kernel/module: fully convert to BOpenHashTable

This commit is contained in:
Adrien Destugues
2015-01-12 18:23:44 +01:00
parent c921f4a7a1
commit 887be0ac6a
+96 -116
View File
@@ -314,71 +314,64 @@ static bool sDisableUserAddOns = false;
*/ */
static recursive_lock sModulesLock; static recursive_lock sModulesLock;
struct ModuleHash {
typedef const char* KeyType;
typedef module ValueType;
size_t Hash(ValueType* module) const
{ return HashKey(module->name); }
ValueType*& GetLink(ValueType* entry) const
{ return entry->next; }
size_t HashKey(KeyType key) const
{
return hash_hash_string(key);
}
bool Compare(KeyType key, ValueType* module) const
{
if (key == NULL)
return false;
return strcmp(module->name, key) == 0;
}
};
typedef BOpenHashTable<ModuleHash> ModuleTable;
struct ImageHash {
typedef const char* KeyType;
typedef module_image ValueType;
size_t Hash(ValueType* image) const
{ return HashKey(image->path); }
ValueType*& GetLink(ValueType* entry) const
{ return entry->next; }
size_t HashKey(KeyType key) const
{
return hash_hash_string(key);
}
bool Compare(KeyType key, ValueType* image) const
{
if (key == NULL)
return false;
return strcmp(image->path, key) == 0;
}
};
typedef BOpenHashTable<ImageHash> ImageTable;
/* We store the loaded modules by directory path, and all known modules /* We store the loaded modules by directory path, and all known modules
* by module name in a hash table for quick access * by module name in a hash table for quick access
*/ */
static hash_table* sModuleImagesHash; static ImageTable* sModuleImagesHash;
static hash_table* sModulesHash; static ModuleTable* sModulesHash;
/*! Calculates hash for a module using its name */
static uint32
module_hash(void* _module, const void* _key, uint32 range)
{
module* module = (struct module*)_module;
const char* name = (const char*)_key;
if (module != NULL)
return hash_hash_string(module->name) % range;
if (name != NULL)
return hash_hash_string(name) % range;
return 0;
}
/*! Compares a module to a given name */
static int
module_compare(void* _module, const void* _key)
{
module* module = (struct module*)_module;
const char* name = (const char*)_key;
if (name == NULL)
return -1;
return strcmp(module->name, name);
}
/*! Calculates the hash of a module image using its path */
static uint32
module_image_hash(void* _module, const void* _key, uint32 range)
{
module_image* image = (module_image*)_module;
const char* path = (const char*)_key;
if (image != NULL)
return hash_hash_string(image->path) % range;
if (path != NULL)
return hash_hash_string(path) % range;
return 0;
}
/*! Compares a module image to a path */
static int
module_image_compare(void* _module, const void* _key)
{
module_image* image = (module_image*)_module;
const char* path = (const char*)_key;
if (path == NULL)
return -1;
return strcmp(image->path, path);
}
/*! Try to load the module image at the specified \a path. /*! Try to load the module image at the specified \a path.
@@ -432,7 +425,7 @@ load_module_image(const char* path, module_image** _moduleImage)
moduleImage->image = image; moduleImage->image = image;
moduleImage->ref_count = 0; moduleImage->ref_count = 0;
hash_insert(sModuleImagesHash, moduleImage); sModuleImagesHash->Insert(moduleImage);
TRACE(("load_module_image(\"%s\"): image loaded: %p\n", path, moduleImage)); TRACE(("load_module_image(\"%s\"): image loaded: %p\n", path, moduleImage));
@@ -458,13 +451,13 @@ unload_module_image(module_image* moduleImage, bool remove)
ASSERT_LOCKED_RECURSIVE(&sModulesLock); ASSERT_LOCKED_RECURSIVE(&sModulesLock);
if (moduleImage->ref_count != 0) { if (moduleImage->ref_count != 0) {
FATAL(("Can't unload %s due to ref_cnt = %" B_PRId32 "\n", moduleImage->path, FATAL(("Can't unload %s due to ref_cnt = %" B_PRId32 "\n",
moduleImage->ref_count)); moduleImage->path, moduleImage->ref_count));
return B_ERROR; return B_ERROR;
} }
if (remove) if (remove)
hash_remove(sModuleImagesHash, moduleImage); sModuleImagesHash->Remove(moduleImage);
unload_kernel_add_on(moduleImage->image); unload_kernel_add_on(moduleImage->image);
free(moduleImage->path); free(moduleImage->path);
@@ -499,7 +492,7 @@ get_module_image(const char* path, module_image** _image)
RecursiveLocker _(sModulesLock); RecursiveLocker _(sModulesLock);
image = (module_image*)hash_lookup(sModuleImagesHash, path); image = sModuleImagesHash->Lookup(path);
if (image == NULL) { if (image == NULL) {
status_t status = load_module_image(path, &image); status_t status = load_module_image(path, &image);
if (status < B_OK) if (status < B_OK)
@@ -527,7 +520,7 @@ create_module(module_info* info, int offset, module** _module)
if (!info->name) if (!info->name)
return B_BAD_VALUE; return B_BAD_VALUE;
module = (struct module*)hash_lookup(sModulesHash, info->name); module = sModulesHash->Lookup(info->name);
if (module) { if (module) {
FATAL(("Duplicate module name (%s) detected... ignoring new one\n", FATAL(("Duplicate module name (%s) detected... ignoring new one\n",
info->name)); info->name));
@@ -554,7 +547,7 @@ create_module(module_info* info, int offset, module** _module)
module->flags = info->flags; module->flags = info->flags;
recursive_lock_lock(&sModulesLock); recursive_lock_lock(&sModulesLock);
hash_insert(sModulesHash, module); sModulesHash->Insert(module);
recursive_lock_unlock(&sModulesLock); recursive_lock_unlock(&sModulesLock);
if (_module) if (_module)
@@ -591,8 +584,7 @@ check_module_image(const char* path, const char* searchedName,
// try to create a module for every module_info, check if the // try to create a module for every module_info, check if the
// name matches if it was a new entry // name matches if it was a new entry
bool freshModule = false; bool freshModule = false;
struct module* module = (struct module*)hash_lookup(sModulesHash, struct module* module = sModulesHash->Lookup((*info)->name);
(*info)->name);
if (module != NULL) { if (module != NULL) {
// Module does already exist // Module does already exist
if (module->module_image == NULL && module->ref_count == 0) { if (module->module_image == NULL && module->ref_count == 0) {
@@ -660,7 +652,7 @@ search_module(const char* name, module_image** _moduleImage)
if (status != B_OK) if (status != B_OK)
return NULL; return NULL;
return (module*)hash_lookup(sModulesHash, name); return sModulesHash->Lookup(name);
} }
@@ -906,12 +898,11 @@ iterator_get_next_module(module_iterator* iterator, char* buffer,
if (iterator->loaded_modules) { if (iterator->loaded_modules) {
recursive_lock_lock(&sModulesLock); recursive_lock_lock(&sModulesLock);
hash_iterator hashIterator; ModuleTable::Iterator hashIterator(sModulesHash);
hash_open(sModulesHash, &hashIterator);
for (int32 i = 0; hashIterator.HasNext(); i++) {
struct module* module = hashIterator.Next();
struct module* module = (struct module*)hash_next(sModulesHash,
&hashIterator);
for (int32 i = 0; module != NULL; i++) {
if (i >= iterator->module_offset) { if (i >= iterator->module_offset) {
if (!strncmp(module->name, iterator->prefix, if (!strncmp(module->name, iterator->prefix,
iterator->prefix_length) iterator->prefix_length)
@@ -919,15 +910,12 @@ iterator_get_next_module(module_iterator* iterator, char* buffer,
*_bufferSize = strlcpy(buffer, module->name, *_bufferSize); *_bufferSize = strlcpy(buffer, module->name, *_bufferSize);
iterator->module_offset = i + 1; iterator->module_offset = i + 1;
hash_close(sModulesHash, &hashIterator, false);
recursive_lock_unlock(&sModulesLock); recursive_lock_unlock(&sModulesLock);
return B_OK; return B_OK;
} }
} }
module = (struct module*)hash_next(sModulesHash, &hashIterator);
} }
hash_close(sModulesHash, &hashIterator, false);
recursive_lock_unlock(&sModulesLock); recursive_lock_unlock(&sModulesLock);
// prevent from falling into modules hash iteration again // prevent from falling into modules hash iteration again
@@ -1139,7 +1127,7 @@ register_preloaded_module_image(struct preloaded_image* image)
moduleImage->image = image->id; moduleImage->image = image->id;
moduleImage->ref_count = 0; moduleImage->ref_count = 0;
hash_insert(sModuleImagesHash, moduleImage); sModuleImagesHash->Insert(moduleImage);
for (info = moduleImage->info; *info; info++) { for (info = moduleImage->info; *info; info++) {
struct module* module = NULL; struct module* module = NULL;
@@ -1164,15 +1152,13 @@ error:
static int static int
dump_modules(int argc, char** argv) dump_modules(int argc, char** argv)
{ {
hash_iterator iterator;
struct module_image* image; struct module_image* image;
struct module* module;
hash_rewind(sModulesHash, &iterator); ModuleTable::Iterator iterator(sModulesHash);
kprintf("-- known modules:\n"); kprintf("-- known modules:\n");
while ((module = (struct module*)hash_next(sModulesHash, &iterator)) while (iterator.HasNext()) {
!= NULL) { struct module* module = iterator.Next();
kprintf("%p: \"%s\", \"%s\" (%" B_PRId32 "), refcount = %" B_PRId32 ", " kprintf("%p: \"%s\", \"%s\" (%" B_PRId32 "), refcount = %" B_PRId32 ", "
"state = %d, mimage = %p\n", module, module->name, "state = %d, mimage = %p\n", module, module->name,
module->module_image ? module->module_image->path : "", module->module_image ? module->module_image->path : "",
@@ -1180,11 +1166,11 @@ dump_modules(int argc, char** argv)
module->module_image); module->module_image);
} }
hash_rewind(sModuleImagesHash, &iterator); ImageTable::Iterator imageIterator(sModuleImagesHash);
kprintf("\n-- loaded module images:\n"); kprintf("\n-- loaded module images:\n");
while ((image = (struct module_image*)hash_next(sModuleImagesHash, while (imageIterator.HasNext()) {
&iterator)) != NULL) { image = imageIterator.Next();
kprintf("%p: \"%s\" (image_id = %" B_PRId32 "), info = %p, refcount = " kprintf("%p: \"%s\" (image_id = %" B_PRId32 "), info = %p, refcount = "
"%" B_PRId32 "\n", image, image->path, image->image, image->info, "%" B_PRId32 "\n", image, image->path, image->image, image->info,
image->ref_count); image->ref_count);
@@ -1703,7 +1689,7 @@ ModuleNotificationService::Notify(int32 opcode, dev_t device, ino_t directory,
/*static*/ void /*static*/ void
ModuleNotificationService::HandleNotifications(void */*data*/, ModuleNotificationService::HandleNotifications(void * /*data*/,
int /*iteration*/) int /*iteration*/)
{ {
sModuleNotificationService._HandleNotifications(); sModuleNotificationService._HandleNotifications();
@@ -1722,7 +1708,7 @@ unload_module(const char* path)
struct module_image* moduleImage; struct module_image* moduleImage;
recursive_lock_lock(&sModulesLock); recursive_lock_lock(&sModulesLock);
moduleImage = (module_image*)hash_lookup(sModuleImagesHash, path); moduleImage = sModuleImagesHash->Lookup(path);
recursive_lock_unlock(&sModulesLock); recursive_lock_unlock(&sModulesLock);
if (moduleImage == NULL) if (moduleImage == NULL)
@@ -1788,13 +1774,14 @@ module_init(kernel_args* args)
recursive_lock_init(&sModulesLock, "modules rlock"); recursive_lock_init(&sModulesLock, "modules rlock");
sModulesHash = hash_init(MODULE_HASH_SIZE, 0, module_compare, module_hash); sModulesHash = new(std::nothrow) ModuleTable();
if (sModulesHash == NULL) if (sModulesHash == NULL
|| sModulesHash->Init(MODULE_HASH_SIZE) != B_OK)
return B_NO_MEMORY; return B_NO_MEMORY;
sModuleImagesHash = hash_init(MODULE_HASH_SIZE, 0, module_image_compare, sModuleImagesHash = new(std::nothrow) ImageTable();
module_image_hash); if (sModuleImagesHash == NULL
if (sModuleImagesHash == NULL) || sModuleImagesHash->Init(MODULE_HASH_SIZE) != B_OK)
return B_NO_MEMORY; return B_NO_MEMORY;
// register built-in modules // register built-in modules
@@ -1847,11 +1834,10 @@ module_init_post_boot_device(bool bootingFromBootLoaderVolume)
// First of all, clear all pre-loaded module's module_image, if the module // First of all, clear all pre-loaded module's module_image, if the module
// isn't in use. // isn't in use.
hash_iterator iterator; ModuleTable::Iterator iterator(sModulesHash);
hash_open(sModulesHash, &iterator);
struct module* module; struct module* module;
while ((module = (struct module*)hash_next(sModulesHash, &iterator)) while (iterator.HasNext()) {
!= NULL) { module = iterator.Next();
if (module->ref_count == 0 if (module->ref_count == 0
&& (module->flags & B_BUILT_IN_MODULE) == 0) { && (module->flags & B_BUILT_IN_MODULE) == 0) {
TRACE((" module %p, \"%s\" unused, clearing image\n", module, TRACE((" module %p, \"%s\" unused, clearing image\n", module,
@@ -1862,23 +1848,21 @@ module_init_post_boot_device(bool bootingFromBootLoaderVolume)
// Now iterate through the images and drop them respectively normalize their // Now iterate through the images and drop them respectively normalize their
// paths. // paths.
hash_open(sModuleImagesHash, &iterator); ImageTable::Iterator imageIterator(sModuleImagesHash);
module_image* imagesToReinsert = NULL; module_image* imagesToReinsert = NULL;
// When renamed, an image is added to this list to be re-entered in the // When renamed, an image is added to this list to be re-entered in the
// hash at the end. We can't do that during the iteration. // hash at the end. We can't do that during the iteration.
while (true) { while (imageIterator.HasNext()) {
struct module_image* image struct module_image* image = imageIterator.Next();
= (struct module_image*)hash_next(sModuleImagesHash, &iterator);
if (image == NULL)
break;
if (image->ref_count == 0) { if (image->ref_count == 0) {
// not in use -- unload it // not in use -- unload it
TRACE((" module image %p, \"%s\" unused, removing\n", image, TRACE((" module image %p, \"%s\" unused, removing\n", image,
image->path)); image->path));
hash_remove_current(sModuleImagesHash, &iterator); // Using RemoveUnchecked to avoid invalidating the iterator
sModuleImagesHash->RemoveUnchecked(image);
unload_module_image(image, false); unload_module_image(image, false);
} else if (bootingFromBootLoaderVolume) { } else if (bootingFromBootLoaderVolume) {
bool pathNormalized = false; bool pathNormalized = false;
@@ -1934,7 +1918,7 @@ module_init_post_boot_device(bool bootingFromBootLoaderVolume)
// remove the image -- its hash value has probably changed, // remove the image -- its hash value has probably changed,
// so we need to re-insert it later // so we need to re-insert it later
hash_remove_current(sModuleImagesHash, &iterator); sModuleImagesHash->RemoveUnchecked(image);
image->next = imagesToReinsert; image->next = imagesToReinsert;
imagesToReinsert = image; imagesToReinsert = image;
} else { } else {
@@ -1947,7 +1931,7 @@ module_init_post_boot_device(bool bootingFromBootLoaderVolume)
// re-insert the images that have got a new path // re-insert the images that have got a new path
while (module_image* image = imagesToReinsert) { while (module_image* image = imagesToReinsert) {
imagesToReinsert = image->next; imagesToReinsert = image->next;
hash_insert(sModuleImagesHash, image); sModuleImagesHash->Insert(image);
} }
TRACE(("module_init_post_boot_device() done\n")); TRACE(("module_init_post_boot_device() done\n"));
@@ -2151,22 +2135,18 @@ get_next_loaded_module_name(uint32* _cookie, char* buffer, size_t* _bufferSize)
RecursiveLocker _(sModulesLock); RecursiveLocker _(sModulesLock);
hash_iterator iterator; ModuleTable::Iterator iterator(sModulesHash);
hash_open(sModulesHash, &iterator);
struct module* module = (struct module*)hash_next(sModulesHash, &iterator);
for (uint32 i = 0; module != NULL; i++) { for (uint32 i = 0; iterator.HasNext(); i++) {
struct module* module = iterator.Next();
if (i >= offset) { if (i >= offset) {
*_bufferSize = strlcpy(buffer, module->name, *_bufferSize); *_bufferSize = strlcpy(buffer, module->name, *_bufferSize);
*_cookie = i + 1; *_cookie = i + 1;
status = B_OK; status = B_OK;
break; break;
} }
module = (struct module*)hash_next(sModulesHash, &iterator);
} }
hash_close(sModulesHash, &iterator, false);
return status; return status;
} }
@@ -2185,7 +2165,7 @@ get_module(const char* path, module_info** _info)
RecursiveLocker _(sModulesLock); RecursiveLocker _(sModulesLock);
module = (struct module*)hash_lookup(sModulesHash, path); module = sModulesHash->Lookup(path);
// if we don't have it cached yet, search for it // if we don't have it cached yet, search for it
if (module == NULL || ((module->flags & B_BUILT_IN_MODULE) == 0 if (module == NULL || ((module->flags & B_BUILT_IN_MODULE) == 0
@@ -2242,7 +2222,7 @@ put_module(const char* path)
RecursiveLocker _(sModulesLock); RecursiveLocker _(sModulesLock);
module = (struct module*)hash_lookup(sModulesHash, path); module = sModulesHash->Lookup(path);
if (module == NULL) { if (module == NULL) {
FATAL(("module: We don't seem to have a reference to module %s\n", FATAL(("module: We don't seem to have a reference to module %s\n",
path)); path));