Paul Riseborough 21cc46edd7
EKF: Convert magnetic field observation methods to use SymPy generated code (#879)
* EKF: Add comparison test for mag field fusion generated code

* EKF: convert mag field fusion to use SymPy generated code

* EKF: Add test comparison program for yaw fusion equations

* Stop setting 0 to 0

* Reduce if/else statement to only if

* EKF: more accurate implementation for sequential fusion of magnetometer data

* test: update change indicator

* Use matrix::SparseVector<float, 24, ...> for observation jacobian

* Adapt the auto code generation to allow for different bracket styles

* Add auto generated code for mag fusion

* Add generic computation of KHP

* Apply generic computation of KHP to mag fusion

* tests: update change indicator

* tests: update change indicator

Co-authored-by: kamilritz <kritz@ethz.ch>
2020-08-11 18:57:22 +10:00

50 lines
1.8 KiB
Python

#!/usr/bin/env python3
# -*- coding: utf-8 -*-
"""
Created on Sat Mar 14 12:47:24 2020
@author: roman
"""
from sympy import ccode
from sympy.codegen.ast import float32, real
class CodeGenerator:
def __init__(self, file_name):
self.file_name = file_name
self.file = open(self.file_name, 'w')
def print_string(self, string):
self.file.write("// " + string + "\n")
def get_ccode(self, expression):
return ccode(expression, type_aliases={real:float32})
def write_subexpressions(self,subexpressions):
write_string = ""
for item in subexpressions:
write_string = write_string + "const float " + str(item[0]) + " = " + self.get_ccode(item[1]) + ";\n"
write_string = write_string + "\n\n"
self.file.write(write_string)
def write_matrix(self, matrix, variable_name, is_symmetric=False, pre_bracket="(", post_bracket=")"):
write_string = ""
if matrix.shape[0] * matrix.shape[1] == 1:
write_string = write_string + variable_name + " = " + self.get_ccode(matrix[0]) + ";\n"
elif matrix.shape[0] == 1 or matrix.shape[1] == 1:
for i in range(0,len(matrix)):
write_string = write_string + variable_name + pre_bracket + str(i) + post_bracket + " = " + self.get_ccode(matrix[i]) + ";\n"
else:
for j in range(0, matrix.shape[1]):
for i in range(0, matrix.shape[0]):
if j >= i or not is_symmetric:
write_string = write_string + variable_name + pre_bracket + str(i) + "," + str(j) + post_bracket + " = " + self.get_ccode(matrix[i,j]) + ";\n"
write_string = write_string + "\n\n"
self.file.write(write_string)
def close(self):
self.file.close()