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6 Commits
cap_button
...
nfc_confor
Author | SHA1 | Date | |
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01b8503495 | |||
5d3914bc5e | |||
abe306a649 | |||
41ceb78f6c | |||
8e192f2363 | |||
affc256ca2 |
18
fido2/apdu.c
18
fido2/apdu.c
@ -9,7 +9,7 @@
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#include "apdu.h"
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int apdu_decode(uint8_t *data, size_t len, APDU_STRUCT *apdu)
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uint16_t apdu_decode(uint8_t *data, size_t len, APDU_STRUCT *apdu)
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{
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EXT_APDU_HEADER *hapdu = (EXT_APDU_HEADER *)data;
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@ -62,6 +62,11 @@ int apdu_decode(uint8_t *data, size_t len, APDU_STRUCT *apdu)
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if (len >= 7 && b0 == 0)
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{
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uint16_t extlen = (hapdu->lc[1] << 8) + hapdu->lc[2];
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if (len - 7 < extlen)
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{
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return SW_WRONG_LENGTH;
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}
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// case 2E (Le) - extended
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if (len == 7)
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@ -103,9 +108,18 @@ int apdu_decode(uint8_t *data, size_t len, APDU_STRUCT *apdu)
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apdu->le = 0x10000;
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}
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}
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else
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{
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if ((len > 5) && (len - 5 < hapdu->lc[0]))
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{
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return SW_WRONG_LENGTH;
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}
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}
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if (!apdu->case_type)
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return 1;
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{
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return SW_COND_USE_NOT_SATISFIED;
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}
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if (apdu->lc)
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{
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@ -36,7 +36,7 @@ typedef struct
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uint8_t case_type;
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} __attribute__((packed)) APDU_STRUCT;
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extern int apdu_decode(uint8_t *data, size_t len, APDU_STRUCT *apdu);
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extern uint16_t apdu_decode(uint8_t *data, size_t len, APDU_STRUCT *apdu);
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#define APDU_FIDO_U2F_REGISTER 0x01
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#define APDU_FIDO_U2F_AUTHENTICATE 0x02
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@ -486,7 +486,7 @@ static int ctap_make_auth_data(struct rpId * rp, CborEncoder * map, uint8_t * au
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device_set_status(CTAPHID_STATUS_PROCESSING);
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authData->head.flags = (but << 0);
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authData->head.flags = (1 << 0); // User presence
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authData->head.flags |= (ctap_is_pin_set() << 2);
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@ -55,7 +55,16 @@ static int is_physical_button_pressed()
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static int is_touch_button_pressed()
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{
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return tsc_read_button(0) || tsc_read_button(1);
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int is_pressed = (tsc_read_button(0) || tsc_read_button(1));
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#ifndef IS_BOOTLOADER
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if (is_pressed)
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{
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// delay for debounce, and longer than polling timer period.
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delay(95);
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return (tsc_read_button(0) || tsc_read_button(1));
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}
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#endif
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return is_pressed;
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}
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int (*IS_BUTTON_PRESSED)() = is_physical_button_pressed;
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@ -66,7 +75,7 @@ static void edge_detect_touch_button()
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uint8_t current_touch = 0;
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if (is_touch_button_pressed == IS_BUTTON_PRESSED)
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{
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current_touch = IS_BUTTON_PRESSED();
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current_touch = (tsc_read_button(0) || tsc_read_button(1));
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// 1 sample per 25 ms
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if ((millis() - __last_button_bounce_time) > 25)
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@ -153,7 +162,6 @@ void device_set_status(uint32_t status)
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int device_is_button_pressed()
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{
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return IS_BUTTON_PRESSED();
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}
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@ -784,9 +784,10 @@ void nfc_process_iblock(uint8_t * buf, int len)
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}
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APDU_STRUCT apdu;
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if (apdu_decode(buf + block_offset, len - block_offset, &apdu)) {
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uint16_t ret = apdu_decode(buf + block_offset, len - block_offset, &apdu);
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if (ret != 0) {
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printf1(TAG_NFC,"apdu decode error\r\n");
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nfc_write_response(buf[0], SW_COND_USE_NOT_SATISFIED);
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nfc_write_response(buf[0], ret);
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return;
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}
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printf1(TAG_NFC,"apdu ok. %scase=%02x cla=%02x ins=%02x p1=%02x p2=%02x lc=%d le=%d\r\n",
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@ -802,7 +803,6 @@ void nfc_process_iblock(uint8_t * buf, int len)
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memmove(&chain_buffer[chain_buffer_len], apdu.data, apdu.lc);
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chain_buffer_len += apdu.lc;
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delay(1);
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nfc_write_response(buf[0], SW_SUCCESS);
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printf1(TAG_NFC, "APDU chaining ok. %d/%d\r\n", apdu.lc, chain_buffer_len);
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return;
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@ -810,7 +810,6 @@ void nfc_process_iblock(uint8_t * buf, int len)
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// if we have ISO 7816 APDU chain - move there all the data
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if (!chain_buffer_tx && chain_buffer_len > 0) {
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delay(1);
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memmove(&apdu.data[chain_buffer_len], apdu.data, apdu.lc);
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memmove(apdu.data, chain_buffer, chain_buffer_len);
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apdu.lc += chain_buffer_len; // here apdu struct does not match with memory!
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