spiegel-keyman/linux/ibus-keyman/tests/testfixture.cpp
Eberhard Beilharz d93fb6aa0b
refactor(linux): rename methods that deal with keyboard options
This renames the existing methods that read and write keyboard options
so that it's visible from the name that they read/write keyboard options.
This is in preparation of new methods that read and write more general
options.
2024-06-21 18:22:29 +02:00

483 lines
16 KiB
C++

#include <glib-object.h>
#include <glib.h>
#include <ibus.h>
#include <iostream>
#include <keyman/keyman_core_api.h>
#include <kmx/kmx_processevent.h>
#include <linux/input-event-codes.h>
#include <list>
#include <memory>
#include <stack>
#include <stdexcept>
#include <string>
#include "ibusimcontext.h"
#include "keycodes.h"
#include "keymanutil.h"
#include "KeymanSystemServiceClient.h"
#include "kmx_test_source.hpp"
#include "testmodule.h"
typedef struct {
IBusBus *bus;
GtkIMContext *context;
IBusIMContext *ibuscontext;
} IBusKeymanTestsFixture;
typedef struct {
char *test_name;
char *test_path;
const char *skip_reason;
gboolean use_surrounding_text;
} TestData;
static gboolean loaded = FALSE;
static gboolean use_wayland = FALSE;
static GdkWindow *window = NULL;
static GMainLoop *thread_loop = NULL;
static GTypeModule *module = NULL;
gboolean testing = TRUE;
static void
module_register(GTypeModule *module) {
ibus_im_context_register_type(module);
}
void
destroy(GtkWidget *widget, gpointer data) {
gtk_main_quit();
}
static void
ibus_keyman_tests_fixture_set_up(IBusKeymanTestsFixture *fixture, gconstpointer user_data) {
IBusIMContextClass *classClass;
if (!window) {
GtkWidget *widget = gtk_window_new(GTK_WINDOW_TOPLEVEL);
g_signal_connect(widget, "destroy", G_CALLBACK(destroy), NULL);
window = gtk_widget_get_window(widget);
}
if (!loaded) {
ibus_init();
module = test_module_new(module_register);
g_assert_nonnull(module);
/* Not loaded until we call ref for the first time */
classClass = static_cast<IBusIMContextClass *>(g_type_class_peek(IBUS_TYPE_IM_CONTEXT));
g_assert_null(classClass);
loaded = TRUE;
}
fixture->bus = ibus_bus_new();
}
static void
ibus_keyman_tests_fixture_tear_down(IBusKeymanTestsFixture *fixture, gconstpointer user_data) {
if (thread_loop) {
g_main_loop_unref(thread_loop);
thread_loop = NULL;
}
g_clear_object(&fixture->bus);
g_clear_object(&fixture->context);
auto data = (TestData *)user_data;
g_free(data->test_name);
g_free(data->test_path);
delete data;
}
static void
set_caps_lock_state(IBusKeymanTestsFixture *fixture, bool caps_lock_on) {
set_capslock_indicator((guint32)caps_lock_on);
}
static bool
get_caps_lock_state(IBusKeymanTestsFixture *fixture) {
return get_capslock_indicator();
}
static void
switch_keyboard(IBusKeymanTestsFixture *fixture, const gchar *keyboard) {
ibus_bus_set_global_engine(fixture->bus, keyboard);
IBusEngineDesc *desc = ibus_bus_get_global_engine(fixture->bus);
g_object_ref_sink(desc);
// g_debug("Switched to engine: '%s'", ibus_engine_desc_get_name(desc));
g_assert_cmpstr(keyboard, ==, ibus_engine_desc_get_name(desc));
g_clear_object(&desc);
if (thread_loop) {
g_main_loop_unref(thread_loop);
thread_loop = NULL;
}
if (fixture->context) {
g_clear_object(&fixture->context);
}
fixture->ibuscontext = ibus_im_context_new();
fixture->context = (GtkIMContext *)fixture->ibuscontext;
thread_loop = g_main_loop_new(NULL, TRUE);
ibus_im_test_set_thread_loop(fixture->ibuscontext, thread_loop);
}
template <typename... Args>
std::string
string_format(const std::string &format, Args... args) {
// from https://stackoverflow.com/a/26221725/487503
int size_s = std::snprintf(nullptr, 0, format.c_str(), args...) + 1; // Extra space for '\0'
if (size_s <= 0) {
throw std::runtime_error("Error during formatting.");
}
auto size = static_cast<size_t>(size_s);
auto buf = std::make_unique<char[]>(size);
std::snprintf(buf.get(), size, format.c_str(), args...);
return std::string(buf.get(), buf.get() + size - 1); // We don't want the '\0' inside
}
static unsigned short vk_to_keycode(unsigned short vk) {
for (int i = 0; i < (int)sizeof(keycode_to_vk); i++) {
if (keycode_to_vk[i] == vk)
return i;
}
return -1;
}
#define KEYMAN_LCTRL 29 // 0x1D
#define KEYMAN_LALT 56 // 0x38
#define KEYMAN_RCTRL 97 // 0x61
#define KEYMAN_RALT 100 // 0x64
typedef struct {
guint modifiers_keydown;
guint modifiers_keyup;
guint keyval;
guint16 keycode;
guint is_modifier;
} gdk_key_event;
static gdk_key_event
get_key_event_for_modifier(guint modifier, guint & prev_modifiers, guint keyval, guint keycode) {
gdk_key_event event;
event.modifiers_keydown = prev_modifiers;
event.modifiers_keyup = prev_modifiers | modifier | IBUS_RELEASE_MASK;
prev_modifiers |= modifier;
event.keyval = keyval;
event.keycode = keycode;
event.is_modifier = 1;
return event;
}
static bool
is_modifier(guint16 keycode) {
switch (keycode) {
case KEY_LEFTSHIFT:
case KEY_RIGHTSHIFT:
case KEY_LEFTALT:
case KEY_RIGHTALT:
case KEY_LEFTCTRL:
case KEY_RIGHTCTRL:
case KEY_CAPSLOCK:
return true;
}
return false;
}
static std::list<gdk_key_event>
get_involved_keys(IBusKeymanTestsFixture *fixture, km::tests::key_event test_event) {
guint modifiers = 0;
if (get_caps_lock_state(fixture)) {
modifiers = IBUS_LOCK_MASK;
}
// process all modifiers
std::list<gdk_key_event> result;
if (test_event.modifier_state & KM_CORE_MODIFIER_SHIFT) {
// we don't distinguish between R and L Shift
result.push_back(get_key_event_for_modifier(IBUS_SHIFT_MASK, modifiers, GDK_KEY_Shift_L, KEY_LEFTSHIFT));
}
if (test_event.modifier_state & KM_CORE_MODIFIER_ALT || test_event.modifier_state & KM_CORE_MODIFIER_LALT) {
result.push_back(get_key_event_for_modifier(IBUS_MOD1_MASK, modifiers, GDK_KEY_Alt_L, KEY_LEFTALT));
}
if (test_event.modifier_state & KM_CORE_MODIFIER_RALT) {
if (test_event.vk == KEYMAN_RALT)
result.push_back(get_key_event_for_modifier(IBUS_MOD1_MASK, modifiers, GDK_KEY_Alt_R, KEY_RIGHTALT));
else
result.push_back(get_key_event_for_modifier(IBUS_MOD5_MASK, modifiers, GDK_KEY_Alt_R, KEY_RIGHTALT));
}
if (test_event.modifier_state & KM_CORE_MODIFIER_CTRL || test_event.modifier_state & KM_CORE_MODIFIER_LCTRL) {
result.push_back(get_key_event_for_modifier(IBUS_CONTROL_MASK, modifiers, GDK_KEY_Control_L, KEY_LEFTCTRL));
}
if (test_event.modifier_state & KM_CORE_MODIFIER_RCTRL) {
result.push_back(get_key_event_for_modifier(IBUS_CONTROL_MASK, modifiers, GDK_KEY_Control_R, KEY_RIGHTCTRL));
}
// process key
guint keyval = (test_event.modifier_state & KM_CORE_MODIFIER_SHIFT) ? gdk_keyval_to_upper(test_event.vk)
: gdk_keyval_to_lower(test_event.vk);
// REVIEW: the keyval we use here are not correct for < 0x20 and >= 0x7f
// See /usr/include/X11/keysymdef.h and /usr/include/ibus-1.0/ibuskeysyms.h
// Currently this is not a problem because we don't use keyval, but if that ever changes we
// should be aware that our test behaves different than the real client.
gdk_key_event event;
event.modifiers_keydown = modifiers;
event.modifiers_keyup = modifiers | IBUS_RELEASE_MASK;
event.keyval = keyval;
event.keycode = vk_to_keycode(test_event.vk);
event.is_modifier = is_modifier(event.keycode);
result.push_back(event);
return result;
}
static std::list<km::tests::key_event>
get_context_keys(std::u16string context) {
std::list<km::tests::key_event> result;
for (auto c = context.begin(); c != context.end(); c++) {
gchar utf8[6];
if (g_unichar_to_utf8((gunichar)*c, utf8) != 1 || utf8[0] < 32 || utf8[0] > 127) {
g_assertion_message_cmpstr(
G_LOG_DOMAIN, __FILE__, __LINE__, G_STRFUNC, "We can only deal with ASCII characters in the context", utf8, "", "");
}
result.push_back(
{km::core::kmx::s_char_to_vkey[(int)utf8[0] - 32].vk,
(uint16_t)(km::core::kmx::s_char_to_vkey[(int)utf8[0] - 32].shifted ? KM_CORE_MODIFIER_SHIFT : 0)});
}
return result;
}
static void
press_keys(IBusKeymanTestsFixture *fixture, km::tests::KmxTestSource & test_source,km::tests::key_event key_event) {
auto involved_keys = get_involved_keys(fixture, key_event);
// press and hold the individual modifier keys, finally the actual key
std::stack<GdkEventKey> keys_to_release;
for (auto key = involved_keys.begin(); key != involved_keys.end(); key++) {
bool old_caps_lock = get_caps_lock_state(fixture);
guint lock_modifier = 0;
// KEY_CAPSLOCK behaves a bit strange:
// If capslock is off:
// - on keypress we turn on capslock, but the modifier is still not set.
// - The LOCK_MASK modifier gets set on release.
// When capslock is already on:
// - the LOCK_MASK modifier is set on both keypress and release
// - capslock gets turned off on release
if (key->keycode == KEY_CAPSLOCK && !old_caps_lock) {
set_caps_lock_state(fixture, true);
lock_modifier = IBUS_LOCK_MASK;
}
GdkEventKey keyEvent = {
.type = GDK_KEY_PRESS,
.window = window,
.send_event = 0,
.time = 0,
.state = key->modifiers_keydown,
.keyval = key->keyval,
.length = 0,
.string = NULL,
.hardware_keycode = key->keycode,
.group = 0,
.is_modifier = key->is_modifier};
gtk_im_context_filter_keypress(fixture->context, &keyEvent);
keyEvent.type = GDK_KEY_RELEASE;
keyEvent.state = key->modifiers_keyup | lock_modifier;
keys_to_release.push(keyEvent);
if (key->keycode == KEY_CAPSLOCK && old_caps_lock) {
set_caps_lock_state(fixture, false);
}
}
// then release the keys in reverse order
while (!keys_to_release.empty()) {
auto keyEvent = keys_to_release.top();
gtk_im_context_filter_keypress(fixture->context, &keyEvent);
keys_to_release.pop();
}
}
static void test_source(IBusKeymanTestsFixture *fixture, gconstpointer user_data) {
auto data = (TestData*)user_data;
auto sourcefile = string_format("%s.kmn", data->test_path);
auto kmxfile = string_format("und:%s.kmx", data->test_path);
ibus_im_test_set_surrounding_text_supported(data->use_surrounding_text);
km::tests::KmxTestSource test_source;
std::string keys = "";
std::u16string expected = u"", expected_context = u"", context = u"";
km::tests::kmx_options options;
bool expected_beep = false;
// NOTE: we don't verify expected beeps since engine.c directly calls a gdk method so we
// don't know when it gets called.
g_assert_cmpint(test_source.load_source(sourcefile.c_str(), keys, expected, expected_context, context, options, expected_beep), ==, 0);
for (auto & option : options) {
if (option.type == km::tests::KOT_INPUT) {
auto key = g_utf16_to_utf8((gunichar2 *)option.key.c_str(), option.key.length(), NULL, NULL, NULL);
auto value = g_utf16_to_utf8((gunichar2 *)option.value.c_str(), option.value.length(), NULL, NULL, NULL);
keyman_put_keyboard_options_todconf(data->test_name, data->test_name, key, value);
}
}
g_settings_sync();
switch_keyboard(fixture, kmxfile.c_str());
if (test_source.caps_lock_state() != get_caps_lock_state(fixture)) {
set_caps_lock_state(fixture, test_source.caps_lock_state());
}
auto contextKeys = get_context_keys(context);
for (auto k = contextKeys.begin(); k != contextKeys.end(); k++) {
press_keys(fixture, test_source, *k);
}
gtk_im_context_focus_in(fixture->context);
for (auto p = test_source.next_key(keys); p.vk != 0; p = test_source.next_key(keys)) {
press_keys(fixture, test_source, p);
}
if (expected.length() == 0) {
g_assert_null(ibus_im_test_get_text(fixture->ibuscontext));
} else {
auto expectedText = g_utf16_to_utf8((gunichar2*)expected.c_str(), expected.length(), NULL, NULL, NULL);
g_assert_cmpstr(ibus_im_test_get_text(fixture->ibuscontext), ==, expectedText);
}
// Cleanup
g_settings_sync();
}
static void
test_skip(IBusKeymanTestsFixture *fixture, gconstpointer user_data) {
auto data = (TestData *)user_data;
g_test_skip(data->skip_reason);
}
void
print_usage() {
printf("Usage: %s --directory <keyboarddir> [--surrounding-text] [--no-surrounding-text] [--wayland|--x11] test1 [test2 ...]\n\n", g_get_prgname());
printf("Arguments:\n");
printf("\t--wayland\tRun tests on Wayland\n");
printf("\t--x11\tRun tests on X11\n");
printf("\t--surrounding-text\tRun tests with surrounding text support\n");
printf("\t--no-surrounding-text\tRun tests without surrounding text support\n");
printf("\nIf neither --surrounding-text nor --no-surrounding-text are specified then the tests run with both settings.\n");
}
void
add_test(const char* directory, const char* filename, gboolean use_surrounding_text, const char* skip_reason, bool useWayland) {
auto file = g_file_new_for_commandline_arg(filename);
auto testfilebase = g_file_get_basename(file);
auto testname = g_string_new(NULL);
g_string_append_printf(
testname, "/%s/integration-tests/%s/%s", useWayland ? "wayland" : "x11",
use_surrounding_text ? "surrounding-text" : "no-surrounding-text", testfilebase);
auto testfile = g_file_new_build_filename(directory, testfilebase, NULL);
auto testdata = new TestData();
testdata->test_name = strdup(filename);
testdata->test_path = g_file_get_parse_name(testfile);
testdata->use_surrounding_text = use_surrounding_text;
testdata->skip_reason = skip_reason;
g_test_add(
testname->str, IBusKeymanTestsFixture, testdata, ibus_keyman_tests_fixture_set_up, skip_reason ? test_skip : test_source,
ibus_keyman_tests_fixture_tear_down);
g_object_unref(file);
g_object_unref(testfile);
g_string_free(testname, TRUE);
}
int
main(int argc, char *argv[]) {
gtk_init(&argc, &argv);
g_test_init(&argc, &argv, NULL);
g_test_set_nonfatal_assertions();
if (argc < 4) {
print_usage();
return 1;
}
int iArg;
char *directory = NULL;
bool argWayland = false;
bool argX11 = false;
bool seenDirectory = false;
bool seenSurroundingTextOption = false;
bool runSurroundingTextTests = true;
bool runNoSurroundingTextTests = true;
for (iArg = 1; iArg < argc; iArg++) {
if (strcmp(argv[iArg], "--directory") == 0 && iArg + 1 < argc) {
iArg++;
directory = argv[iArg];
seenDirectory = true;
} else if (strcmp(argv[iArg], "--wayland") == 0) {
argWayland = true;
} else if (strcmp(argv[iArg], "--x11") == 0) {
argX11 = true;
} else if (strcmp(argv[iArg], "--surrounding-text") == 0) {
if (!seenSurroundingTextOption) {
runNoSurroundingTextTests = false;
}
runSurroundingTextTests = true;
seenSurroundingTextOption = true;
} else if (strcmp(argv[iArg], "--no-surrounding-text") == 0) {
if (!seenSurroundingTextOption) {
runSurroundingTextTests = false;
}
runNoSurroundingTextTests = true;
seenSurroundingTextOption = true;
} else if (!seenDirectory) {
print_usage();
return 2;
} else {
break;
}
}
if (argWayland && argX11) {
printf("ERROR: --wayland and --x11 can't both be specified");
print_usage();
return 2;
}
use_wayland = argWayland;
int nTests = argc - iArg;
char **tests = &argv[iArg];
// Add tests
for (int i = 0; i < nTests; i++) {
auto filename = g_string_new(tests[i]);
if (strstr(filename->str, ".kmx") || strstr(filename->str, ".kmn")) {
g_string_truncate(filename, filename->len - 4);
}
// Check for tests to skip - #3345
const char *skipReason = NULL;
if (strcmp(filename->str, "k_026___system_stores") == 0 ||
strcmp(filename->str, "k_027___system_stores_2") == 0) {
skipReason = "mnemonic keyboards are not yet supported on Linux (#3345)";
}
if (runSurroundingTextTests) {
add_test(directory, filename->str, TRUE, skipReason, use_wayland);
}
if (runNoSurroundingTextTests) {
add_test(directory, filename->str, FALSE, skipReason, use_wayland);
}
g_string_free(filename, TRUE);
}
// Run tests
int retVal = g_test_run();
test_module_unuse(module);
return retVal;
}