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static_call: Add inline static call infrastructure
[mirror_ubuntu-jammy-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
ef53dae8
SR
16 * INIT_TEXT_SECTION(PAGE_SIZE)
17 * INIT_DATA_SECTION(...)
0415b00d 18 * PERCPU_SECTION(CACHELINE_SIZE)
ef53dae8
SR
19 * __init_end = .;
20 *
21 * _stext = .;
22 * TEXT_SECTION = 0
23 * _etext = .;
24 *
25 * _sdata = .;
93240b32 26 * RO_DATA(PAGE_SIZE)
c9174047 27 * RW_DATA(...)
ef53dae8
SR
28 * _edata = .;
29 *
30 * EXCEPTION_TABLE(...)
ef53dae8 31 *
04e448d9 32 * BSS_SECTION(0, 0, 0)
ef53dae8
SR
33 * _end = .;
34 *
ef53dae8
SR
35 * STABS_DEBUG
36 * DWARF_DEBUG
023bf6f1
TH
37 *
38 * DISCARDS // must be the last
ef53dae8
SR
39 * }
40 *
41 * [__init_begin, __init_end] is the init section that may be freed after init
562c85ca
YW
42 * // __init_begin and __init_end should be page aligned, so that we can
43 * // free the whole .init memory
ef53dae8
SR
44 * [_stext, _etext] is the text section
45 * [_sdata, _edata] is the data section
46 *
47 * Some of the included output section have their own set of constants.
48 * Examples are: [__initramfs_start, __initramfs_end] for initramfs and
49 * [__nosave_begin, __nosave_end] for the nosave data
50 */
c80d471a 51
1da177e4
LT
52#ifndef LOAD_OFFSET
53#define LOAD_OFFSET 0
54#endif
55
441110a5
KC
56/*
57 * Only some architectures want to have the .notes segment visible in
fbe6a8e6
KC
58 * a separate PT_NOTE ELF Program Header. When this happens, it needs
59 * to be visible in both the kernel text's PT_LOAD and the PT_NOTE
60 * Program Headers. In this case, though, the PT_LOAD needs to be made
61 * the default again so that all the following sections don't also end
62 * up in the PT_NOTE Program Header.
441110a5
KC
63 */
64#ifdef EMITS_PT_NOTE
65#define NOTES_HEADERS :text :note
fbe6a8e6
KC
66#define NOTES_HEADERS_RESTORE __restore_ph : { *(.__restore_ph) } :text
67#else
68#define NOTES_HEADERS
69#define NOTES_HEADERS_RESTORE
441110a5
KC
70#endif
71
b8c2f776
KC
72/*
73 * Some architectures have non-executable read-only exception tables.
74 * They can be added to the RO_DATA segment by specifying their desired
75 * alignment.
76 */
77#ifdef RO_EXCEPTION_TABLE_ALIGN
78#define RO_EXCEPTION_TABLE EXCEPTION_TABLE(RO_EXCEPTION_TABLE_ALIGN)
79#else
80#define RO_EXCEPTION_TABLE
81#endif
82
6d30e3a8
SR
83/* Align . to a 8 byte boundary equals to maximum function alignment. */
84#define ALIGN_FUNCTION() . = ALIGN(8)
85
cb87481e
NP
86/*
87 * LD_DEAD_CODE_DATA_ELIMINATION option enables -fdata-sections, which
88 * generates .data.identifier sections, which need to be pulled in with
89 * .data. We don't want to pull in .data..other sections, which Linux
90 * has defined. Same for text and bss.
266ff2a8
NP
91 *
92 * RODATA_MAIN is not used because existing code already defines .rodata.x
93 * sections to be brought in with rodata.
cb87481e
NP
94 */
95#ifdef CONFIG_LD_DEAD_CODE_DATA_ELIMINATION
96#define TEXT_MAIN .text .text.[0-9a-zA-Z_]*
52c8ee5b 97#define DATA_MAIN .data .data.[0-9a-zA-Z_]* .data..LPBX*
266ff2a8
NP
98#define SDATA_MAIN .sdata .sdata.[0-9a-zA-Z_]*
99#define RODATA_MAIN .rodata .rodata.[0-9a-zA-Z_]*
cb87481e 100#define BSS_MAIN .bss .bss.[0-9a-zA-Z_]*
266ff2a8 101#define SBSS_MAIN .sbss .sbss.[0-9a-zA-Z_]*
cb87481e
NP
102#else
103#define TEXT_MAIN .text
104#define DATA_MAIN .data
266ff2a8
NP
105#define SDATA_MAIN .sdata
106#define RODATA_MAIN .rodata
cb87481e 107#define BSS_MAIN .bss
266ff2a8 108#define SBSS_MAIN .sbss
cb87481e
NP
109#endif
110
07fca0e5 111/*
85c2ce91
PZ
112 * GCC 4.5 and later have a 32 bytes section alignment for structures.
113 * Except GCC 4.9, that feels the need to align on 64 bytes.
07fca0e5 114 */
85c2ce91
PZ
115#if __GNUC__ == 4 && __GNUC_MINOR__ == 9
116#define STRUCT_ALIGNMENT 64
117#else
aab94339 118#define STRUCT_ALIGNMENT 32
85c2ce91 119#endif
aab94339 120#define STRUCT_ALIGN() . = ALIGN(STRUCT_ALIGNMENT)
07fca0e5 121
590d6979
SRV
122/*
123 * The order of the sched class addresses are important, as they are
124 * used to determine the order of the priority of each sched class in
125 * relation to each other.
126 */
127#define SCHED_DATA \
c3a340f7
SRV
128 STRUCT_ALIGN(); \
129 __begin_sched_classes = .; \
590d6979
SRV
130 *(__idle_sched_class) \
131 *(__fair_sched_class) \
132 *(__rt_sched_class) \
133 *(__dl_sched_class) \
c3a340f7
SRV
134 *(__stop_sched_class) \
135 __end_sched_classes = .;
590d6979 136
eb8f6890
SR
137/* The actual configuration determine if the init/exit sections
138 * are handled as text/data or they can be discarded (which
139 * often happens at runtime)
140 */
eb8f6890
SR
141#ifdef CONFIG_HOTPLUG_CPU
142#define CPU_KEEP(sec) *(.cpu##sec)
143#define CPU_DISCARD(sec)
144#else
145#define CPU_KEEP(sec)
146#define CPU_DISCARD(sec) *(.cpu##sec)
147#endif
148
1a3fb6d4 149#if defined(CONFIG_MEMORY_HOTPLUG)
eb8f6890
SR
150#define MEM_KEEP(sec) *(.mem##sec)
151#define MEM_DISCARD(sec)
152#else
153#define MEM_KEEP(sec)
154#define MEM_DISCARD(sec) *(.mem##sec)
155#endif
156
8da3821b 157#ifdef CONFIG_FTRACE_MCOUNT_RECORD
a1326b17
MR
158/*
159 * The ftrace call sites are logged to a section whose name depends on the
160 * compiler option used. A given kernel image will only use one, AKA
161 * FTRACE_CALLSITE_SECTION. We capture all of them here to avoid header
162 * dependencies for FTRACE_CALLSITE_SECTION's definition.
95f1fa9e 163 *
46f94692 164 * Need to also make ftrace_stub_graph point to ftrace_stub
b83b43ff
SRV
165 * so that the same stub location may have different protocols
166 * and not mess up with C verifiers.
a1326b17 167 */
4b3b4c5e 168#define MCOUNT_REC() . = ALIGN(8); \
a6214385 169 __start_mcount_loc = .; \
266ff2a8 170 KEEP(*(__mcount_loc)) \
a1326b17 171 KEEP(*(__patchable_function_entries)) \
b83b43ff 172 __stop_mcount_loc = .; \
46f94692 173 ftrace_stub_graph = ftrace_stub;
8da3821b 174#else
b83b43ff 175# ifdef CONFIG_FUNCTION_TRACER
46f94692 176# define MCOUNT_REC() ftrace_stub_graph = ftrace_stub;
b83b43ff
SRV
177# else
178# define MCOUNT_REC()
179# endif
8da3821b 180#endif
eb8f6890 181
2ed84eeb 182#ifdef CONFIG_TRACE_BRANCH_PROFILING
a6214385 183#define LIKELY_PROFILE() __start_annotated_branch_profile = .; \
266ff2a8 184 KEEP(*(_ftrace_annotated_branch)) \
a6214385 185 __stop_annotated_branch_profile = .;
1f0d69a9
SR
186#else
187#define LIKELY_PROFILE()
188#endif
189
2bcd521a 190#ifdef CONFIG_PROFILE_ALL_BRANCHES
a6214385 191#define BRANCH_PROFILE() __start_branch_profile = .; \
266ff2a8 192 KEEP(*(_ftrace_branch)) \
a6214385 193 __stop_branch_profile = .;
2bcd521a
SR
194#else
195#define BRANCH_PROFILE()
196#endif
197
376e2424 198#ifdef CONFIG_KPROBES
69902c71 199#define KPROBE_BLACKLIST() . = ALIGN(8); \
a6214385 200 __start_kprobe_blacklist = .; \
4b89b7f7 201 KEEP(*(_kprobe_blacklist)) \
a6214385 202 __stop_kprobe_blacklist = .;
376e2424
MH
203#else
204#define KPROBE_BLACKLIST()
205#endif
206
540adea3 207#ifdef CONFIG_FUNCTION_ERROR_INJECTION
663faf9f 208#define ERROR_INJECT_WHITELIST() STRUCT_ALIGN(); \
a6214385 209 __start_error_injection_whitelist = .; \
540adea3 210 KEEP(*(_error_injection_whitelist)) \
a6214385 211 __stop_error_injection_whitelist = .;
92ace999 212#else
540adea3 213#define ERROR_INJECT_WHITELIST()
92ace999
JB
214#endif
215
5f77a88b 216#ifdef CONFIG_EVENT_TRACING
e4a9ea5e 217#define FTRACE_EVENTS() . = ALIGN(8); \
a6214385 218 __start_ftrace_events = .; \
4b89b7f7 219 KEEP(*(_ftrace_events)) \
a6214385
MY
220 __stop_ftrace_events = .; \
221 __start_ftrace_eval_maps = .; \
02fd7f68 222 KEEP(*(_ftrace_eval_map)) \
a6214385 223 __stop_ftrace_eval_maps = .;
b77e38aa
SR
224#else
225#define FTRACE_EVENTS()
226#endif
227
1ba28e02 228#ifdef CONFIG_TRACING
a6214385 229#define TRACE_PRINTKS() __start___trace_bprintk_fmt = .; \
4b89b7f7 230 KEEP(*(__trace_printk_fmt)) /* Trace_printk fmt' pointer */ \
a6214385
MY
231 __stop___trace_bprintk_fmt = .;
232#define TRACEPOINT_STR() __start___tracepoint_str = .; \
4b89b7f7 233 KEEP(*(__tracepoint_str)) /* Trace_printk fmt' pointer */ \
a6214385 234 __stop___tracepoint_str = .;
1ba28e02
LJ
235#else
236#define TRACE_PRINTKS()
102c9323 237#define TRACEPOINT_STR()
1ba28e02
LJ
238#endif
239
bed1ffca 240#ifdef CONFIG_FTRACE_SYSCALLS
3d56e331 241#define TRACE_SYSCALLS() . = ALIGN(8); \
a6214385 242 __start_syscalls_metadata = .; \
4b89b7f7 243 KEEP(*(__syscalls_metadata)) \
a6214385 244 __stop_syscalls_metadata = .;
bed1ffca
FW
245#else
246#define TRACE_SYSCALLS()
247#endif
248
c4f6699d
AS
249#ifdef CONFIG_BPF_EVENTS
250#define BPF_RAW_TP() STRUCT_ALIGN(); \
a6214385 251 __start__bpf_raw_tp = .; \
c4f6699d 252 KEEP(*(__bpf_raw_tp_map)) \
a6214385 253 __stop__bpf_raw_tp = .;
c4f6699d
AS
254#else
255#define BPF_RAW_TP()
256#endif
257
470ca0de 258#ifdef CONFIG_SERIAL_EARLYCON
dd709e72 259#define EARLYCON_TABLE() . = ALIGN(8); \
a6214385 260 __earlycon_table = .; \
4b89b7f7 261 KEEP(*(__earlycon_table)) \
a6214385 262 __earlycon_table_end = .;
470ca0de
PH
263#else
264#define EARLYCON_TABLE()
265#endif
aab94339 266
3ac946d1
KC
267#ifdef CONFIG_SECURITY
268#define LSM_TABLE() . = ALIGN(8); \
269 __start_lsm_info = .; \
270 KEEP(*(.lsm_info.init)) \
271 __end_lsm_info = .;
e6b1db98
MG
272#define EARLY_LSM_TABLE() . = ALIGN(8); \
273 __start_early_lsm_info = .; \
274 KEEP(*(.early_lsm_info.init)) \
275 __end_early_lsm_info = .;
3ac946d1
KC
276#else
277#define LSM_TABLE()
e6b1db98 278#define EARLY_LSM_TABLE()
3ac946d1
KC
279#endif
280
06309288
RH
281#define ___OF_TABLE(cfg, name) _OF_TABLE_##cfg(name)
282#define __OF_TABLE(cfg, name) ___OF_TABLE(cfg, name)
5ee02af1 283#define OF_TABLE(cfg, name) __OF_TABLE(IS_ENABLED(cfg), name)
06309288
RH
284#define _OF_TABLE_0(name)
285#define _OF_TABLE_1(name) \
f6e916b8 286 . = ALIGN(8); \
a6214385 287 __##name##_of_table = .; \
4b89b7f7
NP
288 KEEP(*(__##name##_of_table)) \
289 KEEP(*(__##name##_of_table_end))
06309288 290
bb0eb050 291#define TIMER_OF_TABLES() OF_TABLE(CONFIG_TIMER_OF, timer)
06309288
RH
292#define IRQCHIP_OF_MATCH_TABLE() OF_TABLE(CONFIG_IRQCHIP, irqchip)
293#define CLK_OF_TABLES() OF_TABLE(CONFIG_COMMON_CLK, clk)
294#define RESERVEDMEM_OF_TABLES() OF_TABLE(CONFIG_OF_RESERVED_MEM, reservedmem)
295#define CPU_METHOD_OF_TABLES() OF_TABLE(CONFIG_SMP, cpu_method)
449e056c 296#define CPUIDLE_METHOD_OF_TABLES() OF_TABLE(CONFIG_CPU_IDLE, cpuidle_method)
6c3ff8b1 297
e647b532
MZ
298#ifdef CONFIG_ACPI
299#define ACPI_PROBE_TABLE(name) \
300 . = ALIGN(8); \
a6214385 301 __##name##_acpi_probe_table = .; \
4b89b7f7 302 KEEP(*(__##name##_acpi_probe_table)) \
a6214385 303 __##name##_acpi_probe_table_end = .;
e647b532
MZ
304#else
305#define ACPI_PROBE_TABLE(name)
306#endif
307
980af75e
DL
308#ifdef CONFIG_THERMAL
309#define THERMAL_TABLE(name) \
310 . = ALIGN(8); \
311 __##name##_thermal_table = .; \
312 KEEP(*(__##name##_thermal_table)) \
313 __##name##_thermal_table_end = .;
314#else
315#define THERMAL_TABLE(name)
316#endif
317
aab94339
DB
318#define KERNEL_DTB() \
319 STRUCT_ALIGN(); \
a6214385 320 __dtb_start = .; \
4b89b7f7 321 KEEP(*(.dtb.init.rodata)) \
a6214385 322 __dtb_end = .;
aab94339 323
b67067f1
NP
324/*
325 * .data section
b67067f1 326 */
ca967258 327#define DATA_DATA \
129f6c48 328 *(.xiptext) \
cb87481e 329 *(DATA_MAIN) \
312b1485 330 *(.ref.data) \
d356c0b6 331 *(.data..shared_aligned) /* percpu related */ \
266ff2a8
NP
332 MEM_KEEP(init.data*) \
333 MEM_KEEP(exit.data*) \
7ccaba53 334 *(.data.unlikely) \
a6214385 335 __start_once = .; \
b1fca27d 336 *(.data.once) \
a6214385 337 __end_once = .; \
65498646 338 STRUCT_ALIGN(); \
97e1c18e 339 *(__tracepoints) \
e9d376f0
JB
340 /* implement dynamic printk debug */ \
341 . = ALIGN(8); \
e5ebffe1
JC
342 __start___dyndbg = .; \
343 KEEP(*(__dyndbg)) \
344 __stop___dyndbg = .; \
2bcd521a 345 LIKELY_PROFILE() \
b77e38aa 346 BRANCH_PROFILE() \
102c9323 347 TRACE_PRINTKS() \
c4f6699d 348 BPF_RAW_TP() \
102c9323 349 TRACEPOINT_STR()
ca967258 350
ef53dae8
SR
351/*
352 * Data section helpers
353 */
354#define NOSAVE_DATA \
355 . = ALIGN(PAGE_SIZE); \
a6214385 356 __nosave_begin = .; \
07b3bb1e 357 *(.data..nosave) \
ef53dae8 358 . = ALIGN(PAGE_SIZE); \
a6214385 359 __nosave_end = .;
ef53dae8
SR
360
361#define PAGE_ALIGNED_DATA(page_align) \
362 . = ALIGN(page_align); \
de2b41be
JR
363 *(.data..page_aligned) \
364 . = ALIGN(page_align);
ef53dae8
SR
365
366#define READ_MOSTLY_DATA(align) \
367 . = ALIGN(align); \
8369744f
SL
368 *(.data..read_mostly) \
369 . = ALIGN(align);
ef53dae8
SR
370
371#define CACHELINE_ALIGNED_DATA(align) \
372 . = ALIGN(align); \
4af57b78 373 *(.data..cacheline_aligned)
ef53dae8 374
39a449d9 375#define INIT_TASK_DATA(align) \
ef53dae8 376 . = ALIGN(align); \
a6214385
MY
377 __start_init_task = .; \
378 init_thread_union = .; \
379 init_stack = .; \
266ff2a8
NP
380 KEEP(*(.data..init_task)) \
381 KEEP(*(.data..init_thread_info)) \
a6214385
MY
382 . = __start_init_task + THREAD_SIZE; \
383 __end_init_task = .;
ef53dae8 384
e872267b
AB
385#define JUMP_TABLE_DATA \
386 . = ALIGN(8); \
387 __start___jump_table = .; \
388 KEEP(*(__jump_table)) \
389 __stop___jump_table = .;
390
9183c3f9
JP
391#define STATIC_CALL_DATA \
392 . = ALIGN(8); \
393 __start_static_call_sites = .; \
394 KEEP(*(.static_call_sites)) \
395 __stop_static_call_sites = .;
396
32fb2fc5
HC
397/*
398 * Allow architectures to handle ro_after_init data on their
399 * own by defining an empty RO_AFTER_INIT_DATA.
400 */
401#ifndef RO_AFTER_INIT_DATA
d7c19b06 402#define RO_AFTER_INIT_DATA \
7f897acb 403 . = ALIGN(8); \
a6214385 404 __start_ro_after_init = .; \
d7c19b06 405 *(.data..ro_after_init) \
e872267b 406 JUMP_TABLE_DATA \
9183c3f9 407 STATIC_CALL_DATA \
a6214385 408 __end_ro_after_init = .;
32fb2fc5
HC
409#endif
410
ef53dae8
SR
411/*
412 * Read only Data
413 */
93240b32 414#define RO_DATA(align) \
4096b46f 415 . = ALIGN((align)); \
1da177e4 416 .rodata : AT(ADDR(.rodata) - LOAD_OFFSET) { \
a6214385 417 __start_rodata = .; \
1da177e4 418 *(.rodata) *(.rodata.*) \
590d6979 419 SCHED_DATA \
32fb2fc5 420 RO_AFTER_INIT_DATA /* Read only after init */ \
65498646 421 . = ALIGN(8); \
a6214385 422 __start___tracepoints_ptrs = .; \
4b89b7f7 423 KEEP(*(__tracepoints_ptrs)) /* Tracepoints: pointer array */ \
a6214385 424 __stop___tracepoints_ptrs = .; \
97e1c18e 425 *(__tracepoints_strings)/* Tracepoints: strings */ \
1da177e4
LT
426 } \
427 \
428 .rodata1 : AT(ADDR(.rodata1) - LOAD_OFFSET) { \
429 *(.rodata1) \
430 } \
431 \
432 /* PCI quirks */ \
433 .pci_fixup : AT(ADDR(.pci_fixup) - LOAD_OFFSET) { \
a6214385 434 __start_pci_fixups_early = .; \
4b89b7f7 435 KEEP(*(.pci_fixup_early)) \
a6214385
MY
436 __end_pci_fixups_early = .; \
437 __start_pci_fixups_header = .; \
4b89b7f7 438 KEEP(*(.pci_fixup_header)) \
a6214385
MY
439 __end_pci_fixups_header = .; \
440 __start_pci_fixups_final = .; \
4b89b7f7 441 KEEP(*(.pci_fixup_final)) \
a6214385
MY
442 __end_pci_fixups_final = .; \
443 __start_pci_fixups_enable = .; \
4b89b7f7 444 KEEP(*(.pci_fixup_enable)) \
a6214385
MY
445 __end_pci_fixups_enable = .; \
446 __start_pci_fixups_resume = .; \
4b89b7f7 447 KEEP(*(.pci_fixup_resume)) \
a6214385
MY
448 __end_pci_fixups_resume = .; \
449 __start_pci_fixups_resume_early = .; \
4b89b7f7 450 KEEP(*(.pci_fixup_resume_early)) \
a6214385
MY
451 __end_pci_fixups_resume_early = .; \
452 __start_pci_fixups_suspend = .; \
4b89b7f7 453 KEEP(*(.pci_fixup_suspend)) \
a6214385
MY
454 __end_pci_fixups_suspend = .; \
455 __start_pci_fixups_suspend_late = .; \
4b89b7f7 456 KEEP(*(.pci_fixup_suspend_late)) \
a6214385 457 __end_pci_fixups_suspend_late = .; \
1da177e4
LT
458 } \
459 \
5658c769
DW
460 /* Built-in firmware blobs */ \
461 .builtin_fw : AT(ADDR(.builtin_fw) - LOAD_OFFSET) { \
a6214385 462 __start_builtin_fw = .; \
4b89b7f7 463 KEEP(*(.builtin_fw)) \
a6214385 464 __end_builtin_fw = .; \
5658c769
DW
465 } \
466 \
63687a52
JB
467 TRACEDATA \
468 \
1da177e4
LT
469 /* Kernel symbol table: Normal symbols */ \
470 __ksymtab : AT(ADDR(__ksymtab) - LOAD_OFFSET) { \
a6214385 471 __start___ksymtab = .; \
b67067f1 472 KEEP(*(SORT(___ksymtab+*))) \
a6214385 473 __stop___ksymtab = .; \
1da177e4
LT
474 } \
475 \
476 /* Kernel symbol table: GPL-only symbols */ \
477 __ksymtab_gpl : AT(ADDR(__ksymtab_gpl) - LOAD_OFFSET) { \
a6214385 478 __start___ksymtab_gpl = .; \
b67067f1 479 KEEP(*(SORT(___ksymtab_gpl+*))) \
a6214385 480 __stop___ksymtab_gpl = .; \
1da177e4
LT
481 } \
482 \
f71d20e9
AV
483 /* Kernel symbol table: Normal unused symbols */ \
484 __ksymtab_unused : AT(ADDR(__ksymtab_unused) - LOAD_OFFSET) { \
a6214385 485 __start___ksymtab_unused = .; \
b67067f1 486 KEEP(*(SORT(___ksymtab_unused+*))) \
a6214385 487 __stop___ksymtab_unused = .; \
f71d20e9
AV
488 } \
489 \
490 /* Kernel symbol table: GPL-only unused symbols */ \
491 __ksymtab_unused_gpl : AT(ADDR(__ksymtab_unused_gpl) - LOAD_OFFSET) { \
a6214385 492 __start___ksymtab_unused_gpl = .; \
b67067f1 493 KEEP(*(SORT(___ksymtab_unused_gpl+*))) \
a6214385 494 __stop___ksymtab_unused_gpl = .; \
f71d20e9
AV
495 } \
496 \
9f28bb7e
GKH
497 /* Kernel symbol table: GPL-future-only symbols */ \
498 __ksymtab_gpl_future : AT(ADDR(__ksymtab_gpl_future) - LOAD_OFFSET) { \
a6214385 499 __start___ksymtab_gpl_future = .; \
b67067f1 500 KEEP(*(SORT(___ksymtab_gpl_future+*))) \
a6214385 501 __stop___ksymtab_gpl_future = .; \
9f28bb7e
GKH
502 } \
503 \
1da177e4
LT
504 /* Kernel symbol table: Normal symbols */ \
505 __kcrctab : AT(ADDR(__kcrctab) - LOAD_OFFSET) { \
a6214385 506 __start___kcrctab = .; \
b67067f1 507 KEEP(*(SORT(___kcrctab+*))) \
a6214385 508 __stop___kcrctab = .; \
1da177e4
LT
509 } \
510 \
511 /* Kernel symbol table: GPL-only symbols */ \
512 __kcrctab_gpl : AT(ADDR(__kcrctab_gpl) - LOAD_OFFSET) { \
a6214385 513 __start___kcrctab_gpl = .; \
b67067f1 514 KEEP(*(SORT(___kcrctab_gpl+*))) \
a6214385 515 __stop___kcrctab_gpl = .; \
1da177e4
LT
516 } \
517 \
f71d20e9
AV
518 /* Kernel symbol table: Normal unused symbols */ \
519 __kcrctab_unused : AT(ADDR(__kcrctab_unused) - LOAD_OFFSET) { \
a6214385 520 __start___kcrctab_unused = .; \
b67067f1 521 KEEP(*(SORT(___kcrctab_unused+*))) \
a6214385 522 __stop___kcrctab_unused = .; \
f71d20e9
AV
523 } \
524 \
525 /* Kernel symbol table: GPL-only unused symbols */ \
526 __kcrctab_unused_gpl : AT(ADDR(__kcrctab_unused_gpl) - LOAD_OFFSET) { \
a6214385 527 __start___kcrctab_unused_gpl = .; \
b67067f1 528 KEEP(*(SORT(___kcrctab_unused_gpl+*))) \
a6214385 529 __stop___kcrctab_unused_gpl = .; \
f71d20e9
AV
530 } \
531 \
9f28bb7e
GKH
532 /* Kernel symbol table: GPL-future-only symbols */ \
533 __kcrctab_gpl_future : AT(ADDR(__kcrctab_gpl_future) - LOAD_OFFSET) { \
a6214385 534 __start___kcrctab_gpl_future = .; \
b67067f1 535 KEEP(*(SORT(___kcrctab_gpl_future+*))) \
a6214385 536 __stop___kcrctab_gpl_future = .; \
9f28bb7e
GKH
537 } \
538 \
1da177e4
LT
539 /* Kernel symbol table: strings */ \
540 __ksymtab_strings : AT(ADDR(__ksymtab_strings) - LOAD_OFFSET) { \
4b89b7f7 541 *(__ksymtab_strings) \
1da177e4
LT
542 } \
543 \
eb8f6890
SR
544 /* __*init sections */ \
545 __init_rodata : AT(ADDR(__init_rodata) - LOAD_OFFSET) { \
312b1485 546 *(.ref.rodata) \
eb8f6890
SR
547 MEM_KEEP(init.rodata) \
548 MEM_KEEP(exit.rodata) \
549 } \
550 \
1da177e4
LT
551 /* Built-in module parameters. */ \
552 __param : AT(ADDR(__param) - LOAD_OFFSET) { \
a6214385 553 __start___param = .; \
4b89b7f7 554 KEEP(*(__param)) \
a6214385 555 __stop___param = .; \
e94965ed
DT
556 } \
557 \
558 /* Built-in module versions. */ \
559 __modver : AT(ADDR(__modver) - LOAD_OFFSET) { \
a6214385 560 __start___modver = .; \
4b89b7f7 561 KEEP(*(__modver)) \
a6214385 562 __stop___modver = .; \
7583ddfd 563 } \
eaf93707 564 \
b8c2f776 565 RO_EXCEPTION_TABLE \
eaf93707 566 NOTES \
90ceddcb 567 BTF \
eaf93707
KC
568 \
569 . = ALIGN((align)); \
570 __end_rodata = .;
1da177e4 571
65538966
TG
572/*
573 * Non-instrumentable text section
574 */
575#define NOINSTR_TEXT \
576 ALIGN_FUNCTION(); \
577 __noinstr_text_start = .; \
578 *(.noinstr.text) \
579 __noinstr_text_end = .;
580
cb87481e
NP
581/*
582 * .text section. Map to function alignment to avoid address changes
0f4c4af0 583 * during second ld run in second ld pass when generating System.map
cb87481e
NP
584 *
585 * TEXT_MAIN here will match .text.fixup and .text.unlikely if dead
586 * code elimination is enabled, so these sections should be converted
587 * to use ".." first.
588 */
7664709b
SR
589#define TEXT_TEXT \
590 ALIGN_FUNCTION(); \
cb87481e 591 *(.text.hot TEXT_MAIN .text.fixup .text.unlikely) \
65538966 592 NOINSTR_TEXT \
564c9cc8 593 *(.text..refcount) \
312b1485 594 *(.ref.text) \
266ff2a8
NP
595 MEM_KEEP(init.text*) \
596 MEM_KEEP(exit.text*) \
eb8f6890 597
7664709b 598
6d30e3a8
SR
599/* sched.text is aling to function alignment to secure we have same
600 * address even at second ld pass when generating System.map */
1da177e4 601#define SCHED_TEXT \
6d30e3a8 602 ALIGN_FUNCTION(); \
a6214385 603 __sched_text_start = .; \
1da177e4 604 *(.sched.text) \
a6214385 605 __sched_text_end = .;
1da177e4 606
6d30e3a8
SR
607/* spinlock.text is aling to function alignment to secure we have same
608 * address even at second ld pass when generating System.map */
1da177e4 609#define LOCK_TEXT \
6d30e3a8 610 ALIGN_FUNCTION(); \
a6214385 611 __lock_text_start = .; \
1da177e4 612 *(.spinlock.text) \
a6214385 613 __lock_text_end = .;
d0aaff97 614
6727ad9e
CM
615#define CPUIDLE_TEXT \
616 ALIGN_FUNCTION(); \
a6214385 617 __cpuidle_text_start = .; \
6727ad9e 618 *(.cpuidle.text) \
a6214385 619 __cpuidle_text_end = .;
6727ad9e 620
d0aaff97
PP
621#define KPROBES_TEXT \
622 ALIGN_FUNCTION(); \
a6214385 623 __kprobes_text_start = .; \
d0aaff97 624 *(.kprobes.text) \
a6214385 625 __kprobes_text_end = .;
a7d0c210 626
ea714547
JO
627#define ENTRY_TEXT \
628 ALIGN_FUNCTION(); \
a6214385 629 __entry_text_start = .; \
ea714547 630 *(.entry.text) \
a6214385 631 __entry_text_end = .;
ea714547 632
a0343e82
FW
633#define IRQENTRY_TEXT \
634 ALIGN_FUNCTION(); \
a6214385 635 __irqentry_text_start = .; \
a0343e82 636 *(.irqentry.text) \
a6214385 637 __irqentry_text_end = .;
a0343e82 638
be7635e7
AP
639#define SOFTIRQENTRY_TEXT \
640 ALIGN_FUNCTION(); \
a6214385 641 __softirqentry_text_start = .; \
be7635e7 642 *(.softirqentry.text) \
a6214385 643 __softirqentry_text_end = .;
be7635e7 644
37c514e3 645/* Section used for early init (in .S files) */
266ff2a8 646#define HEAD_TEXT KEEP(*(.head.text))
37c514e3 647
7923f90f 648#define HEAD_TEXT_SECTION \
ef53dae8
SR
649 .head.text : AT(ADDR(.head.text) - LOAD_OFFSET) { \
650 HEAD_TEXT \
651 }
652
653/*
654 * Exception table
655 */
656#define EXCEPTION_TABLE(align) \
657 . = ALIGN(align); \
658 __ex_table : AT(ADDR(__ex_table) - LOAD_OFFSET) { \
a6214385 659 __start___ex_table = .; \
4b89b7f7 660 KEEP(*(__ex_table)) \
a6214385 661 __stop___ex_table = .; \
ef53dae8
SR
662 }
663
90ceddcb
FS
664/*
665 * .BTF
666 */
667#ifdef CONFIG_DEBUG_INFO_BTF
668#define BTF \
669 .BTF : AT(ADDR(.BTF) - LOAD_OFFSET) { \
670 __start_BTF = .; \
671 *(.BTF) \
672 __stop_BTF = .; \
5a2798ab
JO
673 } \
674 . = ALIGN(4); \
675 .BTF_ids : AT(ADDR(.BTF_ids) - LOAD_OFFSET) { \
676 *(.BTF_ids) \
90ceddcb
FS
677 }
678#else
679#define BTF
680#endif
681
ef53dae8
SR
682/*
683 * Init task
684 */
39a449d9 685#define INIT_TASK_DATA_SECTION(align) \
ef53dae8 686 . = ALIGN(align); \
da5e37ef 687 .data..init_task : AT(ADDR(.data..init_task) - LOAD_OFFSET) { \
39a449d9 688 INIT_TASK_DATA(align) \
ef53dae8 689 }
37c514e3 690
b99b87f7 691#ifdef CONFIG_CONSTRUCTORS
2a2325e6 692#define KERNEL_CTORS() . = ALIGN(8); \
a6214385 693 __ctors_start = .; \
4b89b7f7
NP
694 KEEP(*(.ctors)) \
695 KEEP(*(SORT(.init_array.*))) \
696 KEEP(*(.init_array)) \
a6214385 697 __ctors_end = .;
b99b87f7
PO
698#else
699#define KERNEL_CTORS()
700#endif
701
01ba2bdc 702/* init and exit section handling */
eb8f6890 703#define INIT_DATA \
b67067f1 704 KEEP(*(SORT(___kentry+*))) \
266ff2a8
NP
705 *(.init.data init.data.*) \
706 MEM_DISCARD(init.data*) \
b99b87f7 707 KERNEL_CTORS() \
4b3b4c5e 708 MCOUNT_REC() \
266ff2a8 709 *(.init.rodata .init.rodata.*) \
e4a9ea5e 710 FTRACE_EVENTS() \
3d56e331 711 TRACE_SYSCALLS() \
376e2424 712 KPROBE_BLACKLIST() \
540adea3 713 ERROR_INJECT_WHITELIST() \
aab94339 714 MEM_DISCARD(init.rodata) \
f2f6c255 715 CLK_OF_TABLES() \
f618c470 716 RESERVEDMEM_OF_TABLES() \
2fcc112a 717 TIMER_OF_TABLES() \
6c3ff8b1 718 CPU_METHOD_OF_TABLES() \
449e056c 719 CPUIDLE_METHOD_OF_TABLES() \
f6e916b8 720 KERNEL_DTB() \
b0b6abd3 721 IRQCHIP_OF_MATCH_TABLE() \
46e589a3 722 ACPI_PROBE_TABLE(irqchip) \
2fcc112a 723 ACPI_PROBE_TABLE(timer) \
980af75e 724 THERMAL_TABLE(governor) \
3ac946d1 725 EARLYCON_TABLE() \
e6b1db98
MG
726 LSM_TABLE() \
727 EARLY_LSM_TABLE()
eb8f6890
SR
728
729#define INIT_TEXT \
266ff2a8 730 *(.init.text .init.text.*) \
e41f501d 731 *(.text.startup) \
266ff2a8 732 MEM_DISCARD(init.text*)
eb8f6890
SR
733
734#define EXIT_DATA \
266ff2a8 735 *(.exit.data .exit.data.*) \
8dcf86ca
PO
736 *(.fini_array .fini_array.*) \
737 *(.dtors .dtors.*) \
266ff2a8
NP
738 MEM_DISCARD(exit.data*) \
739 MEM_DISCARD(exit.rodata*)
01ba2bdc 740
eb8f6890
SR
741#define EXIT_TEXT \
742 *(.exit.text) \
e41f501d 743 *(.text.exit) \
eb8f6890 744 MEM_DISCARD(exit.text)
01ba2bdc 745
7923f90f
SR
746#define EXIT_CALL \
747 *(.exitcall.exit)
748
ef53dae8
SR
749/*
750 * bss (Block Started by Symbol) - uninitialized data
751 * zeroed during startup
752 */
04e448d9
TA
753#define SBSS(sbss_align) \
754 . = ALIGN(sbss_align); \
ef53dae8 755 .sbss : AT(ADDR(.sbss) - LOAD_OFFSET) { \
83a092cf 756 *(.dynsbss) \
266ff2a8 757 *(SBSS_MAIN) \
ef53dae8
SR
758 *(.scommon) \
759 }
760
c87728ca
DD
761/*
762 * Allow archectures to redefine BSS_FIRST_SECTIONS to add extra
763 * sections to the front of bss.
764 */
765#ifndef BSS_FIRST_SECTIONS
766#define BSS_FIRST_SECTIONS
767#endif
768
ef53dae8
SR
769#define BSS(bss_align) \
770 . = ALIGN(bss_align); \
771 .bss : AT(ADDR(.bss) - LOAD_OFFSET) { \
c87728ca 772 BSS_FIRST_SECTIONS \
de2b41be 773 . = ALIGN(PAGE_SIZE); \
7c74df07 774 *(.bss..page_aligned) \
de2b41be 775 . = ALIGN(PAGE_SIZE); \
ef53dae8 776 *(.dynbss) \
cb87481e 777 *(BSS_MAIN) \
ef53dae8 778 *(COMMON) \
ef53dae8
SR
779 }
780
781/*
782 * DWARF debug sections.
783 * Symbols in the DWARF debugging sections are relative to
784 * the beginning of the section so we begin them at 0.
785 */
a7d0c210
PBG
786#define DWARF_DEBUG \
787 /* DWARF 1 */ \
788 .debug 0 : { *(.debug) } \
789 .line 0 : { *(.line) } \
790 /* GNU DWARF 1 extensions */ \
791 .debug_srcinfo 0 : { *(.debug_srcinfo) } \
792 .debug_sfnames 0 : { *(.debug_sfnames) } \
793 /* DWARF 1.1 and DWARF 2 */ \
794 .debug_aranges 0 : { *(.debug_aranges) } \
795 .debug_pubnames 0 : { *(.debug_pubnames) } \
796 /* DWARF 2 */ \
797 .debug_info 0 : { *(.debug_info \
798 .gnu.linkonce.wi.*) } \
799 .debug_abbrev 0 : { *(.debug_abbrev) } \
800 .debug_line 0 : { *(.debug_line) } \
801 .debug_frame 0 : { *(.debug_frame) } \
802 .debug_str 0 : { *(.debug_str) } \
803 .debug_loc 0 : { *(.debug_loc) } \
804 .debug_macinfo 0 : { *(.debug_macinfo) } \
83a092cf
NP
805 .debug_pubtypes 0 : { *(.debug_pubtypes) } \
806 /* DWARF 3 */ \
807 .debug_ranges 0 : { *(.debug_ranges) } \
a7d0c210
PBG
808 /* SGI/MIPS DWARF 2 extensions */ \
809 .debug_weaknames 0 : { *(.debug_weaknames) } \
810 .debug_funcnames 0 : { *(.debug_funcnames) } \
811 .debug_typenames 0 : { *(.debug_typenames) } \
812 .debug_varnames 0 : { *(.debug_varnames) } \
83a092cf
NP
813 /* GNU DWARF 2 extensions */ \
814 .debug_gnu_pubnames 0 : { *(.debug_gnu_pubnames) } \
815 .debug_gnu_pubtypes 0 : { *(.debug_gnu_pubtypes) } \
816 /* DWARF 4 */ \
817 .debug_types 0 : { *(.debug_types) } \
818 /* DWARF 5 */ \
819 .debug_macro 0 : { *(.debug_macro) } \
820 .debug_addr 0 : { *(.debug_addr) }
a7d0c210
PBG
821
822 /* Stabs debugging sections. */
823#define STABS_DEBUG \
824 .stab 0 : { *(.stab) } \
825 .stabstr 0 : { *(.stabstr) } \
826 .stab.excl 0 : { *(.stab.excl) } \
827 .stab.exclstr 0 : { *(.stab.exclstr) } \
828 .stab.index 0 : { *(.stab.index) } \
829 .stab.indexstr 0 : { *(.stab.indexstr) } \
830 .comment 0 : { *(.comment) }
9c9b8b38 831
6360b1fb 832#ifdef CONFIG_GENERIC_BUG
7664c5a1
JF
833#define BUG_TABLE \
834 . = ALIGN(8); \
835 __bug_table : AT(ADDR(__bug_table) - LOAD_OFFSET) { \
a6214385 836 __start___bug_table = .; \
4b89b7f7 837 KEEP(*(__bug_table)) \
a6214385 838 __stop___bug_table = .; \
7664c5a1 839 }
6360b1fb
JB
840#else
841#define BUG_TABLE
842#endif
7664c5a1 843
11af8474 844#ifdef CONFIG_UNWINDER_ORC
ee9f8fce
JP
845#define ORC_UNWIND_TABLE \
846 . = ALIGN(4); \
847 .orc_unwind_ip : AT(ADDR(.orc_unwind_ip) - LOAD_OFFSET) { \
a6214385 848 __start_orc_unwind_ip = .; \
ee9f8fce 849 KEEP(*(.orc_unwind_ip)) \
a6214385 850 __stop_orc_unwind_ip = .; \
ee9f8fce 851 } \
f76a16ad 852 . = ALIGN(2); \
ee9f8fce 853 .orc_unwind : AT(ADDR(.orc_unwind) - LOAD_OFFSET) { \
a6214385 854 __start_orc_unwind = .; \
ee9f8fce 855 KEEP(*(.orc_unwind)) \
a6214385 856 __stop_orc_unwind = .; \
ee9f8fce
JP
857 } \
858 . = ALIGN(4); \
859 .orc_lookup : AT(ADDR(.orc_lookup) - LOAD_OFFSET) { \
a6214385 860 orc_lookup = .; \
ee9f8fce
JP
861 . += (((SIZEOF(.text) + LOOKUP_BLOCK_SIZE - 1) / \
862 LOOKUP_BLOCK_SIZE) + 1) * 4; \
a6214385 863 orc_lookup_end = .; \
ee9f8fce
JP
864 }
865#else
866#define ORC_UNWIND_TABLE
867#endif
868
63687a52
JB
869#ifdef CONFIG_PM_TRACE
870#define TRACEDATA \
871 . = ALIGN(4); \
872 .tracedata : AT(ADDR(.tracedata) - LOAD_OFFSET) { \
a6214385 873 __tracedata_start = .; \
4b89b7f7 874 KEEP(*(.tracedata)) \
a6214385 875 __tracedata_end = .; \
63687a52
JB
876 }
877#else
878#define TRACEDATA
879#endif
880
9c9b8b38 881#define NOTES \
cbe87121 882 .notes : AT(ADDR(.notes) - LOAD_OFFSET) { \
a6214385 883 __start_notes = .; \
266ff2a8 884 KEEP(*(.note.*)) \
a6214385 885 __stop_notes = .; \
fbe6a8e6
KC
886 } NOTES_HEADERS \
887 NOTES_HEADERS_RESTORE
61ce1efe 888
ef53dae8
SR
889#define INIT_SETUP(initsetup_align) \
890 . = ALIGN(initsetup_align); \
a6214385 891 __setup_start = .; \
4b89b7f7 892 KEEP(*(.init.setup)) \
a6214385 893 __setup_end = .;
ef53dae8 894
026cee00 895#define INIT_CALLS_LEVEL(level) \
a6214385 896 __initcall##level##_start = .; \
b67067f1
NP
897 KEEP(*(.initcall##level##.init)) \
898 KEEP(*(.initcall##level##s.init)) \
61ce1efe 899
ef53dae8 900#define INIT_CALLS \
a6214385 901 __initcall_start = .; \
b67067f1 902 KEEP(*(.initcallearly.init)) \
026cee00
PM
903 INIT_CALLS_LEVEL(0) \
904 INIT_CALLS_LEVEL(1) \
905 INIT_CALLS_LEVEL(2) \
906 INIT_CALLS_LEVEL(3) \
907 INIT_CALLS_LEVEL(4) \
908 INIT_CALLS_LEVEL(5) \
909 INIT_CALLS_LEVEL(rootfs) \
910 INIT_CALLS_LEVEL(6) \
911 INIT_CALLS_LEVEL(7) \
a6214385 912 __initcall_end = .;
ef53dae8
SR
913
914#define CON_INITCALL \
a6214385 915 __con_initcall_start = .; \
b67067f1 916 KEEP(*(.con_initcall.init)) \
a6214385 917 __con_initcall_end = .;
ef53dae8 918
ef53dae8
SR
919#ifdef CONFIG_BLK_DEV_INITRD
920#define INIT_RAM_FS \
d8826262 921 . = ALIGN(4); \
a6214385 922 __initramfs_start = .; \
b67067f1 923 KEEP(*(.init.ramfs)) \
ffe8018c 924 . = ALIGN(8); \
b67067f1 925 KEEP(*(.init.ramfs.info))
ef53dae8 926#else
eadfe219 927#define INIT_RAM_FS
ef53dae8
SR
928#endif
929
ac26963a
BS
930/*
931 * Memory encryption operates on a page basis. Since we need to clear
932 * the memory encryption mask for this section, it needs to be aligned
933 * on a page boundary and be a page-size multiple in length.
934 *
935 * Note: We use a separate section so that only this section gets
936 * decrypted to avoid exposing more than we wish.
937 */
938#ifdef CONFIG_AMD_MEM_ENCRYPT
939#define PERCPU_DECRYPTED_SECTION \
940 . = ALIGN(PAGE_SIZE); \
941 *(.data..percpu..decrypted) \
942 . = ALIGN(PAGE_SIZE);
943#else
944#define PERCPU_DECRYPTED_SECTION
945#endif
946
947
023bf6f1
TH
948/*
949 * Default discarded sections.
950 *
951 * Some archs want to discard exit text/data at runtime rather than
952 * link time due to cross-section references such as alt instructions,
953 * bug table, eh_frame, etc. DISCARDS must be the last of output
954 * section definitions so that such archs put those in earlier section
955 * definitions.
956 */
84d5f77f
L
957#ifdef RUNTIME_DISCARD_EXIT
958#define EXIT_DISCARDS
959#else
960#define EXIT_DISCARDS \
961 EXIT_TEXT \
962 EXIT_DATA
963#endif
964
405d967d
TH
965#define DISCARDS \
966 /DISCARD/ : { \
84d5f77f 967 EXIT_DISCARDS \
023bf6f1 968 EXIT_CALL \
405d967d 969 *(.discard) \
c7f52cdc 970 *(.discard.*) \
898490c0 971 *(.modinfo) \
405d967d
TH
972 }
973
6ea0c34d
MF
974/**
975 * PERCPU_INPUT - the percpu input sections
976 * @cacheline: cacheline size
977 *
978 * The core percpu section names and core symbols which do not rely
979 * directly upon load addresses.
980 *
981 * @cacheline is used to align subsections to avoid false cacheline
982 * sharing between subsections for different purposes.
983 */
984#define PERCPU_INPUT(cacheline) \
a6214385 985 __per_cpu_start = .; \
6ea0c34d
MF
986 *(.data..percpu..first) \
987 . = ALIGN(PAGE_SIZE); \
988 *(.data..percpu..page_aligned) \
989 . = ALIGN(cacheline); \
330d2822 990 *(.data..percpu..read_mostly) \
6ea0c34d
MF
991 . = ALIGN(cacheline); \
992 *(.data..percpu) \
993 *(.data..percpu..shared_aligned) \
ac26963a 994 PERCPU_DECRYPTED_SECTION \
a6214385 995 __per_cpu_end = .;
6ea0c34d 996
3e5d8f97 997/**
6b7c38d5 998 * PERCPU_VADDR - define output section for percpu area
19df0c2f 999 * @cacheline: cacheline size
3e5d8f97
TH
1000 * @vaddr: explicit base address (optional)
1001 * @phdr: destination PHDR (optional)
1002 *
19df0c2f
TH
1003 * Macro which expands to output section for percpu area.
1004 *
1005 * @cacheline is used to align subsections to avoid false cacheline
1006 * sharing between subsections for different purposes.
1007 *
1008 * If @vaddr is not blank, it specifies explicit base address and all
1009 * percpu symbols will be offset from the given address. If blank,
1010 * @vaddr always equals @laddr + LOAD_OFFSET.
3e5d8f97
TH
1011 *
1012 * @phdr defines the output PHDR to use if not blank. Be warned that
1013 * output PHDR is sticky. If @phdr is specified, the next output
1014 * section in the linker script will go there too. @phdr should have
1015 * a leading colon.
1016 *
3ac6cffe
TH
1017 * Note that this macros defines __per_cpu_load as an absolute symbol.
1018 * If there is no need to put the percpu section at a predetermined
0415b00d 1019 * address, use PERCPU_SECTION.
3e5d8f97 1020 */
19df0c2f 1021#define PERCPU_VADDR(cacheline, vaddr, phdr) \
a6214385
MY
1022 __per_cpu_load = .; \
1023 .data..percpu vaddr : AT(__per_cpu_load - LOAD_OFFSET) { \
6ea0c34d 1024 PERCPU_INPUT(cacheline) \
6b7c38d5 1025 } phdr \
a6214385 1026 . = __per_cpu_load + SIZEOF(.data..percpu);
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1027
1028/**
0415b00d 1029 * PERCPU_SECTION - define output section for percpu area, simple version
19df0c2f 1030 * @cacheline: cacheline size
3e5d8f97 1031 *
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1032 * Align to PAGE_SIZE and outputs output section for percpu area. This
1033 * macro doesn't manipulate @vaddr or @phdr and __per_cpu_load and
3e5d8f97 1034 * __per_cpu_start will be identical.
3ac6cffe 1035 *
0415b00d 1036 * This macro is equivalent to ALIGN(PAGE_SIZE); PERCPU_VADDR(@cacheline,,)
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1037 * except that __per_cpu_load is defined as a relative symbol against
1038 * .data..percpu which is required for relocatable x86_32 configuration.
3e5d8f97 1039 */
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1040#define PERCPU_SECTION(cacheline) \
1041 . = ALIGN(PAGE_SIZE); \
3d9a854c 1042 .data..percpu : AT(ADDR(.data..percpu) - LOAD_OFFSET) { \
a6214385 1043 __per_cpu_load = .; \
6ea0c34d 1044 PERCPU_INPUT(cacheline) \
3ac6cffe 1045 }
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1046
1047
1048/*
1049 * Definition of the high level *_SECTION macros
1050 * They will fit only a subset of the architectures
1051 */
1052
1053
1054/*
1055 * Writeable data.
1056 * All sections are combined in a single .data section.
1057 * The sections following CONSTRUCTORS are arranged so their
1058 * typical alignment matches.
1059 * A cacheline is typical/always less than a PAGE_SIZE so
1060 * the sections that has this restriction (or similar)
1061 * is located before the ones requiring PAGE_SIZE alignment.
1062 * NOSAVE_DATA starts and ends with a PAGE_SIZE alignment which
25985edc 1063 * matches the requirement of PAGE_ALIGNED_DATA.
ef53dae8 1064 *
7923f90f 1065 * use 0 as page_align if page_aligned data is not used */
c9174047 1066#define RW_DATA(cacheline, pagealigned, inittask) \
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1067 . = ALIGN(PAGE_SIZE); \
1068 .data : AT(ADDR(.data) - LOAD_OFFSET) { \
39a449d9 1069 INIT_TASK_DATA(inittask) \
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1070 NOSAVE_DATA \
1071 PAGE_ALIGNED_DATA(pagealigned) \
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1072 CACHELINE_ALIGNED_DATA(cacheline) \
1073 READ_MOSTLY_DATA(cacheline) \
1074 DATA_DATA \
1075 CONSTRUCTORS \
19d43626 1076 } \
ee9f8fce 1077 BUG_TABLE \
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1078
1079#define INIT_TEXT_SECTION(inittext_align) \
1080 . = ALIGN(inittext_align); \
1081 .init.text : AT(ADDR(.init.text) - LOAD_OFFSET) { \
a6214385 1082 _sinittext = .; \
ef53dae8 1083 INIT_TEXT \
a6214385 1084 _einittext = .; \
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1085 }
1086
1087#define INIT_DATA_SECTION(initsetup_align) \
1088 .init.data : AT(ADDR(.init.data) - LOAD_OFFSET) { \
1089 INIT_DATA \
1090 INIT_SETUP(initsetup_align) \
1091 INIT_CALLS \
1092 CON_INITCALL \
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1093 INIT_RAM_FS \
1094 }
1095
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1096#define BSS_SECTION(sbss_align, bss_align, stop_align) \
1097 . = ALIGN(sbss_align); \
a6214385 1098 __bss_start = .; \
04e448d9 1099 SBSS(sbss_align) \
ef53dae8 1100 BSS(bss_align) \
04e448d9 1101 . = ALIGN(stop_align); \
a6214385 1102 __bss_stop = .;