66544b9d40
Handling of both blacklists was inconsistent when dealing with threads: - proxy blacklist of root channel blacklists all threads - log blacklist of root channel _did not apply_ to threads - couldn't proxy blacklist threads while leaving root channel proxyable This change fixes the inconsistencies: - proxy _and_ log blacklist of root channel affects all threads - now able to individually proxy/log blacklist threads, with root channel unaffected
152 lines
5.8 KiB
PL/PgSQL
152 lines
5.8 KiB
PL/PgSQL
create function message_context(account_id bigint, guild_id bigint, channel_id bigint, thread_id bigint)
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returns table (
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system_id int,
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log_channel bigint,
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in_blacklist bool,
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in_log_blacklist bool,
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log_cleanup_enabled bool,
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proxy_enabled bool,
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last_switch int,
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last_switch_members int[],
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last_switch_timestamp timestamp,
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system_tag text,
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system_guild_tag text,
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tag_enabled bool,
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system_avatar text,
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allow_autoproxy bool,
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latch_timeout integer,
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case_sensitive_proxy_tags bool,
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proxy_error_message_enabled bool
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)
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as $$
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-- CTEs to query "static" (accessible only through args) data
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with
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system as (select systems.*, system_config.latch_timeout, system_guild.tag as guild_tag, system_guild.tag_enabled as tag_enabled,
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allow_autoproxy as account_autoproxy, system_config.case_sensitive_proxy_tags, system_config.proxy_error_message_enabled from accounts
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left join systems on systems.id = accounts.system
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left join system_config on system_config.system = accounts.system
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left join system_guild on system_guild.system = accounts.system and system_guild.guild = guild_id
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where accounts.uid = account_id),
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guild as (select * from servers where id = guild_id)
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select
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system.id as system_id,
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guild.log_channel,
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((channel_id = any (guild.blacklist))
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or (thread_id = any (guild.blacklist))) as in_blacklist,
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((channel_id = any (guild.log_blacklist))
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or (thread_id = any (guild.log_blacklist))) as in_log_blacklist,
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coalesce(guild.log_cleanup_enabled, false),
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coalesce(system_guild.proxy_enabled, true) as proxy_enabled,
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system_last_switch.switch as last_switch,
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system_last_switch.members as last_switch_members,
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system_last_switch.timestamp as last_switch_timestamp,
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system.tag as system_tag,
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system.guild_tag as system_guild_tag,
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coalesce(system.tag_enabled, true) as tag_enabled,
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system.avatar_url as system_avatar,
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system.account_autoproxy as allow_autoproxy,
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system.latch_timeout as latch_timeout,
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system.case_sensitive_proxy_tags as case_sensitive_proxy_tags,
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system.proxy_error_message_enabled as proxy_error_message_enabled
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-- We need a "from" clause, so we just use some bogus data that's always present
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-- This ensure we always have exactly one row going forward, so we can left join afterwards and still get data
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from (select 1) as _placeholder
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left join system on true
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left join guild on true
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left join system_last_switch on system_last_switch.system = system.id
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left join system_guild on system_guild.system = system.id and system_guild.guild = guild_id
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$$ language sql stable rows 1;
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-- Fetches info about proxying related to a given account/guild
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-- Returns one row per member in system, should be used in conjuction with `message_context` too
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create function proxy_members(account_id bigint, guild_id bigint)
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returns table (
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id int,
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proxy_tags proxy_tag[],
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keep_proxy bool,
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server_name text,
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display_name text,
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name text,
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server_avatar text,
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webhook_avatar text,
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avatar text,
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color char(6),
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allow_autoproxy bool
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)
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as $$
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select
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-- Basic data
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members.id as id,
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members.proxy_tags as proxy_tags,
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members.keep_proxy as keep_proxy,
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-- Name info
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member_guild.display_name as server_name,
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members.display_name as display_name,
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members.name as name,
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-- Avatar info
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member_guild.avatar_url as server_avatar,
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members.webhook_avatar_url as webhook_avatar,
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members.avatar_url as avatar,
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members.color as color,
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members.allow_autoproxy as allow_autoproxy
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from accounts
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inner join systems on systems.id = accounts.system
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inner join members on members.system = systems.id
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left join member_guild on member_guild.member = members.id and member_guild.guild = guild_id
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where accounts.uid = account_id
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$$ language sql stable rows 10;
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create function has_private_members(system_hid int) returns bool as $$
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declare m int;
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begin
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m := count(id) from members where system = system_hid and member_visibility = 2;
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if m > 0 then return true;
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else return false;
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end if;
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end
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$$ language plpgsql;
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create function generate_hid() returns char(5) as $$
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select string_agg(substr('abcdefghijklmnopqrstuvwxyz', ceil(random() * 26)::integer, 1), '') from generate_series(1, 5)
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$$ language sql volatile;
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create function find_free_system_hid() returns char(5) as $$
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declare new_hid char(5);
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begin
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loop
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new_hid := generate_hid();
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if not exists (select 1 from systems where hid = new_hid) then return new_hid; end if;
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end loop;
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end
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$$ language plpgsql volatile;
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create function find_free_member_hid() returns char(5) as $$
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declare new_hid char(5);
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begin
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loop
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new_hid := generate_hid();
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if not exists (select 1 from members where hid = new_hid) then return new_hid; end if;
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end loop;
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end
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$$ language plpgsql volatile;
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create function find_free_group_hid() returns char(5) as $$
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declare new_hid char(5);
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begin
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loop
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new_hid := generate_hid();
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if not exists (select 1 from groups where hid = new_hid) then return new_hid; end if;
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end loop;
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end
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$$ language plpgsql volatile; |