зеркало из https://github.com/microsoft/git.git
Rework strbuf API and semantics.
The gory details are explained in strbuf.h. The change of semantics this patch enforces is that the embeded buffer has always a '\0' character after its last byte, to always make it a C-string. The offs-by-one changes are all related to that very change. A strbuf can be used to store byte arrays, or as an extended string library. The `buf' member can be passed to any C legacy string function, because strbuf operations always ensure there is a terminating \0 at the end of the buffer, not accounted in the `len' field of the structure. A strbuf can be used to generate a string/buffer whose final size is not really known, and then "strbuf_detach" can be used to get the built buffer, and keep the wrapping "strbuf" structure usable for further work again. Other interesting feature: strbuf_grow(sb, size) ensure that there is enough allocated space in `sb' to put `size' new octets of data in the buffer. It helps avoiding reallocating data for nothing when the problem the strbuf helps to solve has a known typical size. Signed-off-by: Pierre Habouzit <madcoder@debian.org> Signed-off-by: Junio C Hamano <gitster@pobox.com>
This commit is contained in:
Родитель
b5ef6ac978
Коммит
b449f4cfc9
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@ -166,7 +166,7 @@ static void write_entry(const unsigned char *sha1, struct strbuf *path,
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sprintf(header.name, "%s.paxheader", sha1_to_hex(sha1));
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} else {
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if (verbose)
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fprintf(stderr, "%.*s\n", path->len, path->buf);
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fprintf(stderr, "%.*s\n", (int)path->len, path->buf);
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if (S_ISDIR(mode) || S_ISGITLINK(mode)) {
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*header.typeflag = TYPEFLAG_DIR;
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mode = (mode | 0777) & ~tar_umask;
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@ -1595,7 +1595,7 @@ static void read_next_command(void)
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} else {
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struct recent_command *rc;
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command_buf.buf = NULL;
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strbuf_detach(&command_buf);
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read_line(&command_buf, stdin, '\n');
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if (command_buf.eof)
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return;
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@ -1649,7 +1649,6 @@ static void *cmd_data (size_t *size)
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size_t sz = 8192, term_len = command_buf.len - 5 - 2;
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length = 0;
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buffer = xmalloc(sz);
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command_buf.buf = NULL;
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for (;;) {
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read_line(&command_buf, stdin, '\n');
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if (command_buf.eof)
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@ -1657,11 +1656,11 @@ static void *cmd_data (size_t *size)
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if (term_len == command_buf.len
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&& !strcmp(term, command_buf.buf))
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break;
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ALLOC_GROW(buffer, length + command_buf.len, sz);
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ALLOC_GROW(buffer, length + command_buf.len + 1, sz);
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memcpy(buffer + length,
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command_buf.buf,
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command_buf.len - 1);
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length += command_buf.len - 1;
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command_buf.len);
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length += command_buf.len;
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buffer[length++] = '\n';
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}
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free(term);
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@ -2101,7 +2100,7 @@ static void cmd_new_commit(void)
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}
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/* file_change* */
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while (!command_buf.eof && command_buf.len > 1) {
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while (!command_buf.eof && command_buf.len > 0) {
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if (!prefixcmp(command_buf.buf, "M "))
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file_change_m(b);
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else if (!prefixcmp(command_buf.buf, "D "))
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@ -2256,7 +2255,7 @@ static void cmd_reset_branch(void)
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else
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b = new_branch(sp);
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read_next_command();
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if (!cmd_from(b) && command_buf.len > 1)
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if (!cmd_from(b) && command_buf.len > 0)
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unread_command_buf = 1;
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}
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@ -2273,7 +2272,7 @@ static void cmd_checkpoint(void)
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static void cmd_progress(void)
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{
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fwrite(command_buf.buf, 1, command_buf.len - 1, stdout);
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fwrite(command_buf.buf, 1, command_buf.len, stdout);
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fputc('\n', stdout);
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fflush(stdout);
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skip_optional_lf();
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4
mktree.c
4
mktree.c
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@ -92,7 +92,6 @@ int main(int ac, char **av)
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strbuf_init(&sb);
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while (1) {
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int len;
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char *ptr, *ntr;
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unsigned mode;
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enum object_type type;
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@ -101,7 +100,6 @@ int main(int ac, char **av)
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read_line(&sb, stdin, line_termination);
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if (sb.eof)
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break;
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len = sb.len;
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ptr = sb.buf;
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/* Input is non-recursive ls-tree output format
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* mode SP type SP sha1 TAB name
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@ -111,7 +109,7 @@ int main(int ac, char **av)
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die("input format error: %s", sb.buf);
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ptr = ntr + 1; /* type */
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ntr = strchr(ptr, ' ');
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if (!ntr || sb.buf + len <= ntr + 41 ||
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if (!ntr || sb.buf + sb.len <= ntr + 40 ||
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ntr[41] != '\t' ||
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get_sha1_hex(ntr + 1, sha1))
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die("input format error: %s", sb.buf);
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101
strbuf.c
101
strbuf.c
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@ -2,40 +2,113 @@
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#include "strbuf.h"
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void strbuf_init(struct strbuf *sb) {
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sb->buf = NULL;
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sb->eof = sb->alloc = sb->len = 0;
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memset(sb, 0, sizeof(*sb));
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}
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static void strbuf_begin(struct strbuf *sb) {
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void strbuf_release(struct strbuf *sb) {
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free(sb->buf);
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memset(sb, 0, sizeof(*sb));
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}
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void strbuf_reset(struct strbuf *sb) {
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if (sb->len)
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strbuf_setlen(sb, 0);
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sb->eof = 0;
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}
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char *strbuf_detach(struct strbuf *sb) {
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char *res = sb->buf;
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strbuf_init(sb);
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return res;
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}
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static void inline strbuf_add(struct strbuf *sb, int ch) {
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if (sb->alloc <= sb->len) {
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sb->alloc = sb->alloc * 3 / 2 + 16;
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sb->buf = xrealloc(sb->buf, sb->alloc);
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void strbuf_grow(struct strbuf *sb, size_t extra) {
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if (sb->len + extra + 1 <= sb->len)
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die("you want to use way too much memory");
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ALLOC_GROW(sb->buf, sb->len + extra + 1, sb->alloc);
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}
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void strbuf_add(struct strbuf *sb, const void *data, size_t len) {
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strbuf_grow(sb, len);
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memcpy(sb->buf + sb->len, data, len);
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strbuf_setlen(sb, sb->len + len);
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}
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void strbuf_addf(struct strbuf *sb, const char *fmt, ...) {
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int len;
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va_list ap;
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va_start(ap, fmt);
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len = vsnprintf(sb->buf + sb->len, sb->alloc - sb->len, fmt, ap);
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va_end(ap);
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if (len < 0) {
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len = 0;
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}
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sb->buf[sb->len++] = ch;
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if (len >= strbuf_avail(sb)) {
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strbuf_grow(sb, len);
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va_start(ap, fmt);
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len = vsnprintf(sb->buf + sb->len, sb->alloc - sb->len, fmt, ap);
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va_end(ap);
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if (len >= strbuf_avail(sb)) {
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die("this should not happen, your snprintf is broken");
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}
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}
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strbuf_setlen(sb, sb->len + len);
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}
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static void strbuf_end(struct strbuf *sb) {
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strbuf_add(sb, 0);
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size_t strbuf_fread(struct strbuf *sb, size_t size, FILE *f) {
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size_t res;
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strbuf_grow(sb, size);
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res = fread(sb->buf + sb->len, 1, size, f);
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if (res > 0) {
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strbuf_setlen(sb, sb->len + res);
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}
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return res;
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}
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ssize_t strbuf_read(struct strbuf *sb, int fd)
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{
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size_t oldlen = sb->len;
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for (;;) {
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ssize_t cnt;
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strbuf_grow(sb, 8192);
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cnt = xread(fd, sb->buf + sb->len, sb->alloc - sb->len - 1);
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if (cnt < 0) {
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strbuf_setlen(sb, oldlen);
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return -1;
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}
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if (!cnt)
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break;
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sb->len += cnt;
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}
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sb->buf[sb->len] = '\0';
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return sb->len - oldlen;
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}
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void read_line(struct strbuf *sb, FILE *fp, int term) {
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int ch;
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strbuf_begin(sb);
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if (feof(fp)) {
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strbuf_release(sb);
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sb->eof = 1;
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return;
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}
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strbuf_reset(sb);
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while ((ch = fgetc(fp)) != EOF) {
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if (ch == term)
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break;
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strbuf_add(sb, ch);
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strbuf_grow(sb, 1);
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sb->buf[sb->len++] = ch;
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}
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if (ch == EOF && sb->len == 0)
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if (ch == EOF && sb->len == 0) {
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strbuf_release(sb);
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sb->eof = 1;
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strbuf_end(sb);
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}
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strbuf_grow(sb, 1);
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sb->buf[sb->len] = '\0';
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}
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86
strbuf.h
86
strbuf.h
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@ -1,13 +1,95 @@
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#ifndef STRBUF_H
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#define STRBUF_H
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/*
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* Strbuf's can be use in many ways: as a byte array, or to store arbitrary
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* long, overflow safe strings.
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*
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* Strbufs has some invariants that are very important to keep in mind:
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*
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* 1. the ->buf member is always malloc-ed, hence strbuf's can be used to
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* build complex strings/buffers whose final size isn't easily known.
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*
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* It is legal to copy the ->buf pointer away. Though if you want to reuse
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* the strbuf after that, setting ->buf to NULL isn't legal.
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* `strbuf_detach' is the operation that detachs a buffer from its shell
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* while keeping the shell valid wrt its invariants.
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*
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* 2. the ->buf member is a byte array that has at least ->len + 1 bytes
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* allocated. The extra byte is used to store a '\0', allowing the ->buf
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* member to be a valid C-string. Every strbuf function ensure this
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* invariant is preserved.
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*
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* Note that it is OK to "play" with the buffer directly if you work it
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* that way:
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*
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* strbuf_grow(sb, SOME_SIZE);
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* // ... here the memory areay starting at sb->buf, and of length
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* // sb_avail(sb) is all yours, and you are sure that sb_avail(sb) is at
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* // least SOME_SIZE
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* strbuf_setlen(sb, sb->len + SOME_OTHER_SIZE);
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*
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* Of course, SOME_OTHER_SIZE must be smaller or equal to sb_avail(sb).
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*
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* Doing so is safe, though if it has to be done in many places, adding the
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* missing API to the strbuf module is the way to go.
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*
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* XXX: do _not_ assume that the area that is yours is of size ->alloc - 1
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* even if it's true in the current implementation. Alloc is somehow a
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* "private" member that should not be messed with.
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*/
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#include <assert.h>
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struct strbuf {
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int alloc;
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int len;
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size_t alloc;
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size_t len;
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int eof;
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char *buf;
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};
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#define STRBUF_INIT { 0, 0, 0, NULL }
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/*----- strbuf life cycle -----*/
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extern void strbuf_init(struct strbuf *);
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extern void strbuf_release(struct strbuf *);
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extern void strbuf_reset(struct strbuf *);
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extern char *strbuf_detach(struct strbuf *);
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/*----- strbuf size related -----*/
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static inline size_t strbuf_avail(struct strbuf *sb) {
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return sb->alloc ? sb->alloc - sb->len - 1 : 0;
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}
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static inline void strbuf_setlen(struct strbuf *sb, size_t len) {
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assert (len < sb->alloc);
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sb->len = len;
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sb->buf[len] = '\0';
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}
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extern void strbuf_grow(struct strbuf *, size_t);
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/*----- add data in your buffer -----*/
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static inline void strbuf_addch(struct strbuf *sb, int c) {
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strbuf_grow(sb, 1);
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sb->buf[sb->len++] = c;
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sb->buf[sb->len] = '\0';
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}
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extern void strbuf_add(struct strbuf *, const void *, size_t);
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static inline void strbuf_addstr(struct strbuf *sb, const char *s) {
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strbuf_add(sb, s, strlen(s));
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}
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static inline void strbuf_addbuf(struct strbuf *sb, struct strbuf *sb2) {
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strbuf_add(sb, sb2->buf, sb2->len);
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}
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__attribute__((format(printf,2,3)))
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extern void strbuf_addf(struct strbuf *sb, const char *fmt, ...);
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extern size_t strbuf_fread(struct strbuf *, size_t, FILE *);
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/* XXX: if read fails, any partial read is undone */
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extern ssize_t strbuf_read(struct strbuf *, int fd);
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extern void read_line(struct strbuf *, FILE *, int);
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#endif /* STRBUF_H */
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