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plphp.c
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plphp.c
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/**********************************************************************
* plphp.c - PHP as a procedural language for PostgreSQL
*
* This software is copyright (c) Command Prompt Inc.
*
* The author hereby grants permission to use, copy, modify,
* distribute, and license this software and its documentation for any
* purpose, provided that existing copyright notices are retained in
* all copies and that this notice is included verbatim in any
* distributions. No written agreement, license, or royalty fee is
* required for any of the authorized uses. Modifications to this
* software may be copyrighted by their author and need not follow the
* licensing terms described here, provided that the new terms are
* clearly indicated on the first page of each file where they apply.
*
* IN NO EVENT SHALL THE AUTHOR OR DISTRIBUTORS BE LIABLE TO ANY PARTY
* FOR DIRECT, INDIRECT, SPECIAL, INCIDENTAL, OR CONSEQUENTIAL DAMAGES
* ARISING OUT OF THE USE OF THIS SOFTWARE, ITS DOCUMENTATION, OR ANY
* DERIVATIVES THEREOF, EVEN IF THE AUTHOR HAVE BEEN ADVISED OF THE
* POSSIBILITY OF SUCH DAMAGE.
*
* THE AUTHOR AND DISTRIBUTORS SPECIFICALLY DISCLAIM ANY WARRANTIES,
* INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF
* MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE, AND
* NON-INFRINGEMENT. THIS SOFTWARE IS PROVIDED ON AN "AS IS" BASIS,
* AND THE AUTHOR AND DISTRIBUTORS HAVE NO OBLIGATION TO PROVIDE
* MAINTENANCE, SUPPORT, UPDATES, ENHANCEMENTS, OR MODIFICATIONS.
*
* IDENTIFICATION
* $Id$
*********************************************************************
*/
/* Package configuration generated by autoconf */
#include "config.h"
/* First round of undefs, to eliminate collision between plphp and postgresql
* definitions
*/
#undef PACKAGE_BUGREPORT
#undef PACKAGE_NAME
#undef PACKAGE_STRING
#undef PACKAGE_TARNAME
#undef PACKAGE_VERSION
/* PostgreSQL stuff */
#include "postgres.h"
#include "access/heapam.h"
#include "access/transam.h"
#include "catalog/catversion.h"
#include "catalog/pg_language.h"
#include "catalog/pg_proc.h"
#include "catalog/pg_type.h"
#include "commands/trigger.h"
#include "fmgr.h"
#include "funcapi.h" /* needed for SRF support */
#include "lib/stringinfo.h"
#include "utils/array.h"
#include "utils/builtins.h"
#include "utils/elog.h"
#include "utils/lsyscache.h"
#include "utils/memutils.h"
#include "utils/rel.h"
#include "utils/syscache.h"
#include "utils/typcache.h"
/*
* These are defined again in php.h, so undef them to avoid some
* cpp warnings.
*/
#undef PACKAGE_BUGREPORT
#undef PACKAGE_NAME
#undef PACKAGE_STRING
#undef PACKAGE_TARNAME
#undef PACKAGE_VERSION
/* PHP stuff */
#include "php.h"
#include "php_variables.h"
#include "php_globals.h"
#include "zend_hash.h"
#include "zend_modules.h"
#include "php_ini.h" /* needed for INI_HARDCODED */
#include "php_main.h"
/* Our own stuff */
#include "plphp_io.h"
#include "plphp_spi.h"
/* system stuff */
#if HAVE_FCNTL_H
#include <fcntl.h>
#endif
#if HAVE_UNISTD_H
#include <unistd.h>
#endif
#define INI_HARDCODED(name,value) \
zend_alter_ini_entry(name, sizeof(name), value, strlen(value), \
PHP_INI_SYSTEM, PHP_INI_STAGE_ACTIVATE);
/* Check for PostgreSQL version */
#if (CATALOG_VERSION_NO >= 200709301)
#define PG_VERSION_83_COMPAT
#endif
#if (CATALOG_VERSION_NO >= 200611241)
#define PG_VERSION_82_COMPAT
#endif
/* We only support 8.1 and above */
#if (CATALOG_VERSION_NO >= 200510211)
#define PG_VERSION_81_COMPAT
#else
#error "Unsupported PostgreSQL version"
#endif
#undef DEBUG_PLPHP_MEMORY
#ifdef DEBUG_PLPHP_MEMORY
#define REPORT_PHP_MEMUSAGE(where) \
elog(NOTICE, "PHP mem usage: %s: %u", where, AG(allocated_memory));
#else
#define REPORT_PHP_MEMUSAGE(a)
#endif
/* PostgreSQL starting from v 8.2 requires this define
* for all modules.
*/
#ifdef PG_VERSION_82_COMPAT
PG_MODULE_MAGIC;
#else
/* Supress warnings on 8.1 and below */
#define ReleaseTupleDesc(tupdesc)
#endif
/* PHP 5.2 and earlier do not contain these definitions */
#ifndef Z_SET_ISREF_P
#define Z_SET_ISREF_P(foo) (foo)->is_ref = 1
#define Z_UNSET_ISREF_P(foo) (foo)->is_ref = 0
#endif
/* 8.2 compatibility */
#ifndef TYPTYPE_PSEUDO
#define TYPTYPE_PSEUDO 'p'
#define TYPTYPE_COMPOSITE 'c'
#endif
/* Check the argument type to expect to accept an initial value */
#define IS_ARGMODE_OUT(mode) ((mode) == PROARGMODE_OUT || \
(mode) == PROARGMODE_TABLE)
/*
* Return types. Why on earth is this a bitmask? Beats me.
* We should have separate flags instead.
*/
typedef enum pl_type
{
PL_TUPLE = 1 << 0,
PL_ARRAY = 1 << 1,
PL_PSEUDO = 1 << 2
} pl_type;
/*
* The information we cache about loaded procedures.
*
* "proname" is the name of the function, given by the user.
*
* fn_xmin and fn_cmin are used to know when a function has been redefined and
* needs to be recompiled.
*
* trusted indicates whether the function was created with a trusted handler.
*
* ret_type is a weird bitmask that indicates whether this function returns a
* tuple, an array or a pseudotype. ret_oid is the Oid of the return type.
* retset indicates whether the function was declared to return a set.
*
* arg_argmode indicates whether the argument is IN, OUT or both. It follows
* values in pg_proc.proargmodes.
*
* n_out_args - total number of OUT or INOUT arguments.
* arg_out_tupdesc is a tuple descriptor of the tuple constructed for OUT args.
*
* XXX -- maybe this thing needs to be rethought.
*/
typedef struct plphp_proc_desc
{
char *proname;
TransactionId fn_xmin;
CommandId fn_cmin;
bool trusted;
pl_type ret_type;
Oid ret_oid; /* Oid of returning type */
bool retset;
FmgrInfo result_in_func;
Oid result_typioparam;
int n_out_args;
int n_total_args;
int n_mixed_args;
FmgrInfo arg_out_func[FUNC_MAX_ARGS];
Oid arg_typioparam[FUNC_MAX_ARGS];
char arg_typtype[FUNC_MAX_ARGS];
char arg_argmode[FUNC_MAX_ARGS];
TupleDesc args_out_tupdesc;
} plphp_proc_desc;
/*
* Global data
*/
static bool plphp_first_call = true;
static zval *plphp_proc_array = NULL;
/* for PHP write/flush */
static StringInfo currmsg = NULL;
/*
* for PHP <-> Postgres error message passing
*
* XXX -- it would be much better if we could save errcontext,
* errhint, etc as well.
*/
static char *error_msg = NULL;
/*
* Forward declarations
*/
static void plphp_init_all(void);
void plphp_init(void);
PG_FUNCTION_INFO_V1(plphp_call_handler);
Datum plphp_call_handler(PG_FUNCTION_ARGS);
PG_FUNCTION_INFO_V1(plphp_validator);
Datum plphp_validator(PG_FUNCTION_ARGS);
static Datum plphp_trigger_handler(FunctionCallInfo fcinfo,
plphp_proc_desc *desc
TSRMLS_DC);
static Datum plphp_func_handler(FunctionCallInfo fcinfo,
plphp_proc_desc *desc
TSRMLS_DC);
static Datum plphp_srf_handler(FunctionCallInfo fcinfo,
plphp_proc_desc *desc
TSRMLS_DC);
static plphp_proc_desc *plphp_compile_function(Oid fnoid, bool is_trigger TSRMLS_DC);
static zval *plphp_call_php_func(plphp_proc_desc *desc,
FunctionCallInfo fcinfo
TSRMLS_DC);
static zval *plphp_call_php_trig(plphp_proc_desc *desc,
FunctionCallInfo fcinfo, zval *trigdata
TSRMLS_DC);
static void plphp_error_cb(int type, const char *filename, const uint lineno,
const char *fmt, va_list args);
static bool is_valid_php_identifier(char *name);
/*
* FIXME -- this comment is quite misleading actually, which is not surprising
* since it came verbatim from PL/pgSQL. Rewrite memory handling here someday
* and remove it.
*
* This routine is a crock, and so is everyplace that calls it. The problem
* is that the cached form of plphp functions/queries is allocated permanently
* (mostly via malloc()) and never released until backend exit. Subsidiary
* data structures such as fmgr info records therefore must live forever
* as well. A better implementation would store all this stuff in a per-
* function memory context that could be reclaimed at need. In the meantime,
* fmgr_info_cxt must be called specifying TopMemoryContext so that whatever
* it might allocate, and whatever the eventual function might allocate using
* fn_mcxt, will live forever too.
*/
static void
perm_fmgr_info(Oid functionId, FmgrInfo *finfo)
{
fmgr_info_cxt(functionId, finfo, TopMemoryContext);
}
/*
* sapi_plphp_write
* Called when PHP wants to write something to stdout.
*
* We just save the output in a StringInfo until the next Flush call.
*/
static int
sapi_plphp_write(const char *str, uint str_length TSRMLS_DC)
{
if (currmsg == NULL)
currmsg = makeStringInfo();
appendStringInfoString(currmsg, str);
return str_length;
}
/*
* sapi_plphp_flush
* Called when PHP wants to flush stdout.
*
* The stupid PHP implementation calls write and follows with a Flush right
* away -- a good implementation would write several times and flush when the
* message is complete. To make the output look reasonable in Postgres, we
* skip the flushing if the accumulated message does not end in a newline.
*/
static void
sapi_plphp_flush(void *sth)
{
if (currmsg != NULL)
{
Assert(currmsg->data != NULL);
if (currmsg->data[currmsg->len - 1] == '\n')
{
/*
* remove the trailing newline because elog() inserts another
* one
*/
currmsg->data[currmsg->len - 1] = '\0';
}
elog(LOG, "%s", currmsg->data);
pfree(currmsg->data);
pfree(currmsg);
currmsg = NULL;
}
else
elog(LOG, "attempting to flush a NULL message");
}
static int
sapi_plphp_send_headers(sapi_headers_struct *sapi_headers TSRMLS_DC)
{
return 1;
}
static void
php_plphp_log_messages(char *message)
{
elog(LOG, "plphp: %s", message);
}
static sapi_module_struct plphp_sapi_module = {
"plphp", /* name */
"PL/php PostgreSQL Handler",/* pretty name */
NULL, /* startup */
php_module_shutdown_wrapper,/* shutdown */
NULL, /* activate */
NULL, /* deactivate */
sapi_plphp_write, /* unbuffered write */
sapi_plphp_flush, /* flush */
NULL, /* stat */
NULL, /* getenv */
php_error, /* sapi_error(int, const char *, ...) */
NULL, /* header handler */
sapi_plphp_send_headers, /* send headers */
NULL, /* send header */
NULL, /* read POST */
NULL, /* read cookies */
NULL, /* register server variables */
php_plphp_log_messages, /* log message */
NULL, /* Block interrupts */
NULL, /* Unblock interrupts */
STANDARD_SAPI_MODULE_PROPERTIES
};
/*
* plphp_init_all() - Initialize all
*
* XXX This is called each time a function is invoked.
*/
static void
plphp_init_all(void)
{
/* Execute postmaster-startup safe initialization */
if (plphp_first_call)
plphp_init();
/*
* Any other initialization that must be done each time a new
* backend starts -- currently none.
*/
}
/*
* This function must not be static, so that it can be used in
* preload_libraries. If it is, it will be called by postmaster;
* otherwise it will be called by each backend the first time a
* function is called.
*/
void
plphp_init(void)
{
TSRMLS_FETCH();
/* Do initialization only once */
if (!plphp_first_call)
return;
/*
* Need a Pg try/catch block to prevent an initialization-
* failure from bringing the whole server down.
*/
PG_TRY();
{
zend_try
{
/*
* XXX This is a hack -- we are replacing the error callback in an
* invasive manner that should not be expected to work on future PHP
* releases.
*/
zend_error_cb = plphp_error_cb;
/* Omit HTML tags from output */
plphp_sapi_module.phpinfo_as_text = 1;
sapi_startup(&plphp_sapi_module);
if (php_module_startup(&plphp_sapi_module, NULL, 0) == FAILURE)
elog(ERROR, "php_module_startup call failed");
/* php_module_startup changed it, so put it back */
zend_error_cb = plphp_error_cb;
/*
* FIXME -- Figure out what this comment is supposed to mean:
*
* There is no way to see if we must call zend_ini_deactivate()
* since we cannot check if EG(ini_directives) has been initialised
* because the executor's constructor does not initialize it.
* Apart from that there seems no need for zend_ini_deactivate() yet.
* So we error out.
*/
/* Init procedure cache */
MAKE_STD_ZVAL(plphp_proc_array);
array_init(plphp_proc_array);
zend_register_functions(
#if PHP_MAJOR_VERSION == 5
NULL,
#endif
spi_functions, NULL,
MODULE_PERSISTENT TSRMLS_CC);
PG(during_request_startup) = true;
/* Set some defaults */
SG(options) |= SAPI_OPTION_NO_CHDIR;
/* Hard coded defaults which cannot be overwritten in the ini file */
INI_HARDCODED("register_argc_argv", "0");
INI_HARDCODED("html_errors", "0");
INI_HARDCODED("implicit_flush", "1");
INI_HARDCODED("max_execution_time", "0");
INI_HARDCODED("max_input_time", "-1");
/*
* Set memory limit to ridiculously high value. This helps the
* server not to crash, because the PHP allocator has the really
* stupid idea of calling exit() if the limit is exceeded.
*/
{
char limit[15];
snprintf(limit, sizeof(limit), "%d", 1 << 30);
INI_HARDCODED("memory_limit", limit);
}
/* tell the engine we're in non-html mode */
zend_uv.html_errors = false;
/* not initialized but needed for several options */
CG(in_compilation) = false;
EG(uninitialized_zval_ptr) = NULL;
if (php_request_startup(TSRMLS_C) == FAILURE)
{
SG(headers_sent) = 1;
SG(request_info).no_headers = 1;
/* Use Postgres log */
elog(ERROR, "php_request_startup call failed");
}
CG(interactive) = false;
PG(during_request_startup) = true;
/* Register the resource for SPI_result */
SPIres_rtype = zend_register_list_destructors_ex(php_SPIresult_destroy,
NULL,
"SPI result",
0);
/* Ok, we're done */
plphp_first_call = false;
}
zend_catch
{
plphp_first_call = true;
if (error_msg)
{
char str[1024];
strncpy(str, error_msg, sizeof(str));
pfree(error_msg);
error_msg = NULL;
elog(ERROR, "fatal error during PL/php initialization: %s",
str);
}
else
elog(ERROR, "fatal error during PL/php initialization");
}
zend_end_try();
}
PG_CATCH();
{
PG_RE_THROW();
}
PG_END_TRY();
}
/*
* plphp_call_handler
*
* The visible function of the PL interpreter. The PostgreSQL function manager
* and trigger manager call this function for execution of php procedures.
*/
Datum
plphp_call_handler(PG_FUNCTION_ARGS)
{
Datum retval;
TSRMLS_FETCH();
/* Initialize interpreter */
plphp_init_all();
PG_TRY();
{
/* Connect to SPI manager */
if (SPI_connect() != SPI_OK_CONNECT)
ereport(ERROR,
(errcode(ERRCODE_CONNECTION_FAILURE),
errmsg("could not connect to SPI manager")));
zend_try
{
plphp_proc_desc *desc;
/* Clean up SRF state */
current_fcinfo = NULL;
/* Redirect to the appropiate handler */
if (CALLED_AS_TRIGGER(fcinfo))
{
desc = plphp_compile_function(fcinfo->flinfo->fn_oid, true TSRMLS_CC);
/* Activate PHP safe mode if needed */
PG(safe_mode) = desc->trusted;
retval = plphp_trigger_handler(fcinfo, desc TSRMLS_CC);
}
else
{
desc = plphp_compile_function(fcinfo->flinfo->fn_oid, false TSRMLS_CC);
/* Activate PHP safe mode if needed */
PG(safe_mode) = desc->trusted;
if (desc->retset)
retval = plphp_srf_handler(fcinfo, desc TSRMLS_CC);
else
retval = plphp_func_handler(fcinfo, desc TSRMLS_CC);
}
}
zend_catch
{
REPORT_PHP_MEMUSAGE("reporting error");
if (error_msg)
{
char str[1024];
strncpy(str, error_msg, sizeof(str));
pfree(error_msg);
error_msg = NULL;
elog(ERROR, "%s", str);
}
else
elog(ERROR, "fatal error");
/* not reached, but keep compiler quiet */
return 0;
}
zend_end_try();
}
PG_CATCH();
{
PG_RE_THROW();
}
PG_END_TRY();
return retval;
}
/*
* plphp_validator
*
* Validator function for checking the function's syntax at creation
* time
*/
Datum
plphp_validator(PG_FUNCTION_ARGS)
{
Oid funcoid = PG_GETARG_OID(0);
Form_pg_proc procForm;
HeapTuple procTup;
char tmpname[32];
char funcname[NAMEDATALEN];
char *tmpsrc = NULL,
*prosrc;
Datum prosrcdatum;
TSRMLS_FETCH();
/* Initialize interpreter */
plphp_init_all();
PG_TRY();
{
bool isnull;
/* Grab the pg_proc tuple */
procTup = SearchSysCache(PROCOID,
ObjectIdGetDatum(funcoid),
0, 0, 0);
if (!HeapTupleIsValid(procTup))
elog(ERROR, "cache lookup failed for function %u", funcoid);
procForm = (Form_pg_proc) GETSTRUCT(procTup);
/* Get the function source code */
prosrcdatum = SysCacheGetAttr(PROCOID,
procTup,
Anum_pg_proc_prosrc,
&isnull);
if (isnull)
elog(ERROR, "cache lookup yielded NULL prosrc");
prosrc = DatumGetCString(DirectFunctionCall1(textout,
prosrcdatum));
/* Get the function name, for the error message */
StrNCpy(funcname, NameStr(procForm->proname), NAMEDATALEN);
/* Let go of the pg_proc tuple */
ReleaseSysCache(procTup);
/* Create a PHP function creation statement */
snprintf(tmpname, sizeof(tmpname), "plphp_temp_%u", funcoid);
tmpsrc = (char *) palloc(strlen(prosrc) +
strlen(tmpname) +
strlen("function ($args, $argc){ } "));
sprintf(tmpsrc, "function %s($args, $argc){%s}",
tmpname, prosrc);
pfree(prosrc);
zend_try
{
/*
* Delete the function from the PHP function table, just in case it
* already existed. This is quite unlikely, but still.
*/
zend_hash_del(CG(function_table), tmpname, strlen(tmpname) + 1);
/*
* Let the user see the fireworks. If the function doesn't validate,
* the ERROR will be raised and the function will not be created.
*/
if (zend_eval_string(tmpsrc, NULL,
"plphp function temp source" TSRMLS_CC) == FAILURE)
elog(ERROR, "function \"%s\" does not validate", funcname);
pfree(tmpsrc);
tmpsrc = NULL;
/* Delete the newly-created function from the PHP function table. */
zend_hash_del(CG(function_table), tmpname, strlen(tmpname) + 1);
}
zend_catch
{
if (tmpsrc != NULL)
pfree(tmpsrc);
if (error_msg)
{
char str[1024];
StrNCpy(str, error_msg, sizeof(str));
pfree(error_msg);
error_msg = NULL;
elog(ERROR, "function \"%s\" does not validate: %s", funcname, str);
}
else
elog(ERROR, "fatal error");
/* not reached, but keep compiler quiet */
return 0;
}
zend_end_try();
/* The result of a validator is ignored */
PG_RETURN_VOID();
}
PG_CATCH();
{
PG_RE_THROW();
}
PG_END_TRY();
}
/*
* plphp_get_function_tupdesc
*
* Returns a TupleDesc of the function's return type.
*/
static TupleDesc
plphp_get_function_tupdesc(Oid result_type, Node *rsinfo)
{
if (result_type == RECORDOID)
{
ReturnSetInfo *rs = (ReturnSetInfo *) rsinfo;
/* We must get the information from call context */
if (!rsinfo || !IsA(rsinfo, ReturnSetInfo) || rs->expectedDesc == NULL)
ereport(ERROR,
(errcode(ERRCODE_FEATURE_NOT_SUPPORTED),
errmsg("function returning record called in context "
"that cannot accept type record")));
return rs->expectedDesc;
}
else
/* ordinary composite type */
return lookup_rowtype_tupdesc(result_type, -1);
}
/*
* Build the $_TD array for the trigger function.
*/
static zval *
plphp_trig_build_args(FunctionCallInfo fcinfo)
{
TriggerData *tdata;
TupleDesc tupdesc;
zval *retval;
int i;
MAKE_STD_ZVAL(retval);
array_init(retval);
tdata = (TriggerData *) fcinfo->context;
tupdesc = tdata->tg_relation->rd_att;
/* The basic variables */
add_assoc_string(retval, "name", tdata->tg_trigger->tgname, 1);
add_assoc_long(retval, "relid", tdata->tg_relation->rd_id);
add_assoc_string(retval, "relname", SPI_getrelname(tdata->tg_relation), 1);
add_assoc_string(retval, "schemaname", SPI_getnspname(tdata->tg_relation), 1);
/* EVENT */
if (TRIGGER_FIRED_BY_INSERT(tdata->tg_event))
add_assoc_string(retval, "event", "INSERT", 1);
else if (TRIGGER_FIRED_BY_DELETE(tdata->tg_event))
add_assoc_string(retval, "event", "DELETE", 1);
else if (TRIGGER_FIRED_BY_UPDATE(tdata->tg_event))
add_assoc_string(retval, "event", "UPDATE", 1);
else
elog(ERROR, "unknown firing event for trigger function");
/* NEW and OLD as appropiate */
if (TRIGGER_FIRED_FOR_ROW(tdata->tg_event))
{
if (TRIGGER_FIRED_BY_INSERT(tdata->tg_event))
{
zval *hashref;
hashref = plphp_build_tuple_argument(tdata->tg_trigtuple, tupdesc);
add_assoc_zval(retval, "new", hashref);
}
else if (TRIGGER_FIRED_BY_DELETE(tdata->tg_event))
{
zval *hashref;
hashref = plphp_build_tuple_argument(tdata->tg_trigtuple, tupdesc);
add_assoc_zval(retval, "old", hashref);
}
else if (TRIGGER_FIRED_BY_UPDATE(tdata->tg_event))
{
zval *hashref;
hashref = plphp_build_tuple_argument(tdata->tg_newtuple, tupdesc);
add_assoc_zval(retval, "new", hashref);
hashref = plphp_build_tuple_argument(tdata->tg_trigtuple, tupdesc);
add_assoc_zval(retval, "old", hashref);
}
else
elog(ERROR, "unknown firing event for trigger function");
}
/* ARGC and ARGS */
add_assoc_long(retval, "argc", tdata->tg_trigger->tgnargs);
if (tdata->tg_trigger->tgnargs > 0)
{
zval *hashref;
MAKE_STD_ZVAL(hashref);
array_init(hashref);
for (i = 0; i < tdata->tg_trigger->tgnargs; i++)
add_index_string(hashref, i, tdata->tg_trigger->tgargs[i], 1);
zend_hash_update(retval->value.ht, "args", strlen("args") + 1,
(void *) &hashref, sizeof(zval *), NULL);
}
/* WHEN */
if (TRIGGER_FIRED_BEFORE(tdata->tg_event))
add_assoc_string(retval, "when", "BEFORE", 1);
else if (TRIGGER_FIRED_AFTER(tdata->tg_event))
add_assoc_string(retval, "when", "AFTER", 1);
else
elog(ERROR, "unknown firing time for trigger function");
/* LEVEL */
if (TRIGGER_FIRED_FOR_ROW(tdata->tg_event))
add_assoc_string(retval, "level", "ROW", 1);
else if (TRIGGER_FIRED_FOR_STATEMENT(tdata->tg_event))
add_assoc_string(retval, "level", "STATEMENT", 1);
else
elog(ERROR, "unknown firing level for trigger function");
return retval;
}
/*
* plphp_trigger_handler
* Handler for trigger function calls
*/
static Datum
plphp_trigger_handler(FunctionCallInfo fcinfo, plphp_proc_desc *desc TSRMLS_DC)
{
Datum retval = 0;
char *srv;
zval *phpret,
*zTrigData;
TriggerData *trigdata;
REPORT_PHP_MEMUSAGE("going to build the trigger arg");
zTrigData = plphp_trig_build_args(fcinfo);
REPORT_PHP_MEMUSAGE("going to call the trigger function");
phpret = plphp_call_php_trig(desc, fcinfo, zTrigData TSRMLS_CC);
if (!phpret)
elog(ERROR, "error during execution of function %s", desc->proname);
REPORT_PHP_MEMUSAGE("trigger called, going to build the return value");
/*
* Disconnect from SPI manager and then create the return values datum (if
* the input function does a palloc for it this must not be allocated in
* the SPI memory context because SPI_finish would free it).
*/
if (SPI_finish() != SPI_OK_FINISH)
ereport(ERROR,
(errcode(ERRCODE_CONNECTION_DOES_NOT_EXIST),
errmsg("could not disconnect from SPI manager")));
trigdata = (TriggerData *) fcinfo->context;
if (zTrigData->type != IS_ARRAY)
elog(ERROR, "$_TD is not an array");
/*
* In a BEFORE trigger, compute the return value. In an AFTER trigger
* it'll be ignored, so don't bother.
*/
if (TRIGGER_FIRED_BEFORE(trigdata->tg_event))
{
switch (phpret->type)
{
case IS_STRING:
srv = phpret->value.str.val;
if (strcasecmp(srv, "SKIP") == 0)
{
/* do nothing */
break;
}
else if (strcasecmp(srv, "MODIFY") == 0)
{
if (TRIGGER_FIRED_BY_INSERT(trigdata->tg_event) ||
TRIGGER_FIRED_BY_UPDATE(trigdata->tg_event))
retval = PointerGetDatum(plphp_modify_tuple(zTrigData,
trigdata));
else if (TRIGGER_FIRED_BY_DELETE(trigdata->tg_event))
ereport(ERROR,
(errcode(ERRCODE_SYNTAX_ERROR),
errmsg("on delete trigger can not modify the the return tuple")));
else
elog(ERROR, "unknown event in trigger function");
}
else
ereport(ERROR,
(errcode(ERRCODE_SYNTAX_ERROR),
errmsg("expected trigger function to return NULL, 'SKIP' or 'MODIFY'")));
break;
case IS_NULL:
if (TRIGGER_FIRED_BY_INSERT(trigdata->tg_event) ||
TRIGGER_FIRED_BY_DELETE(trigdata->tg_event))
retval = (Datum) trigdata->tg_trigtuple;
else if (TRIGGER_FIRED_BY_UPDATE(trigdata->tg_event))
retval = (Datum) trigdata->tg_newtuple;
break;
default:
ereport(ERROR,
(errcode(ERRCODE_SYNTAX_ERROR),
errmsg("expected trigger function to return NULL, 'SKIP' or 'MODIFY'")));
break;
}
}
REPORT_PHP_MEMUSAGE("freeing some variables");
zval_dtor(zTrigData);
zval_dtor(phpret);
FREE_ZVAL(phpret);
FREE_ZVAL(zTrigData);
REPORT_PHP_MEMUSAGE("trigger call done");
return retval;
}
/*
* plphp_func_handler
* Handler for regular function calls
*/
static Datum
plphp_func_handler(FunctionCallInfo fcinfo, plphp_proc_desc *desc TSRMLS_DC)
{
zval *phpret = NULL;
Datum retval;
char *retvalbuffer = NULL;
/* SRFs are handled separately */
Assert(!desc->retset);
/* Call the PHP function. */
phpret = plphp_call_php_func(desc, fcinfo TSRMLS_CC);
if (!phpret)
elog(ERROR, "error during execution of function %s", desc->proname);
REPORT_PHP_MEMUSAGE("function invoked");
/* Basic datatype checks */
if ((desc->ret_type & PL_ARRAY) && phpret->type != IS_ARRAY)
ereport(ERROR,
(errcode(ERRCODE_DATATYPE_MISMATCH),
errmsg("function declared to return array must return an array")));
if ((desc->ret_type & PL_TUPLE) && phpret->type != IS_ARRAY)
ereport(ERROR,
(errcode(ERRCODE_DATATYPE_MISMATCH),
errmsg("function declared to return tuple must return an array")));
/*
* Disconnect from SPI manager and then create the return values datum (if
* the input function does a palloc for it this must not be allocated in
* the SPI memory context because SPI_finish would free it).
*/
if (SPI_finish() != SPI_OK_FINISH)
ereport(ERROR,
(errcode(ERRCODE_CONNECTION_DOES_NOT_EXIST),
errmsg("could not disconnect from SPI manager")));
retval = (Datum) 0;
if (desc->ret_type & PL_PSEUDO)
{
HeapTuple retTypeTup;