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Randall Spanglere9213a72013-01-24 11:19:55 -08001/* Copyright (c) 2013 The Chromium OS Authors. All rights reserved.
Louis Yung-Chieh Lo4bbf21e2010-04-21 17:29:05 -07002 * Use of this source code is governed by a BSD-style license that can be
3 * found in the LICENSE file.
4 */
5
Alex Deymof5109732014-08-25 16:34:52 -07006#include <errno.h>
Louis Yung-Chieh Lo37f6b552010-04-22 21:22:22 -07007#include <string.h>
Randall Spangler3dcf9dc2010-06-02 12:46:17 -07008
Albert Chaulk534723a2013-03-20 14:46:50 -07009#include "../cgpt/cgpt.h"
Louis Yung-Chieh Lo0dce41c2010-05-17 22:45:30 -070010#include "cgptlib_internal.h"
Randall Spangler3dcf9dc2010-06-02 12:46:17 -070011#include "cgptlib_test.h"
Louis Yung-Chieh Lo49fa8e52010-04-30 16:10:48 -070012#include "crc32.h"
Louis Yung-Chieh Lob31ddce2010-05-21 16:35:44 +080013#include "crc32_test.h"
Louis Yung-Chieh Lo37f6b552010-04-22 21:22:22 -070014#include "gpt.h"
vbendeb3ecaf772010-06-24 16:19:53 -070015#include "test_common.h"
Albert Chaulk534723a2013-03-20 14:46:50 -070016#define _STUB_IMPLEMENTATION_
Louis Yung-Chieh Lo37f6b552010-04-22 21:22:22 -070017#include "utility.h"
18
Randall Spanglere9213a72013-01-24 11:19:55 -080019/*
20 * Testing partition layout (sector_bytes=512)
Louis Yung-Chieh Lo37f6b552010-04-22 21:22:22 -070021 *
22 * LBA Size Usage
Louis Yung-Chieh Lob17db3c2010-05-05 11:21:08 -070023 * ---------------------------------------------------------
Louis Yung-Chieh Lo37f6b552010-04-22 21:22:22 -070024 * 0 1 PMBR
25 * 1 1 primary partition header
26 * 2 32 primary partition entries (128B * 128)
Louis Yung-Chieh Lob17db3c2010-05-05 11:21:08 -070027 * 34 100 kernel A (index: 0)
28 * 134 100 root A (index: 1)
29 * 234 100 root B (index: 2)
30 * 334 100 kernel B (index: 3)
Louis Yung-Chieh Lo37f6b552010-04-22 21:22:22 -070031 * 434 32 secondary partition entries
32 * 466 1 secondary partition header
33 * 467
34 */
Louis Yung-Chieh Lob17db3c2010-05-05 11:21:08 -070035#define KERNEL_A 0
Randall Spangler3dcf9dc2010-06-02 12:46:17 -070036#define KERNEL_B 1
37#define ROOTFS_A 2
38#define ROOTFS_B 3
39#define KERNEL_X 2 /* Overload ROOTFS_A, for some GetNext tests */
40#define KERNEL_Y 3 /* Overload ROOTFS_B, for some GetNext tests */
Louis Yung-Chieh Lob17db3c2010-05-05 11:21:08 -070041
Louis Yung-Chieh Lo37f6b552010-04-22 21:22:22 -070042#define DEFAULT_SECTOR_SIZE 512
43#define MAX_SECTOR_SIZE 4096
44#define DEFAULT_DRIVE_SECTORS 467
Louis Yung-Chieh Lo49fa8e52010-04-30 16:10:48 -070045#define PARTITION_ENTRIES_SIZE TOTAL_ENTRIES_SIZE /* 16384 */
Louis Yung-Chieh Lo37f6b552010-04-22 21:22:22 -070046
Randall Spangler3dcf9dc2010-06-02 12:46:17 -070047static const Guid guid_zero = {{{0, 0, 0, 0, 0, {0, 0, 0, 0, 0, 0}}}};
48static const Guid guid_kernel = GPT_ENT_TYPE_CHROMEOS_KERNEL;
49static const Guid guid_rootfs = GPT_ENT_TYPE_CHROMEOS_ROOTFS;
50
Albert Chaulk534723a2013-03-20 14:46:50 -070051// cgpt_common.c requires these be defined if linked in.
52const char *progname = "CGPT-TEST";
53const char *command = "TEST";
54
Randall Spanglere9213a72013-01-24 11:19:55 -080055/*
56 * Copy a random-for-this-program-only Guid into the dest. The num parameter
Bill Richardsonaa8eda42010-08-27 09:31:26 -070057 * completely determines the Guid.
58 */
Randall Spanglere9213a72013-01-24 11:19:55 -080059static void SetGuid(void *dest, uint32_t num)
60{
61 Guid g = {{{num,0xd450,0x44bc,0xa6,0x93,
62 {0xb8,0xac,0x75,0x5f,0xcd,0x48}}}};
63 Memcpy(dest, &g, sizeof(Guid));
Bill Richardsonaa8eda42010-08-27 09:31:26 -070064}
Randall Spangler3dcf9dc2010-06-02 12:46:17 -070065
Randall Spanglere9213a72013-01-24 11:19:55 -080066/*
67 * Given a GptData pointer, first re-calculate entries CRC32 value, then reset
68 * header CRC32 value to 0, and calculate header CRC32 value. Both primary and
69 * secondary are updated.
70 */
71static void RefreshCrc32(GptData *gpt)
72{
73 GptHeader *header, *header2;
74 GptEntry *entries, *entries2;
Louis Yung-Chieh Lo37f6b552010-04-22 21:22:22 -070075
Randall Spanglere9213a72013-01-24 11:19:55 -080076 header = (GptHeader *)gpt->primary_header;
77 entries = (GptEntry *)gpt->primary_entries;
78 header2 = (GptHeader *)gpt->secondary_header;
79 entries2 = (GptEntry *)gpt->secondary_entries;
Louis Yung-Chieh Lo37f6b552010-04-22 21:22:22 -070080
Randall Spanglere9213a72013-01-24 11:19:55 -080081 header->entries_crc32 =
82 Crc32((uint8_t *)entries,
83 header->number_of_entries * header->size_of_entry);
84 header->header_crc32 = 0;
85 header->header_crc32 = Crc32((uint8_t *)header, header->size);
86 header2->entries_crc32 =
87 Crc32((uint8_t *)entries2,
88 header2->number_of_entries * header2->size_of_entry);
89 header2->header_crc32 = 0;
90 header2->header_crc32 = Crc32((uint8_t *)header2, header2->size);
Louis Yung-Chieh Lo49fa8e52010-04-30 16:10:48 -070091}
92
Randall Spanglere9213a72013-01-24 11:19:55 -080093static void ZeroHeaders(GptData *gpt)
94{
95 Memset(gpt->primary_header, 0, MAX_SECTOR_SIZE);
96 Memset(gpt->secondary_header, 0, MAX_SECTOR_SIZE);
Louis Yung-Chieh Lo49fa8e52010-04-30 16:10:48 -070097}
98
Randall Spanglere9213a72013-01-24 11:19:55 -080099static void ZeroEntries(GptData *gpt)
100{
101 Memset(gpt->primary_entries, 0, PARTITION_ENTRIES_SIZE);
102 Memset(gpt->secondary_entries, 0, PARTITION_ENTRIES_SIZE);
Louis Yung-Chieh Lo49fa8e52010-04-30 16:10:48 -0700103}
104
Randall Spanglere9213a72013-01-24 11:19:55 -0800105static void ZeroHeadersEntries(GptData *gpt)
106{
107 ZeroHeaders(gpt);
108 ZeroEntries(gpt);
Louis Yung-Chieh Lo37f6b552010-04-22 21:22:22 -0700109}
110
Randall Spanglere9213a72013-01-24 11:19:55 -0800111/*
112 * Return a pointer to a static GptData instance (no free is required).
Louis Yung-Chieh Lo37f6b552010-04-22 21:22:22 -0700113 * All fields are zero except 4 pointers linking to header and entries.
Randall Spanglere9213a72013-01-24 11:19:55 -0800114 * All content of headers and entries are zero.
115 */
116static GptData *GetEmptyGptData(void)
117{
118 static GptData gpt;
119 static uint8_t primary_header[MAX_SECTOR_SIZE];
120 static uint8_t primary_entries[PARTITION_ENTRIES_SIZE];
121 static uint8_t secondary_header[MAX_SECTOR_SIZE];
122 static uint8_t secondary_entries[PARTITION_ENTRIES_SIZE];
Louis Yung-Chieh Lo37f6b552010-04-22 21:22:22 -0700123
Randall Spanglere9213a72013-01-24 11:19:55 -0800124 Memset(&gpt, 0, sizeof(gpt));
125 gpt.primary_header = primary_header;
126 gpt.primary_entries = primary_entries;
127 gpt.secondary_header = secondary_header;
128 gpt.secondary_entries = secondary_entries;
129 ZeroHeadersEntries(&gpt);
Louis Yung-Chieh Lo37f6b552010-04-22 21:22:22 -0700130
Randall Spanglere9213a72013-01-24 11:19:55 -0800131 /* Initialize GptData internal states. */
132 gpt.current_kernel = CGPT_KERNEL_ENTRY_NOT_FOUND;
Louis Yung-Chieh Lob17db3c2010-05-05 11:21:08 -0700133
Randall Spanglere9213a72013-01-24 11:19:55 -0800134 return &gpt;
Louis Yung-Chieh Lo37f6b552010-04-22 21:22:22 -0700135}
136
Randall Spanglere9213a72013-01-24 11:19:55 -0800137/*
138 * Fill in most of fields and creates the layout described in the top of this
Louis Yung-Chieh Lo49fa8e52010-04-30 16:10:48 -0700139 * file. Before calling this function, primary/secondary header/entries must
140 * have been pointed to the buffer, say, a gpt returned from GetEmptyGptData().
141 * This function returns a good (valid) copy of GPT layout described in top of
Randall Spanglere9213a72013-01-24 11:19:55 -0800142 * this file.
143 */
144static void BuildTestGptData(GptData *gpt)
145{
146 GptHeader *header, *header2;
147 GptEntry *entries, *entries2;
148 Guid chromeos_kernel = GPT_ENT_TYPE_CHROMEOS_KERNEL;
149 Guid chromeos_rootfs = GPT_ENT_TYPE_CHROMEOS_ROOTFS;
Louis Yung-Chieh Lo37f6b552010-04-22 21:22:22 -0700150
Randall Spanglere9213a72013-01-24 11:19:55 -0800151 gpt->sector_bytes = DEFAULT_SECTOR_SIZE;
Dan Ehrenbergb3d38f52014-12-09 13:42:15 -0800152 gpt->streaming_drive_sectors =
153 gpt->gpt_drive_sectors = DEFAULT_DRIVE_SECTORS;
Randall Spanglere9213a72013-01-24 11:19:55 -0800154 gpt->current_kernel = CGPT_KERNEL_ENTRY_NOT_FOUND;
155 gpt->valid_headers = MASK_BOTH;
156 gpt->valid_entries = MASK_BOTH;
157 gpt->modified = 0;
Louis Yung-Chieh Lo37f6b552010-04-22 21:22:22 -0700158
Randall Spanglere9213a72013-01-24 11:19:55 -0800159 /* Build primary */
160 header = (GptHeader *)gpt->primary_header;
161 entries = (GptEntry *)gpt->primary_entries;
162 Memcpy(header->signature, GPT_HEADER_SIGNATURE,
163 sizeof(GPT_HEADER_SIGNATURE));
164 header->revision = GPT_HEADER_REVISION;
165 header->size = sizeof(GptHeader);
166 header->reserved_zero = 0;
167 header->my_lba = 1;
168 header->alternate_lba = DEFAULT_DRIVE_SECTORS - 1;
169 header->first_usable_lba = 34;
170 header->last_usable_lba = DEFAULT_DRIVE_SECTORS - 1 - 32 - 1; /* 433 */
171 header->entries_lba = 2;
172 /* 512B / 128B * 32sectors = 128 entries */
173 header->number_of_entries = 128;
174 header->size_of_entry = 128; /* bytes */
175 Memcpy(&entries[0].type, &chromeos_kernel, sizeof(chromeos_kernel));
176 SetGuid(&entries[0].unique, 0);
177 entries[0].starting_lba = 34;
178 entries[0].ending_lba = 133;
179 Memcpy(&entries[1].type, &chromeos_rootfs, sizeof(chromeos_rootfs));
180 SetGuid(&entries[1].unique, 1);
181 entries[1].starting_lba = 134;
182 entries[1].ending_lba = 232;
183 Memcpy(&entries[2].type, &chromeos_rootfs, sizeof(chromeos_rootfs));
184 SetGuid(&entries[2].unique, 2);
185 entries[2].starting_lba = 234;
186 entries[2].ending_lba = 331;
187 Memcpy(&entries[3].type, &chromeos_kernel, sizeof(chromeos_kernel));
188 SetGuid(&entries[3].unique, 3);
189 entries[3].starting_lba = 334;
190 entries[3].ending_lba = 430;
Louis Yung-Chieh Lo37f6b552010-04-22 21:22:22 -0700191
Randall Spanglere9213a72013-01-24 11:19:55 -0800192 /* Build secondary */
193 header2 = (GptHeader *)gpt->secondary_header;
194 entries2 = (GptEntry *)gpt->secondary_entries;
195 Memcpy(header2, header, sizeof(GptHeader));
196 Memcpy(entries2, entries, PARTITION_ENTRIES_SIZE);
197 header2->my_lba = DEFAULT_DRIVE_SECTORS - 1; /* 466 */
198 header2->alternate_lba = 1;
199 header2->entries_lba = DEFAULT_DRIVE_SECTORS - 1 - 32; /* 434 */
Louis Yung-Chieh Lo37f6b552010-04-22 21:22:22 -0700200
Randall Spanglere9213a72013-01-24 11:19:55 -0800201 RefreshCrc32(gpt);
Louis Yung-Chieh Lo37f6b552010-04-22 21:22:22 -0700202}
203
Randall Spanglere9213a72013-01-24 11:19:55 -0800204/*
205 * Test if the structures are the expected size; if this fails, struct packing
206 * is not working properly.
207 */
208static int StructSizeTest(void)
209{
Randall Spangler81d09962010-06-23 10:15:38 -0700210
Randall Spanglere9213a72013-01-24 11:19:55 -0800211 EXPECT(GUID_EXPECTED_SIZE == sizeof(Guid));
212 EXPECT(GPTHEADER_EXPECTED_SIZE == sizeof(GptHeader));
213 EXPECT(GPTENTRY_EXPECTED_SIZE == sizeof(GptEntry));
214 return TEST_OK;
Randall Spangler81d09962010-06-23 10:15:38 -0700215}
216
217
Randall Spanglere9213a72013-01-24 11:19:55 -0800218/* Test if the default structure returned by BuildTestGptData() is good. */
219static int TestBuildTestGptData(void)
220{
221 GptData *gpt;
Randall Spangler3dcf9dc2010-06-02 12:46:17 -0700222
Randall Spanglere9213a72013-01-24 11:19:55 -0800223 gpt = GetEmptyGptData();
224 BuildTestGptData(gpt);
225 EXPECT(GPT_SUCCESS == GptInit(gpt));
Randall Spangler0bda13f2013-01-24 12:25:26 -0800226 gpt->sector_bytes = 0;
227 EXPECT(GPT_ERROR_INVALID_SECTOR_SIZE == GptInit(gpt));
Randall Spanglere9213a72013-01-24 11:19:55 -0800228 return TEST_OK;
Louis Yung-Chieh Lo49fa8e52010-04-30 16:10:48 -0700229}
Louis Yung-Chieh Lo37f6b552010-04-22 21:22:22 -0700230
Randall Spanglere9213a72013-01-24 11:19:55 -0800231/*
232 * Test if wrong sector_bytes or drive_sectors is detected by GptInit().
233 * Currently we only support 512 bytes per sector. In the future, we may
234 * support other sizes. A too small drive_sectors should be rejected by
235 * GptInit().
236 */
237static int ParameterTests(void)
238{
239 GptData *gpt;
240 struct {
241 uint32_t sector_bytes;
242 uint64_t drive_sectors;
243 int expected_retval;
244 } cases[] = {
245 {512, DEFAULT_DRIVE_SECTORS, GPT_SUCCESS},
246 {520, DEFAULT_DRIVE_SECTORS, GPT_ERROR_INVALID_SECTOR_SIZE},
247 {512, 0, GPT_ERROR_INVALID_SECTOR_NUMBER},
248 {512, 66, GPT_ERROR_INVALID_SECTOR_NUMBER},
Nam T. Nguyen88458d92014-08-28 10:58:47 -0700249 {512, GPT_PMBR_SECTORS + GPT_HEADER_SECTORS * 2 +
Randall Spanglere9213a72013-01-24 11:19:55 -0800250 GPT_ENTRIES_SECTORS * 2, GPT_SUCCESS},
251 {4096, DEFAULT_DRIVE_SECTORS, GPT_ERROR_INVALID_SECTOR_SIZE},
252 };
253 int i;
Randall Spangler3dcf9dc2010-06-02 12:46:17 -0700254
Randall Spanglere9213a72013-01-24 11:19:55 -0800255 gpt = GetEmptyGptData();
256 for (i = 0; i < ARRAY_SIZE(cases); ++i) {
257 BuildTestGptData(gpt);
258 gpt->sector_bytes = cases[i].sector_bytes;
Dan Ehrenbergb3d38f52014-12-09 13:42:15 -0800259 gpt->streaming_drive_sectors =
260 gpt->gpt_drive_sectors = cases[i].drive_sectors;
Randall Spanglere9213a72013-01-24 11:19:55 -0800261 EXPECT(cases[i].expected_retval == CheckParameters(gpt));
262 }
Louis Yung-Chieh Lo37f6b552010-04-22 21:22:22 -0700263
Randall Spanglere9213a72013-01-24 11:19:55 -0800264 return TEST_OK;
Louis Yung-Chieh Lo37f6b552010-04-22 21:22:22 -0700265}
266
Randall Spanglere9213a72013-01-24 11:19:55 -0800267/* Test if header CRC in two copies are calculated. */
268static int HeaderCrcTest(void)
269{
270 GptData *gpt = GetEmptyGptData();
271 GptHeader *h1 = (GptHeader *)gpt->primary_header;
Randall Spangler3dcf9dc2010-06-02 12:46:17 -0700272
Randall Spanglere9213a72013-01-24 11:19:55 -0800273 BuildTestGptData(gpt);
274 EXPECT(HeaderCrc(h1) == h1->header_crc32);
Randall Spangler3dcf9dc2010-06-02 12:46:17 -0700275
Randall Spanglere9213a72013-01-24 11:19:55 -0800276 /* CRC covers first byte of header */
277 BuildTestGptData(gpt);
278 gpt->primary_header[0] ^= 0xa5;
279 EXPECT(HeaderCrc(h1) != h1->header_crc32);
Randall Spangler3dcf9dc2010-06-02 12:46:17 -0700280
Randall Spanglere9213a72013-01-24 11:19:55 -0800281 /* CRC covers last byte of header */
282 BuildTestGptData(gpt);
283 gpt->primary_header[h1->size - 1] ^= 0x5a;
284 EXPECT(HeaderCrc(h1) != h1->header_crc32);
Randall Spangler3dcf9dc2010-06-02 12:46:17 -0700285
Randall Spanglere9213a72013-01-24 11:19:55 -0800286 /* CRC only covers header */
287 BuildTestGptData(gpt);
288 gpt->primary_header[h1->size] ^= 0x5a;
289 EXPECT(HeaderCrc(h1) == h1->header_crc32);
Randall Spangler3dcf9dc2010-06-02 12:46:17 -0700290
Randall Spanglere9213a72013-01-24 11:19:55 -0800291 return TEST_OK;
Randall Spangler3dcf9dc2010-06-02 12:46:17 -0700292}
293
Randall Spangler0bda13f2013-01-24 12:25:26 -0800294/* Test if header-same comparison works. */
295static int HeaderSameTest(void)
296{
297 GptData *gpt = GetEmptyGptData();
298 GptHeader *h1 = (GptHeader *)gpt->primary_header;
299 GptHeader *h2 = (GptHeader *)gpt->secondary_header;
300 GptHeader h3;
301
302 EXPECT(0 == HeaderFieldsSame(h1, h2));
303
304 Memcpy(&h3, h2, sizeof(h3));
305 h3.signature[0] ^= 0xba;
306 EXPECT(1 == HeaderFieldsSame(h1, &h3));
307
308 Memcpy(&h3, h2, sizeof(h3));
309 h3.revision++;
310 EXPECT(1 == HeaderFieldsSame(h1, &h3));
311
312 Memcpy(&h3, h2, sizeof(h3));
313 h3.size++;
314 EXPECT(1 == HeaderFieldsSame(h1, &h3));
315
316 Memcpy(&h3, h2, sizeof(h3));
317 h3.reserved_zero++;
318 EXPECT(1 == HeaderFieldsSame(h1, &h3));
319
320 Memcpy(&h3, h2, sizeof(h3));
321 h3.first_usable_lba++;
322 EXPECT(1 == HeaderFieldsSame(h1, &h3));
323
324 Memcpy(&h3, h2, sizeof(h3));
325 h3.last_usable_lba++;
326 EXPECT(1 == HeaderFieldsSame(h1, &h3));
327
328 Memcpy(&h3, h2, sizeof(h3));
329 h3.disk_uuid.u.raw[0] ^= 0xba;
330 EXPECT(1 == HeaderFieldsSame(h1, &h3));
331
332 Memcpy(&h3, h2, sizeof(h3));
333 h3.number_of_entries++;
334 EXPECT(1 == HeaderFieldsSame(h1, &h3));
335
336 Memcpy(&h3, h2, sizeof(h3));
337 h3.size_of_entry++;
338 EXPECT(1 == HeaderFieldsSame(h1, &h3));
339
340 Memcpy(&h3, h2, sizeof(h3));
341 h3.entries_crc32++;
342 EXPECT(1 == HeaderFieldsSame(h1, &h3));
343
344 return TEST_OK;
345}
346
Randall Spanglere9213a72013-01-24 11:19:55 -0800347/* Test if signature ("EFI PART") is checked. */
348static int SignatureTest(void)
349{
350 GptData *gpt = GetEmptyGptData();
351 GptHeader *h1 = (GptHeader *)gpt->primary_header;
352 GptHeader *h2 = (GptHeader *)gpt->secondary_header;
353 int i;
Randall Spangler3dcf9dc2010-06-02 12:46:17 -0700354
Dan Ehrenbergb3d38f52014-12-09 13:42:15 -0800355 EXPECT(1 == CheckHeader(NULL, 0, gpt->streaming_drive_sectors, gpt->gpt_drive_sectors, 0));
Randall Spangler0bda13f2013-01-24 12:25:26 -0800356
Randall Spanglere9213a72013-01-24 11:19:55 -0800357 for (i = 0; i < 8; ++i) {
358 BuildTestGptData(gpt);
359 h1->signature[i] ^= 0xff;
360 h2->signature[i] ^= 0xff;
361 RefreshCrc32(gpt);
Dan Ehrenbergb3d38f52014-12-09 13:42:15 -0800362 EXPECT(1 == CheckHeader(h1, 0, gpt->streaming_drive_sectors, gpt->gpt_drive_sectors, 0));
363 EXPECT(1 == CheckHeader(h2, 1, gpt->streaming_drive_sectors, gpt->gpt_drive_sectors, 0));
Randall Spanglere9213a72013-01-24 11:19:55 -0800364 }
Louis Yung-Chieh Lo49fa8e52010-04-30 16:10:48 -0700365
Randall Spanglere9213a72013-01-24 11:19:55 -0800366 return TEST_OK;
Louis Yung-Chieh Lo49fa8e52010-04-30 16:10:48 -0700367}
368
Randall Spanglere9213a72013-01-24 11:19:55 -0800369/*
370 * The revision we currently support is GPT_HEADER_REVISION. If the revision
371 * in header is not that, we expect the header is invalid.
372 */
373static int RevisionTest(void)
374{
375 GptData *gpt = GetEmptyGptData();
376 GptHeader *h1 = (GptHeader *)gpt->primary_header;
377 GptHeader *h2 = (GptHeader *)gpt->secondary_header;
378 int i;
Randall Spangler3dcf9dc2010-06-02 12:46:17 -0700379
Randall Spanglere9213a72013-01-24 11:19:55 -0800380 struct {
381 uint32_t value_to_test;
382 int expect_rv;
383 } cases[] = {
384 {0x01000000, 1},
385 {0x00010000, 0}, /* GPT_HEADER_REVISION */
386 {0x00000100, 1},
387 {0x00000001, 1},
388 {0x23010456, 1},
389 };
Randall Spangler3dcf9dc2010-06-02 12:46:17 -0700390
Randall Spanglere9213a72013-01-24 11:19:55 -0800391 for (i = 0; i < ARRAY_SIZE(cases); ++i) {
392 BuildTestGptData(gpt);
393 h1->revision = cases[i].value_to_test;
394 h2->revision = cases[i].value_to_test;
395 RefreshCrc32(gpt);
Louis Yung-Chieh Lo49fa8e52010-04-30 16:10:48 -0700396
Dan Ehrenbergb3d38f52014-12-09 13:42:15 -0800397 EXPECT(CheckHeader(h1, 0, gpt->streaming_drive_sectors, gpt->gpt_drive_sectors, 0) ==
Randall Spanglere9213a72013-01-24 11:19:55 -0800398 cases[i].expect_rv);
Dan Ehrenbergb3d38f52014-12-09 13:42:15 -0800399 EXPECT(CheckHeader(h2, 1, gpt->streaming_drive_sectors, gpt->gpt_drive_sectors, 0) ==
Randall Spanglere9213a72013-01-24 11:19:55 -0800400 cases[i].expect_rv);
401 }
402 return TEST_OK;
Louis Yung-Chieh Lo49fa8e52010-04-30 16:10:48 -0700403}
404
Randall Spanglere9213a72013-01-24 11:19:55 -0800405static int SizeTest(void)
406{
407 GptData *gpt = GetEmptyGptData();
408 GptHeader *h1 = (GptHeader *)gpt->primary_header;
409 GptHeader *h2 = (GptHeader *)gpt->secondary_header;
410 int i;
Randall Spangler3dcf9dc2010-06-02 12:46:17 -0700411
Randall Spanglere9213a72013-01-24 11:19:55 -0800412 struct {
413 uint32_t value_to_test;
414 int expect_rv;
415 } cases[] = {
416 {91, 1},
417 {92, 0},
418 {93, 0},
419 {511, 0},
420 {512, 0},
421 {513, 1},
422 };
Randall Spangler3dcf9dc2010-06-02 12:46:17 -0700423
Randall Spanglere9213a72013-01-24 11:19:55 -0800424 for (i = 0; i < ARRAY_SIZE(cases); ++i) {
425 BuildTestGptData(gpt);
426 h1->size = cases[i].value_to_test;
427 h2->size = cases[i].value_to_test;
428 RefreshCrc32(gpt);
Louis Yung-Chieh Lo49fa8e52010-04-30 16:10:48 -0700429
Dan Ehrenbergb3d38f52014-12-09 13:42:15 -0800430 EXPECT(CheckHeader(h1, 0, gpt->streaming_drive_sectors, gpt->gpt_drive_sectors, 0) ==
Randall Spanglere9213a72013-01-24 11:19:55 -0800431 cases[i].expect_rv);
Dan Ehrenbergb3d38f52014-12-09 13:42:15 -0800432 EXPECT(CheckHeader(h2, 1, gpt->streaming_drive_sectors, gpt->gpt_drive_sectors, 0) ==
Randall Spanglere9213a72013-01-24 11:19:55 -0800433 cases[i].expect_rv);
434 }
435 return TEST_OK;
Louis Yung-Chieh Lo49fa8e52010-04-30 16:10:48 -0700436}
437
Randall Spanglere9213a72013-01-24 11:19:55 -0800438/* Test if CRC is checked. */
439static int CrcFieldTest(void)
440{
441 GptData *gpt = GetEmptyGptData();
442 GptHeader *h1 = (GptHeader *)gpt->primary_header;
443 GptHeader *h2 = (GptHeader *)gpt->secondary_header;
Randall Spangler3dcf9dc2010-06-02 12:46:17 -0700444
Randall Spanglere9213a72013-01-24 11:19:55 -0800445 BuildTestGptData(gpt);
446 /* Modify a field that the header verification doesn't care about */
447 h1->entries_crc32++;
448 h2->entries_crc32++;
Dan Ehrenbergb3d38f52014-12-09 13:42:15 -0800449 EXPECT(1 == CheckHeader(h1, 0, gpt->streaming_drive_sectors, gpt->gpt_drive_sectors, 0));
450 EXPECT(1 == CheckHeader(h2, 1, gpt->streaming_drive_sectors, gpt->gpt_drive_sectors, 0));
Randall Spanglere9213a72013-01-24 11:19:55 -0800451 /* Refresh the CRC; should pass now */
452 RefreshCrc32(gpt);
Dan Ehrenbergb3d38f52014-12-09 13:42:15 -0800453 EXPECT(0 == CheckHeader(h1, 0, gpt->streaming_drive_sectors, gpt->gpt_drive_sectors, 0));
454 EXPECT(0 == CheckHeader(h2, 1, gpt->streaming_drive_sectors, gpt->gpt_drive_sectors, 0));
Randall Spangler3dcf9dc2010-06-02 12:46:17 -0700455
Randall Spanglere9213a72013-01-24 11:19:55 -0800456 return TEST_OK;
Randall Spangler3dcf9dc2010-06-02 12:46:17 -0700457}
458
Randall Spanglere9213a72013-01-24 11:19:55 -0800459/* Test if reserved fields are checked. We'll try non-zero values to test. */
460static int ReservedFieldsTest(void)
461{
462 GptData *gpt = GetEmptyGptData();
463 GptHeader *h1 = (GptHeader *)gpt->primary_header;
464 GptHeader *h2 = (GptHeader *)gpt->secondary_header;
Randall Spangler3dcf9dc2010-06-02 12:46:17 -0700465
Randall Spanglere9213a72013-01-24 11:19:55 -0800466 BuildTestGptData(gpt);
467 h1->reserved_zero ^= 0x12345678; /* whatever random */
468 h2->reserved_zero ^= 0x12345678; /* whatever random */
469 RefreshCrc32(gpt);
Dan Ehrenbergb3d38f52014-12-09 13:42:15 -0800470 EXPECT(1 == CheckHeader(h1, 0, gpt->streaming_drive_sectors, gpt->gpt_drive_sectors, 0));
471 EXPECT(1 == CheckHeader(h2, 1, gpt->streaming_drive_sectors, gpt->gpt_drive_sectors, 0));
Louis Yung-Chieh Lo49fa8e52010-04-30 16:10:48 -0700472
Randall Spangler3dcf9dc2010-06-02 12:46:17 -0700473#ifdef PADDING_CHECKED
Randall Spanglere9213a72013-01-24 11:19:55 -0800474 /* TODO: padding check is currently disabled */
475 BuildTestGptData(gpt);
476 h1->padding[12] ^= 0x34; /* whatever random */
477 h2->padding[56] ^= 0x78; /* whatever random */
478 RefreshCrc32(gpt);
Dan Ehrenbergb3d38f52014-12-09 13:42:15 -0800479 EXPECT(1 == CheckHeader(h1, 0, gpt->streaming_drive_sectors, gpt->gpt_drive_sectors, 0));
480 EXPECT(1 == CheckHeader(h2, 1, gpt->streaming_drive_sectors, gpt->gpt_drive_sectors, 0));
Randall Spangler3dcf9dc2010-06-02 12:46:17 -0700481#endif
Louis Yung-Chieh Lo49fa8e52010-04-30 16:10:48 -0700482
Randall Spanglere9213a72013-01-24 11:19:55 -0800483 return TEST_OK;
484}
485
486/*
487 * Technically, any size which is 2^N where N > 6 should work, but our
488 * library only supports one size.
489 */
490static int SizeOfPartitionEntryTest(void) {
491 GptData *gpt = GetEmptyGptData();
492 GptHeader *h1 = (GptHeader *)gpt->primary_header;
493 GptHeader *h2 = (GptHeader *)gpt->secondary_header;
494 int i;
495
496 struct {
497 uint32_t value_to_test;
498 int expect_rv;
499 } cases[] = {
500 {127, 1},
501 {128, 0},
502 {129, 1},
503 {256, 1},
504 {512, 1},
505 };
506
507 /* Check size of entryes */
508 for (i = 0; i < ARRAY_SIZE(cases); ++i) {
509 BuildTestGptData(gpt);
510 h1->size_of_entry = cases[i].value_to_test;
511 h2->size_of_entry = cases[i].value_to_test;
512 h1->number_of_entries = TOTAL_ENTRIES_SIZE /
513 cases[i].value_to_test;
514 h2->number_of_entries = TOTAL_ENTRIES_SIZE /
515 cases[i].value_to_test;
516 RefreshCrc32(gpt);
517
Dan Ehrenbergb3d38f52014-12-09 13:42:15 -0800518 EXPECT(CheckHeader(h1, 0, gpt->streaming_drive_sectors, gpt->gpt_drive_sectors, 0) ==
Randall Spanglere9213a72013-01-24 11:19:55 -0800519 cases[i].expect_rv);
Dan Ehrenbergb3d38f52014-12-09 13:42:15 -0800520 EXPECT(CheckHeader(h2, 1, gpt->streaming_drive_sectors, gpt->gpt_drive_sectors, 0) ==
Randall Spanglere9213a72013-01-24 11:19:55 -0800521 cases[i].expect_rv);
522 }
523
524 return TEST_OK;
525}
526
527/*
528 * Technically, any size which is 2^N where N > 6 should work, but our library
529 * only supports one size.
530 */
531static int NumberOfPartitionEntriesTest(void)
532{
533 GptData *gpt = GetEmptyGptData();
534 GptHeader *h1 = (GptHeader *)gpt->primary_header;
535 GptHeader *h2 = (GptHeader *)gpt->secondary_header;
536
537 BuildTestGptData(gpt);
538 h1->number_of_entries--;
539 h2->number_of_entries /= 2;
540 RefreshCrc32(gpt);
Dan Ehrenbergb3d38f52014-12-09 13:42:15 -0800541 EXPECT(1 == CheckHeader(h1, 0, gpt->streaming_drive_sectors, gpt->gpt_drive_sectors, 0));
542 EXPECT(1 == CheckHeader(h2, 1, gpt->streaming_drive_sectors, gpt->gpt_drive_sectors, 0));
Nam T. Nguyen6ee52d92014-10-24 13:20:39 -0700543 /* But it's okay to have less if the GPT structs are stored elsewhere. */
Dan Ehrenbergb3d38f52014-12-09 13:42:15 -0800544 EXPECT(0 == CheckHeader(h1, 0, gpt->streaming_drive_sectors, gpt->gpt_drive_sectors, GPT_FLAG_EXTERNAL));
545 EXPECT(0 == CheckHeader(h2, 1, gpt->streaming_drive_sectors, gpt->gpt_drive_sectors, GPT_FLAG_EXTERNAL));
Randall Spanglere9213a72013-01-24 11:19:55 -0800546
547 return TEST_OK;
Louis Yung-Chieh Lo4bbf21e2010-04-21 17:29:05 -0700548}
549
Louis Yung-Chieh Lo49fa8e52010-04-30 16:10:48 -0700550
Randall Spanglere9213a72013-01-24 11:19:55 -0800551/* Test if myLBA field is checked (1 for primary, last for secondary). */
552static int MyLbaTest(void)
553{
554 GptData *gpt = GetEmptyGptData();
555 GptHeader *h1 = (GptHeader *)gpt->primary_header;
556 GptHeader *h2 = (GptHeader *)gpt->secondary_header;
Louis Yung-Chieh Lo49fa8e52010-04-30 16:10:48 -0700557
Randall Spanglere9213a72013-01-24 11:19:55 -0800558 /* myLBA depends on primary vs secondary flag */
559 BuildTestGptData(gpt);
Dan Ehrenbergb3d38f52014-12-09 13:42:15 -0800560 EXPECT(1 == CheckHeader(h1, 1, gpt->streaming_drive_sectors, gpt->gpt_drive_sectors, 0));
561 EXPECT(1 == CheckHeader(h2, 0, gpt->streaming_drive_sectors, gpt->gpt_drive_sectors, 0));
Louis Yung-Chieh Lo49fa8e52010-04-30 16:10:48 -0700562
Randall Spanglere9213a72013-01-24 11:19:55 -0800563 BuildTestGptData(gpt);
564 h1->my_lba--;
565 h2->my_lba--;
566 RefreshCrc32(gpt);
Dan Ehrenbergb3d38f52014-12-09 13:42:15 -0800567 EXPECT(1 == CheckHeader(h1, 0, gpt->streaming_drive_sectors, gpt->gpt_drive_sectors, 0));
568 EXPECT(1 == CheckHeader(h2, 1, gpt->streaming_drive_sectors, gpt->gpt_drive_sectors, 0));
Randall Spangler3dcf9dc2010-06-02 12:46:17 -0700569
Randall Spanglere9213a72013-01-24 11:19:55 -0800570 BuildTestGptData(gpt);
571 h1->my_lba = 2;
572 h2->my_lba--;
573 RefreshCrc32(gpt);
Dan Ehrenbergb3d38f52014-12-09 13:42:15 -0800574 EXPECT(1 == CheckHeader(h1, 0, gpt->streaming_drive_sectors, gpt->gpt_drive_sectors, 0));
575 EXPECT(1 == CheckHeader(h2, 1, gpt->streaming_drive_sectors, gpt->gpt_drive_sectors, 0));
Randall Spangler3dcf9dc2010-06-02 12:46:17 -0700576
Randall Spanglere9213a72013-01-24 11:19:55 -0800577 /* We should ignore the alternate_lba field entirely */
578 BuildTestGptData(gpt);
579 h1->alternate_lba++;
580 h2->alternate_lba++;
581 RefreshCrc32(gpt);
Dan Ehrenbergb3d38f52014-12-09 13:42:15 -0800582 EXPECT(0 == CheckHeader(h1, 0, gpt->streaming_drive_sectors, gpt->gpt_drive_sectors, 0));
583 EXPECT(0 == CheckHeader(h2, 1, gpt->streaming_drive_sectors, gpt->gpt_drive_sectors, 0));
Randall Spanglere9213a72013-01-24 11:19:55 -0800584
585 BuildTestGptData(gpt);
586 h1->alternate_lba--;
587 h2->alternate_lba--;
588 RefreshCrc32(gpt);
Dan Ehrenbergb3d38f52014-12-09 13:42:15 -0800589 EXPECT(0 == CheckHeader(h1, 0, gpt->streaming_drive_sectors, gpt->gpt_drive_sectors, 0));
590 EXPECT(0 == CheckHeader(h2, 1, gpt->streaming_drive_sectors, gpt->gpt_drive_sectors, 0));
Randall Spanglere9213a72013-01-24 11:19:55 -0800591
592 BuildTestGptData(gpt);
593 h1->entries_lba++;
594 h2->entries_lba++;
595 RefreshCrc32(gpt);
Nam T. Nguyena2d72f72014-08-22 15:01:38 -0700596 /*
597 * We support a padding between primary GPT header and its entries. So
598 * this still passes.
599 */
Dan Ehrenbergb3d38f52014-12-09 13:42:15 -0800600 EXPECT(0 == CheckHeader(h1, 0, gpt->streaming_drive_sectors, gpt->gpt_drive_sectors, 0));
Nam T. Nguyena2d72f72014-08-22 15:01:38 -0700601 /*
602 * But the secondary table should fail because it would overlap the
603 * header, which is now lying after its entry array.
604 */
Dan Ehrenbergb3d38f52014-12-09 13:42:15 -0800605 EXPECT(1 == CheckHeader(h2, 1, gpt->streaming_drive_sectors, gpt->gpt_drive_sectors, 0));
Randall Spanglere9213a72013-01-24 11:19:55 -0800606
607 BuildTestGptData(gpt);
608 h1->entries_lba--;
609 h2->entries_lba--;
610 RefreshCrc32(gpt);
Dan Ehrenbergb3d38f52014-12-09 13:42:15 -0800611 EXPECT(1 == CheckHeader(h1, 0, gpt->streaming_drive_sectors, gpt->gpt_drive_sectors, 0));
612 EXPECT(1 == CheckHeader(h2, 1, gpt->streaming_drive_sectors, gpt->gpt_drive_sectors, 0));
Randall Spanglere9213a72013-01-24 11:19:55 -0800613
614 return TEST_OK;
Louis Yung-Chieh Lo4bbf21e2010-04-21 17:29:05 -0700615}
616
Randall Spanglere9213a72013-01-24 11:19:55 -0800617/* Test if FirstUsableLBA and LastUsableLBA are checked.
Louis Yung-Chieh Lo4bbf21e2010-04-21 17:29:05 -0700618 * FirstUsableLBA must be after the end of the primary GPT table array.
619 * LastUsableLBA must be before the start of the secondary GPT table array.
Nam T. Nguyen6ee52d92014-10-24 13:20:39 -0700620 * FirstUsableLBA <= LastUsableLBA.
621 * Also see CheckHeaderOffDevice() test. */
Randall Spanglere9213a72013-01-24 11:19:55 -0800622static int FirstUsableLbaAndLastUsableLbaTest(void)
623{
624 GptData *gpt = GetEmptyGptData();
625 GptHeader *h1 = (GptHeader *)gpt->primary_header;
626 GptHeader *h2 = (GptHeader *)gpt->secondary_header;
627 int i;
Randall Spangler3dcf9dc2010-06-02 12:46:17 -0700628
Randall Spanglere9213a72013-01-24 11:19:55 -0800629 struct {
630 uint64_t primary_entries_lba;
631 uint64_t primary_first_usable_lba;
632 uint64_t primary_last_usable_lba;
633 uint64_t secondary_first_usable_lba;
634 uint64_t secondary_last_usable_lba;
635 uint64_t secondary_entries_lba;
636 int primary_rv;
637 int secondary_rv;
638 } cases[] = {
639 {2, 34, 433, 34, 433, 434, 0, 0},
640 {2, 34, 432, 34, 430, 434, 0, 0},
641 {2, 33, 433, 33, 433, 434, 1, 1},
642 {2, 34, 434, 34, 433, 434, 1, 0},
643 {2, 34, 433, 34, 434, 434, 0, 1},
644 {2, 35, 433, 35, 433, 434, 0, 0},
645 {2, 433, 433, 433, 433, 434, 0, 0},
646 {2, 434, 433, 434, 434, 434, 1, 1},
647 {2, 433, 34, 34, 433, 434, 1, 0},
648 {2, 34, 433, 433, 34, 434, 0, 1},
649 };
Louis Yung-Chieh Lo49fa8e52010-04-30 16:10:48 -0700650
Randall Spanglere9213a72013-01-24 11:19:55 -0800651 for (i = 0; i < ARRAY_SIZE(cases); ++i) {
652 BuildTestGptData(gpt);
653 h1->entries_lba = cases[i].primary_entries_lba;
654 h1->first_usable_lba = cases[i].primary_first_usable_lba;
655 h1->last_usable_lba = cases[i].primary_last_usable_lba;
656 h2->entries_lba = cases[i].secondary_entries_lba;
657 h2->first_usable_lba = cases[i].secondary_first_usable_lba;
658 h2->last_usable_lba = cases[i].secondary_last_usable_lba;
659 RefreshCrc32(gpt);
Randall Spangler3dcf9dc2010-06-02 12:46:17 -0700660
Dan Ehrenbergb3d38f52014-12-09 13:42:15 -0800661 EXPECT(CheckHeader(h1, 0, gpt->streaming_drive_sectors, gpt->gpt_drive_sectors, 0) ==
Randall Spanglere9213a72013-01-24 11:19:55 -0800662 cases[i].primary_rv);
Dan Ehrenbergb3d38f52014-12-09 13:42:15 -0800663 EXPECT(CheckHeader(h2, 1, gpt->streaming_drive_sectors, gpt->gpt_drive_sectors, 0) ==
Randall Spanglere9213a72013-01-24 11:19:55 -0800664 cases[i].secondary_rv);
665 }
Louis Yung-Chieh Lo49fa8e52010-04-30 16:10:48 -0700666
Randall Spanglere9213a72013-01-24 11:19:55 -0800667 return TEST_OK;
Louis Yung-Chieh Lo4bbf21e2010-04-21 17:29:05 -0700668}
669
Randall Spanglere9213a72013-01-24 11:19:55 -0800670/*
671 * Test if PartitionEntryArrayCRC32 is checked. PartitionEntryArrayCRC32 must
672 * be calculated over SizeOfPartitionEntry * NumberOfPartitionEntries bytes.
Louis Yung-Chieh Lo4bbf21e2010-04-21 17:29:05 -0700673 */
Randall Spanglere9213a72013-01-24 11:19:55 -0800674static int EntriesCrcTest(void)
675{
676 GptData *gpt = GetEmptyGptData();
677 GptHeader *h1 = (GptHeader *)gpt->primary_header;
678 GptEntry *e1 = (GptEntry *)(gpt->primary_entries);
679 GptEntry *e2 = (GptEntry *)(gpt->secondary_entries);
Louis Yung-Chieh Lo49fa8e52010-04-30 16:10:48 -0700680
Randall Spanglere9213a72013-01-24 11:19:55 -0800681 /* Modify first byte of primary entries, and expect the CRC is wrong. */
682 BuildTestGptData(gpt);
683 EXPECT(0 == CheckEntries(e1, h1));
684 EXPECT(0 == CheckEntries(e2, h1));
685 gpt->primary_entries[0] ^= 0xa5; /* just XOR a non-zero value */
686 gpt->secondary_entries[TOTAL_ENTRIES_SIZE-1] ^= 0x5a;
687 EXPECT(GPT_ERROR_CRC_CORRUPTED == CheckEntries(e1, h1));
688 EXPECT(GPT_ERROR_CRC_CORRUPTED == CheckEntries(e2, h1));
Louis Yung-Chieh Lo49fa8e52010-04-30 16:10:48 -0700689
Randall Spanglere9213a72013-01-24 11:19:55 -0800690 return TEST_OK;
Louis Yung-Chieh Lo49fa8e52010-04-30 16:10:48 -0700691}
692
Randall Spanglere9213a72013-01-24 11:19:55 -0800693/*
694 * Test if partition geometry is checked.
Louis Yung-Chieh Lo4bbf21e2010-04-21 17:29:05 -0700695 * All active (non-zero PartitionTypeGUID) partition entries should have:
696 * entry.StartingLBA >= header.FirstUsableLBA
697 * entry.EndingLBA <= header.LastUsableLBA
698 * entry.StartingLBA <= entry.EndingLBA
699 */
Randall Spanglere9213a72013-01-24 11:19:55 -0800700static int ValidEntryTest(void)
701{
702 GptData *gpt = GetEmptyGptData();
703 GptHeader *h1 = (GptHeader *)gpt->primary_header;
704 GptEntry *e1 = (GptEntry *)(gpt->primary_entries);
Louis Yung-Chieh Lo49fa8e52010-04-30 16:10:48 -0700705
Randall Spanglere9213a72013-01-24 11:19:55 -0800706 /* error case: entry.StartingLBA < header.FirstUsableLBA */
707 BuildTestGptData(gpt);
708 e1[0].starting_lba = h1->first_usable_lba - 1;
709 RefreshCrc32(gpt);
710 EXPECT(GPT_ERROR_OUT_OF_REGION == CheckEntries(e1, h1));
Louis Yung-Chieh Lo49fa8e52010-04-30 16:10:48 -0700711
Randall Spanglere9213a72013-01-24 11:19:55 -0800712 /* error case: entry.EndingLBA > header.LastUsableLBA */
713 BuildTestGptData(gpt);
714 e1[2].ending_lba = h1->last_usable_lba + 1;
715 RefreshCrc32(gpt);
716 EXPECT(GPT_ERROR_OUT_OF_REGION == CheckEntries(e1, h1));
Louis Yung-Chieh Lo49fa8e52010-04-30 16:10:48 -0700717
Randall Spanglere9213a72013-01-24 11:19:55 -0800718 /* error case: entry.StartingLBA > entry.EndingLBA */
719 BuildTestGptData(gpt);
720 e1[3].starting_lba = e1[3].ending_lba + 1;
721 RefreshCrc32(gpt);
722 EXPECT(GPT_ERROR_OUT_OF_REGION == CheckEntries(e1, h1));
Louis Yung-Chieh Lo49fa8e52010-04-30 16:10:48 -0700723
Randall Spanglere9213a72013-01-24 11:19:55 -0800724 /* case: non active entry should be ignored. */
725 BuildTestGptData(gpt);
726 Memset(&e1[1].type, 0, sizeof(e1[1].type));
727 e1[1].starting_lba = e1[1].ending_lba + 1;
728 RefreshCrc32(gpt);
729 EXPECT(0 == CheckEntries(e1, h1));
Louis Yung-Chieh Lo49fa8e52010-04-30 16:10:48 -0700730
Randall Spanglere9213a72013-01-24 11:19:55 -0800731 return TEST_OK;
Louis Yung-Chieh Lo4bbf21e2010-04-21 17:29:05 -0700732}
733
Randall Spanglere9213a72013-01-24 11:19:55 -0800734/* Test if overlapped partition tables can be detected. */
735static int OverlappedPartitionTest(void) {
736 GptData *gpt = GetEmptyGptData();
737 GptHeader *h = (GptHeader *)gpt->primary_header;
738 GptEntry *e = (GptEntry *)gpt->primary_entries;
739 int i, j;
Randall Spangler3dcf9dc2010-06-02 12:46:17 -0700740
Randall Spanglere9213a72013-01-24 11:19:55 -0800741 struct {
742 int overlapped;
743 struct {
744 int active;
745 uint64_t starting_lba;
746 uint64_t ending_lba;
747 } entries[16]; /* enough for testing. */
748 } cases[] = {
749 {GPT_SUCCESS, {{0, 100, 199}}},
750 {GPT_SUCCESS, {{1, 100, 199}}},
751 {GPT_SUCCESS, {{1, 100, 150}, {1, 200, 250}, {1, 300, 350}}},
752 {GPT_ERROR_START_LBA_OVERLAP,
753 {{1, 200, 299}, {1, 100, 199}, {1, 100, 100}}},
754 {GPT_ERROR_END_LBA_OVERLAP,
755 {{1, 200, 299}, {1, 100, 199}, {1, 299, 299}}},
756 {GPT_SUCCESS, {{1, 300, 399}, {1, 200, 299}, {1, 100, 199}}},
757 {GPT_ERROR_END_LBA_OVERLAP,
758 {{1, 100, 199}, {1, 199, 299}, {1, 299, 399}}},
759 {GPT_ERROR_START_LBA_OVERLAP,
760 {{1, 100, 199}, {1, 200, 299}, {1, 75, 399}}},
761 {GPT_ERROR_START_LBA_OVERLAP,
762 {{1, 100, 199}, {1, 75, 250}, {1, 200, 299}}},
763 {GPT_ERROR_END_LBA_OVERLAP,
764 {{1, 75, 150}, {1, 100, 199}, {1, 200, 299}}},
765 {GPT_ERROR_START_LBA_OVERLAP,
766 {{1, 200, 299}, {1, 100, 199}, {1, 300, 399}, {1, 100, 399}}},
767 {GPT_SUCCESS,
768 {{1, 200, 299}, {1, 100, 199}, {1, 300, 399}, {0, 100, 399}}},
769 {GPT_ERROR_START_LBA_OVERLAP,
770 {{1, 200, 300}, {1, 100, 200}, {1, 100, 400}, {1, 300, 400}}},
771 {GPT_ERROR_START_LBA_OVERLAP,
772 {{0, 200, 300}, {1, 100, 200}, {1, 100, 400}, {1, 300, 400}}},
773 {GPT_SUCCESS,
774 {{1, 200, 300}, {1, 100, 199}, {0, 100, 400}, {0, 300, 400}}},
775 {GPT_ERROR_END_LBA_OVERLAP,
776 {{1, 200, 299}, {1, 100, 199}, {1, 199, 199}}},
777 {GPT_SUCCESS, {{1, 200, 299}, {0, 100, 199}, {1, 199, 199}}},
778 {GPT_SUCCESS, {{1, 200, 299}, {1, 100, 199}, {0, 199, 199}}},
779 {GPT_ERROR_START_LBA_OVERLAP,
780 {{1, 199, 199}, {1, 200, 200}, {1, 201, 201}, {1, 202, 202},
781 {1, 203, 203}, {1, 204, 204}, {1, 205, 205}, {1, 206, 206},
782 {1, 207, 207}, {1, 208, 208}, {1, 199, 199}}},
783 {GPT_SUCCESS,
784 {{1, 199, 199}, {1, 200, 200}, {1, 201, 201}, {1, 202, 202},
785 {1, 203, 203}, {1, 204, 204}, {1, 205, 205}, {1, 206, 206},
786 {1, 207, 207}, {1, 208, 208}, {0, 199, 199}}},
787 };
Randall Spangler3dcf9dc2010-06-02 12:46:17 -0700788
Randall Spanglere9213a72013-01-24 11:19:55 -0800789 for (i = 0; i < ARRAY_SIZE(cases); ++i) {
790 BuildTestGptData(gpt);
791 ZeroEntries(gpt);
792 for(j = 0; j < ARRAY_SIZE(cases[0].entries); ++j) {
793 if (!cases[i].entries[j].starting_lba)
794 break;
Louis Yung-Chieh Lo49fa8e52010-04-30 16:10:48 -0700795
Albert Chaulk5c9e4532013-03-20 16:03:49 -0700796 if (cases[i].entries[j].active) {
Randall Spanglere9213a72013-01-24 11:19:55 -0800797 Memcpy(&e[j].type, &guid_kernel, sizeof(Guid));
Albert Chaulk5c9e4532013-03-20 16:03:49 -0700798 }
Randall Spanglere9213a72013-01-24 11:19:55 -0800799 SetGuid(&e[j].unique, j);
800 e[j].starting_lba = cases[i].entries[j].starting_lba;
801 e[j].ending_lba = cases[i].entries[j].ending_lba;
802 }
803 RefreshCrc32(gpt);
Louis Yung-Chieh Lo49fa8e52010-04-30 16:10:48 -0700804
Randall Spanglere9213a72013-01-24 11:19:55 -0800805 EXPECT(cases[i].overlapped == CheckEntries(e, h));
806 }
807 return TEST_OK;
Louis Yung-Chieh Lo4bbf21e2010-04-21 17:29:05 -0700808}
809
Randall Spangler3dcf9dc2010-06-02 12:46:17 -0700810/* Test both sanity checking and repair. */
Randall Spanglere9213a72013-01-24 11:19:55 -0800811static int SanityCheckTest(void)
812{
813 GptData *gpt = GetEmptyGptData();
814 GptHeader *h1 = (GptHeader *)gpt->primary_header;
Randall Spangler0bda13f2013-01-24 12:25:26 -0800815 GptEntry *e1 = (GptEntry *)gpt->primary_entries;
816 uint8_t *tempptr;
Louis Yung-Chieh Lo49fa8e52010-04-30 16:10:48 -0700817
Randall Spanglere9213a72013-01-24 11:19:55 -0800818 /* Unmodified test data is completely sane */
819 BuildTestGptData(gpt);
820 EXPECT(GPT_SUCCESS == GptSanityCheck(gpt));
821 EXPECT(MASK_BOTH == gpt->valid_headers);
822 EXPECT(MASK_BOTH == gpt->valid_entries);
823 /* Repair doesn't damage it */
824 GptRepair(gpt);
825 EXPECT(GPT_SUCCESS == GptSanityCheck(gpt));
826 EXPECT(MASK_BOTH == gpt->valid_headers);
827 EXPECT(MASK_BOTH == gpt->valid_entries);
828 EXPECT(0 == gpt->modified);
Randall Spangler3dcf9dc2010-06-02 12:46:17 -0700829
Randall Spangler0bda13f2013-01-24 12:25:26 -0800830 /* Invalid sector size should fail */
831 BuildTestGptData(gpt);
832 gpt->sector_bytes = 1024;
833 EXPECT(GPT_ERROR_INVALID_SECTOR_SIZE == GptSanityCheck(gpt));
834
Randall Spanglere9213a72013-01-24 11:19:55 -0800835 /* Modify headers */
836 BuildTestGptData(gpt);
837 gpt->primary_header[0]++;
838 gpt->secondary_header[0]++;
839 EXPECT(GPT_ERROR_INVALID_HEADERS == GptSanityCheck(gpt));
840 EXPECT(0 == gpt->valid_headers);
841 EXPECT(0 == gpt->valid_entries);
842 /* Repair can't fix completely busted headers */
843 GptRepair(gpt);
844 EXPECT(GPT_ERROR_INVALID_HEADERS == GptSanityCheck(gpt));
845 EXPECT(0 == gpt->valid_headers);
846 EXPECT(0 == gpt->valid_entries);
847 EXPECT(0 == gpt->modified);
Randall Spangler3dcf9dc2010-06-02 12:46:17 -0700848
Randall Spanglere9213a72013-01-24 11:19:55 -0800849 BuildTestGptData(gpt);
850 gpt->primary_header[0]++;
851 EXPECT(GPT_SUCCESS == GptSanityCheck(gpt));
852 EXPECT(MASK_SECONDARY == gpt->valid_headers);
853 EXPECT(MASK_BOTH == gpt->valid_entries);
854 GptRepair(gpt);
855 EXPECT(GPT_SUCCESS == GptSanityCheck(gpt));
856 EXPECT(MASK_BOTH == gpt->valid_headers);
857 EXPECT(MASK_BOTH == gpt->valid_entries);
858 EXPECT(GPT_MODIFIED_HEADER1 == gpt->modified);
Randall Spangler3dcf9dc2010-06-02 12:46:17 -0700859
Randall Spanglere9213a72013-01-24 11:19:55 -0800860 BuildTestGptData(gpt);
861 gpt->secondary_header[0]++;
862 EXPECT(GPT_SUCCESS == GptSanityCheck(gpt));
863 EXPECT(MASK_PRIMARY == gpt->valid_headers);
864 EXPECT(MASK_BOTH == gpt->valid_entries);
865 GptRepair(gpt);
866 EXPECT(GPT_SUCCESS == GptSanityCheck(gpt));
867 EXPECT(MASK_BOTH == gpt->valid_headers);
868 EXPECT(MASK_BOTH == gpt->valid_entries);
869 EXPECT(GPT_MODIFIED_HEADER2 == gpt->modified);
Randall Spangler3dcf9dc2010-06-02 12:46:17 -0700870
Randall Spanglere9213a72013-01-24 11:19:55 -0800871 /*
872 * Modify header1 and update its CRC. Since header2 is now different
873 * than header1, it'll be the one considered invalid.
874 */
875 BuildTestGptData(gpt);
876 h1->size++;
877 RefreshCrc32(gpt);
878 EXPECT(GPT_SUCCESS == GptSanityCheck(gpt));
879 EXPECT(MASK_PRIMARY == gpt->valid_headers);
880 EXPECT(MASK_BOTH == gpt->valid_entries);
881 GptRepair(gpt);
882 EXPECT(GPT_SUCCESS == GptSanityCheck(gpt));
883 EXPECT(MASK_BOTH == gpt->valid_headers);
884 EXPECT(MASK_BOTH == gpt->valid_entries);
885 EXPECT(GPT_MODIFIED_HEADER2 == gpt->modified);
Randall Spangler3dcf9dc2010-06-02 12:46:17 -0700886
Randall Spanglere9213a72013-01-24 11:19:55 -0800887 /* Modify entries */
888 BuildTestGptData(gpt);
889 gpt->primary_entries[0]++;
890 gpt->secondary_entries[0]++;
891 EXPECT(GPT_ERROR_INVALID_ENTRIES == GptSanityCheck(gpt));
892 EXPECT(MASK_BOTH == gpt->valid_headers);
893 EXPECT(MASK_NONE == gpt->valid_entries);
894 /* Repair can't fix both copies of entries being bad, either. */
895 GptRepair(gpt);
896 EXPECT(GPT_ERROR_INVALID_ENTRIES == GptSanityCheck(gpt));
897 EXPECT(MASK_BOTH == gpt->valid_headers);
898 EXPECT(MASK_NONE == gpt->valid_entries);
899 EXPECT(0 == gpt->modified);
Randall Spangler3dcf9dc2010-06-02 12:46:17 -0700900
Randall Spanglere9213a72013-01-24 11:19:55 -0800901 BuildTestGptData(gpt);
902 gpt->primary_entries[0]++;
903 EXPECT(GPT_SUCCESS == GptSanityCheck(gpt));
904 EXPECT(MASK_BOTH == gpt->valid_headers);
905 EXPECT(MASK_SECONDARY == gpt->valid_entries);
906 GptRepair(gpt);
907 EXPECT(GPT_SUCCESS == GptSanityCheck(gpt));
908 EXPECT(MASK_BOTH == gpt->valid_headers);
909 EXPECT(MASK_BOTH == gpt->valid_entries);
910 EXPECT(GPT_MODIFIED_ENTRIES1 == gpt->modified);
Randall Spangler3dcf9dc2010-06-02 12:46:17 -0700911
Randall Spanglere9213a72013-01-24 11:19:55 -0800912 BuildTestGptData(gpt);
913 gpt->secondary_entries[0]++;
914 EXPECT(GPT_SUCCESS == GptSanityCheck(gpt));
915 EXPECT(MASK_BOTH == gpt->valid_headers);
916 EXPECT(MASK_PRIMARY == gpt->valid_entries);
917 GptRepair(gpt);
918 EXPECT(GPT_SUCCESS == GptSanityCheck(gpt));
919 EXPECT(MASK_BOTH == gpt->valid_headers);
920 EXPECT(MASK_BOTH == gpt->valid_entries);
921 EXPECT(GPT_MODIFIED_ENTRIES2 == gpt->modified);
Randall Spangler3dcf9dc2010-06-02 12:46:17 -0700922
Randall Spangler0bda13f2013-01-24 12:25:26 -0800923 /*
924 * Modify entries and recompute CRCs, then make both primary and
925 * secondary entry pointers use the secondary data. The primary
926 * header will have the wrong entries CRC, so we should fall back
927 * to the secondary header.
928 */
929 BuildTestGptData(gpt);
930 e1->starting_lba++;
931 RefreshCrc32(gpt);
932 tempptr = gpt->primary_entries;
933 gpt->primary_entries = gpt->secondary_entries;
934 EXPECT(GPT_SUCCESS == GptSanityCheck(gpt));
935 EXPECT(MASK_SECONDARY == gpt->valid_headers);
936 EXPECT(MASK_BOTH == gpt->valid_entries);
937 gpt->primary_entries = tempptr;
938
Randall Spanglere9213a72013-01-24 11:19:55 -0800939 /* Modify both header and entries */
940 BuildTestGptData(gpt);
941 gpt->primary_header[0]++;
942 gpt->primary_entries[0]++;
943 EXPECT(GPT_SUCCESS == GptSanityCheck(gpt));
944 EXPECT(MASK_SECONDARY == gpt->valid_headers);
945 EXPECT(MASK_SECONDARY == gpt->valid_entries);
946 GptRepair(gpt);
947 EXPECT(GPT_SUCCESS == GptSanityCheck(gpt));
948 EXPECT(MASK_BOTH == gpt->valid_headers);
949 EXPECT(MASK_BOTH == gpt->valid_entries);
950 EXPECT((GPT_MODIFIED_HEADER1 | GPT_MODIFIED_ENTRIES1) == gpt->modified);
Bill Richardsonaa8eda42010-08-27 09:31:26 -0700951
Randall Spanglere9213a72013-01-24 11:19:55 -0800952 BuildTestGptData(gpt);
953 gpt->secondary_header[0]++;
954 gpt->secondary_entries[0]++;
955 EXPECT(GPT_SUCCESS == GptSanityCheck(gpt));
956 EXPECT(MASK_PRIMARY == gpt->valid_headers);
957 EXPECT(MASK_PRIMARY == gpt->valid_entries);
958 GptRepair(gpt);
959 EXPECT(GPT_SUCCESS == GptSanityCheck(gpt));
960 EXPECT(MASK_BOTH == gpt->valid_headers);
961 EXPECT(MASK_BOTH == gpt->valid_entries);
962 EXPECT((GPT_MODIFIED_HEADER2 | GPT_MODIFIED_ENTRIES2) == gpt->modified);
Bill Richardsonaa8eda42010-08-27 09:31:26 -0700963
Randall Spanglere9213a72013-01-24 11:19:55 -0800964 /* Test cross-correction (h1+e2, h2+e1) */
965 BuildTestGptData(gpt);
966 gpt->primary_header[0]++;
967 gpt->secondary_entries[0]++;
968 EXPECT(GPT_SUCCESS == GptSanityCheck(gpt));
969 EXPECT(MASK_SECONDARY == gpt->valid_headers);
970 EXPECT(MASK_PRIMARY == gpt->valid_entries);
971 GptRepair(gpt);
972 EXPECT(GPT_SUCCESS == GptSanityCheck(gpt));
973 EXPECT(MASK_BOTH == gpt->valid_headers);
974 EXPECT(MASK_BOTH == gpt->valid_entries);
975 EXPECT((GPT_MODIFIED_HEADER1 | GPT_MODIFIED_ENTRIES2) == gpt->modified);
Randall Spangler3dcf9dc2010-06-02 12:46:17 -0700976
Randall Spanglere9213a72013-01-24 11:19:55 -0800977 BuildTestGptData(gpt);
978 gpt->secondary_header[0]++;
979 gpt->primary_entries[0]++;
980 EXPECT(GPT_SUCCESS == GptSanityCheck(gpt));
981 EXPECT(MASK_PRIMARY == gpt->valid_headers);
982 EXPECT(MASK_SECONDARY == gpt->valid_entries);
983 GptRepair(gpt);
984 EXPECT(GPT_SUCCESS == GptSanityCheck(gpt));
985 EXPECT(MASK_BOTH == gpt->valid_headers);
986 EXPECT(MASK_BOTH == gpt->valid_entries);
987 EXPECT((GPT_MODIFIED_HEADER2 | GPT_MODIFIED_ENTRIES1) == gpt->modified);
Louis Yung-Chieh Lo49fa8e52010-04-30 16:10:48 -0700988
Randall Spanglere9213a72013-01-24 11:19:55 -0800989 /*
990 * Test mismatched pairs (h1+e1 valid, h2+e2 valid but different. This
991 * simulates a partial update of the drive.
992 */
993 BuildTestGptData(gpt);
994 gpt->secondary_entries[0]++;
995 RefreshCrc32(gpt);
996 EXPECT(GPT_SUCCESS == GptSanityCheck(gpt));
997 EXPECT(MASK_PRIMARY == gpt->valid_headers);
998 EXPECT(MASK_PRIMARY == gpt->valid_entries);
999 GptRepair(gpt);
1000 EXPECT(GPT_SUCCESS == GptSanityCheck(gpt));
1001 EXPECT(MASK_BOTH == gpt->valid_headers);
1002 EXPECT(MASK_BOTH == gpt->valid_entries);
1003 EXPECT((GPT_MODIFIED_HEADER2 | GPT_MODIFIED_ENTRIES2) == gpt->modified);
Louis Yung-Chieh Lo49fa8e52010-04-30 16:10:48 -07001004
Nam T. Nguyen5ce83252014-10-30 15:09:43 -07001005 /* Test unloaded entry array. */
1006 gpt = GetEmptyGptData();
1007 BuildTestGptData(gpt);
1008 gpt->primary_entries = NULL;
1009 EXPECT(GPT_SUCCESS == GptSanityCheck(gpt));
1010 EXPECT(MASK_SECONDARY == gpt->valid_entries);
1011 gpt = GetEmptyGptData();
1012 BuildTestGptData(gpt);
1013 gpt->secondary_entries = NULL;
1014 EXPECT(GPT_SUCCESS == GptSanityCheck(gpt));
1015 EXPECT(MASK_PRIMARY == gpt->valid_entries);
1016
1017 /* Test unloaded header. */
1018 gpt = GetEmptyGptData();
1019 BuildTestGptData(gpt);
1020 gpt->primary_header = NULL;
1021 EXPECT(GPT_SUCCESS == GptSanityCheck(gpt));
1022 EXPECT(MASK_SECONDARY == gpt->valid_headers);
1023 gpt = GetEmptyGptData();
1024 BuildTestGptData(gpt);
1025 gpt->secondary_header = NULL;
1026 EXPECT(GPT_SUCCESS == GptSanityCheck(gpt));
1027 EXPECT(MASK_PRIMARY == gpt->valid_headers);
1028
Randall Spanglere9213a72013-01-24 11:19:55 -08001029 return TEST_OK;
Louis Yung-Chieh Lo4bbf21e2010-04-21 17:29:05 -07001030}
1031
Randall Spanglere9213a72013-01-24 11:19:55 -08001032static int EntryAttributeGetSetTest(void)
1033{
1034 GptData *gpt = GetEmptyGptData();
1035 GptEntry *e = (GptEntry *)(gpt->primary_entries);
Randall Spangler3dcf9dc2010-06-02 12:46:17 -07001036
Randall Spanglere9213a72013-01-24 11:19:55 -08001037 e->attrs.whole = 0x0000000000000000ULL;
1038 SetEntrySuccessful(e, 1);
1039 EXPECT(0x0100000000000000ULL == e->attrs.whole);
1040 EXPECT(1 == GetEntrySuccessful(e));
1041 e->attrs.whole = 0xFFFFFFFFFFFFFFFFULL;
1042 SetEntrySuccessful(e, 0);
1043 EXPECT(0xFEFFFFFFFFFFFFFFULL == e->attrs.whole);
1044 EXPECT(0 == GetEntrySuccessful(e));
Randall Spangler3dcf9dc2010-06-02 12:46:17 -07001045
Randall Spanglere9213a72013-01-24 11:19:55 -08001046 e->attrs.whole = 0x0000000000000000ULL;
1047 SetEntryTries(e, 15);
1048 EXPECT(15 == GetEntryTries(e));
1049 EXPECT(0x00F0000000000000ULL == e->attrs.whole);
1050 e->attrs.whole = 0xFFFFFFFFFFFFFFFFULL;
1051 SetEntryTries(e, 0);
1052 EXPECT(0xFF0FFFFFFFFFFFFFULL == e->attrs.whole);
1053 EXPECT(0 == GetEntryTries(e));
Randall Spangler3dcf9dc2010-06-02 12:46:17 -07001054
Randall Spanglere9213a72013-01-24 11:19:55 -08001055 e->attrs.whole = 0x0000000000000000ULL;
1056 SetEntryPriority(e, 15);
1057 EXPECT(0x000F000000000000ULL == e->attrs.whole);
1058 EXPECT(15 == GetEntryPriority(e));
1059 e->attrs.whole = 0xFFFFFFFFFFFFFFFFULL;
1060 SetEntryPriority(e, 0);
1061 EXPECT(0xFFF0FFFFFFFFFFFFULL == e->attrs.whole);
1062 EXPECT(0 == GetEntryPriority(e));
Randall Spangler3dcf9dc2010-06-02 12:46:17 -07001063
Randall Spanglere9213a72013-01-24 11:19:55 -08001064 e->attrs.whole = 0xFFFFFFFFFFFFFFFFULL;
1065 EXPECT(1 == GetEntrySuccessful(e));
1066 EXPECT(15 == GetEntryPriority(e));
1067 EXPECT(15 == GetEntryTries(e));
Randall Spangler3dcf9dc2010-06-02 12:46:17 -07001068
Randall Spanglere9213a72013-01-24 11:19:55 -08001069 e->attrs.whole = 0x0123000000000000ULL;
1070 EXPECT(1 == GetEntrySuccessful(e));
1071 EXPECT(2 == GetEntryTries(e));
1072 EXPECT(3 == GetEntryPriority(e));
Randall Spangler3dcf9dc2010-06-02 12:46:17 -07001073
Randall Spanglere9213a72013-01-24 11:19:55 -08001074 return TEST_OK;
Randall Spangler3dcf9dc2010-06-02 12:46:17 -07001075}
1076
Randall Spanglere9213a72013-01-24 11:19:55 -08001077static int EntryTypeTest(void)
1078{
1079 GptData *gpt = GetEmptyGptData();
1080 GptEntry *e = (GptEntry *)(gpt->primary_entries);
Randall Spangler3dcf9dc2010-06-02 12:46:17 -07001081
Randall Spanglere9213a72013-01-24 11:19:55 -08001082 Memcpy(&e->type, &guid_zero, sizeof(Guid));
1083 EXPECT(1 == IsUnusedEntry(e));
1084 EXPECT(0 == IsKernelEntry(e));
Randall Spangler3dcf9dc2010-06-02 12:46:17 -07001085
Randall Spanglere9213a72013-01-24 11:19:55 -08001086 Memcpy(&e->type, &guid_kernel, sizeof(Guid));
1087 EXPECT(0 == IsUnusedEntry(e));
1088 EXPECT(1 == IsKernelEntry(e));
Randall Spangler3dcf9dc2010-06-02 12:46:17 -07001089
Randall Spanglere9213a72013-01-24 11:19:55 -08001090 Memcpy(&e->type, &guid_rootfs, sizeof(Guid));
1091 EXPECT(0 == IsUnusedEntry(e));
1092 EXPECT(0 == IsKernelEntry(e));
Randall Spangler3dcf9dc2010-06-02 12:46:17 -07001093
Randall Spanglere9213a72013-01-24 11:19:55 -08001094 return TEST_OK;
Randall Spangler3dcf9dc2010-06-02 12:46:17 -07001095}
1096
Randall Spangler3dcf9dc2010-06-02 12:46:17 -07001097/* Make an entry unused by clearing its type. */
Randall Spanglere9213a72013-01-24 11:19:55 -08001098static void FreeEntry(GptEntry *e)
1099{
1100 Memset(&e->type, 0, sizeof(Guid));
Randall Spangler3dcf9dc2010-06-02 12:46:17 -07001101}
1102
Randall Spangler3dcf9dc2010-06-02 12:46:17 -07001103/* Set up an entry. */
Randall Spanglere9213a72013-01-24 11:19:55 -08001104static void FillEntry(GptEntry *e, int is_kernel,
1105 int priority, int successful, int tries)
1106{
1107 Memcpy(&e->type, (is_kernel ? &guid_kernel : &guid_zero), sizeof(Guid));
1108 SetEntryPriority(e, priority);
1109 SetEntrySuccessful(e, successful);
1110 SetEntryTries(e, tries);
Randall Spangler3dcf9dc2010-06-02 12:46:17 -07001111}
1112
Randall Spanglere9213a72013-01-24 11:19:55 -08001113/*
1114 * Invalidate all kernel entries and expect GptNextKernelEntry() cannot find
Louis Yung-Chieh Lob17db3c2010-05-05 11:21:08 -07001115 * any usable kernel entry.
1116 */
Randall Spanglere9213a72013-01-24 11:19:55 -08001117static int NoValidKernelEntryTest(void)
1118{
1119 GptData *gpt = GetEmptyGptData();
1120 GptEntry *e1 = (GptEntry *)(gpt->primary_entries);
Louis Yung-Chieh Lob17db3c2010-05-05 11:21:08 -07001121
Randall Spanglere9213a72013-01-24 11:19:55 -08001122 BuildTestGptData(gpt);
1123 SetEntryPriority(e1 + KERNEL_A, 0);
1124 FreeEntry(e1 + KERNEL_B);
1125 RefreshCrc32(gpt);
1126 EXPECT(GPT_ERROR_NO_VALID_KERNEL ==
1127 GptNextKernelEntry(gpt, NULL, NULL));
Louis Yung-Chieh Lob17db3c2010-05-05 11:21:08 -07001128
Randall Spanglere9213a72013-01-24 11:19:55 -08001129 return TEST_OK;
Louis Yung-Chieh Lob17db3c2010-05-05 11:21:08 -07001130}
1131
Randall Spanglere9213a72013-01-24 11:19:55 -08001132static int GetNextNormalTest(void)
1133{
1134 GptData *gpt = GetEmptyGptData();
1135 GptEntry *e1 = (GptEntry *)(gpt->primary_entries);
1136 uint64_t start, size;
Louis Yung-Chieh Lob17db3c2010-05-05 11:21:08 -07001137
Randall Spanglere9213a72013-01-24 11:19:55 -08001138 /* Normal case - both kernels successful */
1139 BuildTestGptData(gpt);
1140 FillEntry(e1 + KERNEL_A, 1, 2, 1, 0);
1141 FillEntry(e1 + KERNEL_B, 1, 2, 1, 0);
1142 RefreshCrc32(gpt);
1143 GptInit(gpt);
Louis Yung-Chieh Lob17db3c2010-05-05 11:21:08 -07001144
Randall Spanglere9213a72013-01-24 11:19:55 -08001145 EXPECT(GPT_SUCCESS == GptNextKernelEntry(gpt, &start, &size));
1146 EXPECT(KERNEL_A == gpt->current_kernel);
1147 EXPECT(34 == start);
1148 EXPECT(100 == size);
Randall Spangler3dcf9dc2010-06-02 12:46:17 -07001149
Randall Spanglere9213a72013-01-24 11:19:55 -08001150 EXPECT(GPT_SUCCESS == GptNextKernelEntry(gpt, &start, &size));
1151 EXPECT(KERNEL_B == gpt->current_kernel);
1152 EXPECT(134 == start);
1153 EXPECT(99 == size);
Randall Spangler3dcf9dc2010-06-02 12:46:17 -07001154
Randall Spanglere9213a72013-01-24 11:19:55 -08001155 EXPECT(GPT_ERROR_NO_VALID_KERNEL ==
1156 GptNextKernelEntry(gpt, &start, &size));
1157 EXPECT(-1 == gpt->current_kernel);
Randall Spangler3dcf9dc2010-06-02 12:46:17 -07001158
Randall Spanglere9213a72013-01-24 11:19:55 -08001159 /* Call as many times as you want; you won't get another kernel... */
1160 EXPECT(GPT_ERROR_NO_VALID_KERNEL ==
1161 GptNextKernelEntry(gpt, &start, &size));
1162 EXPECT(-1 == gpt->current_kernel);
Randall Spangler3dcf9dc2010-06-02 12:46:17 -07001163
Randall Spanglere9213a72013-01-24 11:19:55 -08001164 return TEST_OK;
Louis Yung-Chieh Lob17db3c2010-05-05 11:21:08 -07001165}
1166
Randall Spanglere9213a72013-01-24 11:19:55 -08001167static int GetNextPrioTest(void)
1168{
1169 GptData *gpt = GetEmptyGptData();
1170 GptEntry *e1 = (GptEntry *)(gpt->primary_entries);
1171 uint64_t start, size;
Randall Spangler3dcf9dc2010-06-02 12:46:17 -07001172
Randall Spanglere9213a72013-01-24 11:19:55 -08001173 /* Priority 3, 4, 0, 4 - should boot order B, Y, A */
1174 BuildTestGptData(gpt);
1175 FillEntry(e1 + KERNEL_A, 1, 3, 1, 0);
1176 FillEntry(e1 + KERNEL_B, 1, 4, 1, 0);
1177 FillEntry(e1 + KERNEL_X, 1, 0, 1, 0);
1178 FillEntry(e1 + KERNEL_Y, 1, 4, 1, 0);
1179 RefreshCrc32(gpt);
1180 GptInit(gpt);
Randall Spangler3dcf9dc2010-06-02 12:46:17 -07001181
Randall Spanglere9213a72013-01-24 11:19:55 -08001182 EXPECT(GPT_SUCCESS == GptNextKernelEntry(gpt, &start, &size));
1183 EXPECT(KERNEL_B == gpt->current_kernel);
1184 EXPECT(GPT_SUCCESS == GptNextKernelEntry(gpt, &start, &size));
1185 EXPECT(KERNEL_Y == gpt->current_kernel);
1186 EXPECT(GPT_SUCCESS == GptNextKernelEntry(gpt, &start, &size));
1187 EXPECT(KERNEL_A == gpt->current_kernel);
1188 EXPECT(GPT_ERROR_NO_VALID_KERNEL ==
1189 GptNextKernelEntry(gpt, &start, &size));
Randall Spangler3dcf9dc2010-06-02 12:46:17 -07001190
Randall Spanglere9213a72013-01-24 11:19:55 -08001191 return TEST_OK;
Randall Spangler3dcf9dc2010-06-02 12:46:17 -07001192}
1193
Randall Spanglere9213a72013-01-24 11:19:55 -08001194static int GetNextTriesTest(void)
1195{
1196 GptData *gpt = GetEmptyGptData();
1197 GptEntry *e1 = (GptEntry *)(gpt->primary_entries);
1198 uint64_t start, size;
Randall Spangler3dcf9dc2010-06-02 12:46:17 -07001199
Randall Spanglere9213a72013-01-24 11:19:55 -08001200 /* Tries=nonzero is attempted just like success, but tries=0 isn't */
1201 BuildTestGptData(gpt);
1202 FillEntry(e1 + KERNEL_A, 1, 2, 1, 0);
1203 FillEntry(e1 + KERNEL_B, 1, 3, 0, 0);
1204 FillEntry(e1 + KERNEL_X, 1, 4, 0, 1);
1205 FillEntry(e1 + KERNEL_Y, 1, 0, 0, 5);
1206 RefreshCrc32(gpt);
1207 GptInit(gpt);
Randall Spangler3dcf9dc2010-06-02 12:46:17 -07001208
Randall Spanglere9213a72013-01-24 11:19:55 -08001209 EXPECT(GPT_SUCCESS == GptNextKernelEntry(gpt, &start, &size));
1210 EXPECT(KERNEL_X == gpt->current_kernel);
1211 EXPECT(GPT_SUCCESS == GptNextKernelEntry(gpt, &start, &size));
1212 EXPECT(KERNEL_A == gpt->current_kernel);
1213 EXPECT(GPT_ERROR_NO_VALID_KERNEL ==
1214 GptNextKernelEntry(gpt, &start, &size));
Randall Spangler3dcf9dc2010-06-02 12:46:17 -07001215
Randall Spanglere9213a72013-01-24 11:19:55 -08001216 return TEST_OK;
Randall Spangler3dcf9dc2010-06-02 12:46:17 -07001217}
1218
Randall Spanglere9213a72013-01-24 11:19:55 -08001219static int GptUpdateTest(void)
1220{
1221 GptData *gpt = GetEmptyGptData();
1222 GptEntry *e = (GptEntry *)(gpt->primary_entries);
1223 GptEntry *e2 = (GptEntry *)(gpt->secondary_entries);
1224 uint64_t start, size;
Randall Spangler3dcf9dc2010-06-02 12:46:17 -07001225
Randall Spanglere9213a72013-01-24 11:19:55 -08001226 /* Tries=nonzero is attempted just like success, but tries=0 isn't */
1227 BuildTestGptData(gpt);
1228 FillEntry(e + KERNEL_A, 1, 4, 1, 0);
1229 FillEntry(e + KERNEL_B, 1, 3, 0, 2);
1230 FillEntry(e + KERNEL_X, 1, 2, 0, 2);
1231 RefreshCrc32(gpt);
1232 GptInit(gpt);
1233 gpt->modified = 0; /* Nothing modified yet */
Randall Spangler3dcf9dc2010-06-02 12:46:17 -07001234
Randall Spanglere9213a72013-01-24 11:19:55 -08001235 /* Successful kernel */
1236 EXPECT(GPT_SUCCESS == GptNextKernelEntry(gpt, &start, &size));
1237 EXPECT(KERNEL_A == gpt->current_kernel);
1238 EXPECT(1 == GetEntrySuccessful(e + KERNEL_A));
1239 EXPECT(4 == GetEntryPriority(e + KERNEL_A));
1240 EXPECT(0 == GetEntryTries(e + KERNEL_A));
1241 EXPECT(1 == GetEntrySuccessful(e2 + KERNEL_A));
1242 EXPECT(4 == GetEntryPriority(e2 + KERNEL_A));
1243 EXPECT(0 == GetEntryTries(e2 + KERNEL_A));
1244 /* Trying successful kernel changes nothing */
1245 EXPECT(GPT_SUCCESS == GptUpdateKernelEntry(gpt, GPT_UPDATE_ENTRY_TRY));
1246 EXPECT(1 == GetEntrySuccessful(e + KERNEL_A));
1247 EXPECT(4 == GetEntryPriority(e + KERNEL_A));
1248 EXPECT(0 == GetEntryTries(e + KERNEL_A));
1249 EXPECT(0 == gpt->modified);
1250 /* Marking it bad also does not update it. */
1251 EXPECT(GPT_SUCCESS == GptUpdateKernelEntry(gpt, GPT_UPDATE_ENTRY_BAD));
1252 EXPECT(1 == GetEntrySuccessful(e + KERNEL_A));
1253 EXPECT(4 == GetEntryPriority(e + KERNEL_A));
1254 EXPECT(0 == GetEntryTries(e + KERNEL_A));
1255 EXPECT(0 == gpt->modified);
Randall Spangler3dcf9dc2010-06-02 12:46:17 -07001256
Randall Spanglere9213a72013-01-24 11:19:55 -08001257 /* Kernel with tries */
1258 EXPECT(GPT_SUCCESS == GptNextKernelEntry(gpt, &start, &size));
1259 EXPECT(KERNEL_B == gpt->current_kernel);
1260 EXPECT(0 == GetEntrySuccessful(e + KERNEL_B));
1261 EXPECT(3 == GetEntryPriority(e + KERNEL_B));
1262 EXPECT(2 == GetEntryTries(e + KERNEL_B));
1263 /* Marking it bad clears it */
1264 EXPECT(GPT_SUCCESS == GptUpdateKernelEntry(gpt, GPT_UPDATE_ENTRY_BAD));
1265 EXPECT(0 == GetEntrySuccessful(e + KERNEL_B));
1266 EXPECT(0 == GetEntryPriority(e + KERNEL_B));
1267 EXPECT(0 == GetEntryTries(e + KERNEL_B));
1268 /* Which affects both copies of the partition entries */
1269 EXPECT(0 == GetEntrySuccessful(e2 + KERNEL_B));
1270 EXPECT(0 == GetEntryPriority(e2 + KERNEL_B));
1271 EXPECT(0 == GetEntryTries(e2 + KERNEL_B));
1272 /* And that's caused the GPT to need updating */
1273 EXPECT(0x0F == gpt->modified);
Randall Spangler3dcf9dc2010-06-02 12:46:17 -07001274
Randall Spanglere9213a72013-01-24 11:19:55 -08001275 /* Another kernel with tries */
1276 EXPECT(GPT_SUCCESS == GptNextKernelEntry(gpt, &start, &size));
1277 EXPECT(KERNEL_X == gpt->current_kernel);
1278 EXPECT(0 == GetEntrySuccessful(e + KERNEL_X));
1279 EXPECT(2 == GetEntryPriority(e + KERNEL_X));
1280 EXPECT(2 == GetEntryTries(e + KERNEL_X));
1281 /* Trying it uses up a try */
1282 EXPECT(GPT_SUCCESS == GptUpdateKernelEntry(gpt, GPT_UPDATE_ENTRY_TRY));
1283 EXPECT(0 == GetEntrySuccessful(e + KERNEL_X));
1284 EXPECT(2 == GetEntryPriority(e + KERNEL_X));
1285 EXPECT(1 == GetEntryTries(e + KERNEL_X));
1286 EXPECT(0 == GetEntrySuccessful(e2 + KERNEL_X));
1287 EXPECT(2 == GetEntryPriority(e2 + KERNEL_X));
1288 EXPECT(1 == GetEntryTries(e2 + KERNEL_X));
1289 /* Trying it again marks it inactive */
1290 EXPECT(GPT_SUCCESS == GptUpdateKernelEntry(gpt, GPT_UPDATE_ENTRY_TRY));
1291 EXPECT(0 == GetEntrySuccessful(e + KERNEL_X));
1292 EXPECT(0 == GetEntryPriority(e + KERNEL_X));
1293 EXPECT(0 == GetEntryTries(e + KERNEL_X));
Randall Spangler3dcf9dc2010-06-02 12:46:17 -07001294
Randall Spangler0bda13f2013-01-24 12:25:26 -08001295 /* Can't update if entry isn't a kernel, or there isn't an entry */
1296 Memcpy(&e[KERNEL_X].type, &guid_rootfs, sizeof(guid_rootfs));
1297 EXPECT(GPT_ERROR_INVALID_UPDATE_TYPE ==
1298 GptUpdateKernelEntry(gpt, GPT_UPDATE_ENTRY_BAD));
1299 gpt->current_kernel = CGPT_KERNEL_ENTRY_NOT_FOUND;
1300 EXPECT(GPT_ERROR_INVALID_UPDATE_TYPE ==
1301 GptUpdateKernelEntry(gpt, GPT_UPDATE_ENTRY_BAD));
1302
1303
Randall Spanglere9213a72013-01-24 11:19:55 -08001304 return TEST_OK;
Randall Spangler3dcf9dc2010-06-02 12:46:17 -07001305}
1306
Randall Spanglere9213a72013-01-24 11:19:55 -08001307/*
1308 * Give an invalid kernel type, and expect GptUpdateKernelEntry() returns
1309 * GPT_ERROR_INVALID_UPDATE_TYPE.
1310 */
1311static int UpdateInvalidKernelTypeTest(void)
1312{
1313 GptData *gpt = GetEmptyGptData();
Randall Spangler3dcf9dc2010-06-02 12:46:17 -07001314
Randall Spanglere9213a72013-01-24 11:19:55 -08001315 BuildTestGptData(gpt);
1316 /* anything, but not CGPT_KERNEL_ENTRY_NOT_FOUND */
1317 gpt->current_kernel = 0;
1318 /* any invalid update_type value */
1319 EXPECT(GPT_ERROR_INVALID_UPDATE_TYPE ==
1320 GptUpdateKernelEntry(gpt, 99));
Louis Yung-Chieh Lob17db3c2010-05-05 11:21:08 -07001321
Randall Spanglere9213a72013-01-24 11:19:55 -08001322 return TEST_OK;
Louis Yung-Chieh Lob17db3c2010-05-05 11:21:08 -07001323}
1324
Randall Spanglere9213a72013-01-24 11:19:55 -08001325/* Test duplicate UniqueGuids can be detected. */
1326static int DuplicateUniqueGuidTest(void)
1327{
1328 GptData *gpt = GetEmptyGptData();
1329 GptHeader *h = (GptHeader *)gpt->primary_header;
1330 GptEntry *e = (GptEntry *)gpt->primary_entries;
1331 int i, j;
Bill Richardsonaa8eda42010-08-27 09:31:26 -07001332
Randall Spanglere9213a72013-01-24 11:19:55 -08001333 struct {
1334 int duplicate;
1335 struct {
1336 uint64_t starting_lba;
1337 uint64_t ending_lba;
1338 uint32_t type_guid;
1339 uint32_t unique_guid;
1340 } entries[16]; /* enough for testing. */
1341 } cases[] = {
1342 {GPT_SUCCESS, {{100, 109, 1, 1},
1343 {110, 119, 2, 2},
1344 {120, 129, 3, 3},
1345 {130, 139, 4, 4},
1346 }},
1347 {GPT_SUCCESS, {{100, 109, 1, 1},
1348 {110, 119, 1, 2},
1349 {120, 129, 2, 3},
1350 {130, 139, 2, 4},
1351 }},
1352 {GPT_ERROR_DUP_GUID, {{100, 109, 1, 1},
1353 {110, 119, 2, 2},
1354 {120, 129, 3, 1},
1355 {130, 139, 4, 4},
1356 }},
1357 {GPT_ERROR_DUP_GUID, {{100, 109, 1, 1},
1358 {110, 119, 1, 2},
1359 {120, 129, 2, 3},
1360 {130, 139, 2, 2},
1361 }},
1362 };
Bill Richardsonaa8eda42010-08-27 09:31:26 -07001363
Randall Spanglere9213a72013-01-24 11:19:55 -08001364 for (i = 0; i < ARRAY_SIZE(cases); ++i) {
1365 BuildTestGptData(gpt);
1366 ZeroEntries(gpt);
1367 for(j = 0; j < ARRAY_SIZE(cases[0].entries); ++j) {
1368 if (!cases[i].entries[j].starting_lba)
1369 break;
Bill Richardsonaa8eda42010-08-27 09:31:26 -07001370
Randall Spanglere9213a72013-01-24 11:19:55 -08001371 e[j].starting_lba = cases[i].entries[j].starting_lba;
1372 e[j].ending_lba = cases[i].entries[j].ending_lba;
1373 SetGuid(&e[j].type, cases[i].entries[j].type_guid);
1374 SetGuid(&e[j].unique, cases[i].entries[j].unique_guid);
1375 }
1376 RefreshCrc32(gpt);
Bill Richardsonaa8eda42010-08-27 09:31:26 -07001377
Randall Spanglere9213a72013-01-24 11:19:55 -08001378 EXPECT(cases[i].duplicate == CheckEntries(e, h));
1379 }
Bill Richardsonaa8eda42010-08-27 09:31:26 -07001380
Randall Spanglere9213a72013-01-24 11:19:55 -08001381 return TEST_OK;
Bill Richardsonaa8eda42010-08-27 09:31:26 -07001382}
1383
Randall Spangler0bda13f2013-01-24 12:25:26 -08001384/* Test getting the current kernel GUID */
1385static int GetKernelGuidTest(void)
1386{
1387 GptData *gpt = GetEmptyGptData();
1388 GptEntry *e = (GptEntry *)gpt->primary_entries;
1389 Guid g;
1390
1391 BuildTestGptData(gpt);
1392 gpt->current_kernel = 0;
1393 GetCurrentKernelUniqueGuid(gpt, &g);
1394 EXPECT(!Memcmp(&g, &e[0].unique, sizeof(Guid)));
1395 gpt->current_kernel = 1;
1396 GetCurrentKernelUniqueGuid(gpt, &g);
1397 EXPECT(!Memcmp(&g, &e[1].unique, sizeof(Guid)));
1398
1399 return TEST_OK;
1400}
1401
1402/* Test getting GPT error text strings */
1403static int ErrorTextTest(void)
1404{
1405 int i;
1406
1407 /* Known errors are not unknown */
1408 for (i = 0; i < GPT_ERROR_COUNT; i++) {
1409 EXPECT(GptErrorText(i));
1410 EXPECT(strcmp(GptErrorText(i), "Unknown"));
1411 }
1412
1413 /* But other error values are */
1414 EXPECT(!strcmp(GptErrorText(GPT_ERROR_COUNT), "Unknown"));
1415
1416 return TEST_OK;
1417}
1418
Nam T. Nguyen6ee52d92014-10-24 13:20:39 -07001419static int CheckHeaderOffDevice()
1420{
1421 GptData* gpt = GetEmptyGptData();
1422 BuildTestGptData(gpt);
1423
1424 GptHeader* primary_header = (GptHeader*)gpt->primary_header;
1425 primary_header->first_usable_lba = 0;
1426 RefreshCrc32(gpt);
1427 // GPT is stored on the same device so first usable lba should not
1428 // start at 0.
Dan Ehrenbergb3d38f52014-12-09 13:42:15 -08001429 EXPECT(1 == CheckHeader(primary_header, 0, gpt->streaming_drive_sectors,
1430 gpt->gpt_drive_sectors, 0));
Nam T. Nguyen6ee52d92014-10-24 13:20:39 -07001431 // But off device, it is okay to accept this GPT header.
Dan Ehrenbergb3d38f52014-12-09 13:42:15 -08001432 EXPECT(0 == CheckHeader(primary_header, 0, gpt->streaming_drive_sectors,
1433 gpt->gpt_drive_sectors, GPT_FLAG_EXTERNAL));
Nam T. Nguyen6ee52d92014-10-24 13:20:39 -07001434
1435 BuildTestGptData(gpt);
1436 primary_header->number_of_entries = 100;
1437 RefreshCrc32(gpt);
1438 // Normally, number of entries is 128. So this should fail.
Dan Ehrenbergb3d38f52014-12-09 13:42:15 -08001439 EXPECT(1 == CheckHeader(primary_header, 0, gpt->streaming_drive_sectors,
1440 gpt->gpt_drive_sectors, 0));
Nam T. Nguyen6ee52d92014-10-24 13:20:39 -07001441 // But off device, it is okay.
Dan Ehrenbergb3d38f52014-12-09 13:42:15 -08001442 EXPECT(0 == CheckHeader(primary_header, 0, gpt->streaming_drive_sectors,
1443 gpt->gpt_drive_sectors, GPT_FLAG_EXTERNAL));
Nam T. Nguyen6ee52d92014-10-24 13:20:39 -07001444
1445 primary_header->number_of_entries = MIN_NUMBER_OF_ENTRIES - 1;
1446 RefreshCrc32(gpt);
1447 // However, too few entries is not good.
Dan Ehrenbergb3d38f52014-12-09 13:42:15 -08001448 EXPECT(1 == CheckHeader(primary_header, 0, gpt->streaming_drive_sectors,
1449 gpt->gpt_drive_sectors, GPT_FLAG_EXTERNAL));
Nam T. Nguyen6ee52d92014-10-24 13:20:39 -07001450
1451 // Repeat for secondary header.
1452 BuildTestGptData(gpt);
1453 GptHeader* secondary_header = (GptHeader*)gpt->secondary_header;
1454 secondary_header->first_usable_lba = 0;
1455 RefreshCrc32(gpt);
Dan Ehrenbergb3d38f52014-12-09 13:42:15 -08001456 EXPECT(1 == CheckHeader(secondary_header, 1, gpt->streaming_drive_sectors,
1457 gpt->gpt_drive_sectors, 0));
1458 EXPECT(0 == CheckHeader(secondary_header, 1, gpt->streaming_drive_sectors,
1459 gpt->gpt_drive_sectors, GPT_FLAG_EXTERNAL));
Nam T. Nguyen6ee52d92014-10-24 13:20:39 -07001460
1461 BuildTestGptData(gpt);
1462 secondary_header->number_of_entries = 100;
1463 RefreshCrc32(gpt);
Dan Ehrenbergb3d38f52014-12-09 13:42:15 -08001464 EXPECT(1 == CheckHeader(secondary_header, 1, gpt->streaming_drive_sectors,
1465 gpt->gpt_drive_sectors, 0));
1466 EXPECT(0 == CheckHeader(secondary_header, 1, gpt->streaming_drive_sectors,
1467 gpt->gpt_drive_sectors, GPT_FLAG_EXTERNAL));
Nam T. Nguyen6ee52d92014-10-24 13:20:39 -07001468
1469 secondary_header->number_of_entries = MIN_NUMBER_OF_ENTRIES - 1;
1470 RefreshCrc32(gpt);
Dan Ehrenbergb3d38f52014-12-09 13:42:15 -08001471 EXPECT(1 == CheckHeader(secondary_header, 1, gpt->streaming_drive_sectors,
1472 gpt->gpt_drive_sectors, GPT_FLAG_EXTERNAL));
Nam T. Nguyen6ee52d92014-10-24 13:20:39 -07001473
1474 return TEST_OK;
1475}
1476
Randall Spanglere9213a72013-01-24 11:19:55 -08001477int main(int argc, char *argv[])
1478{
1479 int i;
1480 int error_count = 0;
1481 struct {
1482 char *name;
1483 test_func fp;
1484 int retval;
1485 } test_cases[] = {
1486 { TEST_CASE(StructSizeTest), },
1487 { TEST_CASE(TestBuildTestGptData), },
1488 { TEST_CASE(ParameterTests), },
1489 { TEST_CASE(HeaderCrcTest), },
Randall Spangler0bda13f2013-01-24 12:25:26 -08001490 { TEST_CASE(HeaderSameTest), },
Randall Spanglere9213a72013-01-24 11:19:55 -08001491 { TEST_CASE(SignatureTest), },
1492 { TEST_CASE(RevisionTest), },
1493 { TEST_CASE(SizeTest), },
1494 { TEST_CASE(CrcFieldTest), },
1495 { TEST_CASE(ReservedFieldsTest), },
1496 { TEST_CASE(SizeOfPartitionEntryTest), },
1497 { TEST_CASE(NumberOfPartitionEntriesTest), },
1498 { TEST_CASE(MyLbaTest), },
1499 { TEST_CASE(FirstUsableLbaAndLastUsableLbaTest), },
1500 { TEST_CASE(EntriesCrcTest), },
1501 { TEST_CASE(ValidEntryTest), },
1502 { TEST_CASE(OverlappedPartitionTest), },
1503 { TEST_CASE(SanityCheckTest), },
1504 { TEST_CASE(NoValidKernelEntryTest), },
1505 { TEST_CASE(EntryAttributeGetSetTest), },
1506 { TEST_CASE(EntryTypeTest), },
1507 { TEST_CASE(GetNextNormalTest), },
1508 { TEST_CASE(GetNextPrioTest), },
1509 { TEST_CASE(GetNextTriesTest), },
1510 { TEST_CASE(GptUpdateTest), },
1511 { TEST_CASE(UpdateInvalidKernelTypeTest), },
1512 { TEST_CASE(DuplicateUniqueGuidTest), },
1513 { TEST_CASE(TestCrc32TestVectors), },
Randall Spangler0bda13f2013-01-24 12:25:26 -08001514 { TEST_CASE(GetKernelGuidTest), },
1515 { TEST_CASE(ErrorTextTest), },
Nam T. Nguyen6ee52d92014-10-24 13:20:39 -07001516 { TEST_CASE(CheckHeaderOffDevice), },
Randall Spanglere9213a72013-01-24 11:19:55 -08001517 };
Louis Yung-Chieh Lo4bbf21e2010-04-21 17:29:05 -07001518
Randall Spanglere9213a72013-01-24 11:19:55 -08001519 for (i = 0; i < sizeof(test_cases)/sizeof(test_cases[0]); ++i) {
1520 printf("Running %s() ...\n", test_cases[i].name);
1521 test_cases[i].retval = test_cases[i].fp();
1522 if (test_cases[i].retval) {
1523 printf(COL_RED "[ERROR]\n\n" COL_STOP);
1524 ++error_count;
1525 } else {
1526 printf(COL_GREEN "[PASS]\n\n" COL_STOP);
1527 }
1528 }
Louis Yung-Chieh Lo4bbf21e2010-04-21 17:29:05 -07001529
Randall Spanglere9213a72013-01-24 11:19:55 -08001530 if (error_count) {
1531 printf("\n------------------------------------------------\n");
1532 printf(COL_RED "The following %d test cases are failed:\n"
1533 COL_STOP, error_count);
1534 for (i = 0; i < sizeof(test_cases)/sizeof(test_cases[0]); ++i) {
1535 if (test_cases[i].retval)
1536 printf(" %s()\n", test_cases[i].name);
1537 }
1538 }
Louis Yung-Chieh Lo4bbf21e2010-04-21 17:29:05 -07001539
Randall Spanglere9213a72013-01-24 11:19:55 -08001540 return error_count ? 1 : 0;
Louis Yung-Chieh Lo4bbf21e2010-04-21 17:29:05 -07001541}