/** * @file console_verbs.c * @brief Tests the group E verbs: SLEEP, WAIT, KEY, WINDOW and the TI clock. * * The two that wait are the interesting ones, and what they have to prove is * that they *do not block*: a held step still returns, so a bounded * akbasic_runtime_run() comes back on time and a host keeps its frame rate. * Section 1.6 is the rule and this is where it is checked for group E. */ #include #include #include #include "harness.h" #include "testutil.h" /** @brief Load a program and put the runtime in RUN mode without stepping it. */ static akerr_ErrorContext AKERR_NOIGNORE *load_program(const char *source) { PREPARE_ERROR(errctx); PASS(errctx, harness_start(NULL)); PASS(errctx, akbasic_runtime_load(&HARNESS_RUNTIME, source)); PASS(errctx, akbasic_runtime_start(&HARNESS_RUNTIME, AKBASIC_MODE_RUN)); SUCCEED_RETURN(errctx); } /** @brief Run a program to completion in RUN mode. */ static akerr_ErrorContext AKERR_NOIGNORE *run_program(const char *source) { PREPARE_ERROR(errctx); PASS(errctx, load_program(source)); PASS(errctx, akbasic_runtime_run(&HARNESS_RUNTIME, 0)); SUCCEED_RETURN(errctx); } /** @brief SLEEP holds the step loop until the host's clock passes its deadline. */ static void test_sleep(void) { TEST_REQUIRE_OK(load_program("1 PRINT \"BEFORE\"\n" "2 SLEEP 5\n" "3 PRINT \"AFTER\"\n")); TEST_REQUIRE_OK(akbasic_runtime_settime(&HARNESS_RUNTIME, 1000)); /* Line 0, line 1, line 2 -- the SLEEP arms and the program stops advancing. */ TEST_REQUIRE_OK(akbasic_runtime_run(&HARNESS_RUNTIME, 3)); TEST_REQUIRE_STR(HARNESS_OUTPUT, "BEFORE\n"); TEST_REQUIRE(HARNESS_RUNTIME.console_state.sleeping, "SLEEP should be holding"); /* * Twenty more steps with the clock standing still change nothing -- and, * crucially, they *return*. A SLEEP that blocked would never get here. */ TEST_REQUIRE_OK(akbasic_runtime_run(&HARNESS_RUNTIME, 20)); TEST_REQUIRE_STR(HARNESS_OUTPUT, "BEFORE\n"); /* Past the deadline, it wakes. */ TEST_REQUIRE_OK(akbasic_runtime_settime(&HARNESS_RUNTIME, 6500)); TEST_REQUIRE_OK(akbasic_runtime_run(&HARNESS_RUNTIME, 2)); TEST_REQUIRE_STR(HARNESS_OUTPUT, "BEFORE\nAFTER\n"); TEST_REQUIRE(!HARNESS_RUNTIME.console_state.sleeping, "SLEEP should have finished"); harness_stop(); } /** @brief A host that never sets a clock does not hang on SLEEP. */ static void test_sleep_without_a_clock(void) { TEST_REQUIRE_OK(run_program("1 SLEEP 10\n2 PRINT \"THROUGH\"\n")); TEST_REQUIRE_STR(HARNESS_OUTPUT, "THROUGH\n"); harness_stop(); } /** @brief SLEEP refuses a negative interval rather than waiting forever. */ static void test_sleep_refuses_negative(void) { TEST_REQUIRE_OK(run_program("10 SLEEP -1\n")); TEST_REQUIRE(strstr(HARNESS_OUTPUT, "negative number of seconds") != NULL, "SLEEP -1 should be refused, got \"%s\"", HARNESS_OUTPUT); harness_stop(); } /** * @brief WAIT polls a byte and holds until it matches, without blocking. * * The address is a real one -- this test's own variable -- which is the only * honest way to exercise it: on a C128 the byte is a hardware register, and here * the only thing that can change it is something outside the program. */ static void test_wait(void) { static volatile uint8_t watched = 0; char source[256]; watched = 0; snprintf(source, sizeof(source), "1 WAIT %llu, 1\n2 PRINT \"RELEASED\"\n", (unsigned long long)(uintptr_t)&watched); TEST_REQUIRE_OK(load_program(source)); TEST_REQUIRE_OK(akbasic_runtime_run(&HARNESS_RUNTIME, 4)); TEST_REQUIRE_STR(HARNESS_OUTPUT, ""); TEST_REQUIRE(HARNESS_RUNTIME.console_state.waiting, "WAIT should be holding"); /* Still returning, which is the whole point. */ TEST_REQUIRE_OK(akbasic_runtime_run(&HARNESS_RUNTIME, 20)); TEST_REQUIRE_STR(HARNESS_OUTPUT, ""); watched = 1; TEST_REQUIRE_OK(akbasic_runtime_run(&HARNESS_RUNTIME, 2)); TEST_REQUIRE_STR(HARNESS_OUTPUT, "RELEASED\n"); harness_stop(); } /** @brief KEY stores a macro per key, and bare KEY lists all eight. */ static void test_key(void) { TEST_REQUIRE_OK(run_program("10 KEY 1, \"RUN\"\n" "20 KEY 3, \"LIST\"\n" "30 KEY\n")); TEST_REQUIRE(strstr(HARNESS_OUTPUT, "KEY 1, \"RUN\"") != NULL, "KEY should list its macros, got \"%s\"", HARNESS_OUTPUT); TEST_REQUIRE(strstr(HARNESS_OUTPUT, "KEY 3, \"LIST\"") != NULL, "KEY should list its macros, got \"%s\"", HARNESS_OUTPUT); TEST_REQUIRE(strstr(HARNESS_OUTPUT, "KEY 8, \"\"") != NULL, "KEY should list undefined keys too, got \"%s\"", HARNESS_OUTPUT); harness_stop(); TEST_REQUIRE_OK(run_program("10 KEY 9, \"NOPE\"\n")); TEST_REQUIRE(strstr(HARNESS_OUTPUT, "outside 1..8") != NULL, "KEY 9 should be refused, got \"%s\"", HARNESS_OUTPUT); harness_stop(); } /** @brief WINDOW refuses against a sink with no character grid, which is stdio. */ static void test_window_needs_a_grid(void) { TEST_REQUIRE_OK(run_program("10 WINDOW 1, 1, 20, 10\n")); TEST_REQUIRE(strstr(HARNESS_OUTPUT, "character grid") != NULL, "WINDOW against a stdio sink should refuse by name, got \"%s\"", HARNESS_OUTPUT); harness_stop(); /* An inside-out rectangle is refused before the device is even consulted. */ TEST_REQUIRE_OK(run_program("10 WINDOW 20, 10, 1, 1\n")); TEST_REQUIRE(strstr(HARNESS_OUTPUT, "bottom right") != NULL, "an inverted WINDOW should be refused, got \"%s\"", HARNESS_OUTPUT); harness_stop(); } /* * A grid a stdio sink does not have. * * `RWINDOW` and `RGR(3)`/`RGR(4)` read the sink's grid, and the harness sink is * stdio, which has none -- so without a stand-in the only thing assertable here * is the refusal. This is the akgl sink's shape without the SDL: the runtime * asks through a function pointer and does not care who answers. * * Windowing changes the columns and rows and leaves the cell size alone, which * is the distinction RWINDOW and RGR are split across, so the fake honours it. */ static int FAKE_COLUMNS = 50; static int FAKE_ROWS = 37; static akerr_ErrorContext AKERR_NOIGNORE *fake_grid(akbasic_TextSink *self, int *columns, int *rows, int *cellw, int *cellh) { PREPARE_ERROR(errctx); (void)self; FAIL_ZERO_RETURN(errctx, (columns != NULL && rows != NULL && cellw != NULL && cellh != NULL), AKERR_NULLPOINTER, "NULL destination in fake grid"); *columns = FAKE_COLUMNS; *rows = FAKE_ROWS; *cellw = 16; *cellh = 16; SUCCEED_RETURN(errctx); } static akerr_ErrorContext AKERR_NOIGNORE *fake_window(akbasic_TextSink *self, int left, int top, int right, int bottom) { PREPARE_ERROR(errctx); (void)self; FAKE_COLUMNS = (right - left) + 1; FAKE_ROWS = (bottom - top) + 1; SUCCEED_RETURN(errctx); } /** * @brief `RWINDOW` and the cell-size `RGR` fields report the grid. * * A program had no way to ask how big a character is, so anything placing a * character *and* a sprite at the same spot hardcoded a cell size measured * against whatever font the host loaded. The Breakout in `examples/` did, and it * was the one thing in that listing that broke on a different window. TODO.md * section 6 item 31. */ static void test_rwindow(void) { /* Without a grid, both refuse by name rather than answering something. */ TEST_REQUIRE_OK(run_program("10 PRINT RWINDOW(0)\n")); TEST_REQUIRE(strstr(HARNESS_OUTPUT, "character grid") != NULL, "RWINDOW against a stdio sink should refuse by name, got \"%s\"", HARNESS_OUTPUT); harness_stop(); FAKE_COLUMNS = 50; FAKE_ROWS = 37; TEST_REQUIRE_OK(load_program("10 PRINT RWINDOW(0)\n" "20 PRINT RWINDOW(1)\n" "30 PRINT RGR(3)\n" "40 PRINT RGR(4)\n")); HARNESS_SINK.grid = fake_grid; TEST_REQUIRE_OK(akbasic_runtime_run(&HARNESS_RUNTIME, 0)); /* Rows first: that is RWINDOW's own order on a C128, and it is not obvious. */ TEST_REQUIRE_STR(HARNESS_OUTPUT, "37\n50\n16\n16\n"); harness_stop(); /* RWINDOW follows a WINDOW; the cell size does not, because windowing does not change how big a character is. */ FAKE_COLUMNS = 50; FAKE_ROWS = 37; TEST_REQUIRE_OK(load_program("10 WINDOW 0, 0, 19, 4\n" "20 PRINT RWINDOW(1)\n" "30 PRINT RWINDOW(0)\n" "40 PRINT RGR(3)\n")); HARNESS_SINK.grid = fake_grid; HARNESS_SINK.window = fake_window; TEST_REQUIRE_OK(akbasic_runtime_run(&HARNESS_RUNTIME, 0)); TEST_REQUIRE_STR(HARNESS_OUTPUT, "20\n5\n16\n"); HARNESS_SINK.window = NULL; harness_stop(); /* * Field 2 is refused by name. A C128 answers 0 for 40-column mode and 1 for * 80-column; this interpreter has neither, and answering 0 would be a * plausible lie -- which is worse than a refusal that says why. */ FAKE_COLUMNS = 50; FAKE_ROWS = 37; TEST_REQUIRE_OK(load_program("10 PRINT RWINDOW(2)\n")); HARNESS_SINK.grid = fake_grid; TEST_REQUIRE_OK(akbasic_runtime_run(&HARNESS_RUNTIME, 0)); TEST_REQUIRE(strstr(HARNESS_OUTPUT, "40 or 80 column mode") != NULL, "RWINDOW(2) should be refused by name, got \"%s\"", HARNESS_OUTPUT); harness_stop(); TEST_REQUIRE_OK(load_program("10 PRINT RWINDOW(7)\n")); HARNESS_SINK.grid = fake_grid; TEST_REQUIRE_OK(akbasic_runtime_run(&HARNESS_RUNTIME, 0)); TEST_REQUIRE(strstr(HARNESS_OUTPUT, "outside 0..1") != NULL, "RWINDOW(7) should be out of range, got \"%s\"", HARNESS_OUTPUT); harness_stop(); } /** @brief TI# counts jiffies and TI$ formats them, both from the host's clock. */ static void test_ti(void) { TEST_REQUIRE_OK(load_program("1 PRINT TI#\n2 PRINT TI$\n")); /* 3661 seconds is 01:01:01, and 3661 * 60 jiffies. */ TEST_REQUIRE_OK(akbasic_runtime_settime(&HARNESS_RUNTIME, 3661000)); TEST_REQUIRE_OK(akbasic_runtime_run(&HARNESS_RUNTIME, 3)); TEST_REQUIRE_STR(HARNESS_OUTPUT, "219660\n010101\n"); harness_stop(); /* A host with no clock has a stopped one rather than a wrong one. */ TEST_REQUIRE_OK(run_program("1 PRINT TI$\n")); TEST_REQUIRE_STR(HARNESS_OUTPUT, "000000\n"); harness_stop(); } int main(void) { test_sleep(); test_sleep_without_a_clock(); test_sleep_refuses_negative(); test_wait(); test_key(); test_window_needs_a_grid(); test_rwindow(); test_ti(); return akbasic_test_failures; }