372 lines
10 KiB
C
372 lines
10 KiB
C
/* Copyright (c) 2014 The Chromium OS Authors. All rights reserved.
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* Use of this source code is governed by a BSD-style license that can be
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* found in the LICENSE file.
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*
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* Tests for api library, new style structs
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*/
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#include <stdio.h>
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#include "2api.h"
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#include "2common.h"
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#include "2misc.h"
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#include "2nvstorage.h"
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#include "2rsa.h"
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#include "2secdata.h"
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#include "2sysincludes.h"
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#include "host_key2.h"
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#include "host_signature2.h"
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#include "test_common.h"
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#include "vb21_common.h"
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/* Common context for tests */
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static uint8_t workbuf[VB2_FIRMWARE_WORKBUF_RECOMMENDED_SIZE]
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__attribute__ ((aligned (VB2_WORKBUF_ALIGN)));
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static struct vb2_context *ctx;
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static struct vb2_shared_data *sd;
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static const uint8_t mock_body[320] = "Mock body";
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static const int mock_body_size = sizeof(mock_body);
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static const int mock_hash_alg = VB2_HASH_SHA256;
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static int mock_sig_size;
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static const struct vb2_id test_id[4] = {
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{.raw = {0x11}},
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{.raw = {0x22}},
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{.raw = {0x33}},
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{.raw = {0x44}},
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};
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/* Mocked function data */
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static enum {
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HWCRYPTO_DISABLED,
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HWCRYPTO_ENABLED,
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HWCRYPTO_FORBIDDEN,
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} hwcrypto_state;
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static struct vb2_digest_context hwcrypto_emulation_dc;
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static vb2_error_t retval_hwcrypto;
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static vb2_error_t retval_vb21_load_fw_keyblock;
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static vb2_error_t retval_vb21_load_fw_preamble;
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/* Type of test to reset for */
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enum reset_type {
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FOR_MISC,
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FOR_EXTEND_HASH,
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FOR_CHECK_HASH,
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};
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static void reset_common_data(enum reset_type t)
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{
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const struct vb2_private_key *hash_key;
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struct vb21_fw_preamble *pre;
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struct vb21_signature *sig;
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uint32_t sig_offset;
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int i;
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memset(workbuf, 0xaa, sizeof(workbuf));
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TEST_SUCC(vb2api_init(workbuf, sizeof(workbuf), &ctx),
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"vb2api_init failed");
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sd = vb2_get_sd(ctx);
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vb2_nv_init(ctx);
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vb2api_secdata_firmware_create(ctx);
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vb2_secdata_firmware_init(ctx);
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memset(&hwcrypto_emulation_dc, 0, sizeof(hwcrypto_emulation_dc));
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retval_hwcrypto = VB2_SUCCESS;
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retval_vb21_load_fw_keyblock = VB2_SUCCESS;
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retval_vb21_load_fw_preamble = VB2_SUCCESS;
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vb2_private_key_hash(&hash_key, mock_hash_alg);
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sd->preamble_offset = sd->workbuf_used;
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pre = vb2_member_of(sd, sd->preamble_offset);
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pre->hash_count = 3;
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pre->hash_offset = sig_offset = sizeof(*pre);
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if (hwcrypto_state == HWCRYPTO_FORBIDDEN)
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pre->flags = VB21_FIRMWARE_PREAMBLE_DISALLOW_HWCRYPTO;
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else
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pre->flags = 0;
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for (i = 0; i < 3; i++) {
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vb21_sign_data(&sig, mock_body, mock_body_size - 16 * i,
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hash_key, NULL);
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memcpy(&sig->id, test_id + i, sizeof(sig->id));
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memcpy((uint8_t *)pre + sig_offset, sig, sig->c.total_size);
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sig_offset += sig->c.total_size;
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mock_sig_size = sig->c.total_size;
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free(sig);
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}
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sd->preamble_size = sig_offset;
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sd->workbuf_used = vb2_wb_round_up(sd->preamble_offset +
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sd->preamble_size);
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if (t == FOR_EXTEND_HASH || t == FOR_CHECK_HASH)
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vb21api_init_hash(ctx, test_id, NULL);
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if (t == FOR_CHECK_HASH)
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vb2api_extend_hash(ctx, mock_body, mock_body_size);
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};
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/* Mocked functions */
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vb2_error_t vb21_load_fw_keyblock(struct vb2_context *c)
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{
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return retval_vb21_load_fw_keyblock;
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}
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vb2_error_t vb21_load_fw_preamble(struct vb2_context *c)
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{
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return retval_vb21_load_fw_preamble;
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}
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vb2_error_t vb2ex_hwcrypto_digest_init(enum vb2_hash_algorithm hash_alg,
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uint32_t data_size)
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{
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vb2_digest_init(&hwcrypto_emulation_dc, hash_alg);
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switch (hwcrypto_state) {
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case HWCRYPTO_DISABLED:
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return VB2_ERROR_EX_HWCRYPTO_UNSUPPORTED;
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case HWCRYPTO_ENABLED:
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if (hash_alg != mock_hash_alg)
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return VB2_ERROR_SHA_INIT_ALGORITHM;
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else
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return retval_hwcrypto;
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case HWCRYPTO_FORBIDDEN:
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default:
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return VB2_ERROR_UNKNOWN;
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}
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}
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vb2_error_t vb2ex_hwcrypto_digest_extend(const uint8_t *buf, uint32_t size)
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{
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vb2_digest_extend(&hwcrypto_emulation_dc, buf, size);
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if (hwcrypto_state != HWCRYPTO_ENABLED)
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return VB2_ERROR_UNKNOWN;
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return retval_hwcrypto;
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}
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vb2_error_t vb2ex_hwcrypto_digest_finalize(uint8_t *digest,
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uint32_t digest_size)
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{
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vb2_digest_finalize(&hwcrypto_emulation_dc, digest, digest_size);
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if (hwcrypto_state != HWCRYPTO_ENABLED)
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return VB2_ERROR_UNKNOWN;
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return retval_hwcrypto;
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}
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/* Tests */
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static void phase3_tests(void)
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{
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reset_common_data(FOR_MISC);
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TEST_SUCC(vb21api_fw_phase3(ctx), "phase3 good");
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reset_common_data(FOR_MISC);
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retval_vb21_load_fw_keyblock = VB2_ERROR_MOCK;
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TEST_EQ(vb21api_fw_phase3(ctx), VB2_ERROR_MOCK, "phase3 keyblock");
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TEST_EQ(vb2_nv_get(ctx, VB2_NV_RECOVERY_REQUEST),
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VB2_RECOVERY_RO_INVALID_RW, " recovery reason");
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reset_common_data(FOR_MISC);
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retval_vb21_load_fw_preamble = VB2_ERROR_MOCK;
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TEST_EQ(vb21api_fw_phase3(ctx), VB2_ERROR_MOCK, "phase3 keyblock");
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TEST_EQ(vb2_nv_get(ctx, VB2_NV_RECOVERY_REQUEST),
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VB2_RECOVERY_RO_INVALID_RW, " recovery reason");
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}
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static void init_hash_tests(void)
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{
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struct vb21_fw_preamble *pre;
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struct vb21_signature *sig;
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int expected_offset;
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int wb_used_before;
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uint32_t size;
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reset_common_data(FOR_MISC);
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pre = vb2_member_of(sd, sd->preamble_offset);
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sig = (struct vb21_signature *)((uint8_t *)pre + pre->hash_offset);
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expected_offset = sd->workbuf_used;
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TEST_SUCC(vb21api_init_hash(ctx, test_id, &size),
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"init hash good");
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TEST_EQ(sd->hash_offset, expected_offset,
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"hash context offset");
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TEST_EQ(sd->hash_size, sizeof(struct vb2_digest_context),
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"hash context size");
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TEST_EQ(sd->workbuf_used,
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vb2_wb_round_up(sd->hash_offset +
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sd->hash_size),
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"hash uses workbuf");
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TEST_EQ(sd->hash_tag,
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sd->preamble_offset + pre->hash_offset,
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"hash signature offset");
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TEST_EQ(sd->hash_remaining_size, mock_body_size, "hash remaining");
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wb_used_before = sd->workbuf_used;
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TEST_SUCC(vb21api_init_hash(ctx, test_id + 2, NULL),
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"init hash again");
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TEST_EQ(sd->workbuf_used, wb_used_before, "init hash reuses context");
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TEST_EQ(sd->hash_tag,
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sd->preamble_offset + pre->hash_offset +
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2 * mock_sig_size,
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"hash signature offset 2");
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reset_common_data(FOR_MISC);
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TEST_EQ(vb21api_init_hash(ctx, test_id + 3, &size),
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VB2_ERROR_API_INIT_HASH_ID, "init hash invalid id");
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reset_common_data(FOR_MISC);
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sd->preamble_size = 0;
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TEST_EQ(vb21api_init_hash(ctx, test_id, &size),
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VB2_ERROR_API_INIT_HASH_PREAMBLE, "init hash preamble");
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reset_common_data(FOR_MISC);
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sd->workbuf_used = sd->workbuf_size + VB2_WORKBUF_ALIGN -
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vb2_wb_round_up(sizeof(struct vb2_digest_context));
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TEST_EQ(vb21api_init_hash(ctx, test_id, &size),
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VB2_ERROR_API_INIT_HASH_WORKBUF, "init hash workbuf");
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reset_common_data(FOR_MISC);
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sig->hash_alg = VB2_HASH_INVALID;
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TEST_EQ(vb21api_init_hash(ctx, test_id, &size),
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VB2_ERROR_SHA_INIT_ALGORITHM, "init hash algorithm");
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if (hwcrypto_state == HWCRYPTO_ENABLED) {
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reset_common_data(FOR_MISC);
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retval_hwcrypto = VB2_ERROR_MOCK;
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TEST_EQ(vb21api_init_hash(ctx, test_id, &size),
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VB2_ERROR_MOCK, "init hash use hwcrypto");
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}
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}
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static void extend_hash_tests(void)
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{
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struct vb2_digest_context *dc;
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reset_common_data(FOR_EXTEND_HASH);
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TEST_SUCC(vb2api_extend_hash(ctx, mock_body, 32),
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"hash extend good");
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TEST_EQ(sd->hash_remaining_size, mock_body_size - 32,
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"hash extend remaining");
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TEST_SUCC(vb2api_extend_hash(ctx, mock_body, mock_body_size - 32),
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"hash extend again");
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TEST_EQ(sd->hash_remaining_size, 0, "hash extend remaining 2");
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reset_common_data(FOR_EXTEND_HASH);
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sd->hash_size = 0;
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TEST_EQ(vb2api_extend_hash(ctx, mock_body, mock_body_size),
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VB2_ERROR_API_EXTEND_HASH_WORKBUF, "hash extend no workbuf");
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reset_common_data(FOR_EXTEND_HASH);
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TEST_EQ(vb2api_extend_hash(ctx, mock_body, mock_body_size + 1),
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VB2_ERROR_API_EXTEND_HASH_SIZE, "hash extend too much");
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reset_common_data(FOR_EXTEND_HASH);
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TEST_EQ(vb2api_extend_hash(ctx, mock_body, 0),
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VB2_ERROR_API_EXTEND_HASH_SIZE, "hash extend empty");
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if (hwcrypto_state == HWCRYPTO_ENABLED) {
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reset_common_data(FOR_EXTEND_HASH);
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retval_hwcrypto = VB2_ERROR_MOCK;
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TEST_EQ(vb2api_extend_hash(ctx, mock_body, mock_body_size),
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VB2_ERROR_MOCK, "hash extend use hwcrypto");
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} else {
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reset_common_data(FOR_EXTEND_HASH);
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dc = (struct vb2_digest_context *)
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vb2_member_of(sd, sd->hash_offset);
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dc->hash_alg = VB2_HASH_INVALID;
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TEST_EQ(vb2api_extend_hash(ctx, mock_body, mock_body_size),
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VB2_ERROR_SHA_EXTEND_ALGORITHM, "hash extend fail");
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}
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}
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static void check_hash_tests(void)
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{
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struct vb21_fw_preamble *pre;
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struct vb21_signature *sig;
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struct vb2_digest_context *dc;
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reset_common_data(FOR_CHECK_HASH);
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pre = vb2_member_of(sd, sd->preamble_offset);
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sig = vb2_member_of(pre, pre->hash_offset);
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dc = vb2_member_of(sd, sd->hash_offset);
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TEST_SUCC(vb21api_check_hash(ctx), "check hash good");
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reset_common_data(FOR_CHECK_HASH);
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sd->hash_tag = 0;
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TEST_EQ(vb21api_check_hash(ctx),
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VB2_ERROR_API_CHECK_HASH_TAG, "check hash tag");
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reset_common_data(FOR_CHECK_HASH);
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sd->hash_size = 0;
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TEST_EQ(vb21api_check_hash(ctx),
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VB2_ERROR_API_CHECK_HASH_WORKBUF, "check hash no workbuf");
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reset_common_data(FOR_CHECK_HASH);
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sd->hash_remaining_size = 1;
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TEST_EQ(vb21api_check_hash(ctx),
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VB2_ERROR_API_CHECK_HASH_SIZE, "check hash size");
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reset_common_data(FOR_CHECK_HASH);
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sd->workbuf_used = sd->workbuf_size;
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TEST_EQ(vb21api_check_hash(ctx),
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VB2_ERROR_API_CHECK_HASH_WORKBUF_DIGEST, "check hash workbuf");
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reset_common_data(FOR_CHECK_HASH);
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*((uint8_t *)sig + sig->sig_offset) ^= 0x55;
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TEST_EQ(vb21api_check_hash(ctx),
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VB2_ERROR_API_CHECK_HASH_SIG, "check hash sig");
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if (hwcrypto_state == HWCRYPTO_ENABLED) {
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reset_common_data(FOR_CHECK_HASH);
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retval_hwcrypto = VB2_ERROR_MOCK;
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TEST_EQ(vb21api_check_hash(ctx),
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VB2_ERROR_MOCK, "check hash use hwcrypto");
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} else {
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reset_common_data(FOR_CHECK_HASH);
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dc->hash_alg = VB2_HASH_INVALID;
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*((uint8_t *)sig + sig->sig_offset) ^= 0x55;
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TEST_EQ(vb21api_check_hash(ctx),
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VB2_ERROR_SHA_FINALIZE_ALGORITHM, "check hash finaliz");
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}
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}
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int main(int argc, char* argv[])
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{
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phase3_tests();
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fprintf(stderr, "Running hash API tests without hwcrypto support...\n");
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hwcrypto_state = HWCRYPTO_DISABLED;
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init_hash_tests();
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extend_hash_tests();
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check_hash_tests();
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fprintf(stderr, "Running hash API tests with hwcrypto support...\n");
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hwcrypto_state = HWCRYPTO_ENABLED;
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init_hash_tests();
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extend_hash_tests();
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check_hash_tests();
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fprintf(stderr, "Running hash API tests with forbidden hwcrypto...\n");
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hwcrypto_state = HWCRYPTO_FORBIDDEN;
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init_hash_tests();
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extend_hash_tests();
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check_hash_tests();
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return gTestSuccess ? 0 : 255;
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}
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