some work; does not work
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@ -64,17 +64,13 @@ interaction_ufunc_float2D
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char * x_old = args[0]
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, * y_old = args[1]
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, * p_x_old = args[2]
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, * p_y_old = args[3]
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, * p_x_new = args[4]
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, * p_y_new = args[5];
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, * p_x_new = args[2]
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, * p_y_new = args[3];
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npy_intp x_old_steps = steps[0]
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, y_old_steps = steps[1]
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, p_x_old_steps = steps[2]
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, p_y_old_steps = steps[3]
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, p_x_new_steps = steps[4]
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, p_y_new_steps = steps[5];
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, p_x_new_steps = steps[2]
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, p_y_new_steps = steps[3];
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float * coefficients = (float *) data;
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float dt = coefficients[19];
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@ -102,10 +98,8 @@ interaction_ufunc_float2D
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this_x_i = *(float *)(x_old + i*x_old_steps);
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this_y_i = *(float *)(y_old + i*y_old_steps);
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// copy current momenta
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*(float *)(p_x_new + i*p_x_new_steps) = *(float *)(p_x_old + i*p_x_old_steps);
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*(float *)(p_y_new + i*p_y_new_steps) = *(float *)(p_y_old + i*p_y_old_steps);
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*(float *)(p_x_new + i*p_x_new_steps) = 0;
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*(float *)(p_y_new + i*p_y_new_steps) = 0;
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// compute and add the momentum offset
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for(j = 0; j < i; j++)
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{
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@ -156,7 +150,7 @@ interaction_ufunc_float2D
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//NPY_END_THREADS;
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}
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static char interaction_types[] =
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{ NPY_FLOAT, NPY_FLOAT, NPY_FLOAT, NPY_FLOAT, NPY_FLOAT, NPY_FLOAT};
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{ NPY_FLOAT, NPY_FLOAT, NPY_FLOAT, NPY_FLOAT};
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static char force_types[] =
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{ NPY_FLOAT, NPY_FLOAT};
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static PyUFuncGenericFunction force_funcs[1] =
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@ -245,9 +239,9 @@ interaction_UFuncWrapper_init
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interaction_funcs
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, self->data
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, interaction_types
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, 1
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, 4
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, 2
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, 1 // ntypes
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, 2 // nin
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, 2 // nout
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, PyUFunc_None
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, "interaction2D"
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, "Update the momenta according to the given coefficients and positions"
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@ -16,7 +16,7 @@ borders_y = [-100, 100]
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n_particles = 600
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frames = 100
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spawn_restriction = 1.1
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dt = 0.01
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dt = 0.1
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c[-1] = dt
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x_coords = np.random.uniform(borders_x[0] / spawn_restriction, borders_x[1] / spawn_restriction, n_particles).astype(np.float16)
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@ -37,7 +37,10 @@ class BrownIterator(object):
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if(self._i == 1):
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return self.x, self.y
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self.px, self.py = self._interaction(self.x, self.y, self.px, self.py)
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delta_px, delta_py = self._interaction(self.x, self.y)
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self.px += delta_px
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self.py += delta_py
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print(self.px)
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# XXX: We need the (-1)**i to make the problem
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# symmetric.
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self.px[np.isnan(self.px)] = self.speed_of_light * (-1)**self._i
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