mirror of
https://github.com/tnodir/fort
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Update SQLite v3.23.0
This commit is contained in:
parent
3e54261f58
commit
ac6d1ff403
3892
src/3rdparty/sqlite/sqlite3.c
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3892
src/3rdparty/sqlite/sqlite3.c
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File diff suppressed because it is too large
Load Diff
506
src/3rdparty/sqlite/sqlite3.h
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src/3rdparty/sqlite/sqlite3.h
vendored
@ -123,9 +123,9 @@ extern "C" {
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** [sqlite3_libversion_number()], [sqlite3_sourceid()],
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** [sqlite_version()] and [sqlite_source_id()].
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*/
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#define SQLITE_VERSION "3.22.0"
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#define SQLITE_VERSION_NUMBER 3022000
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#define SQLITE_SOURCE_ID "2018-01-22 18:45:57 0c55d179733b46d8d0ba4d88e01a25e10677046ee3da1d5b1581e86726f2171d"
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#define SQLITE_VERSION "3.23.0"
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#define SQLITE_VERSION_NUMBER 3023000
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#define SQLITE_SOURCE_ID "2018-04-02 11:04:16 736b53f57f70b23172c30880186dce7ad9baa3b74e3838cae5847cffb98f5cd2"
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/*
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** CAPI3REF: Run-Time Library Version Numbers
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@ -1064,6 +1064,12 @@ struct sqlite3_io_methods {
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** so that all subsequent write operations are independent.
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** ^SQLite will never invoke SQLITE_FCNTL_ROLLBACK_ATOMIC_WRITE without
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** a prior successful call to [SQLITE_FCNTL_BEGIN_ATOMIC_WRITE].
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**
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** <li>[[SQLITE_FCNTL_LOCK_TIMEOUT]]
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** The [SQLITE_FCNTL_LOCK_TIMEOUT] opcode causes attempts to obtain
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** a file lock using the xLock or xShmLock methods of the VFS to wait
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** for up to M milliseconds before failing, where M is the single
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** unsigned integer parameter.
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** </ul>
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*/
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#define SQLITE_FCNTL_LOCKSTATE 1
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@ -1098,6 +1104,7 @@ struct sqlite3_io_methods {
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#define SQLITE_FCNTL_BEGIN_ATOMIC_WRITE 31
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#define SQLITE_FCNTL_COMMIT_ATOMIC_WRITE 32
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#define SQLITE_FCNTL_ROLLBACK_ATOMIC_WRITE 33
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#define SQLITE_FCNTL_LOCK_TIMEOUT 34
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/* deprecated names */
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#define SQLITE_GET_LOCKPROXYFILE SQLITE_FCNTL_GET_LOCKPROXYFILE
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@ -2054,11 +2061,13 @@ struct sqlite3_mem_methods {
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** connections at all to the database. If so, it performs a checkpoint
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** operation before closing the connection. This option may be used to
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** override this behaviour. The first parameter passed to this operation
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** is an integer - non-zero to disable checkpoints-on-close, or zero (the
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** default) to enable them. The second parameter is a pointer to an integer
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** is an integer - positive to disable checkpoints-on-close, or zero (the
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** default) to enable them, and negative to leave the setting unchanged.
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** The second parameter is a pointer to an integer
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** into which is written 0 or 1 to indicate whether checkpoints-on-close
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** have been disabled - 0 if they are not disabled, 1 if they are.
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** </dd>
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**
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** <dt>SQLITE_DBCONFIG_ENABLE_QPSG</dt>
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** <dd>^(The SQLITE_DBCONFIG_ENABLE_QPSG option activates or deactivates
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** the [query planner stability guarantee] (QPSG). When the QPSG is active,
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@ -2068,13 +2077,20 @@ struct sqlite3_mem_methods {
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** slower. But the QPSG has the advantage of more predictable behavior. With
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** the QPSG active, SQLite will always use the same query plan in the field as
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** was used during testing in the lab.
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** The first argument to this setting is an integer which is 0 to disable
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** the QPSG, positive to enable QPSG, or negative to leave the setting
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** unchanged. The second parameter is a pointer to an integer into which
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** is written 0 or 1 to indicate whether the QPSG is disabled or enabled
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** following this call.
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** </dd>
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**
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** <dt>SQLITE_DBCONFIG_TRIGGER_EQP</dt>
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** <dd> By default, the output of EXPLAIN QUERY PLAN commands does not
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** include output for any operations performed by trigger programs. This
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** option is used to set or clear (the default) a flag that governs this
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** behavior. The first parameter passed to this operation is an integer -
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** non-zero to enable output for trigger programs, or zero to disable it.
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** positive to enable output for trigger programs, or zero to disable it,
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** or negative to leave the setting unchanged.
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** The second parameter is a pointer to an integer into which is written
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** 0 or 1 to indicate whether output-for-triggers has been disabled - 0 if
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** it is not disabled, 1 if it is.
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@ -2496,16 +2512,16 @@ SQLITE_API void sqlite3_free_table(char **result);
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**
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** These routines are work-alikes of the "printf()" family of functions
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** from the standard C library.
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** These routines understand most of the common K&R formatting options,
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** plus some additional non-standard formats, detailed below.
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** Note that some of the more obscure formatting options from recent
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** C-library standards are omitted from this implementation.
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** These routines understand most of the common formatting options from
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** the standard library printf()
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** plus some additional non-standard formats ([%q], [%Q], [%w], and [%z]).
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** See the [built-in printf()] documentation for details.
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**
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** ^The sqlite3_mprintf() and sqlite3_vmprintf() routines write their
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** results into memory obtained from [sqlite3_malloc()].
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** results into memory obtained from [sqlite3_malloc64()].
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** The strings returned by these two routines should be
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** released by [sqlite3_free()]. ^Both routines return a
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** NULL pointer if [sqlite3_malloc()] is unable to allocate enough
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** NULL pointer if [sqlite3_malloc64()] is unable to allocate enough
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** memory to hold the resulting string.
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**
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** ^(The sqlite3_snprintf() routine is similar to "snprintf()" from
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@ -2529,71 +2545,7 @@ SQLITE_API void sqlite3_free_table(char **result);
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**
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** ^The sqlite3_vsnprintf() routine is a varargs version of sqlite3_snprintf().
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**
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** These routines all implement some additional formatting
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** options that are useful for constructing SQL statements.
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** All of the usual printf() formatting options apply. In addition, there
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** is are "%q", "%Q", "%w" and "%z" options.
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**
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** ^(The %q option works like %s in that it substitutes a nul-terminated
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** string from the argument list. But %q also doubles every '\'' character.
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** %q is designed for use inside a string literal.)^ By doubling each '\''
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** character it escapes that character and allows it to be inserted into
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** the string.
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**
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** For example, assume the string variable zText contains text as follows:
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**
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** <blockquote><pre>
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** char *zText = "It's a happy day!";
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** </pre></blockquote>
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**
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** One can use this text in an SQL statement as follows:
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**
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** <blockquote><pre>
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** char *zSQL = sqlite3_mprintf("INSERT INTO table VALUES('%q')", zText);
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** sqlite3_exec(db, zSQL, 0, 0, 0);
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** sqlite3_free(zSQL);
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** </pre></blockquote>
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**
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** Because the %q format string is used, the '\'' character in zText
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** is escaped and the SQL generated is as follows:
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**
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** <blockquote><pre>
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** INSERT INTO table1 VALUES('It''s a happy day!')
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** </pre></blockquote>
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**
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** This is correct. Had we used %s instead of %q, the generated SQL
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** would have looked like this:
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**
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** <blockquote><pre>
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** INSERT INTO table1 VALUES('It's a happy day!');
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** </pre></blockquote>
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**
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** This second example is an SQL syntax error. As a general rule you should
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** always use %q instead of %s when inserting text into a string literal.
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**
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** ^(The %Q option works like %q except it also adds single quotes around
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** the outside of the total string. Additionally, if the parameter in the
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** argument list is a NULL pointer, %Q substitutes the text "NULL" (without
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** single quotes).)^ So, for example, one could say:
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**
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** <blockquote><pre>
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** char *zSQL = sqlite3_mprintf("INSERT INTO table VALUES(%Q)", zText);
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** sqlite3_exec(db, zSQL, 0, 0, 0);
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** sqlite3_free(zSQL);
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** </pre></blockquote>
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**
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** The code above will render a correct SQL statement in the zSQL
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** variable even if the zText variable is a NULL pointer.
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**
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** ^(The "%w" formatting option is like "%q" except that it expects to
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** be contained within double-quotes instead of single quotes, and it
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** escapes the double-quote character instead of the single-quote
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** character.)^ The "%w" formatting option is intended for safely inserting
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** table and column names into a constructed SQL statement.
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**
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** ^(The "%z" formatting option works like "%s" but with the
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** addition that after the string has been read and copied into
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** the result, [sqlite3_free()] is called on the input string.)^
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** See also: [built-in printf()], [printf() SQL function]
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*/
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SQLITE_API char *sqlite3_mprintf(const char*,...);
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SQLITE_API char *sqlite3_vmprintf(const char*, va_list);
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@ -3659,13 +3611,13 @@ SQLITE_API int sqlite3_limit(sqlite3*, int id, int newVal);
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** or [GLOB] operator or if the parameter is compared to an indexed column
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** and the [SQLITE_ENABLE_STAT3] compile-time option is enabled.
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** </li>
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** </ol>
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**
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** <p>^sqlite3_prepare_v3() differs from sqlite3_prepare_v2() only in having
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** the extra prepFlags parameter, which is a bit array consisting of zero or
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** more of the [SQLITE_PREPARE_PERSISTENT|SQLITE_PREPARE_*] flags. ^The
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** sqlite3_prepare_v2() interface works exactly the same as
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** sqlite3_prepare_v3() with a zero prepFlags parameter.
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** </ol>
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*/
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SQLITE_API int sqlite3_prepare(
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sqlite3 *db, /* Database handle */
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@ -7294,6 +7246,15 @@ SQLITE_API int sqlite3_db_status(sqlite3*, int op, int *pCur, int *pHiwtr, int r
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** highwater mark associated with SQLITE_DBSTATUS_CACHE_WRITE is always 0.
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** </dd>
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**
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** [[SQLITE_DBSTATUS_CACHE_SPILL]] ^(<dt>SQLITE_DBSTATUS_CACHE_SPILL</dt>
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** <dd>This parameter returns the number of dirty cache entries that have
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** been written to disk in the middle of a transaction due to the page
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** cache overflowing. Transactions are more efficient if they are written
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** to disk all at once. When pages spill mid-transaction, that introduces
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** additional overhead. This parameter can be used help identify
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** inefficiencies that can be resolve by increasing the cache size.
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** </dd>
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**
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** [[SQLITE_DBSTATUS_DEFERRED_FKS]] ^(<dt>SQLITE_DBSTATUS_DEFERRED_FKS</dt>
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** <dd>This parameter returns zero for the current value if and only if
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** all foreign key constraints (deferred or immediate) have been
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@ -7313,7 +7274,8 @@ SQLITE_API int sqlite3_db_status(sqlite3*, int op, int *pCur, int *pHiwtr, int r
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#define SQLITE_DBSTATUS_CACHE_WRITE 9
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#define SQLITE_DBSTATUS_DEFERRED_FKS 10
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#define SQLITE_DBSTATUS_CACHE_USED_SHARED 11
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#define SQLITE_DBSTATUS_MAX 11 /* Largest defined DBSTATUS */
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#define SQLITE_DBSTATUS_CACHE_SPILL 12
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#define SQLITE_DBSTATUS_MAX 12 /* Largest defined DBSTATUS */
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/*
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@ -8793,6 +8755,128 @@ SQLITE_API SQLITE_EXPERIMENTAL int sqlite3_snapshot_cmp(
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*/
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SQLITE_API SQLITE_EXPERIMENTAL int sqlite3_snapshot_recover(sqlite3 *db, const char *zDb);
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/*
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** CAPI3REF: Serialize a database
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**
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** The sqlite3_serialize(D,S,P,F) interface returns a pointer to memory
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** that is a serialization of the S database on [database connection] D.
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** If P is not a NULL pointer, then the size of the database in bytes
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** is written into *P.
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**
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** For an ordinary on-disk database file, the serialization is just a
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** copy of the disk file. For an in-memory database or a "TEMP" database,
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** the serialization is the same sequence of bytes which would be written
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** to disk if that database where backed up to disk.
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**
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** The usual case is that sqlite3_serialize() copies the serialization of
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** the database into memory obtained from [sqlite3_malloc64()] and returns
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** a pointer to that memory. The caller is responsible for freeing the
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** returned value to avoid a memory leak. However, if the F argument
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** contains the SQLITE_SERIALIZE_NOCOPY bit, then no memory allocations
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** are made, and the sqlite3_serialize() function will return a pointer
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** to the contiguous memory representation of the database that SQLite
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** is currently using for that database, or NULL if the no such contiguous
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** memory representation of the database exists. A contiguous memory
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** representation of the database will usually only exist if there has
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** been a prior call to [sqlite3_deserialize(D,S,...)] with the same
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** values of D and S.
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** The size of the database is written into *P even if the
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** SQLITE_SERIALIZE_NOCOPY bit is set but no contigious copy
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** of the database exists.
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**
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** A call to sqlite3_serialize(D,S,P,F) might return NULL even if the
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** SQLITE_SERIALIZE_NOCOPY bit is omitted from argument F if a memory
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** allocation error occurs.
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**
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** This interface is only available if SQLite is compiled with the
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** [SQLITE_ENABLE_DESERIALIZE] option.
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*/
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SQLITE_API unsigned char *sqlite3_serialize(
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sqlite3 *db, /* The database connection */
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const char *zSchema, /* Which DB to serialize. ex: "main", "temp", ... */
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sqlite3_int64 *piSize, /* Write size of the DB here, if not NULL */
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unsigned int mFlags /* Zero or more SQLITE_SERIALIZE_* flags */
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);
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/*
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** CAPI3REF: Flags for sqlite3_serialize
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**
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** Zero or more of the following constants can be OR-ed together for
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** the F argument to [sqlite3_serialize(D,S,P,F)].
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**
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** SQLITE_SERIALIZE_NOCOPY means that [sqlite3_serialize()] will return
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** a pointer to contiguous in-memory database that it is currently using,
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** without making a copy of the database. If SQLite is not currently using
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** a contiguous in-memory database, then this option causes
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** [sqlite3_serialize()] to return a NULL pointer. SQLite will only be
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** using a contiguous in-memory database if it has been initialized by a
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** prior call to [sqlite3_deserialize()].
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*/
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#define SQLITE_SERIALIZE_NOCOPY 0x001 /* Do no memory allocations */
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/*
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** CAPI3REF: Deserialize a database
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**
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** The sqlite3_deserialize(D,S,P,N,M,F) interface causes the
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** [database connection] D to disconnect from database S and then
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** reopen S as an in-memory database based on the serialization contained
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** in P. The serialized database P is N bytes in size. M is the size of
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** the buffer P, which might be larger than N. If M is larger than N, and
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** the SQLITE_DESERIALIZE_READONLY bit is not set in F, then SQLite is
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** permitted to add content to the in-memory database as long as the total
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** size does not exceed M bytes.
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**
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** If the SQLITE_DESERIALIZE_FREEONCLOSE bit is set in F, then SQLite will
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** invoke sqlite3_free() on the serialization buffer when the database
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** connection closes. If the SQLITE_DESERIALIZE_RESIZEABLE bit is set, then
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** SQLite will try to increase the buffer size using sqlite3_realloc64()
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** if writes on the database cause it to grow larger than M bytes.
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**
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** The sqlite3_deserialize() interface will fail with SQLITE_BUSY if the
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** database is currently in a read transaction or is involved in a backup
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** operation.
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**
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** If sqlite3_deserialize(D,S,P,N,M,F) fails for any reason and if the
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** SQLITE_DESERIALIZE_FREEONCLOSE bit is set in argument F, then
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** [sqlite3_free()] is invoked on argument P prior to returning.
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**
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** This interface is only available if SQLite is compiled with the
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** [SQLITE_ENABLE_DESERIALIZE] option.
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*/
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SQLITE_API int sqlite3_deserialize(
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sqlite3 *db, /* The database connection */
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const char *zSchema, /* Which DB to reopen with the deserialization */
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unsigned char *pData, /* The serialized database content */
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sqlite3_int64 szDb, /* Number bytes in the deserialization */
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sqlite3_int64 szBuf, /* Total size of buffer pData[] */
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unsigned mFlags /* Zero or more SQLITE_DESERIALIZE_* flags */
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);
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/*
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** CAPI3REF: Flags for sqlite3_deserialize()
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**
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** The following are allowed values for 6th argument (the F argument) to
|
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** the [sqlite3_deserialize(D,S,P,N,M,F)] interface.
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**
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** The SQLITE_DESERIALIZE_FREEONCLOSE means that the database serialization
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** in the P argument is held in memory obtained from [sqlite3_malloc64()]
|
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** and that SQLite should take ownership of this memory and automatically
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** free it when it has finished using it. Without this flag, the caller
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** is resposible for freeing any dynamically allocated memory.
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||||
**
|
||||
** The SQLITE_DESERIALIZE_RESIZEABLE flag means that SQLite is allowed to
|
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** grow the size of the database using calls to [sqlite3_realloc64()]. This
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** flag should only be used if SQLITE_DESERIALIZE_FREEONCLOSE is also used.
|
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** Without this flag, the deserialized database cannot increase in size beyond
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** the number of bytes specified by the M parameter.
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**
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||||
** The SQLITE_DESERIALIZE_READONLY flag means that the deserialized database
|
||||
** should be treated as read-only.
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*/
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#define SQLITE_DESERIALIZE_FREEONCLOSE 1 /* Call sqlite3_free() on close */
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#define SQLITE_DESERIALIZE_RESIZEABLE 2 /* Resize using sqlite3_realloc64() */
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#define SQLITE_DESERIALIZE_READONLY 4 /* Database is read-only */
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/*
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** Undo the hack that converts floating point types to integer for
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** builds on processors without floating point support.
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@ -8940,16 +9024,23 @@ extern "C" {
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||||
/*
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||||
** CAPI3REF: Session Object Handle
|
||||
**
|
||||
** An instance of this object is a [session] that can be used to
|
||||
** record changes to a database.
|
||||
*/
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||||
typedef struct sqlite3_session sqlite3_session;
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||||
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||||
/*
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||||
** CAPI3REF: Changeset Iterator Handle
|
||||
**
|
||||
** An instance of this object acts as a cursor for iterating
|
||||
** over the elements of a [changeset] or [patchset].
|
||||
*/
|
||||
typedef struct sqlite3_changeset_iter sqlite3_changeset_iter;
|
||||
|
||||
/*
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||||
** CAPI3REF: Create A New Session Object
|
||||
** CONSTRUCTOR: sqlite3_session
|
||||
**
|
||||
** Create a new session object attached to database handle db. If successful,
|
||||
** a pointer to the new object is written to *ppSession and SQLITE_OK is
|
||||
@ -8986,6 +9077,7 @@ SQLITE_API int sqlite3session_create(
|
||||
|
||||
/*
|
||||
** CAPI3REF: Delete A Session Object
|
||||
** DESTRUCTOR: sqlite3_session
|
||||
**
|
||||
** Delete a session object previously allocated using
|
||||
** [sqlite3session_create()]. Once a session object has been deleted, the
|
||||
@ -9001,6 +9093,7 @@ SQLITE_API void sqlite3session_delete(sqlite3_session *pSession);
|
||||
|
||||
/*
|
||||
** CAPI3REF: Enable Or Disable A Session Object
|
||||
** METHOD: sqlite3_session
|
||||
**
|
||||
** Enable or disable the recording of changes by a session object. When
|
||||
** enabled, a session object records changes made to the database. When
|
||||
@ -9020,6 +9113,7 @@ SQLITE_API int sqlite3session_enable(sqlite3_session *pSession, int bEnable);
|
||||
|
||||
/*
|
||||
** CAPI3REF: Set Or Clear the Indirect Change Flag
|
||||
** METHOD: sqlite3_session
|
||||
**
|
||||
** Each change recorded by a session object is marked as either direct or
|
||||
** indirect. A change is marked as indirect if either:
|
||||
@ -9049,6 +9143,7 @@ SQLITE_API int sqlite3session_indirect(sqlite3_session *pSession, int bIndirect)
|
||||
|
||||
/*
|
||||
** CAPI3REF: Attach A Table To A Session Object
|
||||
** METHOD: sqlite3_session
|
||||
**
|
||||
** If argument zTab is not NULL, then it is the name of a table to attach
|
||||
** to the session object passed as the first argument. All subsequent changes
|
||||
@ -9111,6 +9206,7 @@ SQLITE_API int sqlite3session_attach(
|
||||
|
||||
/*
|
||||
** CAPI3REF: Set a table filter on a Session Object.
|
||||
** METHOD: sqlite3_session
|
||||
**
|
||||
** The second argument (xFilter) is the "filter callback". For changes to rows
|
||||
** in tables that are not attached to the Session object, the filter is called
|
||||
@ -9129,6 +9225,7 @@ SQLITE_API void sqlite3session_table_filter(
|
||||
|
||||
/*
|
||||
** CAPI3REF: Generate A Changeset From A Session Object
|
||||
** METHOD: sqlite3_session
|
||||
**
|
||||
** Obtain a changeset containing changes to the tables attached to the
|
||||
** session object passed as the first argument. If successful,
|
||||
@ -9238,7 +9335,8 @@ SQLITE_API int sqlite3session_changeset(
|
||||
);
|
||||
|
||||
/*
|
||||
** CAPI3REF: Load The Difference Between Tables Into A Session
|
||||
** CAPI3REF: Load The Difference Between Tables Into A Session
|
||||
** METHOD: sqlite3_session
|
||||
**
|
||||
** If it is not already attached to the session object passed as the first
|
||||
** argument, this function attaches table zTbl in the same manner as the
|
||||
@ -9303,6 +9401,7 @@ SQLITE_API int sqlite3session_diff(
|
||||
|
||||
/*
|
||||
** CAPI3REF: Generate A Patchset From A Session Object
|
||||
** METHOD: sqlite3_session
|
||||
**
|
||||
** The differences between a patchset and a changeset are that:
|
||||
**
|
||||
@ -9354,6 +9453,7 @@ SQLITE_API int sqlite3session_isempty(sqlite3_session *pSession);
|
||||
|
||||
/*
|
||||
** CAPI3REF: Create An Iterator To Traverse A Changeset
|
||||
** CONSTRUCTOR: sqlite3_changeset_iter
|
||||
**
|
||||
** Create an iterator used to iterate through the contents of a changeset.
|
||||
** If successful, *pp is set to point to the iterator handle and SQLITE_OK
|
||||
@ -9394,6 +9494,7 @@ SQLITE_API int sqlite3changeset_start(
|
||||
|
||||
/*
|
||||
** CAPI3REF: Advance A Changeset Iterator
|
||||
** METHOD: sqlite3_changeset_iter
|
||||
**
|
||||
** This function may only be used with iterators created by function
|
||||
** [sqlite3changeset_start()]. If it is called on an iterator passed to
|
||||
@ -9418,6 +9519,7 @@ SQLITE_API int sqlite3changeset_next(sqlite3_changeset_iter *pIter);
|
||||
|
||||
/*
|
||||
** CAPI3REF: Obtain The Current Operation From A Changeset Iterator
|
||||
** METHOD: sqlite3_changeset_iter
|
||||
**
|
||||
** The pIter argument passed to this function may either be an iterator
|
||||
** passed to a conflict-handler by [sqlite3changeset_apply()], or an iterator
|
||||
@ -9452,6 +9554,7 @@ SQLITE_API int sqlite3changeset_op(
|
||||
|
||||
/*
|
||||
** CAPI3REF: Obtain The Primary Key Definition Of A Table
|
||||
** METHOD: sqlite3_changeset_iter
|
||||
**
|
||||
** For each modified table, a changeset includes the following:
|
||||
**
|
||||
@ -9483,6 +9586,7 @@ SQLITE_API int sqlite3changeset_pk(
|
||||
|
||||
/*
|
||||
** CAPI3REF: Obtain old.* Values From A Changeset Iterator
|
||||
** METHOD: sqlite3_changeset_iter
|
||||
**
|
||||
** The pIter argument passed to this function may either be an iterator
|
||||
** passed to a conflict-handler by [sqlite3changeset_apply()], or an iterator
|
||||
@ -9513,6 +9617,7 @@ SQLITE_API int sqlite3changeset_old(
|
||||
|
||||
/*
|
||||
** CAPI3REF: Obtain new.* Values From A Changeset Iterator
|
||||
** METHOD: sqlite3_changeset_iter
|
||||
**
|
||||
** The pIter argument passed to this function may either be an iterator
|
||||
** passed to a conflict-handler by [sqlite3changeset_apply()], or an iterator
|
||||
@ -9546,6 +9651,7 @@ SQLITE_API int sqlite3changeset_new(
|
||||
|
||||
/*
|
||||
** CAPI3REF: Obtain Conflicting Row Values From A Changeset Iterator
|
||||
** METHOD: sqlite3_changeset_iter
|
||||
**
|
||||
** This function should only be used with iterator objects passed to a
|
||||
** conflict-handler callback by [sqlite3changeset_apply()] with either
|
||||
@ -9573,6 +9679,7 @@ SQLITE_API int sqlite3changeset_conflict(
|
||||
|
||||
/*
|
||||
** CAPI3REF: Determine The Number Of Foreign Key Constraint Violations
|
||||
** METHOD: sqlite3_changeset_iter
|
||||
**
|
||||
** This function may only be called with an iterator passed to an
|
||||
** SQLITE_CHANGESET_FOREIGN_KEY conflict handler callback. In this case
|
||||
@ -9589,6 +9696,7 @@ SQLITE_API int sqlite3changeset_fk_conflicts(
|
||||
|
||||
/*
|
||||
** CAPI3REF: Finalize A Changeset Iterator
|
||||
** METHOD: sqlite3_changeset_iter
|
||||
**
|
||||
** This function is used to finalize an iterator allocated with
|
||||
** [sqlite3changeset_start()].
|
||||
@ -9605,6 +9713,7 @@ SQLITE_API int sqlite3changeset_fk_conflicts(
|
||||
** to that error is returned by this function. Otherwise, SQLITE_OK is
|
||||
** returned. This is to allow the following pattern (pseudo-code):
|
||||
**
|
||||
** <pre>
|
||||
** sqlite3changeset_start();
|
||||
** while( SQLITE_ROW==sqlite3changeset_next() ){
|
||||
** // Do something with change.
|
||||
@ -9613,6 +9722,7 @@ SQLITE_API int sqlite3changeset_fk_conflicts(
|
||||
** if( rc!=SQLITE_OK ){
|
||||
** // An error has occurred
|
||||
** }
|
||||
** </pre>
|
||||
*/
|
||||
SQLITE_API int sqlite3changeset_finalize(sqlite3_changeset_iter *pIter);
|
||||
|
||||
@ -9660,6 +9770,7 @@ SQLITE_API int sqlite3changeset_invert(
|
||||
** sqlite3_changegroup object. Calling it produces similar results as the
|
||||
** following code fragment:
|
||||
**
|
||||
** <pre>
|
||||
** sqlite3_changegroup *pGrp;
|
||||
** rc = sqlite3_changegroup_new(&pGrp);
|
||||
** if( rc==SQLITE_OK ) rc = sqlite3changegroup_add(pGrp, nA, pA);
|
||||
@ -9670,6 +9781,7 @@ SQLITE_API int sqlite3changeset_invert(
|
||||
** *ppOut = 0;
|
||||
** *pnOut = 0;
|
||||
** }
|
||||
** </pre>
|
||||
**
|
||||
** Refer to the sqlite3_changegroup documentation below for details.
|
||||
*/
|
||||
@ -9685,11 +9797,15 @@ SQLITE_API int sqlite3changeset_concat(
|
||||
|
||||
/*
|
||||
** CAPI3REF: Changegroup Handle
|
||||
**
|
||||
** A changegroup is an object used to combine two or more
|
||||
** [changesets] or [patchsets]
|
||||
*/
|
||||
typedef struct sqlite3_changegroup sqlite3_changegroup;
|
||||
|
||||
/*
|
||||
** CAPI3REF: Create A New Changegroup Object
|
||||
** CONSTRUCTOR: sqlite3_changegroup
|
||||
**
|
||||
** An sqlite3_changegroup object is used to combine two or more changesets
|
||||
** (or patchsets) into a single changeset (or patchset). A single changegroup
|
||||
@ -9727,6 +9843,7 @@ SQLITE_API int sqlite3changegroup_new(sqlite3_changegroup **pp);
|
||||
|
||||
/*
|
||||
** CAPI3REF: Add A Changeset To A Changegroup
|
||||
** METHOD: sqlite3_changegroup
|
||||
**
|
||||
** Add all changes within the changeset (or patchset) in buffer pData (size
|
||||
** nData bytes) to the changegroup.
|
||||
@ -9804,6 +9921,7 @@ SQLITE_API int sqlite3changegroup_add(sqlite3_changegroup*, int nData, void *pDa
|
||||
|
||||
/*
|
||||
** CAPI3REF: Obtain A Composite Changeset From A Changegroup
|
||||
** METHOD: sqlite3_changegroup
|
||||
**
|
||||
** Obtain a buffer containing a changeset (or patchset) representing the
|
||||
** current contents of the changegroup. If the inputs to the changegroup
|
||||
@ -9834,25 +9952,25 @@ SQLITE_API int sqlite3changegroup_output(
|
||||
|
||||
/*
|
||||
** CAPI3REF: Delete A Changegroup Object
|
||||
** DESTRUCTOR: sqlite3_changegroup
|
||||
*/
|
||||
SQLITE_API void sqlite3changegroup_delete(sqlite3_changegroup*);
|
||||
|
||||
/*
|
||||
** CAPI3REF: Apply A Changeset To A Database
|
||||
**
|
||||
** Apply a changeset to a database. This function attempts to update the
|
||||
** "main" database attached to handle db with the changes found in the
|
||||
** changeset passed via the second and third arguments.
|
||||
** Apply a changeset or patchset to a database. These functions attempt to
|
||||
** update the "main" database attached to handle db with the changes found in
|
||||
** the changeset passed via the second and third arguments.
|
||||
**
|
||||
** The fourth argument (xFilter) passed to this function is the "filter
|
||||
** The fourth argument (xFilter) passed to these functions is the "filter
|
||||
** callback". If it is not NULL, then for each table affected by at least one
|
||||
** change in the changeset, the filter callback is invoked with
|
||||
** the table name as the second argument, and a copy of the context pointer
|
||||
** passed as the sixth argument to this function as the first. If the "filter
|
||||
** callback" returns zero, then no attempt is made to apply any changes to
|
||||
** the table. Otherwise, if the return value is non-zero or the xFilter
|
||||
** argument to this function is NULL, all changes related to the table are
|
||||
** attempted.
|
||||
** passed as the sixth argument as the first. If the "filter callback"
|
||||
** returns zero, then no attempt is made to apply any changes to the table.
|
||||
** Otherwise, if the return value is non-zero or the xFilter argument to
|
||||
** is NULL, all changes related to the table are attempted.
|
||||
**
|
||||
** For each table that is not excluded by the filter callback, this function
|
||||
** tests that the target database contains a compatible table. A table is
|
||||
@ -9897,7 +10015,7 @@ SQLITE_API void sqlite3changegroup_delete(sqlite3_changegroup*);
|
||||
**
|
||||
** <dl>
|
||||
** <dt>DELETE Changes<dd>
|
||||
** For each DELETE change, this function checks if the target database
|
||||
** For each DELETE change, the function checks if the target database
|
||||
** contains a row with the same primary key value (or values) as the
|
||||
** original row values stored in the changeset. If it does, and the values
|
||||
** stored in all non-primary key columns also match the values stored in
|
||||
@ -9942,7 +10060,7 @@ SQLITE_API void sqlite3changegroup_delete(sqlite3_changegroup*);
|
||||
** [SQLITE_CHANGESET_REPLACE].
|
||||
**
|
||||
** <dt>UPDATE Changes<dd>
|
||||
** For each UPDATE change, this function checks if the target database
|
||||
** For each UPDATE change, the function checks if the target database
|
||||
** contains a row with the same primary key value (or values) as the
|
||||
** original row values stored in the changeset. If it does, and the values
|
||||
** stored in all modified non-primary key columns also match the values
|
||||
@ -9973,11 +10091,21 @@ SQLITE_API void sqlite3changegroup_delete(sqlite3_changegroup*);
|
||||
** This can be used to further customize the applications conflict
|
||||
** resolution strategy.
|
||||
**
|
||||
** All changes made by this function are enclosed in a savepoint transaction.
|
||||
** All changes made by these functions are enclosed in a savepoint transaction.
|
||||
** If any other error (aside from a constraint failure when attempting to
|
||||
** write to the target database) occurs, then the savepoint transaction is
|
||||
** rolled back, restoring the target database to its original state, and an
|
||||
** SQLite error code returned.
|
||||
**
|
||||
** If the output parameters (ppRebase) and (pnRebase) are non-NULL and
|
||||
** the input is a changeset (not a patchset), then sqlite3changeset_apply_v2()
|
||||
** may set (*ppRebase) to point to a "rebase" that may be used with the
|
||||
** sqlite3_rebaser APIs buffer before returning. In this case (*pnRebase)
|
||||
** is set to the size of the buffer in bytes. It is the responsibility of the
|
||||
** caller to eventually free any such buffer using sqlite3_free(). The buffer
|
||||
** is only allocated and populated if one or more conflicts were encountered
|
||||
** while applying the patchset. See comments surrounding the sqlite3_rebaser
|
||||
** APIs for further details.
|
||||
*/
|
||||
SQLITE_API int sqlite3changeset_apply(
|
||||
sqlite3 *db, /* Apply change to "main" db of this handle */
|
||||
@ -9994,6 +10122,22 @@ SQLITE_API int sqlite3changeset_apply(
|
||||
),
|
||||
void *pCtx /* First argument passed to xConflict */
|
||||
);
|
||||
SQLITE_API int sqlite3changeset_apply_v2(
|
||||
sqlite3 *db, /* Apply change to "main" db of this handle */
|
||||
int nChangeset, /* Size of changeset in bytes */
|
||||
void *pChangeset, /* Changeset blob */
|
||||
int(*xFilter)(
|
||||
void *pCtx, /* Copy of sixth arg to _apply() */
|
||||
const char *zTab /* Table name */
|
||||
),
|
||||
int(*xConflict)(
|
||||
void *pCtx, /* Copy of sixth arg to _apply() */
|
||||
int eConflict, /* DATA, MISSING, CONFLICT, CONSTRAINT */
|
||||
sqlite3_changeset_iter *p /* Handle describing change and conflict */
|
||||
),
|
||||
void *pCtx, /* First argument passed to xConflict */
|
||||
void **ppRebase, int *pnRebase
|
||||
);
|
||||
|
||||
/*
|
||||
** CAPI3REF: Constants Passed To The Conflict Handler
|
||||
@ -10091,6 +10235,161 @@ SQLITE_API int sqlite3changeset_apply(
|
||||
#define SQLITE_CHANGESET_REPLACE 1
|
||||
#define SQLITE_CHANGESET_ABORT 2
|
||||
|
||||
/*
|
||||
** CAPI3REF: Rebasing changesets
|
||||
** EXPERIMENTAL
|
||||
**
|
||||
** Suppose there is a site hosting a database in state S0. And that
|
||||
** modifications are made that move that database to state S1 and a
|
||||
** changeset recorded (the "local" changeset). Then, a changeset based
|
||||
** on S0 is received from another site (the "remote" changeset) and
|
||||
** applied to the database. The database is then in state
|
||||
** (S1+"remote"), where the exact state depends on any conflict
|
||||
** resolution decisions (OMIT or REPLACE) made while applying "remote".
|
||||
** Rebasing a changeset is to update it to take those conflict
|
||||
** resolution decisions into account, so that the same conflicts
|
||||
** do not have to be resolved elsewhere in the network.
|
||||
**
|
||||
** For example, if both the local and remote changesets contain an
|
||||
** INSERT of the same key on "CREATE TABLE t1(a PRIMARY KEY, b)":
|
||||
**
|
||||
** local: INSERT INTO t1 VALUES(1, 'v1');
|
||||
** remote: INSERT INTO t1 VALUES(1, 'v2');
|
||||
**
|
||||
** and the conflict resolution is REPLACE, then the INSERT change is
|
||||
** removed from the local changeset (it was overridden). Or, if the
|
||||
** conflict resolution was "OMIT", then the local changeset is modified
|
||||
** to instead contain:
|
||||
**
|
||||
** UPDATE t1 SET b = 'v2' WHERE a=1;
|
||||
**
|
||||
** Changes within the local changeset are rebased as follows:
|
||||
**
|
||||
** <dl>
|
||||
** <dt>Local INSERT<dd>
|
||||
** This may only conflict with a remote INSERT. If the conflict
|
||||
** resolution was OMIT, then add an UPDATE change to the rebased
|
||||
** changeset. Or, if the conflict resolution was REPLACE, add
|
||||
** nothing to the rebased changeset.
|
||||
**
|
||||
** <dt>Local DELETE<dd>
|
||||
** This may conflict with a remote UPDATE or DELETE. In both cases the
|
||||
** only possible resolution is OMIT. If the remote operation was a
|
||||
** DELETE, then add no change to the rebased changeset. If the remote
|
||||
** operation was an UPDATE, then the old.* fields of change are updated
|
||||
** to reflect the new.* values in the UPDATE.
|
||||
**
|
||||
** <dt>Local UPDATE<dd>
|
||||
** This may conflict with a remote UPDATE or DELETE. If it conflicts
|
||||
** with a DELETE, and the conflict resolution was OMIT, then the update
|
||||
** is changed into an INSERT. Any undefined values in the new.* record
|
||||
** from the update change are filled in using the old.* values from
|
||||
** the conflicting DELETE. Or, if the conflict resolution was REPLACE,
|
||||
** the UPDATE change is simply omitted from the rebased changeset.
|
||||
**
|
||||
** If conflict is with a remote UPDATE and the resolution is OMIT, then
|
||||
** the old.* values are rebased using the new.* values in the remote
|
||||
** change. Or, if the resolution is REPLACE, then the change is copied
|
||||
** into the rebased changeset with updates to columns also updated by
|
||||
** the conflicting remote UPDATE removed. If this means no columns would
|
||||
** be updated, the change is omitted.
|
||||
** </dl>
|
||||
**
|
||||
** A local change may be rebased against multiple remote changes
|
||||
** simultaneously. If a single key is modified by multiple remote
|
||||
** changesets, they are combined as follows before the local changeset
|
||||
** is rebased:
|
||||
**
|
||||
** <ul>
|
||||
** <li> If there has been one or more REPLACE resolutions on a
|
||||
** key, it is rebased according to a REPLACE.
|
||||
**
|
||||
** <li> If there have been no REPLACE resolutions on a key, then
|
||||
** the local changeset is rebased according to the most recent
|
||||
** of the OMIT resolutions.
|
||||
** </ul>
|
||||
**
|
||||
** Note that conflict resolutions from multiple remote changesets are
|
||||
** combined on a per-field basis, not per-row. This means that in the
|
||||
** case of multiple remote UPDATE operations, some fields of a single
|
||||
** local change may be rebased for REPLACE while others are rebased for
|
||||
** OMIT.
|
||||
**
|
||||
** In order to rebase a local changeset, the remote changeset must first
|
||||
** be applied to the local database using sqlite3changeset_apply_v2() and
|
||||
** the buffer of rebase information captured. Then:
|
||||
**
|
||||
** <ol>
|
||||
** <li> An sqlite3_rebaser object is created by calling
|
||||
** sqlite3rebaser_create().
|
||||
** <li> The new object is configured with the rebase buffer obtained from
|
||||
** sqlite3changeset_apply_v2() by calling sqlite3rebaser_configure().
|
||||
** If the local changeset is to be rebased against multiple remote
|
||||
** changesets, then sqlite3rebaser_configure() should be called
|
||||
** multiple times, in the same order that the multiple
|
||||
** sqlite3changeset_apply_v2() calls were made.
|
||||
** <li> Each local changeset is rebased by calling sqlite3rebaser_rebase().
|
||||
** <li> The sqlite3_rebaser object is deleted by calling
|
||||
** sqlite3rebaser_delete().
|
||||
** </ol>
|
||||
*/
|
||||
typedef struct sqlite3_rebaser sqlite3_rebaser;
|
||||
|
||||
/*
|
||||
** CAPI3REF: Create a changeset rebaser object.
|
||||
** EXPERIMENTAL
|
||||
**
|
||||
** Allocate a new changeset rebaser object. If successful, set (*ppNew) to
|
||||
** point to the new object and return SQLITE_OK. Otherwise, if an error
|
||||
** occurs, return an SQLite error code (e.g. SQLITE_NOMEM) and set (*ppNew)
|
||||
** to NULL.
|
||||
*/
|
||||
SQLITE_API int sqlite3rebaser_create(sqlite3_rebaser **ppNew);
|
||||
|
||||
/*
|
||||
** CAPI3REF: Configure a changeset rebaser object.
|
||||
** EXPERIMENTAL
|
||||
**
|
||||
** Configure the changeset rebaser object to rebase changesets according
|
||||
** to the conflict resolutions described by buffer pRebase (size nRebase
|
||||
** bytes), which must have been obtained from a previous call to
|
||||
** sqlite3changeset_apply_v2().
|
||||
*/
|
||||
SQLITE_API int sqlite3rebaser_configure(
|
||||
sqlite3_rebaser*,
|
||||
int nRebase, const void *pRebase
|
||||
);
|
||||
|
||||
/*
|
||||
** CAPI3REF: Rebase a changeset
|
||||
** EXPERIMENTAL
|
||||
**
|
||||
** Argument pIn must point to a buffer containing a changeset nIn bytes
|
||||
** in size. This function allocates and populates a buffer with a copy
|
||||
** of the changeset rebased rebased according to the configuration of the
|
||||
** rebaser object passed as the first argument. If successful, (*ppOut)
|
||||
** is set to point to the new buffer containing the rebased changset and
|
||||
** (*pnOut) to its size in bytes and SQLITE_OK returned. It is the
|
||||
** responsibility of the caller to eventually free the new buffer using
|
||||
** sqlite3_free(). Otherwise, if an error occurs, (*ppOut) and (*pnOut)
|
||||
** are set to zero and an SQLite error code returned.
|
||||
*/
|
||||
SQLITE_API int sqlite3rebaser_rebase(
|
||||
sqlite3_rebaser*,
|
||||
int nIn, const void *pIn,
|
||||
int *pnOut, void **ppOut
|
||||
);
|
||||
|
||||
/*
|
||||
** CAPI3REF: Delete a changeset rebaser object.
|
||||
** EXPERIMENTAL
|
||||
**
|
||||
** Delete the changeset rebaser object and all associated resources. There
|
||||
** should be one call to this function for each successful invocation
|
||||
** of sqlite3rebaser_create().
|
||||
*/
|
||||
SQLITE_API void sqlite3rebaser_delete(sqlite3_rebaser *p);
|
||||
|
||||
/*
|
||||
** CAPI3REF: Streaming Versions of API functions.
|
||||
**
|
||||
@ -10195,6 +10494,22 @@ SQLITE_API int sqlite3changeset_apply_strm(
|
||||
),
|
||||
void *pCtx /* First argument passed to xConflict */
|
||||
);
|
||||
SQLITE_API int sqlite3changeset_apply_v2_strm(
|
||||
sqlite3 *db, /* Apply change to "main" db of this handle */
|
||||
int (*xInput)(void *pIn, void *pData, int *pnData), /* Input function */
|
||||
void *pIn, /* First arg for xInput */
|
||||
int(*xFilter)(
|
||||
void *pCtx, /* Copy of sixth arg to _apply() */
|
||||
const char *zTab /* Table name */
|
||||
),
|
||||
int(*xConflict)(
|
||||
void *pCtx, /* Copy of sixth arg to _apply() */
|
||||
int eConflict, /* DATA, MISSING, CONFLICT, CONSTRAINT */
|
||||
sqlite3_changeset_iter *p /* Handle describing change and conflict */
|
||||
),
|
||||
void *pCtx, /* First argument passed to xConflict */
|
||||
void **ppRebase, int *pnRebase
|
||||
);
|
||||
SQLITE_API int sqlite3changeset_concat_strm(
|
||||
int (*xInputA)(void *pIn, void *pData, int *pnData),
|
||||
void *pInA,
|
||||
@ -10232,6 +10547,13 @@ SQLITE_API int sqlite3changegroup_output_strm(sqlite3_changegroup*,
|
||||
int (*xOutput)(void *pOut, const void *pData, int nData),
|
||||
void *pOut
|
||||
);
|
||||
SQLITE_API int sqlite3rebaser_rebase_strm(
|
||||
sqlite3_rebaser *pRebaser,
|
||||
int (*xInput)(void *pIn, void *pData, int *pnData),
|
||||
void *pIn,
|
||||
int (*xOutput)(void *pOut, const void *pData, int nData),
|
||||
void *pOut
|
||||
);
|
||||
|
||||
|
||||
/*
|
||||
|
Loading…
Reference in New Issue
Block a user