diff options
Diffstat (limited to 'include')
46 files changed, 1401 insertions, 437 deletions
diff --git a/include/acpi/acpi_drivers.h b/include/acpi/acpi_drivers.h index e6168a24b9f..b420939f5eb 100644 --- a/include/acpi/acpi_drivers.h +++ b/include/acpi/acpi_drivers.h @@ -123,7 +123,9 @@ extern int register_dock_notifier(struct notifier_block *nb); extern void unregister_dock_notifier(struct notifier_block *nb); extern int register_hotplug_dock_device(acpi_handle handle, const struct acpi_dock_ops *ops, - void *context); + void *context, + void (*init)(void *), + void (*release)(void *)); extern void unregister_hotplug_dock_device(acpi_handle handle); #else static inline int is_dock_device(acpi_handle handle) @@ -139,7 +141,9 @@ static inline void unregister_dock_notifier(struct notifier_block *nb) } static inline int register_hotplug_dock_device(acpi_handle handle, const struct acpi_dock_ops *ops, - void *context) + void *context, + void (*init)(void *), + void (*release)(void *)) { return -ENODEV; } diff --git a/include/asm-generic/pgtable.h b/include/asm-generic/pgtable.h index a59ff51b016..b1836987d50 100644 --- a/include/asm-generic/pgtable.h +++ b/include/asm-generic/pgtable.h @@ -692,4 +692,8 @@ static inline pmd_t pmd_mknuma(pmd_t pmd) #endif /* !__ASSEMBLY__ */ +#ifndef io_remap_pfn_range +#define io_remap_pfn_range remap_pfn_range +#endif + #endif /* _ASM_GENERIC_PGTABLE_H */ diff --git a/include/linux/buffer_head.h b/include/linux/buffer_head.h index 9e52b0626b3..f5a3b838ddb 100644 --- a/include/linux/buffer_head.h +++ b/include/linux/buffer_head.h @@ -198,7 +198,8 @@ extern int buffer_heads_over_limit; * Generic address_space_operations implementations for buffer_head-backed * address_spaces. */ -void block_invalidatepage(struct page *page, unsigned long offset); +void block_invalidatepage(struct page *page, unsigned int offset, + unsigned int length); int block_write_full_page(struct page *page, get_block_t *get_block, struct writeback_control *wbc); int block_write_full_page_endio(struct page *page, get_block_t *get_block, diff --git a/include/linux/console.h b/include/linux/console.h index 73bab0f58af..7571a16bd65 100644 --- a/include/linux/console.h +++ b/include/linux/console.h @@ -75,10 +75,7 @@ extern const struct consw newport_con; /* SGI Newport console */ extern const struct consw prom_con; /* SPARC PROM console */ int con_is_bound(const struct consw *csw); -int register_con_driver(const struct consw *csw, int first, int last); -int unregister_con_driver(const struct consw *csw); int do_unregister_con_driver(const struct consw *csw); -int take_over_console(const struct consw *sw, int first, int last, int deflt); int do_take_over_console(const struct consw *sw, int first, int last, int deflt); void give_up_console(const struct consw *sw); #ifdef CONFIG_HW_CONSOLE diff --git a/include/linux/f2fs_fs.h b/include/linux/f2fs_fs.h index df6fab82f87..383d5e39b28 100644 --- a/include/linux/f2fs_fs.h +++ b/include/linux/f2fs_fs.h @@ -20,8 +20,8 @@ #define F2FS_BLKSIZE 4096 /* support only 4KB block */ #define F2FS_MAX_EXTENSION 64 /* # of extension entries */ -#define NULL_ADDR 0x0U -#define NEW_ADDR -1U +#define NULL_ADDR ((block_t)0) /* used as block_t addresses */ +#define NEW_ADDR ((block_t)-1) /* used as block_t addresses */ #define F2FS_ROOT_INO(sbi) (sbi->root_ino_num) #define F2FS_NODE_INO(sbi) (sbi->node_ino_num) diff --git a/include/linux/fmc-sdb.h b/include/linux/fmc-sdb.h new file mode 100644 index 00000000000..1974317a9b3 --- /dev/null +++ b/include/linux/fmc-sdb.h @@ -0,0 +1,36 @@ +/* + * This file is separate from sdb.h, because I want that one to remain + * unchanged (as far as possible) from the official sdb distribution + * + * This file and associated functionality are a playground for me to + * understand stuff which will later be implemented in more generic places. + */ +#include <linux/sdb.h> + +/* This is the union of all currently defined types */ +union sdb_record { + struct sdb_interconnect ic; + struct sdb_device dev; + struct sdb_bridge bridge; + struct sdb_integration integr; + struct sdb_empty empty; +}; + +struct fmc_device; + +/* Every sdb table is turned into this structure */ +struct sdb_array { + int len; + int level; + unsigned long baseaddr; + struct fmc_device *fmc; /* the device that hosts it */ + struct sdb_array *parent; /* NULL at root */ + union sdb_record *record; /* copies of the struct */ + struct sdb_array **subtree; /* only valid for bridge items */ +}; + +extern int fmc_scan_sdb_tree(struct fmc_device *fmc, unsigned long address); +extern void fmc_show_sdb_tree(const struct fmc_device *fmc); +extern signed long fmc_find_sdb_device(struct sdb_array *tree, uint64_t vendor, + uint32_t device, unsigned long *sz); +extern int fmc_free_sdb_tree(struct fmc_device *fmc); diff --git a/include/linux/fmc.h b/include/linux/fmc.h new file mode 100644 index 00000000000..a5f0aa5c2a8 --- /dev/null +++ b/include/linux/fmc.h @@ -0,0 +1,237 @@ +/* + * Copyright (C) 2012 CERN (www.cern.ch) + * Author: Alessandro Rubini <rubini@gnudd.com> + * + * Released according to the GNU GPL, version 2 or any later version. + * + * This work is part of the White Rabbit project, a research effort led + * by CERN, the European Institute for Nuclear Research. + */ +#ifndef __LINUX_FMC_H__ +#define __LINUX_FMC_H__ +#include <linux/types.h> +#include <linux/moduleparam.h> +#include <linux/device.h> +#include <linux/list.h> +#include <linux/interrupt.h> +#include <linux/io.h> + +struct fmc_device; +struct fmc_driver; + +/* + * This bus abstraction is developed separately from drivers, so we need + * to check the version of the data structures we receive. + */ + +#define FMC_MAJOR 3 +#define FMC_MINOR 0 +#define FMC_VERSION ((FMC_MAJOR << 16) | FMC_MINOR) +#define __FMC_MAJOR(x) ((x) >> 16) +#define __FMC_MINOR(x) ((x) & 0xffff) + +/* + * The device identification, as defined by the IPMI FRU (Field Replaceable + * Unit) includes four different strings to describe the device. Here we + * only match the "Board Manufacturer" and the "Board Product Name", + * ignoring the "Board Serial Number" and "Board Part Number". All 4 are + * expected to be strings, so they are treated as zero-terminated C strings. + * Unspecified string (NULL) means "any", so if both are unspecified this + * is a catch-all driver. So null entries are allowed and we use array + * and length. This is unlike pci and usb that use null-terminated arrays + */ +struct fmc_fru_id { + char *manufacturer; + char *product_name; +}; + +/* + * If the FPGA is already programmed (think Etherbone or the second + * SVEC slot), we can match on SDB devices in the memory image. This + * match uses an array of devices that must all be present, and the + * match is based on vendor and device only. Further checks are expected + * to happen in the probe function. Zero means "any" and catch-all is allowed. + */ +struct fmc_sdb_one_id { + uint64_t vendor; + uint32_t device; +}; +struct fmc_sdb_id { + struct fmc_sdb_one_id *cores; + int cores_nr; +}; + +struct fmc_device_id { + struct fmc_fru_id *fru_id; + int fru_id_nr; + struct fmc_sdb_id *sdb_id; + int sdb_id_nr; +}; + +/* This sizes the module_param_array used by generic module parameters */ +#define FMC_MAX_CARDS 32 + +/* The driver is a pretty simple thing */ +struct fmc_driver { + unsigned long version; + struct device_driver driver; + int (*probe)(struct fmc_device *); + int (*remove)(struct fmc_device *); + const struct fmc_device_id id_table; + /* What follows is for generic module parameters */ + int busid_n; + int busid_val[FMC_MAX_CARDS]; + int gw_n; + char *gw_val[FMC_MAX_CARDS]; +}; +#define to_fmc_driver(x) container_of((x), struct fmc_driver, driver) + +/* These are the generic parameters, that drivers may instantiate */ +#define FMC_PARAM_BUSID(_d) \ + module_param_array_named(busid, _d.busid_val, int, &_d.busid_n, 0444) +#define FMC_PARAM_GATEWARE(_d) \ + module_param_array_named(gateware, _d.gw_val, charp, &_d.gw_n, 0444) + +/* + * Drivers may need to configure gpio pins in the carrier. To read input + * (a very uncommon operation, and definitely not in the hot paths), just + * configure one gpio only and get 0 or 1 as retval of the config method + */ +struct fmc_gpio { + char *carrier_name; /* name or NULL for virtual pins */ + int gpio; + int _gpio; /* internal use by the carrier */ + int mode; /* GPIOF_DIR_OUT etc, from <linux/gpio.h> */ + int irqmode; /* IRQF_TRIGGER_LOW and so on */ +}; + +/* The numbering of gpio pins allows access to raw pins or virtual roles */ +#define FMC_GPIO_RAW(x) (x) /* 4096 of them */ +#define __FMC_GPIO_IS_RAW(x) ((x) < 0x1000) +#define FMC_GPIO_IRQ(x) ((x) + 0x1000) /* 256 of them */ +#define FMC_GPIO_LED(x) ((x) + 0x1100) /* 256 of them */ +#define FMC_GPIO_KEY(x) ((x) + 0x1200) /* 256 of them */ +#define FMC_GPIO_TP(x) ((x) + 0x1300) /* 256 of them */ +#define FMC_GPIO_USER(x) ((x) + 0x1400) /* 256 of them */ +/* We may add SCL and SDA, or other roles if the need arises */ + +/* GPIOF_DIR_IN etc are missing before 3.0. copy from <linux/gpio.h> */ +#ifndef GPIOF_DIR_IN +# define GPIOF_DIR_OUT (0 << 0) +# define GPIOF_DIR_IN (1 << 0) +# define GPIOF_INIT_LOW (0 << 1) +# define GPIOF_INIT_HIGH (1 << 1) +#endif + +/* + * The operations are offered by each carrier and should make driver + * design completely independent of the carrier. Named GPIO pins may be + * the exception. + */ +struct fmc_operations { + uint32_t (*read32)(struct fmc_device *fmc, int offset); + void (*write32)(struct fmc_device *fmc, uint32_t value, int offset); + int (*validate)(struct fmc_device *fmc, struct fmc_driver *drv); + int (*reprogram)(struct fmc_device *f, struct fmc_driver *d, char *gw); + int (*irq_request)(struct fmc_device *fmc, irq_handler_t h, + char *name, int flags); + void (*irq_ack)(struct fmc_device *fmc); + int (*irq_free)(struct fmc_device *fmc); + int (*gpio_config)(struct fmc_device *fmc, struct fmc_gpio *gpio, + int ngpio); + int (*read_ee)(struct fmc_device *fmc, int pos, void *d, int l); + int (*write_ee)(struct fmc_device *fmc, int pos, const void *d, int l); +}; + +/* Prefer this helper rather than calling of fmc->reprogram directly */ +extern int fmc_reprogram(struct fmc_device *f, struct fmc_driver *d, char *gw, + int sdb_entry); + +/* + * The device reports all information needed to access hw. + * + * If we have eeprom_len and not contents, the core reads it. + * Then, parsing of identifiers is done by the core which fills fmc_fru_id.. + * Similarly a device that must be matched based on SDB cores must + * fill the entry point and the core will scan the bus (FIXME: sdb match) + */ +struct fmc_device { + unsigned long version; + unsigned long flags; + struct module *owner; /* char device must pin it */ + struct fmc_fru_id id; /* for EEPROM-based match */ + struct fmc_operations *op; /* carrier-provided */ + int irq; /* according to host bus. 0 == none */ + int eeprom_len; /* Usually 8kB, may be less */ + int eeprom_addr; /* 0x50, 0x52 etc */ + uint8_t *eeprom; /* Full contents or leading part */ + char *carrier_name; /* "SPEC" or similar, for special use */ + void *carrier_data; /* "struct spec *" or equivalent */ + __iomem void *fpga_base; /* May be NULL (Etherbone) */ + __iomem void *slot_base; /* Set by the driver */ + struct fmc_device **devarray; /* Allocated by the bus */ + int slot_id; /* Index in the slot array */ + int nr_slots; /* Number of slots in this carrier */ + unsigned long memlen; /* Used for the char device */ + struct device dev; /* For Linux use */ + struct device *hwdev; /* The underlying hardware device */ + unsigned long sdbfs_entry; + struct sdb_array *sdb; + uint32_t device_id; /* Filled by the device */ + char *mezzanine_name; /* Defaults to ``fmc'' */ + void *mezzanine_data; +}; +#define to_fmc_device(x) container_of((x), struct fmc_device, dev) + +#define FMC_DEVICE_HAS_GOLDEN 1 +#define FMC_DEVICE_HAS_CUSTOM 2 +#define FMC_DEVICE_NO_MEZZANINE 4 +#define FMC_DEVICE_MATCH_SDB 8 /* fmc-core must scan sdb in fpga */ + +/* + * If fpga_base can be used, the carrier offers no readl/writel methods, and + * this expands to a single, fast, I/O access. + */ +static inline uint32_t fmc_readl(struct fmc_device *fmc, int offset) +{ + if (unlikely(fmc->op->read32)) + return fmc->op->read32(fmc, offset); + return readl(fmc->fpga_base + offset); +} +static inline void fmc_writel(struct fmc_device *fmc, uint32_t val, int off) +{ + if (unlikely(fmc->op->write32)) + fmc->op->write32(fmc, val, off); + else + writel(val, fmc->fpga_base + off); +} + +/* pci-like naming */ +static inline void *fmc_get_drvdata(const struct fmc_device *fmc) +{ + return dev_get_drvdata(&fmc->dev); +} + +static inline void fmc_set_drvdata(struct fmc_device *fmc, void *data) +{ + dev_set_drvdata(&fmc->dev, data); +} + +/* The 4 access points */ +extern int fmc_driver_register(struct fmc_driver *drv); +extern void fmc_driver_unregister(struct fmc_driver *drv); +extern int fmc_device_register(struct fmc_device *tdev); +extern void fmc_device_unregister(struct fmc_device *tdev); + +/* Two more for device sets, all driven by the same FPGA */ +extern int fmc_device_register_n(struct fmc_device **devs, int n); +extern void fmc_device_unregister_n(struct fmc_device **devs, int n); + +/* Internal cross-calls between files; not exported to other modules */ +extern int fmc_match(struct device *dev, struct device_driver *drv); +extern int fmc_fill_id_info(struct fmc_device *fmc); +extern void fmc_free_id_info(struct fmc_device *fmc); +extern void fmc_dump_eeprom(const struct fmc_device *fmc); +extern void fmc_dump_sdb(const struct fmc_device *fmc); + +#endif /* __LINUX_FMC_H__ */ diff --git a/include/linux/fs.h b/include/linux/fs.h index 65c2be22b60..f8a5240541b 100644 --- a/include/linux/fs.h +++ b/include/linux/fs.h @@ -364,7 +364,7 @@ struct address_space_operations { /* Unfortunately this kludge is needed for FIBMAP. Don't use it */ sector_t (*bmap)(struct address_space *, sector_t); - void (*invalidatepage) (struct page *, unsigned long); + void (*invalidatepage) (struct page *, unsigned int, unsigned int); int (*releasepage) (struct page *, gfp_t); void (*freepage)(struct page *); ssize_t (*direct_IO)(int, struct kiocb *, const struct iovec *iov, @@ -1506,6 +1506,11 @@ int fiemap_check_flags(struct fiemap_extent_info *fieinfo, u32 fs_flags); * to have different dirent layouts depending on the binary type. */ typedef int (*filldir_t)(void *, const char *, int, loff_t, u64, unsigned); +struct dir_context { + const filldir_t actor; + loff_t pos; +}; + struct block_device_operations; /* These macros are for out of kernel modules to test that @@ -1521,7 +1526,7 @@ struct file_operations { ssize_t (*write) (struct file *, const char __user *, size_t, loff_t *); ssize_t (*aio_read) (struct kiocb *, const struct iovec *, unsigned long, loff_t); ssize_t (*aio_write) (struct kiocb *, const struct iovec *, unsigned long, loff_t); - int (*readdir) (struct file *, void *, filldir_t); + int (*iterate) (struct file *, struct dir_context *); unsigned int (*poll) (struct file *, struct poll_table_struct *); long (*unlocked_ioctl) (struct file *, unsigned int, unsigned long); long (*compat_ioctl) (struct file *, unsigned int, unsigned long); @@ -2494,6 +2499,7 @@ loff_t inode_get_bytes(struct inode *inode); void inode_set_bytes(struct inode *inode, loff_t bytes); extern int vfs_readdir(struct file *, filldir_t, void *); +extern int iterate_dir(struct file *, struct dir_context *); extern int vfs_stat(const char __user *, struct kstat *); extern int vfs_lstat(const char __user *, struct kstat *); @@ -2524,7 +2530,7 @@ extern void iterate_supers_type(struct file_system_type *, extern int dcache_dir_open(struct inode *, struct file *); extern int dcache_dir_close(struct inode *, struct file *); extern loff_t dcache_dir_lseek(struct file *, loff_t, int); -extern int dcache_readdir(struct file *, void *, filldir_t); +extern int dcache_readdir(struct file *, struct dir_context *); extern int simple_setattr(struct dentry *, struct iattr *); extern int simple_getattr(struct vfsmount *, struct dentry *, struct kstat *); extern int simple_statfs(struct dentry *, struct kstatfs *); @@ -2688,4 +2694,41 @@ static inline void inode_has_no_xattr(struct inode *inode) inode->i_flags |= S_NOSEC; } +static inline bool dir_emit(struct dir_context *ctx, + const char *name, int namelen, + u64 ino, unsigned type) +{ + return ctx->actor(ctx, name, namelen, ctx->pos, ino, type) == 0; +} +static inline bool dir_emit_dot(struct file *file, struct dir_context *ctx) +{ + return ctx->actor(ctx, ".", 1, ctx->pos, + file->f_path.dentry->d_inode->i_ino, DT_DIR) == 0; +} +static inline bool dir_emit_dotdot(struct file *file, struct dir_context *ctx) +{ + return ctx->actor(ctx, "..", 2, ctx->pos, + parent_ino(file->f_path.dentry), DT_DIR) == 0; +} +static inline bool dir_emit_dots(struct file *file, struct dir_context *ctx) +{ + if (ctx->pos == 0) { + if (!dir_emit_dot(file, ctx)) + return false; + ctx->pos = 1; + } + if (ctx->pos == 1) { + if (!dir_emit_dotdot(file, ctx)) + return false; + ctx->pos = 2; + } + return true; +} +static inline bool dir_relax(struct inode *inode) +{ + mutex_unlock(&inode->i_mutex); + mutex_lock(&inode->i_mutex); + return !IS_DEADDIR(inode); +} + #endif /* _LINUX_FS_H */ diff --git a/include/linux/fscache-cache.h b/include/linux/fscache-cache.h index 5dfa0aa216b..a9ff9a36b86 100644 --- a/include/linux/fscache-cache.h +++ b/include/linux/fscache-cache.h @@ -97,7 +97,8 @@ struct fscache_operation { #define FSCACHE_OP_WAITING 4 /* cleared when op is woken */ #define FSCACHE_OP_EXCLUSIVE 5 /* exclusive op, other ops must wait */ #define FSCACHE_OP_DEC_READ_CNT 6 /* decrement object->n_reads on destruction */ -#define FSCACHE_OP_KEEP_FLAGS 0x0070 /* flags to keep when repurposing an op */ +#define FSCACHE_OP_UNUSE_COOKIE 7 /* call fscache_unuse_cookie() on completion */ +#define FSCACHE_OP_KEEP_FLAGS 0x00f0 /* flags to keep when repurposing an op */ enum fscache_operation_state state; atomic_t usage; @@ -150,7 +151,7 @@ struct fscache_retrieval { void *context; /* netfs read context (pinned) */ struct list_head to_do; /* list of things to be done by the backend */ unsigned long start_time; /* time at which retrieval started */ - unsigned n_pages; /* number of pages to be retrieved */ + atomic_t n_pages; /* number of pages to be retrieved */ }; typedef int (*fscache_page_retrieval_func_t)(struct fscache_retrieval *op, @@ -194,15 +195,14 @@ static inline void fscache_enqueue_retrieval(struct fscache_retrieval *op) static inline void fscache_retrieval_complete(struct fscache_retrieval *op, int n_pages) { - op->n_pages -= n_pages; - if (op->n_pages <= 0) + atomic_sub(n_pages, &op->n_pages); + if (atomic_read(&op->n_pages) <= 0) fscache_op_complete(&op->op, true); } /** * fscache_put_retrieval - Drop a reference to a retrieval operation * @op: The retrieval operation affected - * @n_pages: The number of pages to account for * * Drop a reference to a retrieval operation. */ @@ -314,6 +314,7 @@ struct fscache_cache_ops { struct fscache_cookie { atomic_t usage; /* number of users of this cookie */ atomic_t n_children; /* number of children of this cookie */ + atomic_t n_active; /* number of active users of netfs ptrs */ spinlock_t lock; spinlock_t stores_lock; /* lock on page store tree */ struct hlist_head backing_objects; /* object(s) backing this file/index */ @@ -326,13 +327,11 @@ struct fscache_cookie { unsigned long flags; #define FSCACHE_COOKIE_LOOKING_UP 0 /* T if non-index cookie being looked up still */ -#define FSCACHE_COOKIE_CREATING 1 /* T if non-index object being created still */ -#define FSCACHE_COOKIE_NO_DATA_YET 2 /* T if new object with no cached data yet */ -#define FSCACHE_COOKIE_PENDING_FILL 3 /* T if pending initial fill on object */ -#define FSCACHE_COOKIE_FILLING 4 /* T if filling object incrementally */ -#define FSCACHE_COOKIE_UNAVAILABLE 5 /* T if cookie is unavailable (error, etc) */ -#define FSCACHE_COOKIE_WAITING_ON_READS 6 /* T if cookie is waiting on reads */ -#define FSCACHE_COOKIE_INVALIDATING 7 /* T if cookie is being invalidated */ +#define FSCACHE_COOKIE_NO_DATA_YET 1 /* T if new object with no cached data yet */ +#define FSCACHE_COOKIE_UNAVAILABLE 2 /* T if cookie is unavailable (error, etc) */ +#define FSCACHE_COOKIE_INVALIDATING 3 /* T if cookie is being invalidated */ +#define FSCACHE_COOKIE_RELINQUISHED 4 /* T if cookie has been relinquished */ +#define FSCACHE_COOKIE_RETIRED 5 /* T if cookie was retired */ }; extern struct fscache_cookie fscache_fsdef_index; @@ -341,45 +340,40 @@ extern struct fscache_cookie fscache_fsdef_index; * Event list for fscache_object::{event_mask,events} */ enum { - FSCACHE_OBJECT_EV_REQUEUE, /* T if object should be requeued */ + FSCACHE_OBJECT_EV_NEW_CHILD, /* T if object has a new child */ + FSCACHE_OBJECT_EV_PARENT_READY, /* T if object's parent is ready */ FSCACHE_OBJECT_EV_UPDATE, /* T if object should be updated */ FSCACHE_OBJECT_EV_INVALIDATE, /* T if cache requested object invalidation */ FSCACHE_OBJECT_EV_CLEARED, /* T if accessors all gone */ FSCACHE_OBJECT_EV_ERROR, /* T if fatal error occurred during processing */ - FSCACHE_OBJECT_EV_RELEASE, /* T if netfs requested object release */ - FSCACHE_OBJECT_EV_RETIRE, /* T if netfs requested object retirement */ - FSCACHE_OBJECT_EV_WITHDRAW, /* T if cache requested object withdrawal */ + FSCACHE_OBJECT_EV_KILL, /* T if netfs relinquished or cache withdrew object */ NR_FSCACHE_OBJECT_EVENTS }; #define FSCACHE_OBJECT_EVENTS_MASK ((1UL << NR_FSCACHE_OBJECT_EVENTS) - 1) /* + * States for object state machine. + */ +struct fscache_transition { + unsigned long events; + const struct fscache_state *transit_to; +}; + +struct fscache_state { + char name[24]; + char short_name[8]; + const struct fscache_state *(*work)(struct fscache_object *object, + int event); + const struct fscache_transition transitions[]; +}; + +/* * on-disk cache file or index handle */ struct fscache_object { - enum fscache_object_state { - FSCACHE_OBJECT_INIT, /* object in initial unbound state */ - FSCACHE_OBJECT_LOOKING_UP, /* looking up object */ - FSCACHE_OBJECT_CREATING, /* creating object */ - - /* active states */ - FSCACHE_OBJECT_AVAILABLE, /* cleaning up object after creation */ - FSCACHE_OBJECT_ACTIVE, /* object is usable */ - FSCACHE_OBJECT_INVALIDATING, /* object is invalidating */ - FSCACHE_OBJECT_UPDATING, /* object is updating */ - - /* terminal states */ - FSCACHE_OBJECT_DYING, /* object waiting for accessors to finish */ - FSCACHE_OBJECT_LC_DYING, /* object cleaning up after lookup/create */ - FSCACHE_OBJECT_ABORT_INIT, /* abort the init state */ - FSCACHE_OBJECT_RELEASING, /* releasing object */ - FSCACHE_OBJECT_RECYCLING, /* retiring object */ - FSCACHE_OBJECT_WITHDRAWING, /* withdrawing object */ - FSCACHE_OBJECT_DEAD, /* object is now dead */ - FSCACHE_OBJECT__NSTATES - } state; - + const struct fscache_state *state; /* Object state machine state */ + const struct fscache_transition *oob_table; /* OOB state transition table */ int debug_id; /* debugging ID */ int n_children; /* number of child objects */ int n_ops; /* number of extant ops on object */ @@ -390,6 +384,7 @@ struct fscache_object { spinlock_t lock; /* state and operations lock */ unsigned long lookup_jif; /* time at which lookup started */ + unsigned long oob_event_mask; /* OOB events this object is interested in */ unsigned long event_mask; /* events this object is interested in */ unsigned long events; /* events to be processed by this object * (order is important - using fls) */ @@ -398,6 +393,9 @@ struct fscache_object { #define FSCACHE_OBJECT_LOCK 0 /* T if object is busy being processed */ #define FSCACHE_OBJECT_PENDING_WRITE 1 /* T if object has pending write */ #define FSCACHE_OBJECT_WAITING 2 /* T if object is waiting on its parent */ +#define FSCACHE_OBJECT_IS_LIVE 3 /* T if object is not withdrawn or relinquished */ +#define FSCACHE_OBJECT_IS_LOOKED_UP 4 /* T if object has been looked up */ +#define FSCACHE_OBJECT_IS_AVAILABLE 5 /* T if object has become active */ struct list_head cache_link; /* link in cache->object_list */ struct hlist_node cookie_link; /* link in cookie->backing_objects */ @@ -415,62 +413,40 @@ struct fscache_object { loff_t store_limit_l; /* current storage limit */ }; -extern const char *fscache_object_states[]; +extern vo |