зеркало из https://github.com/microsoft/git.git
Add 'filter' attribute and external filter driver definition.
The interface is similar to the custom low-level merge drivers. First you configure your filter driver by defining 'filter.<name>.*' variables in the configuration. filter.<name>.clean filter command to run upon checkin filter.<name>.smudge filter command to run upon checkout Then you assign filter attribute to each path, whose name matches the custom filter driver's name. Example: (in .gitattributes) *.c filter=indent (in config) [filter "indent"] clean = indent smudge = cat Signed-off-by: Junio C Hamano <junkio@cox.net>
This commit is contained in:
Родитель
3fed15f568
Коммит
aa4ed402c9
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@ -156,6 +156,45 @@ In the check-out codepath, the blob content is first converted
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with `crlf`, and then `ident`.
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`filter`
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^^^^^^^^
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A `filter` attribute can be set to a string value. This names
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filter driver specified in the configuration.
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A filter driver consists of `clean` command and `smudge`
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command, either of which can be left unspecified. Upon
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checkout, when `smudge` command is specified, the command is fed
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the blob object from its standard input, and its standard output
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is used to update the worktree file. Similarly, `clean` command
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is used to convert the contents of worktree file upon checkin.
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Missing filter driver definition in the config is not an error
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but makes the filter a no-op passthru.
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The content filtering is done to massage the content into a
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shape that is more convenient for the platform, filesystem, and
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the user to use. The keyword here is "more convenient" and not
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"turning something unusable into usable". In other words, it is
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"hanging yourself because we gave you a long rope" if your
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project uses filtering mechanism in such a way that it makes
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your project unusable unless the checkout is done with a
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specific filter in effect.
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Interaction between checkin/checkout attributes
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^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^
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In the check-in codepath, the worktree file is first converted
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with `filter` driver (if specified and corresponding driver
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defined), then the result is processed with `ident` (if
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specified), and then finally with `crlf` (again, if specified
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and applicable).
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In the check-out codepath, the blob content is first converted
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with `crlf`, and then `ident` and fed to `filter`.
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Generating diff text
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~~~~~~~~~~~~~~~~~~~~
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237
convert.c
237
convert.c
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@ -201,17 +201,212 @@ static char *crlf_to_worktree(const char *path, const char *src, unsigned long *
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return buffer;
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}
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static int filter_buffer(const char *path, const char *src,
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unsigned long size, const char *cmd)
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{
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/*
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* Spawn cmd and feed the buffer contents through its stdin.
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*/
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struct child_process child_process;
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int pipe_feed[2];
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int write_err, status;
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memset(&child_process, 0, sizeof(child_process));
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if (pipe(pipe_feed) < 0) {
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error("cannot create pipe to run external filter %s", cmd);
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return 1;
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}
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child_process.pid = fork();
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if (child_process.pid < 0) {
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error("cannot fork to run external filter %s", cmd);
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close(pipe_feed[0]);
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close(pipe_feed[1]);
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return 1;
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}
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if (!child_process.pid) {
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dup2(pipe_feed[0], 0);
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close(pipe_feed[0]);
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close(pipe_feed[1]);
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execlp("sh", "sh", "-c", cmd, NULL);
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return 1;
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}
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close(pipe_feed[0]);
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write_err = (write_in_full(pipe_feed[1], src, size) < 0);
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if (close(pipe_feed[1]))
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write_err = 1;
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if (write_err)
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error("cannot feed the input to external filter %s", cmd);
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status = finish_command(&child_process);
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if (status)
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error("external filter %s failed %d", cmd, -status);
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return (write_err || status);
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}
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static char *apply_filter(const char *path, const char *src,
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unsigned long *sizep, const char *cmd)
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{
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/*
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* Create a pipeline to have the command filter the buffer's
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* contents.
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*
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* (child --> cmd) --> us
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*/
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const int SLOP = 4096;
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int pipe_feed[2];
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int status;
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char *dst;
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unsigned long dstsize, dstalloc;
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struct child_process child_process;
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if (!cmd)
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return NULL;
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memset(&child_process, 0, sizeof(child_process));
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if (pipe(pipe_feed) < 0) {
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error("cannot create pipe to run external filter %s", cmd);
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return NULL;
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}
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fflush(NULL);
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child_process.pid = fork();
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if (child_process.pid < 0) {
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error("cannot fork to run external filter %s", cmd);
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close(pipe_feed[0]);
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close(pipe_feed[1]);
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return NULL;
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}
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if (!child_process.pid) {
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dup2(pipe_feed[1], 1);
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close(pipe_feed[0]);
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close(pipe_feed[1]);
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exit(filter_buffer(path, src, *sizep, cmd));
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}
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close(pipe_feed[1]);
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dstalloc = *sizep;
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dst = xmalloc(dstalloc);
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dstsize = 0;
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while (1) {
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ssize_t numread = xread(pipe_feed[0], dst + dstsize,
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dstalloc - dstsize);
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if (numread <= 0) {
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if (!numread)
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break;
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error("read from external filter %s failed", cmd);
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free(dst);
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dst = NULL;
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break;
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}
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dstsize += numread;
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if (dstalloc <= dstsize + SLOP) {
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dstalloc = dstsize + SLOP;
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dst = xrealloc(dst, dstalloc);
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}
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}
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if (close(pipe_feed[0])) {
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error("read from external filter %s failed", cmd);
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free(dst);
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dst = NULL;
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}
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status = finish_command(&child_process);
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if (status) {
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error("external filter %s failed %d", cmd, -status);
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free(dst);
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dst = NULL;
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}
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if (dst)
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*sizep = dstsize;
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return dst;
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}
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static struct convert_driver {
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const char *name;
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struct convert_driver *next;
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char *smudge;
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char *clean;
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} *user_convert, **user_convert_tail;
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static int read_convert_config(const char *var, const char *value)
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{
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const char *ep, *name;
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int namelen;
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struct convert_driver *drv;
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/*
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* External conversion drivers are configured using
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* "filter.<name>.variable".
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*/
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if (prefixcmp(var, "filter.") || (ep = strrchr(var, '.')) == var + 6)
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return 0;
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name = var + 7;
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namelen = ep - name;
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for (drv = user_convert; drv; drv = drv->next)
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if (!strncmp(drv->name, name, namelen) && !drv->name[namelen])
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break;
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if (!drv) {
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char *namebuf;
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drv = xcalloc(1, sizeof(struct convert_driver));
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namebuf = xmalloc(namelen + 1);
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memcpy(namebuf, name, namelen);
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namebuf[namelen] = 0;
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drv->name = namebuf;
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drv->next = NULL;
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*user_convert_tail = drv;
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user_convert_tail = &(drv->next);
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}
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ep++;
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/*
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* filter.<name>.smudge and filter.<name>.clean specifies
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* the command line:
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*
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* command-line
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*
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* The command-line will not be interpolated in any way.
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*/
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if (!strcmp("smudge", ep)) {
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if (!value)
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return error("%s: lacks value", var);
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drv->smudge = strdup(value);
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return 0;
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}
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if (!strcmp("clean", ep)) {
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if (!value)
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return error("%s: lacks value", var);
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drv->clean = strdup(value);
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return 0;
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}
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return 0;
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}
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static void setup_convert_check(struct git_attr_check *check)
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{
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static struct git_attr *attr_crlf;
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static struct git_attr *attr_ident;
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static struct git_attr *attr_filter;
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if (!attr_crlf) {
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attr_crlf = git_attr("crlf", 4);
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attr_ident = git_attr("ident", 5);
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attr_filter = git_attr("filter", 6);
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user_convert_tail = &user_convert;
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git_config(read_convert_config);
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}
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check[0].attr = attr_crlf;
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check[1].attr = attr_ident;
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check[2].attr = attr_filter;
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}
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static int count_ident(const char *cp, unsigned long size)
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@ -367,6 +562,20 @@ static int git_path_check_crlf(const char *path, struct git_attr_check *check)
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return CRLF_GUESS;
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}
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static struct convert_driver *git_path_check_convert(const char *path,
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struct git_attr_check *check)
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{
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const char *value = check->value;
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struct convert_driver *drv;
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if (ATTR_TRUE(value) || ATTR_FALSE(value) || ATTR_UNSET(value))
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return NULL;
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for (drv = user_convert; drv; drv = drv->next)
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if (!strcmp(value, drv->name))
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return drv;
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return NULL;
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}
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static int git_path_check_ident(const char *path, struct git_attr_check *check)
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{
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const char *value = check->value;
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@ -376,18 +585,29 @@ static int git_path_check_ident(const char *path, struct git_attr_check *check)
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char *convert_to_git(const char *path, const char *src, unsigned long *sizep)
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{
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struct git_attr_check check[2];
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struct git_attr_check check[3];
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int crlf = CRLF_GUESS;
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int ident = 0;
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char *filter = NULL;
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char *buf, *buf2;
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setup_convert_check(check);
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if (!git_checkattr(path, ARRAY_SIZE(check), check)) {
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struct convert_driver *drv;
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crlf = git_path_check_crlf(path, check + 0);
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ident = git_path_check_ident(path, check + 1);
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drv = git_path_check_convert(path, check + 2);
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if (drv && drv->clean)
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filter = drv->clean;
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}
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buf = crlf_to_git(path, src, sizep, crlf);
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buf = apply_filter(path, src, sizep, filter);
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buf2 = crlf_to_git(path, buf ? buf : src, sizep, crlf);
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if (buf2) {
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free(buf);
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buf = buf2;
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}
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buf2 = ident_to_git(path, buf ? buf : src, sizep, ident);
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if (buf2) {
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@ -400,15 +620,20 @@ char *convert_to_git(const char *path, const char *src, unsigned long *sizep)
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char *convert_to_working_tree(const char *path, const char *src, unsigned long *sizep)
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{
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struct git_attr_check check[2];
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struct git_attr_check check[3];
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int crlf = CRLF_GUESS;
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int ident = 0;
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char *filter = NULL;
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char *buf, *buf2;
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setup_convert_check(check);
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if (!git_checkattr(path, ARRAY_SIZE(check), check)) {
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struct convert_driver *drv;
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crlf = git_path_check_crlf(path, check + 0);
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ident = git_path_check_ident(path, check + 1);
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drv = git_path_check_convert(path, check + 2);
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if (drv && drv->smudge)
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filter = drv->smudge;
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}
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buf = ident_to_worktree(path, src, sizep, ident);
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@ -419,5 +644,11 @@ char *convert_to_working_tree(const char *path, const char *src, unsigned long *
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buf = buf2;
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}
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buf2 = apply_filter(path, buf ? buf : src, sizep, filter);
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if (buf2) {
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free(buf);
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buf = buf2;
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}
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return buf;
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}
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@ -4,8 +4,17 @@ test_description='blob conversion via gitattributes'
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. ./test-lib.sh
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cat <<\EOF >rot13.sh
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tr '[a-zA-Z]' '[n-za-mN-ZA-M]'
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EOF
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chmod +x rot13.sh
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test_expect_success setup '
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git config filter.rot13.smudge ./rot13.sh &&
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git config filter.rot13.clean ./rot13.sh &&
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{
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echo "*.t filter=rot13"
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echo "*.i ident"
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} >.gitattributes &&
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