and add the Enterprise / Commercial licensing option.
Main changes:
- Replace GPLv3 headers with AGPLv3 headers in source files.
- Update LICENSE file to the full AGPLv3 text.
- Add ENTERPRISE.md describing the dual-licensing model:
* Community Edition: AGPLv3 (strong copyleft, including network use).
* Enterprise / Commercial Edition: proprietary license for production /
multi-user / OEM use without the obligation to disclose derivative code.
- Update README with a new "License and Commercial Use" section pointing to
ENTERPRISE.md and clarifying how companies can obtain a commercial license.
Why this change:
- AGPLv3 ensures that modified versions offered as a service or deployed
in production environments must provide corresponding source code.
- The Enterprise / Commercial edition provides organizations with an
alternative proprietary license that allows internal, large-scale, or OEM
use (bulk provisioning, policy enforcement, inventory / revocation,
custom attestation, signed builds) without AGPL disclosure obligations.
This commit formally marks the first release that is dual-licensed:
AGPLv3 for the Community Edition and a proprietary commercial license
for Enterprise customers.
Signed-off-by: Pol Henarejos <pol.henarejos@cttc.es>
154 lines
4.6 KiB
C
154 lines
4.6 KiB
C
/*
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* This file is part of the Pico OpenPGP distribution (https://github.com/polhenarejos/pico-openpgp).
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* Copyright (c) 2022 Pol Henarejos.
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*
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* This program is free software: you can redistribute it and/or modify
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* it under the terms of the GNU Affero General Public License as published by
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* the Free Software Foundation, version 3.
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*
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* This program is distributed in the hope that it will be useful, but
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* WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
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* Affero General Public License for more details.
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*
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* You should have received a copy of the GNU Affero General Public License
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* along with this program. If not, see <https://www.gnu.org/licenses/>.
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*/
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#include "pico_keys.h"
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#include "apdu.h"
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#include "version.h"
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#include "files.h"
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#include "asn1.h"
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#include "management.h"
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int man_process_apdu();
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int man_unload();
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const uint8_t man_aid[] = {
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8,
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0xa0, 0x00, 0x00, 0x05, 0x27, 0x47, 0x11, 0x17
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};
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extern void init_piv();
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int man_select(app_t *a, uint8_t force) {
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(void) force;
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a->process_apdu = man_process_apdu;
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a->unload = man_unload;
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sprintf((char *) res_APDU, "%d.%d.0", PIV_VERSION_MAJOR, PIV_VERSION_MINOR);
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res_APDU_size = strlen((char *) res_APDU);
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apdu.ne = res_APDU_size;
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init_piv();
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return PICOKEY_OK;
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}
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INITIALIZER( man_ctor ) {
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register_app(man_select, man_aid);
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}
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int man_unload() {
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return PICOKEY_OK;
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}
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bool cap_supported(uint16_t cap) {
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file_t *ef = search_dynamic_file(EF_DEV_CONF);
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if (file_has_data(ef)) {
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uint16_t tag = 0x0;
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uint8_t *tag_data = NULL, *p = NULL;
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uint16_t tag_len = 0;
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asn1_ctx_t ctxi;
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asn1_ctx_init(file_get_data(ef), file_get_size(ef), &ctxi);
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while (walk_tlv(&ctxi, &p, &tag, &tag_len, &tag_data)) {
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if (tag == TAG_USB_ENABLED) {
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uint16_t ecaps = tag_data[0];
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if (tag_len == 2) {
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ecaps = (tag_data[0] << 8) | tag_data[1];
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}
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return ecaps & cap;
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}
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}
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}
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return true;
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}
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int man_get_config() {
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file_t *ef = search_dynamic_file(EF_DEV_CONF);
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res_APDU_size = 0;
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res_APDU[res_APDU_size++] = 0; // Overall length. Filled later
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res_APDU[res_APDU_size++] = TAG_USB_SUPPORTED;
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res_APDU[res_APDU_size++] = 1;
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res_APDU[res_APDU_size++] = CAP_PIV | CAP_OPENPGP;
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res_APDU[res_APDU_size++] = TAG_SERIAL;
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res_APDU[res_APDU_size++] = 4;
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memcpy(res_APDU + res_APDU_size, pico_serial.id, 4);
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res_APDU_size += 4;
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res_APDU[res_APDU_size++] = TAG_FORM_FACTOR;
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res_APDU[res_APDU_size++] = 1;
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res_APDU[res_APDU_size++] = 0x01;
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res_APDU[res_APDU_size++] = TAG_VERSION;
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res_APDU[res_APDU_size++] = 3;
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res_APDU[res_APDU_size++] = PIV_VERSION_MAJOR;
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res_APDU[res_APDU_size++] = PIV_VERSION_MINOR;
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res_APDU[res_APDU_size++] = 0;
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res_APDU[res_APDU_size++] = TAG_NFC_SUPPORTED;
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res_APDU[res_APDU_size++] = 1;
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res_APDU[res_APDU_size++] = 0x00;
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if (!file_has_data(ef)) {
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res_APDU[res_APDU_size++] = TAG_USB_ENABLED;
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res_APDU[res_APDU_size++] = 1;
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res_APDU[res_APDU_size++] = CAP_PIV | CAP_OPENPGP;
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res_APDU[res_APDU_size++] = TAG_DEVICE_FLAGS;
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res_APDU[res_APDU_size++] = 1;
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res_APDU[res_APDU_size++] = FLAG_EJECT;
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res_APDU[res_APDU_size++] = TAG_CONFIG_LOCK;
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res_APDU[res_APDU_size++] = 1;
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res_APDU[res_APDU_size++] = 0x00;
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res_APDU[res_APDU_size++] = TAG_NFC_ENABLED;
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res_APDU[res_APDU_size++] = 1;
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res_APDU[res_APDU_size++] = 0x00;
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}
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else {
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memcpy(res_APDU + res_APDU_size, file_get_data(ef), file_get_size(ef));
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res_APDU_size += file_get_size(ef);
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}
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res_APDU[0] = res_APDU_size - 1;
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return 0;
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}
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int cmd_read_config() {
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man_get_config();
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return SW_OK();
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}
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int cmd_write_config() {
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if (apdu.data[0] != apdu.nc - 1) {
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return SW_WRONG_DATA();
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}
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file_t *ef = file_new(EF_DEV_CONF);
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file_put_data(ef, apdu.data + 1, apdu.nc - 1);
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low_flash_available();
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return SW_OK();
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}
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#define INS_READ_CONFIG 0x1D
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#define INS_WRITE_CONFIG 0x1C
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static const cmd_t cmds[] = {
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{ INS_READ_CONFIG, cmd_read_config },
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{ INS_WRITE_CONFIG, cmd_write_config },
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{ 0x00, 0x0 }
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};
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int man_process_apdu() {
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if (CLA(apdu) != 0x00) {
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return SW_CLA_NOT_SUPPORTED();
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}
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for (const cmd_t *cmd = cmds; cmd->ins != 0x00; cmd++) {
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if (cmd->ins == INS(apdu)) {
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int r = cmd->cmd_handler();
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return r;
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}
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}
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return SW_INS_NOT_SUPPORTED();
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}
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