astyle --formatted --mode=c --indent=spaces=2 --indent-switches --indent-preprocessor --keep-one-line-blocks --max-instatement-indent=60 --brackets=linux
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a2cd236441
commit
67522bae65
5 changed files with 42 additions and 37 deletions
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@ -125,15 +125,13 @@ main (int argc, const char *argv[])
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}
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switch (mode) {
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case PSM_VIRTUAL_CARD:
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{
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case PSM_VIRTUAL_CARD: {
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printf ("Now the SAM is readable for 1 minute from an external reader.\n");
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wait_one_minute ();
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}
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break;
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case PSM_WIRED_CARD:
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{
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case PSM_WIRED_CARD: {
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nfc_target nt;
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// Set opened NFC device to initiator mode
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@ -169,8 +167,7 @@ main (int argc, const char *argv[])
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}
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break;
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case PSM_DUAL_CARD:
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{
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case PSM_DUAL_CARD: {
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uint8_t abtRx[MAX_FRAME_LEN];
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nfc_target nt = {
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@ -829,8 +829,7 @@ pn53x_set_property_bool (struct nfc_device *pnd, const nfc_property property, co
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return NFC_SUCCESS;
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break;
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case NP_ACTIVATE_FIELD:
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{
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case NP_ACTIVATE_FIELD: {
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if (pn53x_RFConfiguration__RF_field (pnd, bEnable) == 0)
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return NFC_SUCCESS;
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}
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@ -841,8 +840,7 @@ pn53x_set_property_bool (struct nfc_device *pnd, const nfc_property property, co
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return pn53x_write_register (pnd, PN53X_REG_CIU_Status2, SYMBOL_MF_CRYPTO1_ON, btValue);
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break;
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case NP_INFINITE_SELECT:
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{
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case NP_INFINITE_SELECT: {
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// TODO Made some research around this point:
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// timings could be tweak better than this, and maybe we can tweak timings
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// to "gain" a sort-of hardware polling (ie. like PN532 does)
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@ -1045,8 +1043,7 @@ pn53x_initiator_select_passive_target_ext (struct nfc_device *pnd,
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return res;
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}
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szTargetsData = (size_t)res;
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}
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else if (nm.nmt == NMT_ISO14443B2CT) {
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} else if (nm.nmt == NMT_ISO14443B2CT) {
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// Some work to do before getting the UID...
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const uint8_t abtReqt[]= { 0x10 };
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// Getting product code / fab code & store it in output buffer after the serial nr we'll obtain later
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@ -2860,8 +2857,7 @@ pn53x_get_supported_baud_rate (nfc_device *pnd, const nfc_modulation_type nmt, c
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case NMT_ISO14443B:
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case NMT_ISO14443BI:
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case NMT_ISO14443B2SR:
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case NMT_ISO14443B2CT:
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{
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case NMT_ISO14443B2CT: {
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if ((CHIP_DATA(pnd)->type != PN533)) {
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*supported_br = (nfc_baud_rate*)pn532_iso14443b_supported_baud_rates;
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} else {
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@ -249,8 +249,8 @@ acr122s_send_frame(nfc_device *pnd, uint8_t *frame, int timeout)
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static int
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acr122s_recv_frame(nfc_device *pnd, uint8_t *frame, size_t frame_size, void *abort_p, int timeout)
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{
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if (frame_size < 13)
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{ pnd->last_error = NFC_EINVARG;
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if (frame_size < 13) {
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pnd->last_error = NFC_EINVARG;
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return pnd->last_error;
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}
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int ret;
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@ -285,7 +285,8 @@ acr122s_recv_frame(nfc_device *pnd, uint8_t *frame, size_t frame_size, void *abo
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* Convert host uint32 to litle endian uint32
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*/
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static uint32_t
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le32(uint32_t val) {
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le32(uint32_t val)
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{
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uint32_t res;
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uint8_t *p = (uint8_t *) &res;
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p[0] = val;
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@ -204,8 +204,7 @@ main (int argc, char *argv[])
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}
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fd3 = fdopen(3, "r");
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fd4 = fdopen(4, "w");
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}
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else {
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} else {
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if (szFound < 2) {
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ERR ("%zd device found but two opened devices are needed to relay NFC.", szFound);
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return EXIT_FAILURE;
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@ -36,8 +36,7 @@
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#include "nfc-utils.h"
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struct card_atqa
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{
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struct card_atqa {
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uint16_t atqa;
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uint16_t mask;
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char type[128];
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@ -45,54 +44,67 @@ struct card_atqa
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int saklist[8];
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};
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struct card_sak
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{
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struct card_sak {
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uint8_t sak;
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uint8_t mask;
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char type[128];
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};
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struct card_atqa const_ca[] = {
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{ 0x0044, 0xffff, "MIFARE Ultralight",
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{
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0x0044, 0xffff, "MIFARE Ultralight",
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{0, -1}
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},
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{ 0x0044, 0xffff, "MIFARE Ultralight C",
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{
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0x0044, 0xffff, "MIFARE Ultralight C",
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{0, -1}
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},
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{ 0x0004, 0xff0f, "MIFARE Mini 0.3K",
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{
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0x0004, 0xff0f, "MIFARE Mini 0.3K",
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{1, -1}
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},
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{ 0x0004, 0xff0f, "MIFARE Classic 1K",
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{
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0x0004, 0xff0f, "MIFARE Classic 1K",
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{2, -1}
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},
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{ 0x0002, 0xff0f, "MIFARE Classic 4K",
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{
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0x0002, 0xff0f, "MIFARE Classic 4K",
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{3, -1}
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},
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{ 0x0004, 0xffff, "MIFARE Plus (4 Byte UID or 4 Byte RID)",
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{
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0x0004, 0xffff, "MIFARE Plus (4 Byte UID or 4 Byte RID)",
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{4, 5, 6, 7, 8, 9, -1}
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},
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{ 0x0002, 0xffff, "MIFARE Plus (4 Byte UID or 4 Byte RID)",
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{
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0x0002, 0xffff, "MIFARE Plus (4 Byte UID or 4 Byte RID)",
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{4, 5, 6, 7, 8, 9, -1}
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},
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{ 0x0044, 0xffff, "MIFARE Plus (7 Byte UID)",
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{
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0x0044, 0xffff, "MIFARE Plus (7 Byte UID)",
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{4, 5, 6, 7, 8, 9, -1}
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},
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{ 0x0042, 0xffff, "MIFARE Plus (7 Byte UID)",
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{
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0x0042, 0xffff, "MIFARE Plus (7 Byte UID)",
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{4, 5, 6, 7, 8, 9, -1}
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},
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{ 0x0344, 0xffff, "MIFARE DESFire",
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{
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0x0344, 0xffff, "MIFARE DESFire",
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{10, 11, -1}
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},
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{ 0x0044, 0xffff, "P3SR008",
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{
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0x0044, 0xffff, "P3SR008",
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{-1}
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}, // TODO we need SAK info
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{ 0x0004, 0xf0ff, "SmartMX with MIFARE 1K emulation",
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{
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0x0004, 0xf0ff, "SmartMX with MIFARE 1K emulation",
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{12, -1}
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},
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{ 0x0002, 0xf0ff, "SmartMX with MIFARE 4K emulation",
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{
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0x0002, 0xf0ff, "SmartMX with MIFARE 4K emulation",
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{12, -1}
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},
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{ 0x0048, 0xf0ff, "SmartMX with 7 Byte UID",
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{
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0x0048, 0xf0ff, "SmartMX with 7 Byte UID",
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{12, -1}
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}
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};
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