843 lines
21 KiB
C
843 lines
21 KiB
C
/*
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* Copyright 2009 John-Mark Bell <jmb@netsurf-browser.org>
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*
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* This file is part of NetSurf, http://www.netsurf-browser.org/
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*
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* NetSurf is free software; you can redistribute it and/or modify
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* it under the terms of the GNU General Public License as published by
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* the Free Software Foundation; version 2 of the License.
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*
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* NetSurf is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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* GNU General Public License for more details.
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*
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* You should have received a copy of the GNU General Public License
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* along with this program. If not, see <http://www.gnu.org/licenses/>.
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*/
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/** \file
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* High-level resource cache (implementation)
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*/
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#include <assert.h>
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#include <stdlib.h>
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#include <string.h>
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#include "utils/http.h"
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#include "utils/log.h"
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#include "utils/messages.h"
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#include "utils/ring.h"
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#include "utils/utils.h"
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#include "desktop/gui_misc.h"
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#include "desktop/gui_internal.h"
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#include "content/content.h"
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#include "content/mimesniff.h"
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#include "content/hlcache.h"
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typedef struct hlcache_entry hlcache_entry;
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typedef struct hlcache_retrieval_ctx hlcache_retrieval_ctx;
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/** High-level cache retrieval context */
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struct hlcache_retrieval_ctx {
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struct hlcache_retrieval_ctx *r_prev; /**< Previous retrieval context in the ring */
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struct hlcache_retrieval_ctx *r_next; /**< Next retrieval context in the ring */
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llcache_handle *llcache; /**< Low-level cache handle */
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hlcache_handle *handle; /**< High-level handle for object */
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uint32_t flags; /**< Retrieval flags */
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content_type accepted_types; /**< Accepted types */
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hlcache_child_context child; /**< Child context */
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bool migrate_target; /**< Whether this context is the migration target */
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};
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/** High-level cache handle */
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struct hlcache_handle {
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hlcache_entry *entry; /**< Pointer to cache entry */
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hlcache_handle_callback cb; /**< Client callback */
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void *pw; /**< Client data */
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};
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/** Entry in high-level cache */
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struct hlcache_entry {
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struct content *content; /**< Pointer to associated content */
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hlcache_entry *next; /**< Next sibling */
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hlcache_entry *prev; /**< Previous sibling */
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};
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/** Current state of the cache.
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*
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* Global state of the cache.
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*/
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struct hlcache_s {
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struct hlcache_parameters params;
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/** List of cached content objects */
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hlcache_entry *content_list;
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/** Ring of retrieval contexts */
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hlcache_retrieval_ctx *retrieval_ctx_ring;
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/* statsistics */
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unsigned int hit_count;
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unsigned int miss_count;
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};
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/** high level cache state */
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static struct hlcache_s *hlcache = NULL;
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/******************************************************************************
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* High-level cache internals *
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******************************************************************************/
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/**
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* Attempt to clean the cache
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*/
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static void hlcache_clean(void *ignored)
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{
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hlcache_entry *entry, *next;
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for (entry = hlcache->content_list; entry != NULL; entry = next) {
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next = entry->next;
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if (entry->content == NULL)
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continue;
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if (content__get_status(entry->content) == CONTENT_STATUS_LOADING)
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continue;
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if (content_count_users(entry->content) != 0)
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continue;
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/** \todo This is over-zealous: all unused contents
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* will be immediately destroyed. Ideally, we want to
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* purge all unused contents that are using stale
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* source data, and enough fresh contents such that
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* the cache fits in the configured cache size limit.
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*/
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/* Remove entry from cache */
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if (entry->prev == NULL)
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hlcache->content_list = entry->next;
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else
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entry->prev->next = entry->next;
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if (entry->next != NULL)
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entry->next->prev = entry->prev;
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/* Destroy content */
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content_destroy(entry->content);
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/* Destroy entry */
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free(entry);
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}
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/* Attempt to clean the llcache */
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llcache_clean(false);
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/* Re-schedule ourselves */
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guit->browser->schedule(hlcache->params.bg_clean_time, hlcache_clean, NULL);
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}
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/**
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* Determine if the specified MIME type is acceptable
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*
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* \param mime_type MIME type to consider
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* \param accepted_types Array of acceptable types, or NULL for any
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* \param computed_type Pointer to location to receive computed type of object
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* \return True if the type is acceptable, false otherwise
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*/
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static bool hlcache_type_is_acceptable(lwc_string *mime_type,
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content_type accepted_types, content_type *computed_type)
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{
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content_type type;
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type = content_factory_type_from_mime_type(mime_type);
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*computed_type = type;
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return ((accepted_types & type) != 0);
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}
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/**
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* Veneer between content callback API and hlcache callback API
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*
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* \param c Content to emit message for
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* \param msg Message to emit
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* \param data Data for message
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* \param pw Pointer to private data (hlcache_handle)
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*/
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static void hlcache_content_callback(struct content *c, content_msg msg,
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union content_msg_data data, void *pw)
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{
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hlcache_handle *handle = pw;
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hlcache_event event;
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nserror error = NSERROR_OK;
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event.type = msg;
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event.data = data;
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if (handle->cb != NULL)
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error = handle->cb(handle, &event, handle->pw);
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if (error != NSERROR_OK)
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LOG("Error in callback: %d", error);
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}
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/**
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* Find a content for the high-level cache handle
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*
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* \param ctx High-level cache retrieval context
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* \param effective_type Effective MIME type of content
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* \return NSERROR_OK on success,
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* NSERROR_NEED_DATA on success where data is needed,
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* appropriate error otherwise
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*
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* \pre handle::state == HLCACHE_HANDLE_NEW
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* \pre Headers must have been received for associated low-level handle
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* \post Low-level handle is either released, or associated with new content
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* \post High-level handle is registered with content
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*/
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static nserror hlcache_find_content(hlcache_retrieval_ctx *ctx,
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lwc_string *effective_type)
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{
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hlcache_entry *entry;
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hlcache_event event;
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nserror error = NSERROR_OK;
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/* Search list of cached contents for a suitable one */
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for (entry = hlcache->content_list; entry != NULL; entry = entry->next) {
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hlcache_handle entry_handle = { entry, NULL, NULL };
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const llcache_handle *entry_llcache;
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if (entry->content == NULL)
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continue;
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/* Ignore contents in the error state */
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if (content_get_status(&entry_handle) == CONTENT_STATUS_ERROR)
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continue;
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/* Ensure that content is shareable */
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if (content_is_shareable(entry->content) == false)
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continue;
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/* Ensure that quirks mode is acceptable */
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if (content_matches_quirks(entry->content,
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ctx->child.quirks) == false)
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continue;
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/* Ensure that content uses same low-level object as
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* low-level handle */
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entry_llcache = content_get_llcache_handle(entry->content);
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if (llcache_handle_references_same_object(entry_llcache,
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ctx->llcache))
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break;
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}
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if (entry == NULL) {
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/* No existing entry, so need to create one */
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entry = malloc(sizeof(hlcache_entry));
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if (entry == NULL)
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return NSERROR_NOMEM;
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/* Create content using llhandle */
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entry->content = content_factory_create_content(ctx->llcache,
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ctx->child.charset, ctx->child.quirks,
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effective_type);
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if (entry->content == NULL) {
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free(entry);
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return NSERROR_NOMEM;
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}
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/* Insert into cache */
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entry->prev = NULL;
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entry->next = hlcache->content_list;
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if (hlcache->content_list != NULL)
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hlcache->content_list->prev = entry;
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hlcache->content_list = entry;
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/* Signal to caller that we created a content */
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error = NSERROR_NEED_DATA;
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hlcache->miss_count++;
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} else {
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/* Found a suitable content: no longer need low-level handle */
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llcache_handle_release(ctx->llcache);
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hlcache->hit_count++;
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}
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/* Associate handle with content */
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if (content_add_user(entry->content,
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hlcache_content_callback, ctx->handle) == false)
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return NSERROR_NOMEM;
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/* Associate cache entry with handle */
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ctx->handle->entry = entry;
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/* Catch handle up with state of content */
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if (ctx->handle->cb != NULL) {
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content_status status = content_get_status(ctx->handle);
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if (status == CONTENT_STATUS_LOADING) {
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event.type = CONTENT_MSG_LOADING;
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ctx->handle->cb(ctx->handle, &event, ctx->handle->pw);
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} else if (status == CONTENT_STATUS_READY) {
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event.type = CONTENT_MSG_LOADING;
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ctx->handle->cb(ctx->handle, &event, ctx->handle->pw);
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if (ctx->handle->cb != NULL) {
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event.type = CONTENT_MSG_READY;
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ctx->handle->cb(ctx->handle, &event,
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ctx->handle->pw);
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}
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} else if (status == CONTENT_STATUS_DONE) {
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event.type = CONTENT_MSG_LOADING;
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ctx->handle->cb(ctx->handle, &event, ctx->handle->pw);
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if (ctx->handle->cb != NULL) {
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event.type = CONTENT_MSG_READY;
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ctx->handle->cb(ctx->handle, &event,
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ctx->handle->pw);
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}
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if (ctx->handle->cb != NULL) {
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event.type = CONTENT_MSG_DONE;
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ctx->handle->cb(ctx->handle, &event,
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ctx->handle->pw);
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}
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}
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}
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return error;
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}
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/**
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* Migrate a retrieval context into its final destination content
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*
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* \param ctx Context to migrate
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* \param effective_type The effective MIME type of the content, or NULL
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* \return NSERROR_OK on success,
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* NSERROR_NEED_DATA on success where data is needed,
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* appropriate error otherwise
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*/
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static nserror hlcache_migrate_ctx(hlcache_retrieval_ctx *ctx,
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lwc_string *effective_type)
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{
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content_type type = CONTENT_NONE;
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nserror error = NSERROR_OK;
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ctx->migrate_target = true;
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if ((effective_type != NULL) &&
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hlcache_type_is_acceptable(effective_type,
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ctx->accepted_types,
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&type)) {
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error = hlcache_find_content(ctx, effective_type);
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if (error != NSERROR_OK && error != NSERROR_NEED_DATA) {
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if (ctx->handle->cb != NULL) {
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hlcache_event hlevent;
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hlevent.type = CONTENT_MSG_ERROR;
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hlevent.data.error = messages_get("MiscError");
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ctx->handle->cb(ctx->handle, &hlevent,
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ctx->handle->pw);
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}
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llcache_handle_abort(ctx->llcache);
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llcache_handle_release(ctx->llcache);
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}
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} else if (type == CONTENT_NONE &&
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(ctx->flags & HLCACHE_RETRIEVE_MAY_DOWNLOAD)) {
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/* Unknown type, and we can download, so convert */
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llcache_handle_force_stream(ctx->llcache);
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if (ctx->handle->cb != NULL) {
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hlcache_event hlevent;
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hlevent.type = CONTENT_MSG_DOWNLOAD;
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hlevent.data.download = ctx->llcache;
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ctx->handle->cb(ctx->handle, &hlevent,
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ctx->handle->pw);
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}
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/* Ensure caller knows we need data */
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error = NSERROR_NEED_DATA;
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} else {
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/* Unacceptable type: report error */
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if (ctx->handle->cb != NULL) {
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hlcache_event hlevent;
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hlevent.type = CONTENT_MSG_ERROR;
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hlevent.data.error = messages_get("UnacceptableType");
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ctx->handle->cb(ctx->handle, &hlevent,
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ctx->handle->pw);
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}
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llcache_handle_abort(ctx->llcache);
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llcache_handle_release(ctx->llcache);
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}
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ctx->migrate_target = false;
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/* No longer require retrieval context */
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RING_REMOVE(hlcache->retrieval_ctx_ring, ctx);
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free((char *) ctx->child.charset);
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free(ctx);
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return error;
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}
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/**
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* Handler for low-level cache events
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*
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* \param handle Handle for which event is issued
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* \param event Event data
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* \param pw Pointer to client-specific data
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* \return NSERROR_OK on success, appropriate error otherwise
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*/
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static nserror hlcache_llcache_callback(llcache_handle *handle,
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const llcache_event *event, void *pw)
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{
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hlcache_retrieval_ctx *ctx = pw;
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lwc_string *effective_type = NULL;
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nserror error;
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assert(ctx->llcache == handle);
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switch (event->type) {
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case LLCACHE_EVENT_HAD_HEADERS:
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error = mimesniff_compute_effective_type(handle, NULL, 0,
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ctx->flags & HLCACHE_RETRIEVE_SNIFF_TYPE,
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ctx->accepted_types == CONTENT_IMAGE,
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&effective_type);
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if (error == NSERROR_OK || error == NSERROR_NOT_FOUND) {
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/* If the sniffer was successful or failed to find
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* a Content-Type header when sniffing was
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* prohibited, we must migrate the retrieval context. */
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error = hlcache_migrate_ctx(ctx, effective_type);
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if (effective_type != NULL)
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lwc_string_unref(effective_type);
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}
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/* No need to report that we need data:
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* we'll get some anyway if there is any */
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if (error == NSERROR_NEED_DATA)
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error = NSERROR_OK;
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return error;
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break;
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case LLCACHE_EVENT_HAD_DATA:
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error = mimesniff_compute_effective_type(handle,
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event->data.data.buf, event->data.data.len,
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ctx->flags & HLCACHE_RETRIEVE_SNIFF_TYPE,
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ctx->accepted_types == CONTENT_IMAGE,
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&effective_type);
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if (error != NSERROR_OK) {
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assert(0 && "MIME sniff failed with data");
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}
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error = hlcache_migrate_ctx(ctx, effective_type);
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lwc_string_unref(effective_type);
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return error;
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break;
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case LLCACHE_EVENT_DONE:
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/* DONE event before we could determine the effective MIME type.
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*/
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error = mimesniff_compute_effective_type(handle,
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NULL, 0, false, false, &effective_type);
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if (error == NSERROR_OK || error == NSERROR_NOT_FOUND) {
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error = hlcache_migrate_ctx(ctx, effective_type);
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if (effective_type != NULL) {
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lwc_string_unref(effective_type);
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}
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return error;
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}
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if (ctx->handle->cb != NULL) {
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hlcache_event hlevent;
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hlevent.type = CONTENT_MSG_ERRORCODE;
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hlevent.data.errorcode = error;
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ctx->handle->cb(ctx->handle, &hlevent, ctx->handle->pw);
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}
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break;
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case LLCACHE_EVENT_ERROR:
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if (ctx->handle->cb != NULL) {
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hlcache_event hlevent;
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hlevent.type = CONTENT_MSG_ERROR;
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hlevent.data.error = event->data.msg;
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ctx->handle->cb(ctx->handle, &hlevent, ctx->handle->pw);
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}
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break;
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case LLCACHE_EVENT_PROGRESS:
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break;
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case LLCACHE_EVENT_REDIRECT:
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if (ctx->handle->cb != NULL) {
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hlcache_event hlevent;
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hlevent.type = CONTENT_MSG_REDIRECT;
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hlevent.data.redirect.from = event->data.redirect.from;
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hlevent.data.redirect.to = event->data.redirect.to;
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ctx->handle->cb(ctx->handle, &hlevent, ctx->handle->pw);
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}
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break;
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}
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return NSERROR_OK;
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}
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/******************************************************************************
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* Public API *
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******************************************************************************/
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nserror
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hlcache_initialise(const struct hlcache_parameters *hlcache_parameters)
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{
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nserror ret;
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hlcache = calloc(1, sizeof(struct hlcache_s));
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if (hlcache == NULL) {
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return NSERROR_NOMEM;
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}
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ret = llcache_initialise(&hlcache_parameters->llcache);
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if (ret != NSERROR_OK) {
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free(hlcache);
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hlcache = NULL;
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return ret;
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}
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hlcache->params = *hlcache_parameters;
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/* Schedule the cache cleanup */
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guit->browser->schedule(hlcache->params.bg_clean_time, hlcache_clean, NULL);
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return NSERROR_OK;
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}
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/* See hlcache.h for documentation */
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void hlcache_stop(void)
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{
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/* Remove the hlcache_clean schedule */
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guit->browser->schedule(-1, hlcache_clean, NULL);
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}
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/* See hlcache.h for documentation */
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void hlcache_finalise(void)
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{
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uint32_t num_contents, prev_contents;
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hlcache_entry *entry;
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hlcache_retrieval_ctx *ctx, *next;
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/* Obtain initial count of contents remaining */
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for (num_contents = 0, entry = hlcache->content_list;
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entry != NULL; entry = entry->next) {
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num_contents++;
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}
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LOG("%d contents remain before cache drain", num_contents);
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/* Drain cache */
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do {
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prev_contents = num_contents;
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hlcache_clean(NULL);
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for (num_contents = 0, entry = hlcache->content_list;
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entry != NULL; entry = entry->next) {
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num_contents++;
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}
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} while (num_contents > 0 && num_contents != prev_contents);
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LOG("%d contents remaining:", num_contents);
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for (entry = hlcache->content_list; entry != NULL; entry = entry->next) {
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hlcache_handle entry_handle = { entry, NULL, NULL };
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if (entry->content != NULL) {
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LOG(" %p : %s (%d users)", entry, nsurl_access(hlcache_handle_get_url(&entry_handle)), content_count_users(entry->content));
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} else {
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LOG(" %p", entry);
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}
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}
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/* Clean up retrieval contexts */
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if (hlcache->retrieval_ctx_ring != NULL) {
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ctx = hlcache->retrieval_ctx_ring;
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do {
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next = ctx->r_next;
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if (ctx->llcache != NULL)
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llcache_handle_release(ctx->llcache);
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if (ctx->handle != NULL)
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free(ctx->handle);
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if (ctx->child.charset != NULL)
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free((char *) ctx->child.charset);
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free(ctx);
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ctx = next;
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} while (ctx != hlcache->retrieval_ctx_ring);
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hlcache->retrieval_ctx_ring = NULL;
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}
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LOG("hit/miss %d/%d", hlcache->hit_count, hlcache->miss_count);
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free(hlcache);
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hlcache = NULL;
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LOG("Finalising low-level cache");
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llcache_finalise();
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}
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/* See hlcache.h for documentation */
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nserror hlcache_handle_retrieve(nsurl *url, uint32_t flags,
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nsurl *referer, llcache_post_data *post,
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hlcache_handle_callback cb, void *pw,
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hlcache_child_context *child,
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content_type accepted_types, hlcache_handle **result)
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{
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hlcache_retrieval_ctx *ctx;
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nserror error;
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assert(cb != NULL);
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ctx = calloc(1, sizeof(hlcache_retrieval_ctx));
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if (ctx == NULL) {
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return NSERROR_NOMEM;
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}
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ctx->handle = calloc(1, sizeof(hlcache_handle));
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if (ctx->handle == NULL) {
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free(ctx);
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return NSERROR_NOMEM;
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}
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if (child != NULL) {
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if (child->charset != NULL) {
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ctx->child.charset = strdup(child->charset);
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if (ctx->child.charset == NULL) {
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free(ctx->handle);
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free(ctx);
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return NSERROR_NOMEM;
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}
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}
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ctx->child.quirks = child->quirks;
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}
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ctx->flags = flags;
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ctx->accepted_types = accepted_types;
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ctx->handle->cb = cb;
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ctx->handle->pw = pw;
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error = llcache_handle_retrieve(url, flags, referer, post,
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hlcache_llcache_callback, ctx,
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&ctx->llcache);
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if (error != NSERROR_OK) {
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/* error retriving handle so free context and return error */
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free((char *) ctx->child.charset);
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free(ctx->handle);
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free(ctx);
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} else {
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/* successfuly started fetch so add new context to list */
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RING_INSERT(hlcache->retrieval_ctx_ring, ctx);
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*result = ctx->handle;
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}
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return error;
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}
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/* See hlcache.h for documentation */
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nserror hlcache_handle_release(hlcache_handle *handle)
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{
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if (handle->entry != NULL) {
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content_remove_user(handle->entry->content,
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hlcache_content_callback, handle);
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} else {
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RING_ITERATE_START(struct hlcache_retrieval_ctx,
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hlcache->retrieval_ctx_ring,
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ictx) {
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if (ictx->handle == handle &&
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ictx->migrate_target == false) {
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/* This is the nascent context for us,
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* so abort the fetch */
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llcache_handle_abort(ictx->llcache);
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llcache_handle_release(ictx->llcache);
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/* Remove us from the ring */
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RING_REMOVE(hlcache->retrieval_ctx_ring, ictx);
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/* Throw us away */
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free((char *) ictx->child.charset);
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free(ictx);
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/* And stop */
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RING_ITERATE_STOP(hlcache->retrieval_ctx_ring,
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ictx);
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}
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} RING_ITERATE_END(hlcache->retrieval_ctx_ring, ictx);
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}
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handle->cb = NULL;
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handle->pw = NULL;
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free(handle);
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return NSERROR_OK;
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}
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/* See hlcache.h for documentation */
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struct content *hlcache_handle_get_content(const hlcache_handle *handle)
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{
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if ((handle != NULL) && (handle->entry != NULL)) {
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return handle->entry->content;
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}
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return NULL;
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}
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/* See hlcache.h for documentation */
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nserror hlcache_handle_abort(hlcache_handle *handle)
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{
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struct hlcache_entry *entry = handle->entry;
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struct content *c;
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if (entry == NULL) {
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/* This handle is not yet associated with a cache entry.
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* The implication is that the fetch for the handle has
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* not progressed to the point where the entry can be
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* created. */
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RING_ITERATE_START(struct hlcache_retrieval_ctx,
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hlcache->retrieval_ctx_ring,
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ictx) {
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if (ictx->handle == handle &&
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ictx->migrate_target == false) {
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/* This is the nascent context for us,
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* so abort the fetch */
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llcache_handle_abort(ictx->llcache);
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llcache_handle_release(ictx->llcache);
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/* Remove us from the ring */
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RING_REMOVE(hlcache->retrieval_ctx_ring, ictx);
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/* Throw us away */
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free((char *) ictx->child.charset);
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free(ictx);
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/* And stop */
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RING_ITERATE_STOP(hlcache->retrieval_ctx_ring,
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ictx);
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}
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} RING_ITERATE_END(hlcache->retrieval_ctx_ring, ictx);
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return NSERROR_OK;
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}
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c = entry->content;
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if (content_count_users(c) > 1) {
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/* We are not the only user of 'c' so clone it. */
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struct content *clone = content_clone(c);
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if (clone == NULL)
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return NSERROR_NOMEM;
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entry = calloc(sizeof(struct hlcache_entry), 1);
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if (entry == NULL) {
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content_destroy(clone);
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return NSERROR_NOMEM;
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}
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if (content_add_user(clone,
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hlcache_content_callback, handle) == false) {
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content_destroy(clone);
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free(entry);
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return NSERROR_NOMEM;
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}
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content_remove_user(c, hlcache_content_callback, handle);
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entry->content = clone;
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handle->entry = entry;
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entry->prev = NULL;
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entry->next = hlcache->content_list;
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if (hlcache->content_list != NULL)
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hlcache->content_list->prev = entry;
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hlcache->content_list = entry;
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c = clone;
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}
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return content_abort(c);
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}
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/* See hlcache.h for documentation */
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nserror hlcache_handle_replace_callback(hlcache_handle *handle,
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hlcache_handle_callback cb, void *pw)
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{
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handle->cb = cb;
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handle->pw = pw;
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return NSERROR_OK;
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}
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nserror hlcache_handle_clone(hlcache_handle *handle, hlcache_handle **result)
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{
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*result = NULL;
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return NSERROR_CLONE_FAILED;
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}
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/* See hlcache.h for documentation */
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nsurl *hlcache_handle_get_url(const hlcache_handle *handle)
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{
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nsurl *result = NULL;
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assert(handle != NULL);
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if (handle->entry != NULL) {
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result = content_get_url(handle->entry->content);
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} else {
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RING_ITERATE_START(struct hlcache_retrieval_ctx,
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hlcache->retrieval_ctx_ring,
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ictx) {
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if (ictx->handle == handle) {
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/* This is the nascent context for us */
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result = llcache_handle_get_url(ictx->llcache);
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/* And stop */
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RING_ITERATE_STOP(hlcache->retrieval_ctx_ring,
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ictx);
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}
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} RING_ITERATE_END(hlcache->retrieval_ctx_ring, ictx);
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}
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return result;
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}
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