* and the resulting number is the step size for the
* resulting data source.
*/
- for(rpi=0;im->gdes[gdi].rpnp[rpi].op != OP_END;rpi++){
- if(im->gdes[gdi].rpnp[rpi].op == OP_VARIABLE ||
- im->gdes[gdi].rpnp[rpi].op == OP_PREV_OTHER){
- long ptr = im->gdes[gdi].rpnp[rpi].ptr;
- if (im->gdes[ptr].ds_cnt == 0) {
+ for(rpi=0;im->gdes[gdi].rpnp[rpi].op != OP_END;rpi++){
+ if(im->gdes[gdi].rpnp[rpi].op == OP_VARIABLE ||
+ im->gdes[gdi].rpnp[rpi].op == OP_PREV_OTHER){
+ long ptr = im->gdes[gdi].rpnp[rpi].ptr;
+ if (im->gdes[ptr].ds_cnt == 0) { /* this is a VDEF data source */
#if 0
- printf("DEBUG: inside CDEF '%s' processing VDEF '%s'\n",
- im->gdes[gdi].vname,
- im->gdes[ptr].vname);
- printf("DEBUG: value from vdef is %f\n",im->gdes[ptr].vf.val);
+ printf("DEBUG: inside CDEF '%s' processing VDEF '%s'\n",
+ im->gdes[gdi].vname,
+ im->gdes[ptr].vname);
+ printf("DEBUG: value from vdef is %f\n",im->gdes[ptr].vf.val);
#endif
im->gdes[gdi].rpnp[rpi].val = im->gdes[ptr].vf.val;
im->gdes[gdi].rpnp[rpi].op = OP_NUMBER;
- } else {
- if ((steparray =
+ } else { /* normal variables and PREF(variables) */
+
+ /* add one entry to the array that keeps track of the step sizes of the
+ * data sources going into the CDEF. */
+ if ((steparray =
rrd_realloc(steparray,
(++stepcnt+1)*sizeof(*steparray)))==NULL){
- rrd_set_error("realloc steparray");
- rpnstack_free(&rpnstack);
- return -1;
+ rrd_set_error("realloc steparray");
+ rpnstack_free(&rpnstack);
+ return -1;
};
steparray[stepcnt-1] = im->gdes[ptr].step;
* to the earliest endpoint of any of the
* rras involved (ptr)
*/
+
if(im->gdes[gdi].start < im->gdes[ptr].start)
im->gdes[gdi].start = im->gdes[ptr].start;
* further save step size and data source
* count of this rra
*/
- im->gdes[gdi].rpnp[rpi].data = im->gdes[ptr].data + im->gdes[ptr].ds;
- im->gdes[gdi].rpnp[rpi].step = im->gdes[ptr].step;
+ im->gdes[gdi].rpnp[rpi].data = im->gdes[ptr].data + im->gdes[ptr].ds;
+ im->gdes[gdi].rpnp[rpi].step = im->gdes[ptr].step;
im->gdes[gdi].rpnp[rpi].ds_cnt = im->gdes[ptr].ds_cnt;
/* backoff the *.data ptr; this is done so
/* move the data pointers to the correct period */
for(rpi=0;im->gdes[gdi].rpnp[rpi].op != OP_END;rpi++){
- if(im->gdes[gdi].rpnp[rpi].op == OP_VARIABLE ||
- im->gdes[gdi].rpnp[rpi].op == OP_PREV_OTHER){
- long ptr = im->gdes[gdi].rpnp[rpi].ptr;
+ if(im->gdes[gdi].rpnp[rpi].op == OP_VARIABLE ||
+ im->gdes[gdi].rpnp[rpi].op == OP_PREV_OTHER){
+ long ptr = im->gdes[gdi].rpnp[rpi].ptr;
long diff = im->gdes[gdi].start - im->gdes[ptr].start;
if(diff > 0)
rpnstack -> s[++stptr] = rpnp[rpi].val;
break;
case OP_VARIABLE:
- /* Sanity check: VDEFs shouldn't make it here */
+ case OP_PREV_OTHER:
+ /* Sanity check: VDEFs shouldn't make it here */
if (rpnp[rpi].ds_cnt == 0) {
rrd_set_error("VDEF made it into rpn_calc... aborting");
return -1;
* row in the rra (skip over non-relevant
* data sources)
*/
- rpnstack -> s[++stptr] = *(rpnp[rpi].data);
+ if (rpnp[rpi].op == OP_VARIABLE) {
+ rpnstack -> s[++stptr] = *(rpnp[rpi].data);
+ } else {
+ if ((output_idx) <= 0) {
+ rpnstack -> s[++stptr] = DNAN;
+ } else {
+ rpnstack -> s[++stptr] = *(rpnp[rpi].data-rpnp[rpi].ds_cnt);
+ }
+
+ }
if (data_idx % rpnp[rpi].step == 0){
rpnp[rpi].data += rpnp[rpi].ds_cnt;
}
} else {
rpnstack -> s[++stptr] = output[output_idx-1];
}
- break;
- case OP_PREV_OTHER:
- if ((output_idx) <= 0) {
- rpnstack -> s[++stptr] = DNAN;
- } else {
- rpnstack -> s[++stptr] = rpnp[rpnp[rpi].ptr].data[output_idx-1];
- }
- break;
- case OP_UNKN:
+ break;
+ case OP_UNKN:
rpnstack -> s[++stptr] = DNAN;
break;
case OP_INF: