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bootstage: Record the time taken to set up driver model
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1/*
2 * This file implements recording of each stage of the boot process. It is
3 * intended to implement timing of each stage, reporting this information
4 * to the user and passing it to the OS for logging / further analysis.
c87dc38d 5 * Note that it requires timer_get_boot_us() to be defined by the board
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6 *
7 * Copyright (c) 2011 The Chromium OS Authors.
097e1783 8 *
1a459660 9 * SPDX-License-Identifier: GPL-2.0+
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10 */
11
12#ifndef _BOOTSTAGE_H
13#define _BOOTSTAGE_H
14
ee2b2434 15/* Define this for host tools */
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16#ifndef CONFIG_BOOTSTAGE_USER_COUNT
17#define CONFIG_BOOTSTAGE_USER_COUNT 20
18#endif
19
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20/* Flags for each bootstage record */
21enum bootstage_flags {
22 BOOTSTAGEF_ERROR = 1 << 0, /* Error record */
23 BOOTSTAGEF_ALLOC = 1 << 1, /* Allocate an id */
24};
25
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26/* bootstate sub-IDs used for kernel and ramdisk ranges */
27enum {
28 BOOTSTAGE_SUB_FORMAT,
29 BOOTSTAGE_SUB_FORMAT_OK,
30 BOOTSTAGE_SUB_NO_UNIT_NAME,
31 BOOTSTAGE_SUB_UNIT_NAME,
32 BOOTSTAGE_SUB_SUBNODE,
33
34 BOOTSTAGE_SUB_CHECK,
35 BOOTSTAGE_SUB_HASH = 5,
36 BOOTSTAGE_SUB_CHECK_ARCH = 5,
37 BOOTSTAGE_SUB_CHECK_ALL,
38 BOOTSTAGE_SUB_GET_DATA,
39 BOOTSTAGE_SUB_CHECK_ALL_OK = 7,
40 BOOTSTAGE_SUB_GET_DATA_OK,
41 BOOTSTAGE_SUB_LOAD,
42};
43
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44/*
45 * A list of boot stages that we know about. Each of these indicates the
46 * state that we are at, and the action that we are about to perform. For
47 * errors, we issue an error for an item when it fails. Therefore the
48 * normal sequence is:
49 *
50 * progress action1
51 * progress action2
52 * progress action3
53 *
54 * and an error condition where action 3 failed would be:
55 *
56 * progress action1
57 * progress action2
58 * progress action3
59 * error on action3
60 */
61enum bootstage_id {
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62 BOOTSTAGE_ID_START = 0,
63 BOOTSTAGE_ID_CHECK_MAGIC, /* Checking image magic */
64 BOOTSTAGE_ID_CHECK_HEADER, /* Checking image header */
65 BOOTSTAGE_ID_CHECK_CHECKSUM, /* Checking image checksum */
66 BOOTSTAGE_ID_CHECK_ARCH, /* Checking architecture */
67
68 BOOTSTAGE_ID_CHECK_IMAGETYPE = 5,/* Checking image type */
69 BOOTSTAGE_ID_DECOMP_IMAGE, /* Decompressing image */
70 BOOTSTAGE_ID_KERNEL_LOADED, /* Kernel has been loaded */
71 BOOTSTAGE_ID_DECOMP_UNIMPL = 7, /* Odd decompression algorithm */
72 BOOTSTAGE_ID_CHECK_BOOT_OS, /* Calling OS-specific boot function */
73 BOOTSTAGE_ID_BOOT_OS_RETURNED, /* Tried to boot OS, but it returned */
74 BOOTSTAGE_ID_CHECK_RAMDISK = 9, /* Checking ram disk */
75
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76 BOOTSTAGE_ID_RD_MAGIC, /* Checking ram disk magic */
77 BOOTSTAGE_ID_RD_HDR_CHECKSUM, /* Checking ram disk heder checksum */
78 BOOTSTAGE_ID_RD_CHECKSUM, /* Checking ram disk checksum */
79 BOOTSTAGE_ID_COPY_RAMDISK = 12, /* Copying ram disk into place */
80 BOOTSTAGE_ID_RAMDISK, /* Checking for valid ramdisk */
81 BOOTSTAGE_ID_NO_RAMDISK, /* No ram disk found (not an error) */
82
097e1783 83 BOOTSTAGE_ID_RUN_OS = 15, /* Exiting U-Boot, entering OS */
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84
85 BOOTSTAGE_ID_NEED_RESET = 30,
86 BOOTSTAGE_ID_POST_FAIL, /* Post failure */
87 BOOTSTAGE_ID_POST_FAIL_R, /* Post failure reported after reloc */
88
89 /*
1b15fac1 90 * This set is reported only by x86, and the meaning is different. In
8ade9506 91 * this case we are reporting completion of a particular stage.
1b15fac1 92 * This should probably change in the x86 code (which doesn't report
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93 * errors in any case), but discussion this can perhaps wait until we
94 * have a generic board implementation.
95 */
96 BOOTSTAGE_ID_BOARD_INIT_R, /* We have relocated */
97 BOOTSTAGE_ID_BOARD_GLOBAL_DATA, /* Global data is set up */
98
99 BOOTSTAGE_ID_BOARD_INIT_SEQ, /* We completed the init sequence */
100 BOOTSTAGE_ID_BOARD_FLASH, /* We have configured flash banks */
101 BOOTSTAGE_ID_BOARD_FLASH_37, /* In case you didn't hear... */
102 BOOTSTAGE_ID_BOARD_ENV, /* Environment is relocated & ready */
103 BOOTSTAGE_ID_BOARD_PCI, /* PCI is up */
104
105 BOOTSTAGE_ID_BOARD_INTERRUPTS, /* Exceptions / interrupts ready */
106 BOOTSTAGE_ID_BOARD_DONE, /* Board init done, off to main loop */
107 /* ^^^ here ends the x86 sequence */
108
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109 /* Boot stages related to loading a kernel from an IDE device */
110 BOOTSTAGE_ID_IDE_START = 41,
111 BOOTSTAGE_ID_IDE_ADDR,
112 BOOTSTAGE_ID_IDE_BOOT_DEVICE,
113 BOOTSTAGE_ID_IDE_TYPE,
114
115 BOOTSTAGE_ID_IDE_PART,
116 BOOTSTAGE_ID_IDE_PART_INFO,
117 BOOTSTAGE_ID_IDE_PART_TYPE,
118 BOOTSTAGE_ID_IDE_PART_READ,
119 BOOTSTAGE_ID_IDE_FORMAT,
120
121 BOOTSTAGE_ID_IDE_CHECKSUM, /* 50 */
122 BOOTSTAGE_ID_IDE_READ,
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123
124 /* Boot stages related to loading a kernel from an NAND device */
125 BOOTSTAGE_ID_NAND_PART,
126 BOOTSTAGE_ID_NAND_SUFFIX,
127 BOOTSTAGE_ID_NAND_BOOT_DEVICE,
128 BOOTSTAGE_ID_NAND_HDR_READ = 55,
129 BOOTSTAGE_ID_NAND_AVAILABLE = 55,
130 BOOTSTAGE_ID_NAND_TYPE = 57,
131 BOOTSTAGE_ID_NAND_READ,
132
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133 /* Boot stages related to loading a kernel from an network device */
134 BOOTSTAGE_ID_NET_CHECKSUM = 60,
135 BOOTSTAGE_ID_NET_ETH_START = 64,
136 BOOTSTAGE_ID_NET_ETH_INIT,
137
138 BOOTSTAGE_ID_NET_START = 80,
139 BOOTSTAGE_ID_NET_NETLOOP_OK,
140 BOOTSTAGE_ID_NET_LOADED,
141 BOOTSTAGE_ID_NET_DONE_ERR,
142 BOOTSTAGE_ID_NET_DONE,
143
a2cc9bf4 144 BOOTSTAGE_ID_FIT_FDT_START = 90,
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145 /*
146 * Boot stages related to loading a FIT image. Some of these are a
147 * bit wonky.
148 */
a2cc9bf4 149 BOOTSTAGE_ID_FIT_KERNEL_START = 100,
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150
151 BOOTSTAGE_ID_FIT_CONFIG = 110,
aacc8c16 152 BOOTSTAGE_ID_FIT_TYPE,
13167dac 153 BOOTSTAGE_ID_FIT_KERNEL_INFO,
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154
155 BOOTSTAGE_ID_FIT_COMPRESSION,
156 BOOTSTAGE_ID_FIT_OS,
157 BOOTSTAGE_ID_FIT_LOADADDR,
158 BOOTSTAGE_ID_OVERWRITTEN,
159
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160 /* Next 10 IDs used by BOOTSTAGE_SUB_... */
161 BOOTSTAGE_ID_FIT_RD_START = 120, /* Ramdisk stages */
aacc8c16 162
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163 /* Next 10 IDs used by BOOTSTAGE_SUB_... */
164 BOOTSTAGE_ID_FIT_SETUP_START = 130, /* x86 setup stages */
165
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166 BOOTSTAGE_ID_IDE_FIT_READ = 140,
167 BOOTSTAGE_ID_IDE_FIT_READ_OK,
168
169 BOOTSTAGE_ID_NAND_FIT_READ = 150,
170 BOOTSTAGE_ID_NAND_FIT_READ_OK,
3a608ca0 171
84a07dbf 172 BOOTSTAGE_ID_FIT_LOADABLE_START = 160, /* for Loadable Images */
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173 /*
174 * These boot stages are new, higher level, and not directly related
175 * to the old boot progress numbers. They are useful for recording
176 * rough boot timing information.
177 */
178 BOOTSTAGE_ID_AWAKE,
996e95d4 179 BOOTSTAGE_ID_START_SPL,
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180 BOOTSTAGE_ID_START_UBOOT_F,
181 BOOTSTAGE_ID_START_UBOOT_R,
182 BOOTSTAGE_ID_USB_START,
183 BOOTSTAGE_ID_ETH_START,
184 BOOTSTAGE_ID_BOOTP_START,
185 BOOTSTAGE_ID_BOOTP_STOP,
186 BOOTSTAGE_ID_BOOTM_START,
187 BOOTSTAGE_ID_BOOTM_HANDOFF,
188 BOOTSTAGE_ID_MAIN_LOOP,
189 BOOTSTAGE_KERNELREAD_START,
190 BOOTSTAGE_KERNELREAD_STOP,
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191 BOOTSTAGE_ID_BOARD_INIT,
192 BOOTSTAGE_ID_BOARD_INIT_DONE,
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193
194 BOOTSTAGE_ID_CPU_AWAKE,
195 BOOTSTAGE_ID_MAIN_CPU_AWAKE,
196 BOOTSTAGE_ID_MAIN_CPU_READY,
197
996e95d4 198 BOOTSTAGE_ID_ACCUM_LCD,
abbdb262 199 BOOTSTAGE_ID_ACCUM_SCSI,
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200 BOOTSTAGE_ID_ACCUM_SPI,
201 BOOTSTAGE_ID_ACCUM_DECOMP,
62afc601 202 BOOTSTAGE_ID_FPGA_INIT,
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203 BOOTSTATE_ID_ACCUM_DM_F,
204 BOOTSTATE_ID_ACCUM_DM_R,
996e95d4 205
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206 /* a few spare for the user, from here */
207 BOOTSTAGE_ID_USER,
208 BOOTSTAGE_ID_COUNT = BOOTSTAGE_ID_USER + CONFIG_BOOTSTAGE_USER_COUNT,
209 BOOTSTAGE_ID_ALLOC,
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210};
211
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212/*
213 * Return the time since boot in microseconds, This is needed for bootstage
214 * and should be defined in CPU- or board-specific code. If undefined then
c87dc38d 215 * you will get a link error.
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216 */
217ulong timer_get_boot_us(void);
218
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219#if defined(USE_HOSTCC)
220#define show_boot_progress(val) do {} while (0)
221#else
cbcd6970 222/**
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223 * Board code can implement show_boot_progress() if needed.
224 *
225 * @param val Progress state (enum bootstage_id), or -id if an error
226 * has occurred.
227 */
228void show_boot_progress(int val);
7ac2fe2d 229#endif
770605e4 230
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231#if defined(CONFIG_BOOTSTAGE) && !defined(CONFIG_SPL_BUILD) && \
232 !defined(USE_HOSTCC)
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233/* This is the full bootstage implementation */
234
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235/**
236 * Relocate existing bootstage records
237 *
238 * Call this after relocation has happened and after malloc has been initted.
239 * We need to copy any pointers in bootstage records that were added pre-
cbcd6970 240 * relocation, since memory can be overwritten later.
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241 * @return Always returns 0, to indicate success
242 */
243int bootstage_relocate(void);
244
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245/**
246 * Add a new bootstage record
247 *
248 * @param id Bootstage ID to use (ignored if flags & BOOTSTAGEF_ALLOC)
249 * @param name Name of record, or NULL for none
250 * @param flags Flags (BOOTSTAGEF_...)
251 * @param mark Time to record in this record, in microseconds
252 */
253ulong bootstage_add_record(enum bootstage_id id, const char *name,
254 int flags, ulong mark);
255
cbcd6970 256/**
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257 * Mark a time stamp for the current boot stage.
258 */
259ulong bootstage_mark(enum bootstage_id id);
260
261ulong bootstage_error(enum bootstage_id id);
262
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263ulong bootstage_mark_name(enum bootstage_id id, const char *name);
264
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265/**
266 * Mark a time stamp in the given function and line number
267 *
268 * See BOOTSTAGE_MARKER() for a convenient macro.
269 *
270 * @param file Filename to record (NULL if none)
271 * @param func Function name to record
272 * @param linenum Line number to record
273 * @return recorded time stamp
274 */
275ulong bootstage_mark_code(const char *file, const char *func,
276 int linenum);
277
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278/**
279 * Mark the start of a bootstage activity. The end will be marked later with
280 * bootstage_accum() and at that point we accumulate the time taken. Calling
281 * this function turns the given id into a accumulator rather than and
282 * absolute mark in time. Accumulators record the total amount of time spent
283 * in an activty during boot.
284 *
285 * @param id Bootstage id to record this timestamp against
286 * @param name Textual name to display for this id in the report (maybe NULL)
287 * @return start timestamp in microseconds
288 */
289uint32_t bootstage_start(enum bootstage_id id, const char *name);
290
291/**
292 * Mark the end of a bootstage activity
293 *
294 * After previously marking the start of an activity with bootstage_start(),
295 * call this function to mark the end. You can call these functions in pairs
296 * as many times as you like.
297 *
298 * @param id Bootstage id to record this timestamp against
299 * @return time spent in this iteration of the activity (i.e. the time now
300 * less the start time recorded in the last bootstage_start() call
301 * with this id.
302 */
303uint32_t bootstage_accum(enum bootstage_id id);
304
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305/* Print a report about boot time */
306void bootstage_report(void);
307
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308/**
309 * Add bootstage information to the device tree
310 *
311 * @return 0 if ok, -ve on error
312 */
313int bootstage_fdt_add_report(void);
314
cbcd6970 315/**
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316 * Stash bootstage data into memory
317 *
318 * @param base Base address of memory buffer
319 * @param size Size of memory buffer
320 * @return 0 if stashed ok, -1 if out of space
321 */
322int bootstage_stash(void *base, int size);
323
324/**
325 * Read bootstage data from memory
326 *
327 * Bootstage data is read from memory and placed in the bootstage table
328 * in the user records.
329 *
330 * @param base Base address of memory buffer
331 * @param size Size of memory buffer (-1 if unknown)
332 * @return 0 if unstashed ok, -1 if bootstage info not found, or out of space
333 */
334int bootstage_unstash(void *base, int size);
335
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336/**
337 * bootstage_get_size() - Get the size of the bootstage data
338 *
339 * @return size of boostage data in bytes
340 */
341int bootstage_get_size(void);
342
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343/**
344 * bootstage_init() - Prepare bootstage for use
345 *
346 * @first: true if this is the first time bootstage is set up. This causes it
347 * to add a 'reset' record with a time of 0.
348 */
349int bootstage_init(bool first);
350
770605e4 351#else
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352static inline ulong bootstage_add_record(enum bootstage_id id,
353 const char *name, int flags, ulong mark)
354{
355 return 0;
356}
357
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358/*
359 * This is a dummy implementation which just calls show_boot_progress(),
360 * and won't even do that unless CONFIG_SHOW_BOOT_PROGRESS is defined
361 */
362
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363static inline int bootstage_relocate(void)
364{
365 return 0;
366}
367
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368static inline ulong bootstage_mark(enum bootstage_id id)
369{
370 show_boot_progress(id);
371 return 0;
372}
373
374static inline ulong bootstage_error(enum bootstage_id id)
5ddb118d 375{
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376 show_boot_progress(-id);
377 return 0;
5ddb118d 378}
097e1783 379
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380static inline ulong bootstage_mark_name(enum bootstage_id id, const char *name)
381{
7f442e36 382 show_boot_progress(id);
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383 return 0;
384}
385
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386static inline ulong bootstage_mark_code(const char *file, const char *func,
387 int linenum)
388{
389 return 0;
390}
391
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392static inline uint32_t bootstage_start(enum bootstage_id id, const char *name)
393{
394 return 0;
395}
396
397static inline uint32_t bootstage_accum(enum bootstage_id id)
398{
399 return 0;
400}
401
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402static inline int bootstage_stash(void *base, int size)
403{
404 return 0; /* Pretend to succeed */
405}
3a608ca0 406
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407static inline int bootstage_unstash(void *base, int size)
408{
409 return 0; /* Pretend to succeed */
410}
b383d6c0 411
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412static inline int bootstage_get_size(void)
413{
414 return 0;
415}
416
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417static inline int bootstage_init(bool first)
418{
419 return 0;
420}
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421#endif /* CONFIG_BOOTSTAGE */
422
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423/* Helper macro for adding a bootstage to a line of code */
424#define BOOTSTAGE_MARKER() \
425 bootstage_mark_code(__FILE__, __func__, __LINE__)
426
097e1783 427#endif