,
1004 1005 1006 1007
			      struct reg_beacon *reg_beacon)
{
	struct ieee80211_supported_band *sband;
	struct ieee80211_channel *chan;
1008 1009
	bool channel_changed = false;
	struct ieee80211_channel chan_before;
1010 1011 1012 1013 1014 1015 1016

	sband = wiphy->bands[reg_beacon->chan.band];
	chan = &sband->channels[chan_idx];

	if (likely(chan->center_freq != reg_beacon->chan.center_freq))
		return;

1017 1018 1019 1020 1021
	if (chan->beacon_found)
		return;

	chan->beacon_found = true;

J
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1022
	if (wiphy->flags & WIPHY_FLAG_DISABLE_BEACON_HINTS)
1023 1024
		return;

1025 1026 1027
	chan_before.center_freq = chan->center_freq;
	chan_before.flags = chan->flags;

1028
	if (chan->flags & IEEE80211_CHAN_PASSIVE_SCAN) {
1029
		chan->flags &= ~IEEE80211_CHAN_PASSIVE_SCAN;
1030
		channel_changed = true;
1031 1032
	}

1033
	if (chan->flags & IEEE80211_CHAN_NO_IBSS) {
1034
		chan->flags &= ~IEEE80211_CHAN_NO_IBSS;
1035
		channel_changed = true;
1036 1037
	}

1038 1039
	if (channel_changed)
		nl80211_send_beacon_hint_event(wiphy, &chan_before, chan);
1040 1041 1042 1043 1044 1045 1046 1047 1048 1049 1050 1051 1052 1053 1054 1055 1056 1057 1058 1059 1060 1061 1062 1063 1064 1065 1066 1067 1068 1069 1070 1071 1072 1073 1074 1075 1076 1077 1078 1079 1080
}

/*
 * Called when a scan on a wiphy finds a beacon on
 * new channel
 */
static void wiphy_update_new_beacon(struct wiphy *wiphy,
				    struct reg_beacon *reg_beacon)
{
	unsigned int i;
	struct ieee80211_supported_band *sband;

	if (!wiphy->bands[reg_beacon->chan.band])
		return;

	sband = wiphy->bands[reg_beacon->chan.band];

	for (i = 0; i < sband->n_channels; i++)
		handle_reg_beacon(wiphy, i, reg_beacon);
}

/*
 * Called upon reg changes or a new wiphy is added
 */
static void wiphy_update_beacon_reg(struct wiphy *wiphy)
{
	unsigned int i;
	struct ieee80211_supported_band *sband;
	struct reg_beacon *reg_beacon;

	list_for_each_entry(reg_beacon, &reg_beacon_list, list) {
		if (!wiphy->bands[reg_beacon->chan.band])
			continue;
		sband = wiphy->bands[reg_beacon->chan.band];
		for (i = 0; i < sband->n_channels; i++)
			handle_reg_beacon(wiphy, i, reg_beacon);
	}
}

static bool reg_is_world_roaming(struct wiphy *wiphy)
{
1081 1082
	const struct ieee80211_regdomain *cr = get_cfg80211_regdom();
	const struct ieee80211_regdomain *wr = get_wiphy_regdom(wiphy);
1083

1084
	if (is_world_regdom(cr->alpha2) || (wr && is_world_regdom(wr->alpha2)))
1085
		return true;
1086

1087 1088
	if (last_request &&
	    last_request->initiator != NL80211_REGDOM_SET_BY_COUNTRY_IE &&
J
Johannes Berg 已提交
1089
	    wiphy->flags & WIPHY_FLAG_CUSTOM_REGULATORY)
1090
		return true;
1091

1092 1093 1094 1095 1096 1097
	return false;
}

/* Reap the advantages of previously found beacons */
static void reg_process_beacons(struct wiphy *wiphy)
{
1098 1099 1100 1101 1102 1103
	/*
	 * Means we are just firing up cfg80211, so no beacons would
	 * have been processed yet.
	 */
	if (!last_request)
		return;
1104 1105 1106 1107 1108
	if (!reg_is_world_roaming(wiphy))
		return;
	wiphy_update_beacon_reg(wiphy);
}

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1109
static bool is_ht40_allowed(struct ieee80211_channel *chan)
1110 1111
{
	if (!chan)
J
Johannes Berg 已提交
1112
		return false;
1113
	if (chan->flags & IEEE80211_CHAN_DISABLED)
J
Johannes Berg 已提交
1114
		return false;
1115
	/* This would happen when regulatory rules disallow HT40 completely */
J
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1116
	return !(chan->flags & IEEE80211_CHAN_NO_HT40);
1117 1118 1119
}

static void reg_process_ht_flags_channel(struct wiphy *wiphy,
J
Johannes Berg 已提交
1120
					 struct ieee80211_channel *channel)
1121
{
J
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1122
	struct ieee80211_supported_band *sband = wiphy->bands[channel->band];
1123 1124 1125
	struct ieee80211_channel *channel_before = NULL, *channel_after = NULL;
	unsigned int i;

J
Johannes Berg 已提交
1126
	if (!is_ht40_allowed(channel)) {
1127 1128 1129 1130 1131 1132 1133 1134 1135 1136
		channel->flags |= IEEE80211_CHAN_NO_HT40;
		return;
	}

	/*
	 * We need to ensure the extension channels exist to
	 * be able to use HT40- or HT40+, this finds them (or not)
	 */
	for (i = 0; i < sband->n_channels; i++) {
		struct ieee80211_channel *c = &sband->channels[i];
J
Johannes Berg 已提交
1137

1138 1139 1140 1141 1142 1143 1144 1145 1146 1147 1148
		if (c->center_freq == (channel->center_freq - 20))
			channel_before = c;
		if (c->center_freq == (channel->center_freq + 20))
			channel_after = c;
	}

	/*
	 * Please note that this assumes target bandwidth is 20 MHz,
	 * if that ever changes we also need to change the below logic
	 * to include that as well.
	 */
J
Johannes Berg 已提交
1149
	if (!is_ht40_allowed(channel_before))
1150
		channel->flags |= IEEE80211_CHAN_NO_HT40MINUS;
1151
	else
1152
		channel->flags &= ~IEEE80211_CHAN_NO_HT40MINUS;
1153

J
Johannes Berg 已提交
1154
	if (!is_ht40_allowed(channel_after))
1155
		channel->flags |= IEEE80211_CHAN_NO_HT40PLUS;
1156
	else
1157
		channel->flags &= ~IEEE80211_CHAN_NO_HT40PLUS;
1158 1159 1160
}

static void reg_process_ht_flags_band(struct wiphy *wiphy,
J
Johannes Berg 已提交
1161
				      struct ieee80211_supported_band *sband)
1162 1163 1164
{
	unsigned int i;

J
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1165 1166
	if (!sband)
		return;
1167 1168

	for (i = 0; i < sband->n_channels; i++)
J
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1169
		reg_process_ht_flags_channel(wiphy, &sband->channels[i]);
1170 1171 1172 1173 1174 1175 1176 1177 1178
}

static void reg_process_ht_flags(struct wiphy *wiphy)
{
	enum ieee80211_band band;

	if (!wiphy)
		return;

J
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1179 1180
	for (band = 0; band < IEEE80211_NUM_BANDS; band++)
		reg_process_ht_flags_band(wiphy, wiphy->bands[band]);
1181 1182
}

1183 1184
static void wiphy_update_regulatory(struct wiphy *wiphy,
				    enum nl80211_reg_initiator initiator)
1185 1186
{
	enum ieee80211_band band;
1187

1188 1189
	assert_reg_lock();

1190
	if (ignore_reg_update(wiphy, initiator))
1191 1192
		return;

1193
	last_request->dfs_region = get_cfg80211_regdom()->dfs_region;
1194

J
Johannes Berg 已提交
1195 1196
	for (band = 0; band < IEEE80211_NUM_BANDS; band++)
		handle_band(wiphy, initiator, wiphy->bands[band]);
1197

1198
	reg_process_beacons(wiphy);
1199
	reg_process_ht_flags(wiphy);
J
Johannes Berg 已提交
1200

1201
	if (wiphy->reg_notifier)
1202
		wiphy->reg_notifier(wiphy, last_request);
1203 1204
}

1205 1206 1207
static void update_all_wiphy_regulatory(enum nl80211_reg_initiator initiator)
{
	struct cfg80211_registered_device *rdev;
1208
	struct wiphy *wiphy;
1209

1210 1211
	assert_cfg80211_lock();

1212 1213 1214 1215 1216 1217 1218 1219 1220 1221 1222 1223 1224
	list_for_each_entry(rdev, &cfg80211_rdev_list, list) {
		wiphy = &rdev->wiphy;
		wiphy_update_regulatory(wiphy, initiator);
		/*
		 * Regulatory updates set by CORE are ignored for custom
		 * regulatory cards. Let us notify the changes to the driver,
		 * as some drivers used this to restore its orig_* reg domain.
		 */
		if (initiator == NL80211_REGDOM_SET_BY_CORE &&
		    wiphy->flags & WIPHY_FLAG_CUSTOM_REGULATORY &&
		    wiphy->reg_notifier)
			wiphy->reg_notifier(wiphy, last_request);
	}
1225 1226
}

1227
static void handle_channel_custom(struct wiphy *wiphy,
J
Johannes Berg 已提交
1228
				  struct ieee80211_channel *chan,
1229 1230 1231
				  const struct ieee80211_regdomain *regd)
{
	int r;
1232
	u32 bw_flags = 0;
1233 1234
	const struct ieee80211_reg_rule *reg_rule = NULL;
	const struct ieee80211_power_rule *power_rule = NULL;
1235
	const struct ieee80211_freq_range *freq_range = NULL;
1236

J
Johannes Berg 已提交
1237
	r = freq_reg_info_regd(wiphy, MHZ_TO_KHZ(chan->center_freq),
1238
			       &reg_rule, regd);
1239 1240

	if (r) {
1241 1242
		REG_DBG_PRINT("Disabling freq %d MHz as custom regd has no rule that fits it\n",
			      chan->center_freq);
1243 1244 1245 1246
		chan->flags = IEEE80211_CHAN_DISABLED;
		return;
	}

1247
	chan_reg_rule_print_dbg(chan, reg_rule);
1248

1249
	power_rule = &reg_rule->power_rule;
1250 1251 1252 1253
	freq_range = &reg_rule->freq_range;

	if (freq_range->max_bandwidth_khz < MHZ_TO_KHZ(40))
		bw_flags = IEEE80211_CHAN_NO_HT40;
1254

1255
	chan->flags |= map_regdom_flags(reg_rule->flags) | bw_flags;
1256
	chan->max_antenna_gain = (int) MBI_TO_DBI(power_rule->max_antenna_gain);
1257 1258
	chan->max_reg_power = chan->max_power =
		(int) MBM_TO_DBM(power_rule->max_eirp);
1259 1260
}

J
Johannes Berg 已提交
1261 1262
static void handle_band_custom(struct wiphy *wiphy,
			       struct ieee80211_supported_band *sband,
1263 1264 1265 1266
			       const struct ieee80211_regdomain *regd)
{
	unsigned int i;

J
Johannes Berg 已提交
1267 1268
	if (!sband)
		return;
1269 1270

	for (i = 0; i < sband->n_channels; i++)
J
Johannes Berg 已提交
1271
		handle_channel_custom(wiphy, &sband->channels[i], regd);
1272 1273 1274 1275 1276 1277 1278
}

/* Used by drivers prior to wiphy registration */
void wiphy_apply_custom_regulatory(struct wiphy *wiphy,
				   const struct ieee80211_regdomain *regd)
{
	enum ieee80211_band band;
1279
	unsigned int bands_set = 0;
1280

1281
	for (band = 0; band < IEEE80211_NUM_BANDS; band++) {
1282 1283
		if (!wiphy->bands[band])
			continue;
J
Johannes Berg 已提交
1284
		handle_band_custom(wiphy, wiphy->bands[band], regd);
1285
		bands_set++;
1286
	}
1287 1288 1289

	/*
	 * no point in calling this if it won't have any effect
J
Johannes Berg 已提交
1290
	 * on your device's supported bands.
1291 1292
	 */
	WARN_ON(!bands_set);
1293
}
1294 1295
EXPORT_SYMBOL(wiphy_apply_custom_regulatory);

1296 1297
/* This has the logic which determines when a new request
 * should be ignored. */
1298 1299
static enum reg_request_treatment
get_reg_request_treatment(struct wiphy *wiphy,
1300
			  struct regulatory_request *pending_request)
1301
{
1302
	struct wiphy *last_wiphy = NULL;
1303

1304 1305
	/* All initial requests are respected */
	if (!last_request)
1306
		return REG_REQ_OK;
1307

1308
	switch (pending_request->initiator) {
1309
	case NL80211_REGDOM_SET_BY_CORE:
1310
		return REG_REQ_OK;
1311
	case NL80211_REGDOM_SET_BY_COUNTRY_IE:
1312 1313 1314
		if (reg_request_cell_base(last_request)) {
			/* Trust a Cell base station over the AP's country IE */
			if (regdom_changes(pending_request->alpha2))
1315 1316
				return REG_REQ_IGNORE;
			return REG_REQ_ALREADY_SET;
1317 1318
		}

1319 1320
		last_wiphy = wiphy_idx_to_wiphy(last_request->wiphy_idx);

1321
		if (unlikely(!is_an_alpha2(pending_request->alpha2)))
1322
			return -EINVAL;
1323 1324
		if (last_request->initiator ==
		    NL80211_REGDOM_SET_BY_COUNTRY_IE) {
1325
			if (last_wiphy != wiphy) {
1326 1327
				/*
				 * Two cards with two APs claiming different
1328
				 * Country IE alpha2s. We could
1329 1330 1331
				 * intersect them, but that seems unlikely
				 * to be correct. Reject second one for now.
				 */
1332
				if (regdom_changes(pending_request->alpha2))
1333 1334
					return REG_REQ_IGNORE;
				return REG_REQ_ALREADY_SET;
1335
			}
1336 1337 1338 1339
			/*
			 * Two consecutive Country IE hints on the same wiphy.
			 * This should be picked up early by the driver/stack
			 */
1340
			if (WARN_ON(regdom_changes(pending_request->alpha2)))
1341 1342
				return REG_REQ_OK;
			return REG_REQ_ALREADY_SET;
1343
		}
1344
		return 0;
1345 1346
	case NL80211_REGDOM_SET_BY_DRIVER:
		if (last_request->initiator == NL80211_REGDOM_SET_BY_CORE) {
1347
			if (regdom_changes(pending_request->alpha2))
1348 1349
				return REG_REQ_OK;
			return REG_REQ_ALREADY_SET;
1350
		}
1351 1352 1353 1354 1355 1356

		/*
		 * This would happen if you unplug and plug your card
		 * back in or if you add a new device for which the previously
		 * loaded card also agrees on the regulatory domain.
		 */
1357
		if (last_request->initiator == NL80211_REGDOM_SET_BY_DRIVER &&
1358
		    !regdom_changes(pending_request->alpha2))
1359
			return REG_REQ_ALREADY_SET;
1360

1361
		return REG_REQ_INTERSECT;
1362
	case NL80211_REGDOM_SET_BY_USER:
1363 1364 1365 1366
		if (reg_request_cell_base(pending_request))
			return reg_ignore_cell_hint(pending_request);

		if (reg_request_cell_base(last_request))
1367
			return REG_REQ_IGNORE;
1368

1369
		if (last_request->initiator == NL80211_REGDOM_SET_BY_COUNTRY_IE)
1370
			return REG_REQ_INTERSECT;
1371 1372 1373 1374
		/*
		 * If the user knows better the user should set the regdom
		 * to their country before the IE is picked up
		 */
1375
		if (last_request->initiator == NL80211_REGDOM_SET_BY_USER &&
J
Johannes Berg 已提交
1376
		    last_request->intersect)
1377
			return REG_REQ_IGNORE;
1378 1379 1380 1381
		/*
		 * Process user requests only after previous user/driver/core
		 * requests have been processed
		 */
J
Johannes Berg 已提交
1382 1383 1384 1385
		if ((last_request->initiator == NL80211_REGDOM_SET_BY_CORE ||
		     last_request->initiator == NL80211_REGDOM_SET_BY_DRIVER ||
		     last_request->initiator == NL80211_REGDOM_SET_BY_USER) &&
		    regdom_changes(last_request->alpha2))
1386
			return REG_REQ_IGNORE;
1387

1388
		if (!regdom_changes(pending_request->alpha2))
1389
			return REG_REQ_ALREADY_SET;
1390

1391
		return REG_REQ_OK;
1392 1393
	}

1394
	return REG_REQ_IGNORE;
1395 1396
}

1397 1398 1399 1400 1401 1402 1403 1404 1405 1406 1407
static void reg_set_request_processed(void)
{
	bool need_more_processing = false;

	last_request->processed = true;

	spin_lock(&reg_requests_lock);
	if (!list_empty(&reg_requests_list))
		need_more_processing = true;
	spin_unlock(&reg_requests_lock);

1408
	if (last_request->initiator == NL80211_REGDOM_SET_BY_USER)
1409
		cancel_delayed_work(&reg_timeout);
1410

1411 1412 1413 1414
	if (need_more_processing)
		schedule_work(&reg_work);
}

1415 1416 1417 1418
/**
 * __regulatory_hint - hint to the wireless core a regulatory domain
 * @wiphy: if the hint comes from country information from an AP, this
 *	is required to be set to the wiphy that received the information
1419
 * @pending_request: the regulatory request currently being processed
1420 1421
 *
 * The Wireless subsystem can use this function to hint to the wireless core
1422
 * what it believes should be the current regulatory domain.
1423
 *
1424
 * Returns one of the different reg request treatment values.
1425
 *
1426
 * Caller must hold &reg_mutex
1427
 */
1428 1429 1430
static enum reg_request_treatment
__regulatory_hint(struct wiphy *wiphy,
		  struct regulatory_request *pending_request)
1431
{
1432
	const struct ieee80211_regdomain *regd;
1433
	bool intersect = false;
1434
	enum reg_request_treatment treatment;
1435

1436
	treatment = get_reg_request_treatment(wiphy, pending_request);
1437

1438 1439
	switch (treatment) {
	case REG_REQ_INTERSECT:
1440 1441
		if (pending_request->initiator ==
		    NL80211_REGDOM_SET_BY_DRIVER) {
1442
			regd = reg_copy_regd(get_cfg80211_regdom());
1443
			if (IS_ERR(regd)) {
1444
				kfree(pending_request);
1445
				return PTR_ERR(regd);
1446
			}
1447
			rcu_assign_pointer(wiphy->regd, regd);
1448
		}
1449
		intersect = true;
1450 1451 1452 1453
		break;
	case REG_REQ_OK:
		break;
	default:
1454 1455
		/*
		 * If the regulatory domain being requested by the
1456
		 * driver has already been set just copy it to the
1457 1458
		 * wiphy
		 */
1459 1460
		if (treatment == REG_REQ_ALREADY_SET &&
		    pending_request->initiator == NL80211_REGDOM_SET_BY_DRIVER) {
1461
			regd = reg_copy_regd(get_cfg80211_regdom());
1462
			if (IS_ERR(regd)) {
1463
				kfree(pending_request);
1464
				return REG_REQ_IGNORE;
1465
			}
1466
			treatment = REG_REQ_ALREADY_SET;
1467
			rcu_assign_pointer(wiphy->regd, regd);
1468 1469
			goto new_request;
		}
1470
		kfree(pending_request);
1471
		return treatment;
1472
	}
1473

1474
new_request:
1475 1476
	if (last_request != &core_request_world)
		kfree(last_request);
1477

1478 1479
	last_request = pending_request;
	last_request->intersect = intersect;
1480
	last_request->processed = false;
1481

1482
	pending_request = NULL;
1483

1484 1485 1486 1487 1488
	if (last_request->initiator == NL80211_REGDOM_SET_BY_USER) {
		user_alpha2[0] = last_request->alpha2[0];
		user_alpha2[1] = last_request->alpha2[1];
	}

1489 1490
	/* When r == REG_REQ_INTERSECT we do need to call CRDA */
	if (treatment != REG_REQ_OK && treatment != REG_REQ_INTERSECT) {
1491 1492 1493 1494 1495
		/*
		 * Since CRDA will not be called in this case as we already
		 * have applied the requested regulatory domain before we just
		 * inform userspace we have processed the request
		 */
1496
		if (treatment == REG_REQ_ALREADY_SET) {
1497
			nl80211_send_reg_change_event(last_request);
1498 1499
			reg_set_request_processed();
		}
1500
		return treatment;
1501
	}
1502

1503 1504 1505
	if (call_crda(last_request->alpha2))
		return REG_REQ_IGNORE;
	return REG_REQ_OK;
1506 1507
}

1508
/* This processes *all* regulatory hints */
1509 1510
static void reg_process_hint(struct regulatory_request *reg_request,
			     enum nl80211_reg_initiator reg_initiator)
1511 1512 1513
{
	struct wiphy *wiphy = NULL;

J
Johannes Berg 已提交
1514 1515
	if (WARN_ON(!reg_request->alpha2))
		return;
1516

J
Johannes Berg 已提交
1517
	if (reg_request->wiphy_idx != WIPHY_IDX_INVALID)
1518 1519
		wiphy = wiphy_idx_to_wiphy(reg_request->wiphy_idx);

J
Johannes Berg 已提交
1520
	if (reg_initiator == NL80211_REGDOM_SET_BY_DRIVER && !wiphy) {
1521
		kfree(reg_request);
1522
		return;
1523 1524
	}

1525 1526 1527 1528 1529 1530 1531 1532 1533 1534 1535
	switch (__regulatory_hint(wiphy, reg_request)) {
	case REG_REQ_ALREADY_SET:
		/* This is required so that the orig_* parameters are saved */
		if (wiphy && wiphy->flags & WIPHY_FLAG_STRICT_REGULATORY)
			wiphy_update_regulatory(wiphy, reg_initiator);
		break;
	default:
		if (reg_initiator == NL80211_REGDOM_SET_BY_USER)
			schedule_delayed_work(&reg_timeout,
					      msecs_to_jiffies(3142));
		break;
1536
	}
1537 1538
}

1539 1540 1541 1542 1543
/*
 * Processes regulatory hints, this is all the NL80211_REGDOM_SET_BY_*
 * Regulatory hints come on a first come first serve basis and we
 * must process each one atomically.
 */
1544
static void reg_process_pending_hints(void)
1545
{
1546 1547
	struct regulatory_request *reg_request;

1548 1549 1550
	mutex_lock(&cfg80211_mutex);
	mutex_lock(&reg_mutex);

1551 1552
	/* When last_request->processed becomes true this will be rescheduled */
	if (last_request && !last_request->processed) {
J
Johannes Berg 已提交
1553
		REG_DBG_PRINT("Pending regulatory request, waiting for it to be processed...\n");
1554 1555 1556
		goto out;
	}

1557 1558
	spin_lock(&reg_requests_lock);

1559
	if (list_empty(&reg_requests_list)) {
1560
		spin_unlock(&reg_requests_lock);
1561
		goto out;
1562
	}
1563 1564 1565 1566 1567 1568

	reg_request = list_first_entry(&reg_requests_list,
				       struct regulatory_request,
				       list);
	list_del_init(&reg_request->list);

1569
	spin_unlock(&reg_requests_lock);
1570

1571
	reg_process_hint(reg_request, reg_request->initiator);
1572 1573

out:
1574 1575
	mutex_unlock(&reg_mutex);
	mutex_unlock(&cfg80211_mutex);
1576 1577
}

1578 1579 1580
/* Processes beacon hints -- this has nothing to do with country IEs */
static void reg_process_pending_beacon_hints(void)
{
1581
	struct cfg80211_registered_device *rdev;
1582 1583
	struct reg_beacon *pending_beacon, *tmp;

1584 1585 1586 1587
	/*
	 * No need to hold the reg_mutex here as we just touch wiphys
	 * and do not read or access regulatory variables.
	 */
1588 1589 1590 1591 1592 1593 1594 1595 1596 1597
	mutex_lock(&cfg80211_mutex);

	/* This goes through the _pending_ beacon list */
	spin_lock_bh(&reg_pending_beacons_lock);

	list_for_each_entry_safe(pending_beacon, tmp,
				 &reg_pending_beacons, list) {
		list_del_init(&pending_beacon->list);

		/* Applies the beacon hint to current wiphys */
1598 1599
		list_for_each_entry(rdev, &cfg80211_rdev_list, list)
			wiphy_update_new_beacon(&rdev->wiphy, pending_beacon);
1600 1601 1602 1603 1604 1605 1606 1607 1608

		/* Remembers the beacon hint for new wiphys or reg changes */
		list_add_tail(&pending_beacon->list, &reg_beacon_list);
	}

	spin_unlock_bh(&reg_pending_beacons_lock);
	mutex_unlock(&cfg80211_mutex);
}

1609 1610 1611
static void reg_todo(struct work_struct *work)
{
	reg_process_pending_hints();
1612
	reg_process_pending_beacon_hints();
1613 1614 1615 1616
}

static void queue_regulatory_request(struct regulatory_request *request)
{
1617 1618
	request->alpha2[0] = toupper(request->alpha2[0]);
	request->alpha2[1] = toupper(request->alpha2[1]);
1619

1620 1621 1622 1623 1624 1625 1626
	spin_lock(&reg_requests_lock);
	list_add_tail(&request->list, &reg_requests_list);
	spin_unlock(&reg_requests_lock);

	schedule_work(&reg_work);
}

1627 1628 1629 1630
/*
 * Core regulatory hint -- happens during cfg80211_init()
 * and when we restore regulatory settings.
 */
1631 1632 1633 1634
static int regulatory_hint_core(const char *alpha2)
{
	struct regulatory_request *request;

J
Johannes Berg 已提交
1635
	request = kzalloc(sizeof(struct regulatory_request), GFP_KERNEL);
1636 1637 1638 1639 1640
	if (!request)
		return -ENOMEM;

	request->alpha2[0] = alpha2[0];
	request->alpha2[1] = alpha2[1];
1641
	request->initiator = NL80211_REGDOM_SET_BY_CORE;
1642

1643
	queue_regulatory_request(request);
1644

1645
	return 0;
1646 1647
}

1648
/* User hints */
1649 1650
int regulatory_hint_user(const char *alpha2,
			 enum nl80211_user_reg_hint_type user_reg_hint_type)
1651
{
1652 1653
	struct regulatory_request *request;

J
Johannes Berg 已提交
1654 1655
	if (WARN_ON(!alpha2))
		return -EINVAL;
1656

1657 1658 1659 1660
	request = kzalloc(sizeof(struct regulatory_request), GFP_KERNEL);
	if (!request)
		return -ENOMEM;

J
Johannes Berg 已提交
1661
	request->wiphy_idx = WIPHY_IDX_INVALID;
1662 1663
	request->alpha2[0] = alpha2[0];
	request->alpha2[1] = alpha2[1];
1664
	request->initiator = NL80211_REGDOM_SET_BY_USER;
1665
	request->user_reg_hint_type = user_reg_hint_type;
1666 1667 1668 1669 1670 1671 1672 1673 1674 1675 1676

	queue_regulatory_request(request);

	return 0;
}

/* Driver hints */
int regulatory_hint(struct wiphy *wiphy, const char *alpha2)
{
	struct regulatory_request *request;

J
Johannes Berg 已提交
1677 1678
	if (WARN_ON(!alpha2 || !wiphy))
		return -EINVAL;
1679 1680 1681 1682 1683 1684 1685 1686 1687

	request = kzalloc(sizeof(struct regulatory_request), GFP_KERNEL);
	if (!request)
		return -ENOMEM;

	request->wiphy_idx = get_wiphy_idx(wiphy);

	request->alpha2[0] = alpha2[0];
	request->alpha2[1] = alpha2[1];
1688
	request->initiator = NL80211_REGDOM_SET_BY_DRIVER;
1689 1690 1691 1692

	queue_regulatory_request(request);

	return 0;
1693 1694 1695
}
EXPORT_SYMBOL(regulatory_hint);

1696 1697 1698 1699
/*
 * We hold wdev_lock() here so we cannot hold cfg80211_mutex() and
 * therefore cannot iterate over the rdev list here.
 */
J
Johannes Berg 已提交
1700 1701
void regulatory_hint_11d(struct wiphy *wiphy, enum ieee80211_band band,
			 const u8 *country_ie, u8 country_ie_len)
1702 1703 1704
{
	char alpha2[2];
	enum environment_cap env = ENVIRON_ANY;
1705
	struct regulatory_request *request;
1706

1707
	mutex_lock(&reg_mutex);
1708

1709 1710
	if (unlikely(!last_request))
		goto out;
1711

1712 1713 1714 1715 1716 1717 1718 1719 1720 1721 1722 1723 1724 1725 1726
	/* IE len must be evenly divisible by 2 */
	if (country_ie_len & 0x01)
		goto out;

	if (country_ie_len < IEEE80211_COUNTRY_IE_MIN_LEN)
		goto out;

	alpha2[0] = country_ie[0];
	alpha2[1] = country_ie[1];

	if (country_ie[2] == 'I')
		env = ENVIRON_INDOOR;
	else if (country_ie[2] == 'O')
		env = ENVIRON_OUTDOOR;

1727
	/*
1728
	 * We will run this only upon a successful connection on cfg80211.
1729 1730
	 * We leave conflict resolution to the workqueue, where can hold
	 * cfg80211_mutex.
1731
	 */
J
Johannes Berg 已提交
1732 1733
	if (last_request->initiator == NL80211_REGDOM_SET_BY_COUNTRY_IE &&
	    last_request->wiphy_idx != WIPHY_IDX_INVALID)
1734
		goto out;
1735

1736 1737
	request = kzalloc(sizeof(struct regulatory_request), GFP_KERNEL);
	if (!request)
1738
		goto out;
1739 1740

	request->wiphy_idx = get_wiphy_idx(wiphy);
1741 1742
	request->alpha2[0] = alpha2[0];
	request->alpha2[1] = alpha2[1];
1743
	request->initiator = NL80211_REGDOM_SET_BY_COUNTRY_IE;
1744 1745 1746
	request->country_ie_env = env;

	queue_regulatory_request(request);
1747
out:
1748
	mutex_unlock(&reg_mutex);
1749
}
1750

1751 1752 1753 1754 1755 1756 1757 1758 1759 1760
static void restore_alpha2(char *alpha2, bool reset_user)
{
	/* indicates there is no alpha2 to consider for restoration */
	alpha2[0] = '9';
	alpha2[1] = '7';

	/* The user setting has precedence over the module parameter */
	if (is_user_regdom_saved()) {
		/* Unless we're asked to ignore it and reset it */
		if (reset_user) {
J
Johannes Berg 已提交
1761
			REG_DBG_PRINT("Restoring regulatory settings including user preference\n");
1762 1763 1764 1765 1766 1767 1768 1769 1770
			user_alpha2[0] = '9';
			user_alpha2[1] = '7';

			/*
			 * If we're ignoring user settings, we still need to
			 * check the module parameter to ensure we put things
			 * back as they were for a full restore.
			 */
			if (!is_world_regdom(ieee80211_regdom)) {
J
Johannes Berg 已提交
1771 1772
				REG_DBG_PRINT("Keeping preference on module parameter ieee80211_regdom: %c%c\n",
					      ieee80211_regdom[0], ieee80211_regdom[1]);
1773 1774 1775 1776
				alpha2[0] = ieee80211_regdom[0];
				alpha2[1] = ieee80211_regdom[1];
			}
		} else {
J
Johannes Berg 已提交
1777 1778
			REG_DBG_PRINT("Restoring regulatory settings while preserving user preference for: %c%c\n",
				      user_alpha2[0], user_alpha2[1]);
1779 1780 1781 1782
			alpha2[0] = user_alpha2[0];
			alpha2[1] = user_alpha2[1];
		}
	} else if (!is_world_regdom(ieee80211_regdom)) {
J
Johannes Berg 已提交
1783 1784
		REG_DBG_PRINT("Keeping preference on module parameter ieee80211_regdom: %c%c\n",
			      ieee80211_regdom[0], ieee80211_regdom[1]);
1785 1786 1787
		alpha2[0] = ieee80211_regdom[0];
		alpha2[1] = ieee80211_regdom[1];
	} else
1788
		REG_DBG_PRINT("Restoring regulatory settings\n");
1789 1790
}

1791 1792 1793 1794 1795 1796 1797 1798 1799 1800 1801 1802 1803 1804 1805 1806
static void restore_custom_reg_settings(struct wiphy *wiphy)
{
	struct ieee80211_supported_band *sband;
	enum ieee80211_band band;
	struct ieee80211_channel *chan;
	int i;

	for (band = 0; band < IEEE80211_NUM_BANDS; band++) {
		sband = wiphy->bands[band];
		if (!sband)
			continue;
		for (i = 0; i < sband->n_channels; i++) {
			chan = &sband->channels[i];
			chan->flags = chan->orig_flags;
			chan->max_antenna_gain = chan->orig_mag;
			chan->max_power = chan->orig_mpwr;
1807
			chan->beacon_found = false;
1808 1809 1810 1811
		}
	}
}

1812 1813 1814 1815 1816 1817 1818 1819 1820 1821 1822 1823 1824 1825 1826 1827 1828 1829
/*
 * Restoring regulatory settings involves ingoring any
 * possibly stale country IE information and user regulatory
 * settings if so desired, this includes any beacon hints
 * learned as we could have traveled outside to another country
 * after disconnection. To restore regulatory settings we do
 * exactly what we did at bootup:
 *
 *   - send a core regulatory hint
 *   - send a user regulatory hint if applicable
 *
 * Device drivers that send a regulatory hint for a specific country
 * keep their own regulatory domain on wiphy->regd so that does does
 * not need to be remembered.
 */
static void restore_regulatory_settings(bool reset_user)
{
	char alpha2[2];
1830
	char world_alpha2[2];
1831
	struct reg_beacon *reg_beacon, *btmp;
1832 1833
	struct regulatory_request *reg_request, *tmp;
	LIST_HEAD(tmp_reg_req_list);
1834
	struct cfg80211_registered_device *rdev;
1835 1836 1837 1838

	mutex_lock(&cfg80211_mutex);
	mutex_lock(&reg_mutex);

1839
	reset_regdomains(true, cfg80211_world_regdom);
1840 1841
	restore_alpha2(alpha2, reset_user);

1842 1843 1844 1845 1846 1847 1848
	/*
	 * If there's any pending requests we simply
	 * stash them to a temporary pending queue and
	 * add then after we've restored regulatory
	 * settings.
	 */
	spin_lock(&reg_requests_lock);
1849 1850 1851 1852
	list_for_each_entry_safe(reg_request, tmp, &reg_requests_list, list) {
		if (reg_request->initiator != NL80211_REGDOM_SET_BY_USER)
			continue;
		list_move_tail(&reg_request->list, &tmp_reg_req_list);
1853 1854 1855
	}
	spin_unlock(&reg_requests_lock);

1856 1857
	/* Clear beacon hints */
	spin_lock_bh(&reg_pending_beacons_lock);
1858 1859 1860
	list_for_each_entry_safe(reg_beacon, btmp, &reg_pending_beacons, list) {
		list_del(&reg_beacon->list);
		kfree(reg_beacon);
1861 1862 1863
	}
	spin_unlock_bh(&reg_pending_beacons_lock);

1864 1865 1866
	list_for_each_entry_safe(reg_beacon, btmp, &reg_beacon_list, list) {
		list_del(&reg_beacon->list);
		kfree(reg_beacon);
1867 1868 1869
	}

	/* First restore to the basic regulatory settings */
1870 1871
	world_alpha2[0] = cfg80211_world_regdom->alpha2[0];
	world_alpha2[1] = cfg80211_world_regdom->alpha2[1];
1872

1873 1874 1875 1876 1877
	list_for_each_entry(rdev, &cfg80211_rdev_list, list) {
		if (rdev->wiphy.flags & WIPHY_FLAG_CUSTOM_REGULATORY)
			restore_custom_reg_settings(&rdev->wiphy);
	}

1878
	regulatory_hint_core(world_alpha2);
1879 1880 1881 1882 1883 1884 1885

	/*
	 * This restores the ieee80211_regdom module parameter
	 * preference or the last user requested regulatory
	 * settings, user regulatory settings takes precedence.
	 */
	if (is_an_alpha2(alpha2))
1886
		regulatory_hint_user(user_alpha2, NL80211_USER_REG_HINT_USER);
1887

1888
	spin_lock(&reg_requests_lock);
1889
	list_splice_tail_init(&tmp_reg_req_list, &reg_requests_list);
1890 1891 1892 1893 1894 1895 1896 1897 1898
	spin_unlock(&reg_requests_lock);

	mutex_unlock(&reg_mutex);
	mutex_unlock(&cfg80211_mutex);

	REG_DBG_PRINT("Kicking the queue\n");

	schedule_work(&reg_work);
}
1899 1900 1901

void regulatory_hint_disconnect(void)
{
J
Johannes Berg 已提交
1902
	REG_DBG_PRINT("All devices are disconnected, going to restore regulatory settings\n");
1903 1904 1905
	restore_regulatory_settings(false);
}

1906 1907
static bool freq_is_chan_12_13_14(u16 freq)
{
1908 1909 1910
	if (freq == ieee80211_channel_to_frequency(12, IEEE80211_BAND_2GHZ) ||
	    freq == ieee80211_channel_to_frequency(13, IEEE80211_BAND_2GHZ) ||
	    freq == ieee80211_channel_to_frequency(14, IEEE80211_BAND_2GHZ))
1911 1912 1913 1914 1915 1916 1917 1918 1919 1920
		return true;
	return false;
}

int regulatory_hint_found_beacon(struct wiphy *wiphy,
				 struct ieee80211_channel *beacon_chan,
				 gfp_t gfp)
{
	struct reg_beacon *reg_beacon;

J
Johannes Berg 已提交
1921 1922
	if (beacon_chan->beacon_found ||
	    beacon_chan->flags & IEEE80211_CHAN_RADAR ||
1923
	    (beacon_chan->band == IEEE80211_BAND_2GHZ &&
J
Johannes Berg 已提交
1924
	     !freq_is_chan_12_13_14(beacon_chan->center_freq)))
1925 1926 1927 1928 1929 1930
		return 0;

	reg_beacon = kzalloc(sizeof(struct reg_beacon), gfp);
	if (!reg_beacon)
		return -ENOMEM;

J
Johannes Berg 已提交
1931
	REG_DBG_PRINT("Found new beacon on frequency: %d MHz (Ch %d) on %s\n",
1932 1933 1934 1935
		      beacon_chan->center_freq,
		      ieee80211_frequency_to_channel(beacon_chan->center_freq),
		      wiphy_name(wiphy));

1936
	memcpy(&reg_beacon->chan, beacon_chan,
J
Johannes Berg 已提交
1937
	       sizeof(struct ieee80211_channel));
1938 1939 1940 1941 1942 1943 1944 1945 1946 1947 1948 1949 1950 1951

	/*
	 * Since we can be called from BH or and non-BH context
	 * we must use spin_lock_bh()
	 */
	spin_lock_bh(&reg_pending_beacons_lock);
	list_add_tail(&reg_beacon->list, &reg_pending_beacons);
	spin_unlock_bh(&reg_pending_beacons_lock);

	schedule_work(&reg_work);

	return 0;
}

1952
static void print_rd_rules(const struct ieee80211_regdomain *rd)
1953 1954
{
	unsigned int i;
1955 1956 1957
	const struct ieee80211_reg_rule *reg_rule = NULL;
	const struct ieee80211_freq_range *freq_range = NULL;
	const struct ieee80211_power_rule *power_rule = NULL;
1958

1959
	pr_info("  (start_freq - end_freq @ bandwidth), (max_antenna_gain, max_eirp)\n");
1960 1961 1962 1963 1964 1965

	for (i = 0; i < rd->n_reg_rules; i++) {
		reg_rule = &rd->reg_rules[i];
		freq_range = &reg_rule->freq_range;
		power_rule = &reg_rule->power_rule;

1966 1967 1968 1969
		/*
		 * There may not be documentation for max antenna gain
		 * in certain regions
		 */
1970
		if (power_rule->max_antenna_gain)
1971
			pr_info("  (%d KHz - %d KHz @ %d KHz), (%d mBi, %d mBm)\n",
1972 1973 1974 1975 1976 1977
				freq_range->start_freq_khz,
				freq_range->end_freq_khz,
				freq_range->max_bandwidth_khz,
				power_rule->max_antenna_gain,
				power_rule->max_eirp);
		else
1978
			pr_info("  (%d KHz - %d KHz @ %d KHz), (N/A, %d mBm)\n",
1979 1980 1981 1982 1983 1984 1985
				freq_range->start_freq_khz,
				freq_range->end_freq_khz,
				freq_range->max_bandwidth_khz,
				power_rule->max_eirp);
	}
}

1986 1987 1988 1989 1990 1991 1992 1993 1994 1995 1996 1997 1998 1999 2000 2001 2002 2003 2004 2005 2006 2007 2008 2009 2010 2011 2012 2013 2014 2015 2016
bool reg_supported_dfs_region(u8 dfs_region)
{
	switch (dfs_region) {
	case NL80211_DFS_UNSET:
	case NL80211_DFS_FCC:
	case NL80211_DFS_ETSI:
	case NL80211_DFS_JP:
		return true;
	default:
		REG_DBG_PRINT("Ignoring uknown DFS master region: %d\n",
			      dfs_region);
		return false;
	}
}

static void print_dfs_region(u8 dfs_region)
{
	if (!dfs_region)
		return;

	switch (dfs_region) {
	case NL80211_DFS_FCC:
		pr_info(" DFS Master region FCC");
		break;
	case NL80211_DFS_ETSI:
		pr_info(" DFS Master region ETSI");
		break;
	case NL80211_DFS_JP:
		pr_info(" DFS Master region JP");
		break;
	default:
J
Johannes Berg 已提交
2017
		pr_info(" DFS Master region Unknown");
2018 2019 2020 2021
		break;
	}
}

2022
static void print_regdomain(const struct ieee80211_regdomain *rd)
2023 2024
{

2025
	if (is_intersected_alpha2(rd->alpha2)) {
2026 2027
		if (last_request->initiator ==
		    NL80211_REGDOM_SET_BY_COUNTRY_IE) {
2028 2029
			struct cfg80211_registered_device *rdev;
			rdev = cfg80211_rdev_by_wiphy_idx(
2030
				last_request->wiphy_idx);
2031
			if (rdev) {
2032
				pr_info("Current regulatory domain updated by AP to: %c%c\n",
2033 2034
					rdev->country_ie_alpha2[0],
					rdev->country_ie_alpha2[1]);
2035
			} else
2036
				pr_info("Current regulatory domain intersected:\n");
2037
		} else
2038
			pr_info("Current regulatory domain intersected:\n");
J
Johannes Berg 已提交
2039
	} else if (is_world_regdom(rd->alpha2)) {
2040
		pr_info("World regulatory domain updated:\n");
J
Johannes Berg 已提交
2041
	} else {
2042
		if (is_unknown_alpha2(rd->alpha2))
2043
			pr_info("Regulatory domain changed to driver built-in settings (unknown country)\n");
2044 2045
		else {
			if (reg_request_cell_base(last_request))
J
Johannes Berg 已提交
2046
				pr_info("Regulatory domain changed to country: %c%c by Cell Station\n",
2047 2048
					rd->alpha2[0], rd->alpha2[1]);
			else
J
Johannes Berg 已提交
2049
				pr_info("Regulatory domain changed to country: %c%c\n",
2050 2051
					rd->alpha2[0], rd->alpha2[1]);
		}
2052
	}
J
Johannes Berg 已提交
2053

2054
	print_dfs_region(rd->dfs_region);
2055 2056 2057
	print_rd_rules(rd);
}

2058
static void print_regdomain_info(const struct ieee80211_regdomain *rd)
2059
{
2060
	pr_info("Regulatory domain: %c%c\n", rd->alpha2[0], rd->alpha2[1]);
2061 2062 2063
	print_rd_rules(rd);
}

2064
/* Takes ownership of rd only if it doesn't fail */
2065
static int __set_regdom(const struct ieee80211_regdomain *rd)
2066
{
2067
	const struct ieee80211_regdomain *regd;
2068
	const struct ieee80211_regdomain *intersected_rd = NULL;
2069
	struct wiphy *request_wiphy;
2070

2071 2072
	/* Some basic sanity checks first */

2073 2074
	assert_reg_lock();

2075 2076 2077
	if (!reg_is_valid_request(rd->alpha2))
		return -EINVAL;

2078 2079 2080 2081 2082 2083
	if (is_world_regdom(rd->alpha2)) {
		update_world_regdomain(rd);
		return 0;
	}

	if (!is_alpha2_set(rd->alpha2) && !is_an_alpha2(rd->alpha2) &&
J
Johannes Berg 已提交
2084
	    !is_unknown_alpha2(rd->alpha2))
2085 2086
		return -EINVAL;

2087 2088
	/*
	 * Lets only bother proceeding on the same alpha2 if the current
2089
	 * rd is non static (it means CRDA was present and was used last)
2090 2091
	 * and the pending request came in from a country IE
	 */
2092
	if (last_request->initiator != NL80211_REGDOM_SET_BY_COUNTRY_IE) {
2093 2094 2095 2096
		/*
		 * If someone else asked us to change the rd lets only bother
		 * checking if the alpha2 changes if CRDA was already called
		 */
2097
		if (!regdom_changes(rd->alpha2))
2098
			return -EALREADY;
2099 2100
	}

2101 2102
	/*
	 * Now lets set the regulatory domain, update all driver channels
2103 2104
	 * and finally inform them of what we have done, in case they want
	 * to review or adjust their own settings based on their own
2105 2106
	 * internal EEPROM data
	 */
2107

2108
	if (!is_valid_rd(rd)) {
2109
		pr_err("Invalid regulatory domain detected:\n");
2110 2111
		print_regdomain_info(rd);
		return -EINVAL;
2112 2113
	}

2114
	request_wiphy = wiphy_idx_to_wiphy(last_request->wiphy_idx);
2115 2116 2117 2118
	if (!request_wiphy &&
	    (last_request->initiator == NL80211_REGDOM_SET_BY_DRIVER ||
	     last_request->initiator == NL80211_REGDOM_SET_BY_COUNTRY_IE)) {
		schedule_delayed_work(&reg_timeout, 0);
2119 2120
		return -ENODEV;
	}
2121

2122
	if (!last_request->intersect) {
2123
		if (last_request->initiator != NL80211_REGDOM_SET_BY_DRIVER) {
2124
			reset_regdomains(false, rd);
2125 2126 2127
			return 0;
		}

2128 2129 2130 2131
		/*
		 * For a driver hint, lets copy the regulatory domain the
		 * driver wanted to the wiphy to deal with conflicts
		 */
2132

2133 2134 2135 2136 2137 2138
		/*
		 * Userspace could have sent two replies with only
		 * one kernel request.
		 */
		if (request_wiphy->regd)
			return -EALREADY;
2139

2140 2141 2142
		regd = reg_copy_regd(rd);
		if (IS_ERR(regd))
			return PTR_ERR(regd);
2143

2144
		rcu_assign_pointer(request_wiphy->regd, regd);
2145
		reset_regdomains(false, rd);
2146 2147 2148 2149 2150
		return 0;
	}

	/* Intersection requires a bit more work */

2151
	if (last_request->initiator != NL80211_REGDOM_SET_BY_COUNTRY_IE) {
2152
		intersected_rd = regdom_intersect(rd, get_cfg80211_regdom());
2153 2154
		if (!intersected_rd)
			return -EINVAL;
2155

2156 2157
		/*
		 * We can trash what CRDA provided now.
2158
		 * However if a driver requested this specific regulatory
2159 2160
		 * domain we keep it for its private use
		 */
2161
		if (last_request->initiator == NL80211_REGDOM_SET_BY_DRIVER)
2162
			rcu_assign_pointer(request_wiphy->regd, rd);
2163 2164 2165
		else
			kfree(rd);

2166 2167
		rd = NULL;

2168
		reset_regdomains(false, intersected_rd);
2169 2170

		return 0;
2171 2172
	}

A
Alan Cox 已提交
2173
	return -EINVAL;
2174 2175 2176
}


2177 2178
/*
 * Use this call to set the current regulatory domain. Conflicts with
2179
 * multiple drivers can be ironed out later. Caller must've already
2180
 * kmalloc'd the rd structure.
2181
 */
2182
int set_regdom(const struct ieee80211_regdomain *rd)
2183 2184 2185
{
	int r;

2186 2187
	mutex_lock(&reg_mutex);

2188 2189
	/* Note that this doesn't update the wiphys, this is done below */
	r = __set_regdom(rd);
2190
	if (r) {
2191 2192 2193
		if (r == -EALREADY)
			reg_set_request_processed();

2194
		kfree(rd);
J
Johannes Berg 已提交
2195
		goto out;
2196
	}
2197 2198

	/* This would make this whole thing pointless */
2199 2200
	if (WARN_ON(!last_request->intersect &&
		    rd != get_cfg80211_regdom())) {
J
Johannes Berg 已提交
2201 2202 2203
		r = -EINVAL;
		goto out;
	}
2204 2205

	/* update all wiphys now with the new established regulatory domain */
2206
	update_all_wiphy_regulatory(last_request->initiator);
2207

2208
	print_regdomain(get_cfg80211_regdom());
2209

2210 2211
	nl80211_send_reg_change_event(last_request);

2212 2213
	reg_set_request_processed();

J
Johannes Berg 已提交
2214
 out:
2215 2216
	mutex_unlock(&reg_mutex);

2217 2218 2219
	return r;
}

2220 2221 2222 2223 2224 2225 2226 2227 2228 2229 2230 2231 2232 2233 2234 2235 2236 2237 2238
#ifdef CONFIG_HOTPLUG
int reg_device_uevent(struct device *dev, struct kobj_uevent_env *env)
{
	if (last_request && !last_request->processed) {
		if (add_uevent_var(env, "COUNTRY=%c%c",
				   last_request->alpha2[0],
				   last_request->alpha2[1]))
			return -ENOMEM;
	}

	return 0;
}
#else
int reg_device_uevent(struct device *dev, struct kobj_uevent_env *env)
{
	return -ENODEV;
}
#endif /* CONFIG_HOTPLUG */

2239 2240 2241 2242 2243 2244 2245
void wiphy_regulatory_register(struct wiphy *wiphy)
{
	mutex_lock(&reg_mutex);

	if (!reg_dev_ignore_cell_hint(wiphy))
		reg_num_devs_support_basehint++;

2246
	wiphy_update_regulatory(wiphy, NL80211_REGDOM_SET_BY_CORE);
2247

2248
	mutex_unlock(&reg_mutex);
2249 2250
}

2251
/* Caller must hold cfg80211_mutex */
2252
void wiphy_regulatory_deregister(struct wiphy *wiphy)
2253
{
2254
	struct wiphy *request_wiphy = NULL;
2255

2256 2257
	mutex_lock(&reg_mutex);

2258 2259 2260
	if (!reg_dev_ignore_cell_hint(wiphy))
		reg_num_devs_support_basehint--;

2261 2262
	rcu_free_regdom(get_wiphy_regdom(wiphy));
	rcu_assign_pointer(wiphy->regd, NULL);
2263

2264 2265
	if (last_request)
		request_wiphy = wiphy_idx_to_wiphy(last_request->wiphy_idx);
2266

2267
	if (!request_wiphy || request_wiphy != wiphy)
2268
		goto out;
2269

J
Johannes Berg 已提交
2270
	last_request->wiphy_idx = WIPHY_IDX_INVALID;
2271
	last_request->country_ie_env = ENVIRON_ANY;
2272 2273
out:
	mutex_unlock(&reg_mutex);
2274 2275
}

2276 2277
static void reg_timeout_work(struct work_struct *work)
{
J
Johannes Berg 已提交
2278
	REG_DBG_PRINT("Timeout while waiting for CRDA to reply, restoring regulatory settings\n");
2279 2280 2281
	restore_regulatory_settings(true);
}

2282
int __init regulatory_init(void)
2283
{
2284
	int err = 0;
2285

2286 2287 2288
	reg_pdev = platform_device_register_simple("regulatory", 0, NULL, 0);
	if (IS_ERR(reg_pdev))
		return PTR_ERR(reg_pdev);
2289

2290 2291
	reg_pdev->dev.type = &reg_device_type;

2292
	spin_lock_init(&reg_requests_lock);
2293
	spin_lock_init(&reg_pending_beacons_lock);
2294

2295 2296
	reg_regdb_size_check();

2297
	rcu_assign_pointer(cfg80211_regdomain, cfg80211_world_regdom);
2298

2299 2300 2301
	user_alpha2[0] = '9';
	user_alpha2[1] = '7';

2302
	/* We always try to get an update for the static regdomain */
2303
	err = regulatory_hint_core(cfg80211_world_regdom->alpha2);
2304
	if (err) {
2305 2306 2307 2308 2309 2310 2311 2312 2313
		if (err == -ENOMEM)
			return err;
		/*
		 * N.B. kobject_uevent_env() can fail mainly for when we're out
		 * memory which is handled and propagated appropriately above
		 * but it can also fail during a netlink_broadcast() or during
		 * early boot for call_usermodehelper(). For now treat these
		 * errors as non-fatal.
		 */
2314
		pr_err("kobject_uevent_env() was unable to call CRDA during init\n");
2315
	}
2316

2317 2318 2319 2320 2321
	/*
	 * Finally, if the user set the module parameter treat it
	 * as a user hint.
	 */
	if (!is_world_regdom(ieee80211_regdom))
2322 2323
		regulatory_hint_user(ieee80211_regdom,
				     NL80211_USER_REG_HINT_USER);
2324

2325 2326 2327
	return 0;
}

J
Johannes Berg 已提交
2328
void regulatory_exit(void)
2329
{
2330
	struct regulatory_request *reg_request, *tmp;
2331
	struct reg_beacon *reg_beacon, *btmp;
2332 2333

	cancel_work_sync(&reg_work);
2334
	cancel_delayed_work_sync(&reg_timeout);
2335

2336
	/* Lock to suppress warnings */
2337
	mutex_lock(&reg_mutex);
2338
	reset_regdomains(true, NULL);
2339
	mutex_unlock(&reg_mutex);
2340

2341
	dev_set_uevent_suppress(&reg_pdev->dev, true);
2342

2343
	platform_device_unregister(reg_pdev);
2344

2345 2346 2347
	list_for_each_entry_safe(reg_beacon, btmp, &reg_pending_beacons, list) {
		list_del(&reg_beacon->list);
		kfree(reg_beacon);
2348 2349
	}

2350 2351 2352
	list_for_each_entry_safe(reg_beacon, btmp, &reg_beacon_list, list) {
		list_del(&reg_beacon->list);
		kfree(reg_beacon);
2353 2354
	}

2355 2356 2357
	list_for_each_entry_safe(reg_request, tmp, &reg_requests_list, list) {
		list_del(&reg_request->list);
		kfree(reg_request);
2358
	}
2359
}