DEP enhancements:
- Add timeout on InJumpForDEP (pn53x) and initiator_select_dep (libnfc API) - test_dep now works again (except 424Kbps) - Fix ndi.ndm feeling when select a DEP target Important: test_dep does not work on PN53x_USB devices after running previous tests
This commit is contained in:
parent
3b657ee547
commit
c286eec920
8 changed files with 123 additions and 47 deletions
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@ -86,7 +86,7 @@ main (int argc, const char *argv[])
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return EXIT_FAILURE;
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}
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if(!nfc_initiator_select_dep_target (pnd, NDM_PASSIVE, NBR_212, NULL, &nt)) {
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if(!nfc_initiator_select_dep_target (pnd, NDM_PASSIVE, NBR_212, NULL, &nt, 1000)) {
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nfc_perror(pnd, "nfc_initiator_select_dep_target");
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goto error;
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}
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@ -76,7 +76,7 @@ extern "C" {
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NFC_EXPORT bool nfc_initiator_select_passive_target (nfc_device *pnd, const nfc_modulation nm, const uint8_t *pbtInitData, const size_t szInitData, nfc_target *pnt);
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NFC_EXPORT bool nfc_initiator_list_passive_targets (nfc_device *pnd, const nfc_modulation nm, nfc_target ant[], const size_t szTargets, size_t *pszTargetFound);
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NFC_EXPORT bool nfc_initiator_poll_target (nfc_device *pnd, const nfc_modulation *pnmTargetTypes, const size_t szTargetTypes, const uint8_t uiPollNr, const uint8_t uiPeriod, nfc_target *pnt);
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NFC_EXPORT bool nfc_initiator_select_dep_target (nfc_device *pnd, const nfc_dep_mode ndm, const nfc_baud_rate nbr, const nfc_dep_info *pndiInitiator, nfc_target *pnt);
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NFC_EXPORT bool nfc_initiator_select_dep_target (nfc_device *pnd, const nfc_dep_mode ndm, const nfc_baud_rate nbr, const nfc_dep_info *pndiInitiator, nfc_target *pnt, const int timeout);
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NFC_EXPORT bool nfc_initiator_deselect_target (nfc_device *pnd);
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NFC_EXPORT bool nfc_initiator_transceive_bytes (nfc_device *pnd, const uint8_t *pbtTx, const size_t szTx, uint8_t *pbtRx, size_t *pszRx, int timeout);
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NFC_EXPORT bool nfc_initiator_transceive_bits (nfc_device *pnd, const uint8_t *pbtTx, const size_t szTxBits, const uint8_t *pbtTxPar, uint8_t *pbtRx, size_t *pszRxBits, uint8_t *pbtRxPar);
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@ -1038,7 +1038,8 @@ bool
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pn53x_initiator_select_dep_target(nfc_device *pnd,
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const nfc_dep_mode ndm, const nfc_baud_rate nbr,
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const nfc_dep_info *pndiInitiator,
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nfc_target *pnt)
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nfc_target *pnt,
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const int timeout)
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{
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const uint8_t abtPassiveInitiatorData[] = { 0x00, 0xff, 0xff, 0x00, 0x00 }; // Only for 212/424 kpbs: First 4 bytes shall be set like this according to NFCIP-1, last byte is TSN (Time Slot Number)
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const uint8_t * pbtPassiveInitiatorData = NULL;
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@ -1056,9 +1057,9 @@ pn53x_initiator_select_dep_target(nfc_device *pnd,
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}
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if (pndiInitiator) {
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return pn53x_InJumpForDEP (pnd, ndm, nbr, pbtPassiveInitiatorData, pndiInitiator->abtNFCID3, pndiInitiator->abtGB, pndiInitiator->szGB, pnt);
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return pn53x_InJumpForDEP (pnd, ndm, nbr, pbtPassiveInitiatorData, pndiInitiator->abtNFCID3, pndiInitiator->abtGB, pndiInitiator->szGB, pnt, timeout);
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} else {
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return pn53x_InJumpForDEP (pnd, ndm, nbr, pbtPassiveInitiatorData, NULL, NULL, 0, pnt);
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return pn53x_InJumpForDEP (pnd, ndm, nbr, pbtPassiveInitiatorData, NULL, NULL, 0, pnt, timeout);
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}
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}
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@ -2199,7 +2200,8 @@ pn53x_InJumpForDEP (nfc_device *pnd,
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const uint8_t *pbtPassiveInitiatorData,
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const uint8_t *pbtNFCID3i,
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const uint8_t *pbtGBi, const size_t szGBi,
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nfc_target *pnt)
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nfc_target *pnt,
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const int timeout)
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{
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// Max frame size = 1 (Command) + 1 (ActPass) + 1 (Baud rate) + 1 (Next) + 5 (PassiveInitiatorData) + 10 (NFCID3) + 48 (General bytes) = 67 bytes
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uint8_t abtCmd[67] = { InJumpForDEP, (ndm == NDM_ACTIVE) ? 0x01 : 0x00 };
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@ -2259,7 +2261,7 @@ pn53x_InJumpForDEP (nfc_device *pnd,
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uint8_t abtRx[PN53x_EXTENDED_FRAME__DATA_MAX_LEN];
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size_t szRx = sizeof (abtRx);
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// Try to find a target, call the transceive callback function of the current device
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if (!pn53x_transceive (pnd, abtCmd, offset, abtRx, &szRx, 0))
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if (!pn53x_transceive (pnd, abtCmd, offset, abtRx, &szRx, timeout))
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return false;
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// Make sure one target has been found, the PN53X returns 0x00 if none was available
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@ -2270,6 +2272,7 @@ pn53x_InJumpForDEP (nfc_device *pnd,
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if (pnt) {
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pnt->nm.nmt = NMT_DEP;
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pnt->nm.nbr = nbr;
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pnt->nti.ndi.ndm = ndm;
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memcpy (pnt->nti.ndi.abtNFCID3, abtRx + 2, 10);
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pnt->nti.ndi.btDID = abtRx[12];
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pnt->nti.ndi.btBS = abtRx[13];
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@ -287,7 +287,8 @@ bool pn53x_initiator_poll_target (nfc_device *pnd,
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bool pn53x_initiator_select_dep_target (nfc_device *pnd,
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const nfc_dep_mode ndm, const nfc_baud_rate nbr,
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const nfc_dep_info *pndiInitiator,
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nfc_target *pnt);
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nfc_target *pnt,
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const int timeout);
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bool pn53x_initiator_transceive_bits (nfc_device *pnd, const uint8_t *pbtTx, const size_t szTxBits,
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const uint8_t *pbtTxPar, uint8_t *pbtRx, size_t *pszRxBits,
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uint8_t *pbtRxPar);
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@ -328,7 +329,8 @@ bool pn53x_InJumpForDEP (nfc_device *pnd,
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const uint8_t *pbtPassiveInitiatorData,
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const uint8_t *pbtNFCID3i,
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const uint8_t *pbtGB, const size_t szGB,
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nfc_target *pnt);
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nfc_target *pnt,
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const int timeout);
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bool pn53x_TgInitAsTarget (nfc_device *pnd, pn53x_target_mode ptm,
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const uint8_t *pbtMifareParams,
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const uint8_t *pbtTkt, size_t szTkt,
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@ -571,6 +571,7 @@ read:
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if (timeout == USB_INFINITE_TIMEOUT) {
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usb_timeout = USB_TIMEOUT_PER_PASS;
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} else {
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// A user-provided timeout is set, we have to cut it in multiple chunk to be able to keep an nfc_abort_command() mecanism
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remaining_time -= USB_TIMEOUT_PER_PASS;
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if (remaining_time <= 0) {
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pnd->iLastError = ECOMTIMEOUT;
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@ -134,7 +134,7 @@ struct nfc_driver_t {
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bool (*initiator_init) (nfc_device *pnd);
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bool (*initiator_select_passive_target) (nfc_device *pnd, const nfc_modulation nm, const uint8_t * pbtInitData, const size_t szInitData, nfc_target * pnt);
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bool (*initiator_poll_target) (nfc_device *pnd, const nfc_modulation * pnmModulations, const size_t szModulations, const uint8_t uiPollNr, const uint8_t btPeriod, nfc_target * pnt);
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bool (*initiator_select_dep_target) (nfc_device *pnd, const nfc_dep_mode ndm, const nfc_baud_rate nbr, const nfc_dep_info * pndiInitiator, nfc_target * pnt);
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bool (*initiator_select_dep_target) (nfc_device *pnd, const nfc_dep_mode ndm, const nfc_baud_rate nbr, const nfc_dep_info * pndiInitiator, nfc_target * pnt, const int timeout);
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bool (*initiator_deselect_target) (nfc_device *pnd);
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bool (*initiator_transceive_bytes) (nfc_device *pnd, const uint8_t * pbtTx, const size_t szTx, uint8_t * pbtRx, size_t * pszRx, int timeout);
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bool (*initiator_transceive_bits) (nfc_device *pnd, const uint8_t * pbtTx, const size_t szTxBits, const uint8_t * pbtTxPar, uint8_t * pbtRx, size_t * pszRxBits, uint8_t * pbtRxPar);
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@ -432,9 +432,9 @@ nfc_initiator_poll_target (nfc_device *pnd,
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bool
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nfc_initiator_select_dep_target (nfc_device *pnd,
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const nfc_dep_mode ndm, const nfc_baud_rate nbr,
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const nfc_dep_info *pndiInitiator, nfc_target *pnt)
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const nfc_dep_info *pndiInitiator, nfc_target *pnt, const int timeout)
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{
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HAL (initiator_select_dep_target, pnd, ndm, nbr, pndiInitiator, pnt);
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HAL (initiator_select_dep_target, pnd, ndm, nbr, pndiInitiator, pnt, timeout);
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}
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/**
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140
test/test_dep.c
140
test/test_dep.c
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@ -55,10 +55,10 @@ void *
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target_thread (void *arg)
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{
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intptr_t thread_res = 0;
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// nfc_device *device = ((struct thread_data *) arg)->device;
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nfc_device *device = ((struct thread_data *) arg)->device;
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cut_set_current_test_context (((struct thread_data *) arg)->cut_test_context);
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#if 0
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printf ("=========== TARGET %s =========\n", nfc_device_name (device));
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nfc_target nt = {
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.nm = {
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.nmt = NMT_DEP,
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.abtNFCID3 = { 0x11, 0x22, 0x33, 0x44, 0x55, 0x66, 0x77, 0x88, 0x99, 0xAA },
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.szGB = 4,
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.abtGB = { 0x12, 0x34, 0x56, 0x78 },
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.ndm = NDM_UNDEFINED,
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.ndm = NDM_PASSIVE,
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/* These bytes are not used by nfc_target_init: the chip will provide them automatically to the initiator */
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.btDID = 0x00,
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.btBS = 0x00,
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uint8_t abtRx[1024];
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size_t szRx = sizeof (abtRx);
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bool res = nfc_target_init (device, &nt, abtRx, &szRx);
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// cut_assert_true (res, cut_message ("Can't initialize NFC device as target"));
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cut_assert_true (res, cut_message ("Can't initialize NFC device as target: %s", nfc_strerror (device)));
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uint8_t abtAtrRes[] = "\x11\xd4\x00\x01\xfe\x12\x34\x56\x78\x90\x12\x00\x00\x00\x00\x00\x00";
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// cut_assert_equal_memory (abtAtrRes, sizeof (abtAtrRes) - 1, abtRx, szRx, cut_message ("Invalid received ATR_RES"));
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const uint8_t abtAtrRes[] = "\x11\xd4\x00\x01\xfe\x12\x34\x56\x78\x90\x12\x00\x00\x00\x00\x00\x00";
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cut_assert_equal_memory (abtAtrRes, sizeof (abtAtrRes) - 1, abtRx, szRx, cut_message ("Invalid received ATR_RES"));
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if (!res) { thread_res = -1; return (void*) thread_res; }
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res = nfc_target_receive_bytes (device, abtRx, &szRx);
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// cut_assert_true (res, cut_message ("Can't receive bytes from initiator"));
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// First pass
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res = nfc_target_receive_bytes (device, abtRx, &szRx, 500);
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cut_assert_true (res, cut_message ("Can't receive bytes from initiator: %s", nfc_strerror (device)));
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uint8_t abtAttRx[] = "Hello DEP target!";
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// cut_assert_equal_memory (abtAttRx, sizeof (abtAttRx), abtRx, szRx, cut_message ("Invalid received data"));
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const uint8_t abtAttRx[] = "Hello DEP target!";
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cut_assert_equal_memory (abtAttRx, sizeof (abtAttRx), abtRx, szRx, cut_message ("Invalid received data"));
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if (!res) { thread_res = -1; return (void*) thread_res; }
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uint8_t abtTx[] = "Hello DEP initiator!";
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res = nfc_target_send_bytes (device, abtTx, sizeof(abtTx));
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// cut_assert_true (res, cut_message ("Can't send bytes to initiator"));
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#endif
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const uint8_t abtTx[] = "Hello DEP initiator!";
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res = nfc_target_send_bytes (device, abtTx, sizeof(abtTx), 500);
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cut_assert_true (res, cut_message ("Can't send bytes to initiator: %s", nfc_strerror (device)));
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if (!res) { thread_res = -1; return (void*) thread_res; }
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// Second pass
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res = nfc_target_receive_bytes (device, abtRx, &szRx, 500);
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cut_assert_true (res, cut_message ("Can't receive bytes from initiator: %s", nfc_strerror (device)));
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cut_assert_equal_memory (abtAttRx, sizeof (abtAttRx), abtRx, szRx, cut_message ("Invalid received data"));
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if (!res) { thread_res = -1; return (void*) thread_res; }
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res = nfc_target_send_bytes (device, abtTx, sizeof(abtTx), 500);
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cut_assert_true (res, cut_message ("Can't send bytes to initiator: %s", nfc_strerror (device)));
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if (!res) { thread_res = -1; return (void*) thread_res; }
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// Third pass
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res = nfc_target_receive_bytes (device, abtRx, &szRx, 500);
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cut_assert_true (res, cut_message ("Can't receive bytes from initiator: %s", nfc_strerror (device)));
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cut_assert_equal_memory (abtAttRx, sizeof (abtAttRx), abtRx, szRx, cut_message ("Invalid received data"));
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if (!res) { thread_res = -1; return (void*) thread_res; }
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res = nfc_target_send_bytes (device, abtTx, sizeof(abtTx), 500);
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cut_assert_true (res, cut_message ("Can't send bytes to initiator: %s", nfc_strerror (device)));
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if (!res) { thread_res = -1; return (void*) thread_res; }
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return (void *) thread_res;
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}
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initiator_thread (void *arg)
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{
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intptr_t thread_res = 0;
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// nfc_device *device = ((struct thread_data *) arg)->device;
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nfc_device *device = ((struct thread_data *) arg)->device;
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cut_set_current_test_context (((struct thread_data *) arg)->cut_test_context);
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cut_fail("plop");
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#if 0
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/*
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* Wait some time for the other thread to initialise NFC device as target
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*/
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sleep (1);
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printf ("====================================\n");
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printf ("Activating initiator...\n");
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printf ("=========== INITIATOR %s =========\n", nfc_device_name (device));
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bool res = nfc_initiator_init (device);
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// cut_assert_true (res, cut_message ("Can't initialize NFC device as initiator"));
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cut_assert_true (res, cut_message ("Can't initialize NFC device as initiator: %s", nfc_strerror (device)));
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if (!res) { thread_res = -1; return (void*) thread_res; }
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nfc_target nt;
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// Passive mode / 212Kbps
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res = nfc_initiator_select_dep_target (device, NDM_PASSIVE, NBR_212, NULL, &nt);
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// cut_assert_true (res, cut_message ("Can't select any DEP target"));
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// cut_assert_equal_int (NMT_DEP, nt.nm.nmt, cut_message ("Invalid target modulation"));
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// cut_assert_equal_int (NBR_212, nt.nm.nbr, cut_message ("Invalid target baud rate"));
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// cut_assert_equal_memory ("\x11\x22\x33\x44\x55\x66\x77\x88\x99\xAA", 10, nt.nti.ndi.abtNFCID3, 10, cut_message ("Invalid target NFCID3"));
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// cut_assert_equal_int (NDM_PASSIVE, nt.nti.ndi.ndm, cut_message ("Invalid target DEP mode"));
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// cut_assert_equal_memory ("\x12\x34\x56\x78", 4, nt.nti.ndi.abtGB, nt.nti.ndi.szGB, cut_message ("Invalid target general bytes"));
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printf ("=========== INITIATOR %s (Passive mode / 212Kbps) =========\n", nfc_device_name (device));
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res = nfc_initiator_select_dep_target (device, NDM_PASSIVE, NBR_212, NULL, &nt, 5000);
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cut_assert_true (res, cut_message ("Can't select any DEP target: %s", nfc_strerror (device)));
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cut_assert_equal_int (NMT_DEP, nt.nm.nmt, cut_message ("Invalid target modulation"));
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cut_assert_equal_int (NBR_212, nt.nm.nbr, cut_message ("Invalid target baud rate"));
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cut_assert_equal_memory ("\x11\x22\x33\x44\x55\x66\x77\x88\x99\xAA", 10, nt.nti.ndi.abtNFCID3, 10, cut_message ("Invalid target NFCID3"));
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cut_assert_equal_int (NDM_PASSIVE, nt.nti.ndi.ndm, cut_message ("Invalid target DEP mode"));
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cut_assert_equal_memory ("\x12\x34\x56\x78", 4, nt.nti.ndi.abtGB, nt.nti.ndi.szGB, cut_message ("Invalid target general bytes"));
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if (!res) { thread_res = -1; return (void*) thread_res; }
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uint8_t abtTx[] = "Hello DEP target!";
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const uint8_t abtTx[] = "Hello DEP target!";
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uint8_t abtRx[1024];
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size_t szRx = sizeof (abtRx);
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res = nfc_initiator_transceive_bytes (device, abtTx, sizeof (abtTx), abtRx, &szRx);
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// cut_assert_true (res, cut_message ("Can't transceive bytes to target"));
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res = nfc_initiator_transceive_bytes (device, abtTx, sizeof (abtTx), abtRx, &szRx, 500);
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cut_assert_true (res, cut_message ("Can't transceive bytes to target: %s", nfc_strerror (device)));
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uint8_t abtAttRx[] = "Hello DEP initiator!";
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// cut_assert_equal_memory (abtAttRx, sizeof (abtAttRx), abtRx, szRx, cut_message ("Invalid received data"));
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const uint8_t abtAttRx[] = "Hello DEP initiator!";
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cut_assert_equal_memory (abtAttRx, sizeof (abtAttRx), abtRx, szRx, cut_message ("Invalid received data"));
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if (!res) { thread_res = -1; return (void*) thread_res; }
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res = nfc_initiator_deselect_target (device);
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// cut_assert_true (res, cut_message ("Can't deselect target"));
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#endif
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cut_assert_true (res, cut_message ("Can't deselect target: %s", nfc_strerror (device)));
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if (!res) { thread_res = -1; return (void*) thread_res; }
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// Passive mode / 212Kbps (second pass)
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printf ("=========== INITIATOR %s (Passive mode / 212Kbps, second pass) =========\n", nfc_device_name (device));
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res = nfc_initiator_select_dep_target (device, NDM_PASSIVE, NBR_212, NULL, &nt, 1000);
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cut_assert_true (res, cut_message ("Can't select any DEP target: %s", nfc_strerror (device)));
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cut_assert_equal_int (NMT_DEP, nt.nm.nmt, cut_message ("Invalid target modulation"));
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cut_assert_equal_int (NBR_212, nt.nm.nbr, cut_message ("Invalid target baud rate"));
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cut_assert_equal_memory ("\x11\x22\x33\x44\x55\x66\x77\x88\x99\xAA", 10, nt.nti.ndi.abtNFCID3, 10, cut_message ("Invalid target NFCID3"));
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cut_assert_equal_int (NDM_PASSIVE, nt.nti.ndi.ndm, cut_message ("Invalid target DEP mode"));
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cut_assert_equal_memory ("\x12\x34\x56\x78", 4, nt.nti.ndi.abtGB, nt.nti.ndi.szGB, cut_message ("Invalid target general bytes"));
|
||||
if (!res) { thread_res = -1; return (void*) thread_res; }
|
||||
|
||||
szRx = sizeof (abtRx);
|
||||
res = nfc_initiator_transceive_bytes (device, abtTx, sizeof (abtTx), abtRx, &szRx, 1000);
|
||||
cut_assert_true (res, cut_message ("Can't transceive bytes to target: %s", nfc_strerror (device)));
|
||||
|
||||
cut_assert_equal_memory (abtAttRx, sizeof (abtAttRx), abtRx, szRx, cut_message ("Invalid received data"));
|
||||
if (!res) { thread_res = -1; return (void*) thread_res; }
|
||||
|
||||
res = nfc_initiator_deselect_target (device);
|
||||
cut_assert_true (res, cut_message ("Can't deselect target: %s", nfc_strerror (device)));
|
||||
if (!res) { thread_res = -1; return (void*) thread_res; }
|
||||
|
||||
// Passive mode / 424Kbps
|
||||
printf ("=========== INITIATOR %s (Passive mode / 424Kbps) =========\n", nfc_device_name (device));
|
||||
res = nfc_initiator_select_dep_target (device, NDM_PASSIVE, NBR_424, NULL, &nt, 1000);
|
||||
cut_assert_true (res, cut_message ("Can't select any DEP target: %s", nfc_strerror (device)));
|
||||
cut_assert_equal_int (NMT_DEP, nt.nm.nmt, cut_message ("Invalid target modulation"));
|
||||
cut_assert_equal_int (NBR_424, nt.nm.nbr, cut_message ("Invalid target baud rate"));
|
||||
cut_assert_equal_memory ("\x11\x22\x33\x44\x55\x66\x77\x88\x99\xAA", 10, nt.nti.ndi.abtNFCID3, 10, cut_message ("Invalid target NFCID3"));
|
||||
cut_assert_equal_int (NDM_PASSIVE, nt.nti.ndi.ndm, cut_message ("Invalid target DEP mode"));
|
||||
cut_assert_equal_memory ("\x12\x34\x56\x78", 4, nt.nti.ndi.abtGB, nt.nti.ndi.szGB, cut_message ("Invalid target general bytes"));
|
||||
if (!res) { thread_res = -1; return (void*) thread_res; }
|
||||
|
||||
szRx = sizeof (abtRx);
|
||||
res = nfc_initiator_transceive_bytes (device, abtTx, sizeof (abtTx), abtRx, &szRx, 5000);
|
||||
cut_assert_true (res, cut_message ("Can't transceive bytes to target: %s", nfc_strerror (device)));
|
||||
|
||||
cut_assert_equal_memory (abtAttRx, sizeof (abtAttRx), abtRx, szRx, cut_message ("Invalid received data"));
|
||||
if (!res) { thread_res = -1; return (void*) thread_res; }
|
||||
|
||||
res = nfc_initiator_deselect_target (device);
|
||||
cut_assert_true (res, cut_message ("Can't deselect target: %s", nfc_strerror (device)));
|
||||
if (!res) { thread_res = -1; return (void*) thread_res; }
|
||||
|
||||
return (void *) thread_res;
|
||||
}
|
||||
|
||||
|
|
Loading…
Reference in a new issue