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#include <assert.h>
#include <err.h>
#include <fcntl.h>
#include <stdlib.h>
#include <string.h>
#include <sys/stat.h>
#include <sys/types.h>
#include <talloc/talloc.h>
#include <types/types.h>
#include <url/url.h>
#include "device-handler.h"
#include "parser.h"
#include "resource.h"
#include "parser-test.h"
struct p_item {
struct list_item list;
struct parser *parser;
};
STATIC_LIST(parsers);
void __register_parser(struct parser *parser)
{
struct p_item* i = talloc(NULL, struct p_item);
i->parser = parser;
list_add(&parsers, &i->list);
}
static void __attribute__((destructor)) __cleanup_parsers(void)
{
struct p_item *item, *tmp;
list_for_each_entry_safe(&parsers, item, tmp, list)
talloc_free(item);
}
static struct discover_device *test_create_device_simple(
struct discover_context *ctx)
{
static int dev_idx;
char name[10];
sprintf(name, "__test%d", dev_idx++);
return test_create_device(ctx, name);
}
struct discover_device *test_create_device(struct discover_context *ctx,
const char *name)
{
struct discover_device *dev;
dev = talloc_zero(ctx, struct discover_device);
dev->device = talloc_zero(dev, struct device);
list_init(&dev->boot_options);
dev->device->id = talloc_strdup(dev, name);
dev->device_path = talloc_asprintf(dev, "/dev/%s", name);
dev->mount_path = talloc_asprintf(dev, "/test/mount/%s", name);
return dev;
}
static struct discover_context *test_create_context(struct parser_test *test)
{
struct discover_context *ctx;
ctx = talloc_zero(test, struct discover_context);
assert(ctx);
list_init(&ctx->boot_options);
ctx->device = test_create_device_simple(ctx);
return ctx;
}
struct parser_test *test_init(void)
{
struct parser_test *test;
test = talloc_zero(NULL, struct parser_test);
test->handler = device_handler_init(NULL, NULL, 0);
test->ctx = test_create_context(test);
return test;
}
void test_fini(struct parser_test *test)
{
device_handler_destroy(test->handler);
talloc_free(test);
}
void __test_read_conf_data(struct parser_test *test,
const char *buf, size_t len)
{
test->conf.size = len;
test->conf.buf = talloc_memdup(test, buf, len);
}
void test_read_conf_file(struct parser_test *test, const char *filename)
{
struct stat stat;
char *path;
int fd, rc;
path = talloc_asprintf(test, "%s/%s", TEST_CONF_BASE, filename);
fd = open(path, O_RDONLY);
if (fd < 0)
err(EXIT_FAILURE, "Can't open test conf file %s\n", path);
rc = fstat(fd, &stat);
assert(!rc);
(void)rc;
test->conf.size = stat.st_size;
test->conf.buf = talloc_array(test, char, test->conf.size + 1);
rc = read(fd, test->conf.buf, test->conf.size);
assert(rc == (ssize_t)test->conf.size);
*(char *)(test->conf.buf + test->conf.size) = '\0';
close(fd);
talloc_free(path);
}
void test_set_conf_source(struct parser_test *test, const char *url)
{
test->ctx->conf_url = pb_url_parse(test, url);
assert(test->ctx->conf_url);
}
int test_run_parser(struct parser_test *test, const char *parser_name)
{
struct p_item* i;
list_for_each_entry(&parsers, i, list) {
if (strcmp(i->parser->name, parser_name))
continue;
test->ctx->parser = i->parser;
return i->parser->parse(test->ctx, test->conf.buf, test->conf.size);
}
errx(EXIT_FAILURE, "%s: parser '%s' not found", __func__, parser_name);
}
bool resource_resolve(struct device_handler *handler, struct parser *parser,
struct resource *resource)
{
if (!resource)
return true;
if (resource->resolved)
return true;
assert(parser);
assert(parser->resolve_resource);
return parser->resolve_resource(handler, resource);
}
void boot_option_resolve(struct device_handler *handler,
struct discover_boot_option *opt)
{
resource_resolve(handler, opt->source, opt->boot_image);
resource_resolve(handler, opt->source, opt->initrd);
resource_resolve(handler, opt->source, opt->icon);
}
extern void device_handler_add_device(struct device_handler *handler,
struct discover_device *dev);
void test_hotplug_device(struct parser_test *test, struct discover_device *dev)
{
struct discover_boot_option *opt;
device_handler_add_device(test->handler, dev);
list_for_each_entry(&test->ctx->boot_options, opt, list)
boot_option_resolve(test->handler, opt);
}
struct discover_boot_option *get_boot_option(struct discover_context *ctx,
int idx)
{
struct discover_boot_option *opt;
int i = 0;
list_for_each_entry(&ctx->boot_options, opt, list) {
if (i++ == idx)
return opt;
}
assert(0);
return NULL;
}
void __check_boot_option_count(struct discover_context *ctx, int count,
const char *file, int line)
{
struct discover_boot_option *opt;
int i = 0;
list_for_each_entry(&ctx->boot_options, opt, list)
i++;
if (i == count)
return;
fprintf(stderr, "%s:%d: boot option count check failed\n", file, line);
fprintf(stderr, "expected %d options, got %d:\n", count, i);
i = 1;
list_for_each_entry(&ctx->boot_options, opt, list)
fprintf(stderr, " %2d: %s [%s]\n", i++, opt->option->name,
opt->option->id);
exit(EXIT_FAILURE);
}
void __check_args(struct discover_boot_option *opt, const char *args,
const char *file, int line)
{
int rc;
if (!opt->option->boot_args) {
fprintf(stderr, "%s:%d: arg check failed\n", file, line);
fprintf(stderr, " no arguments parsed\n");
fprintf(stderr, " expected '%s'\n", args);
exit(EXIT_FAILURE);
}
rc = strcmp(opt->option->boot_args, args);
if (rc) {
fprintf(stderr, "%s:%d: arg check failed\n", file, line);
fprintf(stderr, " got '%s'\n", opt->option->boot_args);
fprintf(stderr, " expected '%s'\n", args);
exit(EXIT_FAILURE);
}
}
void __check_name(struct discover_boot_option *opt, const char *name,
const char *file, int line)
{
int rc;
rc = strcmp(opt->option->name, name);
if (rc) {
fprintf(stderr, "%s:%d: name check failed\n", file, line);
fprintf(stderr, " got '%s'\n", opt->option->name);
fprintf(stderr, " expected '%s'\n", name);
exit(EXIT_FAILURE);
}
}
void __check_is_default(struct discover_boot_option *opt,
const char *file, int line)
{
if (opt->option->is_default)
return;
fprintf(stderr, "%s:%d: default check failed\n", file, line);
exit(EXIT_FAILURE);
}
void __check_resolved_local_resource(struct resource *res,
struct discover_device *dev, const char *local_path,
const char *file, int line)
{
const char *exp_url, *got_url;
if (!res)
errx(EXIT_FAILURE, "%s:%d: No resource", file, line);
if (!res->resolved)
errx(EXIT_FAILURE, "%s:%d: Resource is not resolved",
file, line);
exp_url = talloc_asprintf(res, "file://%s%s",
dev->mount_path, local_path);
got_url = pb_url_to_string(res->url);
if (strcmp(got_url, exp_url)) {
fprintf(stderr, "%s:%d: Resource mismatch\n", file, line);
fprintf(stderr, " got '%s'\n", got_url);
fprintf(stderr, " expected '%s'\n", exp_url);
exit(EXIT_FAILURE);
}
}
void __check_resolved_url_resource(struct resource *res,
const char *url, const char *file, int line)
{
char *res_url;
if (!res)
errx(EXIT_FAILURE, "%s:%d: No resource", file, line);
if (!res->resolved)
errx(EXIT_FAILURE, "%s:%d: Resource is not resolved",
file, line);
res_url = pb_url_to_string(res->url);
if (strcmp(url, res_url)) {
fprintf(stderr, "%s:%d: Resource mismatch\n", file, line);
fprintf(stderr, " got '%s'\n", res_url);
fprintf(stderr, " expected '%s'\n", url);
exit(EXIT_FAILURE);
}
}
void __check_unresolved_resource(struct resource *res,
const char *file, int line)
{
if (!res)
errx(EXIT_FAILURE, "%s:%d: No resource", file, line);
if (res->resolved)
errx(EXIT_FAILURE, "%s:%d: Resource is resolved", file, line);
}
void __check_not_present_resource(struct resource *res,
const char *file, int line)
{
if (res)
errx(EXIT_FAILURE, "%s:%d: Resource present", file, line);
}
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