Files
git/builtin-help.c
Steffen Prohaska ee10a9759a Move computation of absolute paths from Makefile to runtime and compute prefix on the fly if RUNTIME_PREFIX set
This is the first commit of a series that adds support for
relocatable binaries (called RUNTIME_PREFIX).  Such binaries can be
moved together with the system configuration files to a different
directory, as long as the relative paths from the binary to the
configuration files stays the same.  This functionality is
essential on Windows where we deliver git binaries with an
installer that allows to freely choose the installation location.
The commit series implements RUNTIME_PREFIX only on Windows.  The
architecture is such that adding support on Unix should not be too
hard.

This first commits makes all paths relative in the Makefile and
teaches system_path() to add the prefix instead.  We used to
compute absolute paths in the Makefile and passed them to C as
defines.  We now pass relative paths to C and call system_path() to
add the prefix at runtime.

If RUNTIME_PREFIX is unset we use the static prefix.  This will be
the default on Unix.  Thus, the behavior is unchanged compared to
the old implementation.

If RUNTIME_PREFIX is set the prefix is computed from the location
of the executable.  In this case, system_path() tries to strip
known directories that executables can be located in from the path
of the executable.  If the path is successfully stripped it is used
as the prefix.  For example, if the executable is
"/msysgit/bin/git" and BINDIR is "bin", then the prefix computed is
"/msysgit".

If the runtime prefix computation fails, we fall back to the static
prefix specified in the makefile.  This can be the case if the
executable is not installed at a known location.  Note that our
test system sets GIT_CONFIG_NOSYSTEM to tell git to ignore global
configuration files during testing.  Hence testing does not trigger
the fall back.

Note that the implementation requires argv0_path to be set to an
absolute path, which is currently the case only on Windows.
argv0_path must point to the directory of the executable.  We use
assert() to verify this during debugging.  On Windows, the wrapper
for main() (see compat/mingw.h) guarantees that this is the case.
On Unix, further work is required before RUNTIME_PREFIX can be
enabled.
2008-12-25 11:52:09 +01:00

464 lines
11 KiB
C

/*
* builtin-help.c
*
* Builtin help command
*/
#include "cache.h"
#include "builtin.h"
#include "exec_cmd.h"
#include "common-cmds.h"
#include "parse-options.h"
#include "run-command.h"
#include "help.h"
static struct man_viewer_list {
struct man_viewer_list *next;
char name[FLEX_ARRAY];
} *man_viewer_list;
static struct man_viewer_info_list {
struct man_viewer_info_list *next;
const char *info;
char name[FLEX_ARRAY];
} *man_viewer_info_list;
enum help_format {
HELP_FORMAT_MAN,
HELP_FORMAT_INFO,
HELP_FORMAT_WEB,
};
static int show_all = 0;
static enum help_format help_format = HELP_FORMAT_MAN;
static struct option builtin_help_options[] = {
OPT_BOOLEAN('a', "all", &show_all, "print all available commands"),
OPT_SET_INT('m', "man", &help_format, "show man page", HELP_FORMAT_MAN),
OPT_SET_INT('w', "web", &help_format, "show manual in web browser",
HELP_FORMAT_WEB),
OPT_SET_INT('i', "info", &help_format, "show info page",
HELP_FORMAT_INFO),
OPT_END(),
};
static const char * const builtin_help_usage[] = {
"git help [--all] [--man|--web|--info] [command]",
NULL
};
static enum help_format parse_help_format(const char *format)
{
if (!strcmp(format, "man"))
return HELP_FORMAT_MAN;
if (!strcmp(format, "info"))
return HELP_FORMAT_INFO;
if (!strcmp(format, "web") || !strcmp(format, "html"))
return HELP_FORMAT_WEB;
die("unrecognized help format '%s'", format);
}
static const char *get_man_viewer_info(const char *name)
{
struct man_viewer_info_list *viewer;
for (viewer = man_viewer_info_list; viewer; viewer = viewer->next)
{
if (!strcasecmp(name, viewer->name))
return viewer->info;
}
return NULL;
}
static int check_emacsclient_version(void)
{
struct strbuf buffer = STRBUF_INIT;
struct child_process ec_process;
const char *argv_ec[] = { "emacsclient", "--version", NULL };
int version;
/* emacsclient prints its version number on stderr */
memset(&ec_process, 0, sizeof(ec_process));
ec_process.argv = argv_ec;
ec_process.err = -1;
ec_process.stdout_to_stderr = 1;
if (start_command(&ec_process)) {
fprintf(stderr, "Failed to start emacsclient.\n");
return -1;
}
strbuf_read(&buffer, ec_process.err, 20);
close(ec_process.err);
/*
* Don't bother checking return value, because "emacsclient --version"
* seems to always exits with code 1.
*/
finish_command(&ec_process);
if (prefixcmp(buffer.buf, "emacsclient")) {
fprintf(stderr, "Failed to parse emacsclient version.\n");
strbuf_release(&buffer);
return -1;
}
strbuf_remove(&buffer, 0, strlen("emacsclient"));
version = atoi(buffer.buf);
if (version < 22) {
fprintf(stderr,
"emacsclient version '%d' too old (< 22).\n",
version);
strbuf_release(&buffer);
return -1;
}
strbuf_release(&buffer);
return 0;
}
static void exec_woman_emacs(const char* path, const char *page)
{
if (!check_emacsclient_version()) {
/* This works only with emacsclient version >= 22. */
struct strbuf man_page = STRBUF_INIT;
if (!path)
path = "emacsclient";
strbuf_addf(&man_page, "(woman \"%s\")", page);
execlp(path, "emacsclient", "-e", man_page.buf, NULL);
warning("failed to exec '%s': %s", path, strerror(errno));
}
}
static void exec_man_konqueror(const char* path, const char *page)
{
const char *display = getenv("DISPLAY");
if (display && *display) {
struct strbuf man_page = STRBUF_INIT;
const char *filename = "kfmclient";
/* It's simpler to launch konqueror using kfmclient. */
if (path) {
const char *file = strrchr(path, '/');
if (file && !strcmp(file + 1, "konqueror")) {
char *new = xstrdup(path);
char *dest = strrchr(new, '/');
/* strlen("konqueror") == strlen("kfmclient") */
strcpy(dest + 1, "kfmclient");
path = new;
}
if (file)
filename = file;
} else
path = "kfmclient";
strbuf_addf(&man_page, "man:%s(1)", page);
execlp(path, filename, "newTab", man_page.buf, NULL);
warning("failed to exec '%s': %s", path, strerror(errno));
}
}
static void exec_man_man(const char* path, const char *page)
{
if (!path)
path = "man";
execlp(path, "man", page, NULL);
warning("failed to exec '%s': %s", path, strerror(errno));
}
static void exec_man_cmd(const char *cmd, const char *page)
{
struct strbuf shell_cmd = STRBUF_INIT;
strbuf_addf(&shell_cmd, "%s %s", cmd, page);
execl("/bin/sh", "sh", "-c", shell_cmd.buf, NULL);
warning("failed to exec '%s': %s", cmd, strerror(errno));
}
static void add_man_viewer(const char *name)
{
struct man_viewer_list **p = &man_viewer_list;
size_t len = strlen(name);
while (*p)
p = &((*p)->next);
*p = xcalloc(1, (sizeof(**p) + len + 1));
strncpy((*p)->name, name, len);
}
static int supported_man_viewer(const char *name, size_t len)
{
return (!strncasecmp("man", name, len) ||
!strncasecmp("woman", name, len) ||
!strncasecmp("konqueror", name, len));
}
static void do_add_man_viewer_info(const char *name,
size_t len,
const char *value)
{
struct man_viewer_info_list *new = xcalloc(1, sizeof(*new) + len + 1);
strncpy(new->name, name, len);
new->info = xstrdup(value);
new->next = man_viewer_info_list;
man_viewer_info_list = new;
}
static int add_man_viewer_path(const char *name,
size_t len,
const char *value)
{
if (supported_man_viewer(name, len))
do_add_man_viewer_info(name, len, value);
else
warning("'%s': path for unsupported man viewer.\n"
"Please consider using 'man.<tool>.cmd' instead.",
name);
return 0;
}
static int add_man_viewer_cmd(const char *name,
size_t len,
const char *value)
{
if (supported_man_viewer(name, len))
warning("'%s': cmd for supported man viewer.\n"
"Please consider using 'man.<tool>.path' instead.",
name);
else
do_add_man_viewer_info(name, len, value);
return 0;
}
static int add_man_viewer_info(const char *var, const char *value)
{
const char *name = var + 4;
const char *subkey = strrchr(name, '.');
if (!subkey)
return error("Config with no key for man viewer: %s", name);
if (!strcmp(subkey, ".path")) {
if (!value)
return config_error_nonbool(var);
return add_man_viewer_path(name, subkey - name, value);
}
if (!strcmp(subkey, ".cmd")) {
if (!value)
return config_error_nonbool(var);
return add_man_viewer_cmd(name, subkey - name, value);
}
warning("'%s': unsupported man viewer sub key.", subkey);
return 0;
}
static int git_help_config(const char *var, const char *value, void *cb)
{
if (!strcmp(var, "help.format")) {
if (!value)
return config_error_nonbool(var);
help_format = parse_help_format(value);
return 0;
}
if (!strcmp(var, "man.viewer")) {
if (!value)
return config_error_nonbool(var);
add_man_viewer(value);
return 0;
}
if (!prefixcmp(var, "man."))
return add_man_viewer_info(var, value);
return git_default_config(var, value, cb);
}
static struct cmdnames main_cmds, other_cmds;
void list_common_cmds_help(void)
{
int i, longest = 0;
for (i = 0; i < ARRAY_SIZE(common_cmds); i++) {
if (longest < strlen(common_cmds[i].name))
longest = strlen(common_cmds[i].name);
}
puts("The most commonly used git commands are:");
for (i = 0; i < ARRAY_SIZE(common_cmds); i++) {
printf(" %s ", common_cmds[i].name);
mput_char(' ', longest - strlen(common_cmds[i].name));
puts(common_cmds[i].help);
}
}
static int is_git_command(const char *s)
{
return is_in_cmdlist(&main_cmds, s) ||
is_in_cmdlist(&other_cmds, s);
}
static const char *prepend(const char *prefix, const char *cmd)
{
size_t pre_len = strlen(prefix);
size_t cmd_len = strlen(cmd);
char *p = xmalloc(pre_len + cmd_len + 1);
memcpy(p, prefix, pre_len);
strcpy(p + pre_len, cmd);
return p;
}
static const char *cmd_to_page(const char *git_cmd)
{
if (!git_cmd)
return "git";
else if (!prefixcmp(git_cmd, "git"))
return git_cmd;
else if (is_git_command(git_cmd))
return prepend("git-", git_cmd);
else
return prepend("git", git_cmd);
}
static void setup_man_path(void)
{
struct strbuf new_path = STRBUF_INIT;
const char *old_path = getenv("MANPATH");
/* We should always put ':' after our path. If there is no
* old_path, the ':' at the end will let 'man' to try
* system-wide paths after ours to find the manual page. If
* there is old_path, we need ':' as delimiter. */
strbuf_addstr(&new_path, system_path(GIT_MAN_PATH));
strbuf_addch(&new_path, ':');
if (old_path)
strbuf_addstr(&new_path, old_path);
setenv("MANPATH", new_path.buf, 1);
strbuf_release(&new_path);
}
static void exec_viewer(const char *name, const char *page)
{
const char *info = get_man_viewer_info(name);
if (!strcasecmp(name, "man"))
exec_man_man(info, page);
else if (!strcasecmp(name, "woman"))
exec_woman_emacs(info, page);
else if (!strcasecmp(name, "konqueror"))
exec_man_konqueror(info, page);
else if (info)
exec_man_cmd(info, page);
else
warning("'%s': unknown man viewer.", name);
}
static void show_man_page(const char *git_cmd)
{
struct man_viewer_list *viewer;
const char *page = cmd_to_page(git_cmd);
const char *fallback = getenv("GIT_MAN_VIEWER");
setup_man_path();
for (viewer = man_viewer_list; viewer; viewer = viewer->next)
{
exec_viewer(viewer->name, page); /* will return when unable */
}
if (fallback)
exec_viewer(fallback, page);
exec_viewer("man", page);
die("no man viewer handled the request");
}
static void show_info_page(const char *git_cmd)
{
const char *page = cmd_to_page(git_cmd);
setenv("INFOPATH", system_path(GIT_INFO_PATH), 1);
execlp("info", "info", "gitman", page, NULL);
}
static void get_html_page_path(struct strbuf *page_path, const char *page)
{
struct stat st;
const char *html_path = system_path(GIT_HTML_PATH);
/* Check that we have a git documentation directory. */
if (stat(mkpath("%s/git.html", html_path), &st)
|| !S_ISREG(st.st_mode))
die("'%s': not a documentation directory.", html_path);
strbuf_init(page_path, 0);
strbuf_addf(page_path, "%s/%s.html", html_path, page);
}
/*
* If open_html is not defined in a platform-specific way (see for
* example compat/mingw.h), we use the script web--browse to display
* HTML.
*/
#ifndef open_html
void open_html(const char *path)
{
execl_git_cmd("web--browse", "-c", "help.browser", path, NULL);
}
#endif
static void show_html_page(const char *git_cmd)
{
const char *page = cmd_to_page(git_cmd);
struct strbuf page_path; /* it leaks but we exec bellow */
get_html_page_path(&page_path, page);
open_html(page_path.buf);
}
int cmd_help(int argc, const char **argv, const char *prefix)
{
int nongit;
const char *alias;
load_command_list("git-", &main_cmds, &other_cmds);
setup_git_directory_gently(&nongit);
git_config(git_help_config, NULL);
argc = parse_options(argc, argv, builtin_help_options,
builtin_help_usage, 0);
if (show_all) {
printf("usage: %s\n\n", git_usage_string);
list_commands("git commands", &main_cmds, &other_cmds);
printf("%s\n", git_more_info_string);
return 0;
}
if (!argv[0]) {
printf("usage: %s\n\n", git_usage_string);
list_common_cmds_help();
printf("\n%s\n", git_more_info_string);
return 0;
}
alias = alias_lookup(argv[0]);
if (alias && !is_git_command(argv[0])) {
printf("`git %s' is aliased to `%s'\n", argv[0], alias);
return 0;
}
switch (help_format) {
case HELP_FORMAT_MAN:
show_man_page(argv[0]);
break;
case HELP_FORMAT_INFO:
show_info_page(argv[0]);
break;
case HELP_FORMAT_WEB:
show_html_page(argv[0]);
break;
}
return 0;
}