wifi-utils: don't cache interface name

For nl80211, we don't care about the interface name and only use it
when formatting error messages. For wext, an up-to-date interface name
should be obtained every time to minimize the chance of race
conditions when the interface is renamed.
This commit is contained in:
Beniamino Galvani
2017-03-20 22:50:21 +01:00
parent 7de4912ff0
commit 3860c2fbe3
8 changed files with 143 additions and 95 deletions

View File

@@ -5503,34 +5503,17 @@ wifi_get_wifi_data (NMPlatform *platform, int ifindex)
wifi_data = g_hash_table_lookup (priv->wifi_data, GINT_TO_POINTER (ifindex)); wifi_data = g_hash_table_lookup (priv->wifi_data, GINT_TO_POINTER (ifindex));
pllink = nm_platform_link_get (platform, ifindex); pllink = nm_platform_link_get (platform, ifindex);
/* @wifi_data contains an interface name which is used for WEXT queries. If
* the interface name changes we should at least replace the name in the
* existing structure; but probably a complete reinitialization is better
* because during the initial creation there can be race conditions while
* the interface is renamed by udev.
*/
if (wifi_data && pllink) {
if (!nm_streq (wifi_utils_get_iface (wifi_data), pllink->name)) {
_LOGD ("wifi: interface %s renamed to %s, dropping old data for ifindex %d",
wifi_utils_get_iface (wifi_data),
pllink->name,
ifindex);
g_hash_table_remove (priv->wifi_data, GINT_TO_POINTER (ifindex));
wifi_data = NULL;
}
}
if (!wifi_data) { if (!wifi_data) {
if (pllink) { if (pllink) {
if (pllink->type == NM_LINK_TYPE_WIFI) if (pllink->type == NM_LINK_TYPE_WIFI)
wifi_data = wifi_utils_init (pllink->name, ifindex, TRUE); wifi_data = wifi_utils_init (ifindex, TRUE);
else if (pllink->type == NM_LINK_TYPE_OLPC_MESH) { else if (pllink->type == NM_LINK_TYPE_OLPC_MESH) {
/* The kernel driver now uses nl80211, but we force use of WEXT because /* The kernel driver now uses nl80211, but we force use of WEXT because
* the cfg80211 interactions are not quite ready to support access to * the cfg80211 interactions are not quite ready to support access to
* mesh control through nl80211 just yet. * mesh control through nl80211 just yet.
*/ */
#if HAVE_WEXT #if HAVE_WEXT
wifi_data = wifi_wext_init (pllink->name, ifindex, FALSE); wifi_data = wifi_wext_init (ifindex, FALSE);
#endif #endif
} }

View File

@@ -35,6 +35,7 @@
#include "wifi-utils-private.h" #include "wifi-utils-private.h"
#include "wifi-utils-nl80211.h" #include "wifi-utils-nl80211.h"
#include "platform/nm-platform.h" #include "platform/nm-platform.h"
#include "platform/nm-platform-utils.h"
#include "nm-utils.h" #include "nm-utils.h"
@@ -1032,13 +1033,20 @@ static int nl80211_wiphy_info_handler (struct nl_msg *msg, void *arg)
} }
WifiData * WifiData *
wifi_nl80211_init (const char *iface, int ifindex) wifi_nl80211_init (int ifindex)
{ {
WifiDataNl80211 *nl80211; WifiDataNl80211 *nl80211;
struct nl_msg *msg; struct nl_msg *msg;
struct nl80211_device_info device_info = {}; struct nl80211_device_info device_info = {};
char ifname[IFNAMSIZ];
nl80211 = wifi_data_new (iface, ifindex, sizeof (*nl80211)); if (!nmp_utils_if_indextoname (ifindex, ifname)) {
nm_log_warn (LOGD_PLATFORM | LOGD_WIFI,
"wifi-nl80211: can't determine interface name for ifindex %d", ifindex);
nm_sprintf_buf (ifname, "if %d", ifindex);
}
nl80211 = wifi_data_new (ifindex, sizeof (*nl80211));
nl80211->parent.get_mode = wifi_nl80211_get_mode; nl80211->parent.get_mode = wifi_nl80211_get_mode;
nl80211->parent.set_mode = wifi_nl80211_set_mode; nl80211->parent.set_mode = wifi_nl80211_set_mode;
nl80211->parent.set_powersave = wifi_nl80211_set_powersave; nl80211->parent.set_powersave = wifi_nl80211_set_powersave;
@@ -1075,42 +1083,42 @@ wifi_nl80211_init (const char *iface, int ifindex)
&device_info) < 0) { &device_info) < 0) {
nm_log_dbg (LOGD_PLATFORM | LOGD_WIFI, nm_log_dbg (LOGD_PLATFORM | LOGD_WIFI,
"(%s): NL80211_CMD_GET_WIPHY request failed", "(%s): NL80211_CMD_GET_WIPHY request failed",
nl80211->parent.iface); ifname);
goto error; goto error;
} }
if (!device_info.success) { if (!device_info.success) {
nm_log_dbg (LOGD_PLATFORM | LOGD_WIFI, nm_log_dbg (LOGD_PLATFORM | LOGD_WIFI,
"(%s): NL80211_CMD_GET_WIPHY request indicated failure", "(%s): NL80211_CMD_GET_WIPHY request indicated failure",
nl80211->parent.iface); ifname);
goto error; goto error;
} }
if (!device_info.supported) { if (!device_info.supported) {
nm_log_dbg (LOGD_PLATFORM | LOGD_WIFI, nm_log_dbg (LOGD_PLATFORM | LOGD_WIFI,
"(%s): driver does not fully support nl80211, falling back to WEXT", "(%s): driver does not fully support nl80211, falling back to WEXT",
nl80211->parent.iface); ifname);
goto error; goto error;
} }
if (!device_info.can_scan_ssid) { if (!device_info.can_scan_ssid) {
nm_log_err (LOGD_PLATFORM | LOGD_WIFI, nm_log_err (LOGD_PLATFORM | LOGD_WIFI,
"(%s): driver does not support SSID scans", "(%s): driver does not support SSID scans",
nl80211->parent.iface); ifname);
goto error; goto error;
} }
if (device_info.num_freqs == 0 || device_info.freqs == NULL) { if (device_info.num_freqs == 0 || device_info.freqs == NULL) {
nm_log_err (LOGD_PLATFORM | LOGD_WIFI, nm_log_err (LOGD_PLATFORM | LOGD_WIFI,
"(%s): driver reports no supported frequencies", "(%s): driver reports no supported frequencies",
nl80211->parent.iface); ifname);
goto error; goto error;
} }
if (device_info.caps == 0) { if (device_info.caps == 0) {
nm_log_err (LOGD_PLATFORM | LOGD_WIFI, nm_log_err (LOGD_PLATFORM | LOGD_WIFI,
"(%s): driver doesn't report support of any encryption", "(%s): driver doesn't report support of any encryption",
nl80211->parent.iface); ifname);
goto error; goto error;
} }
@@ -1124,7 +1132,7 @@ wifi_nl80211_init (const char *iface, int ifindex)
nm_log_info (LOGD_PLATFORM | LOGD_WIFI, nm_log_info (LOGD_PLATFORM | LOGD_WIFI,
"(%s): using nl80211 for WiFi device control", "(%s): using nl80211 for WiFi device control",
nl80211->parent.iface); ifname);
return (WifiData *) nl80211; return (WifiData *) nl80211;

View File

@@ -23,6 +23,6 @@
#include "wifi-utils.h" #include "wifi-utils.h"
WifiData *wifi_nl80211_init (const char *iface, int ifindex); WifiData *wifi_nl80211_init (int ifindex);
#endif /* __WIFI_UTILS_NL80211_H__ */ #endif /* __WIFI_UTILS_NL80211_H__ */

View File

@@ -25,7 +25,6 @@
#include "wifi-utils.h" #include "wifi-utils.h"
struct WifiData { struct WifiData {
char *iface;
int ifindex; int ifindex;
NMDeviceWifiCapabilities caps; NMDeviceWifiCapabilities caps;
@@ -69,7 +68,7 @@ struct WifiData {
gboolean (*indicate_addressing_running) (WifiData *data, gboolean running); gboolean (*indicate_addressing_running) (WifiData *data, gboolean running);
}; };
gpointer wifi_data_new (const char *iface, int ifindex, gsize len); gpointer wifi_data_new (int ifindex, gsize len);
void wifi_data_free (WifiData *data); void wifi_data_free (WifiData *data);
#endif /* __WIFI_UTILS_PRIVATE_H__ */ #endif /* __WIFI_UTILS_PRIVATE_H__ */

View File

@@ -94,20 +94,36 @@ wifi_wext_deinit (WifiData *parent)
close (wext->fd); close (wext->fd);
} }
static gboolean
get_ifname (int ifindex, char *buffer, const char *op)
{
int errsv;
if (!nmp_utils_if_indextoname (ifindex, buffer)) {
errsv = errno;
nm_log_warn (LOGD_PLATFORM | LOGD_WIFI,
"wifi-wext: error getting interface name for ifindex %d, operation '%s': %s (%d)",
ifindex, op, g_strerror (errsv), errsv);
return FALSE;
}
return TRUE;
}
static NM80211Mode static NM80211Mode
wifi_wext_get_mode (WifiData *data) wifi_wext_get_mode_ifname (WifiData *data, const char *ifname)
{ {
WifiDataWext *wext = (WifiDataWext *) data; WifiDataWext *wext = (WifiDataWext *) data;
struct iwreq wrq; struct iwreq wrq;
memset (&wrq, 0, sizeof (struct iwreq)); memset (&wrq, 0, sizeof (struct iwreq));
nm_utils_ifname_cpy (wrq.ifr_name, wext->parent.iface); nm_utils_ifname_cpy (wrq.ifr_name, ifname);
if (ioctl (wext->fd, SIOCGIWMODE, &wrq) < 0) { if (ioctl (wext->fd, SIOCGIWMODE, &wrq) < 0) {
if (errno != ENODEV) { if (errno != ENODEV) {
nm_log_warn (LOGD_PLATFORM | LOGD_WIFI, nm_log_warn (LOGD_PLATFORM | LOGD_WIFI,
"(%s): error %d getting card mode", "(%s): error %d getting card mode",
wext->parent.iface, errno); ifname, errno);
} }
return NM_802_11_MODE_UNKNOWN; return NM_802_11_MODE_UNKNOWN;
} }
@@ -126,13 +142,28 @@ wifi_wext_get_mode (WifiData *data)
return NM_802_11_MODE_UNKNOWN; return NM_802_11_MODE_UNKNOWN;
} }
static NM80211Mode
wifi_wext_get_mode (WifiData *data)
{
char ifname[IFNAMSIZ];
if (!get_ifname (data->ifindex, ifname, "get-mode"))
return FALSE;
return wifi_wext_get_mode_ifname (data, ifname);
}
static gboolean static gboolean
wifi_wext_set_mode (WifiData *data, const NM80211Mode mode) wifi_wext_set_mode (WifiData *data, const NM80211Mode mode)
{ {
WifiDataWext *wext = (WifiDataWext *) data; WifiDataWext *wext = (WifiDataWext *) data;
struct iwreq wrq; struct iwreq wrq;
char ifname[IFNAMSIZ];
if (wifi_wext_get_mode (data) == mode) if (!get_ifname (data->ifindex, ifname, "set-mode"))
return FALSE;
if (wifi_wext_get_mode_ifname (data, ifname) == mode)
return TRUE; return TRUE;
memset (&wrq, 0, sizeof (struct iwreq)); memset (&wrq, 0, sizeof (struct iwreq));
@@ -151,11 +182,12 @@ wifi_wext_set_mode (WifiData *data, const NM80211Mode mode)
return FALSE; return FALSE;
} }
nm_utils_ifname_cpy (wrq.ifr_name, wext->parent.iface); nm_utils_ifname_cpy (wrq.ifr_name, ifname);
if (ioctl (wext->fd, SIOCSIWMODE, &wrq) < 0) { if (ioctl (wext->fd, SIOCSIWMODE, &wrq) < 0) {
if (errno != ENODEV) { if (errno != ENODEV) {
nm_log_err (LOGD_PLATFORM | LOGD_WIFI, "(%s): error setting mode %d", nm_log_err (LOGD_PLATFORM | LOGD_WIFI,
wext->parent.iface, mode); "(%s): error setting mode %d",
ifname, mode);
} }
return FALSE; return FALSE;
} }
@@ -168,6 +200,10 @@ wifi_wext_set_powersave (WifiData *data, guint32 powersave)
{ {
WifiDataWext *wext = (WifiDataWext *) data; WifiDataWext *wext = (WifiDataWext *) data;
struct iwreq wrq; struct iwreq wrq;
char ifname[IFNAMSIZ];
if (!get_ifname (data->ifindex, ifname, "set-powersave"))
return FALSE;
memset (&wrq, 0, sizeof (struct iwreq)); memset (&wrq, 0, sizeof (struct iwreq));
if (powersave == 1) { if (powersave == 1) {
@@ -175,11 +211,12 @@ wifi_wext_set_powersave (WifiData *data, guint32 powersave)
} else } else
wrq.u.power.disabled = 1; wrq.u.power.disabled = 1;
nm_utils_ifname_cpy (wrq.ifr_name, wext->parent.iface); nm_utils_ifname_cpy (wrq.ifr_name, ifname);
if (ioctl (wext->fd, SIOCSIWPOWER, &wrq) < 0) { if (ioctl (wext->fd, SIOCSIWPOWER, &wrq) < 0) {
if (errno != ENODEV) { if (errno != ENODEV) {
nm_log_err (LOGD_PLATFORM | LOGD_WIFI, "(%s): error setting powersave %" G_GUINT32_FORMAT, nm_log_err (LOGD_PLATFORM | LOGD_WIFI,
wext->parent.iface, powersave); "(%s): error setting powersave %" G_GUINT32_FORMAT,
ifname, powersave);
} }
return FALSE; return FALSE;
} }
@@ -192,13 +229,17 @@ wifi_wext_get_freq (WifiData *data)
{ {
WifiDataWext *wext = (WifiDataWext *) data; WifiDataWext *wext = (WifiDataWext *) data;
struct iwreq wrq; struct iwreq wrq;
char ifname[IFNAMSIZ];
if (!get_ifname (data->ifindex, ifname, "get-freq"))
return FALSE;
memset (&wrq, 0, sizeof (struct iwreq)); memset (&wrq, 0, sizeof (struct iwreq));
nm_utils_ifname_cpy (wrq.ifr_name, wext->parent.iface); nm_utils_ifname_cpy (wrq.ifr_name, ifname);
if (ioctl (wext->fd, SIOCGIWFREQ, &wrq) < 0) { if (ioctl (wext->fd, SIOCGIWFREQ, &wrq) < 0) {
nm_log_warn (LOGD_PLATFORM | LOGD_WIFI, nm_log_warn (LOGD_PLATFORM | LOGD_WIFI,
"(%s): error getting frequency: %s", "(%s): error getting frequency: %s",
wext->parent.iface, strerror (errno)); ifname, strerror (errno));
return 0; return 0;
} }
@@ -226,13 +267,17 @@ wifi_wext_get_bssid (WifiData *data, guint8 *out_bssid)
{ {
WifiDataWext *wext = (WifiDataWext *) data; WifiDataWext *wext = (WifiDataWext *) data;
struct iwreq wrq; struct iwreq wrq;
char ifname[IFNAMSIZ];
if (!get_ifname (data->ifindex, ifname, "get-bssid"))
return FALSE;
memset (&wrq, 0, sizeof (wrq)); memset (&wrq, 0, sizeof (wrq));
nm_utils_ifname_cpy (wrq.ifr_name, wext->parent.iface); nm_utils_ifname_cpy (wrq.ifr_name, ifname);
if (ioctl (wext->fd, SIOCGIWAP, &wrq) < 0) { if (ioctl (wext->fd, SIOCGIWAP, &wrq) < 0) {
nm_log_warn (LOGD_PLATFORM | LOGD_WIFI, nm_log_warn (LOGD_PLATFORM | LOGD_WIFI,
"(%s): error getting associated BSSID: %s", "(%s): error getting associated BSSID: %s",
wext->parent.iface, strerror (errno)); ifname, strerror (errno));
return FALSE; return FALSE;
} }
memcpy (out_bssid, &(wrq.u.ap_addr.sa_data), ETH_ALEN); memcpy (out_bssid, &(wrq.u.ap_addr.sa_data), ETH_ALEN);
@@ -245,9 +290,13 @@ wifi_wext_get_rate (WifiData *data)
WifiDataWext *wext = (WifiDataWext *) data; WifiDataWext *wext = (WifiDataWext *) data;
struct iwreq wrq; struct iwreq wrq;
int err; int err;
char ifname[IFNAMSIZ];
if (!get_ifname (data->ifindex, ifname, "get-rate"))
return FALSE;
memset (&wrq, 0, sizeof (wrq)); memset (&wrq, 0, sizeof (wrq));
nm_utils_ifname_cpy (wrq.ifr_name, wext->parent.iface); nm_utils_ifname_cpy (wrq.ifr_name, ifname);
err = ioctl (wext->fd, SIOCGIWRATE, &wrq); err = ioctl (wext->fd, SIOCGIWRATE, &wrq);
return ((err == 0) ? wrq.u.bitrate.value / 1000 : 0); return ((err == 0) ? wrq.u.bitrate.value / 1000 : 0);
} }
@@ -352,17 +401,21 @@ wifi_wext_get_qual (WifiData *data)
WifiDataWext *wext = (WifiDataWext *) data; WifiDataWext *wext = (WifiDataWext *) data;
struct iwreq wrq; struct iwreq wrq;
struct iw_statistics stats; struct iw_statistics stats;
char ifname[IFNAMSIZ];
if (!get_ifname (data->ifindex, ifname, "get-qual"))
return FALSE;
memset (&stats, 0, sizeof (stats)); memset (&stats, 0, sizeof (stats));
wrq.u.data.pointer = &stats; wrq.u.data.pointer = &stats;
wrq.u.data.length = sizeof (stats); wrq.u.data.length = sizeof (stats);
wrq.u.data.flags = 1; /* Clear updated flag */ wrq.u.data.flags = 1; /* Clear updated flag */
nm_utils_ifname_cpy (wrq.ifr_name, wext->parent.iface); nm_utils_ifname_cpy (wrq.ifr_name, ifname);
if (ioctl (wext->fd, SIOCGIWSTATS, &wrq) < 0) { if (ioctl (wext->fd, SIOCGIWSTATS, &wrq) < 0) {
nm_log_warn (LOGD_PLATFORM | LOGD_WIFI, nm_log_warn (LOGD_PLATFORM | LOGD_WIFI,
"(%s): error getting signal strength: %s", "(%s): error getting signal strength: %s",
wext->parent.iface, strerror (errno)); ifname, strerror (errno));
return -1; return -1;
} }
@@ -392,9 +445,13 @@ wifi_wext_set_mesh_channel (WifiData *data, guint32 channel)
{ {
WifiDataWext *wext = (WifiDataWext *) data; WifiDataWext *wext = (WifiDataWext *) data;
struct iwreq wrq; struct iwreq wrq;
char ifname[IFNAMSIZ];
if (!get_ifname (data->ifindex, ifname, "set-mesh-channel"))
return FALSE;
memset (&wrq, 0, sizeof (struct iwreq)); memset (&wrq, 0, sizeof (struct iwreq));
nm_utils_ifname_cpy (wrq.ifr_name, wext->parent.iface); nm_utils_ifname_cpy (wrq.ifr_name, ifname);
if (channel > 0) { if (channel > 0) {
wrq.u.freq.flags = IW_FREQ_FIXED; wrq.u.freq.flags = IW_FREQ_FIXED;
@@ -405,7 +462,7 @@ wifi_wext_set_mesh_channel (WifiData *data, guint32 channel)
if (ioctl (wext->fd, SIOCSIWFREQ, &wrq) < 0) { if (ioctl (wext->fd, SIOCSIWFREQ, &wrq) < 0) {
nm_log_err (LOGD_PLATFORM | LOGD_WIFI | LOGD_OLPC, nm_log_err (LOGD_PLATFORM | LOGD_WIFI | LOGD_OLPC,
"(%s): error setting channel to %d: %s", "(%s): error setting channel to %d: %s",
wext->parent.iface, channel, strerror (errno)); ifname, channel, strerror (errno));
return FALSE; return FALSE;
} }
@@ -418,6 +475,10 @@ wifi_wext_set_mesh_ssid (WifiData *data, const guint8 *ssid, gsize len)
WifiDataWext *wext = (WifiDataWext *) data; WifiDataWext *wext = (WifiDataWext *) data;
struct iwreq wrq; struct iwreq wrq;
char buf[IW_ESSID_MAX_SIZE + 1]; char buf[IW_ESSID_MAX_SIZE + 1];
char ifname[IFNAMSIZ];
if (!get_ifname (data->ifindex, ifname, "set-mesh-ssid"))
return FALSE;
memset (buf, 0, sizeof (buf)); memset (buf, 0, sizeof (buf));
memcpy (buf, ssid, MIN (sizeof (buf) - 1, len)); memcpy (buf, ssid, MIN (sizeof (buf) - 1, len));
@@ -426,14 +487,14 @@ wifi_wext_set_mesh_ssid (WifiData *data, const guint8 *ssid, gsize len)
wrq.u.essid.length = len; wrq.u.essid.length = len;
wrq.u.essid.flags = (len > 0) ? 1 : 0; /* 1=enable SSID, 0=disable/any */ wrq.u.essid.flags = (len > 0) ? 1 : 0; /* 1=enable SSID, 0=disable/any */
nm_utils_ifname_cpy (wrq.ifr_name, wext->parent.iface); nm_utils_ifname_cpy (wrq.ifr_name, ifname);
if (ioctl (wext->fd, SIOCSIWESSID, &wrq) == 0) if (ioctl (wext->fd, SIOCSIWESSID, &wrq) == 0)
return TRUE; return TRUE;
if (errno != ENODEV) { if (errno != ENODEV) {
nm_log_err (LOGD_PLATFORM | LOGD_WIFI | LOGD_OLPC, nm_log_err (LOGD_PLATFORM | LOGD_WIFI | LOGD_OLPC,
"(%s): error setting SSID to '%s': %s", "(%s): error setting SSID to '%s': %s",
wext->parent.iface, ifname,
ssid ? nm_utils_escape_ssid (ssid, len) : "(null)", ssid ? nm_utils_escape_ssid (ssid, len) : "(null)",
strerror (errno)); strerror (errno));
} }
@@ -444,12 +505,12 @@ wifi_wext_set_mesh_ssid (WifiData *data, const guint8 *ssid, gsize len)
/*****************************************************************************/ /*****************************************************************************/
static gboolean static gboolean
wext_can_scan (WifiDataWext *wext) wext_can_scan_ifname (WifiDataWext *wext, const char *ifname)
{ {
struct iwreq wrq; struct iwreq wrq;
memset (&wrq, 0, sizeof (struct iwreq)); memset (&wrq, 0, sizeof (struct iwreq));
nm_utils_ifname_cpy (wrq.ifr_name, wext->parent.iface); nm_utils_ifname_cpy (wrq.ifr_name, ifname);
if (ioctl (wext->fd, SIOCSIWSCAN, &wrq) < 0) { if (ioctl (wext->fd, SIOCSIWSCAN, &wrq) < 0) {
if (errno == EOPNOTSUPP) if (errno == EOPNOTSUPP)
return FALSE; return FALSE;
@@ -458,7 +519,8 @@ wext_can_scan (WifiDataWext *wext)
} }
static gboolean static gboolean
wext_get_range (WifiDataWext *wext, wext_get_range_ifname (WifiDataWext *wext,
const char *ifname,
struct iw_range *range, struct iw_range *range,
guint32 *response_len) guint32 *response_len)
{ {
@@ -467,7 +529,7 @@ wext_get_range (WifiDataWext *wext,
struct iwreq wrq; struct iwreq wrq;
memset (&wrq, 0, sizeof (struct iwreq)); memset (&wrq, 0, sizeof (struct iwreq));
nm_utils_ifname_cpy (wrq.ifr_name, wext->parent.iface); nm_utils_ifname_cpy (wrq.ifr_name, ifname);
wrq.u.data.pointer = (caddr_t) range; wrq.u.data.pointer = (caddr_t) range;
wrq.u.data.length = sizeof (struct iw_range); wrq.u.data.length = sizeof (struct iw_range);
@@ -484,7 +546,7 @@ wext_get_range (WifiDataWext *wext,
} else if (errno != EAGAIN) { } else if (errno != EAGAIN) {
nm_log_err (LOGD_PLATFORM | LOGD_WIFI, nm_log_err (LOGD_PLATFORM | LOGD_WIFI,
"(%s): couldn't get driver range information (%d).", "(%s): couldn't get driver range information (%d).",
wext->parent.iface, errno); ifname, errno);
break; break;
} }
@@ -494,7 +556,7 @@ wext_get_range (WifiDataWext *wext,
if (i <= 0) { if (i <= 0) {
nm_log_warn (LOGD_PLATFORM | LOGD_WIFI, nm_log_warn (LOGD_PLATFORM | LOGD_WIFI,
"(%s): driver took too long to respond to IWRANGE query.", "(%s): driver took too long to respond to IWRANGE query.",
wext->parent.iface); ifname);
} }
return success; return success;
@@ -506,7 +568,7 @@ wext_get_range (WifiDataWext *wext,
NM_WIFI_DEVICE_CAP_RSN) NM_WIFI_DEVICE_CAP_RSN)
static guint32 static guint32
wext_get_caps (WifiDataWext *wext, struct iw_range *range) wext_get_caps (WifiDataWext *wext, const char *ifname, struct iw_range *range)
{ {
guint32 caps = NM_WIFI_DEVICE_CAP_NONE; guint32 caps = NM_WIFI_DEVICE_CAP_NONE;
@@ -531,16 +593,18 @@ wext_get_caps (WifiDataWext *wext, struct iw_range *range)
/* Check for cipher support but not WPA support */ /* Check for cipher support but not WPA support */
if ( (caps & (NM_WIFI_DEVICE_CAP_CIPHER_TKIP | NM_WIFI_DEVICE_CAP_CIPHER_CCMP)) if ( (caps & (NM_WIFI_DEVICE_CAP_CIPHER_TKIP | NM_WIFI_DEVICE_CAP_CIPHER_CCMP))
&& !(caps & (NM_WIFI_DEVICE_CAP_WPA | NM_WIFI_DEVICE_CAP_RSN))) { && !(caps & (NM_WIFI_DEVICE_CAP_WPA | NM_WIFI_DEVICE_CAP_RSN))) {
nm_log_warn (LOGD_WIFI, "%s: device supports WPA ciphers but not WPA protocol; " nm_log_warn (LOGD_WIFI,
"WPA unavailable.", wext->parent.iface); "%s: device supports WPA ciphers but not WPA protocol; WPA unavailable.",
ifname);
caps &= ~WPA_CAPS; caps &= ~WPA_CAPS;
} }
/* Check for WPA support but not cipher support */ /* Check for WPA support but not cipher support */
if ( (caps & (NM_WIFI_DEVICE_CAP_WPA | NM_WIFI_DEVICE_CAP_RSN)) if ( (caps & (NM_WIFI_DEVICE_CAP_WPA | NM_WIFI_DEVICE_CAP_RSN))
&& !(caps & (NM_WIFI_DEVICE_CAP_CIPHER_TKIP | NM_WIFI_DEVICE_CAP_CIPHER_CCMP))) { && !(caps & (NM_WIFI_DEVICE_CAP_CIPHER_TKIP | NM_WIFI_DEVICE_CAP_CIPHER_CCMP))) {
nm_log_warn (LOGD_WIFI, "%s: device supports WPA protocol but not WPA ciphers; " nm_log_warn (LOGD_WIFI,
"WPA unavailable.", wext->parent.iface); "%s: device supports WPA protocol but not WPA ciphers; WPA unavailable.",
ifname);
caps &= ~WPA_CAPS; caps &= ~WPA_CAPS;
} }
@@ -554,7 +618,7 @@ wext_get_caps (WifiDataWext *wext, struct iw_range *range)
} }
WifiData * WifiData *
wifi_wext_init (const char *iface, int ifindex, gboolean check_scan) wifi_wext_init (int ifindex, gboolean check_scan)
{ {
WifiDataWext *wext; WifiDataWext *wext;
struct iw_range range; struct iw_range range;
@@ -562,8 +626,15 @@ wifi_wext_init (const char *iface, int ifindex, gboolean check_scan)
struct iw_range_with_scan_capa *scan_capa_range; struct iw_range_with_scan_capa *scan_capa_range;
int i; int i;
gboolean freq_valid = FALSE, has_5ghz = FALSE, has_2ghz = FALSE; gboolean freq_valid = FALSE, has_5ghz = FALSE, has_2ghz = FALSE;
char ifname[IFNAMSIZ];
wext = wifi_data_new (iface, ifindex, sizeof (*wext)); if (!nmp_utils_if_indextoname (ifindex, ifname)) {
nm_log_warn (LOGD_PLATFORM | LOGD_WIFI,
"wifi-wext: can't determine interface name for ifindex %d", ifindex);
return NULL;
}
wext = wifi_data_new (ifindex, sizeof (*wext));
wext->parent.get_mode = wifi_wext_get_mode; wext->parent.get_mode = wifi_wext_get_mode;
wext->parent.set_mode = wifi_wext_set_mode; wext->parent.set_mode = wifi_wext_set_mode;
wext->parent.set_powersave = wifi_wext_set_powersave; wext->parent.set_powersave = wifi_wext_set_powersave;
@@ -582,16 +653,16 @@ wifi_wext_init (const char *iface, int ifindex, gboolean check_scan)
goto error; goto error;
memset (&range, 0, sizeof (struct iw_range)); memset (&range, 0, sizeof (struct iw_range));
if (wext_get_range (wext, &range, &response_len) == FALSE) { if (wext_get_range_ifname (wext, ifname, &range, &response_len) == FALSE) {
nm_log_info (LOGD_PLATFORM | LOGD_WIFI, "(%s): driver WEXT range request failed", nm_log_info (LOGD_PLATFORM | LOGD_WIFI, "(%s): driver WEXT range request failed",
wext->parent.iface); ifname);
goto error; goto error;
} }
if ((response_len < 300) || (range.we_version_compiled < 21)) { if ((response_len < 300) || (range.we_version_compiled < 21)) {
nm_log_info (LOGD_PLATFORM | LOGD_WIFI, nm_log_info (LOGD_PLATFORM | LOGD_WIFI,
"(%s): driver WEXT version too old (got %d, expected >= 21)", "(%s): driver WEXT version too old (got %d, expected >= 21)",
wext->parent.iface, ifname,
range.we_version_compiled); range.we_version_compiled);
goto error; goto error;
} }
@@ -612,10 +683,10 @@ wifi_wext_init (const char *iface, int ifindex, gboolean check_scan)
} }
/* Check for scanning capability; cards that can't scan are not supported */ /* Check for scanning capability; cards that can't scan are not supported */
if (check_scan && (wext_can_scan (wext) == FALSE)) { if (check_scan && (wext_can_scan_ifname (wext, ifname) == FALSE)) {
nm_log_info (LOGD_PLATFORM | LOGD_WIFI, nm_log_info (LOGD_PLATFORM | LOGD_WIFI,
"(%s): drivers that cannot scan are unsupported", "(%s): drivers that cannot scan are unsupported",
wext->parent.iface); ifname);
goto error; goto error;
} }
@@ -627,16 +698,16 @@ wifi_wext_init (const char *iface, int ifindex, gboolean check_scan)
if (scan_capa_range->scan_capa & NM_IW_SCAN_CAPA_ESSID) { if (scan_capa_range->scan_capa & NM_IW_SCAN_CAPA_ESSID) {
nm_log_info (LOGD_PLATFORM | LOGD_WIFI, nm_log_info (LOGD_PLATFORM | LOGD_WIFI,
"(%s): driver supports SSID scans (scan_capa 0x%02X).", "(%s): driver supports SSID scans (scan_capa 0x%02X).",
wext->parent.iface, ifname,
scan_capa_range->scan_capa); scan_capa_range->scan_capa);
} else { } else {
nm_log_info (LOGD_PLATFORM | LOGD_WIFI, nm_log_info (LOGD_PLATFORM | LOGD_WIFI,
"(%s): driver does not support SSID scans (scan_capa 0x%02X).", "(%s): driver does not support SSID scans (scan_capa 0x%02X).",
wext->parent.iface, ifname,
scan_capa_range->scan_capa); scan_capa_range->scan_capa);
} }
wext->parent.caps = wext_get_caps (wext, &range); wext->parent.caps = wext_get_caps (wext, ifname, &range);
if (freq_valid) if (freq_valid)
wext->parent.caps |= NM_WIFI_DEVICE_CAP_FREQ_VALID; wext->parent.caps |= NM_WIFI_DEVICE_CAP_FREQ_VALID;
if (has_2ghz) if (has_2ghz)
@@ -646,7 +717,7 @@ wifi_wext_init (const char *iface, int ifindex, gboolean check_scan)
nm_log_info (LOGD_PLATFORM | LOGD_WIFI, nm_log_info (LOGD_PLATFORM | LOGD_WIFI,
"(%s): using WEXT for WiFi device control", "(%s): using WEXT for WiFi device control",
wext->parent.iface); ifname);
return (WifiData *) wext; return (WifiData *) wext;

View File

@@ -23,7 +23,7 @@
#include "wifi-utils.h" #include "wifi-utils.h"
WifiData *wifi_wext_init (const char *iface, int ifindex, gboolean check_scan); WifiData *wifi_wext_init (int ifindex, gboolean check_scan);
gboolean wifi_wext_is_wifi (const char *iface); gboolean wifi_wext_is_wifi (const char *iface);

View File

@@ -38,12 +38,11 @@
#include "platform/nm-platform-utils.h" #include "platform/nm-platform-utils.h"
gpointer gpointer
wifi_data_new (const char *iface, int ifindex, gsize len) wifi_data_new (int ifindex, gsize len)
{ {
WifiData *data; WifiData *data;
data = g_malloc0 (len); data = g_malloc0 (len);
data->iface = g_strdup (iface);
data->ifindex = ifindex; data->ifindex = ifindex;
return data; return data;
} }
@@ -51,7 +50,6 @@ wifi_data_new (const char *iface, int ifindex, gsize len)
void void
wifi_data_free (WifiData *data) wifi_data_free (WifiData *data)
{ {
g_free (data->iface);
memset (data, 0, sizeof (*data)); memset (data, 0, sizeof (*data));
g_free (data); g_free (data);
} }
@@ -59,17 +57,16 @@ wifi_data_free (WifiData *data)
/*****************************************************************************/ /*****************************************************************************/
WifiData * WifiData *
wifi_utils_init (const char *iface, int ifindex, gboolean check_scan) wifi_utils_init (int ifindex, gboolean check_scan)
{ {
WifiData *ret; WifiData *ret;
g_return_val_if_fail (iface != NULL, NULL);
g_return_val_if_fail (ifindex > 0, NULL); g_return_val_if_fail (ifindex > 0, NULL);
ret = wifi_nl80211_init (iface, ifindex); ret = wifi_nl80211_init (ifindex);
if (ret == NULL) { if (ret == NULL) {
#if HAVE_WEXT #if HAVE_WEXT
ret = wifi_wext_init (iface, ifindex, check_scan); ret = wifi_wext_init (ifindex, check_scan);
#endif #endif
} }
return ret; return ret;
@@ -83,14 +80,6 @@ wifi_utils_get_ifindex (WifiData *data)
return data->ifindex; return data->ifindex;
} }
const char *
wifi_utils_get_iface (WifiData *data)
{
g_return_val_if_fail (data != NULL, NULL);
return data->iface;
}
NMDeviceWifiCapabilities NMDeviceWifiCapabilities
wifi_utils_get_caps (WifiData *data) wifi_utils_get_caps (WifiData *data)
{ {

View File

@@ -30,12 +30,10 @@ typedef struct WifiData WifiData;
gboolean wifi_utils_is_wifi (int dirfd, const char *ifname); gboolean wifi_utils_is_wifi (int dirfd, const char *ifname);
WifiData *wifi_utils_init (const char *iface, int ifindex, gboolean check_scan); WifiData *wifi_utils_init (int ifindex, gboolean check_scan);
int wifi_utils_get_ifindex (WifiData *data); int wifi_utils_get_ifindex (WifiData *data);
const char *wifi_utils_get_iface (WifiData *data);
void wifi_utils_deinit (WifiData *data); void wifi_utils_deinit (WifiData *data);
NMDeviceWifiCapabilities wifi_utils_get_caps (WifiData *data); NMDeviceWifiCapabilities wifi_utils_get_caps (WifiData *data);