next             6380 src/decNumber/decNumber.c   uInt  next;                      // work
next             6388 src/decNumber/decNumber.c   next=0;                          // all paths
next             6402 src/decNumber/decNumber.c         next+=quot;
next             6405 src/decNumber/decNumber.c         next+=*source/powers[cut];
next             6407 src/decNumber/decNumber.c       if (target<=first) *target=(Unit)next;   // write to target iff valid
next             6408 src/decNumber/decNumber.c       next=rem*powers[DECDPUN-cut];            // save remainder for next Unit
next             6414 src/decNumber/decNumber.c     *target=(Unit)next;
next             6415 src/decNumber/decNumber.c     next=0;
next             5876 src/dps8/dps8_eis.c     word9 next = EISget49(cpup, &e->ADDR2, &e->mopPos, CTN9);
next             5878 src/dps8/dps8_eis.c     word9 next = EISget49(cpup, e->mopAddress, &e->mopPos, CTN9);
next             5885 src/dps8/dps8_eis.c           e->editInsertionTable[e->mopIF - 1] = next;
next             5891 src/dps8/dps8_eis.c     sim_debug (DBG_TRACEEXT, & cpu_dev, "LTE IT[%d]<=%d\r\n", e -> mopIF - 1, next);
next              237 src/dps8/dps8_math.c     long double exponents[20], *next;
next              253 src/dps8/dps8_math.c         for (next = exponents, exponents[0] = 2.0L, bit = 1;
next              254 src/dps8/dps8_math.c              *next <= x + x;
next              255 src/dps8/dps8_math.c              bit <<= 1, next[1] = next[0] * next[0], next++);
next              257 src/dps8/dps8_math.c         for (; next >= exponents; bit >>= 1, next--)
next              258 src/dps8/dps8_math.c             if (x + x >= *next)
next              260 src/dps8/dps8_math.c                 x /= *next;
next              268 src/dps8/dps8_math.c         for (next = exponents, exponents[0] = 0.5L, bit = 1;
next              269 src/dps8/dps8_math.c              *next > x;
next              270 src/dps8/dps8_math.c              bit <<= 1, next[1] = next[0] * next[0], next++);
next              272 src/dps8/dps8_math.c         for (; next >= exponents; bit >>= 1, next--)
next              273 src/dps8/dps8_math.c             if (x < *next)
next              275 src/dps8/dps8_math.c                 x /= *next;
next              386 src/libsir/include/sir/types.h     struct _sir_queue_node* next;
next               75 src/libsir/src/sirqueue.c         sir_queue_node* next = (*q)->head;
next               76 src/libsir/src/sirqueue.c         while (next) {
next               77 src/libsir/src/sirqueue.c             sir_queue_node* this_node = next;
next               79 src/libsir/src/sirqueue.c             next                      = this_node->next;
next               95 src/libsir/src/sirqueue.c     sir_queue_node* next = q->head->next;
next               97 src/libsir/src/sirqueue.c     while (next) {
next               99 src/libsir/src/sirqueue.c         next = next->next;
next              117 src/libsir/src/sirqueue.c             sir_queue_node* next = q->head;
next              118 src/libsir/src/sirqueue.c             while (next) {
next              119 src/libsir/src/sirqueue.c                 if (!next->next) {
next              120 src/libsir/src/sirqueue.c                     next->next = _sir_queue_node_create(data);
next              121 src/libsir/src/sirqueue.c                     if (next->next) {
next              126 src/libsir/src/sirqueue.c                 next = next->next;
next              139 src/libsir/src/sirqueue.c         q->head                  = old_head->next;
next              171 src/prt2pdf/prt2pdf.c   struct _PageList * next;
next              294 src/prt2pdf/prt2pdf.c   n -> next = NULL;
next              298 src/prt2pdf/prt2pdf.c   GLOBAL_INSERT_PAGE = & n -> next;
next             2252 src/prt2pdf/prt2pdf.c       ptr = ptr -> next;
next             2300 src/prt2pdf/prt2pdf.c       PageList * next = ptr -> next;
next             2302 src/prt2pdf/prt2pdf.c       ptr = next;
next              785 src/punutil/miniz.c         int root, leaf, next, avbl, used, dpth;
next              796 src/punutil/miniz.c         for (next = 1; next < n - 1; next++)
next              800 src/punutil/miniz.c                 A[next].m_key = A[root].m_key;
next              801 src/punutil/miniz.c                 A[root++].m_key = (mz_uint16)next;
next              804 src/punutil/miniz.c                 A[next].m_key = A[leaf++].m_key;
next              805 src/punutil/miniz.c             if (leaf >= n || (root < next && A[root].m_key < A[leaf].m_key))
next              807 src/punutil/miniz.c                 A[next].m_key = (mz_uint16)(A[next].m_key + A[root].m_key);
next              808 src/punutil/miniz.c                 A[root++].m_key = (mz_uint16)next;
next              811 src/punutil/miniz.c                 A[next].m_key = (mz_uint16)(A[next].m_key + A[leaf++].m_key);
next              814 src/punutil/miniz.c         for (next = n - 3; next >= 0; next--)
next              815 src/punutil/miniz.c             A[next].m_key = A[A[next].m_key].m_key + 1;
next              819 src/punutil/miniz.c         next = n - 1;
next              829 src/punutil/miniz.c                 A[next--].m_key = (mz_uint16)(dpth);
next             5808 src/simh/scp.c     for (uptr = sim_clock_queue; uptr != QUEUE_LIST_END; uptr = uptr->next) {
next             6764 src/simh/scp.c     sim_clock_queue = uptr->next;
next             6765 src/simh/scp.c     uptr->next = NULL;
next             8931 src/simh/scp.c     sim_clock_queue = uptr->next;                       /* remove first */
next             8932 src/simh/scp.c     uptr->next = NULL;                                  /* hygiene */
next             9005 src/simh/scp.c for (cptr = sim_clock_queue; cptr != QUEUE_LIST_END; cptr = cptr->next) {
next             9012 src/simh/scp.c     cptr = uptr->next = sim_clock_queue;
next             9016 src/simh/scp.c     cptr = uptr->next = prvptr->next;                   /* insert at prvptr */
next             9017 src/simh/scp.c     prvptr->next = uptr;
next             9087 src/simh/scp.c     nptr = sim_clock_queue = uptr->next;
next             9088 src/simh/scp.c     uptr->next = NULL;                                  /* hygiene */
next             9091 src/simh/scp.c     for (cptr = sim_clock_queue; cptr != QUEUE_LIST_END; cptr = cptr->next) {
next             9092 src/simh/scp.c         if (cptr->next == uptr) {
next             9093 src/simh/scp.c             nptr = cptr->next = uptr->next;
next             9094 src/simh/scp.c             uptr->next = NULL;                          /* hygiene */
next             9100 src/simh/scp.c     nptr->time += (uptr->next) ? 0 : uptr->time;
next             9101 src/simh/scp.c if (!uptr->next)
next             9106 src/simh/scp.c if (uptr->next) {
next             9127 src/simh/scp.c if (uptr->next == NULL)
next             9146 src/simh/scp.c for (cptr = sim_clock_queue; cptr != QUEUE_LIST_END; cptr = cptr->next) {
next             9184 src/simh/scp.c for (uptr = sim_clock_queue; uptr != QUEUE_LIST_END; uptr = uptr->next)
next             9236 src/simh/scp.c             BRKTAB *bpt = bp->next;
next             9295 src/simh/scp.c     bp = bp->next;
next             9340 src/simh/scp.c bp->next = sim_brk_tab[sim_brk_ins];
next             9342 src/simh/scp.c if (bp->next == NULL)
next             9373 src/simh/scp.c         bp = bp->next;
next             9414 src/simh/scp.c             bpl = sim_brk_tab[sim_brk_ins] = bp->next;
next             9418 src/simh/scp.c               bpl->next = bp->next;
next             9425 src/simh/scp.c         bp = bp->next;
next             9439 src/simh/scp.c         bp = bp->next;
next             9556 src/simh/scp.c     BRKTAB *next;
next             9559 src/simh/scp.c         next = cur->next;
next             9560 src/simh/scp.c         cur->next = prev;
next             9562 src/simh/scp.c         cur = next;
next             9571 src/simh/scp.c         cur = cur->next;
next             9577 src/simh/scp.c         next = cur->next;
next             9578 src/simh/scp.c         cur->next = prev;
next             9580 src/simh/scp.c         cur = next;
next             9687 src/simh/scp.c     for (bp = *bpt; bp; bp = bp->next) {
next             9702 src/simh/scp.c         for (bp = *bpt; bp; bp = bp->next) {
next              423 src/simh/sim_defs.h     UNIT                *next;                          /* next active */
next              612 src/simh/sim_defs.h     BRKTAB *next;                                        /* list with same address value */
next              600 src/simh/sim_timer.c         for (uptr = sim_clock_cosched_queue[tmr]; uptr != QUEUE_LIST_END; uptr = uptr->next) { //-V763
next              694 src/simh/sim_timer.c         sim_clock_cosched_queue[tmr]  = cptr->next;
next              695 src/simh/sim_timer.c         cptr->next                    = NULL;
next              875 src/simh/sim_timer.c             sim_clock_cosched_queue[tmr] = cptr->next;
next              876 src/simh/sim_timer.c             cptr->next                   = NULL;
next              965 src/simh/sim_timer.c if (uptr->next) {                           /* On a queue? */
next              970 src/simh/sim_timer.c             sim_clock_cosched_queue[tmr] = uptr->next;
next              971 src/simh/sim_timer.c             uptr->next = NULL;
next              977 src/simh/sim_timer.c                 cptr = cptr->next)
next              978 src/simh/sim_timer.c                 if (cptr->next == (uptr)) {
next              979 src/simh/sim_timer.c                     cptr->next = (uptr)->next;
next              980 src/simh/sim_timer.c                     uptr->next = NULL;
next              984 src/simh/sim_timer.c         if (uptr->next == NULL) {           /* found? */