321 lines
		
	
	
		
			9.5 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
			
		
		
	
	
			321 lines
		
	
	
		
			9.5 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
/*
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 * ***** BEGIN GPL LICENSE BLOCK *****
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 *
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 * This program is free software; you can redistribute it and/or
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 * modify it under the terms of the GNU General Public License
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 * as published by the Free Software Foundation; either version 2
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 * of the License, or (at your option) any later version.
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 *
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 * This program is distributed in the hope that it will be useful,
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 * but WITHOUT ANY WARRANTY; without even the implied warranty of
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 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
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 * GNU General Public License for more details.
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 *
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 * You should have received a copy of the GNU General Public License
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 * along with this program; if not, write to the Free Software Foundation,
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 * Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301, USA.
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 *
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 * Contributor(s): Willian P. Germano, Campbell Barton
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 *
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 * ***** END GPL LICENSE BLOCK *****
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 */
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/** \file blender/python/intern/bpy_driver.c
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 *  \ingroup pythonintern
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 *
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 * This file defines the 'BPY_driver_exec' to execute python driver expressions,
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 * called by the animation system, there are also some utility functions
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 * to deal with the namespace used for driver execution.
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 */
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/* ****************************************** */
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/* Drivers - PyExpression Evaluation */
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#include <Python.h>
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#include "DNA_anim_types.h"
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#include "BLI_listbase.h"
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#include "BLI_math_base.h"
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#include "BKE_fcurve.h"
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#include "BKE_global.h"
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#include "bpy_driver.h"
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extern void BPY_update_rna_module(void);
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/* for pydrivers (drivers using one-line Python expressions to express relationships between targets) */
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PyObject *bpy_pydriver_Dict = NULL;
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/* For faster execution we keep a special dictionary for pydrivers, with
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 * the needed modules and aliases.
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 */
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int bpy_pydriver_create_dict(void)
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{
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	PyObject *d, *mod;
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	/* validate namespace for driver evaluation */
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	if (bpy_pydriver_Dict) return -1;
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	d = PyDict_New();
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	if (d == NULL)
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		return -1;
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	else
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		bpy_pydriver_Dict = d;
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	/* import some modules: builtins, bpy, math, (Blender.noise)*/
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	PyDict_SetItemString(d, "__builtins__", PyEval_GetBuiltins());
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	mod = PyImport_ImportModule("math");
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	if (mod) {
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		PyDict_Merge(d, PyModule_GetDict(mod), 0); /* 0 - dont overwrite existing values */
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		Py_DECREF(mod);
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	}
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	/* add bpy to global namespace */
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	mod = PyImport_ImportModuleLevel((char *)"bpy", NULL, NULL, NULL, 0);
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	if (mod) {
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		PyDict_SetItemString(bpy_pydriver_Dict, "bpy", mod);
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		Py_DECREF(mod);
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	}
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	/* add noise to global namespace */
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	mod = PyImport_ImportModuleLevel((char *)"mathutils", NULL, NULL, NULL, 0);
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	if (mod) {
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		PyObject *modsub = PyDict_GetItemString(PyModule_GetDict(mod), "noise");
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		PyDict_SetItemString(bpy_pydriver_Dict, "noise", modsub);
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		Py_DECREF(mod);
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	}
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	return 0;
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}
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/* note, this function should do nothing most runs, only when changing frame */
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static PyObject *bpy_pydriver_InternStr__frame = NULL;
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/* not thread safe but neither is python */
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static float bpy_pydriver_evaltime_prev = FLT_MAX;
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static void bpy_pydriver_update_dict(const float evaltime)
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{
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	if (bpy_pydriver_evaltime_prev != evaltime) {
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		/* currently only update the frame */
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		if (bpy_pydriver_InternStr__frame == NULL) {
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			bpy_pydriver_InternStr__frame = PyUnicode_FromString("frame");
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		}
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		PyDict_SetItem(bpy_pydriver_Dict,
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		               bpy_pydriver_InternStr__frame,
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		               PyFloat_FromDouble(evaltime));
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		bpy_pydriver_evaltime_prev = evaltime;
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	}
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}
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/* Update function, it gets rid of pydrivers global dictionary, forcing
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 * BPY_driver_exec to recreate it. This function is used to force
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 * reloading the Blender text module "pydrivers.py", if available, so
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 * updates in it reach pydriver evaluation.
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 */
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void BPY_driver_reset(void)
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{
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	PyGILState_STATE gilstate;
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	int use_gil = 1; /* !PYC_INTERPRETER_ACTIVE; */
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	if (use_gil)
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		gilstate = PyGILState_Ensure();
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	if (bpy_pydriver_Dict) { /* free the global dict used by pydrivers */
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		PyDict_Clear(bpy_pydriver_Dict);
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		Py_DECREF(bpy_pydriver_Dict);
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		bpy_pydriver_Dict = NULL;
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	}
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	if (bpy_pydriver_InternStr__frame) {
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		Py_DECREF(bpy_pydriver_InternStr__frame);
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		bpy_pydriver_InternStr__frame = NULL;
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		bpy_pydriver_evaltime_prev = FLT_MAX;
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	}
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	if (use_gil)
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		PyGILState_Release(gilstate);
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	return;
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}
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/* error return function for BPY_eval_pydriver */
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static void pydriver_error(ChannelDriver *driver)
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{
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	driver->flag |= DRIVER_FLAG_INVALID; /* py expression failed */
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	fprintf(stderr, "\nError in Driver: The following Python expression failed:\n\t'%s'\n\n", driver->expression);
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	// BPy_errors_to_report(NULL); // TODO - reports
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	PyErr_Print();
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	PyErr_Clear();
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}
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/* This evals py driver expressions, 'expr' is a Python expression that
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 * should evaluate to a float number, which is returned.
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 *
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 * (old)note: PyGILState_Ensure() isnt always called because python can call
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 * the bake operator which intern starts a thread which calls scene update
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 * which does a driver update. to avoid a deadlock check PYC_INTERPRETER_ACTIVE
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 * if PyGILState_Ensure() is needed - see [#27683]
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 *
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 * (new)note: checking if python is running is not threadsafe [#28114]
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 * now release the GIL on python operator execution instead, using
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 * PyEval_SaveThread() / PyEval_RestoreThread() so we dont lock up blender.
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 */
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float BPY_driver_exec(ChannelDriver *driver, const float evaltime)
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{
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	PyObject *driver_vars = NULL;
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	PyObject *retval = NULL;
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	PyObject *expr_vars; /* speed up by pre-hashing string & avoids re-converting unicode strings for every execution */
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	PyObject *expr_code;
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	PyGILState_STATE gilstate;
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	int use_gil;
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	DriverVar *dvar;
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	double result = 0.0; /* default return */
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	char *expr = NULL;
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	short targets_ok = 1;
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	int i;
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	/* get the py expression to be evaluated */
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	expr = driver->expression;
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	if ((expr == NULL) || (expr[0] == '\0'))
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		return 0.0f;
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	if (!(G.f & G_SCRIPT_AUTOEXEC)) {
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		printf("skipping driver '%s', automatic scripts are disabled\n", driver->expression);
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		return 0.0f;
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	}
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	use_gil = 1; /* !PYC_INTERPRETER_ACTIVE; */
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	if (use_gil)
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		gilstate = PyGILState_Ensure();
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	/* needed since drivers are updated directly after undo where 'main' is
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	 * re-allocated [#28807] */
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	BPY_update_rna_module();
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	/* init global dictionary for py-driver evaluation settings */
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	if (!bpy_pydriver_Dict) {
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		if (bpy_pydriver_create_dict() != 0) {
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			fprintf(stderr, "Pydriver error: couldn't create Python dictionary");
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			if (use_gil)
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				PyGILState_Release(gilstate);
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			return 0.0f;
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		}
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	}
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	/* update global namespace */
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	bpy_pydriver_update_dict(evaltime);
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	if (driver->expr_comp == NULL)
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		driver->flag |= DRIVER_FLAG_RECOMPILE;
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	/* compile the expression first if it hasn't been compiled or needs to be rebuilt */
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	if (driver->flag & DRIVER_FLAG_RECOMPILE) {
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		Py_XDECREF(driver->expr_comp);
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		driver->expr_comp = PyTuple_New(2);
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		expr_code = Py_CompileString(expr, "<bpy driver>", Py_eval_input);
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		PyTuple_SET_ITEM(((PyObject *)driver->expr_comp), 0, expr_code);
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		driver->flag &= ~DRIVER_FLAG_RECOMPILE;
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		driver->flag |= DRIVER_FLAG_RENAMEVAR; /* maybe this can be removed but for now best keep until were sure */
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	}
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	else {
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		expr_code = PyTuple_GET_ITEM(((PyObject *)driver->expr_comp), 0);
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	}
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	if (driver->flag & DRIVER_FLAG_RENAMEVAR) {
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		/* may not be set */
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		expr_vars = PyTuple_GET_ITEM(((PyObject *)driver->expr_comp), 1);
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		Py_XDECREF(expr_vars);
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		expr_vars = PyTuple_New(BLI_countlist(&driver->variables));
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		PyTuple_SET_ITEM(((PyObject *)driver->expr_comp), 1, expr_vars);
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		for (dvar = driver->variables.first, i = 0; dvar; dvar = dvar->next) {
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			PyTuple_SET_ITEM(expr_vars, i++, PyUnicode_FromString(dvar->name));
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		}
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		driver->flag &= ~DRIVER_FLAG_RENAMEVAR;
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	}
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	else {
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		expr_vars = PyTuple_GET_ITEM(((PyObject *)driver->expr_comp), 1);
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	}
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	/* add target values to a dict that will be used as '__locals__' dict */
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	driver_vars = PyDict_New(); // XXX do we need to decref this?
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	for (dvar = driver->variables.first, i = 0; dvar; dvar = dvar->next) {
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		PyObject *driver_arg = NULL;
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		float tval = 0.0f;
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		/* try to get variable value */
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		tval = driver_get_variable_value(driver, dvar);
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		driver_arg = PyFloat_FromDouble((double)tval);
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		/* try to add to dictionary */
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		/* if (PyDict_SetItemString(driver_vars, dvar->name, driver_arg)) { */
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		if (PyDict_SetItem(driver_vars, PyTuple_GET_ITEM(expr_vars, i++), driver_arg) < 0) {
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			/* this target failed - bad name */
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			if (targets_ok) {
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				/* first one - print some extra info for easier identification */
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				fprintf(stderr, "\nBPY_driver_eval() - Error while evaluating PyDriver:\n");
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				targets_ok = 0;
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			}
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			fprintf(stderr, "\tBPY_driver_eval() - couldn't add variable '%s' to namespace\n", dvar->name);
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			// BPy_errors_to_report(NULL); // TODO - reports
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			PyErr_Print();
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			PyErr_Clear();
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		}
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	}
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#if 0 // slow, with this can avoid all Py_CompileString above.
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	/* execute expression to get a value */
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	retval = PyRun_String(expr, Py_eval_input, bpy_pydriver_Dict, driver_vars);
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#else
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	/* evaluate the compiled expression */
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	if (expr_code)
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		retval = PyEval_EvalCode((void *)expr_code, bpy_pydriver_Dict, driver_vars);
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#endif
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	/* decref the driver vars first...  */
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	Py_DECREF(driver_vars);
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	/* process the result */
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	if (retval == NULL) {
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		pydriver_error(driver);
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	}
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	else if ((result = PyFloat_AsDouble(retval)) == -1.0 && PyErr_Occurred()) {
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		pydriver_error(driver);
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		Py_DECREF(retval);
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		result = 0.0;
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	}
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	else {
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		/* all fine, make sure the "invalid expression" flag is cleared */
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		driver->flag &= ~DRIVER_FLAG_INVALID;
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		Py_DECREF(retval);
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	}
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	if (use_gil)
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		PyGILState_Release(gilstate);
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	if (finite(result)) {
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		return (float)result;
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	}
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	else {
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		fprintf(stderr, "\tBPY_driver_eval() - driver '%s' evaluates to '%f'\n", dvar->name, result);
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		return 0.0f;
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	}
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}
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