main.zig 8.2 KB

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  1. const std = @import("std");
  2. const net = std.net;
  3. const posix = std.posix;
  4. const fmt = std.fmt;
  5. const socket = @import("socket.zig");
  6. const command = @import("command.zig");
  7. const storage = @import("storage.zig");
  8. const persistence = @import("persistence.zig");
  9. const redis = @import("redis.zig");
  10. const builtin = @import("builtin");
  11. const TCP = switch (builtin.target.os.tag) {
  12. .linux, .macos => posix.TCP,
  13. else => struct {
  14. pub const NODELAY: c_int = 1;
  15. pub const CORK: c_int = 3;
  16. pub const NOPUSH: c_int = 4;
  17. },
  18. };
  19. //main.zig:23:12: error: variable of type 'comptime_int' must be const or comptime
  20. // var PORT = 8085;
  21. var PORT: u16 = 8085;
  22. var should_exit = std.atomic.Value(bool).init(false);
  23. var active_connections = std.atomic.Value(u32).init(0);
  24. var redis_mode = false;
  25. var instant_wal_mode = false;
  26. fn handleSignal(sig: c_int) callconv(.c) void {
  27. _ = sig;
  28. should_exit.store(true, .seq_cst);
  29. }
  30. pub fn main() !void {
  31. var args = try std.process.argsWithAllocator(std.heap.page_allocator);
  32. defer args.deinit();
  33. _ = args.skip();
  34. while (args.next()) |arg| {
  35. if (std.mem.eql(u8, arg, "-redis")) {
  36. redis_mode = true;
  37. } else if (std.mem.eql(u8, arg, "-iwal")) {
  38. instant_wal_mode = true;
  39. } else if (arg.len > 6 and std.mem.eql(u8, arg[0..6], "-port=")) {
  40. const port_str = arg[6..];
  41. const parsed_port = try std.fmt.parseInt(u16, port_str, 10);
  42. if (parsed_port != 0) {
  43. PORT = parsed_port;
  44. } else {
  45. std.debug.print("Invalid port number: {any}\n", .{port_str});
  46. return;
  47. }
  48. } else {
  49. std.debug.print("Unknown argument: {any}\n", .{arg});
  50. return;
  51. }
  52. }
  53. const empty_mask = std.mem.zeroes(posix.sigset_t);
  54. const act = posix.Sigaction{
  55. .handler = .{ .handler = handleSignal },
  56. .mask = empty_mask,
  57. .flags = 0,
  58. };
  59. _ = posix.sigaction(posix.SIG.TERM, &act, null);
  60. _ = posix.sigaction(posix.SIG.INT, &act, null);
  61. storage.init();
  62. try persistence.init();
  63. if (instant_wal_mode) {
  64. persistence.setInstantWal(true);
  65. std.debug.print("\nInstant WAL mode enabled\n", .{});
  66. }
  67. const listener = try socket.init(PORT);
  68. defer posix.close(listener);
  69. std.debug.print("\n2025 pizzakv! TCP Listening on port {any}\n<danilo@fragoso.dev>\n---------\n", .{PORT});
  70. if (redis_mode) {
  71. std.debug.print("Mode: Redis Protocol (RESP)\nCommands: SET, GET, DEL\n", .{});
  72. } else {
  73. std.debug.print("Commands:\n\nread key\nwrite key|value\ndelete key\nkeys\nreads prefix\nstatus\n", .{});
  74. }
  75. std.debug.print("---------\n", .{});
  76. while (!should_exit.load(.seq_cst)) {
  77. var poll_fds = [_]posix.pollfd{
  78. .{
  79. .fd = listener,
  80. .events = posix.POLL.IN,
  81. .revents = 0,
  82. },
  83. };
  84. const ready = posix.poll(&poll_fds, 100) catch |err| {
  85. if (should_exit.load(.seq_cst)) break;
  86. std.debug.print("poll error: {any}\n", .{err});
  87. continue;
  88. };
  89. if (ready == 0) {
  90. continue;
  91. }
  92. if (should_exit.load(.seq_cst)) break;
  93. var client_address: net.Address = undefined;
  94. var client_address_len: posix.socklen_t = @sizeOf(net.Address);
  95. const conn = posix.accept(listener, &client_address.any, &client_address_len, 0) catch |err| {
  96. if (should_exit.load(.seq_cst)) break;
  97. std.debug.print("error accept: {any}\n", .{err});
  98. continue;
  99. };
  100. if (should_exit.load(.seq_cst)) {
  101. posix.close(conn);
  102. break;
  103. }
  104. posix.setsockopt(conn, posix.IPPROTO.TCP, TCP.NODELAY, &std.mem.toBytes(@as(c_int, 1))) catch {};
  105. socket.setReadTimeout(conn, 300) catch {}; // 5 minutes
  106. socket.setWriteTimeout(conn, 300) catch {}; // 5 minutes
  107. if (redis_mode) {
  108. const thread = try std.Thread.spawn(.{}, handleRedisConnection, .{conn});
  109. thread.detach();
  110. } else {
  111. const thread = try std.Thread.spawn(.{}, handleConnection, .{conn});
  112. thread.detach();
  113. }
  114. }
  115. std.debug.print("\nShutdown signal received...\n", .{});
  116. const max_wait_ms = 5000;
  117. const wait_interval_ms = 100;
  118. var waited_ms: u32 = 0;
  119. while (active_connections.load(.seq_cst) > 0 and waited_ms < max_wait_ms) {
  120. posix.nanosleep(0, wait_interval_ms * std.time.ns_per_ms);
  121. waited_ms += wait_interval_ms;
  122. }
  123. const remaining = active_connections.load(.seq_cst);
  124. if (remaining > 0) {
  125. std.debug.print("Warning: {d} connections still active after {d}ms, forcing shutdown...\n", .{ remaining, max_wait_ms });
  126. }
  127. persistence.flush() catch |err| {
  128. std.debug.print("Failed to flush persistence: {any}\n", .{err});
  129. };
  130. }
  131. pub fn handleConnection(conn: posix.socket_t) !void {
  132. _ = active_connections.fetchAdd(1, .seq_cst);
  133. defer _ = active_connections.fetchSub(1, .seq_cst);
  134. defer posix.close(conn);
  135. var requestBuffer: [1024 * 1024]u8 = undefined;
  136. var response_arena = std.heap.ArenaAllocator.init(std.heap.c_allocator);
  137. defer response_arena.deinit();
  138. while (true) {
  139. const n = socket.readUntilCR(conn, &requestBuffer) catch |err| {
  140. if (err == error.ConnectionClosed) break;
  141. if (err == error.WouldBlock) continue;
  142. return err;
  143. };
  144. if (n == 0) {
  145. break;
  146. }
  147. const cmdResponse = command.parse(requestBuffer[0..n], response_arena.allocator()) orelse {
  148. socket.write(conn, "error\r") catch |err| {
  149. std.debug.print("error writing: {any}", .{err});
  150. };
  151. continue;
  152. };
  153. const terminator = "\r";
  154. const iovecs = [_]posix.iovec_const{
  155. .{ .base = cmdResponse.ptr, .len = cmdResponse.len },
  156. .{ .base = terminator.ptr, .len = 1 },
  157. };
  158. socket.writev(conn, &iovecs) catch |err| {
  159. std.debug.print("error writing: {any}", .{err});
  160. };
  161. // Free temporary allocations from this request
  162. _ = response_arena.reset(.retain_capacity);
  163. }
  164. }
  165. pub fn handleRedisConnection(conn: posix.socket_t) !void {
  166. _ = active_connections.fetchAdd(1, .seq_cst);
  167. defer _ = active_connections.fetchSub(1, .seq_cst);
  168. defer posix.close(conn);
  169. var requestBuffer: [2 * 1024 * 1024]u8 = undefined;
  170. var responseBuffer: [2 * 1024 * 1024]u8 = undefined;
  171. var buffered_len: usize = 0;
  172. const is_darwin = builtin.target.os.tag == .macos;
  173. const cork_option = if (is_darwin) TCP.NOPUSH else TCP.CORK;
  174. while (true) {
  175. const n = posix.read(conn, requestBuffer[buffered_len..]) catch |err| {
  176. if (err == error.ConnectionResetByPeer) break;
  177. return err;
  178. };
  179. if (n == 0) break;
  180. const total_len = buffered_len + n;
  181. var offset: usize = 0;
  182. var response_offset: usize = 0;
  183. posix.setsockopt(conn, posix.IPPROTO.TCP, cork_option, &std.mem.toBytes(@as(c_int, 1))) catch {};
  184. while (offset < total_len) {
  185. const result = redis.parseCommand(requestBuffer[offset..total_len]) orelse {
  186. break;
  187. };
  188. const response = redis.executeCommand(result.cmd, responseBuffer[response_offset..]);
  189. response_offset += response.len;
  190. offset += result.bytes_consumed;
  191. }
  192. posix.setsockopt(conn, posix.IPPROTO.TCP, cork_option, &std.mem.toBytes(@as(c_int, 0))) catch {};
  193. if (response_offset > 0) {
  194. _ = posix.send(conn, responseBuffer[0..response_offset], posix.MSG.NOSIGNAL) catch |err| {
  195. std.debug.print("error writing: {any}", .{err});
  196. };
  197. }
  198. if (offset < total_len) {
  199. const remaining = total_len - offset;
  200. if (remaining > 0 and remaining < requestBuffer.len / 2) {
  201. @memcpy(requestBuffer[0..remaining], requestBuffer[offset..total_len]);
  202. buffered_len = remaining;
  203. } else {
  204. buffered_len = 0;
  205. }
  206. } else {
  207. buffered_len = 0;
  208. }
  209. }
  210. }