src/model.c : debugging parsing
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@ -116,3 +116,4 @@
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</transitions>
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</transitions>
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</gem-graph-model>
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</gem-graph-model>
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@ -52,15 +52,14 @@
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struct space_unit_t
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struct space_unit_t
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{
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{
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bool lock;
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uint id;
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struct arrow_t **sites; // Array of struct arrow_t* elements
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struct arrow_t *sites[]; // Array of struct arrow_t elements
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// - lenght is multiplicity
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// - lenght is multiplicity
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};
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};
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struct space_t
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struct space_t
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{
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{
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// Dimensions of space.
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// Dimensions of space.
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// Note that a value 0 is not allowed, minimum is 1
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int x_dim;
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int x_dim;
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int y_dim;
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int y_dim;
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int z_dim;
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int z_dim;
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67
src/model.c
67
src/model.c
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@ -421,6 +421,8 @@ bool model_get_next_conditions (struct model_t *self, char *new_cond_id)
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xmlAttr *attribute;
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xmlAttr *attribute;
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xmlChar *value;
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xmlChar *value;
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printlog("NEW CALL : cur_node = %p\n", cur_node);
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if (cur_node == NULL) {
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if (cur_node == NULL) {
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// Get first state
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// Get first state
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cur_node = model_get_node(self, (xmlChar *)"conditions");
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cur_node = model_get_node(self, (xmlChar *)"conditions");
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@ -433,6 +435,8 @@ bool model_get_next_conditions (struct model_t *self, char *new_cond_id)
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return false;
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return false;
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}
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}
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printlog("END CALL : cur_node = %p\n", cur_node);
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// Lookup in properties
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// Lookup in properties
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if (model_get_node_str_attrib(cur_node, "id", new_cond_id))
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if (model_get_node_str_attrib(cur_node, "id", new_cond_id))
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return true;
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return true;
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@ -453,7 +457,7 @@ bool model_get_next_condition (struct model_t *self,
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char temp_char[25];
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char temp_char[25];
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uint check = 0; // bit field checker
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uint check = 0; // bit field checker
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//printf("NEW CALL : cur_node = %p\n", cur_node);
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printlog("NEW CALL : cur_node = %p\n", cur_node);
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assert(new_condition);
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assert(new_condition);
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assert(cond_id);
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assert(cond_id);
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@ -520,8 +524,8 @@ bool model_get_next_condition (struct model_t *self,
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}
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}
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}
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}
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//printf("DURING CALL : cur_node = %p\n", cur_node);
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printlog("DURING CALL : cur_node = %p\n", cur_node);
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//printf("DURING CALL : cur_node->name = %s\n", cur_node->name);
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printlog("DURING CALL : cur_node->name = %s\n", cur_node->name);
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// Lookup in properties
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// Lookup in properties
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if (cur_node && cur_node->properties) {
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if (cur_node && cur_node->properties) {
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@ -653,22 +657,16 @@ bool model_load (struct model_t *self)
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// Dimensions
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// Dimensions
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self->space = calloc (1, sizeof(struct space_t));
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self->space = calloc (1, sizeof(struct space_t));
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self->space->x_dim = 1;
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self->space->x_dim = 0;
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self->space->y_dim = 1;
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self->space->y_dim = 0;
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self->space->z_dim = 1;
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self->space->z_dim = 0;
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switch(self->dimension) {
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switch(self->dimension) {
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case 3:
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case 3:
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// even in 1D, we must be able to see a grid, so prevent to be 0
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if (self->space->z_dim)
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self->space->z_dim = model_get_dim_value (self, "z");
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self->space->z_dim = model_get_dim_value (self, "z");
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case 2:
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case 2:
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// even in 1D, we must be able to see a grid, so prevent to be 0
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if (self->space->y_dim)
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self->space->y_dim = model_get_dim_value (self, "y");
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self->space->y_dim = model_get_dim_value (self, "y");
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case 1:
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case 1:
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// even in 1D, we must be able to see a grid, so prevent to be 0
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if (self->space->x_dim)
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self->space->x_dim = model_get_dim_value (self, "x");
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self->space->x_dim = model_get_dim_value (self, "x");
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printlog("x_dim=%d, y_dim=%d, z_dim=%d\n",
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printlog("x_dim=%d, y_dim=%d, z_dim=%d\n",
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@ -685,7 +683,8 @@ bool model_load (struct model_t *self)
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self->space->units = calloc (self->space->x_dim
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self->space->units = calloc (self->space->x_dim
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* self->space->y_dim
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* self->space->y_dim
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* self->space->z_dim,
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* self->space->z_dim,
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sizeof(struct space_unit_t));
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sizeof(struct space_unit_t)
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+ self->multiplicity * sizeof(struct arrow_t*));
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// Multiplicity
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// Multiplicity
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self->multiplicity = model_get_multiplicity(self);
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self->multiplicity = model_get_multiplicity(self);
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@ -705,20 +704,40 @@ bool model_load (struct model_t *self)
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printlog("Initial state : %s\n", &self->states[0].id);
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printlog("Initial state : %s\n", &self->states[0].id);
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// Initial state arrows
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// Initial state arrows
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self->arrows = arrow_new (self->arrows);
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while (arrow = arrow_new (self->arrows),
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model_get_next_arrow(self,
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if (model_get_next_arrow(self,
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arrow,
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self->arrows,
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&self->states[0].id,
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&self->states[0].id,
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self->dimension)) {
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self->dimension)) {
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self->n_arrows++;
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if (arrow->x > self->space->x_dim ||
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arrow->y > self->space->y_dim ||
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while (model_get_next_arrow(self,
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arrow->z > self->space->z_dim) {
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arrow_new (self->arrows),
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printerr("Invalid coordinates for arrow %d (%d,%d,%d)\n",
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&self->states[0].id,
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self->n_arrows,
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self->dimension)) {
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arrow->x,
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self->n_arrows++;
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arrow->y,
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arrow->z);
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return false;
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}
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}
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printlog("Loading arrow %d (%d,%d,%d, %d)\n",
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self->n_arrows,
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arrow->x,
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arrow->y,
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arrow->z,
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arrow->site);
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self->space->units [
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arrow->x
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+ self->space->x_dim * arrow->y
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+ self->space->x_dim * self->space->y_dim * arrow->z
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].sites[arrow->site] = arrow;
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if (self->n_arrows == 0) {
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self->arrows = arrow;
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}
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self->n_arrows++;
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}
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}
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printlog("Loaded %d arrows\n", self->n_arrows);
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printlog("Loaded %d arrows\n", self->n_arrows);
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