Green Sky
61accfe184
e2c01e457b refactor: Use enum-specific pack functions for enum values. afc472402b refactor: Factor out union pack switch from event packer. 6caa7ce4b1 cleanup: Move the 2-element array pack out of individual events. 687af81f20 cleanup: Remove empty test doing nothing. fcf5882428 test: Add printf log statement to group_moderation_test. b4d8826228 cleanup: Remove old type-ordered event getters. 8c35e0fefb feat: add ngc events 97bdd83937 refactor: Make event dispatch ordered by receive time. 001d00ab30 fix: dont resolve to ipv6 addresses when its disabled d3b935f63f fix(test): tests use ipv6 by default, even with USE_IPV6 set to 0 29fc5ea1f7 chore: add clangd files to .gitignore d30c81acbc refactor: Move file streaming test to its own file. acdc67387b fix(ci): window builds now build in parallel REVERT: 73d9b845a3 cleanup: Remove old type-ordered event getters. REVERT: b0840cc02d feat: add ngc events REVERT: 7df9a51349 refactor: Make event dispatch ordered by receive time. git-subtree-dir: external/toxcore/c-toxcore git-subtree-split: e2c01e457bfb8a59537175c8fe17ca9ab1c9e3e1
192 lines
5.0 KiB
C
192 lines
5.0 KiB
C
/* SPDX-License-Identifier: GPL-3.0-or-later
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* Copyright © 2023-2024 The TokTok team.
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*/
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#include "events_alloc.h"
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#include <assert.h>
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#include "../bin_pack.h"
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#include "../bin_unpack.h"
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#include "../ccompat.h"
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#include "../mem.h"
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#include "../tox.h"
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#include "../tox_events.h"
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/*****************************************************
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*
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* :: struct and accessors
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*
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*****************************************************/
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struct Tox_Event_Group_Peer_Limit {
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uint32_t group_number;
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uint32_t peer_limit;
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};
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non_null()
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static void tox_event_group_peer_limit_set_group_number(Tox_Event_Group_Peer_Limit *group_peer_limit,
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uint32_t group_number)
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{
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assert(group_peer_limit != nullptr);
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group_peer_limit->group_number = group_number;
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}
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uint32_t tox_event_group_peer_limit_get_group_number(const Tox_Event_Group_Peer_Limit *group_peer_limit)
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{
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assert(group_peer_limit != nullptr);
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return group_peer_limit->group_number;
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}
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non_null()
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static void tox_event_group_peer_limit_set_peer_limit(Tox_Event_Group_Peer_Limit *group_peer_limit,
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uint32_t peer_limit)
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{
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assert(group_peer_limit != nullptr);
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group_peer_limit->peer_limit = peer_limit;
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}
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uint32_t tox_event_group_peer_limit_get_peer_limit(const Tox_Event_Group_Peer_Limit *group_peer_limit)
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{
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assert(group_peer_limit != nullptr);
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return group_peer_limit->peer_limit;
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}
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non_null()
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static void tox_event_group_peer_limit_construct(Tox_Event_Group_Peer_Limit *group_peer_limit)
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{
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*group_peer_limit = (Tox_Event_Group_Peer_Limit) {
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0
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};
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}
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non_null()
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static void tox_event_group_peer_limit_destruct(Tox_Event_Group_Peer_Limit *group_peer_limit, const Memory *mem)
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{
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return;
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}
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bool tox_event_group_peer_limit_pack(
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const Tox_Event_Group_Peer_Limit *event, Bin_Pack *bp)
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{
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return bin_pack_array(bp, 2)
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&& bin_pack_u32(bp, event->group_number)
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&& bin_pack_u32(bp, event->peer_limit);
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}
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non_null()
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static bool tox_event_group_peer_limit_unpack_into(
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Tox_Event_Group_Peer_Limit *event, Bin_Unpack *bu)
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{
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assert(event != nullptr);
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if (!bin_unpack_array_fixed(bu, 2, nullptr)) {
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return false;
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}
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return bin_unpack_u32(bu, &event->group_number)
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&& bin_unpack_u32(bu, &event->peer_limit);
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}
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/*****************************************************
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*
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* :: new/free/add/get/size/unpack
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*
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*****************************************************/
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const Tox_Event_Group_Peer_Limit *tox_event_get_group_peer_limit(const Tox_Event *event)
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{
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return event->type == TOX_EVENT_GROUP_PEER_LIMIT ? event->data.group_peer_limit : nullptr;
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}
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Tox_Event_Group_Peer_Limit *tox_event_group_peer_limit_new(const Memory *mem)
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{
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Tox_Event_Group_Peer_Limit *const group_peer_limit =
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(Tox_Event_Group_Peer_Limit *)mem_alloc(mem, sizeof(Tox_Event_Group_Peer_Limit));
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if (group_peer_limit == nullptr) {
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return nullptr;
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}
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tox_event_group_peer_limit_construct(group_peer_limit);
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return group_peer_limit;
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}
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void tox_event_group_peer_limit_free(Tox_Event_Group_Peer_Limit *group_peer_limit, const Memory *mem)
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{
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if (group_peer_limit != nullptr) {
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tox_event_group_peer_limit_destruct(group_peer_limit, mem);
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}
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mem_delete(mem, group_peer_limit);
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}
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non_null()
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static Tox_Event_Group_Peer_Limit *tox_events_add_group_peer_limit(Tox_Events *events, const Memory *mem)
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{
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Tox_Event_Group_Peer_Limit *const group_peer_limit = tox_event_group_peer_limit_new(mem);
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if (group_peer_limit == nullptr) {
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return nullptr;
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}
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Tox_Event event;
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event.type = TOX_EVENT_GROUP_PEER_LIMIT;
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event.data.group_peer_limit = group_peer_limit;
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tox_events_add(events, &event);
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return group_peer_limit;
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}
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bool tox_event_group_peer_limit_unpack(
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Tox_Event_Group_Peer_Limit **event, Bin_Unpack *bu, const Memory *mem)
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{
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assert(event != nullptr);
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*event = tox_event_group_peer_limit_new(mem);
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if (*event == nullptr) {
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return false;
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}
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return tox_event_group_peer_limit_unpack_into(*event, bu);
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}
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non_null()
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static Tox_Event_Group_Peer_Limit *tox_event_group_peer_limit_alloc(void *user_data)
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{
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Tox_Events_State *state = tox_events_alloc(user_data);
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assert(state != nullptr);
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if (state->events == nullptr) {
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return nullptr;
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}
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Tox_Event_Group_Peer_Limit *group_peer_limit = tox_events_add_group_peer_limit(state->events, state->mem);
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if (group_peer_limit == nullptr) {
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state->error = TOX_ERR_EVENTS_ITERATE_MALLOC;
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return nullptr;
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}
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return group_peer_limit;
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}
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/*****************************************************
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*
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* :: event handler
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*
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*****************************************************/
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void tox_events_handle_group_peer_limit(Tox *tox, uint32_t group_number, uint32_t peer_limit,
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void *user_data)
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{
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Tox_Event_Group_Peer_Limit *group_peer_limit = tox_event_group_peer_limit_alloc(user_data);
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if (group_peer_limit == nullptr) {
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return;
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}
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tox_event_group_peer_limit_set_group_number(group_peer_limit, group_number);
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tox_event_group_peer_limit_set_peer_limit(group_peer_limit, peer_limit);
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}
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