implement algorithms for generate
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@@ -29,3 +29,4 @@ option "reader" r "Only use a matching reader" string optional
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option "key" k "Authentication key to use" string optional default="010203040506070801020304050607080102030405060708"
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option "key" k "Authentication key to use" string optional default="010203040506070801020304050607080102030405060708"
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option "action" a "Action to take" values="version","generate" enum
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option "action" a "Action to take" values="version","generate" enum
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option "slot" s "What key slot to operate on" values="9a","9b","9c","9d","9e" enum optional
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option "slot" s "What key slot to operate on" values="9a","9b","9c","9d","9e" enum optional
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option "algorithm" A "What algorithm to use" values="RSA1024","RSA2048","ECCP256" enum optional default="RSA2048"
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+19
-6
@@ -231,7 +231,7 @@ static void print_version(SCARDHANDLE *card, int verbose) {
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}
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}
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}
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}
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static bool generate_key(SCARDHANDLE *card, const char *slot, int verbose) {
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static bool generate_key(SCARDHANDLE *card, const char *slot, enum enum_algorithm algorithm, int verbose) {
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APDU apdu;
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APDU apdu;
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unsigned char data[1024];
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unsigned char data[1024];
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unsigned long recv_len = 0xff;
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unsigned long recv_len = 0xff;
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@@ -249,7 +249,20 @@ static bool generate_key(SCARDHANDLE *card, const char *slot, int verbose) {
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apdu.st.data[1] = 3;
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apdu.st.data[1] = 3;
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apdu.st.data[2] = 0x80;
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apdu.st.data[2] = 0x80;
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apdu.st.data[3] = 1;
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apdu.st.data[3] = 1;
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apdu.st.data[4] = 0x07; /* rsa 2048 TODO: implement more */
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switch(algorithm) {
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case algorithm_arg_RSA2048:
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apdu.st.data[4] = 0x07;
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break;
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case algorithm_arg_RSA1024:
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apdu.st.data[4] = 0x06;
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break;
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case algorithm_arg_ECCP256:
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apdu.st.data[4] = 0x11;
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break;
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case algorithm__NULL:
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default:
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fprintf(stderr, "Unexepcted algorithm.\n");
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}
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sw = send_data(card, apdu, 10, data, &recv_len, verbose);
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sw = send_data(card, apdu, 10, data, &recv_len, verbose);
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/* chained response */
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/* chained response */
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@@ -261,9 +274,9 @@ static bool generate_key(SCARDHANDLE *card, const char *slot, int verbose) {
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sw = send_data(card, apdu, 4, data + received, &recv_len, verbose);
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sw = send_data(card, apdu, 4, data + received, &recv_len, verbose);
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received += recv_len;
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received += recv_len;
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}
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}
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if(sw != 0x9000) {
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return false;
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dump_hex(data, received);
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}
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return true;
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return true;
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}
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}
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@@ -358,7 +371,7 @@ int main(int argc, char *argv[]) {
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print_version(&card, args_info.verbose_flag);
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print_version(&card, args_info.verbose_flag);
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} else if(args_info.action_arg == action_arg_generate) {
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} else if(args_info.action_arg == action_arg_generate) {
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if(args_info.slot_arg != slot__NULL) {
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if(args_info.slot_arg != slot__NULL) {
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generate_key(&card, args_info.slot_orig, args_info.verbose_flag);
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generate_key(&card, args_info.slot_orig, args_info.algorithm_arg, args_info.verbose_flag);
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} else {
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} else {
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fprintf(stderr, "The generate command needs a slot (-s) to operate on.\n");
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fprintf(stderr, "The generate command needs a slot (-s) to operate on.\n");
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return EXIT_FAILURE;
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return EXIT_FAILURE;
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