One of the stages in IFS image loading process involves loading individual chunks (test patterns) from test image file to secure memory. Driver issues a WRMSR(MSR_AUTHENTICATE_AND_COPY_CHUNK) operation to do this. This operation can take up to 5 msec, and if an interrupt occurs in between, the AUTH_AND_COPY_CHUNK u-code implementation aborts the operation. Interrupt sources such as NMI or SMI are handled by retrying. Regular interrupts may occur frequently enough to prevent this operation from ever completing. Disable irq on local cpu around the aforementioned WRMSR to allow the operation to complete. Signed-off-by: Jithu Joseph <jithu.joseph@intel.com> Reviewed-by: Tony Luck <tony.luck@intel.com> Reviewed-by: Ashok Raj <ashok.raj@intel.com> Reviewed-by: Kuppuswamy Sathyanarayanan <sathyanarayanan.kuppuswamy@linux.intel.com> Link: https://lore.kernel.org/r/20240412172349.544064-4-jithu.joseph@intel.com Reviewed-by: Hans de Goede <hdegoede@redhat.com> Signed-off-by: Hans de Goede <hdegoede@redhat.com>
425 lines
12 KiB
C
425 lines
12 KiB
C
// SPDX-License-Identifier: GPL-2.0-only
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/* Copyright(c) 2022 Intel Corporation. */
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#include <linux/firmware.h>
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#include <linux/sizes.h>
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#include <asm/cpu.h>
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#include <asm/microcode.h>
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#include "ifs.h"
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#define IFS_CHUNK_ALIGNMENT 256
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union meta_data {
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struct {
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u32 meta_type; // metadata type
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u32 meta_size; // size of this entire struct including hdrs.
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u32 test_type; // IFS test type
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u32 fusa_info; // Fusa info
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u32 total_images; // Total number of images
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u32 current_image; // Current Image #
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u32 total_chunks; // Total number of chunks in this image
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u32 starting_chunk; // Starting chunk number in this image
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u32 size_per_chunk; // size of each chunk
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u32 chunks_per_stride; // number of chunks in a stride
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};
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u8 padding[IFS_CHUNK_ALIGNMENT];
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};
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#define IFS_HEADER_SIZE (sizeof(struct microcode_header_intel))
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#define META_TYPE_IFS 1
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#define INVALIDATE_STRIDE 0x1UL
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#define IFS_GEN_STRIDE_AWARE 2
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#define AUTH_INTERRUPTED_ERROR 5
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#define IFS_AUTH_RETRY_CT 10
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static struct microcode_header_intel *ifs_header_ptr; /* pointer to the ifs image header */
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static u64 ifs_hash_ptr; /* Address of ifs metadata (hash) */
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static u64 ifs_test_image_ptr; /* 256B aligned address of test pattern */
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static DECLARE_COMPLETION(ifs_done);
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static const char * const scan_hash_status[] = {
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[0] = "No error reported",
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[1] = "Attempt to copy scan hashes when copy already in progress",
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[2] = "Secure Memory not set up correctly",
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[3] = "FuSaInfo.ProgramID does not match or ff-mm-ss does not match",
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[4] = "Reserved",
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[5] = "Integrity check failed",
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[6] = "Scan reload or test is in progress"
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};
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static const char * const scan_authentication_status[] = {
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[0] = "No error reported",
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[1] = "Attempt to authenticate a chunk which is already marked as authentic",
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[2] = "Chunk authentication error. The hash of chunk did not match expected value",
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[3] = "Reserved",
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[4] = "Chunk outside the current stride",
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[5] = "Authentication flow interrupted",
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};
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#define MC_HEADER_META_TYPE_END (0)
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struct metadata_header {
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unsigned int type;
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unsigned int blk_size;
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};
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static struct metadata_header *find_meta_data(void *ucode, unsigned int meta_type)
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{
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struct microcode_header_intel *hdr = &((struct microcode_intel *)ucode)->hdr;
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struct metadata_header *meta_header;
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unsigned long data_size, total_meta;
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unsigned long meta_size = 0;
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data_size = intel_microcode_get_datasize(hdr);
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total_meta = hdr->metasize;
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if (!total_meta)
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return NULL;
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meta_header = (ucode + MC_HEADER_SIZE + data_size) - total_meta;
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while (meta_header->type != MC_HEADER_META_TYPE_END &&
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meta_header->blk_size &&
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meta_size < total_meta) {
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meta_size += meta_header->blk_size;
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if (meta_header->type == meta_type)
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return meta_header;
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meta_header = (void *)meta_header + meta_header->blk_size;
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}
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return NULL;
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}
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static void hashcopy_err_message(struct device *dev, u32 err_code)
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{
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if (err_code >= ARRAY_SIZE(scan_hash_status))
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dev_err(dev, "invalid error code 0x%x for hash copy\n", err_code);
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else
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dev_err(dev, "Hash copy error : %s\n", scan_hash_status[err_code]);
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}
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static void auth_err_message(struct device *dev, u32 err_code)
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{
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if (err_code >= ARRAY_SIZE(scan_authentication_status))
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dev_err(dev, "invalid error code 0x%x for authentication\n", err_code);
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else
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dev_err(dev, "Chunk authentication error : %s\n",
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scan_authentication_status[err_code]);
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}
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/*
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* To copy scan hashes and authenticate test chunks, the initiating cpu must point
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* to the EDX:EAX to the test image in linear address.
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* Run wrmsr(MSR_COPY_SCAN_HASHES) for scan hash copy and run wrmsr(MSR_AUTHENTICATE_AND_COPY_CHUNK)
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* for scan hash copy and test chunk authentication.
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*/
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static void copy_hashes_authenticate_chunks(struct work_struct *work)
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{
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struct ifs_work *local_work = container_of(work, struct ifs_work, w);
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union ifs_scan_hashes_status hashes_status;
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union ifs_chunks_auth_status chunk_status;
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struct device *dev = local_work->dev;
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int i, num_chunks, chunk_size;
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struct ifs_data *ifsd;
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u64 linear_addr, base;
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u32 err_code;
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ifsd = ifs_get_data(dev);
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/* run scan hash copy */
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wrmsrl(MSR_COPY_SCAN_HASHES, ifs_hash_ptr);
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rdmsrl(MSR_SCAN_HASHES_STATUS, hashes_status.data);
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/* enumerate the scan image information */
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num_chunks = hashes_status.num_chunks;
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chunk_size = hashes_status.chunk_size * 1024;
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err_code = hashes_status.error_code;
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if (!hashes_status.valid) {
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ifsd->loading_error = true;
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hashcopy_err_message(dev, err_code);
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goto done;
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}
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/* base linear address to the scan data */
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base = ifs_test_image_ptr;
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/* scan data authentication and copy chunks to secured memory */
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for (i = 0; i < num_chunks; i++) {
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linear_addr = base + i * chunk_size;
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linear_addr |= i;
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wrmsrl(MSR_AUTHENTICATE_AND_COPY_CHUNK, linear_addr);
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rdmsrl(MSR_CHUNKS_AUTHENTICATION_STATUS, chunk_status.data);
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ifsd->valid_chunks = chunk_status.valid_chunks;
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err_code = chunk_status.error_code;
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if (err_code) {
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ifsd->loading_error = true;
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auth_err_message(dev, err_code);
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goto done;
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}
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}
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done:
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complete(&ifs_done);
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}
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static int get_num_chunks(int gen, union ifs_scan_hashes_status_gen2 status)
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{
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return gen >= IFS_GEN_STRIDE_AWARE ? status.chunks_in_stride : status.num_chunks;
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}
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static bool need_copy_scan_hashes(struct ifs_data *ifsd)
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{
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return !ifsd->loaded ||
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ifsd->generation < IFS_GEN_STRIDE_AWARE ||
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ifsd->loaded_version != ifs_header_ptr->rev;
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}
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static int copy_hashes_authenticate_chunks_gen2(struct device *dev)
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{
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union ifs_scan_hashes_status_gen2 hashes_status;
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union ifs_chunks_auth_status_gen2 chunk_status;
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u32 err_code, valid_chunks, total_chunks;
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int i, num_chunks, chunk_size;
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union meta_data *ifs_meta;
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int starting_chunk_nr;
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struct ifs_data *ifsd;
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u64 linear_addr, base;
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u64 chunk_table[2];
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int retry_count;
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ifsd = ifs_get_data(dev);
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if (need_copy_scan_hashes(ifsd)) {
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wrmsrl(MSR_COPY_SCAN_HASHES, ifs_hash_ptr);
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rdmsrl(MSR_SCAN_HASHES_STATUS, hashes_status.data);
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/* enumerate the scan image information */
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chunk_size = hashes_status.chunk_size * SZ_1K;
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err_code = hashes_status.error_code;
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num_chunks = get_num_chunks(ifsd->generation, hashes_status);
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if (!hashes_status.valid) {
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hashcopy_err_message(dev, err_code);
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return -EIO;
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}
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ifsd->loaded_version = ifs_header_ptr->rev;
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ifsd->chunk_size = chunk_size;
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} else {
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num_chunks = ifsd->valid_chunks;
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chunk_size = ifsd->chunk_size;
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}
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if (ifsd->generation >= IFS_GEN_STRIDE_AWARE) {
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wrmsrl(MSR_SAF_CTRL, INVALIDATE_STRIDE);
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rdmsrl(MSR_CHUNKS_AUTHENTICATION_STATUS, chunk_status.data);
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if (chunk_status.valid_chunks != 0) {
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dev_err(dev, "Couldn't invalidate installed stride - %d\n",
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chunk_status.valid_chunks);
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return -EIO;
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}
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}
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base = ifs_test_image_ptr;
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ifs_meta = (union meta_data *)find_meta_data(ifs_header_ptr, META_TYPE_IFS);
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starting_chunk_nr = ifs_meta->starting_chunk;
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/* scan data authentication and copy chunks to secured memory */
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for (i = 0; i < num_chunks; i++) {
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retry_count = IFS_AUTH_RETRY_CT;
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linear_addr = base + i * chunk_size;
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chunk_table[0] = starting_chunk_nr + i;
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chunk_table[1] = linear_addr;
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do {
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local_irq_disable();
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wrmsrl(MSR_AUTHENTICATE_AND_COPY_CHUNK, (u64)chunk_table);
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local_irq_enable();
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rdmsrl(MSR_CHUNKS_AUTHENTICATION_STATUS, chunk_status.data);
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err_code = chunk_status.error_code;
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} while (err_code == AUTH_INTERRUPTED_ERROR && --retry_count);
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if (err_code) {
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ifsd->loading_error = true;
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auth_err_message(dev, err_code);
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return -EIO;
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}
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}
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valid_chunks = chunk_status.valid_chunks;
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total_chunks = chunk_status.total_chunks;
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if (valid_chunks != total_chunks) {
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ifsd->loading_error = true;
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dev_err(dev, "Couldn't authenticate all the chunks. Authenticated %d total %d.\n",
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valid_chunks, total_chunks);
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return -EIO;
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}
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ifsd->valid_chunks = valid_chunks;
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return 0;
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}
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static int validate_ifs_metadata(struct device *dev)
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{
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struct ifs_data *ifsd = ifs_get_data(dev);
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union meta_data *ifs_meta;
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char test_file[64];
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int ret = -EINVAL;
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snprintf(test_file, sizeof(test_file), "%02x-%02x-%02x-%02x.scan",
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boot_cpu_data.x86, boot_cpu_data.x86_model,
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boot_cpu_data.x86_stepping, ifsd->cur_batch);
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ifs_meta = (union meta_data *)find_meta_data(ifs_header_ptr, META_TYPE_IFS);
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if (!ifs_meta) {
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dev_err(dev, "IFS Metadata missing in file %s\n", test_file);
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return ret;
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}
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ifs_test_image_ptr = (u64)ifs_meta + sizeof(union meta_data);
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/* Scan chunk start must be 256 byte aligned */
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if (!IS_ALIGNED(ifs_test_image_ptr, IFS_CHUNK_ALIGNMENT)) {
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dev_err(dev, "Scan pattern is not aligned on %d bytes aligned in %s\n",
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IFS_CHUNK_ALIGNMENT, test_file);
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return ret;
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}
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if (ifs_meta->current_image != ifsd->cur_batch) {
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dev_warn(dev, "Mismatch between filename %s and batch metadata 0x%02x\n",
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test_file, ifs_meta->current_image);
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return ret;
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}
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if (ifs_meta->chunks_per_stride &&
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(ifs_meta->starting_chunk % ifs_meta->chunks_per_stride != 0)) {
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dev_warn(dev, "Starting chunk num %u not a multiple of chunks_per_stride %u\n",
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ifs_meta->starting_chunk, ifs_meta->chunks_per_stride);
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return ret;
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}
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return 0;
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}
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/*
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* IFS requires scan chunks authenticated per each socket in the platform.
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* Once the test chunk is authenticated, it is automatically copied to secured memory
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* and proceed the authentication for the next chunk.
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*/
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static int scan_chunks_sanity_check(struct device *dev)
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{
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struct ifs_data *ifsd = ifs_get_data(dev);
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struct ifs_work local_work;
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int curr_pkg, cpu, ret;
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memset(ifs_pkg_auth, 0, (topology_max_packages() * sizeof(bool)));
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ret = validate_ifs_metadata(dev);
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if (ret)
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return ret;
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ifsd->loading_error = false;
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if (ifsd->generation > 0)
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return copy_hashes_authenticate_chunks_gen2(dev);
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/* copy the scan hash and authenticate per package */
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cpus_read_lock();
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for_each_online_cpu(cpu) {
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curr_pkg = topology_physical_package_id(cpu);
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if (ifs_pkg_auth[curr_pkg])
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continue;
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reinit_completion(&ifs_done);
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local_work.dev = dev;
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INIT_WORK_ONSTACK(&local_work.w, copy_hashes_authenticate_chunks);
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schedule_work_on(cpu, &local_work.w);
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wait_for_completion(&ifs_done);
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if (ifsd->loading_error) {
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ret = -EIO;
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goto out;
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}
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ifs_pkg_auth[curr_pkg] = 1;
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}
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ret = 0;
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ifsd->loaded_version = ifs_header_ptr->rev;
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out:
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cpus_read_unlock();
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return ret;
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}
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static int image_sanity_check(struct device *dev, const struct microcode_header_intel *data)
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{
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struct cpu_signature sig;
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/* Provide a specific error message when loading an older/unsupported image */
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if (data->hdrver != MC_HEADER_TYPE_IFS) {
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dev_err(dev, "Header version %d not supported\n", data->hdrver);
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return -EINVAL;
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}
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if (intel_microcode_sanity_check((void *)data, true, MC_HEADER_TYPE_IFS)) {
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dev_err(dev, "sanity check failed\n");
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return -EINVAL;
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}
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intel_collect_cpu_info(&sig);
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if (!intel_find_matching_signature((void *)data, &sig)) {
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dev_err(dev, "cpu signature, processor flags not matching\n");
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return -EINVAL;
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}
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return 0;
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}
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/*
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* Load ifs image. Before loading ifs module, the ifs image must be located
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* in /lib/firmware/intel/ifs_x/ and named as family-model-stepping-02x.{testname}.
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*/
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int ifs_load_firmware(struct device *dev)
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{
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const struct ifs_test_caps *test = ifs_get_test_caps(dev);
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struct ifs_data *ifsd = ifs_get_data(dev);
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unsigned int expected_size;
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const struct firmware *fw;
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char scan_path[64];
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int ret;
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snprintf(scan_path, sizeof(scan_path), "intel/ifs_%d/%02x-%02x-%02x-%02x.scan",
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test->test_num, boot_cpu_data.x86, boot_cpu_data.x86_model,
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boot_cpu_data.x86_stepping, ifsd->cur_batch);
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ret = request_firmware_direct(&fw, scan_path, dev);
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if (ret) {
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dev_err(dev, "ifs file %s load failed\n", scan_path);
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goto done;
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}
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expected_size = ((struct microcode_header_intel *)fw->data)->totalsize;
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if (fw->size != expected_size) {
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dev_err(dev, "File size mismatch (expected %u, actual %zu). Corrupted IFS image.\n",
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expected_size, fw->size);
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ret = -EINVAL;
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goto release;
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}
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ret = image_sanity_check(dev, (struct microcode_header_intel *)fw->data);
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if (ret)
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goto release;
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ifs_header_ptr = (struct microcode_header_intel *)fw->data;
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ifs_hash_ptr = (u64)(ifs_header_ptr + 1);
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ret = scan_chunks_sanity_check(dev);
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if (ret)
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dev_err(dev, "Load failure for batch: %02x\n", ifsd->cur_batch);
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release:
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release_firmware(fw);
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done:
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ifsd->loaded = (ret == 0);
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return ret;
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}
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