mirror of
https://github.com/Telecominfraproject/OpenCellular.git
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Previously, vb2_unpack_key() actually unpacked a key buffer. Callers
that had a vb2_packed_key had to typecast it back to a uint8_t buffer to
unpack it. Rename vb2_unpack_key() to vb2_unpack_key_buffer(), and make
vb2_unpack_key() unpack a vb2_packed_key.
BUG=chromium:611535
BRANCH=none
TEST=make runtests; emerge-kevin coreboot depthcharge;
emerge-samus and boot it
Change-Id: I9ee38a819c59cc58a72ead78cf5ddf3d0f301ae7
Signed-off-by: Randall Spangler <rspangler@chromium.org>
Reviewed-on: https://chromium-review.googlesource.com/400906
Reviewed-by: Daisuke Nojiri <dnojiri@chromium.org>
216 lines
5.5 KiB
C
216 lines
5.5 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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* Externally-callable APIs
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* (Firmware portion)
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*/
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#include "2sysincludes.h"
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#include "2api.h"
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#include "2misc.h"
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#include "2nvstorage.h"
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#include "2secdata.h"
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#include "2sha.h"
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#include "2rsa.h"
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#include "vb2_common.h"
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int vb2api_fw_phase3(struct vb2_context *ctx)
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{
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int rv;
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/* Verify firmware keyblock */
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rv = vb2_load_fw_keyblock(ctx);
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if (rv) {
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vb2_fail(ctx, VB2_RECOVERY_RO_INVALID_RW, rv);
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return rv;
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}
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/* Verify firmware preamble */
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rv = vb2_load_fw_preamble(ctx);
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if (rv) {
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vb2_fail(ctx, VB2_RECOVERY_RO_INVALID_RW, rv);
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return rv;
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}
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return VB2_SUCCESS;
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}
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int vb2api_init_hash(struct vb2_context *ctx, uint32_t tag, uint32_t *size)
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{
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struct vb2_shared_data *sd = vb2_get_sd(ctx);
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const struct vb2_fw_preamble *pre;
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struct vb2_digest_context *dc;
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struct vb2_public_key key;
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struct vb2_workbuf wb;
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int rv;
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vb2_workbuf_from_ctx(ctx, &wb);
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if (tag == VB2_HASH_TAG_INVALID)
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return VB2_ERROR_API_INIT_HASH_TAG;
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/* Get preamble pointer */
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if (!sd->workbuf_preamble_size)
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return VB2_ERROR_API_INIT_HASH_PREAMBLE;
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pre = (const struct vb2_fw_preamble *)
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(ctx->workbuf + sd->workbuf_preamble_offset);
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/* For now, we only support the firmware body tag */
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if (tag != VB2_HASH_TAG_FW_BODY)
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return VB2_ERROR_API_INIT_HASH_TAG;
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/* Allocate workbuf space for the hash */
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if (sd->workbuf_hash_size) {
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dc = (struct vb2_digest_context *)
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(ctx->workbuf + sd->workbuf_hash_offset);
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} else {
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uint32_t dig_size = sizeof(*dc);
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dc = vb2_workbuf_alloc(&wb, dig_size);
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if (!dc)
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return VB2_ERROR_API_INIT_HASH_WORKBUF;
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sd->workbuf_hash_offset = vb2_offset_of(ctx->workbuf, dc);
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sd->workbuf_hash_size = dig_size;
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ctx->workbuf_used = sd->workbuf_hash_offset + dig_size;
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}
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/*
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* Work buffer now contains:
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* - vb2_shared_data
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* - packed firmware data key
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* - firmware preamble
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* - hash data
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*/
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/*
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* Unpack the firmware data key to see which hashing algorithm we
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* should use.
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*
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* TODO: really, the firmware body should be hashed, and not signed,
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* because the signature we're checking is already signed as part of
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* the firmware preamble. But until we can change the signing scripts,
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* we're stuck with a signature here instead of a hash.
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*/
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if (!sd->workbuf_data_key_size)
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return VB2_ERROR_API_INIT_HASH_DATA_KEY;
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rv = vb2_unpack_key_buffer(&key,
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ctx->workbuf + sd->workbuf_data_key_offset,
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sd->workbuf_data_key_size);
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if (rv)
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return rv;
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sd->hash_tag = tag;
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sd->hash_remaining_size = pre->body_signature.data_size;
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if (size)
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*size = pre->body_signature.data_size;
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if (!(pre->flags & VB2_FIRMWARE_PREAMBLE_DISALLOW_HWCRYPTO)) {
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rv = vb2ex_hwcrypto_digest_init(key.hash_alg,
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pre->body_signature.data_size);
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if (!rv) {
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VB2_DEBUG("Using HW crypto engine for hash_alg %d\n",
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key.hash_alg);
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dc->hash_alg = key.hash_alg;
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dc->using_hwcrypto = 1;
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return VB2_SUCCESS;
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}
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if (rv != VB2_ERROR_EX_HWCRYPTO_UNSUPPORTED)
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return rv;
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VB2_DEBUG("HW crypto for hash_alg %d not supported, using SW\n",
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key.hash_alg);
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} else {
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VB2_DEBUG("HW crypto forbidden by preamble, using SW\n");
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}
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return vb2_digest_init(dc, key.hash_alg);
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}
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int vb2api_check_hash_get_digest(struct vb2_context *ctx, void *digest_out,
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uint32_t digest_out_size)
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{
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struct vb2_shared_data *sd = vb2_get_sd(ctx);
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struct vb2_digest_context *dc = (struct vb2_digest_context *)
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(ctx->workbuf + sd->workbuf_hash_offset);
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struct vb2_workbuf wb;
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uint8_t *digest;
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uint32_t digest_size = vb2_digest_size(dc->hash_alg);
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struct vb2_fw_preamble *pre;
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struct vb2_public_key key;
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int rv;
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vb2_workbuf_from_ctx(ctx, &wb);
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/* Get preamble pointer */
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if (!sd->workbuf_preamble_size)
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return VB2_ERROR_API_CHECK_HASH_PREAMBLE;
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pre = (struct vb2_fw_preamble *)
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(ctx->workbuf + sd->workbuf_preamble_offset);
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/* Must have initialized hash digest work area */
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if (!sd->workbuf_hash_size)
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return VB2_ERROR_API_CHECK_HASH_WORKBUF;
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/* Should have hashed the right amount of data */
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if (sd->hash_remaining_size)
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return VB2_ERROR_API_CHECK_HASH_SIZE;
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/* Allocate the digest */
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digest = vb2_workbuf_alloc(&wb, digest_size);
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if (!digest)
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return VB2_ERROR_API_CHECK_HASH_WORKBUF_DIGEST;
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/* Finalize the digest */
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if (dc->using_hwcrypto)
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rv = vb2ex_hwcrypto_digest_finalize(digest, digest_size);
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else
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rv = vb2_digest_finalize(dc, digest, digest_size);
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if (rv)
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return rv;
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/* The code below is specific to the body signature */
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if (sd->hash_tag != VB2_HASH_TAG_FW_BODY)
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return VB2_ERROR_API_CHECK_HASH_TAG;
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/*
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* The body signature is currently a *signature* of the body data, not
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* just its hash. So we need to verify the signature.
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*/
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/* Unpack the data key */
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if (!sd->workbuf_data_key_size)
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return VB2_ERROR_API_CHECK_HASH_DATA_KEY;
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rv = vb2_unpack_key_buffer(&key,
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ctx->workbuf + sd->workbuf_data_key_offset,
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sd->workbuf_data_key_size);
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if (rv)
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return rv;
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/*
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* Check digest vs. signature. Note that this destroys the signature.
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* That's ok, because we only check each signature once per boot.
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*/
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rv = vb2_verify_digest(&key, &pre->body_signature, digest, &wb);
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if (rv)
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vb2_fail(ctx, VB2_RECOVERY_FW_BODY, rv);
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if (digest_out != NULL) {
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if (digest_out_size < digest_size)
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return VB2_ERROR_API_CHECK_DIGEST_SIZE;
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memcpy(digest_out, digest, digest_size);
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}
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return rv;
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}
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int vb2api_check_hash(struct vb2_context *ctx)
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{
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return vb2api_check_hash_get_digest(ctx, NULL, 0);
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}
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