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NFC: Initial Secure Element API
Each NFC adapter can have several links to different secure elements and that property needs to be exported by the drivers. A secure element link can be enabled and disabled, and card emulation will be handled by the currently active one. Otherwise card emulation will be host implemented. Signed-off-by: Samuel Ortiz <sameo@linux.intel.com>
This commit is contained in:
parent
2ad554a502
commit
390a1bd853
@ -542,6 +542,7 @@ static int nfcwilink_probe(struct platform_device *pdev)
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drv->ndev = nci_allocate_device(&nfcwilink_ops,
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protocols,
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NFC_SE_NONE,
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NFCWILINK_HDR_LEN,
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0);
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if (!drv->ndev) {
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@ -2525,6 +2525,7 @@ static int pn533_probe(struct usb_interface *interface,
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dev->nfc_dev = nfc_allocate_device(&pn533_nfc_ops, protocols,
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NFC_SE_NONE,
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dev->ops->tx_header_len +
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PN533_CMD_DATAEXCH_HEAD_LEN,
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dev->ops->tx_tail_len);
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@ -801,7 +801,7 @@ int pn544_hci_probe(void *phy_id, struct nfc_phy_ops *phy_ops, char *llc_name,
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struct nfc_hci_dev **hdev)
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{
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struct pn544_hci_info *info;
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u32 protocols;
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u32 protocols, se;
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struct nfc_hci_init_data init_data;
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int r;
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@ -834,8 +834,10 @@ int pn544_hci_probe(void *phy_id, struct nfc_phy_ops *phy_ops, char *llc_name,
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NFC_PROTO_ISO14443_B_MASK |
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NFC_PROTO_NFC_DEP_MASK;
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se = NFC_SE_UICC | NFC_SE_EMBEDDED;
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info->hdev = nfc_hci_allocate_device(&pn544_hci_ops, &init_data, 0,
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protocols, llc_name,
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protocols, se, llc_name,
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phy_headroom + PN544_CMDS_HEADROOM,
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phy_tailroom, phy_payload);
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if (!info->hdev) {
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@ -59,6 +59,8 @@ struct nfc_hci_ops {
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struct nfc_target *target);
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int (*event_received)(struct nfc_hci_dev *hdev, u8 gate, u8 event,
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struct sk_buff *skb);
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int (*enable_se)(struct nfc_dev *dev, u32 secure_element);
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int (*disable_se)(struct nfc_dev *dev, u32 secure_element);
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};
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/* Pipes */
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@ -150,6 +152,7 @@ struct nfc_hci_dev *nfc_hci_allocate_device(struct nfc_hci_ops *ops,
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struct nfc_hci_init_data *init_data,
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unsigned long quirks,
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u32 protocols,
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u32 supported_se,
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const char *llc_name,
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int tx_headroom,
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int tx_tailroom,
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@ -147,6 +147,7 @@ struct nci_dev {
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/* ----- NCI Devices ----- */
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struct nci_dev *nci_allocate_device(struct nci_ops *ops,
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__u32 supported_protocols,
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__u32 supported_se,
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int tx_headroom,
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int tx_tailroom);
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void nci_free_device(struct nci_dev *ndev);
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@ -68,6 +68,8 @@ struct nfc_ops {
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void *cb_context);
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int (*tm_send)(struct nfc_dev *dev, struct sk_buff *skb);
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int (*check_presence)(struct nfc_dev *dev, struct nfc_target *target);
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int (*enable_se)(struct nfc_dev *dev, u32 secure_element);
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int (*disable_se)(struct nfc_dev *dev, u32 secure_element);
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};
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#define NFC_TARGET_IDX_ANY -1
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@ -109,6 +111,9 @@ struct nfc_dev {
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struct nfc_genl_data genl_data;
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u32 supported_protocols;
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u32 supported_se;
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u32 active_se;
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int tx_headroom;
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int tx_tailroom;
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@ -125,6 +130,7 @@ extern struct class nfc_class;
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struct nfc_dev *nfc_allocate_device(struct nfc_ops *ops,
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u32 supported_protocols,
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u32 supported_se,
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int tx_headroom,
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int tx_tailroom);
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@ -67,6 +67,11 @@
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* subsequent CONNECT and CC messages.
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* If one of the passed parameters is wrong none is set and -EINVAL is
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* returned.
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* @NFC_CMD_ENABLE_SE: Enable the physical link to a specific secure element.
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* Once enabled a secure element will handle card emulation mode, i.e.
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* starting a poll from a device which has a secure element enabled means
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* we want to do SE based card emulation.
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* @NFC_CMD_DISABLE_SE: Disable the physical link to a specific secure element.
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*/
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enum nfc_commands {
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NFC_CMD_UNSPEC,
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@ -86,6 +91,8 @@ enum nfc_commands {
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NFC_EVENT_TM_DEACTIVATED,
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NFC_CMD_LLC_GET_PARAMS,
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NFC_CMD_LLC_SET_PARAMS,
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NFC_CMD_ENABLE_SE,
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NFC_CMD_DISABLE_SE,
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/* private: internal use only */
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__NFC_CMD_AFTER_LAST
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};
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@ -114,6 +121,7 @@ enum nfc_commands {
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* @NFC_ATTR_LLC_PARAM_LTO: Link TimeOut parameter
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* @NFC_ATTR_LLC_PARAM_RW: Receive Window size parameter
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* @NFC_ATTR_LLC_PARAM_MIUX: MIU eXtension parameter
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* @NFC_ATTR_SE: Available Secure Elements
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*/
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enum nfc_attrs {
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NFC_ATTR_UNSPEC,
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@ -134,6 +142,7 @@ enum nfc_attrs {
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NFC_ATTR_LLC_PARAM_LTO,
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NFC_ATTR_LLC_PARAM_RW,
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NFC_ATTR_LLC_PARAM_MIUX,
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NFC_ATTR_SE,
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/* private: internal use only */
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__NFC_ATTR_AFTER_LAST
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};
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@ -172,6 +181,11 @@ enum nfc_attrs {
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#define NFC_PROTO_NFC_DEP_MASK (1 << NFC_PROTO_NFC_DEP)
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#define NFC_PROTO_ISO14443_B_MASK (1 << NFC_PROTO_ISO14443_B)
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/* NFC Secure Elements */
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#define NFC_SE_NONE 0x0
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#define NFC_SE_UICC 0x1
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#define NFC_SE_EMBEDDED 0x2
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struct sockaddr_nfc {
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sa_family_t sa_family;
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__u32 dev_idx;
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@ -757,6 +757,7 @@ struct nfc_dev *nfc_get_device(unsigned int idx)
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*/
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struct nfc_dev *nfc_allocate_device(struct nfc_ops *ops,
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u32 supported_protocols,
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u32 supported_se,
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int tx_headroom, int tx_tailroom)
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{
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struct nfc_dev *dev;
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@ -774,6 +775,8 @@ struct nfc_dev *nfc_allocate_device(struct nfc_ops *ops,
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dev->ops = ops;
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dev->supported_protocols = supported_protocols;
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dev->supported_se = supported_se;
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dev->active_se = NFC_SE_NONE;
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dev->tx_headroom = tx_headroom;
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dev->tx_tailroom = tx_tailroom;
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@ -797,6 +797,7 @@ struct nfc_hci_dev *nfc_hci_allocate_device(struct nfc_hci_ops *ops,
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struct nfc_hci_init_data *init_data,
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unsigned long quirks,
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u32 protocols,
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u32 supported_se,
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const char *llc_name,
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int tx_headroom,
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int tx_tailroom,
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@ -822,7 +823,7 @@ struct nfc_hci_dev *nfc_hci_allocate_device(struct nfc_hci_ops *ops,
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return NULL;
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}
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hdev->ndev = nfc_allocate_device(&hci_nfc_ops, protocols,
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hdev->ndev = nfc_allocate_device(&hci_nfc_ops, protocols, supported_se,
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tx_headroom + HCI_CMDS_HEADROOM,
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tx_tailroom);
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if (!hdev->ndev) {
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@ -658,6 +658,7 @@ static struct nfc_ops nci_nfc_ops = {
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*/
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struct nci_dev *nci_allocate_device(struct nci_ops *ops,
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__u32 supported_protocols,
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__u32 supported_se,
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int tx_headroom, int tx_tailroom)
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{
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struct nci_dev *ndev;
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@ -680,6 +681,7 @@ struct nci_dev *nci_allocate_device(struct nci_ops *ops,
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ndev->nfc_dev = nfc_allocate_device(&nci_nfc_ops,
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supported_protocols,
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supported_se,
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tx_headroom + NCI_DATA_HDR_SIZE,
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tx_tailroom);
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if (!ndev->nfc_dev)
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@ -366,6 +366,7 @@ static int nfc_genl_send_device(struct sk_buff *msg, struct nfc_dev *dev,
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if (nla_put_string(msg, NFC_ATTR_DEVICE_NAME, nfc_device_name(dev)) ||
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nla_put_u32(msg, NFC_ATTR_DEVICE_INDEX, dev->idx) ||
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nla_put_u32(msg, NFC_ATTR_PROTOCOLS, dev->supported_protocols) ||
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nla_put_u32(msg, NFC_ATTR_SE, dev->supported_se) ||
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nla_put_u8(msg, NFC_ATTR_DEVICE_POWERED, dev->dev_up) ||
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nla_put_u8(msg, NFC_ATTR_RF_MODE, dev->rf_mode))
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goto nla_put_failure;
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