wrap when moving things to outputs with direction
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@ -87,20 +87,29 @@ Output *get_output_by_name(const char *name);
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*/
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Output *get_output_containing(int x, int y);
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/**
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* Gets the output which is the last one in the given direction, for example
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* the output on the most bottom when direction == D_DOWN, the output most
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* right when direction == D_RIGHT and so on.
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*
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* This function always returns a output.
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*
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*/
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Output *get_output_most(direction_t direction, Output *current);
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/**
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* Gets the output which is the next one in the given direction.
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*
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* If close_far == CLOSEST_OUTPUT, then the output next to the current one will
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* selected. If close_far == FARTHEST_OUTPUT, the output which is the last one
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* in the given direction will be selected.
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*
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* NULL will be returned when no active outputs are present in the direction
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* specified (note that ‘current’ counts as such an output).
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*
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*/
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Output *get_output_next(direction_t direction, Output *current, output_close_far_t close_far);
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/**
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* Like get_output_next with close_far == CLOSEST_OUTPUT, but wraps.
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*
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* For example if get_output_next(D_DOWN, x, FARTHEST_OUTPUT) = NULL, then
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* get_output_next_wrap(D_DOWN, x) will return the topmost output.
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*
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* This function always returns a output: if no active outputs can be found,
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* current itself is returned.
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*
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*/
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Output *get_output_next_wrap(direction_t direction, Output *current);
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#endif
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@ -55,23 +55,15 @@ static bool definitelyGreaterThan(float a, float b, float epsilon) {
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static Output *get_output_from_string(Output *current_output, const char *output_str) {
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Output *output;
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if (strcasecmp(output_str, "left") == 0) {
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output = get_output_next(D_LEFT, current_output, CLOSEST_OUTPUT);
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if (!output)
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output = get_output_most(D_RIGHT, current_output);
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} else if (strcasecmp(output_str, "right") == 0) {
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output = get_output_next(D_RIGHT, current_output, CLOSEST_OUTPUT);
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if (!output)
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output = get_output_most(D_LEFT, current_output);
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} else if (strcasecmp(output_str, "up") == 0) {
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output = get_output_next(D_UP, current_output, CLOSEST_OUTPUT);
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if (!output)
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output = get_output_most(D_DOWN, current_output);
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} else if (strcasecmp(output_str, "down") == 0) {
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output = get_output_next(D_DOWN, current_output, CLOSEST_OUTPUT);
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if (!output)
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output = get_output_most(D_UP, current_output);
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} else output = get_output_by_name(output_str);
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if (strcasecmp(output_str, "left") == 0)
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output = get_output_next_wrap(D_LEFT, current_output);
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else if (strcasecmp(output_str, "right") == 0)
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output = get_output_next_wrap(D_RIGHT, current_output);
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else if (strcasecmp(output_str, "up") == 0)
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output = get_output_next_wrap(D_UP, current_output);
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else if (strcasecmp(output_str, "down") == 0)
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output = get_output_next_wrap(D_DOWN, current_output);
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else output = get_output_by_name(output_str);
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return output;
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}
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@ -1052,13 +1044,13 @@ void cmd_move_con_to_output(I3_CMD, char *name) {
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// TODO: clean this up with commands.spec as soon as we switched away from the lex/yacc command parser
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if (strcasecmp(name, "up") == 0)
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output = get_output_next(D_UP, current_output, CLOSEST_OUTPUT);
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output = get_output_next_wrap(D_UP, current_output);
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else if (strcasecmp(name, "down") == 0)
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output = get_output_next(D_DOWN, current_output, CLOSEST_OUTPUT);
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output = get_output_next_wrap(D_DOWN, current_output);
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else if (strcasecmp(name, "left") == 0)
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output = get_output_next(D_LEFT, current_output, CLOSEST_OUTPUT);
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output = get_output_next_wrap(D_LEFT, current_output);
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else if (strcasecmp(name, "right") == 0)
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output = get_output_next(D_RIGHT, current_output, CLOSEST_OUTPUT);
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output = get_output_next_wrap(D_RIGHT, current_output);
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else
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output = get_output_by_name(name);
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34
src/randr.c
34
src/randr.c
@ -93,15 +93,30 @@ Output *get_output_containing(int x, int y) {
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}
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/*
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* Gets the output which is the last one in the given direction, for example
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* the output on the most bottom when direction == D_DOWN, the output most
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* right when direction == D_RIGHT and so on.
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* Like get_output_next with close_far == CLOSEST_OUTPUT, but wraps.
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*
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* This function always returns a output.
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* For example if get_output_next(D_DOWN, x, FARTHEST_OUTPUT) = NULL, then
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* get_output_next_wrap(D_DOWN, x) will return the topmost output.
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*
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* This function always returns a output: if no active outputs can be found,
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* current itself is returned.
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*
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*/
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Output *get_output_most(direction_t direction, Output *current) {
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Output *best = get_output_next(direction, current, FARTHEST_OUTPUT);
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Output *get_output_next_wrap(direction_t direction, Output *current) {
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Output *best = get_output_next(direction, current, CLOSEST_OUTPUT);
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/* If no output can be found, wrap */
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if (!best) {
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direction_t opposite;
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if (direction == D_RIGHT)
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opposite = D_LEFT;
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else if (direction == D_LEFT)
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opposite = D_RIGHT;
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else if (direction == D_DOWN)
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opposite = D_UP;
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else
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opposite = D_DOWN;
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best = get_output_next(opposite, current, FARTHEST_OUTPUT);
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}
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if (!best)
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best = current;
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DLOG("current = %s, best = %s\n", current->name, best->name);
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@ -111,6 +126,13 @@ Output *get_output_most(direction_t direction, Output *current) {
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/*
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* Gets the output which is the next one in the given direction.
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*
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* If close_far == CLOSEST_OUTPUT, then the output next to the current one will
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* selected. If close_far == FARTHEST_OUTPUT, the output which is the last one
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* in the given direction will be selected.
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*
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* NULL will be returned when no active outputs are present in the direction
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* specified (note that “current” counts as such an output).
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*
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*/
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Output *get_output_next(direction_t direction, Output *current, output_close_far_t close_far) {
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Rect *cur = &(current->rect),
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