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-rw-r--r--include/acpi/acpi_bus.h16
-rw-r--r--include/acpi/acpiosxf.h3
-rw-r--r--include/acpi/acpixf.h10
-rw-r--r--include/acpi/actbl.h78
-rw-r--r--include/acpi/actbl1.h872
-rw-r--r--include/acpi/actbl2.h868
-rw-r--r--include/acpi/actypes.h92
-rw-r--r--include/acpi/platform/aclinux.h4
-rw-r--r--include/asm-generic/cputime.h1
-rw-r--r--include/asm-generic/gpio.h8
-rw-r--r--include/asm-generic/kmap_types.h47
-rw-r--r--include/asm-generic/sections.h16
-rw-r--r--include/asm-generic/syscall.h8
-rw-r--r--include/linux/acpi.h15
-rw-r--r--include/linux/anon_inodes.h3
-rw-r--r--include/linux/cn_proc.h10
-rw-r--r--include/linux/cpumask.h12
-rw-r--r--include/linux/eventfd.h6
-rw-r--r--include/linux/firewire.h14
-rw-r--r--include/linux/gfp.h2
-rw-r--r--include/linux/gpio.h11
-rw-r--r--include/linux/i2c-id.h11
-rw-r--r--include/linux/i2c.h2
-rw-r--r--include/linux/intel-iommu.h2
-rw-r--r--include/linux/ioport.h4
-rw-r--r--include/linux/iova.h1
-rw-r--r--include/linux/jbd.h2
-rw-r--r--include/linux/kernel.h16
-rw-r--r--include/linux/kmemcheck.h6
-rw-r--r--include/linux/magic.h6
-rw-r--r--include/linux/memory_hotplug.h8
-rw-r--r--include/linux/mfd/da903x.h4
-rw-r--r--include/linux/mm.h8
-rw-r--r--include/linux/mmc/card.h12
-rw-r--r--include/linux/mmc/core.h1
-rw-r--r--include/linux/mmc/host.h58
-rw-r--r--include/linux/mmc/mmc.h3
-rw-r--r--include/linux/mmc/sdio_func.h3
-rw-r--r--include/linux/mod_devicetable.h11
-rw-r--r--include/linux/mtd/nand.h5
-rw-r--r--include/linux/mtd/nand_ecc.h6
-rw-r--r--include/linux/mtd/onenand.h8
-rw-r--r--include/linux/mtd/onenand_regs.h3
-rw-r--r--include/linux/nfsd/nfsd.h2
-rw-r--r--include/linux/pci_ids.h1
-rw-r--r--include/linux/proc_fs.h16
-rw-r--r--include/linux/regulator/consumer.h4
-rw-r--r--include/linux/regulator/driver.h5
-rw-r--r--include/linux/regulator/fixed.h24
-rw-r--r--include/linux/regulator/machine.h26
-rw-r--r--include/linux/regulator/max1586.h4
-rw-r--r--include/linux/sched.h27
-rw-r--r--include/linux/sfi.h206
-rw-r--r--include/linux/sfi_acpi.h93
-rw-r--r--include/linux/spi/mc33880.h10
-rw-r--r--include/linux/spi/spi.h51
-rw-r--r--include/linux/syscalls.h3
-rw-r--r--include/linux/ucb1400.h19
-rw-r--r--include/linux/usb.h25
-rw-r--r--include/linux/usb/audio.h287
-rw-r--r--include/linux/usb/ch9.h8
-rw-r--r--include/linux/usb/ehci_def.h35
-rw-r--r--include/linux/usb/isp1362.h46
-rw-r--r--include/linux/usb/isp1760.h18
-rw-r--r--include/linux/usb/serial.h2
-rw-r--r--include/linux/usbdevice_fs.h3
-rw-r--r--include/linux/vgaarb.h11
-rw-r--r--include/linux/virtio.h2
-rw-r--r--include/linux/virtio_9p.h2
-rw-r--r--include/linux/virtio_balloon.h3
-rw-r--r--include/linux/virtio_blk.h18
-rw-r--r--include/linux/virtio_config.h3
-rw-r--r--include/linux/virtio_console.h3
-rw-r--r--include/linux/virtio_ids.h17
-rw-r--r--include/linux/virtio_net.h3
-rw-r--r--include/linux/virtio_rng.h3
-rw-r--r--include/trace/events/timer.h342
-rw-r--r--include/video/da8xx-fb.h103
78 files changed, 2648 insertions, 1053 deletions
diff --git a/include/acpi/acpi_bus.h b/include/acpi/acpi_bus.h
index 1b3b36068ca5..1cef1398e358 100644
--- a/include/acpi/acpi_bus.h
+++ b/include/acpi/acpi_bus.h
@@ -30,8 +30,6 @@
30 30
31#include <acpi/acpi.h> 31#include <acpi/acpi.h>
32 32
33#define PREFIX "ACPI: "
34
35/* TBD: Make dynamic */ 33/* TBD: Make dynamic */
36#define ACPI_MAX_HANDLES 10 34#define ACPI_MAX_HANDLES 10
37struct acpi_handle_list { 35struct acpi_handle_list {
@@ -89,7 +87,6 @@ struct acpi_device;
89typedef int (*acpi_op_add) (struct acpi_device * device); 87typedef int (*acpi_op_add) (struct acpi_device * device);
90typedef int (*acpi_op_remove) (struct acpi_device * device, int type); 88typedef int (*acpi_op_remove) (struct acpi_device * device, int type);
91typedef int (*acpi_op_start) (struct acpi_device * device); 89typedef int (*acpi_op_start) (struct acpi_device * device);
92typedef int (*acpi_op_stop) (struct acpi_device * device, int type);
93typedef int (*acpi_op_suspend) (struct acpi_device * device, 90typedef int (*acpi_op_suspend) (struct acpi_device * device,
94 pm_message_t state); 91 pm_message_t state);
95typedef int (*acpi_op_resume) (struct acpi_device * device); 92typedef int (*acpi_op_resume) (struct acpi_device * device);
@@ -106,7 +103,6 @@ struct acpi_device_ops {
106 acpi_op_add add; 103 acpi_op_add add;
107 acpi_op_remove remove; 104 acpi_op_remove remove;
108 acpi_op_start start; 105 acpi_op_start start;
109 acpi_op_stop stop;
110 acpi_op_suspend suspend; 106 acpi_op_suspend suspend;
111 acpi_op_resume resume; 107 acpi_op_resume resume;
112 acpi_op_bind bind; 108 acpi_op_bind bind;
@@ -173,17 +169,15 @@ struct acpi_device_dir {
173 169
174typedef char acpi_bus_id[8]; 170typedef char acpi_bus_id[8];
175typedef unsigned long acpi_bus_address; 171typedef unsigned long acpi_bus_address;
176typedef char acpi_hardware_id[15];
177typedef char acpi_unique_id[9];
178typedef char acpi_device_name[40]; 172typedef char acpi_device_name[40];
179typedef char acpi_device_class[20]; 173typedef char acpi_device_class[20];
180 174
181struct acpi_device_pnp { 175struct acpi_device_pnp {
182 acpi_bus_id bus_id; /* Object name */ 176 acpi_bus_id bus_id; /* Object name */
183 acpi_bus_address bus_address; /* _ADR */ 177 acpi_bus_address bus_address; /* _ADR */
184 acpi_hardware_id hardware_id; /* _HID */ 178 char *hardware_id; /* _HID */
185 struct acpi_compatible_id_list *cid_list; /* _CIDs */ 179 struct acpica_device_id_list *cid_list; /* _CIDs */
186 acpi_unique_id unique_id; /* _UID */ 180 char *unique_id; /* _UID */
187 acpi_device_name device_name; /* Driver-determined */ 181 acpi_device_name device_name; /* Driver-determined */
188 acpi_device_class device_class; /* " */ 182 acpi_device_class device_class; /* " */
189}; 183};
@@ -314,7 +308,7 @@ struct acpi_bus_event {
314 308
315extern struct kobject *acpi_kobj; 309extern struct kobject *acpi_kobj;
316extern int acpi_bus_generate_netlink_event(const char*, const char*, u8, int); 310extern int acpi_bus_generate_netlink_event(const char*, const char*, u8, int);
317void acpi_bus_private_data_handler(acpi_handle, u32, void *); 311void acpi_bus_private_data_handler(acpi_handle, void *);
318int acpi_bus_get_private_data(acpi_handle, void **); 312int acpi_bus_get_private_data(acpi_handle, void **);
319extern int acpi_notifier_call_chain(struct acpi_device *, u32, u32); 313extern int acpi_notifier_call_chain(struct acpi_device *, u32, u32);
320extern int register_acpi_notifier(struct notifier_block *); 314extern int register_acpi_notifier(struct notifier_block *);
@@ -327,7 +321,7 @@ extern void unregister_acpi_bus_notifier(struct notifier_block *nb);
327 */ 321 */
328 322
329int acpi_bus_get_device(acpi_handle handle, struct acpi_device **device); 323int acpi_bus_get_device(acpi_handle handle, struct acpi_device **device);
330void acpi_bus_data_handler(acpi_handle handle, u32 function, void *context); 324void acpi_bus_data_handler(acpi_handle handle, void *context);
331int acpi_bus_get_status(struct acpi_device *device); 325int acpi_bus_get_status(struct acpi_device *device);
332int acpi_bus_get_power(acpi_handle handle, int *state); 326int acpi_bus_get_power(acpi_handle handle, int *state);
333int acpi_bus_set_power(acpi_handle handle, int state); 327int acpi_bus_set_power(acpi_handle handle, int state);
diff --git a/include/acpi/acpiosxf.h b/include/acpi/acpiosxf.h
index ab0b85cf21f3..eb0e7189075f 100644
--- a/include/acpi/acpiosxf.h
+++ b/include/acpi/acpiosxf.h
@@ -245,6 +245,9 @@ acpi_status acpi_osi_invalidate(char* interface);
245acpi_status 245acpi_status
246acpi_os_validate_address(u8 space_id, acpi_physical_address address, 246acpi_os_validate_address(u8 space_id, acpi_physical_address address,
247 acpi_size length, char *name); 247 acpi_size length, char *name);
248acpi_status
249acpi_os_invalidate_address(u8 space_id, acpi_physical_address address,
250 acpi_size length);
248 251
249u64 acpi_os_get_timer(void); 252u64 acpi_os_get_timer(void);
250 253
diff --git a/include/acpi/acpixf.h b/include/acpi/acpixf.h
index 82ec6a3c0500..e723b0fd8e41 100644
--- a/include/acpi/acpixf.h
+++ b/include/acpi/acpixf.h
@@ -47,7 +47,7 @@
47 47
48/* Current ACPICA subsystem version in YYYYMMDD format */ 48/* Current ACPICA subsystem version in YYYYMMDD format */
49 49
50#define ACPI_CA_VERSION 0x20090521 50#define ACPI_CA_VERSION 0x20090903
51 51
52#include "actypes.h" 52#include "actypes.h"
53#include "actbl.h" 53#include "actbl.h"
@@ -64,6 +64,7 @@ extern u8 acpi_gbl_enable_interpreter_slack;
64extern u8 acpi_gbl_all_methods_serialized; 64extern u8 acpi_gbl_all_methods_serialized;
65extern u8 acpi_gbl_create_osi_method; 65extern u8 acpi_gbl_create_osi_method;
66extern u8 acpi_gbl_leave_wake_gpes_disabled; 66extern u8 acpi_gbl_leave_wake_gpes_disabled;
67extern u8 acpi_gbl_use_default_register_widths;
67extern acpi_name acpi_gbl_trace_method_name; 68extern acpi_name acpi_gbl_trace_method_name;
68extern u32 acpi_gbl_trace_flags; 69extern u32 acpi_gbl_trace_flags;
69 70
@@ -199,7 +200,8 @@ acpi_evaluate_object_typed(acpi_handle object,
199 acpi_object_type return_type); 200 acpi_object_type return_type);
200 201
201acpi_status 202acpi_status
202acpi_get_object_info(acpi_handle handle, struct acpi_buffer *return_buffer); 203acpi_get_object_info(acpi_handle handle,
204 struct acpi_device_info **return_buffer);
203 205
204acpi_status acpi_install_method(u8 *buffer); 206acpi_status acpi_install_method(u8 *buffer);
205 207
@@ -359,9 +361,9 @@ acpi_status acpi_set_firmware_waking_vector(u32 physical_address);
359acpi_status acpi_set_firmware_waking_vector64(u64 physical_address); 361acpi_status acpi_set_firmware_waking_vector64(u64 physical_address);
360#endif 362#endif
361 363
362acpi_status acpi_read(u32 *value, struct acpi_generic_address *reg); 364acpi_status acpi_read(u64 *value, struct acpi_generic_address *reg);
363 365
364acpi_status acpi_write(u32 value, struct acpi_generic_address *reg); 366acpi_status acpi_write(u64 value, struct acpi_generic_address *reg);
365 367
366acpi_status 368acpi_status
367acpi_get_sleep_type_data(u8 sleep_state, u8 * slp_typ_a, u8 * slp_typ_b); 369acpi_get_sleep_type_data(u8 sleep_state, u8 * slp_typ_a, u8 * slp_typ_b);
diff --git a/include/acpi/actbl.h b/include/acpi/actbl.h
index 222733d01f36..1b6587952604 100644
--- a/include/acpi/actbl.h
+++ b/include/acpi/actbl.h
@@ -44,9 +44,23 @@
44#ifndef __ACTBL_H__ 44#ifndef __ACTBL_H__
45#define __ACTBL_H__ 45#define __ACTBL_H__
46 46
47/*******************************************************************************
48 *
49 * Fundamental ACPI tables
50 *
51 * This file contains definitions for the ACPI tables that are directly consumed
52 * by ACPICA. All other tables are consumed by the OS-dependent ACPI-related
53 * device drivers and other OS support code.
54 *
55 * The RSDP and FACS do not use the common ACPI table header. All other ACPI
56 * tables use the header.
57 *
58 ******************************************************************************/
59
47/* 60/*
48 * Values for description table header signatures. Useful because they make 61 * Values for description table header signatures for tables defined in this
49 * it more difficult to inadvertently type in the wrong signature. 62 * file. Useful because they make it more difficult to inadvertently type in
63 * the wrong signature.
50 */ 64 */
51#define ACPI_SIG_DSDT "DSDT" /* Differentiated System Description Table */ 65#define ACPI_SIG_DSDT "DSDT" /* Differentiated System Description Table */
52#define ACPI_SIG_FADT "FACP" /* Fixed ACPI Description Table */ 66#define ACPI_SIG_FADT "FACP" /* Fixed ACPI Description Table */
@@ -65,11 +79,6 @@
65#pragma pack(1) 79#pragma pack(1)
66 80
67/* 81/*
68 * These are the ACPI tables that are directly consumed by the subsystem.
69 *
70 * The RSDP and FACS do not use the common ACPI table header. All other ACPI
71 * tables use the header.
72 *
73 * Note about bitfields: The u8 type is used for bitfields in ACPI tables. 82 * Note about bitfields: The u8 type is used for bitfields in ACPI tables.
74 * This is the only type that is even remotely portable. Anything else is not 83 * This is the only type that is even remotely portable. Anything else is not
75 * portable, so do not use any other bitfield types. 84 * portable, so do not use any other bitfield types.
@@ -77,9 +86,8 @@
77 86
78/******************************************************************************* 87/*******************************************************************************
79 * 88 *
80 * ACPI Table Header. This common header is used by all tables except the 89 * Master ACPI Table Header. This common header is used by all ACPI tables
81 * RSDP and FACS. The define is used for direct inclusion of header into 90 * except the RSDP and FACS.
82 * other ACPI tables
83 * 91 *
84 ******************************************************************************/ 92 ******************************************************************************/
85 93
@@ -95,13 +103,16 @@ struct acpi_table_header {
95 u32 asl_compiler_revision; /* ASL compiler version */ 103 u32 asl_compiler_revision; /* ASL compiler version */
96}; 104};
97 105
98/* 106/*******************************************************************************
107 *
99 * GAS - Generic Address Structure (ACPI 2.0+) 108 * GAS - Generic Address Structure (ACPI 2.0+)
100 * 109 *
101 * Note: Since this structure is used in the ACPI tables, it is byte aligned. 110 * Note: Since this structure is used in the ACPI tables, it is byte aligned.
102 * If misalignment is not supported, access to the Address field must be 111 * If misaliged access is not supported by the hardware, accesses to the
103 * performed with care. 112 * 64-bit Address field must be performed with care.
104 */ 113 *
114 ******************************************************************************/
115
105struct acpi_generic_address { 116struct acpi_generic_address {
106 u8 space_id; /* Address space where struct or register exists */ 117 u8 space_id; /* Address space where struct or register exists */
107 u8 bit_width; /* Size in bits of given register */ 118 u8 bit_width; /* Size in bits of given register */
@@ -113,6 +124,7 @@ struct acpi_generic_address {
113/******************************************************************************* 124/*******************************************************************************
114 * 125 *
115 * RSDP - Root System Description Pointer (Signature is "RSD PTR ") 126 * RSDP - Root System Description Pointer (Signature is "RSD PTR ")
127 * Version 2
116 * 128 *
117 ******************************************************************************/ 129 ******************************************************************************/
118 130
@@ -133,6 +145,7 @@ struct acpi_table_rsdp {
133/******************************************************************************* 145/*******************************************************************************
134 * 146 *
135 * RSDT/XSDT - Root System Description Tables 147 * RSDT/XSDT - Root System Description Tables
148 * Version 1 (both)
136 * 149 *
137 ******************************************************************************/ 150 ******************************************************************************/
138 151
@@ -161,21 +174,29 @@ struct acpi_table_facs {
161 u32 flags; 174 u32 flags;
162 u64 xfirmware_waking_vector; /* 64-bit version of the Firmware Waking Vector (ACPI 2.0+) */ 175 u64 xfirmware_waking_vector; /* 64-bit version of the Firmware Waking Vector (ACPI 2.0+) */
163 u8 version; /* Version of this table (ACPI 2.0+) */ 176 u8 version; /* Version of this table (ACPI 2.0+) */
164 u8 reserved[31]; /* Reserved, must be zero */ 177 u8 reserved[3]; /* Reserved, must be zero */
178 u32 ospm_flags; /* Flags to be set by OSPM (ACPI 4.0) */
179 u8 reserved1[24]; /* Reserved, must be zero */
165}; 180};
166 181
167/* Flag macros */ 182/* Masks for global_lock flag field above */
168 183
169#define ACPI_FACS_S4_BIOS_PRESENT (1) /* 00: S4BIOS support is present */ 184#define ACPI_GLOCK_PENDING (1) /* 00: Pending global lock ownership */
185#define ACPI_GLOCK_OWNED (1<<1) /* 01: Global lock is owned */
170 186
171/* Global lock flags */ 187/* Masks for Flags field above */
172 188
173#define ACPI_GLOCK_PENDING 0x01 /* 00: Pending global lock ownership */ 189#define ACPI_FACS_S4_BIOS_PRESENT (1) /* 00: S4BIOS support is present */
174#define ACPI_GLOCK_OWNED 0x02 /* 01: Global lock is owned */ 190#define ACPI_FACS_64BIT_WAKE (1<<1) /* 01: 64-bit wake vector supported (ACPI 4.0) */
191
192/* Masks for ospm_flags field above */
193
194#define ACPI_FACS_64BIT_ENVIRONMENT (1) /* 00: 64-bit wake environment is required (ACPI 4.0) */
175 195
176/******************************************************************************* 196/*******************************************************************************
177 * 197 *
178 * FADT - Fixed ACPI Description Table (Signature "FACP") 198 * FADT - Fixed ACPI Description Table (Signature "FACP")
199 * Version 4
179 * 200 *
180 ******************************************************************************/ 201 ******************************************************************************/
181 202
@@ -236,7 +257,7 @@ struct acpi_table_fadt {
236 struct acpi_generic_address xgpe1_block; /* 64-bit Extended General Purpose Event 1 Reg Blk address */ 257 struct acpi_generic_address xgpe1_block; /* 64-bit Extended General Purpose Event 1 Reg Blk address */
237}; 258};
238 259
239/* FADT Boot Architecture Flags (boot_flags) */ 260/* Masks for FADT Boot Architecture Flags (boot_flags) */
240 261
241#define ACPI_FADT_LEGACY_DEVICES (1) /* 00: [V2] System has LPC or ISA bus devices */ 262#define ACPI_FADT_LEGACY_DEVICES (1) /* 00: [V2] System has LPC or ISA bus devices */
242#define ACPI_FADT_8042 (1<<1) /* 01: [V3] System has an 8042 controller on port 60/64 */ 263#define ACPI_FADT_8042 (1<<1) /* 01: [V3] System has an 8042 controller on port 60/64 */
@@ -246,7 +267,7 @@ struct acpi_table_fadt {
246 267
247#define FADT2_REVISION_ID 3 268#define FADT2_REVISION_ID 3
248 269
249/* FADT flags */ 270/* Masks for FADT flags */
250 271
251#define ACPI_FADT_WBINVD (1) /* 00: [V1] The wbinvd instruction works properly */ 272#define ACPI_FADT_WBINVD (1) /* 00: [V1] The wbinvd instruction works properly */
252#define ACPI_FADT_WBINVD_FLUSH (1<<1) /* 01: [V1] wbinvd flushes but does not invalidate caches */ 273#define ACPI_FADT_WBINVD_FLUSH (1<<1) /* 01: [V1] wbinvd flushes but does not invalidate caches */
@@ -269,7 +290,7 @@ struct acpi_table_fadt {
269#define ACPI_FADT_APIC_CLUSTER (1<<18) /* 18: [V4] All local APICs must use cluster model (ACPI 3.0) */ 290#define ACPI_FADT_APIC_CLUSTER (1<<18) /* 18: [V4] All local APICs must use cluster model (ACPI 3.0) */
270#define ACPI_FADT_APIC_PHYSICAL (1<<19) /* 19: [V4] All local x_aPICs must use physical dest mode (ACPI 3.0) */ 291#define ACPI_FADT_APIC_PHYSICAL (1<<19) /* 19: [V4] All local x_aPICs must use physical dest mode (ACPI 3.0) */
271 292
272/* FADT Prefered Power Management Profiles */ 293/* Values for preferred_profile (Prefered Power Management Profiles) */
273 294
274enum acpi_prefered_pm_profiles { 295enum acpi_prefered_pm_profiles {
275 PM_UNSPECIFIED = 0, 296 PM_UNSPECIFIED = 0,
@@ -287,14 +308,16 @@ enum acpi_prefered_pm_profiles {
287 308
288#define ACPI_FADT_OFFSET(f) (u8) ACPI_OFFSET (struct acpi_table_fadt, f) 309#define ACPI_FADT_OFFSET(f) (u8) ACPI_OFFSET (struct acpi_table_fadt, f)
289 310
311/*
312 * Internal table-related structures
313 */
290union acpi_name_union { 314union acpi_name_union {
291 u32 integer; 315 u32 integer;
292 char ascii[4]; 316 char ascii[4];
293}; 317};
294 318
295/* 319/* Internal ACPI Table Descriptor. One per ACPI table. */
296 * Internal ACPI Table Descriptor. One per ACPI table 320
297 */
298struct acpi_table_desc { 321struct acpi_table_desc {
299 acpi_physical_address address; 322 acpi_physical_address address;
300 struct acpi_table_header *pointer; 323 struct acpi_table_header *pointer;
@@ -304,7 +327,7 @@ struct acpi_table_desc {
304 u8 flags; 327 u8 flags;
305}; 328};
306 329
307/* Flags for above */ 330/* Masks for Flags field above */
308 331
309#define ACPI_TABLE_ORIGIN_UNKNOWN (0) 332#define ACPI_TABLE_ORIGIN_UNKNOWN (0)
310#define ACPI_TABLE_ORIGIN_MAPPED (1) 333#define ACPI_TABLE_ORIGIN_MAPPED (1)
@@ -318,5 +341,6 @@ struct acpi_table_desc {
318 */ 341 */
319 342
320#include <acpi/actbl1.h> 343#include <acpi/actbl1.h>
344#include <acpi/actbl2.h>
321 345
322#endif /* __ACTBL_H__ */ 346#endif /* __ACTBL_H__ */
diff --git a/include/acpi/actbl1.h b/include/acpi/actbl1.h
index 59ade0752473..0b9b430b092b 100644
--- a/include/acpi/actbl1.h
+++ b/include/acpi/actbl1.h
@@ -46,41 +46,31 @@
46 46
47/******************************************************************************* 47/*******************************************************************************
48 * 48 *
49 * Additional ACPI Tables 49 * Additional ACPI Tables (1)
50 * 50 *
51 * These tables are not consumed directly by the ACPICA subsystem, but are 51 * These tables are not consumed directly by the ACPICA subsystem, but are
52 * included here to support device drivers and the AML disassembler. 52 * included here to support device drivers and the AML disassembler.
53 * 53 *
54 * The tables in this file are fully defined within the ACPI specification.
55 *
54 ******************************************************************************/ 56 ******************************************************************************/
55 57
56/* 58/*
57 * Values for description table header signatures. Useful because they make 59 * Values for description table header signatures for tables defined in this
58 * it more difficult to inadvertently type in the wrong signature. 60 * file. Useful because they make it more difficult to inadvertently type in
61 * the wrong signature.
59 */ 62 */
60#define ACPI_SIG_ASF "ASF!" /* Alert Standard Format table */
61#define ACPI_SIG_BERT "BERT" /* Boot Error Record Table */ 63#define ACPI_SIG_BERT "BERT" /* Boot Error Record Table */
62#define ACPI_SIG_BOOT "BOOT" /* Simple Boot Flag Table */
63#define ACPI_SIG_CPEP "CPEP" /* Corrected Platform Error Polling table */ 64#define ACPI_SIG_CPEP "CPEP" /* Corrected Platform Error Polling table */
64#define ACPI_SIG_DBGP "DBGP" /* Debug Port table */
65#define ACPI_SIG_DMAR "DMAR" /* DMA Remapping table */
66#define ACPI_SIG_ECDT "ECDT" /* Embedded Controller Boot Resources Table */ 65#define ACPI_SIG_ECDT "ECDT" /* Embedded Controller Boot Resources Table */
67#define ACPI_SIG_EINJ "EINJ" /* Error Injection table */ 66#define ACPI_SIG_EINJ "EINJ" /* Error Injection table */
68#define ACPI_SIG_ERST "ERST" /* Error Record Serialization Table */ 67#define ACPI_SIG_ERST "ERST" /* Error Record Serialization Table */
69#define ACPI_SIG_HEST "HEST" /* Hardware Error Source Table */ 68#define ACPI_SIG_HEST "HEST" /* Hardware Error Source Table */
70#define ACPI_SIG_HPET "HPET" /* High Precision Event Timer table */
71#define ACPI_SIG_IBFT "IBFT" /* i_sCSI Boot Firmware Table */
72#define ACPI_SIG_MADT "APIC" /* Multiple APIC Description Table */ 69#define ACPI_SIG_MADT "APIC" /* Multiple APIC Description Table */
73#define ACPI_SIG_MCFG "MCFG" /* PCI Memory Mapped Configuration table */ 70#define ACPI_SIG_MSCT "MSCT" /* Maximum System Characteristics Table */
74#define ACPI_SIG_SBST "SBST" /* Smart Battery Specification Table */ 71#define ACPI_SIG_SBST "SBST" /* Smart Battery Specification Table */
75#define ACPI_SIG_SLIC "SLIC" /* Software Licensing Description Table */
76#define ACPI_SIG_SLIT "SLIT" /* System Locality Distance Information Table */ 72#define ACPI_SIG_SLIT "SLIT" /* System Locality Distance Information Table */
77#define ACPI_SIG_SPCR "SPCR" /* Serial Port Console Redirection table */
78#define ACPI_SIG_SPMI "SPMI" /* Server Platform Management Interface table */
79#define ACPI_SIG_SRAT "SRAT" /* System Resource Affinity Table */ 73#define ACPI_SIG_SRAT "SRAT" /* System Resource Affinity Table */
80#define ACPI_SIG_TCPA "TCPA" /* Trusted Computing Platform Alliance table */
81#define ACPI_SIG_UEFI "UEFI" /* Uefi Boot Optimization Table */
82#define ACPI_SIG_WDAT "WDAT" /* Watchdog Action Table */
83#define ACPI_SIG_WDRT "WDRT" /* Watchdog Resource Table */
84 74
85/* 75/*
86 * All tables must be byte-packed to match the ACPI specification, since 76 * All tables must be byte-packed to match the ACPI specification, since
@@ -94,14 +84,20 @@
94 * portable, so do not use any other bitfield types. 84 * portable, so do not use any other bitfield types.
95 */ 85 */
96 86
97/* Common Subtable header (used in MADT, SRAT, etc.) */ 87/*******************************************************************************
88 *
89 * Common subtable headers
90 *
91 ******************************************************************************/
92
93/* Generic subtable header (used in MADT, SRAT, etc.) */
98 94
99struct acpi_subtable_header { 95struct acpi_subtable_header {
100 u8 type; 96 u8 type;
101 u8 length; 97 u8 length;
102}; 98};
103 99
104/* Common Subtable header for WHEA tables (EINJ, ERST, WDAT) */ 100/* Subtable header for WHEA tables (EINJ, ERST, WDAT) */
105 101
106struct acpi_whea_header { 102struct acpi_whea_header {
107 u8 action; 103 u8 action;
@@ -115,116 +111,8 @@ struct acpi_whea_header {
115 111
116/******************************************************************************* 112/*******************************************************************************
117 * 113 *
118 * ASF - Alert Standard Format table (Signature "ASF!") 114 * BERT - Boot Error Record Table (ACPI 4.0)
119 * 115 * Version 1
120 * Conforms to the Alert Standard Format Specification V2.0, 23 April 2003
121 *
122 ******************************************************************************/
123
124struct acpi_table_asf {
125 struct acpi_table_header header; /* Common ACPI table header */
126};
127
128/* ASF subtable header */
129
130struct acpi_asf_header {
131 u8 type;
132 u8 reserved;
133 u16 length;
134};
135
136/* Values for Type field above */
137
138enum acpi_asf_type {
139 ACPI_ASF_TYPE_INFO = 0,
140 ACPI_ASF_TYPE_ALERT = 1,
141 ACPI_ASF_TYPE_CONTROL = 2,
142 ACPI_ASF_TYPE_BOOT = 3,
143 ACPI_ASF_TYPE_ADDRESS = 4,
144 ACPI_ASF_TYPE_RESERVED = 5
145};
146
147/*
148 * ASF subtables
149 */
150
151/* 0: ASF Information */
152
153struct acpi_asf_info {
154 struct acpi_asf_header header;
155 u8 min_reset_value;
156 u8 min_poll_interval;
157 u16 system_id;
158 u32 mfg_id;
159 u8 flags;
160 u8 reserved2[3];
161};
162
163/* 1: ASF Alerts */
164
165struct acpi_asf_alert {
166 struct acpi_asf_header header;
167 u8 assert_mask;
168 u8 deassert_mask;
169 u8 alerts;
170 u8 data_length;
171};
172
173struct acpi_asf_alert_data {
174 u8 address;
175 u8 command;
176 u8 mask;
177 u8 value;
178 u8 sensor_type;
179 u8 type;
180 u8 offset;
181 u8 source_type;
182 u8 severity;
183 u8 sensor_number;
184 u8 entity;
185 u8 instance;
186};
187
188/* 2: ASF Remote Control */
189
190struct acpi_asf_remote {
191 struct acpi_asf_header header;
192 u8 controls;
193 u8 data_length;
194 u16 reserved2;
195};
196
197struct acpi_asf_control_data {
198 u8 function;
199 u8 address;
200 u8 command;
201 u8 value;
202};
203
204/* 3: ASF RMCP Boot Options */
205
206struct acpi_asf_rmcp {
207 struct acpi_asf_header header;
208 u8 capabilities[7];
209 u8 completion_code;
210 u32 enterprise_id;
211 u8 command;
212 u16 parameter;
213 u16 boot_options;
214 u16 oem_parameters;
215};
216
217/* 4: ASF Address */
218
219struct acpi_asf_address {
220 struct acpi_asf_header header;
221 u8 eprom_address;
222 u8 devices;
223};
224
225/*******************************************************************************
226 *
227 * BERT - Boot Error Record Table
228 * 116 *
229 ******************************************************************************/ 117 ******************************************************************************/
230 118
@@ -234,38 +122,43 @@ struct acpi_table_bert {
234 u64 address; /* Physical addresss of the error region */ 122 u64 address; /* Physical addresss of the error region */
235}; 123};
236 124
237/* Boot Error Region */ 125/* Boot Error Region (not a subtable, pointed to by Address field above) */
238 126
239struct acpi_bert_region { 127struct acpi_bert_region {
240 u32 block_status; 128 u32 block_status; /* Type of error information */
241 u32 raw_data_offset; 129 u32 raw_data_offset; /* Offset to raw error data */
242 u32 raw_data_length; 130 u32 raw_data_length; /* Length of raw error data */
243 u32 data_length; 131 u32 data_length; /* Length of generic error data */
244 u32 error_severity; 132 u32 error_severity; /* Severity code */
245}; 133};
246 134
247/* block_status Flags */ 135/* Values for block_status flags above */
248 136
249#define ACPI_BERT_UNCORRECTABLE (1) 137#define ACPI_BERT_UNCORRECTABLE (1)
250#define ACPI_BERT_CORRECTABLE (2) 138#define ACPI_BERT_CORRECTABLE (1<<1)
251#define ACPI_BERT_MULTIPLE_UNCORRECTABLE (4) 139#define ACPI_BERT_MULTIPLE_UNCORRECTABLE (1<<2)
252#define ACPI_BERT_MULTIPLE_CORRECTABLE (8) 140#define ACPI_BERT_MULTIPLE_CORRECTABLE (1<<3)
141#define ACPI_BERT_ERROR_ENTRY_COUNT (0xFF<<4) /* 8 bits, error count */
253 142
254/******************************************************************************* 143/* Values for error_severity above */
255 *
256 * BOOT - Simple Boot Flag Table
257 *
258 ******************************************************************************/
259 144
260struct acpi_table_boot { 145enum acpi_bert_error_severity {
261 struct acpi_table_header header; /* Common ACPI table header */ 146 ACPI_BERT_ERROR_CORRECTABLE = 0,
262 u8 cmos_index; /* Index in CMOS RAM for the boot register */ 147 ACPI_BERT_ERROR_FATAL = 1,
263 u8 reserved[3]; 148 ACPI_BERT_ERROR_CORRECTED = 2,
149 ACPI_BERT_ERROR_NONE = 3,
150 ACPI_BERT_ERROR_RESERVED = 4 /* 4 and greater are reserved */
264}; 151};
265 152
153/*
154 * Note: The generic error data that follows the error_severity field above
155 * uses the struct acpi_hest_generic_data defined under the HEST table below
156 */
157
266/******************************************************************************* 158/*******************************************************************************
267 * 159 *
268 * CPEP - Corrected Platform Error Polling table 160 * CPEP - Corrected Platform Error Polling table (ACPI 4.0)
161 * Version 1
269 * 162 *
270 ******************************************************************************/ 163 ******************************************************************************/
271 164
@@ -277,8 +170,7 @@ struct acpi_table_cpep {
277/* Subtable */ 170/* Subtable */
278 171
279struct acpi_cpep_polling { 172struct acpi_cpep_polling {
280 u8 type; 173 struct acpi_subtable_header header;
281 u8 length;
282 u8 id; /* Processor ID */ 174 u8 id; /* Processor ID */
283 u8 eid; /* Processor EID */ 175 u8 eid; /* Processor EID */
284 u32 interval; /* Polling interval (msec) */ 176 u32 interval; /* Polling interval (msec) */
@@ -286,124 +178,8 @@ struct acpi_cpep_polling {
286 178
287/******************************************************************************* 179/*******************************************************************************
288 * 180 *
289 * DBGP - Debug Port table
290 *
291 ******************************************************************************/
292
293struct acpi_table_dbgp {
294 struct acpi_table_header header; /* Common ACPI table header */
295 u8 type; /* 0=full 16550, 1=subset of 16550 */
296 u8 reserved[3];
297 struct acpi_generic_address debug_port;
298};
299
300/*******************************************************************************
301 *
302 * DMAR - DMA Remapping table
303 * From "Intel Virtualization Technology for Directed I/O", Sept. 2007
304 *
305 ******************************************************************************/
306
307struct acpi_table_dmar {
308 struct acpi_table_header header; /* Common ACPI table header */
309 u8 width; /* Host Address Width */
310 u8 flags;
311 u8 reserved[10];
312};
313
314/* Flags */
315
316#define ACPI_DMAR_INTR_REMAP (1)
317
318/* DMAR subtable header */
319
320struct acpi_dmar_header {
321 u16 type;
322 u16 length;
323};
324
325/* Values for subtable type in struct acpi_dmar_header */
326
327enum acpi_dmar_type {
328 ACPI_DMAR_TYPE_HARDWARE_UNIT = 0,
329 ACPI_DMAR_TYPE_RESERVED_MEMORY = 1,
330 ACPI_DMAR_TYPE_ATSR = 2,
331 ACPI_DMAR_TYPE_RESERVED = 3 /* 3 and greater are reserved */
332};
333
334struct acpi_dmar_device_scope {
335 u8 entry_type;
336 u8 length;
337 u16 reserved;
338 u8 enumeration_id;
339 u8 bus;
340};
341
342/* Values for entry_type in struct acpi_dmar_device_scope */
343
344enum acpi_dmar_scope_type {
345 ACPI_DMAR_SCOPE_TYPE_NOT_USED = 0,
346 ACPI_DMAR_SCOPE_TYPE_ENDPOINT = 1,
347 ACPI_DMAR_SCOPE_TYPE_BRIDGE = 2,
348 ACPI_DMAR_SCOPE_TYPE_IOAPIC = 3,
349 ACPI_DMAR_SCOPE_TYPE_HPET = 4,
350 ACPI_DMAR_SCOPE_TYPE_RESERVED = 5 /* 5 and greater are reserved */
351};
352
353struct acpi_dmar_pci_path {
354 u8 dev;
355 u8 fn;
356};
357
358/*
359 * DMAR Sub-tables, correspond to Type in struct acpi_dmar_header
360 */
361
362/* 0: Hardware Unit Definition */
363
364struct acpi_dmar_hardware_unit {
365 struct acpi_dmar_header header;
366 u8 flags;
367 u8 reserved;
368 u16 segment;
369 u64 address; /* Register Base Address */
370};
371
372/* Flags */
373
374#define ACPI_DMAR_INCLUDE_ALL (1)
375
376/* 1: Reserved Memory Defininition */
377
378struct acpi_dmar_reserved_memory {
379 struct acpi_dmar_header header;
380 u16 reserved;
381 u16 segment;
382 u64 base_address; /* 4_k aligned base address */
383 u64 end_address; /* 4_k aligned limit address */
384};
385
386/* Flags */
387
388#define ACPI_DMAR_ALLOW_ALL (1)
389
390
391/* 2: Root Port ATS Capability Reporting Structure */
392
393struct acpi_dmar_atsr {
394 struct acpi_dmar_header header;
395 u8 flags;
396 u8 reserved;
397 u16 segment;
398};
399
400/* Flags */
401
402#define ACPI_DMAR_ALL_PORTS (1)
403
404/*******************************************************************************
405 *
406 * ECDT - Embedded Controller Boot Resources Table 181 * ECDT - Embedded Controller Boot Resources Table
182 * Version 1
407 * 183 *
408 ******************************************************************************/ 184 ******************************************************************************/
409 185
@@ -418,14 +194,16 @@ struct acpi_table_ecdt {
418 194
419/******************************************************************************* 195/*******************************************************************************
420 * 196 *
421 * EINJ - Error Injection Table 197 * EINJ - Error Injection Table (ACPI 4.0)
198 * Version 1
422 * 199 *
423 ******************************************************************************/ 200 ******************************************************************************/
424 201
425struct acpi_table_einj { 202struct acpi_table_einj {
426 struct acpi_table_header header; /* Common ACPI table header */ 203 struct acpi_table_header header; /* Common ACPI table header */
427 u32 header_length; 204 u32 header_length;
428 u32 reserved; 205 u8 flags;
206 u8 reserved[3];
429 u32 entries; 207 u32 entries;
430}; 208};
431 209
@@ -435,6 +213,10 @@ struct acpi_einj_entry {
435 struct acpi_whea_header whea_header; /* Common header for WHEA tables */ 213 struct acpi_whea_header whea_header; /* Common header for WHEA tables */
436}; 214};
437 215
216/* Masks for Flags field above */
217
218#define ACPI_EINJ_PRESERVE (1)
219
438/* Values for Action field above */ 220/* Values for Action field above */
439 221
440enum acpi_einj_actions { 222enum acpi_einj_actions {
@@ -470,9 +252,34 @@ struct acpi_einj_trigger {
470 u32 entry_count; 252 u32 entry_count;
471}; 253};
472 254
255/* Command status return values */
256
257enum acpi_einj_command_status {
258 ACPI_EINJ_SUCCESS = 0,
259 ACPI_EINJ_FAILURE = 1,
260 ACPI_EINJ_INVALID_ACCESS = 2,
261 ACPI_EINJ_STATUS_RESERVED = 3 /* 3 and greater are reserved */
262};
263
264/* Error types returned from ACPI_EINJ_GET_ERROR_TYPE (bitfield) */
265
266#define ACPI_EINJ_PROCESSOR_CORRECTABLE (1)
267#define ACPI_EINJ_PROCESSOR_UNCORRECTABLE (1<<1)
268#define ACPI_EINJ_PROCESSOR_FATAL (1<<2)
269#define ACPI_EINJ_MEMORY_CORRECTABLE (1<<3)
270#define ACPI_EINJ_MEMORY_UNCORRECTABLE (1<<4)
271#define ACPI_EINJ_MEMORY_FATAL (1<<5)
272#define ACPI_EINJ_PCIX_CORRECTABLE (1<<6)
273#define ACPI_EINJ_PCIX_UNCORRECTABLE (1<<7)
274#define ACPI_EINJ_PCIX_FATAL (1<<8)
275#define ACPI_EINJ_PLATFORM_CORRECTABLE (1<<9)
276#define ACPI_EINJ_PLATFORM_UNCORRECTABLE (1<<10)
277#define ACPI_EINJ_PLATFORM_FATAL (1<<11)
278
473/******************************************************************************* 279/*******************************************************************************
474 * 280 *
475 * ERST - Error Record Serialization Table 281 * ERST - Error Record Serialization Table (ACPI 4.0)
282 * Version 1
476 * 283 *
477 ******************************************************************************/ 284 ******************************************************************************/
478 285
@@ -489,19 +296,23 @@ struct acpi_erst_entry {
489 struct acpi_whea_header whea_header; /* Common header for WHEA tables */ 296 struct acpi_whea_header whea_header; /* Common header for WHEA tables */
490}; 297};
491 298
299/* Masks for Flags field above */
300
301#define ACPI_ERST_PRESERVE (1)
302
492/* Values for Action field above */ 303/* Values for Action field above */
493 304
494enum acpi_erst_actions { 305enum acpi_erst_actions {
495 ACPI_ERST_BEGIN_WRITE_OPERATION = 0, 306 ACPI_ERST_BEGIN_WRITE = 0,
496 ACPI_ERST_BEGIN_READ_OPERATION = 1, 307 ACPI_ERST_BEGIN_READ = 1,
497 ACPI_ERST_BETGIN_CLEAR_OPERATION = 2, 308 ACPI_ERST_BEGIN_CLEAR = 2,
498 ACPI_ERST_END_OPERATION = 3, 309 ACPI_ERST_END = 3,
499 ACPI_ERST_SET_RECORD_OFFSET = 4, 310 ACPI_ERST_SET_RECORD_OFFSET = 4,
500 ACPI_ERST_EXECUTE_OPERATION = 5, 311 ACPI_ERST_EXECUTE_OPERATION = 5,
501 ACPI_ERST_CHECK_BUSY_STATUS = 6, 312 ACPI_ERST_CHECK_BUSY_STATUS = 6,
502 ACPI_ERST_GET_COMMAND_STATUS = 7, 313 ACPI_ERST_GET_COMMAND_STATUS = 7,
503 ACPI_ERST_GET_RECORD_IDENTIFIER = 8, 314 ACPI_ERST_GET_RECORD_ID = 8,
504 ACPI_ERST_SET_RECORD_IDENTIFIER = 9, 315 ACPI_ERST_SET_RECORD_ID = 9,
505 ACPI_ERST_GET_RECORD_COUNT = 10, 316 ACPI_ERST_GET_RECORD_COUNT = 10,
506 ACPI_ERST_BEGIN_DUMMY_WRIITE = 11, 317 ACPI_ERST_BEGIN_DUMMY_WRIITE = 11,
507 ACPI_ERST_NOT_USED = 12, 318 ACPI_ERST_NOT_USED = 12,
@@ -536,9 +347,29 @@ enum acpi_erst_instructions {
536 ACPI_ERST_INSTRUCTION_RESERVED = 19 /* 19 and greater are reserved */ 347 ACPI_ERST_INSTRUCTION_RESERVED = 19 /* 19 and greater are reserved */
537}; 348};
538 349
350/* Command status return values */
351
352enum acpi_erst_command_status {
353 ACPI_ERST_SUCESS = 0,
354 ACPI_ERST_NO_SPACE = 1,
355 ACPI_ERST_NOT_AVAILABLE = 2,
356 ACPI_ERST_FAILURE = 3,
357 ACPI_ERST_RECORD_EMPTY = 4,
358 ACPI_ERST_NOT_FOUND = 5,
359 ACPI_ERST_STATUS_RESERVED = 6 /* 6 and greater are reserved */
360};
361
362/* Error Record Serialization Information */
363
364struct acpi_erst_info {
365 u16 signature; /* Should be "ER" */
366 u8 data[48];
367};
368
539/******************************************************************************* 369/*******************************************************************************
540 * 370 *
541 * HEST - Hardware Error Source Table 371 * HEST - Hardware Error Source Table (ACPI 4.0)
372 * Version 1
542 * 373 *
543 ******************************************************************************/ 374 ******************************************************************************/
544 375
@@ -551,85 +382,69 @@ struct acpi_table_hest {
551 382
552struct acpi_hest_header { 383struct acpi_hest_header {
553 u16 type; 384 u16 type;
385 u16 source_id;
554}; 386};
555 387
556/* Values for Type field above for subtables */ 388/* Values for Type field above for subtables */
557 389
558enum acpi_hest_types { 390enum acpi_hest_types {
559 ACPI_HEST_TYPE_XPF_MACHINE_CHECK = 0, 391 ACPI_HEST_TYPE_IA32_CHECK = 0,
560 ACPI_HEST_TYPE_XPF_CORRECTED_MACHINE_CHECK = 1, 392 ACPI_HEST_TYPE_IA32_CORRECTED_CHECK = 1,
561 ACPI_HEST_TYPE_XPF_UNUSED = 2, 393 ACPI_HEST_TYPE_IA32_NMI = 2,
562 ACPI_HEST_TYPE_XPF_NON_MASKABLE_INTERRUPT = 3, 394 ACPI_HEST_TYPE_NOT_USED3 = 3,
563 ACPI_HEST_TYPE_IPF_CORRECTED_MACHINE_CHECK = 4, 395 ACPI_HEST_TYPE_NOT_USED4 = 4,
564 ACPI_HEST_TYPE_IPF_CORRECTED_PLATFORM_ERROR = 5, 396 ACPI_HEST_TYPE_NOT_USED5 = 5,
565 ACPI_HEST_TYPE_AER_ROOT_PORT = 6, 397 ACPI_HEST_TYPE_AER_ROOT_PORT = 6,
566 ACPI_HEST_TYPE_AER_ENDPOINT = 7, 398 ACPI_HEST_TYPE_AER_ENDPOINT = 7,
567 ACPI_HEST_TYPE_AER_BRIDGE = 8, 399 ACPI_HEST_TYPE_AER_BRIDGE = 8,
568 ACPI_HEST_TYPE_GENERIC_HARDWARE_ERROR_SOURCE = 9, 400 ACPI_HEST_TYPE_GENERIC_ERROR = 9,
569 ACPI_HEST_TYPE_RESERVED = 10 /* 10 and greater are reserved */ 401 ACPI_HEST_TYPE_RESERVED = 10 /* 10 and greater are reserved */
570}; 402};
571 403
572/* 404/*
573 * HEST Sub-subtables 405 * HEST substructures contained in subtables
574 */ 406 */
575 407
576/* XPF Machine Check Error Bank */ 408/*
577 409 * IA32 Error Bank(s) - Follows the struct acpi_hest_ia_machine_check and
578struct acpi_hest_xpf_error_bank { 410 * struct acpi_hest_ia_corrected structures.
411 */
412struct acpi_hest_ia_error_bank {
579 u8 bank_number; 413 u8 bank_number;
580 u8 clear_status_on_init; 414 u8 clear_status_on_init;
581 u8 status_format; 415 u8 status_format;
582 u8 config_write_enable; 416 u8 reserved;
583 u32 control_register; 417 u32 control_register;
584 u64 control_init_data; 418 u64 control_data;
585 u32 status_register; 419 u32 status_register;
586 u32 address_register; 420 u32 address_register;
587 u32 misc_register; 421 u32 misc_register;
588}; 422};
589 423
590/* Generic Error Status */ 424/* Common HEST sub-structure for PCI/AER structures below (6,7,8) */
591
592struct acpi_hest_generic_status {
593 u32 block_status;
594 u32 raw_data_offset;
595 u32 raw_data_length;
596 u32 data_length;
597 u32 error_severity;
598};
599
600/* Generic Error Data */
601
602struct acpi_hest_generic_data {
603 u8 section_type[16];
604 u32 error_severity;
605 u16 revision;
606 u8 validation_bits;
607 u8 flags;
608 u32 error_data_length;
609 u8 fru_id[16];
610 u8 fru_text[20];
611};
612
613/* Common HEST structure for PCI/AER types below (6,7,8) */
614 425
615struct acpi_hest_aer_common { 426struct acpi_hest_aer_common {
616 u16 source_id; 427 u16 reserved1;
617 u16 config_write_enable;
618 u8 flags; 428 u8 flags;
619 u8 enabled; 429 u8 enabled;
620 u32 records_to_pre_allocate; 430 u32 records_to_preallocate;
621 u32 max_sections_per_record; 431 u32 max_sections_per_record;
622 u32 bus; 432 u32 bus;
623 u16 device; 433 u16 device;
624 u16 function; 434 u16 function;
625 u16 device_control; 435 u16 device_control;
626 u16 reserved; 436 u16 reserved2;
627 u32 uncorrectable_error_mask; 437 u32 uncorrectable_mask;
628 u32 uncorrectable_error_severity; 438 u32 uncorrectable_severity;
629 u32 correctable_error_mask; 439 u32 correctable_mask;
630 u32 advanced_error_capabilities; 440 u32 advanced_capabilities;
631}; 441};
632 442
443/* Masks for HEST Flags fields */
444
445#define ACPI_HEST_FIRMWARE_FIRST (1)
446#define ACPI_HEST_GLOBAL (1<<1)
447
633/* Hardware Error Notification */ 448/* Hardware Error Notification */
634 449
635struct acpi_hest_notify { 450struct acpi_hest_notify {
@@ -655,71 +470,59 @@ enum acpi_hest_notify_types {
655 ACPI_HEST_NOTIFY_RESERVED = 5 /* 5 and greater are reserved */ 470 ACPI_HEST_NOTIFY_RESERVED = 5 /* 5 and greater are reserved */
656}; 471};
657 472
473/* Values for config_write_enable bitfield above */
474
475#define ACPI_HEST_TYPE (1)
476#define ACPI_HEST_POLL_INTERVAL (1<<1)
477#define ACPI_HEST_POLL_THRESHOLD_VALUE (1<<2)
478#define ACPI_HEST_POLL_THRESHOLD_WINDOW (1<<3)
479#define ACPI_HEST_ERR_THRESHOLD_VALUE (1<<4)
480#define ACPI_HEST_ERR_THRESHOLD_WINDOW (1<<5)
481
658/* 482/*
659 * HEST subtables 483 * HEST subtables
660 *
661 * From WHEA Design Document, 16 May 2007.
662 * Note: There is no subtable type 2 in this version of the document,
663 * and there are two different subtable type 3s.
664 */ 484 */
665 485
666 /* 0: XPF Machine Check Exception */ 486/* 0: IA32 Machine Check Exception */
667 487
668struct acpi_hest_xpf_machine_check { 488struct acpi_hest_ia_machine_check {
669 struct acpi_hest_header header; 489 struct acpi_hest_header header;
670 u16 source_id; 490 u16 reserved1;
671 u16 config_write_enable;
672 u8 flags; 491 u8 flags;
673 u8 reserved1; 492 u8 enabled;
674 u32 records_to_pre_allocate; 493 u32 records_to_preallocate;
675 u32 max_sections_per_record; 494 u32 max_sections_per_record;
676 u64 global_capability_data; 495 u64 global_capability_data;
677 u64 global_control_data; 496 u64 global_control_data;
678 u8 num_hardware_banks; 497 u8 num_hardware_banks;
679 u8 reserved2[7]; 498 u8 reserved3[7];
680}; 499};
681 500
682/* 1: XPF Corrected Machine Check */ 501/* 1: IA32 Corrected Machine Check */
683 502
684struct acpi_table_hest_xpf_corrected { 503struct acpi_hest_ia_corrected {
685 struct acpi_hest_header header; 504 struct acpi_hest_header header;
686 u16 source_id; 505 u16 reserved1;
687 u16 config_write_enable;
688 u8 flags; 506 u8 flags;
689 u8 enabled; 507 u8 enabled;
690 u32 records_to_pre_allocate; 508 u32 records_to_preallocate;
691 u32 max_sections_per_record; 509 u32 max_sections_per_record;
692 struct acpi_hest_notify notify; 510 struct acpi_hest_notify notify;
693 u8 num_hardware_banks; 511 u8 num_hardware_banks;
694 u8 reserved[3]; 512 u8 reserved2[3];
695}; 513};
696 514
697/* 3: XPF Non-Maskable Interrupt */ 515/* 2: IA32 Non-Maskable Interrupt */
698 516
699struct acpi_hest_xpf_nmi { 517struct acpi_hest_ia_nmi {
700 struct acpi_hest_header header; 518 struct acpi_hest_header header;
701 u16 source_id;
702 u32 reserved; 519 u32 reserved;
703 u32 records_to_pre_allocate; 520 u32 records_to_preallocate;
704 u32 max_sections_per_record; 521 u32 max_sections_per_record;
705 u32 max_raw_data_length; 522 u32 max_raw_data_length;
706}; 523};
707 524
708/* 4: IPF Corrected Machine Check */ 525/* 3,4,5: Not used */
709
710struct acpi_hest_ipf_corrected {
711 struct acpi_hest_header header;
712 u8 enabled;
713 u8 reserved;
714};
715
716/* 5: IPF Corrected Platform Error */
717
718struct acpi_hest_ipf_corrected_platform {
719 struct acpi_hest_header header;
720 u8 enabled;
721 u8 reserved;
722};
723 526
724/* 6: PCI Express Root Port AER */ 527/* 6: PCI Express Root Port AER */
725 528
@@ -741,143 +544,61 @@ struct acpi_hest_aer {
741struct acpi_hest_aer_bridge { 544struct acpi_hest_aer_bridge {
742 struct acpi_hest_header header; 545 struct acpi_hest_header header;
743 struct acpi_hest_aer_common aer; 546 struct acpi_hest_aer_common aer;
744 u32 secondary_uncorrectable_error_mask; 547 u32 uncorrectable_mask2;
745 u32 secondary_uncorrectable_error_severity; 548 u32 uncorrectable_severity2;
746 u32 secondary_advanced_capabilities; 549 u32 advanced_capabilities2;
747}; 550};
748 551
749/* 9: Generic Hardware Error Source */ 552/* 9: Generic Hardware Error Source */
750 553
751struct acpi_hest_generic { 554struct acpi_hest_generic {
752 struct acpi_hest_header header; 555 struct acpi_hest_header header;
753 u16 source_id;
754 u16 related_source_id; 556 u16 related_source_id;
755 u8 config_write_enable; 557 u8 reserved;
756 u8 enabled; 558 u8 enabled;
757 u32 records_to_pre_allocate; 559 u32 records_to_preallocate;
758 u32 max_sections_per_record; 560 u32 max_sections_per_record;
759 u32 max_raw_data_length; 561 u32 max_raw_data_length;
760 struct acpi_generic_address error_status_address; 562 struct acpi_generic_address error_status_address;
761 struct acpi_hest_notify notify; 563 struct acpi_hest_notify notify;
762 u32 error_status_block_length; 564 u32 error_block_length;
763}; 565};
764 566
765/******************************************************************************* 567/* Generic Error Status block */
766 *
767 * HPET - High Precision Event Timer table
768 *
769 ******************************************************************************/
770 568
771struct acpi_table_hpet { 569struct acpi_hest_generic_status {
772 struct acpi_table_header header; /* Common ACPI table header */ 570 u32 block_status;
773 u32 id; /* Hardware ID of event timer block */ 571 u32 raw_data_offset;
774 struct acpi_generic_address address; /* Address of event timer block */ 572 u32 raw_data_length;
775 u8 sequence; /* HPET sequence number */ 573 u32 data_length;
776 u16 minimum_tick; /* Main counter min tick, periodic mode */ 574 u32 error_severity;
777 u8 flags;
778}; 575};
779 576
780/*! Flags */ 577/* Values for block_status flags above */
781 578
782#define ACPI_HPET_PAGE_PROTECT (1) /* 00: No page protection */ 579#define ACPI_HEST_UNCORRECTABLE (1)
783#define ACPI_HPET_PAGE_PROTECT_4 (1<<1) /* 01: 4KB page protected */ 580#define ACPI_HEST_CORRECTABLE (1<<1)
784#define ACPI_HPET_PAGE_PROTECT_64 (1<<2) /* 02: 64KB page protected */ 581#define ACPI_HEST_MULTIPLE_UNCORRECTABLE (1<<2)
582#define ACPI_HEST_MULTIPLE_CORRECTABLE (1<<3)
583#define ACPI_HEST_ERROR_ENTRY_COUNT (0xFF<<4) /* 8 bits, error count */
785 584
786/*! [End] no source code translation !*/ 585/* Generic Error Data entry */
787 586
788/******************************************************************************* 587struct acpi_hest_generic_data {
789 * 588 u8 section_type[16];
790 * IBFT - Boot Firmware Table 589 u32 error_severity;
791 * 590 u16 revision;
792 ******************************************************************************/ 591 u8 validation_bits;
793
794struct acpi_table_ibft {
795 struct acpi_table_header header; /* Common ACPI table header */
796 u8 reserved[12];
797};
798
799/* IBFT common subtable header */
800
801struct acpi_ibft_header {
802 u8 type;
803 u8 version;
804 u16 length;
805 u8 index;
806 u8 flags; 592 u8 flags;
807}; 593 u32 error_data_length;
808 594 u8 fru_id[16];
809/* Values for Type field above */ 595 u8 fru_text[20];
810
811enum acpi_ibft_type {
812 ACPI_IBFT_TYPE_NOT_USED = 0,
813 ACPI_IBFT_TYPE_CONTROL = 1,
814 ACPI_IBFT_TYPE_INITIATOR = 2,
815 ACPI_IBFT_TYPE_NIC = 3,
816 ACPI_IBFT_TYPE_TARGET = 4,
817 ACPI_IBFT_TYPE_EXTENSIONS = 5,
818 ACPI_IBFT_TYPE_RESERVED = 6 /* 6 and greater are reserved */
819};
820
821/* IBFT subtables */
822
823struct acpi_ibft_control {
824 struct acpi_ibft_header header;
825 u16 extensions;
826 u16 initiator_offset;
827 u16 nic0_offset;
828 u16 target0_offset;
829 u16 nic1_offset;
830 u16 target1_offset;
831};
832
833struct acpi_ibft_initiator {
834 struct acpi_ibft_header header;
835 u8 sns_server[16];
836 u8 slp_server[16];
837 u8 primary_server[16];
838 u8 secondary_server[16];
839 u16 name_length;
840 u16 name_offset;
841};
842
843struct acpi_ibft_nic {
844 struct acpi_ibft_header header;
845 u8 ip_address[16];
846 u8 subnet_mask_prefix;
847 u8 origin;
848 u8 gateway[16];
849 u8 primary_dns[16];
850 u8 secondary_dns[16];
851 u8 dhcp[16];
852 u16 vlan;
853 u8 mac_address[6];
854 u16 pci_address;
855 u16 name_length;
856 u16 name_offset;
857};
858
859struct acpi_ibft_target {
860 struct acpi_ibft_header header;
861 u8 target_ip_address[16];
862 u16 target_ip_socket;
863 u8 target_boot_lun[8];
864 u8 chap_type;
865 u8 nic_association;
866 u16 target_name_length;
867 u16 target_name_offset;
868 u16 chap_name_length;
869 u16 chap_name_offset;
870 u16 chap_secret_length;
871 u16 chap_secret_offset;
872 u16 reverse_chap_name_length;
873 u16 reverse_chap_name_offset;
874 u16 reverse_chap_secret_length;
875 u16 reverse_chap_secret_offset;
876}; 596};
877 597
878/******************************************************************************* 598/*******************************************************************************
879 * 599 *
880 * MADT - Multiple APIC Description Table 600 * MADT - Multiple APIC Description Table
601 * Version 3
881 * 602 *
882 ******************************************************************************/ 603 ******************************************************************************/
883 604
@@ -887,16 +608,16 @@ struct acpi_table_madt {
887 u32 flags; 608 u32 flags;
888}; 609};
889 610
890/* Flags */ 611/* Masks for Flags field above */
891 612
892#define ACPI_MADT_PCAT_COMPAT (1) /* 00: System also has dual 8259s */ 613#define ACPI_MADT_PCAT_COMPAT (1) /* 00: System also has dual 8259s */
893 614
894/* Values for PCATCompat flag */ 615/* Values for PCATCompat flag */
895 616
896#define ACPI_MADT_DUAL_PIC 0 617#define ACPI_MADT_DUAL_PIC 0
897#define ACPI_MADT_MULTIPLE_APIC 1 618#define ACPI_MADT_MULTIPLE_APIC 1
898 619
899/* Values for subtable type in struct acpi_subtable_header */ 620/* Values for MADT subtable type in struct acpi_subtable_header */
900 621
901enum acpi_madt_type { 622enum acpi_madt_type {
902 ACPI_MADT_TYPE_LOCAL_APIC = 0, 623 ACPI_MADT_TYPE_LOCAL_APIC = 0,
@@ -1007,11 +728,11 @@ struct acpi_madt_interrupt_source {
1007 u32 flags; /* Interrupt Source Flags */ 728 u32 flags; /* Interrupt Source Flags */
1008}; 729};
1009 730
1010/* Flags field above */ 731/* Masks for Flags field above */
1011 732
1012#define ACPI_MADT_CPEI_OVERRIDE (1) 733#define ACPI_MADT_CPEI_OVERRIDE (1)
1013 734
1014/* 9: Processor Local X2_APIC (07/2008) */ 735/* 9: Processor Local X2APIC (ACPI 4.0) */
1015 736
1016struct acpi_madt_local_x2apic { 737struct acpi_madt_local_x2apic {
1017 struct acpi_subtable_header header; 738 struct acpi_subtable_header header;
@@ -1021,7 +742,7 @@ struct acpi_madt_local_x2apic {
1021 u32 uid; /* ACPI processor UID */ 742 u32 uid; /* ACPI processor UID */
1022}; 743};
1023 744
1024/* 10: Local X2APIC NMI (07/2008) */ 745/* 10: Local X2APIC NMI (ACPI 4.0) */
1025 746
1026struct acpi_madt_local_x2apic_nmi { 747struct acpi_madt_local_x2apic_nmi {
1027 struct acpi_subtable_header header; 748 struct acpi_subtable_header header;
@@ -1058,28 +779,34 @@ struct acpi_madt_local_x2apic_nmi {
1058 779
1059/******************************************************************************* 780/*******************************************************************************
1060 * 781 *
1061 * MCFG - PCI Memory Mapped Configuration table and sub-table 782 * MSCT - Maximum System Characteristics Table (ACPI 4.0)
783 * Version 1
1062 * 784 *
1063 ******************************************************************************/ 785 ******************************************************************************/
1064 786
1065struct acpi_table_mcfg { 787struct acpi_table_msct {
1066 struct acpi_table_header header; /* Common ACPI table header */ 788 struct acpi_table_header header; /* Common ACPI table header */
1067 u8 reserved[8]; 789 u32 proximity_offset; /* Location of proximity info struct(s) */
790 u32 max_proximity_domains; /* Max number of proximity domains */
791 u32 max_clock_domains; /* Max number of clock domains */
792 u64 max_address; /* Max physical address in system */
1068}; 793};
1069 794
1070/* Subtable */ 795/* Subtable - Maximum Proximity Domain Information. Version 1 */
1071 796
1072struct acpi_mcfg_allocation { 797struct acpi_msct_proximity {
1073 u64 address; /* Base address, processor-relative */ 798 u8 revision;
1074 u16 pci_segment; /* PCI segment group number */ 799 u8 length;
1075 u8 start_bus_number; /* Starting PCI Bus number */ 800 u32 range_start; /* Start of domain range */
1076 u8 end_bus_number; /* Final PCI Bus number */ 801 u32 range_end; /* End of domain range */
1077 u32 reserved; 802 u32 processor_capacity;
803 u64 memory_capacity; /* In bytes */
1078}; 804};
1079 805
1080/******************************************************************************* 806/*******************************************************************************
1081 * 807 *
1082 * SBST - Smart Battery Specification Table 808 * SBST - Smart Battery Specification Table
809 * Version 1
1083 * 810 *
1084 ******************************************************************************/ 811 ******************************************************************************/
1085 812
@@ -1093,6 +820,7 @@ struct acpi_table_sbst {
1093/******************************************************************************* 820/*******************************************************************************
1094 * 821 *
1095 * SLIT - System Locality Distance Information Table 822 * SLIT - System Locality Distance Information Table
823 * Version 1
1096 * 824 *
1097 ******************************************************************************/ 825 ******************************************************************************/
1098 826
@@ -1104,60 +832,8 @@ struct acpi_table_slit {
1104 832
1105/******************************************************************************* 833/*******************************************************************************
1106 * 834 *
1107 * SPCR - Serial Port Console Redirection table
1108 *
1109 ******************************************************************************/
1110
1111struct acpi_table_spcr {
1112 struct acpi_table_header header; /* Common ACPI table header */
1113 u8 interface_type; /* 0=full 16550, 1=subset of 16550 */
1114 u8 reserved[3];
1115 struct acpi_generic_address serial_port;
1116 u8 interrupt_type;
1117 u8 pc_interrupt;
1118 u32 interrupt;
1119 u8 baud_rate;
1120 u8 parity;
1121 u8 stop_bits;
1122 u8 flow_control;
1123 u8 terminal_type;
1124 u8 reserved1;
1125 u16 pci_device_id;
1126 u16 pci_vendor_id;
1127 u8 pci_bus;
1128 u8 pci_device;
1129 u8 pci_function;
1130 u32 pci_flags;
1131 u8 pci_segment;
1132 u32 reserved2;
1133};
1134
1135/*******************************************************************************
1136 *
1137 * SPMI - Server Platform Management Interface table
1138 *
1139 ******************************************************************************/
1140
1141struct acpi_table_spmi {
1142 struct acpi_table_header header; /* Common ACPI table header */
1143 u8 reserved;
1144 u8 interface_type;
1145 u16 spec_revision; /* Version of IPMI */
1146 u8 interrupt_type;
1147 u8 gpe_number; /* GPE assigned */
1148 u8 reserved1;
1149 u8 pci_device_flag;
1150 u32 interrupt;
1151 struct acpi_generic_address ipmi_register;
1152 u8 pci_segment;
1153 u8 pci_bus;
1154 u8 pci_device;
1155 u8 pci_function;
1156};
1157
1158/*******************************************************************************
1159 *
1160 * SRAT - System Resource Affinity Table 835 * SRAT - System Resource Affinity Table
836 * Version 3
1161 * 837 *
1162 ******************************************************************************/ 838 ******************************************************************************/
1163 839
@@ -1192,6 +868,10 @@ struct acpi_srat_cpu_affinity {
1192 u32 reserved; /* Reserved, must be zero */ 868 u32 reserved; /* Reserved, must be zero */
1193}; 869};
1194 870
871/* Flags */
872
873#define ACPI_SRAT_CPU_USE_AFFINITY (1) /* 00: Use affinity structure */
874
1195/* 1: Memory Affinity */ 875/* 1: Memory Affinity */
1196 876
1197struct acpi_srat_mem_affinity { 877struct acpi_srat_mem_affinity {
@@ -1211,7 +891,7 @@ struct acpi_srat_mem_affinity {
1211#define ACPI_SRAT_MEM_HOT_PLUGGABLE (1<<1) /* 01: Memory region is hot pluggable */ 891#define ACPI_SRAT_MEM_HOT_PLUGGABLE (1<<1) /* 01: Memory region is hot pluggable */
1212#define ACPI_SRAT_MEM_NON_VOLATILE (1<<2) /* 02: Memory region is non-volatile */ 892#define ACPI_SRAT_MEM_NON_VOLATILE (1<<2) /* 02: Memory region is non-volatile */
1213 893
1214/* 2: Processor Local X2_APIC Affinity (07/2008) */ 894/* 2: Processor Local X2_APIC Affinity (ACPI 4.0) */
1215 895
1216struct acpi_srat_x2apic_cpu_affinity { 896struct acpi_srat_x2apic_cpu_affinity {
1217 struct acpi_subtable_header header; 897 struct acpi_subtable_header header;
@@ -1219,122 +899,14 @@ struct acpi_srat_x2apic_cpu_affinity {
1219 u32 proximity_domain; 899 u32 proximity_domain;
1220 u32 apic_id; 900 u32 apic_id;
1221 u32 flags; 901 u32 flags;
902 u32 clock_domain;
903 u32 reserved2;
1222}; 904};
1223 905
1224/* Flags for struct acpi_srat_cpu_affinity and struct acpi_srat_x2apic_cpu_affinity */ 906/* Flags for struct acpi_srat_cpu_affinity and struct acpi_srat_x2apic_cpu_affinity */
1225 907
1226#define ACPI_SRAT_CPU_ENABLED (1) /* 00: Use affinity structure */ 908#define ACPI_SRAT_CPU_ENABLED (1) /* 00: Use affinity structure */
1227 909
1228/*******************************************************************************
1229 *
1230 * TCPA - Trusted Computing Platform Alliance table
1231 *
1232 ******************************************************************************/
1233
1234struct acpi_table_tcpa {
1235 struct acpi_table_header header; /* Common ACPI table header */
1236 u16 reserved;
1237 u32 max_log_length; /* Maximum length for the event log area */
1238 u64 log_address; /* Address of the event log area */
1239};
1240
1241/*******************************************************************************
1242 *
1243 * UEFI - UEFI Boot optimization Table
1244 *
1245 ******************************************************************************/
1246
1247struct acpi_table_uefi {
1248 struct acpi_table_header header; /* Common ACPI table header */
1249 u8 identifier[16]; /* UUID identifier */
1250 u16 data_offset; /* Offset of remaining data in table */
1251 u8 data;
1252};
1253
1254/*******************************************************************************
1255 *
1256 * WDAT - Watchdog Action Table
1257 *
1258 ******************************************************************************/
1259
1260struct acpi_table_wdat {
1261 struct acpi_table_header header; /* Common ACPI table header */
1262 u32 header_length; /* Watchdog Header Length */
1263 u16 pci_segment; /* PCI Segment number */
1264 u8 pci_bus; /* PCI Bus number */
1265 u8 pci_device; /* PCI Device number */
1266 u8 pci_function; /* PCI Function number */
1267 u8 reserved[3];
1268 u32 timer_period; /* Period of one timer count (msec) */
1269 u32 max_count; /* Maximum counter value supported */
1270 u32 min_count; /* Minimum counter value */
1271 u8 flags;
1272 u8 reserved2[3];
1273 u32 entries; /* Number of watchdog entries that follow */
1274};
1275
1276/* WDAT Instruction Entries (actions) */
1277
1278struct acpi_wdat_entry {
1279 struct acpi_whea_header whea_header; /* Common header for WHEA tables */
1280};
1281
1282/* Values for Action field above */
1283
1284enum acpi_wdat_actions {
1285 ACPI_WDAT_RESET = 1,
1286 ACPI_WDAT_GET_CURRENT_COUNTDOWN = 4,
1287 ACPI_WDAT_GET_COUNTDOWN = 5,
1288 ACPI_WDAT_SET_COUNTDOWN = 6,
1289 ACPI_WDAT_GET_RUNNING_STATE = 8,
1290 ACPI_WDAT_SET_RUNNING_STATE = 9,
1291 ACPI_WDAT_GET_STOPPED_STATE = 10,
1292 ACPI_WDAT_SET_STOPPED_STATE = 11,
1293 ACPI_WDAT_GET_REBOOT = 16,
1294 ACPI_WDAT_SET_REBOOT = 17,
1295 ACPI_WDAT_GET_SHUTDOWN = 18,
1296 ACPI_WDAT_SET_SHUTDOWN = 19,
1297 ACPI_WDAT_GET_STATUS = 32,
1298 ACPI_WDAT_SET_STATUS = 33,
1299 ACPI_WDAT_ACTION_RESERVED = 34 /* 34 and greater are reserved */
1300};
1301
1302/* Values for Instruction field above */
1303
1304enum acpi_wdat_instructions {
1305 ACPI_WDAT_READ_VALUE = 0,
1306 ACPI_WDAT_READ_COUNTDOWN = 1,
1307 ACPI_WDAT_WRITE_VALUE = 2,
1308 ACPI_WDAT_WRITE_COUNTDOWN = 3,
1309 ACPI_WDAT_INSTRUCTION_RESERVED = 4, /* 4 and greater are reserved */
1310 ACPI_WDAT_PRESERVE_REGISTER = 0x80 /* Except for this value */
1311};
1312
1313/*******************************************************************************
1314 *
1315 * WDRT - Watchdog Resource Table
1316 *
1317 ******************************************************************************/
1318
1319struct acpi_table_wdrt {
1320 struct acpi_table_header header; /* Common ACPI table header */
1321 u32 header_length; /* Watchdog Header Length */
1322 u8 pci_segment; /* PCI Segment number */
1323 u8 pci_bus; /* PCI Bus number */
1324 u8 pci_device; /* PCI Device number */
1325 u8 pci_function; /* PCI Function number */
1326 u32 timer_period; /* Period of one timer count (msec) */
1327 u32 max_count; /* Maximum counter value supported */
1328 u32 min_count; /* Minimum counter value */
1329 u8 flags;
1330 u8 reserved[3];
1331 u32 entries; /* Number of watchdog entries that follow */
1332};
1333
1334/* Flags */
1335
1336#define ACPI_WDRT_TIMER_ENABLED (1) /* 00: Timer enabled */
1337
1338/* Reset to default packing */ 910/* Reset to default packing */
1339 911
1340#pragma pack() 912#pragma pack()
diff --git a/include/acpi/actbl2.h b/include/acpi/actbl2.h
new file mode 100644
index 000000000000..6f3dce9991e1
--- /dev/null
+++ b/include/acpi/actbl2.h
@@ -0,0 +1,868 @@
1#ifndef __ACTBL2_H__
2#define __ACTBL2_H__
3
4/*******************************************************************************
5 *
6 * Additional ACPI Tables (2)
7 *
8 * These tables are not consumed directly by the ACPICA subsystem, but are
9 * included here to support device drivers and the AML disassembler.
10 *
11 * The tables in this file are defined by third-party specifications, and are
12 * not defined directly by the ACPI specification itself.
13 *
14 ******************************************************************************/
15
16/*
17 * Values for description table header signatures for tables defined in this
18 * file. Useful because they make it more difficult to inadvertently type in
19 * the wrong signature.
20 */
21#define ACPI_SIG_ASF "ASF!" /* Alert Standard Format table */
22#define ACPI_SIG_BOOT "BOOT" /* Simple Boot Flag Table */
23#define ACPI_SIG_DBGP "DBGP" /* Debug Port table */
24#define ACPI_SIG_DMAR "DMAR" /* DMA Remapping table */
25#define ACPI_SIG_HPET "HPET" /* High Precision Event Timer table */
26#define ACPI_SIG_IBFT "IBFT" /* i_sCSI Boot Firmware Table */
27#define ACPI_SIG_IVRS "IVRS" /* I/O Virtualization Reporting Structure */
28#define ACPI_SIG_MCFG "MCFG" /* PCI Memory Mapped Configuration table */
29#define ACPI_SIG_SLIC "SLIC" /* Software Licensing Description Table */
30#define ACPI_SIG_SPCR "SPCR" /* Serial Port Console Redirection table */
31#define ACPI_SIG_SPMI "SPMI" /* Server Platform Management Interface table */
32#define ACPI_SIG_TCPA "TCPA" /* Trusted Computing Platform Alliance table */
33#define ACPI_SIG_UEFI "UEFI" /* Uefi Boot Optimization Table */
34#define ACPI_SIG_WAET "WAET" /* Windows ACPI Emulated devices Table */
35#define ACPI_SIG_WDAT "WDAT" /* Watchdog Action Table */
36#define ACPI_SIG_WDRT "WDRT" /* Watchdog Resource Table */
37
38/*
39 * All tables must be byte-packed to match the ACPI specification, since
40 * the tables are provided by the system BIOS.
41 */
42#pragma pack(1)
43
44/*
45 * Note about bitfields: The u8 type is used for bitfields in ACPI tables.
46 * This is the only type that is even remotely portable. Anything else is not
47 * portable, so do not use any other bitfield types.
48 */
49
50/*******************************************************************************
51 *
52 * ASF - Alert Standard Format table (Signature "ASF!")
53 * Revision 0x10
54 *
55 * Conforms to the Alert Standard Format Specification V2.0, 23 April 2003
56 *
57 ******************************************************************************/
58
59struct acpi_table_asf {
60 struct acpi_table_header header; /* Common ACPI table header */
61};
62
63/* ASF subtable header */
64
65struct acpi_asf_header {
66 u8 type;
67 u8 reserved;
68 u16 length;
69};
70
71/* Values for Type field above */
72
73enum acpi_asf_type {
74 ACPI_ASF_TYPE_INFO = 0,
75 ACPI_ASF_TYPE_ALERT = 1,
76 ACPI_ASF_TYPE_CONTROL = 2,
77 ACPI_ASF_TYPE_BOOT = 3,
78 ACPI_ASF_TYPE_ADDRESS = 4,
79 ACPI_ASF_TYPE_RESERVED = 5
80};
81
82/*
83 * ASF subtables
84 */
85
86/* 0: ASF Information */
87
88struct acpi_asf_info {
89 struct acpi_asf_header header;
90 u8 min_reset_value;
91 u8 min_poll_interval;
92 u16 system_id;
93 u32 mfg_id;
94 u8 flags;
95 u8 reserved2[3];
96};
97
98/* Masks for Flags field above */
99
100#define ACPI_ASF_SMBUS_PROTOCOLS (1)
101
102/* 1: ASF Alerts */
103
104struct acpi_asf_alert {
105 struct acpi_asf_header header;
106 u8 assert_mask;
107 u8 deassert_mask;
108 u8 alerts;
109 u8 data_length;
110};
111
112struct acpi_asf_alert_data {
113 u8 address;
114 u8 command;
115 u8 mask;
116 u8 value;
117 u8 sensor_type;
118 u8 type;
119 u8 offset;
120 u8 source_type;
121 u8 severity;
122 u8 sensor_number;
123 u8 entity;
124 u8 instance;
125};
126
127/* 2: ASF Remote Control */
128
129struct acpi_asf_remote {
130 struct acpi_asf_header header;
131 u8 controls;
132 u8 data_length;
133 u16 reserved2;
134};
135
136struct acpi_asf_control_data {
137 u8 function;
138 u8 address;
139 u8 command;
140 u8 value;
141};
142
143/* 3: ASF RMCP Boot Options */
144
145struct acpi_asf_rmcp {
146 struct acpi_asf_header header;
147 u8 capabilities[7];
148 u8 completion_code;
149 u32 enterprise_id;
150 u8 command;
151 u16 parameter;
152 u16 boot_options;
153 u16 oem_parameters;
154};
155
156/* 4: ASF Address */
157
158struct acpi_asf_address {
159 struct acpi_asf_header header;
160 u8 eprom_address;
161 u8 devices;
162};
163
164/*******************************************************************************
165 *
166 * BOOT - Simple Boot Flag Table
167 * Version 1
168 *
169 * Conforms to the "Simple Boot Flag Specification", Version 2.1
170 *
171 ******************************************************************************/
172
173struct acpi_table_boot {
174 struct acpi_table_header header; /* Common ACPI table header */
175 u8 cmos_index; /* Index in CMOS RAM for the boot register */
176 u8 reserved[3];
177};
178
179/*******************************************************************************
180 *
181 * DBGP - Debug Port table
182 * Version 1
183 *
184 * Conforms to the "Debug Port Specification", Version 1.00, 2/9/2000
185 *
186 ******************************************************************************/
187
188struct acpi_table_dbgp {
189 struct acpi_table_header header; /* Common ACPI table header */
190 u8 type; /* 0=full 16550, 1=subset of 16550 */
191 u8 reserved[3];
192 struct acpi_generic_address debug_port;
193};
194
195/*******************************************************************************
196 *
197 * DMAR - DMA Remapping table
198 * Version 1
199 *
200 * Conforms to "Intel Virtualization Technology for Directed I/O",
201 * Version 1.2, Sept. 2008
202 *
203 ******************************************************************************/
204
205struct acpi_table_dmar {
206 struct acpi_table_header header; /* Common ACPI table header */
207 u8 width; /* Host Address Width */
208 u8 flags;
209 u8 reserved[10];
210};
211
212/* Masks for Flags field above */
213
214#define ACPI_DMAR_INTR_REMAP (1)
215
216/* DMAR subtable header */
217
218struct acpi_dmar_header {
219 u16 type;
220 u16 length;
221};
222
223/* Values for subtable type in struct acpi_dmar_header */
224
225enum acpi_dmar_type {
226 ACPI_DMAR_TYPE_HARDWARE_UNIT = 0,
227 ACPI_DMAR_TYPE_RESERVED_MEMORY = 1,
228 ACPI_DMAR_TYPE_ATSR = 2,
229 ACPI_DMAR_HARDWARE_AFFINITY = 3,
230 ACPI_DMAR_TYPE_RESERVED = 4 /* 4 and greater are reserved */
231};
232
233/* DMAR Device Scope structure */
234
235struct acpi_dmar_device_scope {
236 u8 entry_type;
237 u8 length;
238 u16 reserved;
239 u8 enumeration_id;
240 u8 bus;
241};
242
243/* Values for entry_type in struct acpi_dmar_device_scope */
244
245enum acpi_dmar_scope_type {
246 ACPI_DMAR_SCOPE_TYPE_NOT_USED = 0,
247 ACPI_DMAR_SCOPE_TYPE_ENDPOINT = 1,
248 ACPI_DMAR_SCOPE_TYPE_BRIDGE = 2,
249 ACPI_DMAR_SCOPE_TYPE_IOAPIC = 3,
250 ACPI_DMAR_SCOPE_TYPE_HPET = 4,
251 ACPI_DMAR_SCOPE_TYPE_RESERVED = 5 /* 5 and greater are reserved */
252};
253
254struct acpi_dmar_pci_path {
255 u8 dev;
256 u8 fn;
257};
258
259/*
260 * DMAR Sub-tables, correspond to Type in struct acpi_dmar_header
261 */
262
263/* 0: Hardware Unit Definition */
264
265struct acpi_dmar_hardware_unit {
266 struct acpi_dmar_header header;
267 u8 flags;
268 u8 reserved;
269 u16 segment;
270 u64 address; /* Register Base Address */
271};
272
273/* Masks for Flags field above */
274
275#define ACPI_DMAR_INCLUDE_ALL (1)
276
277/* 1: Reserved Memory Defininition */
278
279struct acpi_dmar_reserved_memory {
280 struct acpi_dmar_header header;
281 u16 reserved;
282 u16 segment;
283 u64 base_address; /* 4_k aligned base address */
284 u64 end_address; /* 4_k aligned limit address */
285};
286
287/* Masks for Flags field above */
288
289#define ACPI_DMAR_ALLOW_ALL (1)
290
291/* 2: Root Port ATS Capability Reporting Structure */
292
293struct acpi_dmar_atsr {
294 struct acpi_dmar_header header;
295 u8 flags;
296 u8 reserved;
297 u16 segment;
298};
299
300/* Masks for Flags field above */
301
302#define ACPI_DMAR_ALL_PORTS (1)
303
304/* 3: Remapping Hardware Static Affinity Structure */
305
306struct acpi_dmar_rhsa {
307 struct acpi_dmar_header header;
308 u32 reserved;
309 u64 base_address;
310 u32 proximity_domain;
311};
312
313/*******************************************************************************
314 *
315 * HPET - High Precision Event Timer table
316 * Version 1
317 *
318 * Conforms to "IA-PC HPET (High Precision Event Timers) Specification",
319 * Version 1.0a, October 2004
320 *
321 ******************************************************************************/
322
323struct acpi_table_hpet {
324 struct acpi_table_header header; /* Common ACPI table header */
325 u32 id; /* Hardware ID of event timer block */
326 struct acpi_generic_address address; /* Address of event timer block */
327 u8 sequence; /* HPET sequence number */
328 u16 minimum_tick; /* Main counter min tick, periodic mode */
329 u8 flags;
330};
331
332/* Masks for Flags field above */
333
334#define ACPI_HPET_PAGE_PROTECT_MASK (3)
335
336/* Values for Page Protect flags */
337
338enum acpi_hpet_page_protect {
339 ACPI_HPET_NO_PAGE_PROTECT = 0,
340 ACPI_HPET_PAGE_PROTECT4 = 1,
341 ACPI_HPET_PAGE_PROTECT64 = 2
342};
343
344/*******************************************************************************
345 *
346 * IBFT - Boot Firmware Table
347 * Version 1
348 *
349 * Conforms to "iSCSI Boot Firmware Table (iBFT) as Defined in ACPI 3.0b
350 * Specification", Version 1.01, March 1, 2007
351 *
352 * Note: It appears that this table is not intended to appear in the RSDT/XSDT.
353 * Therefore, it is not currently supported by the disassembler.
354 *
355 ******************************************************************************/
356
357struct acpi_table_ibft {
358 struct acpi_table_header header; /* Common ACPI table header */
359 u8 reserved[12];
360};
361
362/* IBFT common subtable header */
363
364struct acpi_ibft_header {
365 u8 type;
366 u8 version;
367 u16 length;
368 u8 index;
369 u8 flags;
370};
371
372/* Values for Type field above */
373
374enum acpi_ibft_type {
375 ACPI_IBFT_TYPE_NOT_USED = 0,
376 ACPI_IBFT_TYPE_CONTROL = 1,
377 ACPI_IBFT_TYPE_INITIATOR = 2,
378 ACPI_IBFT_TYPE_NIC = 3,
379 ACPI_IBFT_TYPE_TARGET = 4,
380 ACPI_IBFT_TYPE_EXTENSIONS = 5,
381 ACPI_IBFT_TYPE_RESERVED = 6 /* 6 and greater are reserved */
382};
383
384/* IBFT subtables */
385
386struct acpi_ibft_control {
387 struct acpi_ibft_header header;
388 u16 extensions;
389 u16 initiator_offset;
390 u16 nic0_offset;
391 u16 target0_offset;
392 u16 nic1_offset;
393 u16 target1_offset;
394};
395
396struct acpi_ibft_initiator {
397 struct acpi_ibft_header header;
398 u8 sns_server[16];
399 u8 slp_server[16];
400 u8 primary_server[16];
401 u8 secondary_server[16];
402 u16 name_length;
403 u16 name_offset;
404};
405
406struct acpi_ibft_nic {
407 struct acpi_ibft_header header;
408 u8 ip_address[16];
409 u8 subnet_mask_prefix;
410 u8 origin;
411 u8 gateway[16];
412 u8 primary_dns[16];
413 u8 secondary_dns[16];
414 u8 dhcp[16];
415 u16 vlan;
416 u8 mac_address[6];
417 u16 pci_address;
418 u16 name_length;
419 u16 name_offset;
420};
421
422struct acpi_ibft_target {
423 struct acpi_ibft_header header;
424 u8 target_ip_address[16];
425 u16 target_ip_socket;
426 u8 target_boot_lun[8];
427 u8 chap_type;
428 u8 nic_association;
429 u16 target_name_length;
430 u16 target_name_offset;
431 u16 chap_name_length;
432 u16 chap_name_offset;
433 u16 chap_secret_length;
434 u16 chap_secret_offset;
435 u16 reverse_chap_name_length;
436 u16 reverse_chap_name_offset;
437 u16 reverse_chap_secret_length;
438 u16 reverse_chap_secret_offset;
439};
440
441/*******************************************************************************
442 *
443 * IVRS - I/O Virtualization Reporting Structure
444 * Version 1
445 *
446 * Conforms to "AMD I/O Virtualization Technology (IOMMU) Specification",
447 * Revision 1.26, February 2009.
448 *
449 ******************************************************************************/
450
451struct acpi_table_ivrs {
452 struct acpi_table_header header; /* Common ACPI table header */
453 u32 info; /* Common virtualization info */
454 u64 reserved;
455};
456
457/* Values for Info field above */
458
459#define ACPI_IVRS_PHYSICAL_SIZE 0x00007F00 /* 7 bits, physical address size */
460#define ACPI_IVRS_VIRTUAL_SIZE 0x003F8000 /* 7 bits, virtual address size */
461#define ACPI_IVRS_ATS_RESERVED 0x00400000 /* ATS address translation range reserved */
462
463/* IVRS subtable header */
464
465struct acpi_ivrs_header {
466 u8 type; /* Subtable type */
467 u8 flags;
468 u16 length; /* Subtable length */
469 u16 device_id; /* ID of IOMMU */
470};
471
472/* Values for subtable Type above */
473
474enum acpi_ivrs_type {
475 ACPI_IVRS_TYPE_HARDWARE = 0x10,
476 ACPI_IVRS_TYPE_MEMORY1 = 0x20,
477 ACPI_IVRS_TYPE_MEMORY2 = 0x21,
478 ACPI_IVRS_TYPE_MEMORY3 = 0x22
479};
480
481/* Masks for Flags field above for IVHD subtable */
482
483#define ACPI_IVHD_TT_ENABLE (1)
484#define ACPI_IVHD_PASS_PW (1<<1)
485#define ACPI_IVHD_RES_PASS_PW (1<<2)
486#define ACPI_IVHD_ISOC (1<<3)
487#define ACPI_IVHD_IOTLB (1<<4)
488
489/* Masks for Flags field above for IVMD subtable */
490
491#define ACPI_IVMD_UNITY (1)
492#define ACPI_IVMD_READ (1<<1)
493#define ACPI_IVMD_WRITE (1<<2)
494#define ACPI_IVMD_EXCLUSION_RANGE (1<<3)
495
496/*
497 * IVRS subtables, correspond to Type in struct acpi_ivrs_header
498 */
499
500/* 0x10: I/O Virtualization Hardware Definition Block (IVHD) */
501
502struct acpi_ivrs_hardware {
503 struct acpi_ivrs_header header;
504 u16 capability_offset; /* Offset for IOMMU control fields */
505 u64 base_address; /* IOMMU control registers */
506 u16 pci_segment_group;
507 u16 info; /* MSI number and unit ID */
508 u32 reserved;
509};
510
511/* Masks for Info field above */
512
513#define ACPI_IVHD_MSI_NUMBER_MASK 0x001F /* 5 bits, MSI message number */
514#define ACPI_IVHD_UNIT_ID_MASK 0x1F00 /* 5 bits, unit_iD */
515
516/*
517 * Device Entries for IVHD subtable, appear after struct acpi_ivrs_hardware structure.
518 * Upper two bits of the Type field are the (encoded) length of the structure.
519 * Currently, only 4 and 8 byte entries are defined. 16 and 32 byte entries
520 * are reserved for future use but not defined.
521 */
522struct acpi_ivrs_de_header {
523 u8 type;
524 u16 id;
525 u8 data_setting;
526};
527
528/* Length of device entry is in the top two bits of Type field above */
529
530#define ACPI_IVHD_ENTRY_LENGTH 0xC0
531
532/* Values for device entry Type field above */
533
534enum acpi_ivrs_device_entry_type {
535 /* 4-byte device entries, all use struct acpi_ivrs_device4 */
536
537 ACPI_IVRS_TYPE_PAD4 = 0,
538 ACPI_IVRS_TYPE_ALL = 1,
539 ACPI_IVRS_TYPE_SELECT = 2,
540 ACPI_IVRS_TYPE_START = 3,
541 ACPI_IVRS_TYPE_END = 4,
542
543 /* 8-byte device entries */
544
545 ACPI_IVRS_TYPE_PAD8 = 64,
546 ACPI_IVRS_TYPE_NOT_USED = 65,
547 ACPI_IVRS_TYPE_ALIAS_SELECT = 66, /* Uses struct acpi_ivrs_device8a */
548 ACPI_IVRS_TYPE_ALIAS_START = 67, /* Uses struct acpi_ivrs_device8a */
549 ACPI_IVRS_TYPE_EXT_SELECT = 70, /* Uses struct acpi_ivrs_device8b */
550 ACPI_IVRS_TYPE_EXT_START = 71, /* Uses struct acpi_ivrs_device8b */
551 ACPI_IVRS_TYPE_SPECIAL = 72 /* Uses struct acpi_ivrs_device8c */
552};
553
554/* Values for Data field above */
555
556#define ACPI_IVHD_INIT_PASS (1)
557#define ACPI_IVHD_EINT_PASS (1<<1)
558#define ACPI_IVHD_NMI_PASS (1<<2)
559#define ACPI_IVHD_SYSTEM_MGMT (3<<4)
560#define ACPI_IVHD_LINT0_PASS (1<<6)
561#define ACPI_IVHD_LINT1_PASS (1<<7)
562
563/* Types 0-4: 4-byte device entry */
564
565struct acpi_ivrs_device4 {
566 struct acpi_ivrs_de_header header;
567};
568
569/* Types 66-67: 8-byte device entry */
570
571struct acpi_ivrs_device8a {
572 struct acpi_ivrs_de_header header;
573 u8 reserved1;
574 u16 used_id;
575 u8 reserved2;
576};
577
578/* Types 70-71: 8-byte device entry */
579
580struct acpi_ivrs_device8b {
581 struct acpi_ivrs_de_header header;
582 u32 extended_data;
583};
584
585/* Values for extended_data above */
586
587#define ACPI_IVHD_ATS_DISABLED (1<<31)
588
589/* Type 72: 8-byte device entry */
590
591struct acpi_ivrs_device8c {
592 struct acpi_ivrs_de_header header;
593 u8 handle;
594 u16 used_id;
595 u8 variety;
596};
597
598/* Values for Variety field above */
599
600#define ACPI_IVHD_IOAPIC 1
601#define ACPI_IVHD_HPET 2
602
603/* 0x20, 0x21, 0x22: I/O Virtualization Memory Definition Block (IVMD) */
604
605struct acpi_ivrs_memory {
606 struct acpi_ivrs_header header;
607 u16 aux_data;
608 u64 reserved;
609 u64 start_address;
610 u64 memory_length;
611};
612
613/*******************************************************************************
614 *
615 * MCFG - PCI Memory Mapped Configuration table and sub-table
616 * Version 1
617 *
618 * Conforms to "PCI Firmware Specification", Revision 3.0, June 20, 2005
619 *
620 ******************************************************************************/
621
622struct acpi_table_mcfg {
623 struct acpi_table_header header; /* Common ACPI table header */
624 u8 reserved[8];
625};
626
627/* Subtable */
628
629struct acpi_mcfg_allocation {
630 u64 address; /* Base address, processor-relative */
631 u16 pci_segment; /* PCI segment group number */
632 u8 start_bus_number; /* Starting PCI Bus number */
633 u8 end_bus_number; /* Final PCI Bus number */
634 u32 reserved;
635};
636
637/*******************************************************************************
638 *
639 * SPCR - Serial Port Console Redirection table
640 * Version 1
641 *
642 * Conforms to "Serial Port Console Redirection Table",
643 * Version 1.00, January 11, 2002
644 *
645 ******************************************************************************/
646
647struct acpi_table_spcr {
648 struct acpi_table_header header; /* Common ACPI table header */
649 u8 interface_type; /* 0=full 16550, 1=subset of 16550 */
650 u8 reserved[3];
651 struct acpi_generic_address serial_port;
652 u8 interrupt_type;
653 u8 pc_interrupt;
654 u32 interrupt;
655 u8 baud_rate;
656 u8 parity;
657 u8 stop_bits;
658 u8 flow_control;
659 u8 terminal_type;
660 u8 reserved1;
661 u16 pci_device_id;
662 u16 pci_vendor_id;
663 u8 pci_bus;
664 u8 pci_device;
665 u8 pci_function;
666 u32 pci_flags;
667 u8 pci_segment;
668 u32 reserved2;
669};
670
671/* Masks for pci_flags field above */
672
673#define ACPI_SPCR_DO_NOT_DISABLE (1)
674
675/*******************************************************************************
676 *
677 * SPMI - Server Platform Management Interface table
678 * Version 5
679 *
680 * Conforms to "Intelligent Platform Management Interface Specification
681 * Second Generation v2.0", Document Revision 1.0, February 12, 2004 with
682 * June 12, 2009 markup.
683 *
684 ******************************************************************************/
685
686struct acpi_table_spmi {
687 struct acpi_table_header header; /* Common ACPI table header */
688 u8 interface_type;
689 u8 reserved; /* Must be 1 */
690 u16 spec_revision; /* Version of IPMI */
691 u8 interrupt_type;
692 u8 gpe_number; /* GPE assigned */
693 u8 reserved1;
694 u8 pci_device_flag;
695 u32 interrupt;
696 struct acpi_generic_address ipmi_register;
697 u8 pci_segment;
698 u8 pci_bus;
699 u8 pci_device;
700 u8 pci_function;
701 u8 reserved2;
702};
703
704/* Values for interface_type above */
705
706enum acpi_spmi_interface_types {
707 ACPI_SPMI_NOT_USED = 0,
708 ACPI_SPMI_KEYBOARD = 1,
709 ACPI_SPMI_SMI = 2,
710 ACPI_SPMI_BLOCK_TRANSFER = 3,
711 ACPI_SPMI_SMBUS = 4,
712 ACPI_SPMI_RESERVED = 5 /* 5 and above are reserved */
713};
714
715/*******************************************************************************
716 *
717 * TCPA - Trusted Computing Platform Alliance table
718 * Version 1
719 *
720 * Conforms to "TCG PC Specific Implementation Specification",
721 * Version 1.1, August 18, 2003
722 *
723 ******************************************************************************/
724
725struct acpi_table_tcpa {
726 struct acpi_table_header header; /* Common ACPI table header */
727 u16 reserved;
728 u32 max_log_length; /* Maximum length for the event log area */
729 u64 log_address; /* Address of the event log area */
730};
731
732/*******************************************************************************
733 *
734 * UEFI - UEFI Boot optimization Table
735 * Version 1
736 *
737 * Conforms to "Unified Extensible Firmware Interface Specification",
738 * Version 2.3, May 8, 2009
739 *
740 ******************************************************************************/
741
742struct acpi_table_uefi {
743 struct acpi_table_header header; /* Common ACPI table header */
744 u8 identifier[16]; /* UUID identifier */
745 u16 data_offset; /* Offset of remaining data in table */
746};
747
748/*******************************************************************************
749 *
750 * WAET - Windows ACPI Emulated devices Table
751 * Version 1
752 *
753 * Conforms to "Windows ACPI Emulated Devices Table", version 1.0, April 6, 2009
754 *
755 ******************************************************************************/
756
757struct acpi_table_waet {
758 struct acpi_table_header header; /* Common ACPI table header */
759 u32 flags;
760};
761
762/* Masks for Flags field above */
763
764#define ACPI_WAET_RTC_NO_ACK (1) /* RTC requires no int acknowledge */
765#define ACPI_WAET_TIMER_ONE_READ (1<<1) /* PM timer requires only one read */
766
767/*******************************************************************************
768 *
769 * WDAT - Watchdog Action Table
770 * Version 1
771 *
772 * Conforms to "Hardware Watchdog Timers Design Specification",
773 * Copyright 2006 Microsoft Corporation.
774 *
775 ******************************************************************************/
776
777struct acpi_table_wdat {
778 struct acpi_table_header header; /* Common ACPI table header */
779 u32 header_length; /* Watchdog Header Length */
780 u16 pci_segment; /* PCI Segment number */
781 u8 pci_bus; /* PCI Bus number */
782 u8 pci_device; /* PCI Device number */
783 u8 pci_function; /* PCI Function number */
784 u8 reserved[3];
785 u32 timer_period; /* Period of one timer count (msec) */
786 u32 max_count; /* Maximum counter value supported */
787 u32 min_count; /* Minimum counter value */
788 u8 flags;
789 u8 reserved2[3];
790 u32 entries; /* Number of watchdog entries that follow */
791};
792
793/* Masks for Flags field above */
794
795#define ACPI_WDAT_ENABLED (1)
796#define ACPI_WDAT_STOPPED 0x80
797
798/* WDAT Instruction Entries (actions) */
799
800struct acpi_wdat_entry {
801 u8 action;
802 u8 instruction;
803 u16 reserved;
804 struct acpi_generic_address register_region;
805 u32 value; /* Value used with Read/Write register */
806 u32 mask; /* Bitmask required for this register instruction */
807};
808
809/* Values for Action field above */
810
811enum acpi_wdat_actions {
812 ACPI_WDAT_RESET = 1,
813 ACPI_WDAT_GET_CURRENT_COUNTDOWN = 4,
814 ACPI_WDAT_GET_COUNTDOWN = 5,
815 ACPI_WDAT_SET_COUNTDOWN = 6,
816 ACPI_WDAT_GET_RUNNING_STATE = 8,
817 ACPI_WDAT_SET_RUNNING_STATE = 9,
818 ACPI_WDAT_GET_STOPPED_STATE = 10,
819 ACPI_WDAT_SET_STOPPED_STATE = 11,
820 ACPI_WDAT_GET_REBOOT = 16,
821 ACPI_WDAT_SET_REBOOT = 17,
822 ACPI_WDAT_GET_SHUTDOWN = 18,
823 ACPI_WDAT_SET_SHUTDOWN = 19,
824 ACPI_WDAT_GET_STATUS = 32,
825 ACPI_WDAT_SET_STATUS = 33,
826 ACPI_WDAT_ACTION_RESERVED = 34 /* 34 and greater are reserved */
827};
828
829/* Values for Instruction field above */
830
831enum acpi_wdat_instructions {
832 ACPI_WDAT_READ_VALUE = 0,
833 ACPI_WDAT_READ_COUNTDOWN = 1,
834 ACPI_WDAT_WRITE_VALUE = 2,
835 ACPI_WDAT_WRITE_COUNTDOWN = 3,
836 ACPI_WDAT_INSTRUCTION_RESERVED = 4, /* 4 and greater are reserved */
837 ACPI_WDAT_PRESERVE_REGISTER = 0x80 /* Except for this value */
838};
839
840/*******************************************************************************
841 *
842 * WDRT - Watchdog Resource Table
843 * Version 1
844 *
845 * Conforms to "Watchdog Timer Hardware Requirements for Windows Server 2003",
846 * Version 1.01, August 28, 2006
847 *
848 ******************************************************************************/
849
850struct acpi_table_wdrt {
851 struct acpi_table_header header; /* Common ACPI table header */
852 struct acpi_generic_address control_register;
853 struct acpi_generic_address count_register;
854 u16 pci_device_id;
855 u16 pci_vendor_id;
856 u8 pci_bus; /* PCI Bus number */
857 u8 pci_device; /* PCI Device number */
858 u8 pci_function; /* PCI Function number */
859 u8 pci_segment; /* PCI Segment number */
860 u16 max_count; /* Maximum counter value supported */
861 u8 units;
862};
863
864/* Reset to default packing */
865
866#pragma pack()
867
868#endif /* __ACTBL2_H__ */
diff --git a/include/acpi/actypes.h b/include/acpi/actypes.h
index 8052236d1a3d..153f12dc3373 100644
--- a/include/acpi/actypes.h
+++ b/include/acpi/actypes.h
@@ -338,7 +338,7 @@ typedef u32 acpi_physical_address;
338 338
339/* PM Timer ticks per second (HZ) */ 339/* PM Timer ticks per second (HZ) */
340 340
341#define PM_TIMER_FREQUENCY 3579545 341#define PM_TIMER_FREQUENCY 3579545
342 342
343/******************************************************************************* 343/*******************************************************************************
344 * 344 *
@@ -732,7 +732,8 @@ typedef u8 acpi_adr_space_type;
732#define ACPI_ADR_SPACE_SMBUS (acpi_adr_space_type) 4 732#define ACPI_ADR_SPACE_SMBUS (acpi_adr_space_type) 4
733#define ACPI_ADR_SPACE_CMOS (acpi_adr_space_type) 5 733#define ACPI_ADR_SPACE_CMOS (acpi_adr_space_type) 5
734#define ACPI_ADR_SPACE_PCI_BAR_TARGET (acpi_adr_space_type) 6 734#define ACPI_ADR_SPACE_PCI_BAR_TARGET (acpi_adr_space_type) 6
735#define ACPI_ADR_SPACE_DATA_TABLE (acpi_adr_space_type) 7 735#define ACPI_ADR_SPACE_IPMI (acpi_adr_space_type) 7
736#define ACPI_ADR_SPACE_DATA_TABLE (acpi_adr_space_type) 8
736#define ACPI_ADR_SPACE_FIXED_HARDWARE (acpi_adr_space_type) 127 737#define ACPI_ADR_SPACE_FIXED_HARDWARE (acpi_adr_space_type) 127
737 738
738/* 739/*
@@ -921,7 +922,7 @@ typedef
921void (*acpi_notify_handler) (acpi_handle device, u32 value, void *context); 922void (*acpi_notify_handler) (acpi_handle device, u32 value, void *context);
922 923
923typedef 924typedef
924void (*acpi_object_handler) (acpi_handle object, u32 function, void *data); 925void (*acpi_object_handler) (acpi_handle object, void *data);
925 926
926typedef acpi_status(*acpi_init_handler) (acpi_handle object, u32 function); 927typedef acpi_status(*acpi_init_handler) (acpi_handle object, u32 function);
927 928
@@ -969,38 +970,60 @@ acpi_status(*acpi_walk_callback) (acpi_handle obj_handle,
969#define ACPI_INTERRUPT_NOT_HANDLED 0x00 970#define ACPI_INTERRUPT_NOT_HANDLED 0x00
970#define ACPI_INTERRUPT_HANDLED 0x01 971#define ACPI_INTERRUPT_HANDLED 0x01
971 972
972/* Length of _HID, _UID, _CID, and UUID values */ 973/* Length of 32-bit EISAID values when converted back to a string */
974
975#define ACPI_EISAID_STRING_SIZE 8 /* Includes null terminator */
976
977/* Length of UUID (string) values */
973 978
974#define ACPI_DEVICE_ID_LENGTH 0x09
975#define ACPI_MAX_CID_LENGTH 48
976#define ACPI_UUID_LENGTH 16 979#define ACPI_UUID_LENGTH 16
977 980
978/* Common string version of device HIDs and UIDs */ 981/* Structures used for device/processor HID, UID, CID */
979 982
980struct acpica_device_id { 983struct acpica_device_id {
981 char value[ACPI_DEVICE_ID_LENGTH]; 984 u32 length; /* Length of string + null */
985 char *string;
982}; 986};
983 987
984/* Common string version of device CIDs */ 988struct acpica_device_id_list {
985 989 u32 count; /* Number of IDs in Ids array */
986struct acpi_compatible_id { 990 u32 list_size; /* Size of list, including ID strings */
987 char value[ACPI_MAX_CID_LENGTH]; 991 struct acpica_device_id ids[1]; /* ID array */
988}; 992};
989 993
990struct acpi_compatible_id_list { 994/*
991 u32 count; 995 * Structure returned from acpi_get_object_info.
992 u32 size; 996 * Optimized for both 32- and 64-bit builds
993 struct acpi_compatible_id id[1]; 997 */
998struct acpi_device_info {
999 u32 info_size; /* Size of info, including ID strings */
1000 u32 name; /* ACPI object Name */
1001 acpi_object_type type; /* ACPI object Type */
1002 u8 param_count; /* If a method, required parameter count */
1003 u8 valid; /* Indicates which optional fields are valid */
1004 u8 flags; /* Miscellaneous info */
1005 u8 highest_dstates[4]; /* _sx_d values: 0xFF indicates not valid */
1006 u8 lowest_dstates[5]; /* _sx_w values: 0xFF indicates not valid */
1007 u32 current_status; /* _STA value */
1008 acpi_integer address; /* _ADR value */
1009 struct acpica_device_id hardware_id; /* _HID value */
1010 struct acpica_device_id unique_id; /* _UID value */
1011 struct acpica_device_id_list compatible_id_list; /* _CID list <must be last> */
994}; 1012};
995 1013
996/* Structure and flags for acpi_get_object_info */ 1014/* Values for Flags field above (acpi_get_object_info) */
1015
1016#define ACPI_PCI_ROOT_BRIDGE 0x01
997 1017
998#define ACPI_VALID_STA 0x0001 1018/* Flags for Valid field above (acpi_get_object_info) */
999#define ACPI_VALID_ADR 0x0002 1019
1000#define ACPI_VALID_HID 0x0004 1020#define ACPI_VALID_STA 0x01
1001#define ACPI_VALID_UID 0x0008 1021#define ACPI_VALID_ADR 0x02
1002#define ACPI_VALID_CID 0x0010 1022#define ACPI_VALID_HID 0x04
1003#define ACPI_VALID_SXDS 0x0020 1023#define ACPI_VALID_UID 0x08
1024#define ACPI_VALID_CID 0x10
1025#define ACPI_VALID_SXDS 0x20
1026#define ACPI_VALID_SXWS 0x40
1004 1027
1005/* Flags for _STA method */ 1028/* Flags for _STA method */
1006 1029
@@ -1011,29 +1034,6 @@ struct acpi_compatible_id_list {
1011#define ACPI_STA_DEVICE_OK 0x08 /* Synonym */ 1034#define ACPI_STA_DEVICE_OK 0x08 /* Synonym */
1012#define ACPI_STA_BATTERY_PRESENT 0x10 1035#define ACPI_STA_BATTERY_PRESENT 0x10
1013 1036
1014#define ACPI_COMMON_OBJ_INFO \
1015 acpi_object_type type; /* ACPI object type */ \
1016 acpi_name name /* ACPI object Name */
1017
1018struct acpi_obj_info_header {
1019 ACPI_COMMON_OBJ_INFO;
1020};
1021
1022/* Structure returned from Get Object Info */
1023
1024struct acpi_device_info {
1025 ACPI_COMMON_OBJ_INFO;
1026
1027 u32 param_count; /* If a method, required parameter count */
1028 u32 valid; /* Indicates which fields below are valid */
1029 u32 current_status; /* _STA value */
1030 acpi_integer address; /* _ADR value if any */
1031 struct acpica_device_id hardware_id; /* _HID value if any */
1032 struct acpica_device_id unique_id; /* _UID value if any */
1033 u8 highest_dstates[4]; /* _sx_d values: 0xFF indicates not valid */
1034 struct acpi_compatible_id_list compatibility_id; /* List of _CIDs if any */
1035};
1036
1037/* Context structs for address space handlers */ 1037/* Context structs for address space handlers */
1038 1038
1039struct acpi_pci_id { 1039struct acpi_pci_id {
diff --git a/include/acpi/platform/aclinux.h b/include/acpi/platform/aclinux.h
index fcb8e4b159b1..9d7febde10a1 100644
--- a/include/acpi/platform/aclinux.h
+++ b/include/acpi/platform/aclinux.h
@@ -149,10 +149,10 @@ static inline void *acpi_os_acquire_object(acpi_cache_t * cache)
149#define ACPI_FREE(a) kfree(a) 149#define ACPI_FREE(a) kfree(a)
150 150
151/* Used within ACPICA to show where it is safe to preempt execution */ 151/* Used within ACPICA to show where it is safe to preempt execution */
152 152#include <linux/hardirq.h>
153#define ACPI_PREEMPTION_POINT() \ 153#define ACPI_PREEMPTION_POINT() \
154 do { \ 154 do { \
155 if (!irqs_disabled()) \ 155 if (!in_atomic_preempt_off()) \
156 cond_resched(); \ 156 cond_resched(); \
157 } while (0) 157 } while (0)
158 158
diff --git a/include/asm-generic/cputime.h b/include/asm-generic/cputime.h
index 1c1fa422d18a..ca0f239f0e13 100644
--- a/include/asm-generic/cputime.h
+++ b/include/asm-generic/cputime.h
@@ -7,6 +7,7 @@
7typedef unsigned long cputime_t; 7typedef unsigned long cputime_t;
8 8
9#define cputime_zero (0UL) 9#define cputime_zero (0UL)
10#define cputime_one_jiffy jiffies_to_cputime(1)
10#define cputime_max ((~0UL >> 1) - 1) 11#define cputime_max ((~0UL >> 1) - 1)
11#define cputime_add(__a, __b) ((__a) + (__b)) 12#define cputime_add(__a, __b) ((__a) + (__b))
12#define cputime_sub(__a, __b) ((__a) - (__b)) 13#define cputime_sub(__a, __b) ((__a) - (__b))
diff --git a/include/asm-generic/gpio.h b/include/asm-generic/gpio.h
index d6c379dc64fa..9cca3785cab8 100644
--- a/include/asm-generic/gpio.h
+++ b/include/asm-generic/gpio.h
@@ -141,6 +141,8 @@ extern int __gpio_to_irq(unsigned gpio);
141 * but more typically is configured entirely from userspace. 141 * but more typically is configured entirely from userspace.
142 */ 142 */
143extern int gpio_export(unsigned gpio, bool direction_may_change); 143extern int gpio_export(unsigned gpio, bool direction_may_change);
144extern int gpio_export_link(struct device *dev, const char *name,
145 unsigned gpio);
144extern void gpio_unexport(unsigned gpio); 146extern void gpio_unexport(unsigned gpio);
145 147
146#endif /* CONFIG_GPIO_SYSFS */ 148#endif /* CONFIG_GPIO_SYSFS */
@@ -185,6 +187,12 @@ static inline int gpio_export(unsigned gpio, bool direction_may_change)
185 return -ENOSYS; 187 return -ENOSYS;
186} 188}
187 189
190static inline int gpio_export_link(struct device *dev, const char *name,
191 unsigned gpio)
192{
193 return -ENOSYS;
194}
195
188static inline void gpio_unexport(unsigned gpio) 196static inline void gpio_unexport(unsigned gpio)
189{ 197{
190} 198}
diff --git a/include/asm-generic/kmap_types.h b/include/asm-generic/kmap_types.h
index eddbce0f9fb9..e5f234a08540 100644
--- a/include/asm-generic/kmap_types.h
+++ b/include/asm-generic/kmap_types.h
@@ -2,34 +2,35 @@
2#define _ASM_GENERIC_KMAP_TYPES_H 2#define _ASM_GENERIC_KMAP_TYPES_H
3 3
4#ifdef __WITH_KM_FENCE 4#ifdef __WITH_KM_FENCE
5# define D(n) __KM_FENCE_##n , 5# define KMAP_D(n) __KM_FENCE_##n ,
6#else 6#else
7# define D(n) 7# define KMAP_D(n)
8#endif 8#endif
9 9
10enum km_type { 10enum km_type {
11D(0) KM_BOUNCE_READ, 11KMAP_D(0) KM_BOUNCE_READ,
12D(1) KM_SKB_SUNRPC_DATA, 12KMAP_D(1) KM_SKB_SUNRPC_DATA,
13D(2) KM_SKB_DATA_SOFTIRQ, 13KMAP_D(2) KM_SKB_DATA_SOFTIRQ,
14D(3) KM_USER0, 14KMAP_D(3) KM_USER0,
15D(4) KM_USER1, 15KMAP_D(4) KM_USER1,
16D(5) KM_BIO_SRC_IRQ, 16KMAP_D(5) KM_BIO_SRC_IRQ,
17D(6) KM_BIO_DST_IRQ, 17KMAP_D(6) KM_BIO_DST_IRQ,
18D(7) KM_PTE0, 18KMAP_D(7) KM_PTE0,
19D(8) KM_PTE1, 19KMAP_D(8) KM_PTE1,
20D(9) KM_IRQ0, 20KMAP_D(9) KM_IRQ0,
21D(10) KM_IRQ1, 21KMAP_D(10) KM_IRQ1,
22D(11) KM_SOFTIRQ0, 22KMAP_D(11) KM_SOFTIRQ0,
23D(12) KM_SOFTIRQ1, 23KMAP_D(12) KM_SOFTIRQ1,
24D(13) KM_SYNC_ICACHE, 24KMAP_D(13) KM_SYNC_ICACHE,
25D(14) KM_SYNC_DCACHE, 25KMAP_D(14) KM_SYNC_DCACHE,
26D(15) KM_UML_USERCOPY, /* UML specific, for copy_*_user - used in do_op_one_page */ 26/* UML specific, for copy_*_user - used in do_op_one_page */
27D(16) KM_IRQ_PTE, 27KMAP_D(15) KM_UML_USERCOPY,
28D(17) KM_NMI, 28KMAP_D(16) KM_IRQ_PTE,
29D(18) KM_NMI_PTE, 29KMAP_D(17) KM_NMI,
30D(19) KM_TYPE_NR 30KMAP_D(18) KM_NMI_PTE,
31KMAP_D(19) KM_TYPE_NR
31}; 32};
32 33
33#undef D 34#undef KMAP_D
34 35
35#endif 36#endif
diff --git a/include/asm-generic/sections.h b/include/asm-generic/sections.h
index d083561337f2..b3bfabc258f3 100644
--- a/include/asm-generic/sections.h
+++ b/include/asm-generic/sections.h
@@ -23,4 +23,20 @@ extern char __ctors_start[], __ctors_end[];
23#define dereference_function_descriptor(p) (p) 23#define dereference_function_descriptor(p) (p)
24#endif 24#endif
25 25
26/* random extra sections (if any). Override
27 * in asm/sections.h */
28#ifndef arch_is_kernel_text
29static inline int arch_is_kernel_text(unsigned long addr)
30{
31 return 0;
32}
33#endif
34
35#ifndef arch_is_kernel_data
36static inline int arch_is_kernel_data(unsigned long addr)
37{
38 return 0;
39}
40#endif
41
26#endif /* _ASM_GENERIC_SECTIONS_H_ */ 42#endif /* _ASM_GENERIC_SECTIONS_H_ */
diff --git a/include/asm-generic/syscall.h b/include/asm-generic/syscall.h
index ea8087b55ffc..5c122ae6bfa6 100644
--- a/include/asm-generic/syscall.h
+++ b/include/asm-generic/syscall.h
@@ -1,7 +1,7 @@
1/* 1/*
2 * Access to user system call parameters and results 2 * Access to user system call parameters and results
3 * 3 *
4 * Copyright (C) 2008 Red Hat, Inc. All rights reserved. 4 * Copyright (C) 2008-2009 Red Hat, Inc. All rights reserved.
5 * 5 *
6 * This copyrighted material is made available to anyone wishing to use, 6 * This copyrighted material is made available to anyone wishing to use,
7 * modify, copy, or redistribute it subject to the terms and conditions 7 * modify, copy, or redistribute it subject to the terms and conditions
@@ -32,9 +32,13 @@ struct pt_regs;
32 * If @task is not executing a system call, i.e. it's blocked 32 * If @task is not executing a system call, i.e. it's blocked
33 * inside the kernel for a fault or signal, returns -1. 33 * inside the kernel for a fault or signal, returns -1.
34 * 34 *
35 * Note this returns int even on 64-bit machines. Only 32 bits of
36 * system call number can be meaningful. If the actual arch value
37 * is 64 bits, this truncates to 32 bits so 0xffffffff means -1.
38 *
35 * It's only valid to call this when @task is known to be blocked. 39 * It's only valid to call this when @task is known to be blocked.
36 */ 40 */
37long syscall_get_nr(struct task_struct *task, struct pt_regs *regs); 41int syscall_get_nr(struct task_struct *task, struct pt_regs *regs);
38 42
39/** 43/**
40 * syscall_rollback - roll back registers after an aborted system call 44 * syscall_rollback - roll back registers after an aborted system call
diff --git a/include/linux/acpi.h b/include/linux/acpi.h
index 34321cfffeab..dfcd920c3e54 100644
--- a/include/linux/acpi.h
+++ b/include/linux/acpi.h
@@ -41,8 +41,6 @@
41#include <acpi/acpi_drivers.h> 41#include <acpi/acpi_drivers.h>
42#include <acpi/acpi_numa.h> 42#include <acpi/acpi_numa.h>
43#include <asm/acpi.h> 43#include <asm/acpi.h>
44#include <linux/dmi.h>
45
46 44
47enum acpi_irq_model_id { 45enum acpi_irq_model_id {
48 ACPI_IRQ_MODEL_PIC = 0, 46 ACPI_IRQ_MODEL_PIC = 0,
@@ -219,10 +217,8 @@ static inline int acpi_video_display_switch_support(void)
219#endif /* defined(CONFIG_ACPI_VIDEO) || defined(CONFIG_ACPI_VIDEO_MODULE) */ 217#endif /* defined(CONFIG_ACPI_VIDEO) || defined(CONFIG_ACPI_VIDEO_MODULE) */
220 218
221extern int acpi_blacklisted(void); 219extern int acpi_blacklisted(void);
222#ifdef CONFIG_DMI
223extern void acpi_dmi_osi_linux(int enable, const struct dmi_system_id *d); 220extern void acpi_dmi_osi_linux(int enable, const struct dmi_system_id *d);
224extern int acpi_osi_setup(char *str); 221extern int acpi_osi_setup(char *str);
225#endif
226 222
227#ifdef CONFIG_ACPI_NUMA 223#ifdef CONFIG_ACPI_NUMA
228int acpi_get_pxm(acpi_handle handle); 224int acpi_get_pxm(acpi_handle handle);
@@ -292,7 +288,10 @@ void __init acpi_s4_no_nvs(void);
292extern acpi_status acpi_pci_osc_control_set(acpi_handle handle, u32 flags); 288extern acpi_status acpi_pci_osc_control_set(acpi_handle handle, u32 flags);
293extern void acpi_early_init(void); 289extern void acpi_early_init(void);
294 290
295#else /* CONFIG_ACPI */ 291#else /* !CONFIG_ACPI */
292
293#define acpi_disabled 1
294
296static inline void acpi_early_init(void) { } 295static inline void acpi_early_init(void) { }
297 296
298static inline int early_acpi_boot_init(void) 297static inline int early_acpi_boot_init(void)
@@ -331,5 +330,11 @@ static inline int acpi_check_mem_region(resource_size_t start,
331 return 0; 330 return 0;
332} 331}
333 332
333struct acpi_table_header;
334static inline int acpi_table_parse(char *id,
335 int (*handler)(struct acpi_table_header *))
336{
337 return -1;
338}
334#endif /* !CONFIG_ACPI */ 339#endif /* !CONFIG_ACPI */
335#endif /*_LINUX_ACPI_H*/ 340#endif /*_LINUX_ACPI_H*/
diff --git a/include/linux/anon_inodes.h b/include/linux/anon_inodes.h
index e0a0cdc2da43..69a21e0ebd33 100644
--- a/include/linux/anon_inodes.h
+++ b/include/linux/anon_inodes.h
@@ -8,6 +8,9 @@
8#ifndef _LINUX_ANON_INODES_H 8#ifndef _LINUX_ANON_INODES_H
9#define _LINUX_ANON_INODES_H 9#define _LINUX_ANON_INODES_H
10 10
11struct file *anon_inode_getfile(const char *name,
12 const struct file_operations *fops,
13 void *priv, int flags);
11int anon_inode_getfd(const char *name, const struct file_operations *fops, 14int anon_inode_getfd(const char *name, const struct file_operations *fops,
12 void *priv, int flags); 15 void *priv, int flags);
13 16
diff --git a/include/linux/cn_proc.h b/include/linux/cn_proc.h
index b8125b2eb665..47dac5ea8d3a 100644
--- a/include/linux/cn_proc.h
+++ b/include/linux/cn_proc.h
@@ -52,6 +52,7 @@ struct proc_event {
52 PROC_EVENT_EXEC = 0x00000002, 52 PROC_EVENT_EXEC = 0x00000002,
53 PROC_EVENT_UID = 0x00000004, 53 PROC_EVENT_UID = 0x00000004,
54 PROC_EVENT_GID = 0x00000040, 54 PROC_EVENT_GID = 0x00000040,
55 PROC_EVENT_SID = 0x00000080,
55 /* "next" should be 0x00000400 */ 56 /* "next" should be 0x00000400 */
56 /* "last" is the last process event: exit */ 57 /* "last" is the last process event: exit */
57 PROC_EVENT_EXIT = 0x80000000 58 PROC_EVENT_EXIT = 0x80000000
@@ -89,6 +90,11 @@ struct proc_event {
89 } e; 90 } e;
90 } id; 91 } id;
91 92
93 struct sid_proc_event {
94 __kernel_pid_t process_pid;
95 __kernel_pid_t process_tgid;
96 } sid;
97
92 struct exit_proc_event { 98 struct exit_proc_event {
93 __kernel_pid_t process_pid; 99 __kernel_pid_t process_pid;
94 __kernel_pid_t process_tgid; 100 __kernel_pid_t process_tgid;
@@ -102,6 +108,7 @@ struct proc_event {
102void proc_fork_connector(struct task_struct *task); 108void proc_fork_connector(struct task_struct *task);
103void proc_exec_connector(struct task_struct *task); 109void proc_exec_connector(struct task_struct *task);
104void proc_id_connector(struct task_struct *task, int which_id); 110void proc_id_connector(struct task_struct *task, int which_id);
111void proc_sid_connector(struct task_struct *task);
105void proc_exit_connector(struct task_struct *task); 112void proc_exit_connector(struct task_struct *task);
106#else 113#else
107static inline void proc_fork_connector(struct task_struct *task) 114static inline void proc_fork_connector(struct task_struct *task)
@@ -114,6 +121,9 @@ static inline void proc_id_connector(struct task_struct *task,
114 int which_id) 121 int which_id)
115{} 122{}
116 123
124static inline void proc_sid_connector(struct task_struct *task)
125{}
126
117static inline void proc_exit_connector(struct task_struct *task) 127static inline void proc_exit_connector(struct task_struct *task)
118{} 128{}
119#endif /* CONFIG_PROC_EVENTS */ 129#endif /* CONFIG_PROC_EVENTS */
diff --git a/include/linux/cpumask.h b/include/linux/cpumask.h
index 796df12091b7..9b1d458aac6e 100644
--- a/include/linux/cpumask.h
+++ b/include/linux/cpumask.h
@@ -715,6 +715,18 @@ static inline int cpumask_test_and_set_cpu(int cpu, struct cpumask *cpumask)
715} 715}
716 716
717/** 717/**
718 * cpumask_test_and_clear_cpu - atomically test and clear a cpu in a cpumask
719 * @cpu: cpu number (< nr_cpu_ids)
720 * @cpumask: the cpumask pointer
721 *
722 * test_and_clear_bit wrapper for cpumasks.
723 */
724static inline int cpumask_test_and_clear_cpu(int cpu, struct cpumask *cpumask)
725{
726 return test_and_clear_bit(cpumask_check(cpu), cpumask_bits(cpumask));
727}
728
729/**
718 * cpumask_setall - set all cpus (< nr_cpu_ids) in a cpumask 730 * cpumask_setall - set all cpus (< nr_cpu_ids) in a cpumask
719 * @dstp: the cpumask pointer 731 * @dstp: the cpumask pointer
720 */ 732 */
diff --git a/include/linux/eventfd.h b/include/linux/eventfd.h
index 3b85ba6479f4..94dd10366a78 100644
--- a/include/linux/eventfd.h
+++ b/include/linux/eventfd.h
@@ -27,6 +27,7 @@
27 27
28#ifdef CONFIG_EVENTFD 28#ifdef CONFIG_EVENTFD
29 29
30struct file *eventfd_file_create(unsigned int count, int flags);
30struct eventfd_ctx *eventfd_ctx_get(struct eventfd_ctx *ctx); 31struct eventfd_ctx *eventfd_ctx_get(struct eventfd_ctx *ctx);
31void eventfd_ctx_put(struct eventfd_ctx *ctx); 32void eventfd_ctx_put(struct eventfd_ctx *ctx);
32struct file *eventfd_fget(int fd); 33struct file *eventfd_fget(int fd);
@@ -40,6 +41,11 @@ int eventfd_signal(struct eventfd_ctx *ctx, int n);
40 * Ugly ugly ugly error layer to support modules that uses eventfd but 41 * Ugly ugly ugly error layer to support modules that uses eventfd but
41 * pretend to work in !CONFIG_EVENTFD configurations. Namely, AIO. 42 * pretend to work in !CONFIG_EVENTFD configurations. Namely, AIO.
42 */ 43 */
44static inline struct file *eventfd_file_create(unsigned int count, int flags)
45{
46 return ERR_PTR(-ENOSYS);
47}
48
43static inline struct eventfd_ctx *eventfd_ctx_fdget(int fd) 49static inline struct eventfd_ctx *eventfd_ctx_fdget(int fd)
44{ 50{
45 return ERR_PTR(-ENOSYS); 51 return ERR_PTR(-ENOSYS);
diff --git a/include/linux/firewire.h b/include/linux/firewire.h
index 192d1e43c43c..7e1d4dec83e7 100644
--- a/include/linux/firewire.h
+++ b/include/linux/firewire.h
@@ -134,20 +134,6 @@ struct fw_card {
134 u32 topology_map[(CSR_TOPOLOGY_MAP_END - CSR_TOPOLOGY_MAP) / 4]; 134 u32 topology_map[(CSR_TOPOLOGY_MAP_END - CSR_TOPOLOGY_MAP) / 4];
135}; 135};
136 136
137static inline struct fw_card *fw_card_get(struct fw_card *card)
138{
139 kref_get(&card->kref);
140
141 return card;
142}
143
144void fw_card_release(struct kref *kref);
145
146static inline void fw_card_put(struct fw_card *card)
147{
148 kref_put(&card->kref, fw_card_release);
149}
150
151struct fw_attribute_group { 137struct fw_attribute_group {
152 struct attribute_group *groups[2]; 138 struct attribute_group *groups[2];
153 struct attribute_group group; 139 struct attribute_group group;
diff --git a/include/linux/gfp.h b/include/linux/gfp.h
index f53e9b868c26..557bdad320b6 100644
--- a/include/linux/gfp.h
+++ b/include/linux/gfp.h
@@ -220,7 +220,7 @@ static inline enum zone_type gfp_zone(gfp_t flags)
220 ((1 << ZONES_SHIFT) - 1); 220 ((1 << ZONES_SHIFT) - 1);
221 221
222 if (__builtin_constant_p(bit)) 222 if (__builtin_constant_p(bit))
223 BUILD_BUG_ON((GFP_ZONE_BAD >> bit) & 1); 223 MAYBE_BUILD_BUG_ON((GFP_ZONE_BAD >> bit) & 1);
224 else { 224 else {
225#ifdef CONFIG_DEBUG_VM 225#ifdef CONFIG_DEBUG_VM
226 BUG_ON((GFP_ZONE_BAD >> bit) & 1); 226 BUG_ON((GFP_ZONE_BAD >> bit) & 1);
diff --git a/include/linux/gpio.h b/include/linux/gpio.h
index e10c49a5b96e..059bd189d35d 100644
--- a/include/linux/gpio.h
+++ b/include/linux/gpio.h
@@ -12,6 +12,8 @@
12#include <linux/types.h> 12#include <linux/types.h>
13#include <linux/errno.h> 13#include <linux/errno.h>
14 14
15struct device;
16
15/* 17/*
16 * Some platforms don't support the GPIO programming interface. 18 * Some platforms don't support the GPIO programming interface.
17 * 19 *
@@ -89,6 +91,15 @@ static inline int gpio_export(unsigned gpio, bool direction_may_change)
89 return -EINVAL; 91 return -EINVAL;
90} 92}
91 93
94static inline int gpio_export_link(struct device *dev, const char *name,
95 unsigned gpio)
96{
97 /* GPIO can never have been exported */
98 WARN_ON(1);
99 return -EINVAL;
100}
101
102
92static inline void gpio_unexport(unsigned gpio) 103static inline void gpio_unexport(unsigned gpio)
93{ 104{
94 /* GPIO can never have been exported */ 105 /* GPIO can never have been exported */
diff --git a/include/linux/i2c-id.h b/include/linux/i2c-id.h
index c9087de5c6c6..e844a0b18695 100644
--- a/include/linux/i2c-id.h
+++ b/include/linux/i2c-id.h
@@ -28,17 +28,6 @@
28 identify a legacy client. If you don't need them, just don't set them. */ 28 identify a legacy client. If you don't need them, just don't set them. */
29 29
30/* 30/*
31 * ---- Driver types -----------------------------------------------------
32 */
33
34#define I2C_DRIVERID_MSP3400 1
35#define I2C_DRIVERID_TUNER 2
36#define I2C_DRIVERID_TDA7432 27 /* Stereo sound processor */
37#define I2C_DRIVERID_TVAUDIO 29 /* Generic TV sound driver */
38#define I2C_DRIVERID_SAA711X 73 /* saa711x video encoders */
39#define I2C_DRIVERID_INFRARED 75 /* I2C InfraRed on Video boards */
40
41/*
42 * ---- Adapter types ---------------------------------------------------- 31 * ---- Adapter types ----------------------------------------------------
43 */ 32 */
44 33
diff --git a/include/linux/i2c.h b/include/linux/i2c.h
index f4784c0fe975..57d41b0abce2 100644
--- a/include/linux/i2c.h
+++ b/include/linux/i2c.h
@@ -98,7 +98,6 @@ extern s32 i2c_smbus_write_i2c_block_data(struct i2c_client *client,
98 98
99/** 99/**
100 * struct i2c_driver - represent an I2C device driver 100 * struct i2c_driver - represent an I2C device driver
101 * @id: Unique driver ID (optional)
102 * @class: What kind of i2c device we instantiate (for detect) 101 * @class: What kind of i2c device we instantiate (for detect)
103 * @attach_adapter: Callback for bus addition (for legacy drivers) 102 * @attach_adapter: Callback for bus addition (for legacy drivers)
104 * @detach_adapter: Callback for bus removal (for legacy drivers) 103 * @detach_adapter: Callback for bus removal (for legacy drivers)
@@ -135,7 +134,6 @@ extern s32 i2c_smbus_write_i2c_block_data(struct i2c_client *client,
135 * not allowed. 134 * not allowed.
136 */ 135 */
137struct i2c_driver { 136struct i2c_driver {
138 int id;
139 unsigned int class; 137 unsigned int class;
140 138
141 /* Notifies the driver that a new bus has appeared or is about to be 139 /* Notifies the driver that a new bus has appeared or is about to be
diff --git a/include/linux/intel-iommu.h b/include/linux/intel-iommu.h
index 482dc91fd53a..4f0a72a9740c 100644
--- a/include/linux/intel-iommu.h
+++ b/include/linux/intel-iommu.h
@@ -360,4 +360,6 @@ extern void qi_flush_dev_iotlb(struct intel_iommu *iommu, u16 sid, u16 qdep,
360 360
361extern int qi_submit_sync(struct qi_desc *desc, struct intel_iommu *iommu); 361extern int qi_submit_sync(struct qi_desc *desc, struct intel_iommu *iommu);
362 362
363extern int dmar_ir_support(void);
364
363#endif 365#endif
diff --git a/include/linux/ioport.h b/include/linux/ioport.h
index 786e7b8cece9..83aa81297ea3 100644
--- a/include/linux/ioport.h
+++ b/include/linux/ioport.h
@@ -184,5 +184,9 @@ extern void __devm_release_region(struct device *dev, struct resource *parent,
184extern int iomem_map_sanity_check(resource_size_t addr, unsigned long size); 184extern int iomem_map_sanity_check(resource_size_t addr, unsigned long size);
185extern int iomem_is_exclusive(u64 addr); 185extern int iomem_is_exclusive(u64 addr);
186 186
187extern int
188walk_system_ram_range(unsigned long start_pfn, unsigned long nr_pages,
189 void *arg, int (*func)(unsigned long, unsigned long, void *));
190
187#endif /* __ASSEMBLY__ */ 191#endif /* __ASSEMBLY__ */
188#endif /* _LINUX_IOPORT_H */ 192#endif /* _LINUX_IOPORT_H */
diff --git a/include/linux/iova.h b/include/linux/iova.h
index 228f6c94b69c..76a0759e88ec 100644
--- a/include/linux/iova.h
+++ b/include/linux/iova.h
@@ -28,7 +28,6 @@ struct iova {
28 28
29/* holds all the iova translations for a domain */ 29/* holds all the iova translations for a domain */
30struct iova_domain { 30struct iova_domain {
31 spinlock_t iova_alloc_lock;/* Lock to protect iova allocation */
32 spinlock_t iova_rbtree_lock; /* Lock to protect update of rbtree */ 31 spinlock_t iova_rbtree_lock; /* Lock to protect update of rbtree */
33 struct rb_root rbroot; /* iova domain rbtree root */ 32 struct rb_root rbroot; /* iova domain rbtree root */
34 struct rb_node *cached32_node; /* Save last alloced node */ 33 struct rb_node *cached32_node; /* Save last alloced node */
diff --git a/include/linux/jbd.h b/include/linux/jbd.h
index a1187a0c99b4..331530cd3cc6 100644
--- a/include/linux/jbd.h
+++ b/include/linux/jbd.h
@@ -556,7 +556,7 @@ struct transaction_s
556 * This transaction is being forced and some process is 556 * This transaction is being forced and some process is
557 * waiting for it to finish. 557 * waiting for it to finish.
558 */ 558 */
559 int t_synchronous_commit:1; 559 unsigned int t_synchronous_commit:1;
560}; 560};
561 561
562/** 562/**
diff --git a/include/linux/kernel.h b/include/linux/kernel.h
index 2b5b1e0899a8..d3cd23f30039 100644
--- a/include/linux/kernel.h
+++ b/include/linux/kernel.h
@@ -146,7 +146,7 @@ extern int _cond_resched(void);
146#define might_sleep_if(cond) do { if (cond) might_sleep(); } while (0) 146#define might_sleep_if(cond) do { if (cond) might_sleep(); } while (0)
147 147
148#define abs(x) ({ \ 148#define abs(x) ({ \
149 int __x = (x); \ 149 long __x = (x); \
150 (__x < 0) ? -__x : __x; \ 150 (__x < 0) ? -__x : __x; \
151 }) 151 })
152 152
@@ -246,14 +246,16 @@ extern int printk_ratelimit(void);
246extern bool printk_timed_ratelimit(unsigned long *caller_jiffies, 246extern bool printk_timed_ratelimit(unsigned long *caller_jiffies,
247 unsigned int interval_msec); 247 unsigned int interval_msec);
248 248
249extern int printk_delay_msec;
250
249/* 251/*
250 * Print a one-time message (analogous to WARN_ONCE() et al): 252 * Print a one-time message (analogous to WARN_ONCE() et al):
251 */ 253 */
252#define printk_once(x...) ({ \ 254#define printk_once(x...) ({ \
253 static int __print_once = 1; \ 255 static bool __print_once = true; \
254 \ 256 \
255 if (__print_once) { \ 257 if (__print_once) { \
256 __print_once = 0; \ 258 __print_once = false; \
257 printk(x); \ 259 printk(x); \
258 } \ 260 } \
259}) 261})
@@ -676,13 +678,17 @@ struct sysinfo {
676}; 678};
677 679
678/* Force a compilation error if condition is true */ 680/* Force a compilation error if condition is true */
679#define BUILD_BUG_ON(condition) ((void)sizeof(char[1 - 2*!!(condition)])) 681#define BUILD_BUG_ON(condition) ((void)BUILD_BUG_ON_ZERO(condition))
682
683/* Force a compilation error if condition is constant and true */
684#define MAYBE_BUILD_BUG_ON(cond) ((void)sizeof(char[1 - 2 * !!(cond)]))
680 685
681/* Force a compilation error if condition is true, but also produce a 686/* Force a compilation error if condition is true, but also produce a
682 result (of value 0 and type size_t), so the expression can be used 687 result (of value 0 and type size_t), so the expression can be used
683 e.g. in a structure initializer (or where-ever else comma expressions 688 e.g. in a structure initializer (or where-ever else comma expressions
684 aren't permitted). */ 689 aren't permitted). */
685#define BUILD_BUG_ON_ZERO(e) (sizeof(char[1 - 2 * !!(e)]) - 1) 690#define BUILD_BUG_ON_ZERO(e) (sizeof(struct { int:-!!(e); }))
691#define BUILD_BUG_ON_NULL(e) ((void *)sizeof(struct { int:-!!(e); }))
686 692
687/* Trap pasters of __FUNCTION__ at compile-time */ 693/* Trap pasters of __FUNCTION__ at compile-time */
688#define __FUNCTION__ (__func__) 694#define __FUNCTION__ (__func__)
diff --git a/include/linux/kmemcheck.h b/include/linux/kmemcheck.h
index c8006607f947..e880d4cf9e22 100644
--- a/include/linux/kmemcheck.h
+++ b/include/linux/kmemcheck.h
@@ -145,12 +145,14 @@ static inline bool kmemcheck_is_obj_initialized(unsigned long addr, size_t size)
145 145
146#define kmemcheck_annotate_bitfield(ptr, name) \ 146#define kmemcheck_annotate_bitfield(ptr, name) \
147 do { \ 147 do { \
148 int _n; \
149 \
148 if (!ptr) \ 150 if (!ptr) \
149 break; \ 151 break; \
150 \ 152 \
151 int _n = (long) &((ptr)->name##_end) \ 153 _n = (long) &((ptr)->name##_end) \
152 - (long) &((ptr)->name##_begin); \ 154 - (long) &((ptr)->name##_begin); \
153 BUILD_BUG_ON(_n < 0); \ 155 MAYBE_BUILD_BUG_ON(_n < 0); \
154 \ 156 \
155 kmemcheck_mark_initialized(&((ptr)->name##_begin), _n); \ 157 kmemcheck_mark_initialized(&((ptr)->name##_begin), _n); \
156 } while (0) 158 } while (0)
diff --git a/include/linux/magic.h b/include/linux/magic.h
index 1923327b9869..76285e01b39e 100644
--- a/include/linux/magic.h
+++ b/include/linux/magic.h
@@ -12,7 +12,9 @@
12#define SYSFS_MAGIC 0x62656572 12#define SYSFS_MAGIC 0x62656572
13#define SECURITYFS_MAGIC 0x73636673 13#define SECURITYFS_MAGIC 0x73636673
14#define SELINUX_MAGIC 0xf97cff8c 14#define SELINUX_MAGIC 0xf97cff8c
15#define RAMFS_MAGIC 0x858458f6 /* some random number */
15#define TMPFS_MAGIC 0x01021994 16#define TMPFS_MAGIC 0x01021994
17#define HUGETLBFS_MAGIC 0x958458f6 /* some random number */
16#define SQUASHFS_MAGIC 0x73717368 18#define SQUASHFS_MAGIC 0x73717368
17#define EFS_SUPER_MAGIC 0x414A53 19#define EFS_SUPER_MAGIC 0x414A53
18#define EXT2_SUPER_MAGIC 0xEF53 20#define EXT2_SUPER_MAGIC 0xEF53
@@ -53,4 +55,8 @@
53#define INOTIFYFS_SUPER_MAGIC 0x2BAD1DEA 55#define INOTIFYFS_SUPER_MAGIC 0x2BAD1DEA
54 56
55#define STACK_END_MAGIC 0x57AC6E9D 57#define STACK_END_MAGIC 0x57AC6E9D
58
59#define DEVPTS_SUPER_MAGIC 0x1cd1
60#define SOCKFS_MAGIC 0x534F434B
61
56#endif /* __LINUX_MAGIC_H__ */ 62#endif /* __LINUX_MAGIC_H__ */
diff --git a/include/linux/memory_hotplug.h b/include/linux/memory_hotplug.h
index d95f72e79b82..fed969281a41 100644
--- a/include/linux/memory_hotplug.h
+++ b/include/linux/memory_hotplug.h
@@ -191,14 +191,6 @@ static inline void register_page_bootmem_info_node(struct pglist_data *pgdat)
191 191
192#endif /* ! CONFIG_MEMORY_HOTPLUG */ 192#endif /* ! CONFIG_MEMORY_HOTPLUG */
193 193
194/*
195 * Walk through all memory which is registered as resource.
196 * arg is (start_pfn, nr_pages, private_arg_pointer)
197 */
198extern int walk_memory_resource(unsigned long start_pfn,
199 unsigned long nr_pages, void *arg,
200 int (*func)(unsigned long, unsigned long, void *));
201
202#ifdef CONFIG_MEMORY_HOTREMOVE 194#ifdef CONFIG_MEMORY_HOTREMOVE
203 195
204extern int is_mem_section_removable(unsigned long pfn, unsigned long nr_pages); 196extern int is_mem_section_removable(unsigned long pfn, unsigned long nr_pages);
diff --git a/include/linux/mfd/da903x.h b/include/linux/mfd/da903x.h
index 115dbe965082..c63b65c94429 100644
--- a/include/linux/mfd/da903x.h
+++ b/include/linux/mfd/da903x.h
@@ -1,7 +1,7 @@
1#ifndef __LINUX_PMIC_DA903X_H 1#ifndef __LINUX_PMIC_DA903X_H
2#define __LINUX_PMIC_DA903X_H 2#define __LINUX_PMIC_DA903X_H
3 3
4/* Unified sub device IDs for DA9030/DA9034 */ 4/* Unified sub device IDs for DA9030/DA9034/DA9035 */
5enum { 5enum {
6 DA9030_ID_LED_1, 6 DA9030_ID_LED_1,
7 DA9030_ID_LED_2, 7 DA9030_ID_LED_2,
@@ -57,6 +57,8 @@ enum {
57 DA9034_ID_LDO13, 57 DA9034_ID_LDO13,
58 DA9034_ID_LDO14, 58 DA9034_ID_LDO14,
59 DA9034_ID_LDO15, 59 DA9034_ID_LDO15,
60
61 DA9035_ID_BUCK3,
60}; 62};
61 63
62/* 64/*
diff --git a/include/linux/mm.h b/include/linux/mm.h
index 5946e2ff9fe8..b6eae5e3144b 100644
--- a/include/linux/mm.h
+++ b/include/linux/mm.h
@@ -285,6 +285,14 @@ static inline int is_vmalloc_addr(const void *x)
285 return 0; 285 return 0;
286#endif 286#endif
287} 287}
288#ifdef CONFIG_MMU
289extern int is_vmalloc_or_module_addr(const void *x);
290#else
291static int is_vmalloc_or_module_addr(const void *x)
292{
293 return 0;
294}
295#endif
288 296
289static inline struct page *compound_head(struct page *page) 297static inline struct page *compound_head(struct page *page)
290{ 298{
diff --git a/include/linux/mmc/card.h b/include/linux/mmc/card.h
index 403aa505f27e..2ee22e8af110 100644
--- a/include/linux/mmc/card.h
+++ b/include/linux/mmc/card.h
@@ -40,6 +40,8 @@ struct mmc_csd {
40}; 40};
41 41
42struct mmc_ext_csd { 42struct mmc_ext_csd {
43 u8 rev;
44 unsigned int sa_timeout; /* Units: 100ns */
43 unsigned int hs_max_dtr; 45 unsigned int hs_max_dtr;
44 unsigned int sectors; 46 unsigned int sectors;
45}; 47};
@@ -62,7 +64,8 @@ struct sdio_cccr {
62 low_speed:1, 64 low_speed:1,
63 wide_bus:1, 65 wide_bus:1,
64 high_power:1, 66 high_power:1,
65 high_speed:1; 67 high_speed:1,
68 disable_cd:1;
66}; 69};
67 70
68struct sdio_cis { 71struct sdio_cis {
@@ -94,6 +97,8 @@ struct mmc_card {
94#define MMC_STATE_READONLY (1<<1) /* card is read-only */ 97#define MMC_STATE_READONLY (1<<1) /* card is read-only */
95#define MMC_STATE_HIGHSPEED (1<<2) /* card is in high speed mode */ 98#define MMC_STATE_HIGHSPEED (1<<2) /* card is in high speed mode */
96#define MMC_STATE_BLOCKADDR (1<<3) /* card uses block-addressing */ 99#define MMC_STATE_BLOCKADDR (1<<3) /* card uses block-addressing */
100 unsigned int quirks; /* card quirks */
101#define MMC_QUIRK_LENIENT_FN0 (1<<0) /* allow SDIO FN0 writes outside of the VS CCCR range */
97 102
98 u32 raw_cid[4]; /* raw card CID */ 103 u32 raw_cid[4]; /* raw card CID */
99 u32 raw_csd[4]; /* raw card CSD */ 104 u32 raw_csd[4]; /* raw card CSD */
@@ -129,6 +134,11 @@ struct mmc_card {
129#define mmc_card_set_highspeed(c) ((c)->state |= MMC_STATE_HIGHSPEED) 134#define mmc_card_set_highspeed(c) ((c)->state |= MMC_STATE_HIGHSPEED)
130#define mmc_card_set_blockaddr(c) ((c)->state |= MMC_STATE_BLOCKADDR) 135#define mmc_card_set_blockaddr(c) ((c)->state |= MMC_STATE_BLOCKADDR)
131 136
137static inline int mmc_card_lenient_fn0(const struct mmc_card *c)
138{
139 return c->quirks & MMC_QUIRK_LENIENT_FN0;
140}
141
132#define mmc_card_name(c) ((c)->cid.prod_name) 142#define mmc_card_name(c) ((c)->cid.prod_name)
133#define mmc_card_id(c) (dev_name(&(c)->dev)) 143#define mmc_card_id(c) (dev_name(&(c)->dev))
134 144
diff --git a/include/linux/mmc/core.h b/include/linux/mmc/core.h
index 7ac8b500d55c..e4898e9eeb59 100644
--- a/include/linux/mmc/core.h
+++ b/include/linux/mmc/core.h
@@ -139,6 +139,7 @@ extern unsigned int mmc_align_data_size(struct mmc_card *, unsigned int);
139 139
140extern int __mmc_claim_host(struct mmc_host *host, atomic_t *abort); 140extern int __mmc_claim_host(struct mmc_host *host, atomic_t *abort);
141extern void mmc_release_host(struct mmc_host *host); 141extern void mmc_release_host(struct mmc_host *host);
142extern int mmc_try_claim_host(struct mmc_host *host);
142 143
143/** 144/**
144 * mmc_claim_host - exclusively claim a host 145 * mmc_claim_host - exclusively claim a host
diff --git a/include/linux/mmc/host.h b/include/linux/mmc/host.h
index 3e7615e9087e..81bb42358595 100644
--- a/include/linux/mmc/host.h
+++ b/include/linux/mmc/host.h
@@ -51,6 +51,35 @@ struct mmc_ios {
51}; 51};
52 52
53struct mmc_host_ops { 53struct mmc_host_ops {
54 /*
55 * Hosts that support power saving can use the 'enable' and 'disable'
56 * methods to exit and enter power saving states. 'enable' is called
57 * when the host is claimed and 'disable' is called (or scheduled with
58 * a delay) when the host is released. The 'disable' is scheduled if
59 * the disable delay set by 'mmc_set_disable_delay()' is non-zero,
60 * otherwise 'disable' is called immediately. 'disable' may be
61 * scheduled repeatedly, to permit ever greater power saving at the
62 * expense of ever greater latency to re-enable. Rescheduling is
63 * determined by the return value of the 'disable' method. A positive
64 * value gives the delay in milliseconds.
65 *
66 * In the case where a host function (like set_ios) may be called
67 * with or without the host claimed, enabling and disabling can be
68 * done directly and will nest correctly. Call 'mmc_host_enable()' and
69 * 'mmc_host_lazy_disable()' for this purpose, but note that these
70 * functions must be paired.
71 *
72 * Alternatively, 'mmc_host_enable()' may be paired with
73 * 'mmc_host_disable()' which calls 'disable' immediately. In this
74 * case the 'disable' method will be called with 'lazy' set to 0.
75 * This is mainly useful for error paths.
76 *
77 * Because lazy disable may be called from a work queue, the 'disable'
78 * method must claim the host when 'lazy' != 0, which will work
79 * correctly because recursion is detected and handled.
80 */
81 int (*enable)(struct mmc_host *host);
82 int (*disable)(struct mmc_host *host, int lazy);
54 void (*request)(struct mmc_host *host, struct mmc_request *req); 83 void (*request)(struct mmc_host *host, struct mmc_request *req);
55 /* 84 /*
56 * Avoid calling these three functions too often or in a "fast path", 85 * Avoid calling these three functions too often or in a "fast path",
@@ -118,6 +147,9 @@ struct mmc_host {
118#define MMC_CAP_SPI (1 << 4) /* Talks only SPI protocols */ 147#define MMC_CAP_SPI (1 << 4) /* Talks only SPI protocols */
119#define MMC_CAP_NEEDS_POLL (1 << 5) /* Needs polling for card-detection */ 148#define MMC_CAP_NEEDS_POLL (1 << 5) /* Needs polling for card-detection */
120#define MMC_CAP_8_BIT_DATA (1 << 6) /* Can the host do 8 bit transfers */ 149#define MMC_CAP_8_BIT_DATA (1 << 6) /* Can the host do 8 bit transfers */
150#define MMC_CAP_DISABLE (1 << 7) /* Can the host be disabled */
151#define MMC_CAP_NONREMOVABLE (1 << 8) /* Nonremovable e.g. eMMC */
152#define MMC_CAP_WAIT_WHILE_BUSY (1 << 9) /* Waits while card is busy */
121 153
122 /* host specific block data */ 154 /* host specific block data */
123 unsigned int max_seg_size; /* see blk_queue_max_segment_size */ 155 unsigned int max_seg_size; /* see blk_queue_max_segment_size */
@@ -142,9 +174,18 @@ struct mmc_host {
142 unsigned int removed:1; /* host is being removed */ 174 unsigned int removed:1; /* host is being removed */
143#endif 175#endif
144 176
177 /* Only used with MMC_CAP_DISABLE */
178 int enabled; /* host is enabled */
179 int nesting_cnt; /* "enable" nesting count */
180 int en_dis_recurs; /* detect recursion */
181 unsigned int disable_delay; /* disable delay in msecs */
182 struct delayed_work disable; /* disabling work */
183
145 struct mmc_card *card; /* device attached to this host */ 184 struct mmc_card *card; /* device attached to this host */
146 185
147 wait_queue_head_t wq; 186 wait_queue_head_t wq;
187 struct task_struct *claimer; /* task that has host claimed */
188 int claim_cnt; /* "claim" nesting count */
148 189
149 struct delayed_work detect; 190 struct delayed_work detect;
150 191
@@ -183,6 +224,9 @@ static inline void *mmc_priv(struct mmc_host *host)
183extern int mmc_suspend_host(struct mmc_host *, pm_message_t); 224extern int mmc_suspend_host(struct mmc_host *, pm_message_t);
184extern int mmc_resume_host(struct mmc_host *); 225extern int mmc_resume_host(struct mmc_host *);
185 226
227extern void mmc_power_save_host(struct mmc_host *host);
228extern void mmc_power_restore_host(struct mmc_host *host);
229
186extern void mmc_detect_change(struct mmc_host *, unsigned long delay); 230extern void mmc_detect_change(struct mmc_host *, unsigned long delay);
187extern void mmc_request_done(struct mmc_host *, struct mmc_request *); 231extern void mmc_request_done(struct mmc_host *, struct mmc_request *);
188 232
@@ -197,5 +241,19 @@ struct regulator;
197int mmc_regulator_get_ocrmask(struct regulator *supply); 241int mmc_regulator_get_ocrmask(struct regulator *supply);
198int mmc_regulator_set_ocr(struct regulator *supply, unsigned short vdd_bit); 242int mmc_regulator_set_ocr(struct regulator *supply, unsigned short vdd_bit);
199 243
244int mmc_card_awake(struct mmc_host *host);
245int mmc_card_sleep(struct mmc_host *host);
246int mmc_card_can_sleep(struct mmc_host *host);
247
248int mmc_host_enable(struct mmc_host *host);
249int mmc_host_disable(struct mmc_host *host);
250int mmc_host_lazy_disable(struct mmc_host *host);
251
252static inline void mmc_set_disable_delay(struct mmc_host *host,
253 unsigned int disable_delay)
254{
255 host->disable_delay = disable_delay;
256}
257
200#endif 258#endif
201 259
diff --git a/include/linux/mmc/mmc.h b/include/linux/mmc/mmc.h
index 14b81f3e5232..c02c8db73701 100644
--- a/include/linux/mmc/mmc.h
+++ b/include/linux/mmc/mmc.h
@@ -31,6 +31,7 @@
31#define MMC_ALL_SEND_CID 2 /* bcr R2 */ 31#define MMC_ALL_SEND_CID 2 /* bcr R2 */
32#define MMC_SET_RELATIVE_ADDR 3 /* ac [31:16] RCA R1 */ 32#define MMC_SET_RELATIVE_ADDR 3 /* ac [31:16] RCA R1 */
33#define MMC_SET_DSR 4 /* bc [31:16] RCA */ 33#define MMC_SET_DSR 4 /* bc [31:16] RCA */
34#define MMC_SLEEP_AWAKE 5 /* ac [31:16] RCA 15:flg R1b */
34#define MMC_SWITCH 6 /* ac [31:0] See below R1b */ 35#define MMC_SWITCH 6 /* ac [31:0] See below R1b */
35#define MMC_SELECT_CARD 7 /* ac [31:16] RCA R1 */ 36#define MMC_SELECT_CARD 7 /* ac [31:16] RCA R1 */
36#define MMC_SEND_EXT_CSD 8 /* adtc R1 */ 37#define MMC_SEND_EXT_CSD 8 /* adtc R1 */
@@ -127,6 +128,7 @@
127#define R1_STATUS(x) (x & 0xFFFFE000) 128#define R1_STATUS(x) (x & 0xFFFFE000)
128#define R1_CURRENT_STATE(x) ((x & 0x00001E00) >> 9) /* sx, b (4 bits) */ 129#define R1_CURRENT_STATE(x) ((x & 0x00001E00) >> 9) /* sx, b (4 bits) */
129#define R1_READY_FOR_DATA (1 << 8) /* sx, a */ 130#define R1_READY_FOR_DATA (1 << 8) /* sx, a */
131#define R1_SWITCH_ERROR (1 << 7) /* sx, c */
130#define R1_APP_CMD (1 << 5) /* sr, c */ 132#define R1_APP_CMD (1 << 5) /* sr, c */
131 133
132/* 134/*
@@ -254,6 +256,7 @@ struct _mmc_csd {
254#define EXT_CSD_CARD_TYPE 196 /* RO */ 256#define EXT_CSD_CARD_TYPE 196 /* RO */
255#define EXT_CSD_REV 192 /* RO */ 257#define EXT_CSD_REV 192 /* RO */
256#define EXT_CSD_SEC_CNT 212 /* RO, 4 bytes */ 258#define EXT_CSD_SEC_CNT 212 /* RO, 4 bytes */
259#define EXT_CSD_S_A_TIMEOUT 217
257 260
258/* 261/*
259 * EXT_CSD field definitions 262 * EXT_CSD field definitions
diff --git a/include/linux/mmc/sdio_func.h b/include/linux/mmc/sdio_func.h
index 451bdfc85830..ac3ab683fec6 100644
--- a/include/linux/mmc/sdio_func.h
+++ b/include/linux/mmc/sdio_func.h
@@ -67,6 +67,7 @@ struct sdio_func {
67 67
68#define sdio_get_drvdata(f) dev_get_drvdata(&(f)->dev) 68#define sdio_get_drvdata(f) dev_get_drvdata(&(f)->dev)
69#define sdio_set_drvdata(f,d) dev_set_drvdata(&(f)->dev, d) 69#define sdio_set_drvdata(f,d) dev_set_drvdata(&(f)->dev, d)
70#define dev_to_sdio_func(d) container_of(d, struct sdio_func, dev)
70 71
71/* 72/*
72 * SDIO function device driver 73 * SDIO function device driver
@@ -81,6 +82,8 @@ struct sdio_driver {
81 struct device_driver drv; 82 struct device_driver drv;
82}; 83};
83 84
85#define to_sdio_driver(d) container_of(d, struct sdio_driver, drv)
86
84/** 87/**
85 * SDIO_DEVICE - macro used to describe a specific SDIO device 88 * SDIO_DEVICE - macro used to describe a specific SDIO device
86 * @vend: the 16 bit manufacturer code 89 * @vend: the 16 bit manufacturer code
diff --git a/include/linux/mod_devicetable.h b/include/linux/mod_devicetable.h
index 1bf5900ffe43..f58e9d836f32 100644
--- a/include/linux/mod_devicetable.h
+++ b/include/linux/mod_devicetable.h
@@ -399,6 +399,17 @@ struct i2c_device_id {
399 __attribute__((aligned(sizeof(kernel_ulong_t)))); 399 __attribute__((aligned(sizeof(kernel_ulong_t))));
400}; 400};
401 401
402/* spi */
403
404#define SPI_NAME_SIZE 32
405#define SPI_MODULE_PREFIX "spi:"
406
407struct spi_device_id {
408 char name[SPI_NAME_SIZE];
409 kernel_ulong_t driver_data /* Data private to the driver */
410 __attribute__((aligned(sizeof(kernel_ulong_t))));
411};
412
402/* dmi */ 413/* dmi */
403enum dmi_field { 414enum dmi_field {
404 DMI_NONE, 415 DMI_NONE,
diff --git a/include/linux/mtd/nand.h b/include/linux/mtd/nand.h
index 4030ebada49e..7a232a9bdd62 100644
--- a/include/linux/mtd/nand.h
+++ b/include/linux/mtd/nand.h
@@ -121,6 +121,7 @@ typedef enum {
121 NAND_ECC_SOFT, 121 NAND_ECC_SOFT,
122 NAND_ECC_HW, 122 NAND_ECC_HW,
123 NAND_ECC_HW_SYNDROME, 123 NAND_ECC_HW_SYNDROME,
124 NAND_ECC_HW_OOB_FIRST,
124} nand_ecc_modes_t; 125} nand_ecc_modes_t;
125 126
126/* 127/*
@@ -271,13 +272,13 @@ struct nand_ecc_ctrl {
271 uint8_t *calc_ecc); 272 uint8_t *calc_ecc);
272 int (*read_page_raw)(struct mtd_info *mtd, 273 int (*read_page_raw)(struct mtd_info *mtd,
273 struct nand_chip *chip, 274 struct nand_chip *chip,
274 uint8_t *buf); 275 uint8_t *buf, int page);
275 void (*write_page_raw)(struct mtd_info *mtd, 276 void (*write_page_raw)(struct mtd_info *mtd,
276 struct nand_chip *chip, 277 struct nand_chip *chip,
277 const uint8_t *buf); 278 const uint8_t *buf);
278 int (*read_page)(struct mtd_info *mtd, 279 int (*read_page)(struct mtd_info *mtd,
279 struct nand_chip *chip, 280 struct nand_chip *chip,
280 uint8_t *buf); 281 uint8_t *buf, int page);
281 int (*read_subpage)(struct mtd_info *mtd, 282 int (*read_subpage)(struct mtd_info *mtd,
282 struct nand_chip *chip, 283 struct nand_chip *chip,
283 uint32_t offs, uint32_t len, 284 uint32_t offs, uint32_t len,
diff --git a/include/linux/mtd/nand_ecc.h b/include/linux/mtd/nand_ecc.h
index 090da505425d..052ea8ca2434 100644
--- a/include/linux/mtd/nand_ecc.h
+++ b/include/linux/mtd/nand_ecc.h
@@ -21,6 +21,12 @@ struct mtd_info;
21int nand_calculate_ecc(struct mtd_info *mtd, const u_char *dat, u_char *ecc_code); 21int nand_calculate_ecc(struct mtd_info *mtd, const u_char *dat, u_char *ecc_code);
22 22
23/* 23/*
24 * Detect and correct a 1 bit error for eccsize byte block
25 */
26int __nand_correct_data(u_char *dat, u_char *read_ecc, u_char *calc_ecc,
27 unsigned int eccsize);
28
29/*
24 * Detect and correct a 1 bit error for 256 byte block 30 * Detect and correct a 1 bit error for 256 byte block
25 */ 31 */
26int nand_correct_data(struct mtd_info *mtd, u_char *dat, u_char *read_ecc, u_char *calc_ecc); 32int nand_correct_data(struct mtd_info *mtd, u_char *dat, u_char *read_ecc, u_char *calc_ecc);
diff --git a/include/linux/mtd/onenand.h b/include/linux/mtd/onenand.h
index 8ed873374381..4e49f3350678 100644
--- a/include/linux/mtd/onenand.h
+++ b/include/linux/mtd/onenand.h
@@ -214,4 +214,12 @@ unsigned onenand_block(struct onenand_chip *this, loff_t addr);
214loff_t onenand_addr(struct onenand_chip *this, int block); 214loff_t onenand_addr(struct onenand_chip *this, int block);
215int flexonenand_region(struct mtd_info *mtd, loff_t addr); 215int flexonenand_region(struct mtd_info *mtd, loff_t addr);
216 216
217struct mtd_partition;
218
219struct onenand_platform_data {
220 void (*mmcontrol)(struct mtd_info *mtd, int sync_read);
221 struct mtd_partition *parts;
222 unsigned int nr_parts;
223};
224
217#endif /* __LINUX_MTD_ONENAND_H */ 225#endif /* __LINUX_MTD_ONENAND_H */
diff --git a/include/linux/mtd/onenand_regs.h b/include/linux/mtd/onenand_regs.h
index 86a6bbef6465..acadbf53a69f 100644
--- a/include/linux/mtd/onenand_regs.h
+++ b/include/linux/mtd/onenand_regs.h
@@ -207,6 +207,9 @@
207#define ONENAND_ECC_2BIT (1 << 1) 207#define ONENAND_ECC_2BIT (1 << 1)
208#define ONENAND_ECC_2BIT_ALL (0xAAAA) 208#define ONENAND_ECC_2BIT_ALL (0xAAAA)
209#define FLEXONENAND_UNCORRECTABLE_ERROR (0x1010) 209#define FLEXONENAND_UNCORRECTABLE_ERROR (0x1010)
210#define ONENAND_ECC_3BIT (1 << 2)
211#define ONENAND_ECC_4BIT (1 << 3)
212#define ONENAND_ECC_4BIT_UNCORRECTABLE (0x1010)
210 213
211/* 214/*
212 * One-Time Programmable (OTP) 215 * One-Time Programmable (OTP)
diff --git a/include/linux/nfsd/nfsd.h b/include/linux/nfsd/nfsd.h
index 03bbe9039104..510ffdd5020e 100644
--- a/include/linux/nfsd/nfsd.h
+++ b/include/linux/nfsd/nfsd.h
@@ -60,7 +60,7 @@ extern spinlock_t nfsd_drc_lock;
60extern unsigned int nfsd_drc_max_mem; 60extern unsigned int nfsd_drc_max_mem;
61extern unsigned int nfsd_drc_mem_used; 61extern unsigned int nfsd_drc_mem_used;
62 62
63extern struct seq_operations nfs_exports_op; 63extern const struct seq_operations nfs_exports_op;
64 64
65/* 65/*
66 * Function prototypes. 66 * Function prototypes.
diff --git a/include/linux/pci_ids.h b/include/linux/pci_ids.h
index 3b6b788fe2b5..7803565aa877 100644
--- a/include/linux/pci_ids.h
+++ b/include/linux/pci_ids.h
@@ -543,6 +543,7 @@
543#define PCI_DEVICE_ID_AMD_8131_BRIDGE 0x7450 543#define PCI_DEVICE_ID_AMD_8131_BRIDGE 0x7450
544#define PCI_DEVICE_ID_AMD_8131_APIC 0x7451 544#define PCI_DEVICE_ID_AMD_8131_APIC 0x7451
545#define PCI_DEVICE_ID_AMD_8132_BRIDGE 0x7458 545#define PCI_DEVICE_ID_AMD_8132_BRIDGE 0x7458
546#define PCI_DEVICE_ID_AMD_SB900_SMBUS 0x780b
546#define PCI_DEVICE_ID_AMD_CS5535_IDE 0x208F 547#define PCI_DEVICE_ID_AMD_CS5535_IDE 0x208F
547#define PCI_DEVICE_ID_AMD_CS5536_ISA 0x2090 548#define PCI_DEVICE_ID_AMD_CS5536_ISA 0x2090
548#define PCI_DEVICE_ID_AMD_CS5536_FLASH 0x2091 549#define PCI_DEVICE_ID_AMD_CS5536_FLASH 0x2091
diff --git a/include/linux/proc_fs.h b/include/linux/proc_fs.h
index e6e77d31c418..379eaed72d4b 100644
--- a/include/linux/proc_fs.h
+++ b/include/linux/proc_fs.h
@@ -78,10 +78,19 @@ struct proc_dir_entry {
78 struct list_head pde_openers; /* who did ->open, but not ->release */ 78 struct list_head pde_openers; /* who did ->open, but not ->release */
79}; 79};
80 80
81enum kcore_type {
82 KCORE_TEXT,
83 KCORE_VMALLOC,
84 KCORE_RAM,
85 KCORE_VMEMMAP,
86 KCORE_OTHER,
87};
88
81struct kcore_list { 89struct kcore_list {
82 struct kcore_list *next; 90 struct list_head list;
83 unsigned long addr; 91 unsigned long addr;
84 size_t size; 92 size_t size;
93 int type;
85}; 94};
86 95
87struct vmcore { 96struct vmcore {
@@ -233,11 +242,12 @@ static inline void dup_mm_exe_file(struct mm_struct *oldmm,
233#endif /* CONFIG_PROC_FS */ 242#endif /* CONFIG_PROC_FS */
234 243
235#if !defined(CONFIG_PROC_KCORE) 244#if !defined(CONFIG_PROC_KCORE)
236static inline void kclist_add(struct kcore_list *new, void *addr, size_t size) 245static inline void
246kclist_add(struct kcore_list *new, void *addr, size_t size, int type)
237{ 247{
238} 248}
239#else 249#else
240extern void kclist_add(struct kcore_list *, void *, size_t); 250extern void kclist_add(struct kcore_list *, void *, size_t, int type);
241#endif 251#endif
242 252
243union proc_op { 253union proc_op {
diff --git a/include/linux/regulator/consumer.h b/include/linux/regulator/consumer.h
index 277f4b964df5..490c5b37b6d7 100644
--- a/include/linux/regulator/consumer.h
+++ b/include/linux/regulator/consumer.h
@@ -125,6 +125,8 @@ struct regulator_bulk_data {
125/* regulator get and put */ 125/* regulator get and put */
126struct regulator *__must_check regulator_get(struct device *dev, 126struct regulator *__must_check regulator_get(struct device *dev,
127 const char *id); 127 const char *id);
128struct regulator *__must_check regulator_get_exclusive(struct device *dev,
129 const char *id);
128void regulator_put(struct regulator *regulator); 130void regulator_put(struct regulator *regulator);
129 131
130/* regulator output control and status */ 132/* regulator output control and status */
@@ -144,6 +146,8 @@ void regulator_bulk_free(int num_consumers,
144 146
145int regulator_count_voltages(struct regulator *regulator); 147int regulator_count_voltages(struct regulator *regulator);
146int regulator_list_voltage(struct regulator *regulator, unsigned selector); 148int regulator_list_voltage(struct regulator *regulator, unsigned selector);
149int regulator_is_supported_voltage(struct regulator *regulator,
150 int min_uV, int max_uV);
147int regulator_set_voltage(struct regulator *regulator, int min_uV, int max_uV); 151int regulator_set_voltage(struct regulator *regulator, int min_uV, int max_uV);
148int regulator_get_voltage(struct regulator *regulator); 152int regulator_get_voltage(struct regulator *regulator);
149int regulator_set_current_limit(struct regulator *regulator, 153int regulator_set_current_limit(struct regulator *regulator,
diff --git a/include/linux/regulator/driver.h b/include/linux/regulator/driver.h
index ce1be708ca16..31f2055eae28 100644
--- a/include/linux/regulator/driver.h
+++ b/include/linux/regulator/driver.h
@@ -37,7 +37,8 @@ enum regulator_status {
37 * 37 *
38 * @enable: Configure the regulator as enabled. 38 * @enable: Configure the regulator as enabled.
39 * @disable: Configure the regulator as disabled. 39 * @disable: Configure the regulator as disabled.
40 * @is_enabled: Return 1 if the regulator is enabled, 0 otherwise. 40 * @is_enabled: Return 1 if the regulator is enabled, 0 if not.
41 * May also return negative errno.
41 * 42 *
42 * @set_voltage: Set the voltage for the regulator within the range specified. 43 * @set_voltage: Set the voltage for the regulator within the range specified.
43 * The driver should select the voltage closest to min_uV. 44 * The driver should select the voltage closest to min_uV.
@@ -162,6 +163,8 @@ struct regulator_desc {
162struct regulator_dev { 163struct regulator_dev {
163 struct regulator_desc *desc; 164 struct regulator_desc *desc;
164 int use_count; 165 int use_count;
166 int open_count;
167 int exclusive;
165 168
166 /* lists we belong to */ 169 /* lists we belong to */
167 struct list_head list; /* list of all regulators */ 170 struct list_head list; /* list of all regulators */
diff --git a/include/linux/regulator/fixed.h b/include/linux/regulator/fixed.h
index 91b4da31f1b5..e94a4a1c7c8a 100644
--- a/include/linux/regulator/fixed.h
+++ b/include/linux/regulator/fixed.h
@@ -5,6 +5,9 @@
5 * 5 *
6 * Author: Mark Brown <broonie@opensource.wolfsonmicro.com> 6 * Author: Mark Brown <broonie@opensource.wolfsonmicro.com>
7 * 7 *
8 * Copyright (c) 2009 Nokia Corporation
9 * Roger Quadros <ext-roger.quadros@nokia.com>
10 *
8 * This program is free software; you can redistribute it and/or 11 * This program is free software; you can redistribute it and/or
9 * modify it under the terms of the GNU General Public License as 12 * modify it under the terms of the GNU General Public License as
10 * published by the Free Software Foundation; either version 2 of the 13 * published by the Free Software Foundation; either version 2 of the
@@ -16,9 +19,30 @@
16 19
17struct regulator_init_data; 20struct regulator_init_data;
18 21
22/**
23 * struct fixed_voltage_config - fixed_voltage_config structure
24 * @supply_name: Name of the regulator supply
25 * @microvolts: Output voltage of regulator
26 * @gpio: GPIO to use for enable control
27 * set to -EINVAL if not used
28 * @enable_high: Polarity of enable GPIO
29 * 1 = Active high, 0 = Active low
30 * @enabled_at_boot: Whether regulator has been enabled at
31 * boot or not. 1 = Yes, 0 = No
32 * This is used to keep the regulator at
33 * the default state
34 * @init_data: regulator_init_data
35 *
36 * This structure contains fixed voltage regulator configuration
37 * information that must be passed by platform code to the fixed
38 * voltage regulator driver.
39 */
19struct fixed_voltage_config { 40struct fixed_voltage_config {
20 const char *supply_name; 41 const char *supply_name;
21 int microvolts; 42 int microvolts;
43 int gpio;
44 unsigned enable_high:1;
45 unsigned enabled_at_boot:1;
22 struct regulator_init_data *init_data; 46 struct regulator_init_data *init_data;
23}; 47};
24 48
diff --git a/include/linux/regulator/machine.h b/include/linux/regulator/machine.h
index bac64fa390f2..87f5f176d4ef 100644
--- a/include/linux/regulator/machine.h
+++ b/include/linux/regulator/machine.h
@@ -41,7 +41,7 @@ struct regulator;
41#define REGULATOR_CHANGE_DRMS 0x10 41#define REGULATOR_CHANGE_DRMS 0x10
42 42
43/** 43/**
44 * struct regulator_state - regulator state during low power syatem states 44 * struct regulator_state - regulator state during low power system states
45 * 45 *
46 * This describes a regulators state during a system wide low power state. 46 * This describes a regulators state during a system wide low power state.
47 * 47 *
@@ -117,25 +117,37 @@ struct regulation_constraints {
117 /* mode to set on startup */ 117 /* mode to set on startup */
118 unsigned int initial_mode; 118 unsigned int initial_mode;
119 119
120 /* constriant flags */ 120 /* constraint flags */
121 unsigned always_on:1; /* regulator never off when system is on */ 121 unsigned always_on:1; /* regulator never off when system is on */
122 unsigned boot_on:1; /* bootloader/firmware enabled regulator */ 122 unsigned boot_on:1; /* bootloader/firmware enabled regulator */
123 unsigned apply_uV:1; /* apply uV constraint iff min == max */ 123 unsigned apply_uV:1; /* apply uV constraint if min == max */
124}; 124};
125 125
126/** 126/**
127 * struct regulator_consumer_supply - supply -> device mapping 127 * struct regulator_consumer_supply - supply -> device mapping
128 * 128 *
129 * This maps a supply name to a device. 129 * This maps a supply name to a device. Only one of dev or dev_name
130 * can be specified. Use of dev_name allows support for buses which
131 * make struct device available late such as I2C and is the preferred
132 * form.
130 * 133 *
131 * @dev: Device structure for the consumer. 134 * @dev: Device structure for the consumer.
135 * @dev_name: Result of dev_name() for the consumer.
132 * @supply: Name for the supply. 136 * @supply: Name for the supply.
133 */ 137 */
134struct regulator_consumer_supply { 138struct regulator_consumer_supply {
135 struct device *dev; /* consumer */ 139 struct device *dev; /* consumer */
140 const char *dev_name; /* dev_name() for consumer */
136 const char *supply; /* consumer supply - e.g. "vcc" */ 141 const char *supply; /* consumer supply - e.g. "vcc" */
137}; 142};
138 143
144/* Initialize struct regulator_consumer_supply */
145#define REGULATOR_SUPPLY(_name, _dev_name) \
146{ \
147 .supply = _name, \
148 .dev_name = _dev_name, \
149}
150
139/** 151/**
140 * struct regulator_init_data - regulator platform initialisation data. 152 * struct regulator_init_data - regulator platform initialisation data.
141 * 153 *
@@ -166,6 +178,12 @@ struct regulator_init_data {
166 178
167int regulator_suspend_prepare(suspend_state_t state); 179int regulator_suspend_prepare(suspend_state_t state);
168 180
181#ifdef CONFIG_REGULATOR
169void regulator_has_full_constraints(void); 182void regulator_has_full_constraints(void);
183#else
184static inline void regulator_has_full_constraints(void)
185{
186}
187#endif
170 188
171#endif 189#endif
diff --git a/include/linux/regulator/max1586.h b/include/linux/regulator/max1586.h
index 44563192bf16..de9a7fae20be 100644
--- a/include/linux/regulator/max1586.h
+++ b/include/linux/regulator/max1586.h
@@ -36,7 +36,7 @@
36 * max1586_subdev_data - regulator data 36 * max1586_subdev_data - regulator data
37 * @id: regulator Id (either MAX1586_V3 or MAX1586_V6) 37 * @id: regulator Id (either MAX1586_V3 or MAX1586_V6)
38 * @name: regulator cute name (example for V3: "vcc_core") 38 * @name: regulator cute name (example for V3: "vcc_core")
39 * @platform_data: regulator init data (contraints, supplies, ...) 39 * @platform_data: regulator init data (constraints, supplies, ...)
40 */ 40 */
41struct max1586_subdev_data { 41struct max1586_subdev_data {
42 int id; 42 int id;
@@ -46,7 +46,7 @@ struct max1586_subdev_data {
46 46
47/** 47/**
48 * max1586_platform_data - platform data for max1586 48 * max1586_platform_data - platform data for max1586
49 * @num_subdevs: number of regultors used (may be 1 or 2) 49 * @num_subdevs: number of regulators used (may be 1 or 2)
50 * @subdevs: regulator used 50 * @subdevs: regulator used
51 * At most, there will be a regulator for V3 and one for V6 voltages. 51 * At most, there will be a regulator for V3 and one for V6 voltages.
52 * @v3_gain: gain on the V3 voltage output multiplied by 1e6. 52 * @v3_gain: gain on the V3 voltage output multiplied by 1e6.
diff --git a/include/linux/sched.h b/include/linux/sched.h
index 97b10da0a3ea..cbf2a3b46280 100644
--- a/include/linux/sched.h
+++ b/include/linux/sched.h
@@ -426,6 +426,15 @@ static inline unsigned long get_mm_hiwater_rss(struct mm_struct *mm)
426 return max(mm->hiwater_rss, get_mm_rss(mm)); 426 return max(mm->hiwater_rss, get_mm_rss(mm));
427} 427}
428 428
429static inline void setmax_mm_hiwater_rss(unsigned long *maxrss,
430 struct mm_struct *mm)
431{
432 unsigned long hiwater_rss = get_mm_hiwater_rss(mm);
433
434 if (*maxrss < hiwater_rss)
435 *maxrss = hiwater_rss;
436}
437
429static inline unsigned long get_mm_hiwater_vm(struct mm_struct *mm) 438static inline unsigned long get_mm_hiwater_vm(struct mm_struct *mm)
430{ 439{
431 return max(mm->hiwater_vm, mm->total_vm); 440 return max(mm->hiwater_vm, mm->total_vm);
@@ -484,6 +493,13 @@ struct pacct_struct {
484 unsigned long ac_minflt, ac_majflt; 493 unsigned long ac_minflt, ac_majflt;
485}; 494};
486 495
496struct cpu_itimer {
497 cputime_t expires;
498 cputime_t incr;
499 u32 error;
500 u32 incr_error;
501};
502
487/** 503/**
488 * struct task_cputime - collected CPU time counts 504 * struct task_cputime - collected CPU time counts
489 * @utime: time spent in user mode, in &cputime_t units 505 * @utime: time spent in user mode, in &cputime_t units
@@ -578,9 +594,12 @@ struct signal_struct {
578 struct pid *leader_pid; 594 struct pid *leader_pid;
579 ktime_t it_real_incr; 595 ktime_t it_real_incr;
580 596
581 /* ITIMER_PROF and ITIMER_VIRTUAL timers for the process */ 597 /*
582 cputime_t it_prof_expires, it_virt_expires; 598 * ITIMER_PROF and ITIMER_VIRTUAL timers for the process, we use
583 cputime_t it_prof_incr, it_virt_incr; 599 * CPUCLOCK_PROF and CPUCLOCK_VIRT for indexing array as these
600 * values are defined to 0 and 1 respectively
601 */
602 struct cpu_itimer it[2];
584 603
585 /* 604 /*
586 * Thread group totals for process CPU timers. 605 * Thread group totals for process CPU timers.
@@ -612,6 +631,7 @@ struct signal_struct {
612 unsigned long nvcsw, nivcsw, cnvcsw, cnivcsw; 631 unsigned long nvcsw, nivcsw, cnvcsw, cnivcsw;
613 unsigned long min_flt, maj_flt, cmin_flt, cmaj_flt; 632 unsigned long min_flt, maj_flt, cmin_flt, cmaj_flt;
614 unsigned long inblock, oublock, cinblock, coublock; 633 unsigned long inblock, oublock, cinblock, coublock;
634 unsigned long maxrss, cmaxrss;
615 struct task_io_accounting ioac; 635 struct task_io_accounting ioac;
616 636
617 /* 637 /*
@@ -1519,6 +1539,7 @@ struct task_struct {
1519 /* bitmask of trace recursion */ 1539 /* bitmask of trace recursion */
1520 unsigned long trace_recursion; 1540 unsigned long trace_recursion;
1521#endif /* CONFIG_TRACING */ 1541#endif /* CONFIG_TRACING */
1542 unsigned long stack_start;
1522}; 1543};
1523 1544
1524/* Future-safe accessor for struct task_struct's cpus_allowed. */ 1545/* Future-safe accessor for struct task_struct's cpus_allowed. */
diff --git a/include/linux/sfi.h b/include/linux/sfi.h
new file mode 100644
index 000000000000..9a6f7607174e
--- /dev/null
+++ b/include/linux/sfi.h
@@ -0,0 +1,206 @@
1/* sfi.h Simple Firmware Interface */
2
3/*
4
5 This file is provided under a dual BSD/GPLv2 license. When using or
6 redistributing this file, you may do so under either license.
7
8 GPL LICENSE SUMMARY
9
10 Copyright(c) 2009 Intel Corporation. All rights reserved.
11
12 This program is free software; you can redistribute it and/or modify
13 it under the terms of version 2 of the GNU General Public License as
14 published by the Free Software Foundation.
15
16 This program is distributed in the hope that it will be useful, but
17 WITHOUT ANY WARRANTY; without even the implied warranty of
18 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
19 General Public License for more details.
20
21 You should have received a copy of the GNU General Public License
22 along with this program; if not, write to the Free Software
23 Foundation, Inc., 51 Franklin St - Fifth Floor, Boston, MA 02110-1301 USA.
24 The full GNU General Public License is included in this distribution
25 in the file called LICENSE.GPL.
26
27 BSD LICENSE
28
29 Copyright(c) 2009 Intel Corporation. All rights reserved.
30
31 Redistribution and use in source and binary forms, with or without
32 modification, are permitted provided that the following conditions
33 are met:
34
35 * Redistributions of source code must retain the above copyright
36 notice, this list of conditions and the following disclaimer.
37 * Redistributions in binary form must reproduce the above copyright
38 notice, this list of conditions and the following disclaimer in
39 the documentation and/or other materials provided with the
40 distribution.
41 * Neither the name of Intel Corporation nor the names of its
42 contributors may be used to endorse or promote products derived
43 from this software without specific prior written permission.
44
45 THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
46 "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
47 LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
48 A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
49 OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
50 SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
51 LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
52 DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
53 THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
54 (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
55 OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
56
57*/
58
59#ifndef _LINUX_SFI_H
60#define _LINUX_SFI_H
61
62/* Table signatures reserved by the SFI specification */
63#define SFI_SIG_SYST "SYST"
64#define SFI_SIG_FREQ "FREQ"
65#define SFI_SIG_IDLE "IDLE"
66#define SFI_SIG_CPUS "CPUS"
67#define SFI_SIG_MTMR "MTMR"
68#define SFI_SIG_MRTC "MRTC"
69#define SFI_SIG_MMAP "MMAP"
70#define SFI_SIG_APIC "APIC"
71#define SFI_SIG_XSDT "XSDT"
72#define SFI_SIG_WAKE "WAKE"
73#define SFI_SIG_SPIB "SPIB"
74#define SFI_SIG_I2CB "I2CB"
75#define SFI_SIG_GPEM "GPEM"
76
77#define SFI_SIGNATURE_SIZE 4
78#define SFI_OEM_ID_SIZE 6
79#define SFI_OEM_TABLE_ID_SIZE 8
80
81#define SFI_SYST_SEARCH_BEGIN 0x000E0000
82#define SFI_SYST_SEARCH_END 0x000FFFFF
83
84#define SFI_GET_NUM_ENTRIES(ptable, entry_type) \
85 ((ptable->header.len - sizeof(struct sfi_table_header)) / \
86 (sizeof(entry_type)))
87/*
88 * Table structures must be byte-packed to match the SFI specification,
89 * as they are provided by the BIOS.
90 */
91struct sfi_table_header {
92 char sig[SFI_SIGNATURE_SIZE];
93 u32 len;
94 u8 rev;
95 u8 csum;
96 char oem_id[SFI_OEM_ID_SIZE];
97 char oem_table_id[SFI_OEM_TABLE_ID_SIZE];
98} __packed;
99
100struct sfi_table_simple {
101 struct sfi_table_header header;
102 u64 pentry[1];
103} __packed;
104
105/* Comply with UEFI spec 2.1 */
106struct sfi_mem_entry {
107 u32 type;
108 u64 phys_start;
109 u64 virt_start;
110 u64 pages;
111 u64 attrib;
112} __packed;
113
114struct sfi_cpu_table_entry {
115 u32 apic_id;
116} __packed;
117
118struct sfi_cstate_table_entry {
119 u32 hint; /* MWAIT hint */
120 u32 latency; /* latency in ms */
121} __packed;
122
123struct sfi_apic_table_entry {
124 u64 phys_addr; /* phy base addr for APIC reg */
125} __packed;
126
127struct sfi_freq_table_entry {
128 u32 freq_mhz; /* in MHZ */
129 u32 latency; /* transition latency in ms */
130 u32 ctrl_val; /* value to write to PERF_CTL */
131} __packed;
132
133struct sfi_wake_table_entry {
134 u64 phys_addr; /* pointer to where the wake vector locates */
135} __packed;
136
137struct sfi_timer_table_entry {
138 u64 phys_addr; /* phy base addr for the timer */
139 u32 freq_hz; /* in HZ */
140 u32 irq;
141} __packed;
142
143struct sfi_rtc_table_entry {
144 u64 phys_addr; /* phy base addr for the RTC */
145 u32 irq;
146} __packed;
147
148struct sfi_spi_table_entry {
149 u16 host_num; /* attached to host 0, 1...*/
150 u16 cs; /* chip select */
151 u16 irq_info;
152 char name[16];
153 u8 dev_info[10];
154} __packed;
155
156struct sfi_i2c_table_entry {
157 u16 host_num;
158 u16 addr; /* slave addr */
159 u16 irq_info;
160 char name[16];
161 u8 dev_info[10];
162} __packed;
163
164struct sfi_gpe_table_entry {
165 u16 logical_id; /* logical id */
166 u16 phys_id; /* physical GPE id */
167} __packed;
168
169
170typedef int (*sfi_table_handler) (struct sfi_table_header *table);
171
172#ifdef CONFIG_SFI
173extern void __init sfi_init(void);
174extern int __init sfi_platform_init(void);
175extern void __init sfi_init_late(void);
176extern int sfi_table_parse(char *signature, char *oem_id, char *oem_table_id,
177 sfi_table_handler handler);
178
179extern int sfi_disabled;
180static inline void disable_sfi(void)
181{
182 sfi_disabled = 1;
183}
184
185#else /* !CONFIG_SFI */
186
187static inline void sfi_init(void)
188{
189}
190
191static inline void sfi_init_late(void)
192{
193}
194
195#define sfi_disabled 0
196
197static inline int sfi_table_parse(char *signature, char *oem_id,
198 char *oem_table_id,
199 sfi_table_handler handler)
200{
201 return -1;
202}
203
204#endif /* !CONFIG_SFI */
205
206#endif /*_LINUX_SFI_H*/
diff --git a/include/linux/sfi_acpi.h b/include/linux/sfi_acpi.h
new file mode 100644
index 000000000000..c4a5a8cd4469
--- /dev/null
+++ b/include/linux/sfi_acpi.h
@@ -0,0 +1,93 @@
1/* sfi.h Simple Firmware Interface */
2
3/*
4
5 This file is provided under a dual BSD/GPLv2 license. When using or
6 redistributing this file, you may do so under either license.
7
8 GPL LICENSE SUMMARY
9
10 Copyright(c) 2009 Intel Corporation. All rights reserved.
11
12 This program is free software; you can redistribute it and/or modify
13 it under the terms of version 2 of the GNU General Public License as
14 published by the Free Software Foundation.
15
16 This program is distributed in the hope that it will be useful, but
17 WITHOUT ANY WARRANTY; without even the implied warranty of
18 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
19 General Public License for more details.
20
21 You should have received a copy of the GNU General Public License
22 along with this program; if not, write to the Free Software
23 Foundation, Inc., 51 Franklin St - Fifth Floor, Boston, MA 02110-1301 USA.
24 The full GNU General Public License is included in this distribution
25 in the file called LICENSE.GPL.
26
27 BSD LICENSE
28
29 Copyright(c) 2009 Intel Corporation. All rights reserved.
30
31 Redistribution and use in source and binary forms, with or without
32 modification, are permitted provided that the following conditions
33 are met:
34
35 * Redistributions of source code must retain the above copyright
36 notice, this list of conditions and the following disclaimer.
37 * Redistributions in binary form must reproduce the above copyright
38 notice, this list of conditions and the following disclaimer in
39 the documentation and/or other materials provided with the
40 distribution.
41 * Neither the name of Intel Corporation nor the names of its
42 contributors may be used to endorse or promote products derived
43 from this software without specific prior written permission.
44
45 THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
46 "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
47 LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
48 A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
49 OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
50 SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
51 LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
52 DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
53 THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
54 (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
55 OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
56
57*/
58
59#ifndef _LINUX_SFI_ACPI_H
60#define _LINUX_SFI_ACPI_H
61
62#ifdef CONFIG_SFI
63#include <acpi/acpi.h> /* struct acpi_table_header */
64
65extern int sfi_acpi_table_parse(char *signature, char *oem_id,
66 char *oem_table_id,
67 int (*handler)(struct acpi_table_header *));
68
69static inline int acpi_sfi_table_parse(char *signature,
70 int (*handler)(struct acpi_table_header *))
71{
72 if (!acpi_table_parse(signature, handler))
73 return 0;
74
75 return sfi_acpi_table_parse(signature, NULL, NULL, handler);
76}
77#else /* !CONFIG_SFI */
78
79static inline int sfi_acpi_table_parse(char *signature, char *oem_id,
80 char *oem_table_id,
81 int (*handler)(struct acpi_table_header *))
82{
83 return -1;
84}
85
86static inline int acpi_sfi_table_parse(char *signature,
87 int (*handler)(struct acpi_table_header *))
88{
89 return acpi_table_parse(signature, handler);
90}
91#endif /* !CONFIG_SFI */
92
93#endif /*_LINUX_SFI_ACPI_H*/
diff --git a/include/linux/spi/mc33880.h b/include/linux/spi/mc33880.h
new file mode 100644
index 000000000000..82ffccd6fbe5
--- /dev/null
+++ b/include/linux/spi/mc33880.h
@@ -0,0 +1,10 @@
1#ifndef LINUX_SPI_MC33880_H
2#define LINUX_SPI_MC33880_H
3
4struct mc33880_platform_data {
5 /* number assigned to the first GPIO */
6 unsigned base;
7};
8
9#endif
10
diff --git a/include/linux/spi/spi.h b/include/linux/spi/spi.h
index c47c4b4da97e..97b60b37f445 100644
--- a/include/linux/spi/spi.h
+++ b/include/linux/spi/spi.h
@@ -20,6 +20,7 @@
20#define __LINUX_SPI_H 20#define __LINUX_SPI_H
21 21
22#include <linux/device.h> 22#include <linux/device.h>
23#include <linux/mod_devicetable.h>
23 24
24/* 25/*
25 * INTERFACES between SPI master-side drivers and SPI infrastructure. 26 * INTERFACES between SPI master-side drivers and SPI infrastructure.
@@ -86,7 +87,7 @@ struct spi_device {
86 int irq; 87 int irq;
87 void *controller_state; 88 void *controller_state;
88 void *controller_data; 89 void *controller_data;
89 char modalias[32]; 90 char modalias[SPI_NAME_SIZE];
90 91
91 /* 92 /*
92 * likely need more hooks for more protocol options affecting how 93 * likely need more hooks for more protocol options affecting how
@@ -145,6 +146,7 @@ struct spi_message;
145 146
146/** 147/**
147 * struct spi_driver - Host side "protocol" driver 148 * struct spi_driver - Host side "protocol" driver
149 * @id_table: List of SPI devices supported by this driver
148 * @probe: Binds this driver to the spi device. Drivers can verify 150 * @probe: Binds this driver to the spi device. Drivers can verify
149 * that the device is actually present, and may need to configure 151 * that the device is actually present, and may need to configure
150 * characteristics (such as bits_per_word) which weren't needed for 152 * characteristics (such as bits_per_word) which weren't needed for
@@ -170,6 +172,7 @@ struct spi_message;
170 * MMC, RTC, filesystem character device nodes, and hardware monitoring. 172 * MMC, RTC, filesystem character device nodes, and hardware monitoring.
171 */ 173 */
172struct spi_driver { 174struct spi_driver {
175 const struct spi_device_id *id_table;
173 int (*probe)(struct spi_device *spi); 176 int (*probe)(struct spi_device *spi);
174 int (*remove)(struct spi_device *spi); 177 int (*remove)(struct spi_device *spi);
175 void (*shutdown)(struct spi_device *spi); 178 void (*shutdown)(struct spi_device *spi);
@@ -207,6 +210,8 @@ static inline void spi_unregister_driver(struct spi_driver *sdrv)
207 * each slave has a chipselect signal, but it's common that not 210 * each slave has a chipselect signal, but it's common that not
208 * every chipselect is connected to a slave. 211 * every chipselect is connected to a slave.
209 * @dma_alignment: SPI controller constraint on DMA buffers alignment. 212 * @dma_alignment: SPI controller constraint on DMA buffers alignment.
213 * @mode_bits: flags understood by this controller driver
214 * @flags: other constraints relevant to this driver
210 * @setup: updates the device mode and clocking records used by a 215 * @setup: updates the device mode and clocking records used by a
211 * device's SPI controller; protocol code may call this. This 216 * device's SPI controller; protocol code may call this. This
212 * must fail if an unrecognized or unsupported mode is requested. 217 * must fail if an unrecognized or unsupported mode is requested.
@@ -253,6 +258,8 @@ struct spi_master {
253 /* other constraints relevant to this driver */ 258 /* other constraints relevant to this driver */
254 u16 flags; 259 u16 flags;
255#define SPI_MASTER_HALF_DUPLEX BIT(0) /* can't do full duplex */ 260#define SPI_MASTER_HALF_DUPLEX BIT(0) /* can't do full duplex */
261#define SPI_MASTER_NO_RX BIT(1) /* can't do buffer read */
262#define SPI_MASTER_NO_TX BIT(2) /* can't do buffer write */
256 263
257 /* Setup mode and clock, etc (spi driver may call many times). 264 /* Setup mode and clock, etc (spi driver may call many times).
258 * 265 *
@@ -533,42 +540,7 @@ static inline void spi_message_free(struct spi_message *m)
533} 540}
534 541
535extern int spi_setup(struct spi_device *spi); 542extern int spi_setup(struct spi_device *spi);
536 543extern int spi_async(struct spi_device *spi, struct spi_message *message);
537/**
538 * spi_async - asynchronous SPI transfer
539 * @spi: device with which data will be exchanged
540 * @message: describes the data transfers, including completion callback
541 * Context: any (irqs may be blocked, etc)
542 *
543 * This call may be used in_irq and other contexts which can't sleep,
544 * as well as from task contexts which can sleep.
545 *
546 * The completion callback is invoked in a context which can't sleep.
547 * Before that invocation, the value of message->status is undefined.
548 * When the callback is issued, message->status holds either zero (to
549 * indicate complete success) or a negative error code. After that
550 * callback returns, the driver which issued the transfer request may
551 * deallocate the associated memory; it's no longer in use by any SPI
552 * core or controller driver code.
553 *
554 * Note that although all messages to a spi_device are handled in
555 * FIFO order, messages may go to different devices in other orders.
556 * Some device might be higher priority, or have various "hard" access
557 * time requirements, for example.
558 *
559 * On detection of any fault during the transfer, processing of
560 * the entire message is aborted, and the device is deselected.
561 * Until returning from the associated message completion callback,
562 * no other spi_message queued to that device will be processed.
563 * (This rule applies equally to all the synchronous transfer calls,
564 * which are wrappers around this core asynchronous primitive.)
565 */
566static inline int
567spi_async(struct spi_device *spi, struct spi_message *message)
568{
569 message->spi = spi;
570 return spi->master->transfer(spi, message);
571}
572 544
573/*---------------------------------------------------------------------------*/ 545/*---------------------------------------------------------------------------*/
574 546
@@ -732,7 +704,7 @@ struct spi_board_info {
732 * controller_data goes to spi_device.controller_data, 704 * controller_data goes to spi_device.controller_data,
733 * irq is copied too 705 * irq is copied too
734 */ 706 */
735 char modalias[32]; 707 char modalias[SPI_NAME_SIZE];
736 const void *platform_data; 708 const void *platform_data;
737 void *controller_data; 709 void *controller_data;
738 int irq; 710 int irq;
@@ -800,4 +772,7 @@ spi_unregister_device(struct spi_device *spi)
800 device_unregister(&spi->dev); 772 device_unregister(&spi->dev);
801} 773}
802 774
775extern const struct spi_device_id *
776spi_get_device_id(const struct spi_device *sdev);
777
803#endif /* __LINUX_SPI_H */ 778#endif /* __LINUX_SPI_H */
diff --git a/include/linux/syscalls.h b/include/linux/syscalls.h
index 8d8285a10db9..a990ace1a838 100644
--- a/include/linux/syscalls.h
+++ b/include/linux/syscalls.h
@@ -460,8 +460,7 @@ asmlinkage long sys_mount(char __user *dev_name, char __user *dir_name,
460 void __user *data); 460 void __user *data);
461asmlinkage long sys_umount(char __user *name, int flags); 461asmlinkage long sys_umount(char __user *name, int flags);
462asmlinkage long sys_oldumount(char __user *name); 462asmlinkage long sys_oldumount(char __user *name);
463asmlinkage long sys_truncate(const char __user *path, 463asmlinkage long sys_truncate(const char __user *path, long length);
464 unsigned long length);
465asmlinkage long sys_ftruncate(unsigned int fd, unsigned long length); 464asmlinkage long sys_ftruncate(unsigned int fd, unsigned long length);
466asmlinkage long sys_stat(char __user *filename, 465asmlinkage long sys_stat(char __user *filename,
467 struct __old_kernel_stat __user *statbuf); 466 struct __old_kernel_stat __user *statbuf);
diff --git a/include/linux/ucb1400.h b/include/linux/ucb1400.h
index ae779bb8cc0f..adb44066680c 100644
--- a/include/linux/ucb1400.h
+++ b/include/linux/ucb1400.h
@@ -26,6 +26,7 @@
26#include <sound/ac97_codec.h> 26#include <sound/ac97_codec.h>
27#include <linux/mutex.h> 27#include <linux/mutex.h>
28#include <linux/platform_device.h> 28#include <linux/platform_device.h>
29#include <linux/gpio.h>
29 30
30/* 31/*
31 * UCB1400 AC-link registers 32 * UCB1400 AC-link registers
@@ -82,6 +83,17 @@
82#define UCB_ID 0x7e 83#define UCB_ID 0x7e
83#define UCB_ID_1400 0x4304 84#define UCB_ID_1400 0x4304
84 85
86struct ucb1400_gpio_data {
87 int gpio_offset;
88 int (*gpio_setup)(struct device *dev, int ngpio);
89 int (*gpio_teardown)(struct device *dev, int ngpio);
90};
91
92struct ucb1400_gpio {
93 struct gpio_chip gc;
94 struct snd_ac97 *ac97;
95};
96
85struct ucb1400_ts { 97struct ucb1400_ts {
86 struct input_dev *ts_idev; 98 struct input_dev *ts_idev;
87 struct task_struct *ts_task; 99 struct task_struct *ts_task;
@@ -95,6 +107,7 @@ struct ucb1400_ts {
95 107
96struct ucb1400 { 108struct ucb1400 {
97 struct platform_device *ucb1400_ts; 109 struct platform_device *ucb1400_ts;
110 struct platform_device *ucb1400_gpio;
98}; 111};
99 112
100static inline u16 ucb1400_reg_read(struct snd_ac97 *ac97, u16 reg) 113static inline u16 ucb1400_reg_read(struct snd_ac97 *ac97, u16 reg)
@@ -147,4 +160,10 @@ static inline void ucb1400_adc_disable(struct snd_ac97 *ac97)
147unsigned int ucb1400_adc_read(struct snd_ac97 *ac97, u16 adc_channel, 160unsigned int ucb1400_adc_read(struct snd_ac97 *ac97, u16 adc_channel,
148 int adcsync); 161 int adcsync);
149 162
163#ifdef CONFIG_GPIO_UCB1400
164void __init ucb1400_gpio_set_data(struct ucb1400_gpio_data *data);
165#else
166static inline void ucb1400_gpio_set_data(struct ucb1400_gpio_data *data) {}
167#endif
168
150#endif 169#endif
diff --git a/include/linux/usb.h b/include/linux/usb.h
index 19fabc487beb..a34fa89f1474 100644
--- a/include/linux/usb.h
+++ b/include/linux/usb.h
@@ -195,7 +195,7 @@ struct usb_interface {
195 195
196 struct device dev; /* interface specific device info */ 196 struct device dev; /* interface specific device info */
197 struct device *usb_dev; 197 struct device *usb_dev;
198 int pm_usage_cnt; /* usage counter for autosuspend */ 198 atomic_t pm_usage_cnt; /* usage counter for autosuspend */
199 struct work_struct reset_ws; /* for resets in atomic context */ 199 struct work_struct reset_ws; /* for resets in atomic context */
200}; 200};
201#define to_usb_interface(d) container_of(d, struct usb_interface, dev) 201#define to_usb_interface(d) container_of(d, struct usb_interface, dev)
@@ -551,13 +551,13 @@ extern void usb_autopm_put_interface_async(struct usb_interface *intf);
551 551
552static inline void usb_autopm_enable(struct usb_interface *intf) 552static inline void usb_autopm_enable(struct usb_interface *intf)
553{ 553{
554 intf->pm_usage_cnt = 0; 554 atomic_set(&intf->pm_usage_cnt, 0);
555 usb_autopm_set_interface(intf); 555 usb_autopm_set_interface(intf);
556} 556}
557 557
558static inline void usb_autopm_disable(struct usb_interface *intf) 558static inline void usb_autopm_disable(struct usb_interface *intf)
559{ 559{
560 intf->pm_usage_cnt = 1; 560 atomic_set(&intf->pm_usage_cnt, 1);
561 usb_autopm_set_interface(intf); 561 usb_autopm_set_interface(intf);
562} 562}
563 563
@@ -1036,9 +1036,10 @@ typedef void (*usb_complete_t)(struct urb *);
1036 * @transfer_flags: A variety of flags may be used to affect how URB 1036 * @transfer_flags: A variety of flags may be used to affect how URB
1037 * submission, unlinking, or operation are handled. Different 1037 * submission, unlinking, or operation are handled. Different
1038 * kinds of URB can use different flags. 1038 * kinds of URB can use different flags.
1039 * @transfer_buffer: This identifies the buffer to (or from) which 1039 * @transfer_buffer: This identifies the buffer to (or from) which the I/O
1040 * the I/O request will be performed (unless URB_NO_TRANSFER_DMA_MAP 1040 * request will be performed unless URB_NO_TRANSFER_DMA_MAP is set
1041 * is set). This buffer must be suitable for DMA; allocate it with 1041 * (however, do not leave garbage in transfer_buffer even then).
1042 * This buffer must be suitable for DMA; allocate it with
1042 * kmalloc() or equivalent. For transfers to "in" endpoints, contents 1043 * kmalloc() or equivalent. For transfers to "in" endpoints, contents
1043 * of this buffer will be modified. This buffer is used for the data 1044 * of this buffer will be modified. This buffer is used for the data
1044 * stage of control transfers. 1045 * stage of control transfers.
@@ -1104,9 +1105,15 @@ typedef void (*usb_complete_t)(struct urb *);
1104 * allocate a DMA buffer with usb_buffer_alloc() or call usb_buffer_map(). 1105 * allocate a DMA buffer with usb_buffer_alloc() or call usb_buffer_map().
1105 * When these transfer flags are provided, host controller drivers will 1106 * When these transfer flags are provided, host controller drivers will
1106 * attempt to use the dma addresses found in the transfer_dma and/or 1107 * attempt to use the dma addresses found in the transfer_dma and/or
1107 * setup_dma fields rather than determining a dma address themselves. (Note 1108 * setup_dma fields rather than determining a dma address themselves.
1108 * that transfer_buffer and setup_packet must still be set because not all 1109 *
1109 * host controllers use DMA, nor do virtual root hubs). 1110 * Note that transfer_buffer must still be set if the controller
1111 * does not support DMA (as indicated by bus.uses_dma) and when talking
1112 * to root hub. If you have to trasfer between highmem zone and the device
1113 * on such controller, create a bounce buffer or bail out with an error.
1114 * If transfer_buffer cannot be set (is in highmem) and the controller is DMA
1115 * capable, assign NULL to it, so that usbmon knows not to use the value.
1116 * The setup_packet must always be set, so it cannot be located in highmem.
1110 * 1117 *
1111 * Initialization: 1118 * Initialization:
1112 * 1119 *
diff --git a/include/linux/usb/audio.h b/include/linux/usb/audio.h
index b5744bc218ab..eaf9dffe0a01 100644
--- a/include/linux/usb/audio.h
+++ b/include/linux/usb/audio.h
@@ -24,88 +24,78 @@
24#define USB_SUBCLASS_AUDIOCONTROL 0x01 24#define USB_SUBCLASS_AUDIOCONTROL 0x01
25#define USB_SUBCLASS_AUDIOSTREAMING 0x02 25#define USB_SUBCLASS_AUDIOSTREAMING 0x02
26#define USB_SUBCLASS_MIDISTREAMING 0x03 26#define USB_SUBCLASS_MIDISTREAMING 0x03
27#define USB_SUBCLASS_VENDOR_SPEC 0xff 27
28 28/* A.5 Audio Class-Specific AC Interface Descriptor Subtypes */
29/* A.5 Audio Class-Specific AC interface Descriptor Subtypes*/ 29#define UAC_HEADER 0x01
30#define HEADER 0x01 30#define UAC_INPUT_TERMINAL 0x02
31#define INPUT_TERMINAL 0x02 31#define UAC_OUTPUT_TERMINAL 0x03
32#define OUTPUT_TERMINAL 0x03 32#define UAC_MIXER_UNIT 0x04
33#define MIXER_UNIT 0x04 33#define UAC_SELECTOR_UNIT 0x05
34#define SELECTOR_UNIT 0x05 34#define UAC_FEATURE_UNIT 0x06
35#define FEATURE_UNIT 0x06 35#define UAC_PROCESSING_UNIT 0x07
36#define PROCESSING_UNIT 0x07 36#define UAC_EXTENSION_UNIT 0x08
37#define EXTENSION_UNIT 0x08 37
38 38/* A.6 Audio Class-Specific AS Interface Descriptor Subtypes */
39#define AS_GENERAL 0x01 39#define UAC_AS_GENERAL 0x01
40#define FORMAT_TYPE 0x02 40#define UAC_FORMAT_TYPE 0x02
41#define FORMAT_SPECIFIC 0x03 41#define UAC_FORMAT_SPECIFIC 0x03
42 42
43#define EP_GENERAL 0x01 43/* A.8 Audio Class-Specific Endpoint Descriptor Subtypes */
44 44#define UAC_EP_GENERAL 0x01
45#define MS_GENERAL 0x01 45
46#define MIDI_IN_JACK 0x02 46/* A.9 Audio Class-Specific Request Codes */
47#define MIDI_OUT_JACK 0x03 47#define UAC_SET_ 0x00
48 48#define UAC_GET_ 0x80
49/* endpoint attributes */ 49
50#define EP_ATTR_MASK 0x0c 50#define UAC__CUR 0x1
51#define EP_ATTR_ASYNC 0x04 51#define UAC__MIN 0x2
52#define EP_ATTR_ADAPTIVE 0x08 52#define UAC__MAX 0x3
53#define EP_ATTR_SYNC 0x0c 53#define UAC__RES 0x4
54 54#define UAC__MEM 0x5
55/* cs endpoint attributes */ 55
56#define EP_CS_ATTR_SAMPLE_RATE 0x01 56#define UAC_SET_CUR (UAC_SET_ | UAC__CUR)
57#define EP_CS_ATTR_PITCH_CONTROL 0x02 57#define UAC_GET_CUR (UAC_GET_ | UAC__CUR)
58#define EP_CS_ATTR_FILL_MAX 0x80 58#define UAC_SET_MIN (UAC_SET_ | UAC__MIN)
59 59#define UAC_GET_MIN (UAC_GET_ | UAC__MIN)
60/* Audio Class specific Request Codes */ 60#define UAC_SET_MAX (UAC_SET_ | UAC__MAX)
61#define USB_AUDIO_SET_INTF 0x21 61#define UAC_GET_MAX (UAC_GET_ | UAC__MAX)
62#define USB_AUDIO_SET_ENDPOINT 0x22 62#define UAC_SET_RES (UAC_SET_ | UAC__RES)
63#define USB_AUDIO_GET_INTF 0xa1 63#define UAC_GET_RES (UAC_GET_ | UAC__RES)
64#define USB_AUDIO_GET_ENDPOINT 0xa2 64#define UAC_SET_MEM (UAC_SET_ | UAC__MEM)
65 65#define UAC_GET_MEM (UAC_GET_ | UAC__MEM)
66#define SET_ 0x00 66
67#define GET_ 0x80 67#define UAC_GET_STAT 0xff
68 68
69#define _CUR 0x1 69/* MIDI - A.1 MS Class-Specific Interface Descriptor Subtypes */
70#define _MIN 0x2 70#define UAC_MS_HEADER 0x01
71#define _MAX 0x3 71#define UAC_MIDI_IN_JACK 0x02
72#define _RES 0x4 72#define UAC_MIDI_OUT_JACK 0x03
73#define _MEM 0x5 73
74 74/* MIDI - A.1 MS Class-Specific Endpoint Descriptor Subtypes */
75#define SET_CUR (SET_ | _CUR) 75#define UAC_MS_GENERAL 0x01
76#define GET_CUR (GET_ | _CUR) 76
77#define SET_MIN (SET_ | _MIN) 77/* Terminals - 2.1 USB Terminal Types */
78#define GET_MIN (GET_ | _MIN) 78#define UAC_TERMINAL_UNDEFINED 0x100
79#define SET_MAX (SET_ | _MAX) 79#define UAC_TERMINAL_STREAMING 0x101
80#define GET_MAX (GET_ | _MAX) 80#define UAC_TERMINAL_VENDOR_SPEC 0x1FF
81#define SET_RES (SET_ | _RES)
82#define GET_RES (GET_ | _RES)
83#define SET_MEM (SET_ | _MEM)
84#define GET_MEM (GET_ | _MEM)
85
86#define GET_STAT 0xff
87
88#define USB_AC_TERMINAL_UNDEFINED 0x100
89#define USB_AC_TERMINAL_STREAMING 0x101
90#define USB_AC_TERMINAL_VENDOR_SPEC 0x1FF
91 81
92/* Terminal Control Selectors */ 82/* Terminal Control Selectors */
93/* 4.3.2 Class-Specific AC Interface Descriptor */ 83/* 4.3.2 Class-Specific AC Interface Descriptor */
94struct usb_ac_header_descriptor { 84struct uac_ac_header_descriptor {
95 __u8 bLength; /* 8 + n */ 85 __u8 bLength; /* 8 + n */
96 __u8 bDescriptorType; /* USB_DT_CS_INTERFACE */ 86 __u8 bDescriptorType; /* USB_DT_CS_INTERFACE */
97 __u8 bDescriptorSubtype; /* USB_MS_HEADER */ 87 __u8 bDescriptorSubtype; /* UAC_MS_HEADER */
98 __le16 bcdADC; /* 0x0100 */ 88 __le16 bcdADC; /* 0x0100 */
99 __le16 wTotalLength; /* includes Unit and Terminal desc. */ 89 __le16 wTotalLength; /* includes Unit and Terminal desc. */
100 __u8 bInCollection; /* n */ 90 __u8 bInCollection; /* n */
101 __u8 baInterfaceNr[]; /* [n] */ 91 __u8 baInterfaceNr[]; /* [n] */
102} __attribute__ ((packed)); 92} __attribute__ ((packed));
103 93
104#define USB_DT_AC_HEADER_SIZE(n) (8 + (n)) 94#define UAC_DT_AC_HEADER_SIZE(n) (8 + (n))
105 95
106/* As above, but more useful for defining your own descriptors: */ 96/* As above, but more useful for defining your own descriptors: */
107#define DECLARE_USB_AC_HEADER_DESCRIPTOR(n) \ 97#define DECLARE_UAC_AC_HEADER_DESCRIPTOR(n) \
108struct usb_ac_header_descriptor_##n { \ 98struct uac_ac_header_descriptor_##n { \
109 __u8 bLength; \ 99 __u8 bLength; \
110 __u8 bDescriptorType; \ 100 __u8 bDescriptorType; \
111 __u8 bDescriptorSubtype; \ 101 __u8 bDescriptorSubtype; \
@@ -116,7 +106,7 @@ struct usb_ac_header_descriptor_##n { \
116} __attribute__ ((packed)) 106} __attribute__ ((packed))
117 107
118/* 4.3.2.1 Input Terminal Descriptor */ 108/* 4.3.2.1 Input Terminal Descriptor */
119struct usb_input_terminal_descriptor { 109struct uac_input_terminal_descriptor {
120 __u8 bLength; /* in bytes: 12 */ 110 __u8 bLength; /* in bytes: 12 */
121 __u8 bDescriptorType; /* CS_INTERFACE descriptor type */ 111 __u8 bDescriptorType; /* CS_INTERFACE descriptor type */
122 __u8 bDescriptorSubtype; /* INPUT_TERMINAL descriptor subtype */ 112 __u8 bDescriptorSubtype; /* INPUT_TERMINAL descriptor subtype */
@@ -129,18 +119,19 @@ struct usb_input_terminal_descriptor {
129 __u8 iTerminal; 119 __u8 iTerminal;
130} __attribute__ ((packed)); 120} __attribute__ ((packed));
131 121
132#define USB_DT_AC_INPUT_TERMINAL_SIZE 12 122#define UAC_DT_INPUT_TERMINAL_SIZE 12
133 123
134#define USB_AC_INPUT_TERMINAL_UNDEFINED 0x200 124/* Terminals - 2.2 Input Terminal Types */
135#define USB_AC_INPUT_TERMINAL_MICROPHONE 0x201 125#define UAC_INPUT_TERMINAL_UNDEFINED 0x200
136#define USB_AC_INPUT_TERMINAL_DESKTOP_MICROPHONE 0x202 126#define UAC_INPUT_TERMINAL_MICROPHONE 0x201
137#define USB_AC_INPUT_TERMINAL_PERSONAL_MICROPHONE 0x203 127#define UAC_INPUT_TERMINAL_DESKTOP_MICROPHONE 0x202
138#define USB_AC_INPUT_TERMINAL_OMNI_DIR_MICROPHONE 0x204 128#define UAC_INPUT_TERMINAL_PERSONAL_MICROPHONE 0x203
139#define USB_AC_INPUT_TERMINAL_MICROPHONE_ARRAY 0x205 129#define UAC_INPUT_TERMINAL_OMNI_DIR_MICROPHONE 0x204
140#define USB_AC_INPUT_TERMINAL_PROC_MICROPHONE_ARRAY 0x206 130#define UAC_INPUT_TERMINAL_MICROPHONE_ARRAY 0x205
131#define UAC_INPUT_TERMINAL_PROC_MICROPHONE_ARRAY 0x206
141 132
142/* 4.3.2.2 Output Terminal Descriptor */ 133/* 4.3.2.2 Output Terminal Descriptor */
143struct usb_output_terminal_descriptor { 134struct uac_output_terminal_descriptor {
144 __u8 bLength; /* in bytes: 9 */ 135 __u8 bLength; /* in bytes: 9 */
145 __u8 bDescriptorType; /* CS_INTERFACE descriptor type */ 136 __u8 bDescriptorType; /* CS_INTERFACE descriptor type */
146 __u8 bDescriptorSubtype; /* OUTPUT_TERMINAL descriptor subtype */ 137 __u8 bDescriptorSubtype; /* OUTPUT_TERMINAL descriptor subtype */
@@ -151,23 +142,24 @@ struct usb_output_terminal_descriptor {
151 __u8 iTerminal; 142 __u8 iTerminal;
152} __attribute__ ((packed)); 143} __attribute__ ((packed));
153 144
154#define USB_DT_AC_OUTPUT_TERMINAL_SIZE 9 145#define UAC_DT_OUTPUT_TERMINAL_SIZE 9
155 146
156#define USB_AC_OUTPUT_TERMINAL_UNDEFINED 0x300 147/* Terminals - 2.3 Output Terminal Types */
157#define USB_AC_OUTPUT_TERMINAL_SPEAKER 0x301 148#define UAC_OUTPUT_TERMINAL_UNDEFINED 0x300
158#define USB_AC_OUTPUT_TERMINAL_HEADPHONES 0x302 149#define UAC_OUTPUT_TERMINAL_SPEAKER 0x301
159#define USB_AC_OUTPUT_TERMINAL_HEAD_MOUNTED_DISPLAY_AUDIO 0x303 150#define UAC_OUTPUT_TERMINAL_HEADPHONES 0x302
160#define USB_AC_OUTPUT_TERMINAL_DESKTOP_SPEAKER 0x304 151#define UAC_OUTPUT_TERMINAL_HEAD_MOUNTED_DISPLAY_AUDIO 0x303
161#define USB_AC_OUTPUT_TERMINAL_ROOM_SPEAKER 0x305 152#define UAC_OUTPUT_TERMINAL_DESKTOP_SPEAKER 0x304
162#define USB_AC_OUTPUT_TERMINAL_COMMUNICATION_SPEAKER 0x306 153#define UAC_OUTPUT_TERMINAL_ROOM_SPEAKER 0x305
163#define USB_AC_OUTPUT_TERMINAL_LOW_FREQ_EFFECTS_SPEAKER 0x307 154#define UAC_OUTPUT_TERMINAL_COMMUNICATION_SPEAKER 0x306
155#define UAC_OUTPUT_TERMINAL_LOW_FREQ_EFFECTS_SPEAKER 0x307
164 156
165/* Set bControlSize = 2 as default setting */ 157/* Set bControlSize = 2 as default setting */
166#define USB_DT_AC_FEATURE_UNIT_SIZE(ch) (7 + ((ch) + 1) * 2) 158#define UAC_DT_FEATURE_UNIT_SIZE(ch) (7 + ((ch) + 1) * 2)
167 159
168/* As above, but more useful for defining your own descriptors: */ 160/* As above, but more useful for defining your own descriptors: */
169#define DECLARE_USB_AC_FEATURE_UNIT_DESCRIPTOR(ch) \ 161#define DECLARE_UAC_FEATURE_UNIT_DESCRIPTOR(ch) \
170struct usb_ac_feature_unit_descriptor_##ch { \ 162struct uac_feature_unit_descriptor_##ch { \
171 __u8 bLength; \ 163 __u8 bLength; \
172 __u8 bDescriptorType; \ 164 __u8 bDescriptorType; \
173 __u8 bDescriptorSubtype; \ 165 __u8 bDescriptorSubtype; \
@@ -179,7 +171,7 @@ struct usb_ac_feature_unit_descriptor_##ch { \
179} __attribute__ ((packed)) 171} __attribute__ ((packed))
180 172
181/* 4.5.2 Class-Specific AS Interface Descriptor */ 173/* 4.5.2 Class-Specific AS Interface Descriptor */
182struct usb_as_header_descriptor { 174struct uac_as_header_descriptor {
183 __u8 bLength; /* in bytes: 7 */ 175 __u8 bLength; /* in bytes: 7 */
184 __u8 bDescriptorType; /* USB_DT_CS_INTERFACE */ 176 __u8 bDescriptorType; /* USB_DT_CS_INTERFACE */
185 __u8 bDescriptorSubtype; /* AS_GENERAL */ 177 __u8 bDescriptorSubtype; /* AS_GENERAL */
@@ -188,16 +180,17 @@ struct usb_as_header_descriptor {
188 __le16 wFormatTag; /* The Audio Data Format */ 180 __le16 wFormatTag; /* The Audio Data Format */
189} __attribute__ ((packed)); 181} __attribute__ ((packed));
190 182
191#define USB_DT_AS_HEADER_SIZE 7 183#define UAC_DT_AS_HEADER_SIZE 7
192 184
193#define USB_AS_AUDIO_FORMAT_TYPE_I_UNDEFINED 0x0 185/* Formats - A.1.1 Audio Data Format Type I Codes */
194#define USB_AS_AUDIO_FORMAT_TYPE_I_PCM 0x1 186#define UAC_FORMAT_TYPE_I_UNDEFINED 0x0
195#define USB_AS_AUDIO_FORMAT_TYPE_I_PCM8 0x2 187#define UAC_FORMAT_TYPE_I_PCM 0x1
196#define USB_AS_AUDIO_FORMAT_TYPE_I_IEEE_FLOAT 0x3 188#define UAC_FORMAT_TYPE_I_PCM8 0x2
197#define USB_AS_AUDIO_FORMAT_TYPE_I_ALAW 0x4 189#define UAC_FORMAT_TYPE_I_IEEE_FLOAT 0x3
198#define USB_AS_AUDIO_FORMAT_TYPE_I_MULAW 0x5 190#define UAC_FORMAT_TYPE_I_ALAW 0x4
191#define UAC_FORMAT_TYPE_I_MULAW 0x5
199 192
200struct usb_as_format_type_i_continuous_descriptor { 193struct uac_format_type_i_continuous_descriptor {
201 __u8 bLength; /* in bytes: 8 + (ns * 3) */ 194 __u8 bLength; /* in bytes: 8 + (ns * 3) */
202 __u8 bDescriptorType; /* USB_DT_CS_INTERFACE */ 195 __u8 bDescriptorType; /* USB_DT_CS_INTERFACE */
203 __u8 bDescriptorSubtype; /* FORMAT_TYPE */ 196 __u8 bDescriptorSubtype; /* FORMAT_TYPE */
@@ -210,9 +203,9 @@ struct usb_as_format_type_i_continuous_descriptor {
210 __u8 tUpperSamFreq[3]; 203 __u8 tUpperSamFreq[3];
211} __attribute__ ((packed)); 204} __attribute__ ((packed));
212 205
213#define USB_AS_FORMAT_TYPE_I_CONTINUOUS_DESC_SIZE 14 206#define UAC_FORMAT_TYPE_I_CONTINUOUS_DESC_SIZE 14
214 207
215struct usb_as_formate_type_i_discrete_descriptor { 208struct uac_format_type_i_discrete_descriptor {
216 __u8 bLength; /* in bytes: 8 + (ns * 3) */ 209 __u8 bLength; /* in bytes: 8 + (ns * 3) */
217 __u8 bDescriptorType; /* USB_DT_CS_INTERFACE */ 210 __u8 bDescriptorType; /* USB_DT_CS_INTERFACE */
218 __u8 bDescriptorSubtype; /* FORMAT_TYPE */ 211 __u8 bDescriptorSubtype; /* FORMAT_TYPE */
@@ -224,8 +217,8 @@ struct usb_as_formate_type_i_discrete_descriptor {
224 __u8 tSamFreq[][3]; 217 __u8 tSamFreq[][3];
225} __attribute__ ((packed)); 218} __attribute__ ((packed));
226 219
227#define DECLARE_USB_AS_FORMAT_TYPE_I_DISCRETE_DESC(n) \ 220#define DECLARE_UAC_FORMAT_TYPE_I_DISCRETE_DESC(n) \
228struct usb_as_formate_type_i_discrete_descriptor_##n { \ 221struct uac_format_type_i_discrete_descriptor_##n { \
229 __u8 bLength; \ 222 __u8 bLength; \
230 __u8 bDescriptorType; \ 223 __u8 bDescriptorType; \
231 __u8 bDescriptorSubtype; \ 224 __u8 bDescriptorSubtype; \
@@ -237,18 +230,15 @@ struct usb_as_formate_type_i_discrete_descriptor_##n { \
237 __u8 tSamFreq[n][3]; \ 230 __u8 tSamFreq[n][3]; \
238} __attribute__ ((packed)) 231} __attribute__ ((packed))
239 232
240#define USB_AS_FORMAT_TYPE_I_DISCRETE_DESC_SIZE(n) (8 + (n * 3)) 233#define UAC_FORMAT_TYPE_I_DISCRETE_DESC_SIZE(n) (8 + (n * 3))
241
242#define USB_AS_FORMAT_TYPE_UNDEFINED 0x0
243#define USB_AS_FORMAT_TYPE_I 0x1
244#define USB_AS_FORMAT_TYPE_II 0x2
245#define USB_AS_FORMAT_TYPE_III 0x3
246 234
247#define USB_AS_ENDPOINT_ASYNC (1 << 2) 235/* Formats - A.2 Format Type Codes */
248#define USB_AS_ENDPOINT_ADAPTIVE (2 << 2) 236#define UAC_FORMAT_TYPE_UNDEFINED 0x0
249#define USB_AS_ENDPOINT_SYNC (3 << 2) 237#define UAC_FORMAT_TYPE_I 0x1
238#define UAC_FORMAT_TYPE_II 0x2
239#define UAC_FORMAT_TYPE_III 0x3
250 240
251struct usb_as_iso_endpoint_descriptor { 241struct uac_iso_endpoint_descriptor {
252 __u8 bLength; /* in bytes: 7 */ 242 __u8 bLength; /* in bytes: 7 */
253 __u8 bDescriptorType; /* USB_DT_CS_ENDPOINT */ 243 __u8 bDescriptorType; /* USB_DT_CS_ENDPOINT */
254 __u8 bDescriptorSubtype; /* EP_GENERAL */ 244 __u8 bDescriptorSubtype; /* EP_GENERAL */
@@ -256,30 +246,37 @@ struct usb_as_iso_endpoint_descriptor {
256 __u8 bLockDelayUnits; 246 __u8 bLockDelayUnits;
257 __le16 wLockDelay; 247 __le16 wLockDelay;
258}; 248};
259#define USB_AS_ISO_ENDPOINT_DESC_SIZE 7 249#define UAC_ISO_ENDPOINT_DESC_SIZE 7
260 250
261#define FU_CONTROL_UNDEFINED 0x00 251#define UAC_EP_CS_ATTR_SAMPLE_RATE 0x01
262#define MUTE_CONTROL 0x01 252#define UAC_EP_CS_ATTR_PITCH_CONTROL 0x02
263#define VOLUME_CONTROL 0x02 253#define UAC_EP_CS_ATTR_FILL_MAX 0x80
264#define BASS_CONTROL 0x03 254
265#define MID_CONTROL 0x04 255/* A.10.2 Feature Unit Control Selectors */
266#define TREBLE_CONTROL 0x05 256#define UAC_FU_CONTROL_UNDEFINED 0x00
267#define GRAPHIC_EQUALIZER_CONTROL 0x06 257#define UAC_MUTE_CONTROL 0x01
268#define AUTOMATIC_GAIN_CONTROL 0x07 258#define UAC_VOLUME_CONTROL 0x02
269#define DELAY_CONTROL 0x08 259#define UAC_BASS_CONTROL 0x03
270#define BASS_BOOST_CONTROL 0x09 260#define UAC_MID_CONTROL 0x04
271#define LOUDNESS_CONTROL 0x0a 261#define UAC_TREBLE_CONTROL 0x05
272 262#define UAC_GRAPHIC_EQUALIZER_CONTROL 0x06
273#define FU_MUTE (1 << (MUTE_CONTROL - 1)) 263#define UAC_AUTOMATIC_GAIN_CONTROL 0x07
274#define FU_VOLUME (1 << (VOLUME_CONTROL - 1)) 264#define UAC_DELAY_CONTROL 0x08
275#define FU_BASS (1 << (BASS_CONTROL - 1)) 265#define UAC_BASS_BOOST_CONTROL 0x09
276#define FU_MID (1 << (MID_CONTROL - 1)) 266#define UAC_LOUDNESS_CONTROL 0x0a
277#define FU_TREBLE (1 << (TREBLE_CONTROL - 1)) 267
278#define FU_GRAPHIC_EQ (1 << (GRAPHIC_EQUALIZER_CONTROL - 1)) 268#define UAC_FU_MUTE (1 << (UAC_MUTE_CONTROL - 1))
279#define FU_AUTO_GAIN (1 << (AUTOMATIC_GAIN_CONTROL - 1)) 269#define UAC_FU_VOLUME (1 << (UAC_VOLUME_CONTROL - 1))
280#define FU_DELAY (1 << (DELAY_CONTROL - 1)) 270#define UAC_FU_BASS (1 << (UAC_BASS_CONTROL - 1))
281#define FU_BASS_BOOST (1 << (BASS_BOOST_CONTROL - 1)) 271#define UAC_FU_MID (1 << (UAC_MID_CONTROL - 1))
282#define FU_LOUDNESS (1 << (LOUDNESS_CONTROL - 1)) 272#define UAC_FU_TREBLE (1 << (UAC_TREBLE_CONTROL - 1))
273#define UAC_FU_GRAPHIC_EQ (1 << (UAC_GRAPHIC_EQUALIZER_CONTROL - 1))
274#define UAC_FU_AUTO_GAIN (1 << (UAC_AUTOMATIC_GAIN_CONTROL - 1))
275#define UAC_FU_DELAY (1 << (UAC_DELAY_CONTROL - 1))
276#define UAC_FU_BASS_BOOST (1 << (UAC_BASS_BOOST_CONTROL - 1))
277#define UAC_FU_LOUDNESS (1 << (UAC_LOUDNESS_CONTROL - 1))
278
279#ifdef __KERNEL__
283 280
284struct usb_audio_control { 281struct usb_audio_control {
285 struct list_head list; 282 struct list_head list;
@@ -290,18 +287,6 @@ struct usb_audio_control {
290 int (*get)(struct usb_audio_control *con, u8 cmd); 287 int (*get)(struct usb_audio_control *con, u8 cmd);
291}; 288};
292 289
293static inline int generic_set_cmd(struct usb_audio_control *con, u8 cmd, int value)
294{
295 con->data[cmd] = value;
296
297 return 0;
298}
299
300static inline int generic_get_cmd(struct usb_audio_control *con, u8 cmd)
301{
302 return con->data[cmd];
303}
304
305struct usb_audio_control_selector { 290struct usb_audio_control_selector {
306 struct list_head list; 291 struct list_head list;
307 struct list_head control; 292 struct list_head control;
@@ -311,4 +296,6 @@ struct usb_audio_control_selector {
311 struct usb_descriptor_header *desc; 296 struct usb_descriptor_header *desc;
312}; 297};
313 298
299#endif /* __KERNEL__ */
300
314#endif /* __LINUX_USB_AUDIO_H */ 301#endif /* __LINUX_USB_AUDIO_H */
diff --git a/include/linux/usb/ch9.h b/include/linux/usb/ch9.h
index 93223638f702..94012e649d86 100644
--- a/include/linux/usb/ch9.h
+++ b/include/linux/usb/ch9.h
@@ -258,6 +258,8 @@ struct usb_device_descriptor {
258#define USB_CLASS_APP_SPEC 0xfe 258#define USB_CLASS_APP_SPEC 0xfe
259#define USB_CLASS_VENDOR_SPEC 0xff 259#define USB_CLASS_VENDOR_SPEC 0xff
260 260
261#define USB_SUBCLASS_VENDOR_SPEC 0xff
262
261/*-------------------------------------------------------------------------*/ 263/*-------------------------------------------------------------------------*/
262 264
263/* USB_DT_CONFIG: Configuration descriptor information. 265/* USB_DT_CONFIG: Configuration descriptor information.
@@ -348,6 +350,12 @@ struct usb_endpoint_descriptor {
348#define USB_ENDPOINT_NUMBER_MASK 0x0f /* in bEndpointAddress */ 350#define USB_ENDPOINT_NUMBER_MASK 0x0f /* in bEndpointAddress */
349#define USB_ENDPOINT_DIR_MASK 0x80 351#define USB_ENDPOINT_DIR_MASK 0x80
350 352
353#define USB_ENDPOINT_SYNCTYPE 0x0c
354#define USB_ENDPOINT_SYNC_NONE (0 << 2)
355#define USB_ENDPOINT_SYNC_ASYNC (1 << 2)
356#define USB_ENDPOINT_SYNC_ADAPTIVE (2 << 2)
357#define USB_ENDPOINT_SYNC_SYNC (3 << 2)
358
351#define USB_ENDPOINT_XFERTYPE_MASK 0x03 /* in bmAttributes */ 359#define USB_ENDPOINT_XFERTYPE_MASK 0x03 /* in bmAttributes */
352#define USB_ENDPOINT_XFER_CONTROL 0 360#define USB_ENDPOINT_XFER_CONTROL 0
353#define USB_ENDPOINT_XFER_ISOC 1 361#define USB_ENDPOINT_XFER_ISOC 1
diff --git a/include/linux/usb/ehci_def.h b/include/linux/usb/ehci_def.h
index 5b88e36c9103..af4b86f3aca3 100644
--- a/include/linux/usb/ehci_def.h
+++ b/include/linux/usb/ehci_def.h
@@ -105,6 +105,7 @@ struct ehci_regs {
105#define PORT_WKDISC_E (1<<21) /* wake on disconnect (enable) */ 105#define PORT_WKDISC_E (1<<21) /* wake on disconnect (enable) */
106#define PORT_WKCONN_E (1<<20) /* wake on connect (enable) */ 106#define PORT_WKCONN_E (1<<20) /* wake on connect (enable) */
107/* 19:16 for port testing */ 107/* 19:16 for port testing */
108#define PORT_TEST_PKT (0x4<<16) /* Port Test Control - packet test */
108#define PORT_LED_OFF (0<<14) 109#define PORT_LED_OFF (0<<14)
109#define PORT_LED_AMBER (1<<14) 110#define PORT_LED_AMBER (1<<14)
110#define PORT_LED_GREEN (2<<14) 111#define PORT_LED_GREEN (2<<14)
@@ -132,6 +133,19 @@ struct ehci_regs {
132#define USBMODE_CM_HC (3<<0) /* host controller mode */ 133#define USBMODE_CM_HC (3<<0) /* host controller mode */
133#define USBMODE_CM_IDLE (0<<0) /* idle state */ 134#define USBMODE_CM_IDLE (0<<0) /* idle state */
134 135
136/* Moorestown has some non-standard registers, partially due to the fact that
137 * its EHCI controller has both TT and LPM support. HOSTPCx are extentions to
138 * PORTSCx
139 */
140#define HOSTPC0 0x84 /* HOSTPC extension */
141#define HOSTPC_PHCD (1<<22) /* Phy clock disable */
142#define HOSTPC_PSPD (3<<25) /* Port speed detection */
143#define USBMODE_EX 0xc8 /* USB Device mode extension */
144#define USBMODE_EX_VBPS (1<<5) /* VBus Power Select On */
145#define USBMODE_EX_HC (3<<0) /* host controller mode */
146#define TXFILLTUNING 0x24 /* TX FIFO Tuning register */
147#define TXFIFO_DEFAULT (8<<16) /* FIFO burst threshold 8 */
148
135/* Appendix C, Debug port ... intended for use with special "debug devices" 149/* Appendix C, Debug port ... intended for use with special "debug devices"
136 * that can help if there's no serial console. (nonstandard enumeration.) 150 * that can help if there's no serial console. (nonstandard enumeration.)
137 */ 151 */
@@ -157,4 +171,25 @@ struct ehci_dbg_port {
157#define DBGP_EPADDR(dev, ep) (((dev)<<8)|(ep)) 171#define DBGP_EPADDR(dev, ep) (((dev)<<8)|(ep))
158} __attribute__ ((packed)); 172} __attribute__ ((packed));
159 173
174#ifdef CONFIG_EARLY_PRINTK_DBGP
175#include <linux/init.h>
176extern int __init early_dbgp_init(char *s);
177extern struct console early_dbgp_console;
178#endif /* CONFIG_EARLY_PRINTK_DBGP */
179
180#ifdef CONFIG_EARLY_PRINTK_DBGP
181/* Call backs from ehci host driver to ehci debug driver */
182extern int dbgp_external_startup(void);
183extern int dbgp_reset_prep(void);
184#else
185static inline int dbgp_reset_prep(void)
186{
187 return 1;
188}
189static inline int dbgp_external_startup(void)
190{
191 return -1;
192}
193#endif
194
160#endif /* __LINUX_USB_EHCI_DEF_H */ 195#endif /* __LINUX_USB_EHCI_DEF_H */
diff --git a/include/linux/usb/isp1362.h b/include/linux/usb/isp1362.h
new file mode 100644
index 000000000000..642684bb9292
--- /dev/null
+++ b/include/linux/usb/isp1362.h
@@ -0,0 +1,46 @@
1/*
2 * board initialization code should put one of these into dev->platform_data
3 * and place the isp1362 onto platform_bus.
4 */
5
6#ifndef __LINUX_USB_ISP1362_H__
7#define __LINUX_USB_ISP1362_H__
8
9struct isp1362_platform_data {
10 /* Enable internal pulldown resistors on downstream ports */
11 unsigned sel15Kres:1;
12 /* Clock cannot be stopped */
13 unsigned clknotstop:1;
14 /* On-chip overcurrent protection */
15 unsigned oc_enable:1;
16 /* INT output polarity */
17 unsigned int_act_high:1;
18 /* INT edge or level triggered */
19 unsigned int_edge_triggered:1;
20 /* DREQ output polarity */
21 unsigned dreq_act_high:1;
22 /* DACK input polarity */
23 unsigned dack_act_high:1;
24 /* chip can be resumed via H_WAKEUP pin */
25 unsigned remote_wakeup_connected:1;
26 /* Switch or not to switch (keep always powered) */
27 unsigned no_power_switching:1;
28 /* Ganged port power switching (0) or individual port power switching (1) */
29 unsigned power_switching_mode:1;
30 /* Given port_power, msec/2 after power on till power good */
31 u8 potpg;
32 /* Hardware reset set/clear */
33 void (*reset) (struct device *dev, int set);
34 /* Clock start/stop */
35 void (*clock) (struct device *dev, int start);
36 /* Inter-io delay (ns). The chip is picky about access timings; it
37 * expects at least:
38 * 110ns delay between consecutive accesses to DATA_REG,
39 * 300ns delay between access to ADDR_REG and DATA_REG (registers)
40 * 462ns delay between access to ADDR_REG and DATA_REG (buffer memory)
41 * WE MUST NOT be activated during these intervals (even without CS!)
42 */
43 void (*delay) (struct device *dev, unsigned int delay);
44};
45
46#endif
diff --git a/include/linux/usb/isp1760.h b/include/linux/usb/isp1760.h
new file mode 100644
index 000000000000..de7de53c5531
--- /dev/null
+++ b/include/linux/usb/isp1760.h
@@ -0,0 +1,18 @@
1/*
2 * board initialization should put one of these into dev->platform_data
3 * and place the isp1760 onto platform_bus named "isp1760-hcd".
4 */
5
6#ifndef __LINUX_USB_ISP1760_H
7#define __LINUX_USB_ISP1760_H
8
9struct isp1760_platform_data {
10 unsigned is_isp1761:1; /* Chip is ISP1761 */
11 unsigned bus_width_16:1; /* 16/32-bit data bus width */
12 unsigned port1_otg:1; /* Port 1 supports OTG */
13 unsigned analog_oc:1; /* Analog overcurrent */
14 unsigned dack_polarity_high:1; /* DACK active high */
15 unsigned dreq_polarity_high:1; /* DREQ active high */
16};
17
18#endif /* __LINUX_USB_ISP1760_H */
diff --git a/include/linux/usb/serial.h b/include/linux/usb/serial.h
index 7b85e327af91..c17eb64d7213 100644
--- a/include/linux/usb/serial.h
+++ b/include/linux/usb/serial.h
@@ -59,6 +59,7 @@ enum port_dev_state {
59 * @bulk_out_buffer: pointer to the bulk out buffer for this port. 59 * @bulk_out_buffer: pointer to the bulk out buffer for this port.
60 * @bulk_out_size: the size of the bulk_out_buffer, in bytes. 60 * @bulk_out_size: the size of the bulk_out_buffer, in bytes.
61 * @write_urb: pointer to the bulk out struct urb for this port. 61 * @write_urb: pointer to the bulk out struct urb for this port.
62 * @write_fifo: kfifo used to buffer outgoing data
62 * @write_urb_busy: port`s writing status 63 * @write_urb_busy: port`s writing status
63 * @bulk_out_endpointAddress: endpoint address for the bulk out pipe for this 64 * @bulk_out_endpointAddress: endpoint address for the bulk out pipe for this
64 * port. 65 * port.
@@ -96,6 +97,7 @@ struct usb_serial_port {
96 unsigned char *bulk_out_buffer; 97 unsigned char *bulk_out_buffer;
97 int bulk_out_size; 98 int bulk_out_size;
98 struct urb *write_urb; 99 struct urb *write_urb;
100 struct kfifo *write_fifo;
99 int write_urb_busy; 101 int write_urb_busy;
100 __u8 bulk_out_endpointAddress; 102 __u8 bulk_out_endpointAddress;
101 103
diff --git a/include/linux/usbdevice_fs.h b/include/linux/usbdevice_fs.h
index 0044d9b4cb85..b2a7d8ba6ee3 100644
--- a/include/linux/usbdevice_fs.h
+++ b/include/linux/usbdevice_fs.h
@@ -77,6 +77,7 @@ struct usbdevfs_connectinfo {
77 77
78#define USBDEVFS_URB_SHORT_NOT_OK 0x01 78#define USBDEVFS_URB_SHORT_NOT_OK 0x01
79#define USBDEVFS_URB_ISO_ASAP 0x02 79#define USBDEVFS_URB_ISO_ASAP 0x02
80#define USBDEVFS_URB_BULK_CONTINUATION 0x04
80#define USBDEVFS_URB_NO_FSBR 0x20 81#define USBDEVFS_URB_NO_FSBR 0x20
81#define USBDEVFS_URB_ZERO_PACKET 0x40 82#define USBDEVFS_URB_ZERO_PACKET 0x40
82#define USBDEVFS_URB_NO_INTERRUPT 0x80 83#define USBDEVFS_URB_NO_INTERRUPT 0x80
@@ -175,4 +176,6 @@ struct usbdevfs_ioctl32 {
175#define USBDEVFS_CLEAR_HALT _IOR('U', 21, unsigned int) 176#define USBDEVFS_CLEAR_HALT _IOR('U', 21, unsigned int)
176#define USBDEVFS_DISCONNECT _IO('U', 22) 177#define USBDEVFS_DISCONNECT _IO('U', 22)
177#define USBDEVFS_CONNECT _IO('U', 23) 178#define USBDEVFS_CONNECT _IO('U', 23)
179#define USBDEVFS_CLAIM_PORT _IOR('U', 24, unsigned int)
180#define USBDEVFS_RELEASE_PORT _IOR('U', 25, unsigned int)
178#endif /* _LINUX_USBDEVICE_FS_H */ 181#endif /* _LINUX_USBDEVICE_FS_H */
diff --git a/include/linux/vgaarb.h b/include/linux/vgaarb.h
index e81c64af80c1..923f9040ea20 100644
--- a/include/linux/vgaarb.h
+++ b/include/linux/vgaarb.h
@@ -41,7 +41,7 @@
41 * interrupts at any time. 41 * interrupts at any time.
42 */ 42 */
43extern void vga_set_legacy_decoding(struct pci_dev *pdev, 43extern void vga_set_legacy_decoding(struct pci_dev *pdev,
44 unsigned int decodes); 44 unsigned int decodes);
45 45
46/** 46/**
47 * vga_get - acquire & locks VGA resources 47 * vga_get - acquire & locks VGA resources
@@ -193,8 +193,17 @@ static inline int vga_conflicts(struct pci_dev *p1, struct pci_dev *p2)
193 * They driver will get a callback when VGA arbitration is first used 193 * They driver will get a callback when VGA arbitration is first used
194 * by userspace since we some older X servers have issues. 194 * by userspace since we some older X servers have issues.
195 */ 195 */
196#if defined(CONFIG_VGA_ARB)
196int vga_client_register(struct pci_dev *pdev, void *cookie, 197int vga_client_register(struct pci_dev *pdev, void *cookie,
197 void (*irq_set_state)(void *cookie, bool state), 198 void (*irq_set_state)(void *cookie, bool state),
198 unsigned int (*set_vga_decode)(void *cookie, bool state)); 199 unsigned int (*set_vga_decode)(void *cookie, bool state));
200#else
201static inline int vga_client_register(struct pci_dev *pdev, void *cookie,
202 void (*irq_set_state)(void *cookie, bool state),
203 unsigned int (*set_vga_decode)(void *cookie, bool state))
204{
205 return 0;
206}
207#endif
199 208
200#endif /* LINUX_VGA_H */ 209#endif /* LINUX_VGA_H */
diff --git a/include/linux/virtio.h b/include/linux/virtio.h
index 4fca4f5440ba..057a2e010758 100644
--- a/include/linux/virtio.h
+++ b/include/linux/virtio.h
@@ -34,7 +34,7 @@ struct virtqueue {
34 * out_num: the number of sg readable by other side 34 * out_num: the number of sg readable by other side
35 * in_num: the number of sg which are writable (after readable ones) 35 * in_num: the number of sg which are writable (after readable ones)
36 * data: the token identifying the buffer. 36 * data: the token identifying the buffer.
37 * Returns 0 or an error. 37 * Returns remaining capacity of queue (sg segments) or a negative error.
38 * @kick: update after add_buf 38 * @kick: update after add_buf
39 * vq: the struct virtqueue 39 * vq: the struct virtqueue
40 * After one or more add_buf calls, invoke this to kick the other side. 40 * After one or more add_buf calls, invoke this to kick the other side.
diff --git a/include/linux/virtio_9p.h b/include/linux/virtio_9p.h
index b3c4a60ceeb3..ea7226a45acb 100644
--- a/include/linux/virtio_9p.h
+++ b/include/linux/virtio_9p.h
@@ -4,8 +4,6 @@
4 * compatible drivers/servers. */ 4 * compatible drivers/servers. */
5#include <linux/virtio_config.h> 5#include <linux/virtio_config.h>
6 6
7/* The ID for virtio console */
8#define VIRTIO_ID_9P 9
9/* Maximum number of virtio channels per partition (1 for now) */ 7/* Maximum number of virtio channels per partition (1 for now) */
10#define MAX_9P_CHAN 1 8#define MAX_9P_CHAN 1
11 9
diff --git a/include/linux/virtio_balloon.h b/include/linux/virtio_balloon.h
index 8726ff77763e..09d730085060 100644
--- a/include/linux/virtio_balloon.h
+++ b/include/linux/virtio_balloon.h
@@ -4,9 +4,6 @@
4 * compatible drivers/servers. */ 4 * compatible drivers/servers. */
5#include <linux/virtio_config.h> 5#include <linux/virtio_config.h>
6 6
7/* The ID for virtio_balloon */
8#define VIRTIO_ID_BALLOON 5
9
10/* The feature bitmap for virtio balloon */ 7/* The feature bitmap for virtio balloon */
11#define VIRTIO_BALLOON_F_MUST_TELL_HOST 0 /* Tell before reclaiming pages */ 8#define VIRTIO_BALLOON_F_MUST_TELL_HOST 0 /* Tell before reclaiming pages */
12 9
diff --git a/include/linux/virtio_blk.h b/include/linux/virtio_blk.h
index 8dab9f2b8832..15cb666581d7 100644
--- a/include/linux/virtio_blk.h
+++ b/include/linux/virtio_blk.h
@@ -5,9 +5,6 @@
5#include <linux/types.h> 5#include <linux/types.h>
6#include <linux/virtio_config.h> 6#include <linux/virtio_config.h>
7 7
8/* The ID for virtio_block */
9#define VIRTIO_ID_BLOCK 2
10
11/* Feature bits */ 8/* Feature bits */
12#define VIRTIO_BLK_F_BARRIER 0 /* Does host support barriers? */ 9#define VIRTIO_BLK_F_BARRIER 0 /* Does host support barriers? */
13#define VIRTIO_BLK_F_SIZE_MAX 1 /* Indicates maximum segment size */ 10#define VIRTIO_BLK_F_SIZE_MAX 1 /* Indicates maximum segment size */
@@ -17,6 +14,7 @@
17#define VIRTIO_BLK_F_BLK_SIZE 6 /* Block size of disk is available*/ 14#define VIRTIO_BLK_F_BLK_SIZE 6 /* Block size of disk is available*/
18#define VIRTIO_BLK_F_SCSI 7 /* Supports scsi command passthru */ 15#define VIRTIO_BLK_F_SCSI 7 /* Supports scsi command passthru */
19#define VIRTIO_BLK_F_IDENTIFY 8 /* ATA IDENTIFY supported */ 16#define VIRTIO_BLK_F_IDENTIFY 8 /* ATA IDENTIFY supported */
17#define VIRTIO_BLK_F_FLUSH 9 /* Cache flush command support */
20 18
21#define VIRTIO_BLK_ID_BYTES (sizeof(__u16[256])) /* IDENTIFY DATA */ 19#define VIRTIO_BLK_ID_BYTES (sizeof(__u16[256])) /* IDENTIFY DATA */
22 20
@@ -38,6 +36,17 @@ struct virtio_blk_config {
38 __u8 identify[VIRTIO_BLK_ID_BYTES]; 36 __u8 identify[VIRTIO_BLK_ID_BYTES];
39} __attribute__((packed)); 37} __attribute__((packed));
40 38
39/*
40 * Command types
41 *
42 * Usage is a bit tricky as some bits are used as flags and some are not.
43 *
44 * Rules:
45 * VIRTIO_BLK_T_OUT may be combined with VIRTIO_BLK_T_SCSI_CMD or
46 * VIRTIO_BLK_T_BARRIER. VIRTIO_BLK_T_FLUSH is a command of its own
47 * and may not be combined with any of the other flags.
48 */
49
41/* These two define direction. */ 50/* These two define direction. */
42#define VIRTIO_BLK_T_IN 0 51#define VIRTIO_BLK_T_IN 0
43#define VIRTIO_BLK_T_OUT 1 52#define VIRTIO_BLK_T_OUT 1
@@ -45,6 +54,9 @@ struct virtio_blk_config {
45/* This bit says it's a scsi command, not an actual read or write. */ 54/* This bit says it's a scsi command, not an actual read or write. */
46#define VIRTIO_BLK_T_SCSI_CMD 2 55#define VIRTIO_BLK_T_SCSI_CMD 2
47 56
57/* Cache flush command */
58#define VIRTIO_BLK_T_FLUSH 4
59
48/* Barrier before this op. */ 60/* Barrier before this op. */
49#define VIRTIO_BLK_T_BARRIER 0x80000000 61#define VIRTIO_BLK_T_BARRIER 0x80000000
50 62
diff --git a/include/linux/virtio_config.h b/include/linux/virtio_config.h
index e547e3c8ee9a..0093dd7c1d6f 100644
--- a/include/linux/virtio_config.h
+++ b/include/linux/virtio_config.h
@@ -109,8 +109,7 @@ static inline bool virtio_has_feature(const struct virtio_device *vdev,
109 unsigned int fbit) 109 unsigned int fbit)
110{ 110{
111 /* Did you forget to fix assumptions on max features? */ 111 /* Did you forget to fix assumptions on max features? */
112 if (__builtin_constant_p(fbit)) 112 MAYBE_BUILD_BUG_ON(fbit >= 32);
113 BUILD_BUG_ON(fbit >= 32);
114 113
115 if (fbit < VIRTIO_TRANSPORT_F_START) 114 if (fbit < VIRTIO_TRANSPORT_F_START)
116 virtio_check_driver_offered_feature(vdev, fbit); 115 virtio_check_driver_offered_feature(vdev, fbit);
diff --git a/include/linux/virtio_console.h b/include/linux/virtio_console.h
index dc161115ae35..b5f519806014 100644
--- a/include/linux/virtio_console.h
+++ b/include/linux/virtio_console.h
@@ -5,9 +5,6 @@
5/* This header, excluding the #ifdef __KERNEL__ part, is BSD licensed so 5/* This header, excluding the #ifdef __KERNEL__ part, is BSD licensed so
6 * anyone can use the definitions to implement compatible drivers/servers. */ 6 * anyone can use the definitions to implement compatible drivers/servers. */
7 7
8/* The ID for virtio console */
9#define VIRTIO_ID_CONSOLE 3
10
11/* Feature bits */ 8/* Feature bits */
12#define VIRTIO_CONSOLE_F_SIZE 0 /* Does host provide console size? */ 9#define VIRTIO_CONSOLE_F_SIZE 0 /* Does host provide console size? */
13 10
diff --git a/include/linux/virtio_ids.h b/include/linux/virtio_ids.h
new file mode 100644
index 000000000000..06660c0a78d7
--- /dev/null
+++ b/include/linux/virtio_ids.h
@@ -0,0 +1,17 @@
1#ifndef _LINUX_VIRTIO_IDS_H
2#define _LINUX_VIRTIO_IDS_H
3/*
4 * Virtio IDs
5 *
6 * This header is BSD licensed so anyone can use the definitions to implement
7 * compatible drivers/servers.
8 */
9
10#define VIRTIO_ID_NET 1 /* virtio net */
11#define VIRTIO_ID_BLOCK 2 /* virtio block */
12#define VIRTIO_ID_CONSOLE 3 /* virtio console */
13#define VIRTIO_ID_RNG 4 /* virtio ring */
14#define VIRTIO_ID_BALLOON 5 /* virtio balloon */
15#define VIRTIO_ID_9P 9 /* 9p virtio console */
16
17#endif /* _LINUX_VIRTIO_IDS_H */
diff --git a/include/linux/virtio_net.h b/include/linux/virtio_net.h
index d8dd539c9f48..1f41734bbb77 100644
--- a/include/linux/virtio_net.h
+++ b/include/linux/virtio_net.h
@@ -6,9 +6,6 @@
6#include <linux/virtio_config.h> 6#include <linux/virtio_config.h>
7#include <linux/if_ether.h> 7#include <linux/if_ether.h>
8 8
9/* The ID for virtio_net */
10#define VIRTIO_ID_NET 1
11
12/* The feature bitmap for virtio net */ 9/* The feature bitmap for virtio net */
13#define VIRTIO_NET_F_CSUM 0 /* Host handles pkts w/ partial csum */ 10#define VIRTIO_NET_F_CSUM 0 /* Host handles pkts w/ partial csum */
14#define VIRTIO_NET_F_GUEST_CSUM 1 /* Guest handles pkts w/ partial csum */ 11#define VIRTIO_NET_F_GUEST_CSUM 1 /* Guest handles pkts w/ partial csum */
diff --git a/include/linux/virtio_rng.h b/include/linux/virtio_rng.h
index 1a85dab8a940..48121c3c434b 100644
--- a/include/linux/virtio_rng.h
+++ b/include/linux/virtio_rng.h
@@ -4,7 +4,4 @@
4 * compatible drivers/servers. */ 4 * compatible drivers/servers. */
5#include <linux/virtio_config.h> 5#include <linux/virtio_config.h>
6 6
7/* The ID for virtio_rng */
8#define VIRTIO_ID_RNG 4
9
10#endif /* _LINUX_VIRTIO_RNG_H */ 7#endif /* _LINUX_VIRTIO_RNG_H */
diff --git a/include/trace/events/timer.h b/include/trace/events/timer.h
new file mode 100644
index 000000000000..1844c48d640e
--- /dev/null
+++ b/include/trace/events/timer.h
@@ -0,0 +1,342 @@
1#undef TRACE_SYSTEM
2#define TRACE_SYSTEM timer
3
4#if !defined(_TRACE_TIMER_H) || defined(TRACE_HEADER_MULTI_READ)
5#define _TRACE_TIMER_H
6
7#include <linux/tracepoint.h>
8#include <linux/hrtimer.h>
9#include <linux/timer.h>
10
11/**
12 * timer_init - called when the timer is initialized
13 * @timer: pointer to struct timer_list
14 */
15TRACE_EVENT(timer_init,
16
17 TP_PROTO(struct timer_list *timer),
18
19 TP_ARGS(timer),
20
21 TP_STRUCT__entry(
22 __field( void *, timer )
23 ),
24
25 TP_fast_assign(
26 __entry->timer = timer;
27 ),
28
29 TP_printk("timer %p", __entry->timer)
30);
31
32/**
33 * timer_start - called when the timer is started
34 * @timer: pointer to struct timer_list
35 * @expires: the timers expiry time
36 */
37TRACE_EVENT(timer_start,
38
39 TP_PROTO(struct timer_list *timer, unsigned long expires),
40
41 TP_ARGS(timer, expires),
42
43 TP_STRUCT__entry(
44 __field( void *, timer )
45 __field( void *, function )
46 __field( unsigned long, expires )
47 __field( unsigned long, now )
48 ),
49
50 TP_fast_assign(
51 __entry->timer = timer;
52 __entry->function = timer->function;
53 __entry->expires = expires;
54 __entry->now = jiffies;
55 ),
56
57 TP_printk("timer %p: func %pf, expires %lu, timeout %ld",
58 __entry->timer, __entry->function, __entry->expires,
59 (long)__entry->expires - __entry->now)
60);
61
62/**
63 * timer_expire_entry - called immediately before the timer callback
64 * @timer: pointer to struct timer_list
65 *
66 * Allows to determine the timer latency.
67 */
68TRACE_EVENT(timer_expire_entry,
69
70 TP_PROTO(struct timer_list *timer),
71
72 TP_ARGS(timer),
73
74 TP_STRUCT__entry(
75 __field( void *, timer )
76 __field( unsigned long, now )
77 ),
78
79 TP_fast_assign(
80 __entry->timer = timer;
81 __entry->now = jiffies;
82 ),
83
84 TP_printk("timer %p: now %lu", __entry->timer, __entry->now)
85);
86
87/**
88 * timer_expire_exit - called immediately after the timer callback returns
89 * @timer: pointer to struct timer_list
90 *
91 * When used in combination with the timer_expire_entry tracepoint we can
92 * determine the runtime of the timer callback function.
93 *
94 * NOTE: Do NOT derefernce timer in TP_fast_assign. The pointer might
95 * be invalid. We solely track the pointer.
96 */
97TRACE_EVENT(timer_expire_exit,
98
99 TP_PROTO(struct timer_list *timer),
100
101 TP_ARGS(timer),
102
103 TP_STRUCT__entry(
104 __field(void *, timer )
105 ),
106
107 TP_fast_assign(
108 __entry->timer = timer;
109 ),
110
111 TP_printk("timer %p", __entry->timer)
112);
113
114/**
115 * timer_cancel - called when the timer is canceled
116 * @timer: pointer to struct timer_list
117 */
118TRACE_EVENT(timer_cancel,
119
120 TP_PROTO(struct timer_list *timer),
121
122 TP_ARGS(timer),
123
124 TP_STRUCT__entry(
125 __field( void *, timer )
126 ),
127
128 TP_fast_assign(
129 __entry->timer = timer;
130 ),
131
132 TP_printk("timer %p", __entry->timer)
133);
134
135/**
136 * hrtimer_init - called when the hrtimer is initialized
137 * @timer: pointer to struct hrtimer
138 * @clockid: the hrtimers clock
139 * @mode: the hrtimers mode
140 */
141TRACE_EVENT(hrtimer_init,
142
143 TP_PROTO(struct hrtimer *timer, clockid_t clockid,
144 enum hrtimer_mode mode),
145
146 TP_ARGS(timer, clockid, mode),
147
148 TP_STRUCT__entry(
149 __field( void *, timer )
150 __field( clockid_t, clockid )
151 __field( enum hrtimer_mode, mode )
152 ),
153
154 TP_fast_assign(
155 __entry->timer = timer;
156 __entry->clockid = clockid;
157 __entry->mode = mode;
158 ),
159
160 TP_printk("hrtimer %p, clockid %s, mode %s", __entry->timer,
161 __entry->clockid == CLOCK_REALTIME ?
162 "CLOCK_REALTIME" : "CLOCK_MONOTONIC",
163 __entry->mode == HRTIMER_MODE_ABS ?
164 "HRTIMER_MODE_ABS" : "HRTIMER_MODE_REL")
165);
166
167/**
168 * hrtimer_start - called when the hrtimer is started
169 * @timer: pointer to struct hrtimer
170 */
171TRACE_EVENT(hrtimer_start,
172
173 TP_PROTO(struct hrtimer *timer),
174
175 TP_ARGS(timer),
176
177 TP_STRUCT__entry(
178 __field( void *, timer )
179 __field( void *, function )
180 __field( s64, expires )
181 __field( s64, softexpires )
182 ),
183
184 TP_fast_assign(
185 __entry->timer = timer;
186 __entry->function = timer->function;
187 __entry->expires = hrtimer_get_expires(timer).tv64;
188 __entry->softexpires = hrtimer_get_softexpires(timer).tv64;
189 ),
190
191 TP_printk("hrtimer %p, func %pf, expires %llu, softexpires %llu",
192 __entry->timer, __entry->function,
193 (unsigned long long)ktime_to_ns((ktime_t) {
194 .tv64 = __entry->expires }),
195 (unsigned long long)ktime_to_ns((ktime_t) {
196 .tv64 = __entry->softexpires }))
197);
198
199/**
200 * htimmer_expire_entry - called immediately before the hrtimer callback
201 * @timer: pointer to struct hrtimer
202 * @now: pointer to variable which contains current time of the
203 * timers base.
204 *
205 * Allows to determine the timer latency.
206 */
207TRACE_EVENT(hrtimer_expire_entry,
208
209 TP_PROTO(struct hrtimer *timer, ktime_t *now),
210
211 TP_ARGS(timer, now),
212
213 TP_STRUCT__entry(
214 __field( void *, timer )
215 __field( s64, now )
216 ),
217
218 TP_fast_assign(
219 __entry->timer = timer;
220 __entry->now = now->tv64;
221 ),
222
223 TP_printk("hrtimer %p, now %llu", __entry->timer,
224 (unsigned long long)ktime_to_ns((ktime_t) {
225 .tv64 = __entry->now }))
226 );
227
228/**
229 * hrtimer_expire_exit - called immediately after the hrtimer callback returns
230 * @timer: pointer to struct hrtimer
231 *
232 * When used in combination with the hrtimer_expire_entry tracepoint we can
233 * determine the runtime of the callback function.
234 */
235TRACE_EVENT(hrtimer_expire_exit,
236
237 TP_PROTO(struct hrtimer *timer),
238
239 TP_ARGS(timer),
240
241 TP_STRUCT__entry(
242 __field( void *, timer )
243 ),
244
245 TP_fast_assign(
246 __entry->timer = timer;
247 ),
248
249 TP_printk("hrtimer %p", __entry->timer)
250);
251
252/**
253 * hrtimer_cancel - called when the hrtimer is canceled
254 * @timer: pointer to struct hrtimer
255 */
256TRACE_EVENT(hrtimer_cancel,
257
258 TP_PROTO(struct hrtimer *timer),
259
260 TP_ARGS(timer),
261
262 TP_STRUCT__entry(
263 __field( void *, timer )
264 ),
265
266 TP_fast_assign(
267 __entry->timer = timer;
268 ),
269
270 TP_printk("hrtimer %p", __entry->timer)
271);
272
273/**
274 * itimer_state - called when itimer is started or canceled
275 * @which: name of the interval timer
276 * @value: the itimers value, itimer is canceled if value->it_value is
277 * zero, otherwise it is started
278 * @expires: the itimers expiry time
279 */
280TRACE_EVENT(itimer_state,
281
282 TP_PROTO(int which, const struct itimerval *const value,
283 cputime_t expires),
284
285 TP_ARGS(which, value, expires),
286
287 TP_STRUCT__entry(
288 __field( int, which )
289 __field( cputime_t, expires )
290 __field( long, value_sec )
291 __field( long, value_usec )
292 __field( long, interval_sec )
293 __field( long, interval_usec )
294 ),
295
296 TP_fast_assign(
297 __entry->which = which;
298 __entry->expires = expires;
299 __entry->value_sec = value->it_value.tv_sec;
300 __entry->value_usec = value->it_value.tv_usec;
301 __entry->interval_sec = value->it_interval.tv_sec;
302 __entry->interval_usec = value->it_interval.tv_usec;
303 ),
304
305 TP_printk("which %d, expires %lu, it_value %lu.%lu, it_interval %lu.%lu",
306 __entry->which, __entry->expires,
307 __entry->value_sec, __entry->value_usec,
308 __entry->interval_sec, __entry->interval_usec)
309);
310
311/**
312 * itimer_expire - called when itimer expires
313 * @which: type of the interval timer
314 * @pid: pid of the process which owns the timer
315 * @now: current time, used to calculate the latency of itimer
316 */
317TRACE_EVENT(itimer_expire,
318
319 TP_PROTO(int which, struct pid *pid, cputime_t now),
320
321 TP_ARGS(which, pid, now),
322
323 TP_STRUCT__entry(
324 __field( int , which )
325 __field( pid_t, pid )
326 __field( cputime_t, now )
327 ),
328
329 TP_fast_assign(
330 __entry->which = which;
331 __entry->now = now;
332 __entry->pid = pid_nr(pid);
333 ),
334
335 TP_printk("which %d, pid %d, now %lu", __entry->which,
336 (int) __entry->pid, __entry->now)
337);
338
339#endif /* _TRACE_TIMER_H */
340
341/* This part must be outside protection */
342#include <trace/define_trace.h>
diff --git a/include/video/da8xx-fb.h b/include/video/da8xx-fb.h
new file mode 100644
index 000000000000..c051a50ed528
--- /dev/null
+++ b/include/video/da8xx-fb.h
@@ -0,0 +1,103 @@
1/*
2 * Header file for TI DA8XX LCD controller platform data.
3 *
4 * Copyright (C) 2008-2009 MontaVista Software Inc.
5 * Copyright (C) 2008-2009 Texas Instruments Inc
6 *
7 * This file is licensed under the terms of the GNU General Public License
8 * version 2. This program is licensed "as is" without any warranty of any
9 * kind, whether express or implied.
10 */
11
12#ifndef DA8XX_FB_H
13#define DA8XX_FB_H
14
15enum panel_type {
16 QVGA = 0
17};
18
19enum panel_shade {
20 MONOCHROME = 0,
21 COLOR_ACTIVE,
22 COLOR_PASSIVE,
23};
24
25enum raster_load_mode {
26 LOAD_DATA = 1,
27 LOAD_PALETTE,
28};
29
30struct display_panel {
31 enum panel_type panel_type; /* QVGA */
32 int max_bpp;
33 int min_bpp;
34 enum panel_shade panel_shade;
35};
36
37struct da8xx_lcdc_platform_data {
38 const char manu_name[10];
39 void *controller_data;
40 const char type[25];
41};
42
43struct lcd_ctrl_config {
44 const struct display_panel *p_disp_panel;
45
46 /* AC Bias Pin Frequency */
47 int ac_bias;
48
49 /* AC Bias Pin Transitions per Interrupt */
50 int ac_bias_intrpt;
51
52 /* DMA burst size */
53 int dma_burst_sz;
54
55 /* Bits per pixel */
56 int bpp;
57
58 /* FIFO DMA Request Delay */
59 int fdd;
60
61 /* TFT Alternative Signal Mapping (Only for active) */
62 unsigned char tft_alt_mode;
63
64 /* 12 Bit Per Pixel (5-6-5) Mode (Only for passive) */
65 unsigned char stn_565_mode;
66
67 /* Mono 8-bit Mode: 1=D0-D7 or 0=D0-D3 */
68 unsigned char mono_8bit_mode;
69
70 /* Invert line clock */
71 unsigned char invert_line_clock;
72
73 /* Invert frame clock */
74 unsigned char invert_frm_clock;
75
76 /* Horizontal and Vertical Sync Edge: 0=rising 1=falling */
77 unsigned char sync_edge;
78
79 /* Horizontal and Vertical Sync: Control: 0=ignore */
80 unsigned char sync_ctrl;
81
82 /* Raster Data Order Select: 1=Most-to-least 0=Least-to-most */
83 unsigned char raster_order;
84};
85
86struct lcd_sync_arg {
87 int back_porch;
88 int front_porch;
89 int pulse_width;
90};
91
92/* ioctls */
93#define FBIOGET_CONTRAST _IOR('F', 1, int)
94#define FBIOPUT_CONTRAST _IOW('F', 2, int)
95#define FBIGET_BRIGHTNESS _IOR('F', 3, int)
96#define FBIPUT_BRIGHTNESS _IOW('F', 3, int)
97#define FBIGET_COLOR _IOR('F', 5, int)
98#define FBIPUT_COLOR _IOW('F', 6, int)
99#define FBIPUT_HSYNC _IOW('F', 9, int)
100#define FBIPUT_VSYNC _IOW('F', 10, int)
101
102#endif /* ifndef DA8XX_FB_H */
103