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tracing: Replace trace_event struct array with pointer array
[mirror_ubuntu-bionic-kernel.git] / include / asm-generic / vmlinux.lds.h
CommitLineData
ef53dae8
SR
1/*
2 * Helper macros to support writing architecture specific
3 * linker scripts.
4 *
5 * A minimal linker scripts has following content:
6 * [This is a sample, architectures may have special requiriements]
7 *
8 * OUTPUT_FORMAT(...)
9 * OUTPUT_ARCH(...)
10 * ENTRY(...)
11 * SECTIONS
12 * {
13 * . = START;
14 * __init_begin = .;
7923f90f 15 * HEAD_TEXT_SECTION
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SR
16 * INIT_TEXT_SECTION(PAGE_SIZE)
17 * INIT_DATA_SECTION(...)
18 * PERCPU(PAGE_SIZE)
19 * __init_end = .;
20 *
21 * _stext = .;
22 * TEXT_SECTION = 0
23 * _etext = .;
24 *
25 * _sdata = .;
26 * RO_DATA_SECTION(PAGE_SIZE)
27 * RW_DATA_SECTION(...)
28 * _edata = .;
29 *
30 * EXCEPTION_TABLE(...)
31 * NOTES
32 *
04e448d9 33 * BSS_SECTION(0, 0, 0)
ef53dae8
SR
34 * _end = .;
35 *
ef53dae8
SR
36 * STABS_DEBUG
37 * DWARF_DEBUG
023bf6f1
TH
38 *
39 * DISCARDS // must be the last
ef53dae8
SR
40 * }
41 *
42 * [__init_begin, __init_end] is the init section that may be freed after init
43 * [_stext, _etext] is the text section
44 * [_sdata, _edata] is the data section
45 *
46 * Some of the included output section have their own set of constants.
47 * Examples are: [__initramfs_start, __initramfs_end] for initramfs and
48 * [__nosave_begin, __nosave_end] for the nosave data
49 */
c80d471a 50
1da177e4
LT
51#ifndef LOAD_OFFSET
52#define LOAD_OFFSET 0
53#endif
54
9e1b9b80
AJ
55#ifndef SYMBOL_PREFIX
56#define VMLINUX_SYMBOL(sym) sym
57#else
58#define PASTE2(x,y) x##y
59#define PASTE(x,y) PASTE2(x,y)
60#define VMLINUX_SYMBOL(sym) PASTE(SYMBOL_PREFIX, sym)
1da177e4
LT
61#endif
62
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SR
63/* Align . to a 8 byte boundary equals to maximum function alignment. */
64#define ALIGN_FUNCTION() . = ALIGN(8)
65
07fca0e5
SR
66/*
67 * Align to a 32 byte boundary equal to the
68 * alignment gcc 4.5 uses for a struct
69 */
aab94339
DB
70#define STRUCT_ALIGNMENT 32
71#define STRUCT_ALIGN() . = ALIGN(STRUCT_ALIGNMENT)
07fca0e5 72
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SR
73/* The actual configuration determine if the init/exit sections
74 * are handled as text/data or they can be discarded (which
75 * often happens at runtime)
76 */
77#ifdef CONFIG_HOTPLUG
78#define DEV_KEEP(sec) *(.dev##sec)
79#define DEV_DISCARD(sec)
80#else
81#define DEV_KEEP(sec)
82#define DEV_DISCARD(sec) *(.dev##sec)
83#endif
84
85#ifdef CONFIG_HOTPLUG_CPU
86#define CPU_KEEP(sec) *(.cpu##sec)
87#define CPU_DISCARD(sec)
88#else
89#define CPU_KEEP(sec)
90#define CPU_DISCARD(sec) *(.cpu##sec)
91#endif
92
1a3fb6d4 93#if defined(CONFIG_MEMORY_HOTPLUG)
eb8f6890
SR
94#define MEM_KEEP(sec) *(.mem##sec)
95#define MEM_DISCARD(sec)
96#else
97#define MEM_KEEP(sec)
98#define MEM_DISCARD(sec) *(.mem##sec)
99#endif
100
8da3821b 101#ifdef CONFIG_FTRACE_MCOUNT_RECORD
4b3b4c5e
JR
102#define MCOUNT_REC() . = ALIGN(8); \
103 VMLINUX_SYMBOL(__start_mcount_loc) = .; \
8da3821b
SR
104 *(__mcount_loc) \
105 VMLINUX_SYMBOL(__stop_mcount_loc) = .;
106#else
107#define MCOUNT_REC()
108#endif
eb8f6890 109
2ed84eeb 110#ifdef CONFIG_TRACE_BRANCH_PROFILING
45b79749
SR
111#define LIKELY_PROFILE() VMLINUX_SYMBOL(__start_annotated_branch_profile) = .; \
112 *(_ftrace_annotated_branch) \
113 VMLINUX_SYMBOL(__stop_annotated_branch_profile) = .;
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SR
114#else
115#define LIKELY_PROFILE()
116#endif
117
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SR
118#ifdef CONFIG_PROFILE_ALL_BRANCHES
119#define BRANCH_PROFILE() VMLINUX_SYMBOL(__start_branch_profile) = .; \
120 *(_ftrace_branch) \
121 VMLINUX_SYMBOL(__stop_branch_profile) = .;
122#else
123#define BRANCH_PROFILE()
124#endif
125
5f77a88b 126#ifdef CONFIG_EVENT_TRACING
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SR
127#define FTRACE_EVENTS() . = ALIGN(8); \
128 VMLINUX_SYMBOL(__start_ftrace_events) = .; \
b77e38aa
SR
129 *(_ftrace_events) \
130 VMLINUX_SYMBOL(__stop_ftrace_events) = .;
131#else
132#define FTRACE_EVENTS()
133#endif
134
1ba28e02
LJ
135#ifdef CONFIG_TRACING
136#define TRACE_PRINTKS() VMLINUX_SYMBOL(__start___trace_bprintk_fmt) = .; \
137 *(__trace_printk_fmt) /* Trace_printk fmt' pointer */ \
138 VMLINUX_SYMBOL(__stop___trace_bprintk_fmt) = .;
139#else
140#define TRACE_PRINTKS()
141#endif
142
bed1ffca
FW
143#ifdef CONFIG_FTRACE_SYSCALLS
144#define TRACE_SYSCALLS() VMLINUX_SYMBOL(__start_syscalls_metadata) = .; \
145 *(__syscalls_metadata) \
146 VMLINUX_SYMBOL(__stop_syscalls_metadata) = .;
147#else
148#define TRACE_SYSCALLS()
149#endif
150
aab94339
DB
151
152#define KERNEL_DTB() \
153 STRUCT_ALIGN(); \
154 VMLINUX_SYMBOL(__dtb_start) = .; \
155 *(.dtb.init.rodata) \
156 VMLINUX_SYMBOL(__dtb_end) = .;
157
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SR
158/* .data section */
159#define DATA_DATA \
0e0d314e 160 *(.data) \
312b1485 161 *(.ref.data) \
d356c0b6 162 *(.data..shared_aligned) /* percpu related */ \
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SR
163 DEV_KEEP(init.data) \
164 DEV_KEEP(exit.data) \
165 CPU_KEEP(init.data) \
166 CPU_KEEP(exit.data) \
167 MEM_KEEP(init.data) \
168 MEM_KEEP(exit.data) \
7e066fb8 169 . = ALIGN(32); \
97e1c18e
MD
170 VMLINUX_SYMBOL(__start___tracepoints) = .; \
171 *(__tracepoints) \
1f0d69a9 172 VMLINUX_SYMBOL(__stop___tracepoints) = .; \
e9d376f0
JB
173 /* implement dynamic printk debug */ \
174 . = ALIGN(8); \
175 VMLINUX_SYMBOL(__start___verbose) = .; \
176 *(__verbose) \
177 VMLINUX_SYMBOL(__stop___verbose) = .; \
2bcd521a 178 LIKELY_PROFILE() \
b77e38aa 179 BRANCH_PROFILE() \
8a20d84d 180 TRACE_PRINTKS() \
07fca0e5
SR
181 \
182 STRUCT_ALIGN(); \
bed1ffca 183 TRACE_SYSCALLS()
ca967258 184
ef53dae8
SR
185/*
186 * Data section helpers
187 */
188#define NOSAVE_DATA \
189 . = ALIGN(PAGE_SIZE); \
190 VMLINUX_SYMBOL(__nosave_begin) = .; \
07b3bb1e 191 *(.data..nosave) \
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SR
192 . = ALIGN(PAGE_SIZE); \
193 VMLINUX_SYMBOL(__nosave_end) = .;
194
195#define PAGE_ALIGNED_DATA(page_align) \
196 . = ALIGN(page_align); \
75b13483 197 *(.data..page_aligned)
ef53dae8
SR
198
199#define READ_MOSTLY_DATA(align) \
200 . = ALIGN(align); \
8369744f
SL
201 *(.data..read_mostly) \
202 . = ALIGN(align);
ef53dae8
SR
203
204#define CACHELINE_ALIGNED_DATA(align) \
205 . = ALIGN(align); \
4af57b78 206 *(.data..cacheline_aligned)
ef53dae8 207
39a449d9 208#define INIT_TASK_DATA(align) \
ef53dae8 209 . = ALIGN(align); \
2af7687f 210 *(.data..init_task)
ef53dae8
SR
211
212/*
213 * Read only Data
214 */
215#define RO_DATA_SECTION(align) \
4096b46f 216 . = ALIGN((align)); \
1da177e4 217 .rodata : AT(ADDR(.rodata) - LOAD_OFFSET) { \
6569580d 218 VMLINUX_SYMBOL(__start_rodata) = .; \
1da177e4
LT
219 *(.rodata) *(.rodata.*) \
220 *(__vermagic) /* Kernel version magic */ \
8256e47c 221 *(__markers_strings) /* Markers: strings */ \
97e1c18e 222 *(__tracepoints_strings)/* Tracepoints: strings */ \
1da177e4
LT
223 } \
224 \
225 .rodata1 : AT(ADDR(.rodata1) - LOAD_OFFSET) { \
226 *(.rodata1) \
227 } \
228 \
6360b1fb
JB
229 BUG_TABLE \
230 \
bf5438fc
JB
231 JUMP_TABLE \
232 \
1da177e4
LT
233 /* PCI quirks */ \
234 .pci_fixup : AT(ADDR(.pci_fixup) - LOAD_OFFSET) { \
235 VMLINUX_SYMBOL(__start_pci_fixups_early) = .; \
236 *(.pci_fixup_early) \
237 VMLINUX_SYMBOL(__end_pci_fixups_early) = .; \
238 VMLINUX_SYMBOL(__start_pci_fixups_header) = .; \
239 *(.pci_fixup_header) \
240 VMLINUX_SYMBOL(__end_pci_fixups_header) = .; \
241 VMLINUX_SYMBOL(__start_pci_fixups_final) = .; \
242 *(.pci_fixup_final) \
243 VMLINUX_SYMBOL(__end_pci_fixups_final) = .; \
244 VMLINUX_SYMBOL(__start_pci_fixups_enable) = .; \
245 *(.pci_fixup_enable) \
246 VMLINUX_SYMBOL(__end_pci_fixups_enable) = .; \
1597cacb
AC
247 VMLINUX_SYMBOL(__start_pci_fixups_resume) = .; \
248 *(.pci_fixup_resume) \
249 VMLINUX_SYMBOL(__end_pci_fixups_resume) = .; \
e1a2a51e
RW
250 VMLINUX_SYMBOL(__start_pci_fixups_resume_early) = .; \
251 *(.pci_fixup_resume_early) \
252 VMLINUX_SYMBOL(__end_pci_fixups_resume_early) = .; \
253 VMLINUX_SYMBOL(__start_pci_fixups_suspend) = .; \
254 *(.pci_fixup_suspend) \
255 VMLINUX_SYMBOL(__end_pci_fixups_suspend) = .; \
1da177e4
LT
256 } \
257 \
5658c769
DW
258 /* Built-in firmware blobs */ \
259 .builtin_fw : AT(ADDR(.builtin_fw) - LOAD_OFFSET) { \
260 VMLINUX_SYMBOL(__start_builtin_fw) = .; \
261 *(.builtin_fw) \
262 VMLINUX_SYMBOL(__end_builtin_fw) = .; \
263 } \
264 \
394b701c 265 /* RapidIO route ops */ \
e5cabeb3 266 .rio_ops : AT(ADDR(.rio_ops) - LOAD_OFFSET) { \
058f88d6
AB
267 VMLINUX_SYMBOL(__start_rio_switch_ops) = .; \
268 *(.rio_switch_ops) \
269 VMLINUX_SYMBOL(__end_rio_switch_ops) = .; \
394b701c
MP
270 } \
271 \
63687a52
JB
272 TRACEDATA \
273 \
1da177e4
LT
274 /* Kernel symbol table: Normal symbols */ \
275 __ksymtab : AT(ADDR(__ksymtab) - LOAD_OFFSET) { \
276 VMLINUX_SYMBOL(__start___ksymtab) = .; \
277 *(__ksymtab) \
278 VMLINUX_SYMBOL(__stop___ksymtab) = .; \
279 } \
280 \
281 /* Kernel symbol table: GPL-only symbols */ \
282 __ksymtab_gpl : AT(ADDR(__ksymtab_gpl) - LOAD_OFFSET) { \
283 VMLINUX_SYMBOL(__start___ksymtab_gpl) = .; \
284 *(__ksymtab_gpl) \
285 VMLINUX_SYMBOL(__stop___ksymtab_gpl) = .; \
286 } \
287 \
f71d20e9
AV
288 /* Kernel symbol table: Normal unused symbols */ \
289 __ksymtab_unused : AT(ADDR(__ksymtab_unused) - LOAD_OFFSET) { \
290 VMLINUX_SYMBOL(__start___ksymtab_unused) = .; \
291 *(__ksymtab_unused) \
292 VMLINUX_SYMBOL(__stop___ksymtab_unused) = .; \
293 } \
294 \
295 /* Kernel symbol table: GPL-only unused symbols */ \
296 __ksymtab_unused_gpl : AT(ADDR(__ksymtab_unused_gpl) - LOAD_OFFSET) { \
297 VMLINUX_SYMBOL(__start___ksymtab_unused_gpl) = .; \
298 *(__ksymtab_unused_gpl) \
299 VMLINUX_SYMBOL(__stop___ksymtab_unused_gpl) = .; \
300 } \
301 \
9f28bb7e
GKH
302 /* Kernel symbol table: GPL-future-only symbols */ \
303 __ksymtab_gpl_future : AT(ADDR(__ksymtab_gpl_future) - LOAD_OFFSET) { \
304 VMLINUX_SYMBOL(__start___ksymtab_gpl_future) = .; \
305 *(__ksymtab_gpl_future) \
306 VMLINUX_SYMBOL(__stop___ksymtab_gpl_future) = .; \
307 } \
308 \
1da177e4
LT
309 /* Kernel symbol table: Normal symbols */ \
310 __kcrctab : AT(ADDR(__kcrctab) - LOAD_OFFSET) { \
311 VMLINUX_SYMBOL(__start___kcrctab) = .; \
312 *(__kcrctab) \
313 VMLINUX_SYMBOL(__stop___kcrctab) = .; \
314 } \
315 \
316 /* Kernel symbol table: GPL-only symbols */ \
317 __kcrctab_gpl : AT(ADDR(__kcrctab_gpl) - LOAD_OFFSET) { \
318 VMLINUX_SYMBOL(__start___kcrctab_gpl) = .; \
319 *(__kcrctab_gpl) \
320 VMLINUX_SYMBOL(__stop___kcrctab_gpl) = .; \
321 } \
322 \
f71d20e9
AV
323 /* Kernel symbol table: Normal unused symbols */ \
324 __kcrctab_unused : AT(ADDR(__kcrctab_unused) - LOAD_OFFSET) { \
325 VMLINUX_SYMBOL(__start___kcrctab_unused) = .; \
326 *(__kcrctab_unused) \
327 VMLINUX_SYMBOL(__stop___kcrctab_unused) = .; \
328 } \
329 \
330 /* Kernel symbol table: GPL-only unused symbols */ \
331 __kcrctab_unused_gpl : AT(ADDR(__kcrctab_unused_gpl) - LOAD_OFFSET) { \
332 VMLINUX_SYMBOL(__start___kcrctab_unused_gpl) = .; \
333 *(__kcrctab_unused_gpl) \
334 VMLINUX_SYMBOL(__stop___kcrctab_unused_gpl) = .; \
335 } \
336 \
9f28bb7e
GKH
337 /* Kernel symbol table: GPL-future-only symbols */ \
338 __kcrctab_gpl_future : AT(ADDR(__kcrctab_gpl_future) - LOAD_OFFSET) { \
339 VMLINUX_SYMBOL(__start___kcrctab_gpl_future) = .; \
340 *(__kcrctab_gpl_future) \
341 VMLINUX_SYMBOL(__stop___kcrctab_gpl_future) = .; \
342 } \
343 \
1da177e4
LT
344 /* Kernel symbol table: strings */ \
345 __ksymtab_strings : AT(ADDR(__ksymtab_strings) - LOAD_OFFSET) { \
346 *(__ksymtab_strings) \
347 } \
348 \
eb8f6890
SR
349 /* __*init sections */ \
350 __init_rodata : AT(ADDR(__init_rodata) - LOAD_OFFSET) { \
312b1485 351 *(.ref.rodata) \
eb8f6890
SR
352 DEV_KEEP(init.rodata) \
353 DEV_KEEP(exit.rodata) \
354 CPU_KEEP(init.rodata) \
355 CPU_KEEP(exit.rodata) \
356 MEM_KEEP(init.rodata) \
357 MEM_KEEP(exit.rodata) \
358 } \
359 \
1da177e4
LT
360 /* Built-in module parameters. */ \
361 __param : AT(ADDR(__param) - LOAD_OFFSET) { \
362 VMLINUX_SYMBOL(__start___param) = .; \
363 *(__param) \
364 VMLINUX_SYMBOL(__stop___param) = .; \
e94965ed
DT
365 } \
366 \
367 /* Built-in module versions. */ \
368 __modver : AT(ADDR(__modver) - LOAD_OFFSET) { \
369 VMLINUX_SYMBOL(__start___modver) = .; \
370 *(__modver) \
371 VMLINUX_SYMBOL(__stop___modver) = .; \
edeed305 372 . = ALIGN((align)); \
6569580d 373 VMLINUX_SYMBOL(__end_rodata) = .; \
7583ddfd 374 } \
4096b46f
SR
375 . = ALIGN((align));
376
ef53dae8 377/* RODATA & RO_DATA provided for backward compatibility.
4096b46f 378 * All archs are supposed to use RO_DATA() */
ef53dae8
SR
379#define RODATA RO_DATA_SECTION(4096)
380#define RO_DATA(align) RO_DATA_SECTION(align)
1da177e4
LT
381
382#define SECURITY_INIT \
60bad7fa 383 .security_initcall.init : AT(ADDR(.security_initcall.init) - LOAD_OFFSET) { \
1da177e4
LT
384 VMLINUX_SYMBOL(__security_initcall_start) = .; \
385 *(.security_initcall.init) \
386 VMLINUX_SYMBOL(__security_initcall_end) = .; \
387 }
388
7664709b
SR
389/* .text section. Map to function alignment to avoid address changes
390 * during second ld run in second ld pass when generating System.map */
391#define TEXT_TEXT \
392 ALIGN_FUNCTION(); \
fb5e2b37 393 *(.text.hot) \
0e0d314e 394 *(.text) \
312b1485 395 *(.ref.text) \
eb8f6890
SR
396 DEV_KEEP(init.text) \
397 DEV_KEEP(exit.text) \
398 CPU_KEEP(init.text) \
399 CPU_KEEP(exit.text) \
400 MEM_KEEP(init.text) \
fb5e2b37
JB
401 MEM_KEEP(exit.text) \
402 *(.text.unlikely)
eb8f6890 403
7664709b 404
6d30e3a8
SR
405/* sched.text is aling to function alignment to secure we have same
406 * address even at second ld pass when generating System.map */
1da177e4 407#define SCHED_TEXT \
6d30e3a8 408 ALIGN_FUNCTION(); \
1da177e4
LT
409 VMLINUX_SYMBOL(__sched_text_start) = .; \
410 *(.sched.text) \
411 VMLINUX_SYMBOL(__sched_text_end) = .;
412
6d30e3a8
SR
413/* spinlock.text is aling to function alignment to secure we have same
414 * address even at second ld pass when generating System.map */
1da177e4 415#define LOCK_TEXT \
6d30e3a8 416 ALIGN_FUNCTION(); \
1da177e4
LT
417 VMLINUX_SYMBOL(__lock_text_start) = .; \
418 *(.spinlock.text) \
419 VMLINUX_SYMBOL(__lock_text_end) = .;
d0aaff97
PP
420
421#define KPROBES_TEXT \
422 ALIGN_FUNCTION(); \
423 VMLINUX_SYMBOL(__kprobes_text_start) = .; \
424 *(.kprobes.text) \
425 VMLINUX_SYMBOL(__kprobes_text_end) = .;
a7d0c210 426
a0343e82
FW
427#ifdef CONFIG_FUNCTION_GRAPH_TRACER
428#define IRQENTRY_TEXT \
429 ALIGN_FUNCTION(); \
430 VMLINUX_SYMBOL(__irqentry_text_start) = .; \
431 *(.irqentry.text) \
432 VMLINUX_SYMBOL(__irqentry_text_end) = .;
433#else
434#define IRQENTRY_TEXT
435#endif
436
37c514e3 437/* Section used for early init (in .S files) */
7923f90f 438#define HEAD_TEXT *(.head.text)
37c514e3 439
7923f90f 440#define HEAD_TEXT_SECTION \
ef53dae8
SR
441 .head.text : AT(ADDR(.head.text) - LOAD_OFFSET) { \
442 HEAD_TEXT \
443 }
444
445/*
446 * Exception table
447 */
448#define EXCEPTION_TABLE(align) \
449 . = ALIGN(align); \
450 __ex_table : AT(ADDR(__ex_table) - LOAD_OFFSET) { \
451 VMLINUX_SYMBOL(__start___ex_table) = .; \
452 *(__ex_table) \
453 VMLINUX_SYMBOL(__stop___ex_table) = .; \
454 }
455
456/*
457 * Init task
458 */
39a449d9 459#define INIT_TASK_DATA_SECTION(align) \
ef53dae8 460 . = ALIGN(align); \
da5e37ef 461 .data..init_task : AT(ADDR(.data..init_task) - LOAD_OFFSET) { \
39a449d9 462 INIT_TASK_DATA(align) \
ef53dae8 463 }
37c514e3 464
b99b87f7 465#ifdef CONFIG_CONSTRUCTORS
2a2325e6
HC
466#define KERNEL_CTORS() . = ALIGN(8); \
467 VMLINUX_SYMBOL(__ctors_start) = .; \
b99b87f7
PO
468 *(.ctors) \
469 VMLINUX_SYMBOL(__ctors_end) = .;
470#else
471#define KERNEL_CTORS()
472#endif
473
01ba2bdc 474/* init and exit section handling */
eb8f6890
SR
475#define INIT_DATA \
476 *(.init.data) \
477 DEV_DISCARD(init.data) \
eb8f6890 478 CPU_DISCARD(init.data) \
eb8f6890 479 MEM_DISCARD(init.data) \
b99b87f7 480 KERNEL_CTORS() \
fd6c3a8d 481 *(.init.rodata) \
4b3b4c5e 482 MCOUNT_REC() \
e4a9ea5e 483 FTRACE_EVENTS() \
fd6c3a8d
JB
484 DEV_DISCARD(init.rodata) \
485 CPU_DISCARD(init.rodata) \
aab94339
DB
486 MEM_DISCARD(init.rodata) \
487 KERNEL_DTB()
eb8f6890
SR
488
489#define INIT_TEXT \
490 *(.init.text) \
491 DEV_DISCARD(init.text) \
492 CPU_DISCARD(init.text) \
493 MEM_DISCARD(init.text)
494
495#define EXIT_DATA \
496 *(.exit.data) \
497 DEV_DISCARD(exit.data) \
498 DEV_DISCARD(exit.rodata) \
499 CPU_DISCARD(exit.data) \
500 CPU_DISCARD(exit.rodata) \
501 MEM_DISCARD(exit.data) \
502 MEM_DISCARD(exit.rodata)
01ba2bdc 503
eb8f6890
SR
504#define EXIT_TEXT \
505 *(.exit.text) \
506 DEV_DISCARD(exit.text) \
507 CPU_DISCARD(exit.text) \
508 MEM_DISCARD(exit.text)
01ba2bdc 509
7923f90f
SR
510#define EXIT_CALL \
511 *(.exitcall.exit)
512
ef53dae8
SR
513/*
514 * bss (Block Started by Symbol) - uninitialized data
515 * zeroed during startup
516 */
04e448d9
TA
517#define SBSS(sbss_align) \
518 . = ALIGN(sbss_align); \
ef53dae8
SR
519 .sbss : AT(ADDR(.sbss) - LOAD_OFFSET) { \
520 *(.sbss) \
521 *(.scommon) \
522 }
523
524#define BSS(bss_align) \
525 . = ALIGN(bss_align); \
526 .bss : AT(ADDR(.bss) - LOAD_OFFSET) { \
7c74df07 527 *(.bss..page_aligned) \
ef53dae8
SR
528 *(.dynbss) \
529 *(.bss) \
530 *(COMMON) \
ef53dae8
SR
531 }
532
533/*
534 * DWARF debug sections.
535 * Symbols in the DWARF debugging sections are relative to
536 * the beginning of the section so we begin them at 0.
537 */
a7d0c210
PBG
538#define DWARF_DEBUG \
539 /* DWARF 1 */ \
540 .debug 0 : { *(.debug) } \
541 .line 0 : { *(.line) } \
542 /* GNU DWARF 1 extensions */ \
543 .debug_srcinfo 0 : { *(.debug_srcinfo) } \
544 .debug_sfnames 0 : { *(.debug_sfnames) } \
545 /* DWARF 1.1 and DWARF 2 */ \
546 .debug_aranges 0 : { *(.debug_aranges) } \
547 .debug_pubnames 0 : { *(.debug_pubnames) } \
548 /* DWARF 2 */ \
549 .debug_info 0 : { *(.debug_info \
550 .gnu.linkonce.wi.*) } \
551 .debug_abbrev 0 : { *(.debug_abbrev) } \
552 .debug_line 0 : { *(.debug_line) } \
553 .debug_frame 0 : { *(.debug_frame) } \
554 .debug_str 0 : { *(.debug_str) } \
555 .debug_loc 0 : { *(.debug_loc) } \
556 .debug_macinfo 0 : { *(.debug_macinfo) } \
557 /* SGI/MIPS DWARF 2 extensions */ \
558 .debug_weaknames 0 : { *(.debug_weaknames) } \
559 .debug_funcnames 0 : { *(.debug_funcnames) } \
560 .debug_typenames 0 : { *(.debug_typenames) } \
561 .debug_varnames 0 : { *(.debug_varnames) } \
562
563 /* Stabs debugging sections. */
564#define STABS_DEBUG \
565 .stab 0 : { *(.stab) } \
566 .stabstr 0 : { *(.stabstr) } \
567 .stab.excl 0 : { *(.stab.excl) } \
568 .stab.exclstr 0 : { *(.stab.exclstr) } \
569 .stab.index 0 : { *(.stab.index) } \
570 .stab.indexstr 0 : { *(.stab.indexstr) } \
571 .comment 0 : { *(.comment) }
9c9b8b38 572
6360b1fb 573#ifdef CONFIG_GENERIC_BUG
7664c5a1
JF
574#define BUG_TABLE \
575 . = ALIGN(8); \
576 __bug_table : AT(ADDR(__bug_table) - LOAD_OFFSET) { \
c6de0026 577 VMLINUX_SYMBOL(__start___bug_table) = .; \
7664c5a1 578 *(__bug_table) \
c6de0026 579 VMLINUX_SYMBOL(__stop___bug_table) = .; \
7664c5a1 580 }
6360b1fb
JB
581#else
582#define BUG_TABLE
583#endif
7664c5a1 584
bf5438fc
JB
585#define JUMP_TABLE \
586 . = ALIGN(8); \
587 __jump_table : AT(ADDR(__jump_table) - LOAD_OFFSET) { \
588 VMLINUX_SYMBOL(__start___jump_table) = .; \
589 *(__jump_table) \
590 VMLINUX_SYMBOL(__stop___jump_table) = .; \
591 }
592
63687a52
JB
593#ifdef CONFIG_PM_TRACE
594#define TRACEDATA \
595 . = ALIGN(4); \
596 .tracedata : AT(ADDR(.tracedata) - LOAD_OFFSET) { \
c6de0026 597 VMLINUX_SYMBOL(__tracedata_start) = .; \
63687a52 598 *(.tracedata) \
c6de0026 599 VMLINUX_SYMBOL(__tracedata_end) = .; \
63687a52
JB
600 }
601#else
602#define TRACEDATA
603#endif
604
9c9b8b38 605#define NOTES \
cbe87121
RM
606 .notes : AT(ADDR(.notes) - LOAD_OFFSET) { \
607 VMLINUX_SYMBOL(__start_notes) = .; \
608 *(.note.*) \
609 VMLINUX_SYMBOL(__stop_notes) = .; \
610 }
61ce1efe 611
ef53dae8
SR
612#define INIT_SETUP(initsetup_align) \
613 . = ALIGN(initsetup_align); \
614 VMLINUX_SYMBOL(__setup_start) = .; \
615 *(.init.setup) \
616 VMLINUX_SYMBOL(__setup_end) = .;
617
61ce1efe 618#define INITCALLS \
c2147a50 619 *(.initcallearly.init) \
c6de0026 620 VMLINUX_SYMBOL(__early_initcall_end) = .; \
b3438f82
LT
621 *(.initcall0.init) \
622 *(.initcall0s.init) \
61ce1efe 623 *(.initcall1.init) \
735a7ffb 624 *(.initcall1s.init) \
61ce1efe 625 *(.initcall2.init) \
735a7ffb 626 *(.initcall2s.init) \
61ce1efe 627 *(.initcall3.init) \
735a7ffb 628 *(.initcall3s.init) \
61ce1efe 629 *(.initcall4.init) \
735a7ffb 630 *(.initcall4s.init) \
61ce1efe 631 *(.initcall5.init) \
735a7ffb 632 *(.initcall5s.init) \
8d610dd5 633 *(.initcallrootfs.init) \
61ce1efe 634 *(.initcall6.init) \
735a7ffb
AM
635 *(.initcall6s.init) \
636 *(.initcall7.init) \
637 *(.initcall7s.init)
61ce1efe 638
ef53dae8
SR
639#define INIT_CALLS \
640 VMLINUX_SYMBOL(__initcall_start) = .; \
641 INITCALLS \
642 VMLINUX_SYMBOL(__initcall_end) = .;
643
644#define CON_INITCALL \
645 VMLINUX_SYMBOL(__con_initcall_start) = .; \
646 *(.con_initcall.init) \
647 VMLINUX_SYMBOL(__con_initcall_end) = .;
648
649#define SECURITY_INITCALL \
650 VMLINUX_SYMBOL(__security_initcall_start) = .; \
651 *(.security_initcall.init) \
652 VMLINUX_SYMBOL(__security_initcall_end) = .;
653
654#ifdef CONFIG_BLK_DEV_INITRD
655#define INIT_RAM_FS \
d8826262 656 . = ALIGN(4); \
ef53dae8
SR
657 VMLINUX_SYMBOL(__initramfs_start) = .; \
658 *(.init.ramfs) \
ffe8018c
HB
659 . = ALIGN(8); \
660 *(.init.ramfs.info)
ef53dae8 661#else
eadfe219 662#define INIT_RAM_FS
ef53dae8
SR
663#endif
664
023bf6f1
TH
665/*
666 * Default discarded sections.
667 *
668 * Some archs want to discard exit text/data at runtime rather than
669 * link time due to cross-section references such as alt instructions,
670 * bug table, eh_frame, etc. DISCARDS must be the last of output
671 * section definitions so that such archs put those in earlier section
672 * definitions.
673 */
405d967d
TH
674#define DISCARDS \
675 /DISCARD/ : { \
676 EXIT_TEXT \
677 EXIT_DATA \
023bf6f1 678 EXIT_CALL \
405d967d 679 *(.discard) \
c7f52cdc 680 *(.discard.*) \
405d967d
TH
681 }
682
3e5d8f97 683/**
6b7c38d5 684 * PERCPU_VADDR - define output section for percpu area
3e5d8f97
TH
685 * @vaddr: explicit base address (optional)
686 * @phdr: destination PHDR (optional)
687 *
688 * Macro which expands to output section for percpu area. If @vaddr
689 * is not blank, it specifies explicit base address and all percpu
690 * symbols will be offset from the given address. If blank, @vaddr
691 * always equals @laddr + LOAD_OFFSET.
692 *
693 * @phdr defines the output PHDR to use if not blank. Be warned that
694 * output PHDR is sticky. If @phdr is specified, the next output
695 * section in the linker script will go there too. @phdr should have
696 * a leading colon.
697 *
3ac6cffe
TH
698 * Note that this macros defines __per_cpu_load as an absolute symbol.
699 * If there is no need to put the percpu section at a predetermined
700 * address, use PERCPU().
3e5d8f97
TH
701 */
702#define PERCPU_VADDR(vaddr, phdr) \
dba3d36b 703 VMLINUX_SYMBOL(__per_cpu_load) = .; \
3d9a854c 704 .data..percpu vaddr : AT(VMLINUX_SYMBOL(__per_cpu_load) \
6b7c38d5
TH
705 - LOAD_OFFSET) { \
706 VMLINUX_SYMBOL(__per_cpu_start) = .; \
3d9a854c 707 *(.data..percpu..first) \
c957ef2c 708 . = ALIGN(PAGE_SIZE); \
3d9a854c 709 *(.data..percpu..page_aligned) \
c957ef2c 710 *(.data..percpu..readmostly) \
3d9a854c
DV
711 *(.data..percpu) \
712 *(.data..percpu..shared_aligned) \
6b7c38d5
TH
713 VMLINUX_SYMBOL(__per_cpu_end) = .; \
714 } phdr \
3d9a854c 715 . = VMLINUX_SYMBOL(__per_cpu_load) + SIZEOF(.data..percpu);
3e5d8f97
TH
716
717/**
718 * PERCPU - define output section for percpu area, simple version
719 * @align: required alignment
720 *
721 * Align to @align and outputs output section for percpu area. This
722 * macro doesn't maniuplate @vaddr or @phdr and __per_cpu_load and
723 * __per_cpu_start will be identical.
3ac6cffe
TH
724 *
725 * This macro is equivalent to ALIGN(align); PERCPU_VADDR( , ) except
726 * that __per_cpu_load is defined as a relative symbol against
3d9a854c 727 * .data..percpu which is required for relocatable x86_32
3ac6cffe 728 * configuration.
3e5d8f97 729 */
5fb7dc37
FY
730#define PERCPU(align) \
731 . = ALIGN(align); \
3d9a854c 732 .data..percpu : AT(ADDR(.data..percpu) - LOAD_OFFSET) { \
3ac6cffe
TH
733 VMLINUX_SYMBOL(__per_cpu_load) = .; \
734 VMLINUX_SYMBOL(__per_cpu_start) = .; \
3d9a854c 735 *(.data..percpu..first) \
c957ef2c 736 . = ALIGN(PAGE_SIZE); \
3d9a854c 737 *(.data..percpu..page_aligned) \
2aeb66d3 738 *(.data..percpu..readmostly) \
3d9a854c
DV
739 *(.data..percpu) \
740 *(.data..percpu..shared_aligned) \
3ac6cffe
TH
741 VMLINUX_SYMBOL(__per_cpu_end) = .; \
742 }
ef53dae8
SR
743
744
745/*
746 * Definition of the high level *_SECTION macros
747 * They will fit only a subset of the architectures
748 */
749
750
751/*
752 * Writeable data.
753 * All sections are combined in a single .data section.
754 * The sections following CONSTRUCTORS are arranged so their
755 * typical alignment matches.
756 * A cacheline is typical/always less than a PAGE_SIZE so
757 * the sections that has this restriction (or similar)
758 * is located before the ones requiring PAGE_SIZE alignment.
759 * NOSAVE_DATA starts and ends with a PAGE_SIZE alignment which
760 * matches the requirment of PAGE_ALIGNED_DATA.
761 *
7923f90f 762 * use 0 as page_align if page_aligned data is not used */
73f1d939 763#define RW_DATA_SECTION(cacheline, pagealigned, inittask) \
ef53dae8
SR
764 . = ALIGN(PAGE_SIZE); \
765 .data : AT(ADDR(.data) - LOAD_OFFSET) { \
39a449d9 766 INIT_TASK_DATA(inittask) \
1b208622
TA
767 NOSAVE_DATA \
768 PAGE_ALIGNED_DATA(pagealigned) \
ef53dae8
SR
769 CACHELINE_ALIGNED_DATA(cacheline) \
770 READ_MOSTLY_DATA(cacheline) \
771 DATA_DATA \
772 CONSTRUCTORS \
ef53dae8
SR
773 }
774
775#define INIT_TEXT_SECTION(inittext_align) \
776 . = ALIGN(inittext_align); \
777 .init.text : AT(ADDR(.init.text) - LOAD_OFFSET) { \
778 VMLINUX_SYMBOL(_sinittext) = .; \
779 INIT_TEXT \
780 VMLINUX_SYMBOL(_einittext) = .; \
781 }
782
783#define INIT_DATA_SECTION(initsetup_align) \
784 .init.data : AT(ADDR(.init.data) - LOAD_OFFSET) { \
785 INIT_DATA \
786 INIT_SETUP(initsetup_align) \
787 INIT_CALLS \
788 CON_INITCALL \
789 SECURITY_INITCALL \
790 INIT_RAM_FS \
791 }
792
04e448d9
TA
793#define BSS_SECTION(sbss_align, bss_align, stop_align) \
794 . = ALIGN(sbss_align); \
795 VMLINUX_SYMBOL(__bss_start) = .; \
796 SBSS(sbss_align) \
ef53dae8 797 BSS(bss_align) \
04e448d9
TA
798 . = ALIGN(stop_align); \
799 VMLINUX_SYMBOL(__bss_stop) = .;