//! test/system/services/shared-memory-client — the creating half of the shared-memory test (docs/display-v2.md V2). //! It `shared_memory_create`s a shared region, writes a known pattern into it, and hands the region's //! capability to `shared-memory-server` as an `ipc_call` send_cap. The server maps that capability and //! confirms the pattern is visible — proving cross-process shared memory over the extended //! capability-passing path. const channel = @import("channel"); const ipc = @import("ipc"); const time = @import("time"); const memory = @import("memory"); const logging = @import("logging"); const pattern_len = 4096; /// The pattern the server checks — must match shared-memory-server.zig. fn expected(i: usize) u8 { return @truncate(i *% 7 +% 3); } fn lookupServer() ?ipc.Handle { var attempts: usize = 0; while (attempts < 100) : (attempts += 1) { if (channel.openEndpoint("test/shared-memory")) |h| return h; time.sleepMillis(50); } return null; } pub fn main() void { const region = memory.sharedCreate(pattern_len) orelse { _ = logging.write("shared-memory: create failed\n"); return; }; var i: usize = 0; while (i < pattern_len) : (i += 1) region.ptr[i] = expected(i); const server = lookupServer() orelse { _ = logging.write("shared-memory: no server\n"); return; }; // A non-empty message (so it reaches on_message, not the ping path), carrying the shared-memory // region's capability. The reply is empty; we just need the round trip. var reply: [64]u8 = undefined; _ = ipc.callCap(server, "shared-memory", &reply, region.handle) catch { _ = logging.write("shared-memory: call failed\n"); }; }