diff options
Diffstat (limited to 'erts/emulator/beam')
27 files changed, 1081 insertions, 660 deletions
diff --git a/erts/emulator/beam/beam_debug.c b/erts/emulator/beam/beam_debug.c index 9633de2021..b33aab7eee 100644 --- a/erts/emulator/beam/beam_debug.c +++ b/erts/emulator/beam/beam_debug.c @@ -786,8 +786,8 @@ print_op(fmtfn_t to, void *to_arg, int op, int size, BeamInstr* addr) } } break; - case op_i_put_tuple_xI: - case op_i_put_tuple_yI: + case op_put_tuple2_xI: + case op_put_tuple2_yI: case op_new_map_dtI: case op_update_map_assoc_sdtI: case op_update_map_exact_jsdtI: diff --git a/erts/emulator/beam/beam_emu.c b/erts/emulator/beam/beam_emu.c index ab5920a67e..aa61a2d7f9 100644 --- a/erts/emulator/beam/beam_emu.c +++ b/erts/emulator/beam/beam_emu.c @@ -3061,12 +3061,14 @@ erts_gc_update_map_exact(Process* p, Eterm* reg, Uint live, Uint n, Eterm* new_p Uint need; flatmap_t *old_mp, *mp; Eterm res; + Eterm* old_hp; Eterm* hp; Eterm* E; Eterm* old_keys; Eterm* old_vals; Eterm new_key; Eterm map; + int changed = 0; n /= 2; /* Number of values to be updated */ ASSERT(n > 0); @@ -3133,6 +3135,7 @@ erts_gc_update_map_exact(Process* p, Eterm* reg, Uint live, Uint n, Eterm* new_p * Update map, keeping the old key tuple. */ + old_hp = p->htop; hp = p->htop; E = p->stop; @@ -3155,20 +3158,26 @@ erts_gc_update_map_exact(Process* p, Eterm* reg, Uint live, Uint n, Eterm* new_p /* Not same keys */ *hp++ = *old_vals; } else { - GET_TERM(new_p[1], *hp); - hp++; - n--; + GET_TERM(new_p[1], *hp); + if(*hp != *old_vals) changed = 1; + hp++; + n--; if (n == 0) { - /* - * All updates done. Copy remaining values - * and return the result. - */ - for (i++, old_vals++; i < num_old; i++) { - *hp++ = *old_vals++; - } - ASSERT(hp == p->htop + need); - p->htop = hp; - return res; + /* + * All updates done. Copy remaining values + * if any changed or return the original one. + */ + if(changed) { + for (i++, old_vals++; i < num_old; i++) { + *hp++ = *old_vals++; + } + ASSERT(hp == p->htop + need); + p->htop = hp; + return res; + } else { + p->htop = old_hp; + return map; + } } else { new_p += 2; GET_TERM(*new_p, new_key); diff --git a/erts/emulator/beam/beam_load.c b/erts/emulator/beam/beam_load.c index e61199a8fd..50cbb37f3e 100644 --- a/erts/emulator/beam/beam_load.c +++ b/erts/emulator/beam/beam_load.c @@ -4245,21 +4245,55 @@ gen_make_fun2(LoaderState* stp, GenOpArg idx) { ErlFunEntry* fe; GenOp* op; + Uint arity, num_free; if (idx.val >= stp->num_lambdas) { - stp->lambda_error = "missing or short chunk 'FunT'"; - fe = 0; + stp->lambda_error = "missing or short chunk 'FunT'"; + fe = 0; + num_free = 0; + arity = 0; } else { - fe = stp->lambdas[idx.val].fe; + fe = stp->lambdas[idx.val].fe; + num_free = stp->lambdas[idx.val].num_free; + arity = fe->arity; } NEW_GENOP(stp, op); - op->op = genop_i_make_fun_2; - op->arity = 2; - op->a[0].type = TAG_u; - op->a[0].val = (BeamInstr) fe; - op->a[1].type = TAG_u; - op->a[1].val = stp->lambdas[idx.val].num_free; + + /* + * It's possible this is called before init process is started, + * skip the optimisation in such case. + */ + if (num_free == 0 && erts_init_process_id != ERTS_INVALID_PID) { + Uint lit; + Eterm* hp; + ErlFunThing* funp; + + lit = new_literal(stp, &hp, ERL_FUN_SIZE); + funp = (ErlFunThing *) hp; + erts_refc_inc(&fe->refc, 2); + funp->thing_word = HEADER_FUN; + funp->next = NULL; + funp->fe = fe; + funp->num_free = 0; + funp->creator = erts_init_process_id; + funp->arity = arity; + + op->op = genop_move_2; + op->arity = 2; + op->a[0].type = TAG_q; + op->a[0].val = lit; + op->a[1].type = TAG_x; + op->a[1].val = 0; + } else { + op->op = genop_i_make_fun_2; + op->arity = 2; + op->a[0].type = TAG_u; + op->a[0].val = (BeamInstr) fe; + op->a[1].type = TAG_u; + op->a[1].val = num_free; + } + op->next = NULL; return op; } diff --git a/erts/emulator/beam/bif.c b/erts/emulator/beam/bif.c index f18af8bcd7..56ac072449 100644 --- a/erts/emulator/beam/bif.c +++ b/erts/emulator/beam/bif.c @@ -1803,6 +1803,7 @@ ebif_bang_2(BIF_ALIST_2) #define SEND_INTERNAL_ERROR (-6) #define SEND_AWAIT_RESULT (-7) #define SEND_YIELD_CONTINUE (-8) +#define SEND_SYSTEM_LIMIT (-9) static Sint remote_send(Process *p, DistEntry *dep, @@ -1842,6 +1843,8 @@ static Sint remote_send(Process *p, DistEntry *dep, res = SEND_YIELD_RETURN; else if (code == ERTS_DSIG_SEND_CONTINUE) res = SEND_YIELD_CONTINUE; + else if (code == ERTS_DSIG_SEND_TOO_LRG) + res = SEND_SYSTEM_LIMIT; else res = 0; break; @@ -2162,6 +2165,9 @@ BIF_RETTYPE send_3(BIF_ALIST_3) case SEND_BADARG: ERTS_BIF_PREP_ERROR(retval, p, BADARG); break; + case SEND_SYSTEM_LIMIT: + ERTS_BIF_PREP_ERROR(retval, p, SYSTEM_LIMIT); + break; case SEND_USER_ERROR: ERTS_BIF_PREP_ERROR(retval, p, EXC_ERROR); break; @@ -2218,6 +2224,10 @@ static BIF_RETTYPE dsend_continue_trap_1(BIF_ALIST_1) BUMP_ALL_REDS(BIF_P); BIF_TRAP1(&dsend_continue_trap_export, BIF_P, BIF_ARG_1); } + case ERTS_DSIG_SEND_TOO_LRG: { /*SEND_SYSTEM_LIMIT*/ + erts_set_gc_state(BIF_P, 1); + BIF_ERROR(BIF_P, SYSTEM_LIMIT); + } default: erts_exit(ERTS_ABORT_EXIT, "dsend_continue_trap invalid result %d\n", (int)result); break; @@ -2275,6 +2285,9 @@ Eterm erl_send(Process *p, Eterm to, Eterm msg) case SEND_BADARG: ERTS_BIF_PREP_ERROR(retval, p, BADARG); break; + case SEND_SYSTEM_LIMIT: + ERTS_BIF_PREP_ERROR(retval, p, SYSTEM_LIMIT); + break; case SEND_USER_ERROR: ERTS_BIF_PREP_ERROR(retval, p, EXC_ERROR); break; diff --git a/erts/emulator/beam/bif.tab b/erts/emulator/beam/bif.tab index 7548924178..a770524221 100644 --- a/erts/emulator/beam/bif.tab +++ b/erts/emulator/beam/bif.tab @@ -629,7 +629,6 @@ bif maps:from_list/1 bif maps:is_key/2 bif maps:keys/1 bif maps:merge/2 -bif maps:new/0 bif maps:put/3 bif maps:remove/2 bif maps:update/3 diff --git a/erts/emulator/beam/big.h b/erts/emulator/beam/big.h index 7556205063..a1ad75708c 100644 --- a/erts/emulator/beam/big.h +++ b/erts/emulator/beam/big.h @@ -42,7 +42,7 @@ typedef Uint16 ErtsHalfDigit; #undef BIG_HAVE_DOUBLE_DIGIT typedef Uint32 ErtsHalfDigit; #else -#error "can not determine machine size" +#error "cannot determine machine size" #endif typedef Uint dsize_t; /* Vector size type */ diff --git a/erts/emulator/beam/break.c b/erts/emulator/beam/break.c index 9ff52c92b8..81531f6cc8 100644 --- a/erts/emulator/beam/break.c +++ b/erts/emulator/beam/break.c @@ -108,6 +108,7 @@ process_killer(void) erts_exit(0, ""); switch(j) { case 'k': + ASSERT(erts_init_process_id != ERTS_INVALID_PID); /* Send a 'kill' exit signal from init process */ erts_proc_sig_send_exit(NULL, erts_init_process_id, rp->common.id, am_kill, NIL, diff --git a/erts/emulator/beam/dist.c b/erts/emulator/beam/dist.c index 146c00b07d..db594a23a0 100644 --- a/erts/emulator/beam/dist.c +++ b/erts/emulator/beam/dist.c @@ -1924,6 +1924,12 @@ erts_dsig_send(ErtsDSigData *dsdp, struct erts_dsig_send_context* ctx) ASSERT(ctx->obuf->ext_endp <= &ctx->obuf->data[0] + ctx->data_size); ctx->data_size = ctx->obuf->ext_endp - ctx->obuf->extp; + if (ctx->data_size > (Uint) INT_MAX) { + free_dist_obuf(ctx->obuf); + ctx->obuf = NULL; + retval = ERTS_DSIG_SEND_TOO_LRG; + goto done; + } ctx->obuf->hopefull_flags = ctx->u.ec.hopefull_flags; /* diff --git a/erts/emulator/beam/dist.h b/erts/emulator/beam/dist.h index dda2029a4c..55204eb83d 100644 --- a/erts/emulator/beam/dist.h +++ b/erts/emulator/beam/dist.h @@ -376,6 +376,7 @@ typedef struct { #define ERTS_DSIG_SEND_OK 0 #define ERTS_DSIG_SEND_YIELD 1 #define ERTS_DSIG_SEND_CONTINUE 2 +#define ERTS_DSIG_SEND_TOO_LRG 3 extern int erts_dsig_send_link(ErtsDSigData *, Eterm, Eterm); extern int erts_dsig_send_msg(Eterm, Eterm, ErtsSendContext*); diff --git a/erts/emulator/beam/erl_alloc.c b/erts/emulator/beam/erl_alloc.c index 8fe1ccb758..36c46fd7aa 100644 --- a/erts/emulator/beam/erl_alloc.c +++ b/erts/emulator/beam/erl_alloc.c @@ -64,9 +64,6 @@ # error "Too many schedulers; cannot create that many pref alloc instances" #endif -#define ERTS_ALC_FIX_TYPE_IX(T) \ - (ERTS_ALC_T2N((T)) - ERTS_ALC_N_MIN_A_FIXED_SIZE) - #define ERTS_ALC_DEFAULT_MAX_THR_PREF ERTS_MAX_NO_OF_SCHEDULERS #if defined(SMALL_MEMORY) || defined(PURIFY) || defined(VALGRIND) @@ -156,20 +153,13 @@ ERTS_SCHED_PREF_QUICK_ALLOC_IMPL(aireq, ErtsAlcType_t erts_fix_core_allocator_ix; -enum allctr_type { - GOODFIT, - BESTFIT, - AFIT, - FIRSTFIT -}; - struct au_init { int enable; int thr_spec; int disable_allowed; int thr_spec_allowed; int carrier_migration_allowed; - enum allctr_type atype; + ErtsAlcStrat_t astrat; struct { AllctrInit_t util; GFAllctrInit_t gf; @@ -219,7 +209,9 @@ typedef struct { struct au_init test_alloc; } erts_alc_hndl_args_init_t; -#define ERTS_AU_INIT__ {0, 0, 1, 1, 1, GOODFIT, DEFAULT_ALLCTR_INIT, {1,1,1,1}} +#define ERTS_AU_INIT__ {0, 0, 1, 1, 1, \ + ERTS_ALC_S_GOODFIT, DEFAULT_ALLCTR_INIT, \ + {1,1,1,1}} #define SET_DEFAULT_ALLOC_OPTS(IP) \ do { \ @@ -233,7 +225,7 @@ set_default_sl_alloc_opts(struct au_init *ip) SET_DEFAULT_ALLOC_OPTS(ip); ip->enable = AU_ALLOC_DEFAULT_ENABLE(1); ip->thr_spec = 1; - ip->atype = GOODFIT; + ip->astrat = ERTS_ALC_S_GOODFIT; ip->init.util.name_prefix = "sl_"; ip->init.util.alloc_no = ERTS_ALC_A_SHORT_LIVED; #ifndef SMALL_MEMORY @@ -252,7 +244,7 @@ set_default_std_alloc_opts(struct au_init *ip) SET_DEFAULT_ALLOC_OPTS(ip); ip->enable = AU_ALLOC_DEFAULT_ENABLE(1); ip->thr_spec = 1; - ip->atype = BESTFIT; + ip->astrat = ERTS_ALC_S_BESTFIT; ip->init.util.name_prefix = "std_"; ip->init.util.alloc_no = ERTS_ALC_A_STANDARD; #ifndef SMALL_MEMORY @@ -270,7 +262,7 @@ set_default_ll_alloc_opts(struct au_init *ip) SET_DEFAULT_ALLOC_OPTS(ip); ip->enable = AU_ALLOC_DEFAULT_ENABLE(1); ip->thr_spec = 0; - ip->atype = BESTFIT; + ip->astrat = ERTS_ALC_S_BESTFIT; ip->init.bf.ao = 1; ip->init.util.ramv = 0; ip->init.util.mmsbc = 0; @@ -299,7 +291,7 @@ set_default_literal_alloc_opts(struct au_init *ip) ip->disable_allowed = 0; ip->thr_spec_allowed = 0; ip->carrier_migration_allowed = 0; - ip->atype = BESTFIT; + ip->astrat = ERTS_ALC_S_BESTFIT; ip->init.bf.ao = 1; ip->init.util.ramv = 0; ip->init.util.mmsbc = 0; @@ -349,7 +341,7 @@ set_default_exec_alloc_opts(struct au_init *ip) ip->disable_allowed = 0; ip->thr_spec_allowed = 0; ip->carrier_migration_allowed = 0; - ip->atype = BESTFIT; + ip->astrat = ERTS_ALC_S_BESTFIT; ip->init.bf.ao = 1; ip->init.util.ramv = 0; ip->init.util.mmsbc = 0; @@ -378,7 +370,7 @@ set_default_temp_alloc_opts(struct au_init *ip) ip->thr_spec = 1; ip->disable_allowed = 0; ip->carrier_migration_allowed = 0; - ip->atype = AFIT; + ip->astrat = ERTS_ALC_S_AFIT; ip->init.util.name_prefix = "temp_"; ip->init.util.alloc_no = ERTS_ALC_A_TEMPORARY; #ifndef SMALL_MEMORY @@ -397,7 +389,7 @@ set_default_eheap_alloc_opts(struct au_init *ip) SET_DEFAULT_ALLOC_OPTS(ip); ip->enable = AU_ALLOC_DEFAULT_ENABLE(1); ip->thr_spec = 1; - ip->atype = GOODFIT; + ip->astrat = ERTS_ALC_S_GOODFIT; ip->init.util.name_prefix = "eheap_"; ip->init.util.alloc_no = ERTS_ALC_A_EHEAP; #ifndef SMALL_MEMORY @@ -416,7 +408,7 @@ set_default_binary_alloc_opts(struct au_init *ip) SET_DEFAULT_ALLOC_OPTS(ip); ip->enable = AU_ALLOC_DEFAULT_ENABLE(1); ip->thr_spec = 1; - ip->atype = BESTFIT; + ip->astrat = ERTS_ALC_S_BESTFIT; ip->init.util.name_prefix = "binary_"; ip->init.util.alloc_no = ERTS_ALC_A_BINARY; #ifndef SMALL_MEMORY @@ -435,7 +427,7 @@ set_default_ets_alloc_opts(struct au_init *ip) SET_DEFAULT_ALLOC_OPTS(ip); ip->enable = AU_ALLOC_DEFAULT_ENABLE(1); ip->thr_spec = 1; - ip->atype = BESTFIT; + ip->astrat = ERTS_ALC_S_BESTFIT; ip->init.util.name_prefix = "ets_"; ip->init.util.alloc_no = ERTS_ALC_A_ETS; #ifndef SMALL_MEMORY @@ -453,7 +445,7 @@ set_default_driver_alloc_opts(struct au_init *ip) SET_DEFAULT_ALLOC_OPTS(ip); ip->enable = AU_ALLOC_DEFAULT_ENABLE(1); ip->thr_spec = 1; - ip->atype = BESTFIT; + ip->astrat = ERTS_ALC_S_BESTFIT; ip->init.util.name_prefix = "driver_"; ip->init.util.alloc_no = ERTS_ALC_A_DRIVER; #ifndef SMALL_MEMORY @@ -473,7 +465,7 @@ set_default_fix_alloc_opts(struct au_init *ip, SET_DEFAULT_ALLOC_OPTS(ip); ip->enable = AU_ALLOC_DEFAULT_ENABLE(1); ip->thr_spec = 1; - ip->atype = BESTFIT; + ip->astrat = ERTS_ALC_S_BESTFIT; ip->init.bf.ao = 1; ip->init.util.name_prefix = "fix_"; ip->init.util.fix_type_size = fix_type_sizes; @@ -493,7 +485,7 @@ set_default_test_alloc_opts(struct au_init *ip) SET_DEFAULT_ALLOC_OPTS(ip); ip->enable = 0; /* Disabled by default */ ip->thr_spec = -1 * erts_no_schedulers; - ip->atype = FIRSTFIT; + ip->astrat = ERTS_ALC_S_FIRSTFIT; ip->init.aoff.crr_order = FF_AOFF; ip->init.aoff.blk_order = FF_BF; ip->init.util.name_prefix = "test_"; @@ -552,8 +544,8 @@ start_au_allocator(ErtsAlcType_t alctr_n, static void refuse_af_strategy(struct au_init *init) { - if (init->atype == AFIT) - init->atype = GOODFIT; + if (init->astrat == ERTS_ALC_S_AFIT) + init->astrat = ERTS_ALC_S_GOODFIT; } #ifdef HARD_DEBUG @@ -576,7 +568,10 @@ static void adjust_fix_alloc_sizes(UWord extra_block_size) for (i=0; i < tspec->size; i++) { Allctr_t* allctr = tspec->allctr[i]; for (j=0; j < ERTS_ALC_NO_FIXED_SIZES; ++j) { - allctr->fix[j].type_size += extra_block_size; + size_t size = allctr->fix[j].type_size; + size = MAX(size + extra_block_size, + sizeof(ErtsAllctrDDBlock_t)); + allctr->fix[j].type_size = size; } } } @@ -584,8 +579,11 @@ static void adjust_fix_alloc_sizes(UWord extra_block_size) { Allctr_t* allctr = erts_allctrs_info[ERTS_ALC_A_FIXED_SIZE].extra; for (j=0; j < ERTS_ALC_NO_FIXED_SIZES; ++j) { - allctr->fix[j].type_size += extra_block_size; - } + size_t size = allctr->fix[j].type_size; + size = MAX(size + extra_block_size, + sizeof(ErtsAllctrDDBlock_t)); + allctr->fix[j].type_size = size; + } } } } @@ -597,7 +595,7 @@ strategy_support_carrier_migration(struct au_init *auip) * Currently only aoff* and ageff* support carrier * migration, i.e, type AOFIRSTFIT. */ - return auip->atype == FIRSTFIT; + return auip->astrat == ERTS_ALC_S_FIRSTFIT; } static ERTS_INLINE void @@ -612,7 +610,7 @@ adjust_carrier_migration_support(struct au_init *auip) */ if (!strategy_support_carrier_migration(auip)) { /* Default to aoffcbf */ - auip->atype = FIRSTFIT; + auip->astrat = ERTS_ALC_S_FIRSTFIT; auip->init.aoff.crr_order = FF_AOFF; auip->init.aoff.blk_order = FF_BF; } @@ -1018,7 +1016,7 @@ start_au_allocator(ErtsAlcType_t alctr_n, int i; int size = 1; void *as0; - enum allctr_type atype; + ErtsAlcStrat_t astrat; ErtsAllocatorFunctions_t *af = &erts_allctrs[alctr_n]; ErtsAllocatorInfo_t *ai = &erts_allctrs_info[alctr_n]; ErtsAllocatorThrSpec_t *tspec = &erts_allctr_thr_spec[alctr_n]; @@ -1077,7 +1075,7 @@ start_au_allocator(ErtsAlcType_t alctr_n, for (i = 0; i < size; i++) { Allctr_t *as; - atype = init->atype; + astrat = init->astrat; if (!init->thr_spec) as0 = state; @@ -1094,8 +1092,8 @@ start_au_allocator(ErtsAlcType_t alctr_n, if (i != 0) init->init.util.ts = 0; else { - if (atype == AFIT) - atype = GOODFIT; + if (astrat == ERTS_ALC_S_AFIT) + astrat = ERTS_ALC_S_GOODFIT; init->init.util.ts = 1; } init->init.util.tspec = init->thr_spec + 1; @@ -1109,25 +1107,26 @@ start_au_allocator(ErtsAlcType_t alctr_n, (((char *) fix_lists) + fix_list_size)); } + init->init.util.alloc_strat = astrat; init->init.util.ix = i; - switch (atype) { - case GOODFIT: + switch (astrat) { + case ERTS_ALC_S_GOODFIT: as = erts_gfalc_start((GFAllctr_t *) as0, &init->init.gf, &init->init.util); break; - case BESTFIT: + case ERTS_ALC_S_BESTFIT: as = erts_bfalc_start((BFAllctr_t *) as0, &init->init.bf, &init->init.util); break; - case AFIT: + case ERTS_ALC_S_AFIT: as = erts_afalc_start((AFAllctr_t *) as0, &init->init.af, &init->init.util); break; - case FIRSTFIT: + case ERTS_ALC_S_FIRSTFIT: as = erts_aoffalc_start((AOFFAllctr_t *) as0, &init->init.aoff, &init->init.util); @@ -1363,51 +1362,59 @@ handle_au_arg(struct au_init *auip, else if(has_prefix("as", sub_param)) { char *alg = get_value(sub_param + 2, argv, ip); if (sys_strcmp("bf", alg) == 0) { - auip->atype = BESTFIT; + auip->astrat = ERTS_ALC_S_BESTFIT; auip->init.bf.ao = 0; } else if (sys_strcmp("aobf", alg) == 0) { - auip->atype = BESTFIT; + auip->astrat = ERTS_ALC_S_BESTFIT; auip->init.bf.ao = 1; } else if (sys_strcmp("gf", alg) == 0) { - auip->atype = GOODFIT; + auip->astrat = ERTS_ALC_S_GOODFIT; } else if (sys_strcmp("af", alg) == 0) { - auip->atype = AFIT; + auip->astrat = ERTS_ALC_S_AFIT; } else if (sys_strcmp("aoff", alg) == 0) { - auip->atype = FIRSTFIT; + auip->astrat = ERTS_ALC_S_FIRSTFIT; auip->init.aoff.crr_order = FF_AOFF; auip->init.aoff.blk_order = FF_AOFF; } else if (sys_strcmp("aoffcbf", alg) == 0) { - auip->atype = FIRSTFIT; + auip->astrat = ERTS_ALC_S_FIRSTFIT; auip->init.aoff.crr_order = FF_AOFF; auip->init.aoff.blk_order = FF_BF; } else if (sys_strcmp("aoffcaobf", alg) == 0) { - auip->atype = FIRSTFIT; + auip->astrat = ERTS_ALC_S_FIRSTFIT; auip->init.aoff.crr_order = FF_AOFF; auip->init.aoff.blk_order = FF_AOBF; } else if (sys_strcmp("ageffcaoff", alg) == 0) { - auip->atype = FIRSTFIT; + auip->astrat = ERTS_ALC_S_FIRSTFIT; auip->init.aoff.crr_order = FF_AGEFF; auip->init.aoff.blk_order = FF_AOFF; } else if (sys_strcmp("ageffcbf", alg) == 0) { - auip->atype = FIRSTFIT; + auip->astrat = ERTS_ALC_S_FIRSTFIT; auip->init.aoff.crr_order = FF_AGEFF; auip->init.aoff.blk_order = FF_BF; } else if (sys_strcmp("ageffcaobf", alg) == 0) { - auip->atype = FIRSTFIT; + auip->astrat = ERTS_ALC_S_FIRSTFIT; auip->init.aoff.crr_order = FF_AGEFF; auip->init.aoff.blk_order = FF_AOBF; } else { - bad_value(param, sub_param + 1, alg); + if (auip->init.util.alloc_no == ERTS_ALC_A_TEST + && sys_strcmp("chaosff", alg) == 0) { + auip->astrat = ERTS_ALC_S_FIRSTFIT; + auip->init.aoff.crr_order = FF_CHAOS; + auip->init.aoff.blk_order = FF_CHAOS; + } + else { + bad_value(param, sub_param + 1, alg); + } } if (!strategy_support_carrier_migration(auip)) auip->init.util.acul = 0; @@ -2030,33 +2037,55 @@ erts_realloc_n_enomem(ErtsAlcType_t n, void *ptr, Uint size) } static ERTS_INLINE UWord -alcu_size(ErtsAlcType_t ai, ErtsAlcUFixInfo_t *fi, int fisz) +alcu_size(ErtsAlcType_t alloc_no, ErtsAlcUFixInfo_t *fi, int fisz) { - UWord res = 0; + UWord res; + int ai; - ASSERT(erts_allctrs_info[ai].enabled); - ASSERT(erts_allctrs_info[ai].alloc_util); + if (!erts_allctrs_info[alloc_no].thr_spec) { + AllctrSize_t size; + Allctr_t *allctr; - if (!erts_allctrs_info[ai].thr_spec) { - Allctr_t *allctr = erts_allctrs_info[ai].extra; - AllctrSize_t asize; - erts_alcu_current_size(allctr, &asize, fi, fisz); - res += asize.blocks; + allctr = erts_allctrs_info[alloc_no].extra; + erts_alcu_current_size(allctr, &size, fi, fisz); + + return size.blocks; } - else { - ErtsAllocatorThrSpec_t *tspec = &erts_allctr_thr_spec[ai]; - int i; - ASSERT(tspec->enabled); + res = 0; - for (i = tspec->size - 1; i >= 0; i--) { - Allctr_t *allctr = tspec->allctr[i]; - AllctrSize_t asize; - if (allctr) { - erts_alcu_current_size(allctr, &asize, fi, fisz); - res += asize.blocks; - } - } + /* Thread-specific allocators can migrate carriers across types, so we have + * to visit every allocator type to gather information on blocks that were + * allocated by us. */ + for (ai = ERTS_ALC_A_MIN; ai < ERTS_ALC_A_MAX; ai++) { + ErtsAllocatorThrSpec_t *tspec; + Allctr_t *allctr; + int i; + + if (!erts_allctrs_info[ai].thr_spec) { + continue; + } + + tspec = &erts_allctr_thr_spec[ai]; + ASSERT(tspec->enabled); + + for (i = tspec->size - 1; i >= 0; i--) { + allctr = tspec->allctr[i]; + + if (allctr) { + AllctrSize_t size; + + if (ai == alloc_no) { + erts_alcu_current_size(allctr, &size, fi, fisz); + } else { + erts_alcu_foreign_size(allctr, alloc_no, &size); + } + + ASSERT(((SWord)size.blocks) >= 0); + + res += size.blocks; + } + } } return res; @@ -2400,6 +2429,7 @@ erts_memory(fmtfn_t *print_to_p, void *print_to_arg, void *proc, Eterm earg) } if (want_tot_or_sys) { + ASSERT(size.total >= size.processes); size.system = size.total - size.processes; } @@ -3459,29 +3489,29 @@ UWord erts_alc_test(UWord op, UWord a1, UWord a2, UWord a3) switch (op) { case 0xf00: if (((Allctr_t *) a1)->thread_safe) - return (UWord) erts_alcu_alloc_ts(ERTS_ALC_T_UNDEF, + return (UWord) erts_alcu_alloc_ts(ERTS_ALC_T_TEST, (void *) a1, (Uint) a2); else - return (UWord) erts_alcu_alloc(ERTS_ALC_T_UNDEF, + return (UWord) erts_alcu_alloc(ERTS_ALC_T_TEST, (void *) a1, (Uint) a2); case 0xf01: if (((Allctr_t *) a1)->thread_safe) - return (UWord) erts_alcu_realloc_ts(ERTS_ALC_T_UNDEF, + return (UWord) erts_alcu_realloc_ts(ERTS_ALC_T_TEST, (void *) a1, (void *) a2, (Uint) a3); else - return (UWord) erts_alcu_realloc(ERTS_ALC_T_UNDEF, + return (UWord) erts_alcu_realloc(ERTS_ALC_T_TEST, (void *) a1, (void *) a2, (Uint) a3); case 0xf02: if (((Allctr_t *) a1)->thread_safe) - erts_alcu_free_ts(ERTS_ALC_T_UNDEF, (void *) a1, (void *) a2); + erts_alcu_free_ts(ERTS_ALC_T_TEST, (void *) a1, (void *) a2); else - erts_alcu_free(ERTS_ALC_T_UNDEF, (void *) a1, (void *) a2); + erts_alcu_free(ERTS_ALC_T_TEST, (void *) a1, (void *) a2); return 0; case 0xf03: { Allctr_t *allctr; @@ -3489,8 +3519,10 @@ UWord erts_alc_test(UWord op, UWord a1, UWord a2, UWord a3) SET_DEFAULT_ALLOC_OPTS(&init); init.enable = 1; - init.atype = GOODFIT; + init.astrat = ERTS_ALC_S_GOODFIT; init.init.util.name_prefix = (char *) a1; + init.init.util.alloc_no = ERTS_ALC_A_TEST; + init.init.util.alloc_strat = init.astrat; init.init.util.ts = 1; if ((char **) a3) { char **argv = (char **) a3; @@ -3504,31 +3536,31 @@ UWord erts_alc_test(UWord op, UWord a1, UWord a2, UWord a3) } } - switch (init.atype) { - case GOODFIT: + switch (init.astrat) { + case ERTS_ALC_S_GOODFIT: allctr = erts_gfalc_start((GFAllctr_t *) - erts_alloc(ERTS_ALC_T_UNDEF, + erts_alloc(ERTS_ALC_T_TEST, sizeof(GFAllctr_t)), &init.init.gf, &init.init.util); break; - case BESTFIT: + case ERTS_ALC_S_BESTFIT: allctr = erts_bfalc_start((BFAllctr_t *) - erts_alloc(ERTS_ALC_T_UNDEF, + erts_alloc(ERTS_ALC_T_TEST, sizeof(BFAllctr_t)), &init.init.bf, &init.init.util); break; - case AFIT: + case ERTS_ALC_S_AFIT: allctr = erts_afalc_start((AFAllctr_t *) - erts_alloc(ERTS_ALC_T_UNDEF, + erts_alloc(ERTS_ALC_T_TEST, sizeof(AFAllctr_t)), &init.init.af, &init.init.util); break; - case FIRSTFIT: + case ERTS_ALC_S_FIRSTFIT: allctr = erts_aoffalc_start((AOFFAllctr_t *) - erts_alloc(ERTS_ALC_T_UNDEF, + erts_alloc(ERTS_ALC_T_TEST, sizeof(AOFFAllctr_t)), &init.init.aoff, &init.init.util); @@ -3544,7 +3576,7 @@ UWord erts_alc_test(UWord op, UWord a1, UWord a2, UWord a3) } case 0xf04: erts_alcu_stop((Allctr_t *) a1); - erts_free(ERTS_ALC_T_UNDEF, (void *) a1); + erts_free(ERTS_ALC_T_TEST, (void *) a1); break; case 0xf05: return (UWord) 1; case 0xf06: return (UWord) ((Allctr_t *) a1)->thread_safe; @@ -3554,7 +3586,7 @@ UWord erts_alc_test(UWord op, UWord a1, UWord a2, UWord a3) case 0xf07: return (UWord) ((Allctr_t *) a1)->thread_safe; #endif case 0xf08: { - ethr_mutex *mtx = erts_alloc(ERTS_ALC_T_UNDEF, sizeof(ethr_mutex)); + ethr_mutex *mtx = erts_alloc(ERTS_ALC_T_TEST, sizeof(ethr_mutex)); if (ethr_mutex_init(mtx) != 0) ERTS_ALC_TEST_ABORT; return (UWord) mtx; @@ -3563,7 +3595,7 @@ UWord erts_alc_test(UWord op, UWord a1, UWord a2, UWord a3) ethr_mutex *mtx = (ethr_mutex *) a1; if (ethr_mutex_destroy(mtx) != 0) ERTS_ALC_TEST_ABORT; - erts_free(ERTS_ALC_T_UNDEF, (void *) mtx); + erts_free(ERTS_ALC_T_TEST, (void *) mtx); break; } case 0xf0a: @@ -3573,7 +3605,7 @@ UWord erts_alc_test(UWord op, UWord a1, UWord a2, UWord a3) ethr_mutex_unlock((ethr_mutex *) a1); break; case 0xf0c: { - ethr_cond *cnd = erts_alloc(ERTS_ALC_T_UNDEF, sizeof(ethr_cond)); + ethr_cond *cnd = erts_alloc(ERTS_ALC_T_TEST, sizeof(ethr_cond)); if (ethr_cond_init(cnd) != 0) ERTS_ALC_TEST_ABORT; return (UWord) cnd; @@ -3582,7 +3614,7 @@ UWord erts_alc_test(UWord op, UWord a1, UWord a2, UWord a3) ethr_cond *cnd = (ethr_cond *) a1; if (ethr_cond_destroy(cnd) != 0) ERTS_ALC_TEST_ABORT; - erts_free(ERTS_ALC_T_UNDEF, (void *) cnd); + erts_free(ERTS_ALC_T_TEST, (void *) cnd); break; } case 0xf0e: @@ -3596,7 +3628,7 @@ UWord erts_alc_test(UWord op, UWord a1, UWord a2, UWord a3) break; } case 0xf10: { - ethr_tid *tid = erts_alloc(ERTS_ALC_T_UNDEF, sizeof(ethr_tid)); + ethr_tid *tid = erts_alloc(ERTS_ALC_T_TEST, sizeof(ethr_tid)); if (ethr_thr_create(tid, (void * (*)(void *)) a1, (void *) a2, @@ -3608,7 +3640,7 @@ UWord erts_alc_test(UWord op, UWord a1, UWord a2, UWord a3) ethr_tid *tid = (ethr_tid *) a1; if (ethr_thr_join(*tid, NULL) != 0) ERTS_ALC_TEST_ABORT; - erts_free(ERTS_ALC_T_UNDEF, (void *) tid); + erts_free(ERTS_ALC_T_TEST, (void *) tid); break; } case 0xf12: @@ -3960,9 +3992,10 @@ check_memory_fence(void *ptr, Uint *size, ErtsAlcType_t n, int func) static ErtsAllocatorFunctions_t real_allctrs[ERTS_ALC_A_MAX+1]; static void * -debug_alloc(ErtsAlcType_t n, void *extra, Uint size) +debug_alloc(ErtsAlcType_t type, void *extra, Uint size) { ErtsAllocatorFunctions_t *real_af = (ErtsAllocatorFunctions_t *) extra; + ErtsAlcType_t n; Uint dsize; void *res; @@ -3970,9 +4003,11 @@ debug_alloc(ErtsAlcType_t n, void *extra, Uint size) erts_hdbg_chk_blks(); #endif + n = ERTS_ALC_T2N(type); + ASSERT(ERTS_ALC_N_MIN <= n && n <= ERTS_ALC_N_MAX); dsize = size + FENCE_SZ; - res = (*real_af->alloc)(n, real_af->extra, dsize); + res = (*real_af->alloc)(type, real_af->extra, dsize); res = set_memory_fence(res, size, n); @@ -3986,14 +4021,17 @@ debug_alloc(ErtsAlcType_t n, void *extra, Uint size) static void * -debug_realloc(ErtsAlcType_t n, void *extra, void *ptr, Uint size) +debug_realloc(ErtsAlcType_t type, void *extra, void *ptr, Uint size) { ErtsAllocatorFunctions_t *real_af = (ErtsAllocatorFunctions_t *) extra; + ErtsAlcType_t n; Uint dsize; Uint old_size; void *dptr; void *res; + n = ERTS_ALC_T2N(type); + ASSERT(ERTS_ALC_N_MIN <= n && n <= ERTS_ALC_N_MAX); dsize = size + FENCE_SZ; @@ -4008,7 +4046,7 @@ debug_realloc(ErtsAlcType_t n, void *extra, void *ptr, Uint size) 0xf, sizeof(Uint) + old_size - size); - res = (*real_af->realloc)(n, real_af->extra, dptr, dsize); + res = (*real_af->realloc)(type, real_af->extra, dptr, dsize); res = set_memory_fence(res, size, n); @@ -4021,12 +4059,16 @@ debug_realloc(ErtsAlcType_t n, void *extra, void *ptr, Uint size) } static void -debug_free(ErtsAlcType_t n, void *extra, void *ptr) +debug_free(ErtsAlcType_t type, void *extra, void *ptr) { ErtsAllocatorFunctions_t *real_af = (ErtsAllocatorFunctions_t *) extra; + ErtsAlcType_t n; void *dptr; Uint size; - int free_pattern = n; + int free_pattern; + + n = ERTS_ALC_T2N(type); + free_pattern = n; ASSERT(ERTS_ALC_N_MIN <= n && n <= ERTS_ALC_N_MAX); @@ -4041,7 +4083,7 @@ debug_free(ErtsAlcType_t n, void *extra, void *ptr) #endif sys_memset((void *) dptr, free_pattern, size + FENCE_SZ); - (*real_af->free)(n, real_af->extra, dptr); + (*real_af->free)(type, real_af->extra, dptr); #ifdef PRINT_OPS fprintf(stderr, "free(%s, 0x%lx)\r\n", ERTS_ALC_N2TD(n), (Uint) ptr); diff --git a/erts/emulator/beam/erl_alloc.h b/erts/emulator/beam/erl_alloc.h index fcb58ff58a..c13cf3f5b0 100644 --- a/erts/emulator/beam/erl_alloc.h +++ b/erts/emulator/beam/erl_alloc.h @@ -26,10 +26,23 @@ #define ERL_THR_PROGRESS_TSD_TYPE_ONLY #include "erl_thr_progress.h" #undef ERL_THR_PROGRESS_TSD_TYPE_ONLY -#include "erl_alloc_util.h" #include "erl_threads.h" #include "erl_mmap.h" +typedef enum { + ERTS_ALC_S_INVALID = 0, + + ERTS_ALC_S_GOODFIT, + ERTS_ALC_S_BESTFIT, + ERTS_ALC_S_AFIT, + ERTS_ALC_S_FIRSTFIT, + + ERTS_ALC_S_MIN = ERTS_ALC_S_GOODFIT, + ERTS_ALC_S_MAX = ERTS_ALC_S_FIRSTFIT +} ErtsAlcStrat_t; + +#include "erl_alloc_util.h" + #ifdef DEBUG # undef ERTS_ALC_WANT_INLINE # define ERTS_ALC_WANT_INLINE 0 @@ -52,6 +65,14 @@ #define ERTS_ALC_NO_FIXED_SIZES \ (ERTS_ALC_N_MAX_A_FIXED_SIZE - ERTS_ALC_N_MIN_A_FIXED_SIZE + 1) +#define ERTS_ALC_IS_FIX_TYPE(T) \ + (ERTS_ALC_T2N(T) >= ERTS_ALC_N_MIN_A_FIXED_SIZE && \ + ERTS_ALC_T2N(T) <= ERTS_ALC_N_MAX_A_FIXED_SIZE) + +#define ERTS_ALC_FIX_TYPE_IX(T) \ + (ASSERT(ERTS_ALC_IS_FIX_TYPE(T)), \ + ERTS_ALC_T2N((T)) - ERTS_ALC_N_MIN_A_FIXED_SIZE) + void erts_sys_alloc_init(void); void *erts_sys_alloc(ErtsAlcType_t, void *, Uint); void *erts_sys_realloc(ErtsAlcType_t, void *, void *, Uint); @@ -228,7 +249,7 @@ void *erts_alloc(ErtsAlcType_t type, Uint size) void *res; ERTS_MSACC_PUSH_AND_SET_STATE_X(ERTS_MSACC_STATE_ALLOC); res = (*erts_allctrs[ERTS_ALC_T2A(type)].alloc)( - ERTS_ALC_T2N(type), + type, erts_allctrs[ERTS_ALC_T2A(type)].extra, size); if (!res) @@ -243,7 +264,7 @@ void *erts_realloc(ErtsAlcType_t type, void *ptr, Uint size) void *res; ERTS_MSACC_PUSH_AND_SET_STATE_X(ERTS_MSACC_STATE_ALLOC); res = (*erts_allctrs[ERTS_ALC_T2A(type)].realloc)( - ERTS_ALC_T2N(type), + type, erts_allctrs[ERTS_ALC_T2A(type)].extra, ptr, size); @@ -258,7 +279,7 @@ void erts_free(ErtsAlcType_t type, void *ptr) { ERTS_MSACC_PUSH_AND_SET_STATE_X(ERTS_MSACC_STATE_ALLOC); (*erts_allctrs[ERTS_ALC_T2A(type)].free)( - ERTS_ALC_T2N(type), + type, erts_allctrs[ERTS_ALC_T2A(type)].extra, ptr); ERTS_MSACC_POP_STATE_X(); @@ -271,7 +292,7 @@ void *erts_alloc_fnf(ErtsAlcType_t type, Uint size) void *res; ERTS_MSACC_PUSH_AND_SET_STATE_X(ERTS_MSACC_STATE_ALLOC); res = (*erts_allctrs[ERTS_ALC_T2A(type)].alloc)( - ERTS_ALC_T2N(type), + type, erts_allctrs[ERTS_ALC_T2A(type)].extra, size); ERTS_MSACC_POP_STATE_X(); @@ -285,7 +306,7 @@ void *erts_realloc_fnf(ErtsAlcType_t type, void *ptr, Uint size) void *res; ERTS_MSACC_PUSH_AND_SET_STATE_X(ERTS_MSACC_STATE_ALLOC); res = (*erts_allctrs[ERTS_ALC_T2A(type)].realloc)( - ERTS_ALC_T2N(type), + type, erts_allctrs[ERTS_ALC_T2A(type)].extra, ptr, size); diff --git a/erts/emulator/beam/erl_alloc.types b/erts/emulator/beam/erl_alloc.types index 5409b89bab..f1e99820af 100644 --- a/erts/emulator/beam/erl_alloc.types +++ b/erts/emulator/beam/erl_alloc.types @@ -30,10 +30,10 @@ # name space). # * Types, allocators, classes, and descriptions have different name # spaces. -# * The type, allocator, and class names INVALID are reserved and can -# not be used. +# * The type, allocator, and class names INVALID are reserved and +# cannot be used. # * The descriptions invalid_allocator, invalid_class, and invalid_type -# are reserved and can not be used. +# are reserved and cannot be used. # * Declarations can be done conditionally by use of a # +if <boolean_variable> # diff --git a/erts/emulator/beam/erl_alloc_util.c b/erts/emulator/beam/erl_alloc_util.c index a5740a08cf..b7a8b9c2d0 100644 --- a/erts/emulator/beam/erl_alloc_util.c +++ b/erts/emulator/beam/erl_alloc_util.c @@ -96,7 +96,6 @@ static int initialized = 0; #define MBC_REALLOC_ALWAYS_MOVES #endif - /* alloc_util global parameters */ static Uint sys_alloc_carrier_size; #if HAVE_ERTS_MSEG @@ -113,32 +112,38 @@ static int allow_sys_alloc_carriers; #define DEC_CC(CC) ((CC)--) -/* Multi block carrier (MBC) memory layout in R16: +/* Multi block carrier (MBC) memory layout in OTP 22: Empty MBC: -[Carrier_t|pad|Block_t L0T|fhdr| free... ] +[Carrier_t|pad|Block_t L0T0|fhdr| free... ] MBC after allocating first block: -[Carrier_t|pad|Block_t 000| udata |pad|Block_t L0T|fhdr| free... ] +[Carrier_t|pad|Block_t 0000| udata |pad|Block_t L0T0|fhdr| free... ] MBC after allocating second block: -[Carrier_t|pad|Block_t 000| udata |pad|Block_t 000| udata |pad|Block_t L0T|fhdr| free... ] +[Carrier_t|pad|Block_t 0000| udata |pad|Block_t 0000| udata |pad|Block_t L0T0|fhdr| free... ] MBC after deallocating first block: -[Carrier_t|pad|Block_t 00T|fhdr| free |FreeBlkFtr_t|Block_t 0P0| udata |pad|Block_t L0T|fhdr| free... ] +[Carrier_t|pad|Block_t 00T0|fhdr| free |FreeBlkFtr_t|Block_t 0P00| udata |pad|Block_t L0T0|fhdr| free... ] +MBC after allocating first block, with allocation tagging enabled: +[Carrier_t|pad|Block_t 000A| udata |atag|pad|Block_t L0T0|fhdr| free... ] udata = Allocated user data + atag = A tag with basic metadata about this allocation pad = Padding to ensure correct alignment for user data fhdr = Allocator specific header to keep track of free block free = Unused free memory T = This block is free (THIS_FREE_BLK_HDR_FLG) P = Previous block is free (PREV_FREE_BLK_HDR_FLG) L = Last block in carrier (LAST_BLK_HDR_FLG) + A = Block has an allocation tag footer, only valid for allocated blocks + (ATAG_BLK_HDR_FLG) */ /* Single block carrier (SBC): -[Carrier_t|pad|Block_t 111| udata... ] +[Carrier_t|pad|Block_t 1110| udata... ] +[Carrier_t|pad|Block_t 111A| udata | atag] */ /* Allocation tags ... @@ -154,20 +159,20 @@ MBC after deallocating first block: typedef UWord alcu_atag_t; -#define MAKE_ATAG(IdAtom, Type) \ - (ASSERT((Type) >= ERTS_ALC_N_MIN && (Type) <= ERTS_ALC_N_MAX), \ +#define MAKE_ATAG(IdAtom, TypeNum) \ + (ASSERT((TypeNum) >= ERTS_ALC_N_MIN && (TypeNum) <= ERTS_ALC_N_MAX), \ ASSERT(atom_val(IdAtom) <= MAX_ATAG_ATOM_ID), \ - (atom_val(IdAtom) << ERTS_ALC_N_BITS) | (Type)) + (atom_val(IdAtom) << ERTS_ALC_N_BITS) | (TypeNum)) #define ATAG_ID(AT) (make_atom((AT) >> ERTS_ALC_N_BITS)) #define ATAG_TYPE(AT) ((AT) & ERTS_ALC_N_MASK) #define MAX_ATAG_ATOM_ID (ERTS_UWORD_MAX >> ERTS_ALC_N_BITS) -#define DBG_IS_VALID_ATAG(Allocator, AT) \ +#define DBG_IS_VALID_ATAG(AT) \ (ATAG_TYPE(AT) >= ERTS_ALC_N_MIN && \ ATAG_TYPE(AT) <= ERTS_ALC_N_MAX && \ - (Allocator)->alloc_no == ERTS_ALC_T2A(ERTS_ALC_N2T(ATAG_TYPE(AT)))) + ATAG_ID(AT) <= MAX_ATAG_ATOM_ID) /* Blocks ... */ @@ -182,10 +187,15 @@ typedef UWord alcu_atag_t; #endif #define FBLK_FTR_SZ (sizeof(FreeBlkFtr_t)) +#define BLK_HAS_ATAG(B) \ + (!!((B)->bhdr & ATAG_BLK_HDR_FLG)) + #define GET_BLK_ATAG(B) \ - (((alcu_atag_t *) (((char *) (B)) + (BLK_SZ(B))))[-1]) + (ASSERT(BLK_HAS_ATAG(B)), \ + ((alcu_atag_t *) (((char *) (B)) + (BLK_SZ(B))))[-1]) #define SET_BLK_ATAG(B, T) \ - (((alcu_atag_t *) (((char *) (B)) + (BLK_SZ(B))))[-1] = (T)) + ((B)->bhdr |= ATAG_BLK_HDR_FLG, \ + ((alcu_atag_t *) (((char *) (B)) + (BLK_SZ(B))))[-1] = (T)) #define BLK_ATAG_SZ(AP) ((AP)->atags ? sizeof(alcu_atag_t) : 0) @@ -203,13 +213,13 @@ typedef UWord alcu_atag_t; (((FreeBlkFtr_t *) (((char *) (B)) + (SZ)))[-1] = (SZ)) #define SET_MBC_ABLK_SZ(B, SZ) \ - (ASSERT(((SZ) & FLG_MASK) == 0), \ + (ASSERT(((SZ) & BLK_FLG_MASK) == 0), \ (B)->bhdr = (((B)->bhdr) & ~MBC_ABLK_SZ_MASK) | (SZ)) #define SET_MBC_FBLK_SZ(B, SZ) \ - (ASSERT(((SZ) & FLG_MASK) == 0), \ + (ASSERT(((SZ) & BLK_FLG_MASK) == 0), \ (B)->bhdr = (((B)->bhdr) & ~MBC_FBLK_SZ_MASK) | (SZ)) #define SET_SBC_BLK_SZ(B, SZ) \ - (ASSERT(((SZ) & FLG_MASK) == 0), \ + (ASSERT(((SZ) & BLK_FLG_MASK) == 0), \ (B)->bhdr = (((B)->bhdr) & ~SBC_BLK_SZ_MASK) | (SZ)) #define SET_PREV_BLK_FREE(AP,B) \ (ASSERT(!IS_MBC_FIRST_BLK(AP,B)), \ @@ -235,12 +245,12 @@ typedef UWord alcu_atag_t; # define SET_MBC_ABLK_HDR(B, Sz, F, C) \ (ASSERT(((Sz) & ~MBC_ABLK_SZ_MASK) == 0), \ - ASSERT(!((UWord)(F) & (~FLG_MASK|THIS_FREE_BLK_HDR_FLG))), \ + ASSERT(!((UWord)(F) & (~BLK_FLG_MASK|THIS_FREE_BLK_HDR_FLG))), \ (B)->bhdr = ((Sz) | (F) | (BLK_CARRIER_OFFSET(B,C) << MBC_ABLK_OFFSET_SHIFT))) # define SET_MBC_FBLK_HDR(B, Sz, F, C) \ (ASSERT(((Sz) & ~MBC_FBLK_SZ_MASK) == 0), \ - ASSERT(((UWord)(F) & (~FLG_MASK|THIS_FREE_BLK_HDR_FLG|PREV_FREE_BLK_HDR_FLG)) == THIS_FREE_BLK_HDR_FLG), \ + ASSERT(((UWord)(F) & (~BLK_FLG_MASK|THIS_FREE_BLK_HDR_FLG|PREV_FREE_BLK_HDR_FLG)) == THIS_FREE_BLK_HDR_FLG), \ (B)->bhdr = ((Sz) | (F)), \ (B)->u.carrier = (C)) @@ -257,8 +267,8 @@ typedef UWord alcu_atag_t; # define SET_BLK_FREE(B) \ (ASSERT(!IS_PREV_BLK_FREE(B)), \ (B)->u.carrier = ABLK_TO_MBC(B), \ - (B)->bhdr |= THIS_FREE_BLK_HDR_FLG, \ - (B)->bhdr &= (MBC_ABLK_SZ_MASK|FLG_MASK)) + (B)->bhdr &= (MBC_ABLK_SZ_MASK|LAST_BLK_HDR_FLG), \ + (B)->bhdr |= THIS_FREE_BLK_HDR_FLG) # define SET_BLK_ALLOCED(B) \ (ASSERT(((B)->bhdr & (MBC_ABLK_OFFSET_MASK|THIS_FREE_BLK_HDR_FLG)) == THIS_FREE_BLK_HDR_FLG), \ @@ -270,15 +280,16 @@ typedef UWord alcu_atag_t; # define MBC_SZ_MAX_LIMIT ((UWord)~0) # define SET_MBC_ABLK_HDR(B, Sz, F, C) \ - (ASSERT(((Sz) & FLG_MASK) == 0), \ - ASSERT(!((UWord)(F) & (~FLG_MASK|THIS_FREE_BLK_HDR_FLG))), \ - ASSERT((UWord)(F) < SBC_BLK_HDR_FLG), \ + (ASSERT(((Sz) & BLK_FLG_MASK) == 0), \ + ASSERT(((F) & ~BLK_FLG_MASK) == 0), \ + ASSERT(!((UWord)(F) & (~BLK_FLG_MASK|THIS_FREE_BLK_HDR_FLG))), \ (B)->bhdr = ((Sz) | (F)), \ (B)->carrier = (C)) # define SET_MBC_FBLK_HDR(B, Sz, F, C) \ - (ASSERT(((Sz) & FLG_MASK) == 0), \ - ASSERT(((UWord)(F) & (~FLG_MASK|THIS_FREE_BLK_HDR_FLG|PREV_FREE_BLK_HDR_FLG)) == THIS_FREE_BLK_HDR_FLG), \ + (ASSERT(((Sz) & BLK_FLG_MASK) == 0), \ + ASSERT(((F) & ~BLK_FLG_MASK) == 0), \ + ASSERT(((UWord)(F) & (~BLK_FLG_MASK|THIS_FREE_BLK_HDR_FLG|PREV_FREE_BLK_HDR_FLG)) == THIS_FREE_BLK_HDR_FLG), \ (B)->bhdr = ((Sz) | (F)), \ (B)->carrier = (C)) @@ -297,7 +308,7 @@ typedef UWord alcu_atag_t; #endif /* !MBC_ABLK_OFFSET_BITS */ #define SET_SBC_BLK_HDR(B, Sz) \ - (ASSERT(((Sz) & FLG_MASK) == 0), (B)->bhdr = ((Sz) | (SBC_BLK_HDR_FLG))) + (ASSERT(((Sz) & BLK_FLG_MASK) == 0), (B)->bhdr = ((Sz) | (SBC_BLK_HDR_FLG))) #define BLK_UMEM_SZ(B) \ @@ -320,7 +331,7 @@ typedef UWord alcu_atag_t; #define GET_PREV_FREE_BLK_HDR_FLG(B) \ ((B)->bhdr & PREV_FREE_BLK_HDR_FLG) #define GET_BLK_HDR_FLGS(B) \ - ((B)->bhdr & FLG_MASK) + ((B)->bhdr & BLK_FLG_MASK) #define NXT_BLK(B) \ (ASSERT(IS_MBC_BLK(B)), \ @@ -419,7 +430,7 @@ do { \ #define SCH_SBC SBC_CARRIER_HDR_FLAG #define SET_CARRIER_HDR(C, Sz, F, AP) \ - (ASSERT(((Sz) & FLG_MASK) == 0), (C)->chdr = ((Sz) | (F)), \ + (ASSERT(((Sz) & CRR_FLG_MASK) == 0), (C)->chdr = ((Sz) | (F)), \ erts_atomic_init_nob(&(C)->allctr, (erts_aint_t) (AP))) #define BLK_TO_SBC(B) \ @@ -444,8 +455,8 @@ do { \ (!IS_SB_CARRIER((C))) #define SET_CARRIER_SZ(C, SZ) \ - (ASSERT(((SZ) & FLG_MASK) == 0), \ - ((C)->chdr = ((C)->chdr & FLG_MASK) | (SZ))) + (ASSERT(((SZ) & CRR_FLG_MASK) == 0), \ + ((C)->chdr = ((C)->chdr & CRR_FLG_MASK) | (SZ))) #define CFLG_SBC (1 << 0) #define CFLG_MBC (1 << 1) @@ -575,10 +586,12 @@ do { \ STAT_MSEG_MBC_ALLOC((AP), csz__); \ else \ STAT_SYS_ALLOC_MBC_ALLOC((AP), csz__); \ - (AP)->mbcs.blocks.curr.no += (CRR)->cpool.blocks; \ + set_new_allctr_abandon_limit(AP); \ + (AP)->mbcs.blocks.curr.no += (CRR)->cpool.blocks[(AP)->alloc_no]; \ if ((AP)->mbcs.blocks.max.no < (AP)->mbcs.blocks.curr.no) \ (AP)->mbcs.blocks.max.no = (AP)->mbcs.blocks.curr.no; \ - (AP)->mbcs.blocks.curr.size += (CRR)->cpool.blocks_size; \ + (AP)->mbcs.blocks.curr.size += \ + (CRR)->cpool.blocks_size[(AP)->alloc_no]; \ if ((AP)->mbcs.blocks.max.size < (AP)->mbcs.blocks.curr.size) \ (AP)->mbcs.blocks.max.size = (AP)->mbcs.blocks.curr.size; \ } while (0) @@ -601,25 +614,33 @@ do { \ DEBUG_CHECK_CARRIER_NO_SZ((AP)); \ } while (0) -#define STAT_MBC_ABANDON(AP, CRR) \ -do { \ - UWord csz__ = CARRIER_SZ((CRR)); \ - if (IS_MSEG_CARRIER((CRR))) \ - STAT_MSEG_MBC_FREE((AP), csz__); \ - else \ - STAT_SYS_ALLOC_MBC_FREE((AP), csz__); \ - ERTS_ALC_CPOOL_ASSERT((AP)->mbcs.blocks.curr.no \ - >= (CRR)->cpool.blocks); \ - (AP)->mbcs.blocks.curr.no -= (CRR)->cpool.blocks; \ - ERTS_ALC_CPOOL_ASSERT((AP)->mbcs.blocks.curr.size \ - >= (CRR)->cpool.blocks_size); \ - (AP)->mbcs.blocks.curr.size -= (CRR)->cpool.blocks_size; \ +#define STAT_MBC_FREE(AP, CRR) \ +do { \ + UWord csz__ = CARRIER_SZ((CRR)); \ + if (IS_MSEG_CARRIER((CRR))) { \ + STAT_MSEG_MBC_FREE((AP), csz__); \ + } else { \ + STAT_SYS_ALLOC_MBC_FREE((AP), csz__); \ + } \ + set_new_allctr_abandon_limit(AP); \ } while (0) -#define STAT_MBC_BLK_ALLOC_CRR(CRR, BSZ) \ +#define STAT_MBC_ABANDON(AP, CRR) \ +do { \ + STAT_MBC_FREE(AP, CRR); \ + ERTS_ALC_CPOOL_ASSERT((AP)->mbcs.blocks.curr.no \ + >= (CRR)->cpool.blocks[(AP)->alloc_no]); \ + (AP)->mbcs.blocks.curr.no -= (CRR)->cpool.blocks[(AP)->alloc_no]; \ + ERTS_ALC_CPOOL_ASSERT((AP)->mbcs.blocks.curr.size \ + >= (CRR)->cpool.blocks_size[(AP)->alloc_no]); \ + (AP)->mbcs.blocks.curr.size -= (CRR)->cpool.blocks_size[(AP)->alloc_no]; \ +} while (0) + +#define STAT_MBC_BLK_ALLOC_CRR(AP, CRR, BSZ) \ do { \ - (CRR)->cpool.blocks++; \ - (CRR)->cpool.blocks_size += (BSZ); \ + (CRR)->cpool.blocks[(AP)->alloc_no]++; \ + (CRR)->cpool.blocks_size[(AP)->alloc_no] += (BSZ); \ + (CRR)->cpool.total_blocks_size += (BSZ); \ } while (0) #define STAT_MBC_BLK_ALLOC(AP, CRR, BSZ, FLGS) \ @@ -631,50 +652,67 @@ do { \ cstats__->blocks.curr.size += (BSZ); \ if (cstats__->blocks.max.size < cstats__->blocks.curr.size) \ cstats__->blocks.max.size = cstats__->blocks.curr.size; \ - STAT_MBC_BLK_ALLOC_CRR((CRR), (BSZ)); \ + STAT_MBC_BLK_ALLOC_CRR((AP), (CRR), (BSZ)); \ } while (0) static ERTS_INLINE int stat_cpool_mbc_blk_free(Allctr_t *allctr, + ErtsAlcType_t type, Carrier_t *crr, Carrier_t **busy_pcrr_pp, UWord blksz) { + Allctr_t *orig_allctr; + int alloc_no; - ERTS_ALC_CPOOL_ASSERT(crr->cpool.blocks > 0); - crr->cpool.blocks--; - ERTS_ALC_CPOOL_ASSERT(crr->cpool.blocks_size >= blksz); - crr->cpool.blocks_size -= blksz; + alloc_no = ERTS_ALC_T2A(type); - if (!busy_pcrr_pp || !*busy_pcrr_pp) - return 0; + ERTS_ALC_CPOOL_ASSERT(crr->cpool.blocks[alloc_no] > 0); + crr->cpool.blocks[alloc_no]--; + ERTS_ALC_CPOOL_ASSERT(crr->cpool.blocks_size[alloc_no] >= blksz); + crr->cpool.blocks_size[alloc_no] -= blksz; + ERTS_ALC_CPOOL_ASSERT(crr->cpool.total_blocks_size >= blksz); + crr->cpool.total_blocks_size -= blksz; - ERTS_ALC_CPOOL_ASSERT(crr == *busy_pcrr_pp); + if (allctr->alloc_no == alloc_no && (!busy_pcrr_pp || !*busy_pcrr_pp)) { + /* This is a local block, so we should not update the pool + * statistics. */ + return 0; + } + + /* This is either a foreign block that's been fetched from the pool, or any + * block that's in the pool. The carrier's owner keeps the statistics for + * both pooled and foreign blocks. */ + + orig_allctr = crr->cpool.orig_allctr; + + ERTS_ALC_CPOOL_ASSERT(alloc_no != allctr->alloc_no || + (crr == *busy_pcrr_pp && allctr == orig_allctr)); #ifdef ERTS_ALC_CPOOL_DEBUG ERTS_ALC_CPOOL_ASSERT( - erts_atomic_dec_read_nob(&allctr->cpool.stat.no_blocks) >= 0); + erts_atomic_dec_read_nob(&orig_allctr->cpool.stat.no_blocks[alloc_no]) >= 0); ERTS_ALC_CPOOL_ASSERT( - erts_atomic_add_read_nob(&allctr->cpool.stat.blocks_size, + erts_atomic_add_read_nob(&orig_allctr->cpool.stat.blocks_size[alloc_no], -((erts_aint_t) blksz)) >= 0); #else - erts_atomic_dec_nob(&allctr->cpool.stat.no_blocks); - erts_atomic_add_nob(&allctr->cpool.stat.blocks_size, + erts_atomic_dec_nob(&orig_allctr->cpool.stat.no_blocks[alloc_no]); + erts_atomic_add_nob(&orig_allctr->cpool.stat.blocks_size[alloc_no], -((erts_aint_t) blksz)); #endif return 1; } -#define STAT_MBC_BLK_FREE(AP, CRR, BPCRRPP, BSZ, FLGS) \ -do { \ - if (!stat_cpool_mbc_blk_free((AP), (CRR), (BPCRRPP), (BSZ))) { \ - CarriersStats_t *cstats__ = &(AP)->mbcs; \ - ASSERT(cstats__->blocks.curr.no > 0); \ - cstats__->blocks.curr.no--; \ - ASSERT(cstats__->blocks.curr.size >= (BSZ)); \ - cstats__->blocks.curr.size -= (BSZ); \ - } \ +#define STAT_MBC_BLK_FREE(AP, TYPE, CRR, BPCRRPP, BSZ, FLGS) \ +do { \ + if (!stat_cpool_mbc_blk_free((AP), (TYPE), (CRR), (BPCRRPP), (BSZ))) { \ + CarriersStats_t *cstats__ = &(AP)->mbcs; \ + ASSERT(cstats__->blocks.curr.no > 0); \ + cstats__->blocks.curr.no--; \ + ASSERT(cstats__->blocks.curr.size >= (BSZ)); \ + cstats__->blocks.curr.size -= (BSZ); \ + } \ } while (0) /* Debug stuff... */ @@ -721,8 +759,8 @@ static void make_name_atoms(Allctr_t *allctr); static Block_t *create_carrier(Allctr_t *, Uint, UWord); static void destroy_carrier(Allctr_t *, Block_t *, Carrier_t **); -static void mbc_free(Allctr_t *allctr, void *p, Carrier_t **busy_pcrr_pp); -static void dealloc_block(Allctr_t *, void *, ErtsAlcFixList_t *, int); +static void mbc_free(Allctr_t *allctr, ErtsAlcType_t type, void *p, Carrier_t **busy_pcrr_pp); +static void dealloc_block(Allctr_t *, ErtsAlcType_t, Uint32, void *, ErtsAlcFixList_t *); static alcu_atag_t determine_alloc_tag(Allctr_t *allocator, ErtsAlcType_t type) { @@ -764,14 +802,14 @@ static alcu_atag_t determine_alloc_tag(Allctr_t *allocator, ErtsAlcType_t type) } } - return MAKE_ATAG(id, type); + return MAKE_ATAG(id, ERTS_ALC_T2N(type)); } static void set_alloc_tag(Allctr_t *allocator, void *p, alcu_atag_t tag) { Block_t *block; - ASSERT(DBG_IS_VALID_ATAG(allocator, tag)); + ASSERT(DBG_IS_VALID_ATAG(tag)); ASSERT(allocator->atags && p); (void)allocator; @@ -1308,28 +1346,9 @@ chk_fix_list(Allctr_t *allctr, ErtsAlcFixList_t *fix, int ix, int before) #define ERTS_DBG_CHK_FIX_LIST(A, FIX, IX, B) #endif +static ERTS_INLINE Allctr_t *get_pref_allctr(void *extra); static void *mbc_alloc(Allctr_t *allctr, Uint size); -typedef struct { - ErtsAllctrDDBlock_t ddblock__; /* must be first */ - ErtsAlcType_t fix_type; -} ErtsAllctrFixDDBlock_t; - -#define ERTS_ALC_FIX_NO_UNUSE (((ErtsAlcType_t) 1) << ERTS_ALC_N_BITS) - -static ERTS_INLINE void -dealloc_fix_block(Allctr_t *allctr, - ErtsAlcType_t type, - void *ptr, - ErtsAlcFixList_t *fix, - int dec_cc_on_redirect) -{ - /* May be redirected... */ - ASSERT((type & ERTS_ALC_FIX_NO_UNUSE) == 0); - ((ErtsAllctrFixDDBlock_t *) ptr)->fix_type = type | ERTS_ALC_FIX_NO_UNUSE; - dealloc_block(allctr, ptr, fix, dec_cc_on_redirect); -} - static ERTS_INLINE void sched_fix_shrink(Allctr_t *allctr, int on) { @@ -1371,7 +1390,7 @@ fix_cpool_check_shrink(Allctr_t *allctr, if (fix->u.cpool.min_list_size > fix->list_size) fix->u.cpool.min_list_size = fix->list_size; - dealloc_fix_block(allctr, type, p, fix, 0); + dealloc_block(allctr, type, DEALLOC_FLG_FIX_SHRINK, p, fix); } } } @@ -1382,11 +1401,9 @@ fix_cpool_alloc(Allctr_t *allctr, ErtsAlcType_t type, Uint size) void *res; ErtsAlcFixList_t *fix; - ASSERT(ERTS_ALC_N_MIN_A_FIXED_SIZE <= type - && type <= ERTS_ALC_N_MAX_A_FIXED_SIZE); - - fix = &allctr->fix[type - ERTS_ALC_N_MIN_A_FIXED_SIZE]; - ASSERT(size == fix->type_size); + fix = &allctr->fix[ERTS_ALC_FIX_TYPE_IX(type)]; + ASSERT(type == fix->type && size == fix->type_size); + ASSERT(size >= sizeof(ErtsAllctrDDBlock_t)); res = fix->list; if (res) { @@ -1415,21 +1432,39 @@ fix_cpool_alloc(Allctr_t *allctr, ErtsAlcType_t type, Uint size) static ERTS_INLINE void fix_cpool_free(Allctr_t *allctr, ErtsAlcType_t type, + Uint32 flags, void *p, - Carrier_t **busy_pcrr_pp, - int unuse) + Carrier_t **busy_pcrr_pp) { ErtsAlcFixList_t *fix; + Allctr_t *fix_allctr; + + /* If this isn't a fix allocator we need to update the fix list of our + * neighboring fix_alloc to keep the statistics consistent. */ + if (!allctr->fix) { + ErtsAllocatorThrSpec_t *tspec = &erts_allctr_thr_spec[ERTS_ALC_A_FIXED_SIZE]; + fix_allctr = get_pref_allctr(tspec); + ASSERT(!fix_allctr->thread_safe); + ASSERT(allctr != fix_allctr); + } + else { + fix_allctr = allctr; + } - ASSERT(ERTS_ALC_N_MIN_A_FIXED_SIZE <= type - && type <= ERTS_ALC_N_MAX_A_FIXED_SIZE); + ASSERT(ERTS_ALC_IS_CPOOL_ENABLED(fix_allctr)); + ASSERT(ERTS_ALC_IS_CPOOL_ENABLED(allctr)); - fix = &allctr->fix[type - ERTS_ALC_N_MIN_A_FIXED_SIZE]; + fix = &fix_allctr->fix[ERTS_ALC_FIX_TYPE_IX(type)]; + ASSERT(type == fix->type); - if (unuse) - fix->u.cpool.used--; + if (!(flags & DEALLOC_FLG_FIX_SHRINK)) { + fix->u.cpool.used--; + } - if ((!busy_pcrr_pp || !*busy_pcrr_pp) + /* We don't want foreign blocks to be long-lived, so we skip recycling if + * allctr != fix_allctr. */ + if (allctr == fix_allctr + && (!busy_pcrr_pp || !*busy_pcrr_pp) && !fix->u.cpool.shrink_list && fix->list_size < ERTS_ALCU_FIX_MAX_LIST_SZ) { *((void **) p) = fix->list; @@ -1442,7 +1477,7 @@ fix_cpool_free(Allctr_t *allctr, if (IS_SBC_BLK(blk)) destroy_carrier(allctr, blk, NULL); else - mbc_free(allctr, p, busy_pcrr_pp); + mbc_free(allctr, type, p, busy_pcrr_pp); fix->u.cpool.allocated--; fix_cpool_check_shrink(allctr, type, fix, busy_pcrr_pp); } @@ -1469,7 +1504,7 @@ fix_cpool_alloc_shrink(Allctr_t *allctr, erts_aint32_t flgs) fix->u.cpool.shrink_list = fix->u.cpool.min_list_size; fix->u.cpool.min_list_size = fix->list_size; } - type = (ErtsAlcType_t) (ix + ERTS_ALC_N_MIN_A_FIXED_SIZE); + type = ERTS_ALC_N2T((ErtsAlcType_t) (ix + ERTS_ALC_N_MIN_A_FIXED_SIZE)); for (o = 0; o < ERTS_ALC_FIX_MAX_SHRINK_OPS || flush; o++) { void *ptr; @@ -1483,7 +1518,7 @@ fix_cpool_alloc_shrink(Allctr_t *allctr, erts_aint32_t flgs) fix->list = *((void **) ptr); fix->list_size--; fix->u.cpool.shrink_list--; - dealloc_fix_block(allctr, type, ptr, fix, 0); + dealloc_block(allctr, type, DEALLOC_FLG_FIX_SHRINK, ptr, fix); } if (fix->u.cpool.min_list_size > fix->list_size) fix->u.cpool.min_list_size = fix->list_size; @@ -1509,11 +1544,9 @@ fix_nocpool_alloc(Allctr_t *allctr, ErtsAlcType_t type, Uint size) ErtsAlcFixList_t *fix; void *res; - ASSERT(ERTS_ALC_N_MIN_A_FIXED_SIZE <= type - && type <= ERTS_ALC_N_MAX_A_FIXED_SIZE); - - fix = &allctr->fix[type - ERTS_ALC_N_MIN_A_FIXED_SIZE]; - ASSERT(size == fix->type_size); + fix = &allctr->fix[ERTS_ALC_FIX_TYPE_IX(type)]; + ASSERT(type == fix->type && size == fix->type_size); + ASSERT(size >= sizeof(ErtsAllctrDDBlock_t)); ERTS_DBG_CHK_FIX_LIST(allctr, fix, ix, 1); fix->u.nocpool.used++; @@ -1530,7 +1563,7 @@ fix_nocpool_alloc(Allctr_t *allctr, ErtsAlcType_t type, Uint size) if (IS_SBC_BLK(blk)) destroy_carrier(allctr, blk, NULL); else - mbc_free(allctr, p, NULL); + mbc_free(allctr, type, p, NULL); fix->u.nocpool.allocated--; } ERTS_DBG_CHK_FIX_LIST(allctr, fix, ix, 0); @@ -1565,10 +1598,8 @@ fix_nocpool_free(Allctr_t *allctr, Block_t *blk; ErtsAlcFixList_t *fix; - ASSERT(ERTS_ALC_N_MIN_A_FIXED_SIZE <= type - && type <= ERTS_ALC_N_MAX_A_FIXED_SIZE); - - fix = &allctr->fix[type - ERTS_ALC_N_MIN_A_FIXED_SIZE]; + fix = &allctr->fix[ERTS_ALC_T2N(type) - ERTS_ALC_N_MIN_A_FIXED_SIZE]; + ASSERT(fix->type == type); ERTS_DBG_CHK_FIX_LIST(allctr, fix, ix, 1); fix->u.nocpool.used--; @@ -1587,7 +1618,7 @@ fix_nocpool_free(Allctr_t *allctr, if (IS_SBC_BLK(blk)) destroy_carrier(allctr, blk, NULL); else - mbc_free(allctr, p, NULL); + mbc_free(allctr, type, p, NULL); p = fix->list; fix->list = *((void **) p); fix->list_size--; @@ -1598,7 +1629,7 @@ fix_nocpool_free(Allctr_t *allctr, if (IS_SBC_BLK(blk)) destroy_carrier(allctr, blk, NULL); else - mbc_free(allctr, p, NULL); + mbc_free(allctr, type, p, NULL); ERTS_DBG_CHK_FIX_LIST(allctr, fix, ix, 0); } @@ -1639,7 +1670,7 @@ fix_nocpool_alloc_shrink(Allctr_t *allctr, erts_aint32_t flgs) ptr = fix->list; fix->list = *((void **) ptr); fix->list_size--; - dealloc_block(allctr, ptr, NULL, 0); + dealloc_block(allctr, fix->type, 0, ptr, NULL); fix->u.nocpool.allocated--; } if (fix->list_size != 0) { @@ -1681,6 +1712,7 @@ dealloc_mbc(Allctr_t *allctr, Carrier_t *crr) } +static UWord allctr_abandon_limit(Allctr_t *allctr); static void set_new_allctr_abandon_limit(Allctr_t*); static void abandon_carrier(Allctr_t*, Carrier_t*); static void poolify_my_carrier(Allctr_t*, Carrier_t*); @@ -1802,7 +1834,7 @@ get_used_allctr(Allctr_t *pref_allctr, int pref_lock, void *p, UWord *sizep, static void init_dd_queue(ErtsAllctrDDQueue_t *ddq) { - erts_atomic_init_nob(&ddq->tail.data.marker.atmc_next, ERTS_AINT_NULL); + erts_atomic_init_nob(&ddq->tail.data.marker.u.atmc_next, ERTS_AINT_NULL); erts_atomic_init_nob(&ddq->tail.data.last, (erts_aint_t) &ddq->tail.data.marker); erts_atomic_init_nob(&ddq->tail.data.um_refc[0], 0); @@ -1823,17 +1855,17 @@ ddq_managed_thread_enqueue(ErtsAllctrDDQueue_t *ddq, void *ptr, int cinit) erts_aint_t itmp; ErtsAllctrDDBlock_t *enq, *this = ptr; - erts_atomic_init_nob(&this->atmc_next, ERTS_AINT_NULL); + erts_atomic_init_nob(&this->u.atmc_next, ERTS_AINT_NULL); /* Enqueue at end of list... */ enq = (ErtsAllctrDDBlock_t *) erts_atomic_read_nob(&ddq->tail.data.last); - itmp = erts_atomic_cmpxchg_relb(&enq->atmc_next, + itmp = erts_atomic_cmpxchg_relb(&enq->u.atmc_next, (erts_aint_t) this, ERTS_AINT_NULL); if (itmp == ERTS_AINT_NULL) { /* We are required to move last pointer */ #ifdef DEBUG - ASSERT(ERTS_AINT_NULL == erts_atomic_read_nob(&this->atmc_next)); + ASSERT(ERTS_AINT_NULL == erts_atomic_read_nob(&this->u.atmc_next)); ASSERT(((erts_aint_t) enq) == erts_atomic_xchg_relb(&ddq->tail.data.last, (erts_aint_t) this)); @@ -1851,8 +1883,8 @@ ddq_managed_thread_enqueue(ErtsAllctrDDQueue_t *ddq, void *ptr, int cinit) while (1) { erts_aint_t itmp2; - erts_atomic_set_nob(&this->atmc_next, itmp); - itmp2 = erts_atomic_cmpxchg_relb(&enq->atmc_next, + erts_atomic_set_nob(&this->u.atmc_next, itmp); + itmp2 = erts_atomic_cmpxchg_relb(&enq->u.atmc_next, (erts_aint_t) this, itmp); if (itmp == itmp2) @@ -1861,7 +1893,7 @@ ddq_managed_thread_enqueue(ErtsAllctrDDQueue_t *ddq, void *ptr, int cinit) itmp = itmp2; else { enq = (ErtsAllctrDDBlock_t *) itmp2; - itmp = erts_atomic_read_acqb(&enq->atmc_next); + itmp = erts_atomic_read_acqb(&enq->u.atmc_next); ASSERT(itmp != ERTS_AINT_NULL); } i++; @@ -1877,8 +1909,8 @@ check_insert_marker(ErtsAllctrDDQueue_t *ddq, erts_aint_t ilast) erts_aint_t itmp; ErtsAllctrDDBlock_t *last = (ErtsAllctrDDBlock_t *) ilast; - erts_atomic_init_nob(&ddq->tail.data.marker.atmc_next, ERTS_AINT_NULL); - itmp = erts_atomic_cmpxchg_relb(&last->atmc_next, + erts_atomic_init_nob(&ddq->tail.data.marker.u.atmc_next, ERTS_AINT_NULL); + itmp = erts_atomic_cmpxchg_relb(&last->u.atmc_next, (erts_aint_t) &ddq->tail.data.marker, ERTS_AINT_NULL); if (itmp == ERTS_AINT_NULL) { @@ -1929,7 +1961,7 @@ ddq_dequeue(ErtsAllctrDDQueue_t *ddq) ASSERT(ddq->head.used_marker); ddq->head.used_marker = 0; blk = ((ErtsAllctrDDBlock_t *) - erts_atomic_read_nob(&blk->atmc_next)); + erts_atomic_read_nob(&blk->u.atmc_next)); if (blk == ddq->head.unref_end) { ddq->head.first = blk; return NULL; @@ -1937,7 +1969,7 @@ ddq_dequeue(ErtsAllctrDDQueue_t *ddq) } ddq->head.first = ((ErtsAllctrDDBlock_t *) - erts_atomic_read_nob(&blk->atmc_next)); + erts_atomic_read_nob(&blk->u.atmc_next)); ASSERT(ddq->head.first); @@ -1999,19 +2031,13 @@ check_pending_dealloc_carrier(Allctr_t *allctr, int *need_more_work); static void -handle_delayed_fix_dealloc(Allctr_t *allctr, void *ptr) +handle_delayed_fix_dealloc(Allctr_t *allctr, ErtsAlcType_t type, Uint32 flags, + void *ptr) { - ErtsAlcType_t type; - - type = ((ErtsAllctrFixDDBlock_t *) ptr)->fix_type; - - ASSERT(ERTS_ALC_N_MIN_A_FIXED_SIZE - <= (type & ~ERTS_ALC_FIX_NO_UNUSE)); - ASSERT((type & ~ERTS_ALC_FIX_NO_UNUSE) - <= ERTS_ALC_N_MAX_A_FIXED_SIZE); + ASSERT(ERTS_ALC_IS_FIX_TYPE(type)); if (!ERTS_ALC_IS_CPOOL_ENABLED(allctr)) - fix_nocpool_free(allctr, (type & ~ERTS_ALC_FIX_NO_UNUSE), ptr); + fix_nocpool_free(allctr, type, ptr); else { Block_t *blk = UMEM2BLK(ptr); Carrier_t *busy_pcrr_p; @@ -2026,20 +2052,24 @@ handle_delayed_fix_dealloc(Allctr_t *allctr, void *ptr) NULL, &busy_pcrr_p); if (used_allctr == allctr) { doit: - fix_cpool_free(allctr, (type & ~ERTS_ALC_FIX_NO_UNUSE), - ptr, &busy_pcrr_p, - !(type & ERTS_ALC_FIX_NO_UNUSE)); + fix_cpool_free(allctr, type, flags, ptr, &busy_pcrr_p); clear_busy_pool_carrier(allctr, busy_pcrr_p); } else { /* Carrier migrated; need to redirect block to new owner... */ - int cinit = used_allctr->dd.ix - allctr->dd.ix; + ErtsAllctrDDBlock_t *dd_block; + int cinit; + + dd_block = (ErtsAllctrDDBlock_t*)ptr; + dd_block->flags = flags; + dd_block->type = type; ERTS_ALC_CPOOL_ASSERT(!busy_pcrr_p); DEC_CC(allctr->calls.this_free); - ((ErtsAllctrFixDDBlock_t *) ptr)->fix_type = type; + cinit = used_allctr->dd.ix - allctr->dd.ix; + if (ddq_enqueue(&used_allctr->dd.q, ptr, cinit)) erts_alloc_notify_delayed_dealloc(used_allctr->ix); } @@ -2063,7 +2093,6 @@ handle_delayed_dealloc(Allctr_t *allctr, int need_mr_wrk = 0; int have_checked_incoming = 0; int ops = 0; - ErtsAlcFixList_t *fix; int res; ErtsAllctrDDQueue_t *ddq; @@ -2072,8 +2101,6 @@ handle_delayed_dealloc(Allctr_t *allctr, ERTS_ALCU_DBG_CHK_THR_ACCESS(allctr); - fix = allctr->fix; - ddq = &allctr->dd.q; res = 0; @@ -2162,16 +2189,27 @@ handle_delayed_dealloc(Allctr_t *allctr, } } else { + ErtsAllctrDDBlock_t *dd_block; + ErtsAlcType_t type; + Uint32 flags; + + dd_block = (ErtsAllctrDDBlock_t*)ptr; + flags = dd_block->flags; + type = dd_block->type; + + flags |= DEALLOC_FLG_REDIRECTED; + ASSERT(IS_SBC_BLK(blk) || (ABLK_TO_MBC(blk) != ErtsContainerStruct(blk, Carrier_t, cpool.homecoming_dd.blk))); INC_CC(allctr->calls.this_free); - if (fix) - handle_delayed_fix_dealloc(allctr, ptr); - else - dealloc_block(allctr, ptr, NULL, 1); + if (ERTS_ALC_IS_FIX_TYPE(type)) { + handle_delayed_fix_dealloc(allctr, type, flags, ptr); + } else { + dealloc_block(allctr, type, flags, ptr, NULL); + } } } @@ -2199,8 +2237,10 @@ enqueue_dealloc_other_instance(ErtsAlcType_t type, void *ptr, int cinit) { - if (allctr->fix) - ((ErtsAllctrFixDDBlock_t*) ptr)->fix_type = type; + ErtsAllctrDDBlock_t *dd_block = ((ErtsAllctrDDBlock_t*)ptr); + + dd_block->type = type; + dd_block->flags = 0; if (ddq_enqueue(&allctr->dd.q, ptr, cinit)) erts_alloc_notify_delayed_dealloc(allctr->ix); @@ -2230,10 +2270,7 @@ check_abandon_carrier(Allctr_t *allctr, Block_t *fblk, Carrier_t **busy_pcrr_pp) if (!ERTS_ALC_IS_CPOOL_ENABLED(allctr)) return; - allctr->cpool.check_limit_count--; - if (--allctr->cpool.check_limit_count <= 0) - set_new_allctr_abandon_limit(allctr); - + ASSERT(allctr->cpool.abandon_limit == allctr_abandon_limit(allctr)); ASSERT(erts_thr_progress_is_managed_thread()); if (allctr->cpool.disable_abandon) @@ -2251,7 +2288,7 @@ check_abandon_carrier(Allctr_t *allctr, Block_t *fblk, Carrier_t **busy_pcrr_pp) if (allctr->main_carrier == crr) return; - if (crr->cpool.blocks_size > crr->cpool.abandon_limit) + if (crr->cpool.total_blocks_size > crr->cpool.abandon_limit) return; if (crr->cpool.thr_prgr != ERTS_THR_PRGR_INVALID @@ -2287,24 +2324,26 @@ erts_alcu_check_delayed_dealloc(Allctr_t *allctr, ERTS_ALCU_DD_OPS_LIM_LOW, NULL, NULL, NULL) static void -dealloc_block(Allctr_t *allctr, void *ptr, ErtsAlcFixList_t *fix, int dec_cc_on_redirect) +dealloc_block(Allctr_t *allctr, ErtsAlcType_t type, Uint32 flags, void *ptr, + ErtsAlcFixList_t *fix) { Block_t *blk = UMEM2BLK(ptr); + ASSERT(!fix || type == fix->type); + ERTS_LC_ASSERT(!allctr->thread_safe || erts_lc_mtx_is_locked(&allctr->mutex)); if (IS_SBC_BLK(blk)) { destroy_carrier(allctr, blk, NULL); if (fix && ERTS_ALC_IS_CPOOL_ENABLED(allctr)) { - ErtsAlcType_t type = ((ErtsAllctrFixDDBlock_t *) ptr)->fix_type; - if (!(type & ERTS_ALC_FIX_NO_UNUSE)) + if (!(flags & DEALLOC_FLG_FIX_SHRINK)) fix->u.cpool.used--; fix->u.cpool.allocated--; } } else if (!ERTS_ALC_IS_CPOOL_ENABLED(allctr)) - mbc_free(allctr, ptr, NULL); + mbc_free(allctr, type, ptr, NULL); else { Carrier_t *busy_pcrr_p; Allctr_t *used_allctr; @@ -2313,22 +2352,29 @@ dealloc_block(Allctr_t *allctr, void *ptr, ErtsAlcFixList_t *fix, int dec_cc_on_ NULL, &busy_pcrr_p); if (used_allctr == allctr) { if (fix) { - ErtsAlcType_t type = ((ErtsAllctrFixDDBlock_t *) ptr)->fix_type; - if (!(type & ERTS_ALC_FIX_NO_UNUSE)) + if (!(flags & DEALLOC_FLG_FIX_SHRINK)) fix->u.cpool.used--; fix->u.cpool.allocated--; } - mbc_free(allctr, ptr, &busy_pcrr_p); + mbc_free(allctr, type, ptr, &busy_pcrr_p); clear_busy_pool_carrier(allctr, busy_pcrr_p); } else { /* Carrier migrated; need to redirect block to new owner... */ - int cinit = used_allctr->dd.ix - allctr->dd.ix; + ErtsAllctrDDBlock_t *dd_block; + int cinit; + + dd_block = (ErtsAllctrDDBlock_t*)ptr; + dd_block->flags = flags; + dd_block->type = type; ERTS_ALC_CPOOL_ASSERT(!busy_pcrr_p); - if (dec_cc_on_redirect) + if (flags & DEALLOC_FLG_REDIRECTED) DEC_CC(allctr->calls.this_free); + + cinit = used_allctr->dd.ix - allctr->dd.ix; + if (ddq_enqueue(&used_allctr->dd.q, ptr, cinit)) erts_alloc_notify_delayed_dealloc(used_allctr->ix); } @@ -2495,7 +2541,7 @@ mbc_alloc(Allctr_t *allctr, Uint size) } static void -mbc_free(Allctr_t *allctr, void *p, Carrier_t **busy_pcrr_pp) +mbc_free(Allctr_t *allctr, ErtsAlcType_t type, void *p, Carrier_t **busy_pcrr_pp) { Uint is_first_blk; Uint is_last_blk; @@ -2517,7 +2563,8 @@ mbc_free(Allctr_t *allctr, void *p, Carrier_t **busy_pcrr_pp) crr = ABLK_TO_MBC(blk); ERTS_ALC_CPOOL_FREE_OP(allctr); - STAT_MBC_BLK_FREE(allctr, crr, busy_pcrr_pp, blk_sz, alcu_flgs); + + STAT_MBC_BLK_FREE(allctr, type, crr, busy_pcrr_pp, blk_sz, alcu_flgs); is_first_blk = IS_MBC_FIRST_ABLK(allctr, blk); is_last_blk = IS_LAST_BLK(blk); @@ -2586,8 +2633,8 @@ mbc_free(Allctr_t *allctr, void *p, Carrier_t **busy_pcrr_pp) } static void * -mbc_realloc(Allctr_t *allctr, void *p, Uint size, Uint32 alcu_flgs, - Carrier_t **busy_pcrr_pp) +mbc_realloc(Allctr_t *allctr, ErtsAlcType_t type, void *p, Uint size, + Uint32 alcu_flgs, Carrier_t **busy_pcrr_pp) { void *new_p; Uint old_blk_sz; @@ -2625,7 +2672,7 @@ mbc_realloc(Allctr_t *allctr, void *p, Uint size, Uint32 alcu_flgs, new_blk = UMEM2BLK(new_p); ASSERT(!(IS_MBC_BLK(new_blk) && ABLK_TO_MBC(new_blk) == *busy_pcrr_pp)); sys_memcpy(new_p, p, MIN(size, old_blk_sz - ABLK_HDR_SZ)); - mbc_free(allctr, p, busy_pcrr_pp); + mbc_free(allctr, type, p, busy_pcrr_pp); return new_p; } @@ -2702,7 +2749,7 @@ mbc_realloc(Allctr_t *allctr, void *p, Uint size, Uint32 alcu_flgs, crr = ABLK_TO_MBC(blk); ERTS_ALC_CPOOL_REALLOC_OP(allctr); - STAT_MBC_BLK_FREE(allctr, crr, NULL, old_blk_sz, alcu_flgs); + STAT_MBC_BLK_FREE(allctr, type, crr, NULL, old_blk_sz, alcu_flgs); STAT_MBC_BLK_ALLOC(allctr, crr, blk_sz, alcu_flgs); ASSERT(MBC_BLK_SZ(blk) >= allctr->min_block_size); @@ -2806,7 +2853,7 @@ mbc_realloc(Allctr_t *allctr, void *p, Uint size, Uint32 alcu_flgs, } ERTS_ALC_CPOOL_REALLOC_OP(allctr); - STAT_MBC_BLK_FREE(allctr, crr, NULL, old_blk_sz, alcu_flgs); + STAT_MBC_BLK_FREE(allctr, type, crr, NULL, old_blk_sz, alcu_flgs); STAT_MBC_BLK_ALLOC(allctr, crr, blk_sz, alcu_flgs); ASSERT(IS_ALLOCED_BLK(blk)); @@ -2867,7 +2914,7 @@ mbc_realloc(Allctr_t *allctr, void *p, Uint size, Uint32 alcu_flgs, if (!new_p) return NULL; sys_memcpy(new_p, p, MIN(size, old_blk_sz - ABLK_HDR_SZ)); - mbc_free(allctr, p, busy_pcrr_pp); + mbc_free(allctr, type, p, busy_pcrr_pp); return new_p; @@ -2897,7 +2944,7 @@ mbc_realloc(Allctr_t *allctr, void *p, Uint size, Uint32 alcu_flgs, 1); new_p = BLK2UMEM(new_blk); sys_memcpy(new_p, p, MIN(size, old_blk_sz - ABLK_HDR_SZ)); - mbc_free(allctr, p, NULL); + mbc_free(allctr, type, p, NULL); return new_p; } else { @@ -2954,7 +3001,7 @@ mbc_realloc(Allctr_t *allctr, void *p, Uint size, Uint32 alcu_flgs, 0); ERTS_ALC_CPOOL_FREE_OP(allctr); - STAT_MBC_BLK_FREE(allctr, crr, NULL, old_blk_sz, alcu_flgs); + STAT_MBC_BLK_FREE(allctr, type, crr, NULL, old_blk_sz, alcu_flgs); return new_p; } @@ -2965,7 +3012,6 @@ mbc_realloc(Allctr_t *allctr, void *p, Uint size, Uint32 alcu_flgs, #define ERTS_ALC_MAX_DEALLOC_CARRIER 10 #define ERTS_ALC_CPOOL_MAX_FETCH_INSPECT 100 -#define ERTS_ALC_CPOOL_CHECK_LIMIT_COUNT 100 #define ERTS_ALC_CPOOL_MAX_FAILED_STAT_READS 3 #define ERTS_ALC_CPOOL_PTR_MOD_MRK (((erts_aint_t) 1) << 0) @@ -2992,14 +3038,11 @@ typedef union { # error "Carrier pool implementation assumes ERTS_ALC_A_MIN > ERTS_ALC_A_INVALID" #endif -/* - * The pool is only allowed to be manipulated by managed - * threads except in the alloc_SUITE:cpool case. In this - * test case carrier_pool[ERTS_ALC_A_INVALID] will be - * used. - */ +/* The pools are only allowed to be manipulated by managed threads except in + * the alloc_SUITE:cpool test, where only test_carrier_pool is used. */ -static ErtsAlcCrrPool_t carrier_pool[ERTS_ALC_A_MAX+1] erts_align_attribute(ERTS_CACHE_LINE_SIZE); +static ErtsAlcCrrPool_t firstfit_carrier_pool; +static ErtsAlcCrrPool_t test_carrier_pool; #define ERTS_ALC_CPOOL_MAX_BACKOFF (1 << 8) @@ -3020,12 +3063,12 @@ backoff(int n) static int cpool_dbg_is_in_pool(Allctr_t *allctr, Carrier_t *crr) { - ErtsAlcCPoolData_t *sentinel = &carrier_pool[allctr->alloc_no].sentinel; + ErtsAlcCPoolData_t *sentinel = allctr->cpool.sentinel; ErtsAlcCPoolData_t *cpdp = sentinel; Carrier_t *tmp_crr; while (1) { - cpdp = (ErtsAlcCPoolData_t *) (erts_atomic_read_ddrb(&cpdp->next) & ~FLG_MASK); + cpdp = (ErtsAlcCPoolData_t *) (erts_atomic_read_ddrb(&cpdp->next) & ~CRR_FLG_MASK); if (cpdp == sentinel) return 0; tmp_crr = (Carrier_t *) (((char *) cpdp) - offsetof(Carrier_t, cpool)); @@ -3037,7 +3080,7 @@ cpool_dbg_is_in_pool(Allctr_t *allctr, Carrier_t *crr) static int cpool_is_empty(Allctr_t *allctr) { - ErtsAlcCPoolData_t *sentinel = &carrier_pool[allctr->alloc_no].sentinel; + ErtsAlcCPoolData_t *sentinel = allctr->cpool.sentinel; return ((erts_atomic_read_rb(&sentinel->next) == (erts_aint_t) sentinel) && (erts_atomic_read_rb(&sentinel->prev) == (erts_aint_t) sentinel)); } @@ -3127,16 +3170,31 @@ cpool_insert(Allctr_t *allctr, Carrier_t *crr) { ErtsAlcCPoolData_t *cpd1p, *cpd2p; erts_aint_t val; - ErtsAlcCPoolData_t *sentinel = &carrier_pool[allctr->alloc_no].sentinel; + ErtsAlcCPoolData_t *sentinel = allctr->cpool.sentinel; Allctr_t *orig_allctr = crr->cpool.orig_allctr; - ERTS_ALC_CPOOL_ASSERT(allctr->alloc_no == ERTS_ALC_A_INVALID /* testcase */ + ERTS_ALC_CPOOL_ASSERT(allctr->alloc_no == ERTS_ALC_A_TEST /* testcase */ || erts_thr_progress_is_managed_thread()); - erts_atomic_add_nob(&orig_allctr->cpool.stat.blocks_size, - (erts_aint_t) crr->cpool.blocks_size); - erts_atomic_add_nob(&orig_allctr->cpool.stat.no_blocks, - (erts_aint_t) crr->cpool.blocks); + { + int alloc_no = allctr->alloc_no; + + ERTS_ALC_CPOOL_ASSERT( + erts_atomic_read_nob(&orig_allctr->cpool.stat.blocks_size[alloc_no]) >= 0 && + crr->cpool.blocks_size[alloc_no] >= 0); + + ERTS_ALC_CPOOL_ASSERT( + erts_atomic_read_nob(&orig_allctr->cpool.stat.no_blocks[alloc_no]) >= 0 && + crr->cpool.blocks[alloc_no] >= 0); + + /* We only modify the counter for our current type since the others are + * conceptually still in the pool. */ + erts_atomic_add_nob(&orig_allctr->cpool.stat.blocks_size[alloc_no], + ((erts_aint_t) crr->cpool.blocks_size[alloc_no])); + erts_atomic_add_nob(&orig_allctr->cpool.stat.no_blocks[alloc_no], + ((erts_aint_t) crr->cpool.blocks[alloc_no])); + } + erts_atomic_add_nob(&orig_allctr->cpool.stat.carriers_size, (erts_aint_t) CARRIER_SZ(crr)); erts_atomic_inc_nob(&orig_allctr->cpool.stat.no_carriers); @@ -3209,10 +3267,10 @@ cpool_delete(Allctr_t *allctr, Allctr_t *prev_allctr, Carrier_t *crr) ErtsAlcCPoolData_t *cpd1p, *cpd2p; erts_aint_t val; #ifdef ERTS_ALC_CPOOL_DEBUG - ErtsAlcCPoolData_t *sentinel = &carrier_pool[allctr->alloc_no].sentinel; + ErtsAlcCPoolData_t *sentinel = allctr->cpool.sentinel; #endif - ERTS_ALC_CPOOL_ASSERT(allctr->alloc_no == ERTS_ALC_A_INVALID /* testcase */ + ERTS_ALC_CPOOL_ASSERT(allctr->alloc_no == ERTS_ALC_A_TEST /* testcase */ || erts_thr_progress_is_managed_thread()); ERTS_ALC_CPOOL_ASSERT(sentinel != &crr->cpool); @@ -3288,28 +3346,43 @@ cpool_delete(Allctr_t *allctr, Allctr_t *prev_allctr, Carrier_t *crr) crr->cpool.thr_prgr = erts_thr_progress_later(NULL); - erts_atomic_add_nob(&prev_allctr->cpool.stat.blocks_size, - -((erts_aint_t) crr->cpool.blocks_size)); - erts_atomic_add_nob(&prev_allctr->cpool.stat.no_blocks, - -((erts_aint_t) crr->cpool.blocks)); - erts_atomic_add_nob(&prev_allctr->cpool.stat.carriers_size, + { + Allctr_t *orig_allctr = crr->cpool.orig_allctr; + int alloc_no = allctr->alloc_no; + + ERTS_ALC_CPOOL_ASSERT(orig_allctr == prev_allctr); + + ERTS_ALC_CPOOL_ASSERT(crr->cpool.blocks_size[alloc_no] <= + erts_atomic_read_nob(&orig_allctr->cpool.stat.blocks_size[alloc_no])); + + ERTS_ALC_CPOOL_ASSERT(crr->cpool.blocks[alloc_no] <= + erts_atomic_read_nob(&orig_allctr->cpool.stat.no_blocks[alloc_no])); + + /* We only modify the counters for our current type since the others + * were, conceptually, never taken out of the pool. */ + erts_atomic_add_nob(&orig_allctr->cpool.stat.blocks_size[alloc_no], + -((erts_aint_t) crr->cpool.blocks_size[alloc_no])); + erts_atomic_add_nob(&orig_allctr->cpool.stat.no_blocks[alloc_no], + -((erts_aint_t) crr->cpool.blocks[alloc_no])); + + erts_atomic_add_nob(&orig_allctr->cpool.stat.carriers_size, -((erts_aint_t) CARRIER_SZ(crr))); - erts_atomic_dec_wb(&prev_allctr->cpool.stat.no_carriers); + erts_atomic_dec_wb(&orig_allctr->cpool.stat.no_carriers); + } } static Carrier_t * cpool_fetch(Allctr_t *allctr, UWord size) { - enum { IGNORANT, HAS_SEEN_SENTINEL, THE_LAST_ONE } loop_state; - int i; + int i, seen_sentinel; Carrier_t *crr; Carrier_t *reinsert_crr = NULL; ErtsAlcCPoolData_t *cpdp; ErtsAlcCPoolData_t *cpool_entrance = NULL; ErtsAlcCPoolData_t *sentinel; - ERTS_ALC_CPOOL_ASSERT(allctr->alloc_no == ERTS_ALC_A_INVALID /* testcase */ + ERTS_ALC_CPOOL_ASSERT(allctr->alloc_no == ERTS_ALC_A_TEST /* testcase */ || erts_thr_progress_is_managed_thread()); i = ERTS_ALC_CPOOL_MAX_FETCH_INSPECT; @@ -3411,48 +3484,39 @@ cpool_fetch(Allctr_t *allctr, UWord size) /* * Finally search the shared pool and try employ foreign carriers */ - sentinel = &carrier_pool[allctr->alloc_no].sentinel; + sentinel = allctr->cpool.sentinel; if (cpool_entrance) { /* * We saw a pooled carried above, use it as entrance into the pool */ - cpdp = cpool_entrance; } else { /* - * No pooled carried seen above. Start search at cpool sentinel, + * No pooled carrier seen above. Start search at cpool sentinel, * but begin by passing one element before trying to fetch. * This in order to avoid contention with threads inserting elements. */ - cpool_entrance = sentinel; - cpdp = cpool_aint2cpd(cpool_read(&cpool_entrance->prev)); - if (cpdp == sentinel) + cpool_entrance = cpool_aint2cpd(cpool_read(&sentinel->prev)); + if (cpool_entrance == sentinel) goto check_dc_list; } - loop_state = IGNORANT; + cpdp = cpool_entrance; + seen_sentinel = 0; do { erts_aint_t exp; cpdp = cpool_aint2cpd(cpool_read(&cpdp->prev)); - if (cpdp == cpool_entrance) { - if (cpool_entrance == sentinel) { - cpdp = cpool_aint2cpd(cpool_read(&cpdp->prev)); - if (cpdp == sentinel) - break; - } - loop_state = THE_LAST_ONE; - } - else if (cpdp == sentinel) { - if (loop_state == HAS_SEEN_SENTINEL) { + if (cpdp == sentinel) { + if (seen_sentinel) { /* We been here before. cpool_entrance must have been removed */ INC_CC(allctr->cpool.stat.entrance_removed); break; } - cpdp = cpool_aint2cpd(cpool_read(&cpdp->prev)); - if (cpdp == sentinel) - break; - loop_state = HAS_SEEN_SENTINEL; + seen_sentinel = 1; + continue; } + ASSERT(cpdp != cpool_entrance || seen_sentinel); + crr = ErtsContainerStruct(cpdp, Carrier_t, cpool); exp = erts_atomic_read_rb(&crr->allctr); @@ -3485,7 +3549,7 @@ cpool_fetch(Allctr_t *allctr, UWord size) INC_CC(allctr->cpool.stat.fail_shared); return NULL; } - }while (loop_state != THE_LAST_ONE); + }while (cpdp != cpool_entrance); check_dc_list: /* Last; check our own pending dealloc carrier list... */ @@ -3664,8 +3728,9 @@ cpool_init_carrier_data(Allctr_t *allctr, Carrier_t *crr) crr->cpool.orig_allctr = allctr; crr->cpool.thr_prgr = ERTS_THR_PRGR_INVALID; erts_atomic_init_nob(&crr->cpool.max_size, 0); - crr->cpool.blocks = 0; - crr->cpool.blocks_size = 0; + sys_memset(&crr->cpool.blocks_size, 0, sizeof(crr->cpool.blocks_size)); + sys_memset(&crr->cpool.blocks, 0, sizeof(crr->cpool.blocks)); + crr->cpool.total_blocks_size = 0; if (!ERTS_ALC_IS_CPOOL_ENABLED(allctr)) crr->cpool.abandon_limit = 0; else { @@ -3680,14 +3745,14 @@ cpool_init_carrier_data(Allctr_t *allctr, Carrier_t *crr) crr->cpool.state = ERTS_MBC_IS_HOME; } -static void -set_new_allctr_abandon_limit(Allctr_t *allctr) + + +static UWord +allctr_abandon_limit(Allctr_t *allctr) { UWord limit; UWord csz; - allctr->cpool.check_limit_count = ERTS_ALC_CPOOL_CHECK_LIMIT_COUNT; - csz = allctr->mbcs.curr.norm.mseg.size; csz += allctr->mbcs.curr.norm.sys_alloc.size; @@ -3697,7 +3762,13 @@ set_new_allctr_abandon_limit(Allctr_t *allctr) else limit = (csz/100)*allctr->cpool.util_limit; - allctr->cpool.abandon_limit = limit; + return limit; +} + +static void ERTS_INLINE +set_new_allctr_abandon_limit(Allctr_t *allctr) +{ + allctr->cpool.abandon_limit = allctr_abandon_limit(allctr); } static void @@ -3709,7 +3780,6 @@ abandon_carrier(Allctr_t *allctr, Carrier_t *crr) unlink_carrier(&allctr->mbc_list, crr); allctr->remove_mbc(allctr, crr); - set_new_allctr_abandon_limit(allctr); cpool_insert(allctr, crr); @@ -3762,7 +3832,8 @@ poolify_my_carrier(Allctr_t *allctr, Carrier_t *crr) } static void -cpool_read_stat(Allctr_t *allctr, UWord *nocp, UWord *cszp, UWord *nobp, UWord *bszp) +cpool_read_stat(Allctr_t *allctr, int alloc_no, + UWord *nocp, UWord *cszp, UWord *nobp, UWord *bszp) { int i; UWord noc = 0, csz = 0, nob = 0, bsz = 0; @@ -3782,10 +3853,10 @@ cpool_read_stat(Allctr_t *allctr, UWord *nocp, UWord *cszp, UWord *nobp, UWord * ? erts_atomic_read_nob(&allctr->cpool.stat.carriers_size) : 0); tnob = (UWord) (nobp - ? erts_atomic_read_nob(&allctr->cpool.stat.no_blocks) + ? erts_atomic_read_nob(&allctr->cpool.stat.no_blocks[alloc_no]) : 0); tbsz = (UWord) (bszp - ? erts_atomic_read_nob(&allctr->cpool.stat.blocks_size) + ? erts_atomic_read_nob(&allctr->cpool.stat.blocks_size[alloc_no]) : 0); if (tnoc == noc && tcsz == csz && tnob == nob && tbsz == bsz) break; @@ -4040,6 +4111,7 @@ create_carrier(Allctr_t *allctr, Uint umem_sz, UWord flags) #if HAVE_ERTS_MSEG mbc_final_touch: #endif + set_new_allctr_abandon_limit(allctr); blk = MBC_TO_FIRST_BLK(allctr, crr); @@ -4258,7 +4330,6 @@ destroy_carrier(Allctr_t *allctr, Block_t *blk, Carrier_t **busy_pcrr_pp) else { ASSERT(IS_MBC_FIRST_FBLK(allctr, blk)); crr = FIRST_BLK_TO_MBC(allctr, blk); - crr_sz = CARRIER_SZ(crr); #ifdef DEBUG if (!allctr->stopped) { @@ -4290,15 +4361,7 @@ destroy_carrier(Allctr_t *allctr, Block_t *blk, Carrier_t **busy_pcrr_pp) else { unlink_carrier(&allctr->mbc_list, crr); -#if HAVE_ERTS_MSEG - if (IS_MSEG_CARRIER(crr)) { - ASSERT(crr_sz % ERTS_SACRR_UNIT_SZ == 0); - STAT_MSEG_MBC_FREE(allctr, crr_sz); - } - else -#endif - STAT_SYS_ALLOC_MBC_FREE(allctr, crr_sz); - + STAT_MBC_FREE(allctr, crr); if (allctr->remove_mbc) allctr->remove_mbc(allctr, crr); } @@ -4312,7 +4375,7 @@ destroy_carrier(Allctr_t *allctr, Block_t *blk, Carrier_t **busy_pcrr_pp) LTTNG5(carrier_destroy, ERTS_ALC_A2AD(allctr->alloc_no), allctr->ix, - crr_sz, + CARRIER_SZ(crr), mbc_stats, sbc_stats); } @@ -4390,6 +4453,8 @@ static struct { Eterm blocks_size; Eterm blocks; + Eterm foreign_blocks; + Eterm calls; Eterm sys_alloc; Eterm sys_free; @@ -4490,6 +4555,7 @@ init_atoms(Allctr_t *allctr) AM_INIT(carriers); AM_INIT(blocks_size); AM_INIT(blocks); + AM_INIT(foreign_blocks); AM_INIT(calls); AM_INIT(sys_alloc); @@ -4625,7 +4691,6 @@ sz_info_fix(Allctr_t *allctr, ErtsAlcFixList_t *fix = &allctr->fix[ix]; UWord alloced = fix->type_size * fix->u.cpool.allocated; UWord used = fix->type_size * fix->u.cpool.used; - ErtsAlcType_t n = ERTS_ALC_N_MIN_A_FIXED_SIZE + ix; if (print_to_p) { fmtfn_t to = *print_to_p; @@ -4633,14 +4698,14 @@ sz_info_fix(Allctr_t *allctr, erts_print(to, arg, "fix type internal: %s %bpu %bpu\n", - (char *) ERTS_ALC_N2TD(n), + (char *) ERTS_ALC_T2TD(fix->type), alloced, used); } if (hpp || szp) { add_3tup(hpp, szp, &res, - alloc_type_atoms[n], + alloc_type_atoms[ERTS_ALC_T2N(fix->type)], bld_unstable_uint(hpp, szp, alloced), bld_unstable_uint(hpp, szp, used)); } @@ -4653,7 +4718,6 @@ sz_info_fix(Allctr_t *allctr, ErtsAlcFixList_t *fix = &allctr->fix[ix]; UWord alloced = fix->type_size * fix->u.nocpool.allocated; UWord used = fix->type_size*fix->u.nocpool.used; - ErtsAlcType_t n = ERTS_ALC_N_MIN_A_FIXED_SIZE + ix; if (print_to_p) { fmtfn_t to = *print_to_p; @@ -4661,14 +4725,14 @@ sz_info_fix(Allctr_t *allctr, erts_print(to, arg, "fix type: %s %bpu %bpu\n", - (char *) ERTS_ALC_N2TD(n), + (char *) ERTS_ALC_T2TD(fix->type), alloced, used); } if (hpp || szp) { add_3tup(hpp, szp, &res, - alloc_type_atoms[n], + alloc_type_atoms[ERTS_ALC_T2N(fix->type)], bld_unstable_uint(hpp, szp, alloced), bld_unstable_uint(hpp, szp, used)); } @@ -4741,9 +4805,9 @@ info_cpool(Allctr_t *allctr, noc = csz = nob = bsz = ~0; if (print_to_p || hpp) { if (sz_only) - cpool_read_stat(allctr, NULL, &csz, NULL, &bsz); + cpool_read_stat(allctr, allctr->alloc_no, NULL, &csz, NULL, &bsz); else - cpool_read_stat(allctr, &noc, &csz, &nob, &bsz); + cpool_read_stat(allctr, allctr->alloc_no, &noc, &csz, &nob, &bsz); } if (print_to_p) { @@ -4758,6 +4822,10 @@ info_cpool(Allctr_t *allctr, } if (hpp || szp) { + Eterm foreign_blocks; + int i; + + foreign_blocks = NIL; res = NIL; if (!sz_only) { @@ -4804,22 +4872,61 @@ info_cpool(Allctr_t *allctr, add_3tup(hpp, szp, &res, am.entrance_removed, bld_unstable_uint(hpp, szp, ERTS_ALC_CC_GIGA_VAL(allctr->cpool.stat.entrance_removed)), bld_unstable_uint(hpp, szp, ERTS_ALC_CC_VAL(allctr->cpool.stat.entrance_removed))); + } add_2tup(hpp, szp, &res, am.carriers_size, bld_unstable_uint(hpp, szp, csz)); - } - if (!sz_only) - add_2tup(hpp, szp, &res, - am.carriers, - bld_unstable_uint(hpp, szp, noc)); + + if (!sz_only) { + add_2tup(hpp, szp, &res, + am.carriers, + bld_unstable_uint(hpp, szp, noc)); + } + add_2tup(hpp, szp, &res, am.blocks_size, bld_unstable_uint(hpp, szp, bsz)); - if (!sz_only) + + if (!sz_only) { add_2tup(hpp, szp, &res, am.blocks, bld_unstable_uint(hpp, szp, nob)); + } + + for (i = ERTS_ALC_A_MIN; i <= ERTS_ALC_A_MAX; i++) { + const char *name_str; + Eterm name, info; + + if (i == allctr->alloc_no) { + continue; + } + + cpool_read_stat(allctr, i, NULL, NULL, &nob, &bsz); + + if (bsz == 0 && (nob == 0 || sz_only)) { + continue; + } + + name_str = ERTS_ALC_A2AD(i); + info = NIL; + + add_2tup(hpp, szp, &info, + am.blocks_size, + bld_unstable_uint(hpp, szp, bsz)); + + if (!sz_only) { + add_2tup(hpp, szp, &info, + am.blocks, + bld_unstable_uint(hpp, szp, nob)); + } + + name = am_atom_put(name_str, sys_strlen(name_str)); + + add_2tup(hpp, szp, &foreign_blocks, name, info); + } + + add_2tup(hpp, szp, &res, am.foreign_blocks, foreign_blocks); } return res; @@ -5455,6 +5562,19 @@ erts_alcu_info(Allctr_t *allctr, return res; } +void +erts_alcu_foreign_size(Allctr_t *allctr, ErtsAlcType_t alloc_no, AllctrSize_t *size) +{ + if (ERTS_ALC_IS_CPOOL_ENABLED(allctr)) { + UWord csz, bsz; + cpool_read_stat(allctr, alloc_no, NULL, &csz, NULL, &bsz); + size->carriers = csz; + size->blocks = bsz; + } else { + size->carriers = 0; + size->blocks = 0; + } +} void erts_alcu_current_size(Allctr_t *allctr, AllctrSize_t *size, ErtsAlcUFixInfo_t *fi, int fisz) @@ -5473,7 +5593,7 @@ erts_alcu_current_size(Allctr_t *allctr, AllctrSize_t *size, ErtsAlcUFixInfo_t * if (ERTS_ALC_IS_CPOOL_ENABLED(allctr)) { UWord csz, bsz; - cpool_read_stat(allctr, NULL, &csz, NULL, &bsz); + cpool_read_stat(allctr, allctr->alloc_no, NULL, &csz, NULL, &bsz); size->blocks += bsz; size->carriers += csz; } @@ -5518,6 +5638,11 @@ do_erts_alcu_alloc(ErtsAlcType_t type, Allctr_t *allctr, Uint size) ERTS_ALCU_DBG_CHK_THR_ACCESS(allctr); + /* Reject sizes that can't fit into the header word. */ + if (size > ~BLK_FLG_MASK) { + return NULL; + } + #if ALLOC_ZERO_EQ_NULL if (!size) return NULL; @@ -5684,12 +5809,11 @@ do_erts_alcu_free(ErtsAlcType_t type, Allctr_t *allctr, void *p, ERTS_ALCU_DBG_CHK_THR_ACCESS(allctr); if (p) { - INC_CC(allctr->calls.this_free); - if (allctr->fix) { + if (ERTS_ALC_IS_FIX_TYPE(type)) { if (ERTS_ALC_IS_CPOOL_ENABLED(allctr)) - fix_cpool_free(allctr, type, p, busy_pcrr_pp, 1); + fix_cpool_free(allctr, type, 0, p, busy_pcrr_pp); else fix_nocpool_free(allctr, type, p); } @@ -5698,7 +5822,7 @@ do_erts_alcu_free(ErtsAlcType_t type, Allctr_t *allctr, void *p, if (IS_SBC_BLK(blk)) destroy_carrier(allctr, blk, NULL); else - mbc_free(allctr, p, busy_pcrr_pp); + mbc_free(allctr, type, p, busy_pcrr_pp); } } } @@ -5800,6 +5924,11 @@ do_erts_alcu_realloc(ErtsAlcType_t type, return res; } + /* Reject sizes that can't fit into the header word. */ + if (size > ~BLK_FLG_MASK) { + return NULL; + } + #if ALLOC_ZERO_EQ_NULL if (!size) { ASSERT(p); @@ -5816,7 +5945,7 @@ do_erts_alcu_realloc(ErtsAlcType_t type, if (size < allctr->sbc_threshold) { if (IS_MBC_BLK(blk)) - res = mbc_realloc(allctr, p, size, alcu_flgs, busy_pcrr_pp); + res = mbc_realloc(allctr, type, p, size, alcu_flgs, busy_pcrr_pp); else { Uint used_sz = SBC_HEADER_SIZE + ABLK_HDR_SZ + size; Uint crr_sz; @@ -5875,7 +6004,7 @@ do_erts_alcu_realloc(ErtsAlcType_t type, sys_memcpy((void *) res, (void *) p, MIN(MBC_ABLK_SZ(blk) - ABLK_HDR_SZ, size)); - mbc_free(allctr, p, busy_pcrr_pp); + mbc_free(allctr, type, p, busy_pcrr_pp); } else res = NULL; @@ -6243,6 +6372,7 @@ int erts_alcu_start(Allctr_t *allctr, AllctrInit_t *init) { /* erts_alcu_start assumes that allctr has been zeroed */ + int i; if (((UWord)allctr & ERTS_CRR_ALCTR_FLG_MASK) != 0) { erts_exit(ERTS_ABORT_EXIT, "%s:%d:erts_alcu_start: Alignment error\n", @@ -6266,6 +6396,11 @@ erts_alcu_start(Allctr_t *allctr, AllctrInit_t *init) allctr->ix = init->ix; allctr->alloc_no = init->alloc_no; + allctr->alloc_strat = init->alloc_strat; + + ASSERT(allctr->alloc_no >= ERTS_ALC_A_MIN && + allctr->alloc_no <= ERTS_ALC_A_MAX); + if (allctr->alloc_no < ERTS_ALC_A_MIN || ERTS_ALC_A_MAX < allctr->alloc_no) allctr->alloc_no = ERTS_ALC_A_INVALID; @@ -6318,8 +6453,7 @@ erts_alcu_start(Allctr_t *allctr, AllctrInit_t *init) + sizeof(FreeBlkFtr_t)); if (init->tpref) { Uint sz = ABLK_HDR_SZ; - sz += (init->fix ? - sizeof(ErtsAllctrFixDDBlock_t) : sizeof(ErtsAllctrDDBlock_t)); + sz += sizeof(ErtsAllctrDDBlock_t); sz = UNIT_CEILING(sz); if (sz > allctr->min_block_size) allctr->min_block_size = sz; @@ -6330,15 +6464,23 @@ erts_alcu_start(Allctr_t *allctr, AllctrInit_t *init) allctr->cpool.dc_list.last = NULL; allctr->cpool.abandon_limit = 0; allctr->cpool.disable_abandon = 0; - erts_atomic_init_nob(&allctr->cpool.stat.blocks_size, 0); - erts_atomic_init_nob(&allctr->cpool.stat.no_blocks, 0); + for (i = ERTS_ALC_A_MIN; i <= ERTS_ALC_A_MAX; i++) { + erts_atomic_init_nob(&allctr->cpool.stat.blocks_size[i], 0); + erts_atomic_init_nob(&allctr->cpool.stat.no_blocks[i], 0); + } erts_atomic_init_nob(&allctr->cpool.stat.carriers_size, 0); erts_atomic_init_nob(&allctr->cpool.stat.no_carriers, 0); - allctr->cpool.check_limit_count = ERTS_ALC_CPOOL_CHECK_LIMIT_COUNT; if (!init->ts && init->acul && init->acnl) { allctr->cpool.util_limit = init->acul; allctr->cpool.in_pool_limit = init->acnl; allctr->cpool.fblk_min_limit = init->acfml; + + if (allctr->alloc_strat == ERTS_ALC_S_FIRSTFIT) { + allctr->cpool.sentinel = &firstfit_carrier_pool.sentinel; + } + else if (allctr->alloc_no != ERTS_ALC_A_TEST) { + ERTS_INTERNAL_ERROR("Impossible carrier migration config."); + } } else { allctr->cpool.util_limit = 0; @@ -6346,6 +6488,12 @@ erts_alcu_start(Allctr_t *allctr, AllctrInit_t *init) allctr->cpool.fblk_min_limit = 0; } + /* The invasive tests don't really care whether the pool is enabled or not, + * so we need to set this unconditionally for this allocator type. */ + if (allctr->alloc_no == ERTS_ALC_A_TEST) { + allctr->cpool.sentinel = &test_carrier_pool.sentinel; + } + allctr->sbc_threshold = adjust_sbct(allctr, init->sbct); #if HAVE_ERTS_MSEG @@ -6457,9 +6605,9 @@ erts_alcu_start(Allctr_t *allctr, AllctrInit_t *init) allctr->fix_shrink_scheduled = 0; for (i = 0; i < ERTS_ALC_NO_FIXED_SIZES; i++) { allctr->fix[i].type_size = init->fix_type_size[i]; + allctr->fix[i].type = ERTS_ALC_N2T(i + ERTS_ALC_N_MIN_A_FIXED_SIZE); allctr->fix[i].list_size = 0; allctr->fix[i].list = NULL; - ASSERT(allctr->fix[i].type_size >= sizeof(ErtsAllctrFixDDBlock_t)); if (ERTS_ALC_IS_CPOOL_ENABLED(allctr)) { allctr->fix[i].u.cpool.min_list_size = 0; allctr->fix[i].u.cpool.shrink_list = 0; @@ -6508,12 +6656,16 @@ erts_alcu_stop(Allctr_t *allctr) void erts_alcu_init(AlcUInit_t *init) { - int i; - for (i = 0; i <= ERTS_ALC_A_MAX; i++) { - ErtsAlcCPoolData_t *sentinel = &carrier_pool[i].sentinel; - erts_atomic_init_nob(&sentinel->next, (erts_aint_t) sentinel); - erts_atomic_init_nob(&sentinel->prev, (erts_aint_t) sentinel); - } + ErtsAlcCPoolData_t *sentinel; + + sentinel = &firstfit_carrier_pool.sentinel; + erts_atomic_init_nob(&sentinel->next, (erts_aint_t) sentinel); + erts_atomic_init_nob(&sentinel->prev, (erts_aint_t) sentinel); + + sentinel = &test_carrier_pool.sentinel; + erts_atomic_init_nob(&sentinel->next, (erts_aint_t) sentinel); + erts_atomic_init_nob(&sentinel->prev, (erts_aint_t) sentinel); + ERTS_CT_ASSERT(SBC_BLK_SZ_MASK == MBC_FBLK_SZ_MASK); /* see BLK_SZ */ #if HAVE_ERTS_MSEG ASSERT(erts_mseg_unit_size() == ERTS_SACRR_UNIT_SZ); @@ -6695,7 +6847,7 @@ static int blockscan_cpool_yielding(blockscan_t *state) { ErtsAlcCPoolData_t *sentinel, *cursor; - sentinel = &carrier_pool[(state->allocator)->alloc_no].sentinel; + sentinel = (state->allocator)->cpool.sentinel; cursor = blockscan_restore_cpool_cursor(state); if (ERTS_PROC_IS_EXITING(state->process)) { @@ -6827,11 +6979,8 @@ static int blockscan_sweep_mbcs(blockscan_t *state) static int blockscan_sweep_cpool(blockscan_t *state) { if (state->current_op != blockscan_sweep_cpool) { - ErtsAlcCPoolData_t *sentinel; - SET_CARRIER_HDR(&state->dummy_carrier, 0, SCH_MBC, state->allocator); - sentinel = &carrier_pool[(state->allocator)->alloc_no].sentinel; - state->cpool_cursor = sentinel; + state->cpool_cursor = (state->allocator)->cpool.sentinel; } state->current_op = blockscan_sweep_cpool; @@ -7115,11 +7264,14 @@ static int gather_ahist_scan(Allctr_t *allocator, alcu_atag_t tag; block = SBC2BLK(allocator, carrier); - tag = GET_BLK_ATAG(block); - ASSERT(DBG_IS_VALID_ATAG(allocator, tag)); + if (BLK_HAS_ATAG(block)) { + tag = GET_BLK_ATAG(block); - gather_ahist_update(state, tag, SBC_BLK_SZ(block)); + ASSERT(DBG_IS_VALID_ATAG(tag)); + + gather_ahist_update(state, tag, SBC_BLK_SZ(block)); + } } else { UWord scanned_bytes = MBC_HEADER_SIZE(allocator); @@ -7130,10 +7282,10 @@ static int gather_ahist_scan(Allctr_t *allocator, while (1) { UWord block_size = MBC_BLK_SZ(block); - if (IS_ALLOCED_BLK(block)) { + if (IS_ALLOCED_BLK(block) && BLK_HAS_ATAG(block)) { alcu_atag_t tag = GET_BLK_ATAG(block); - ASSERT(DBG_IS_VALID_ATAG(allocator, tag)); + ASSERT(DBG_IS_VALID_ATAG(tag)); gather_ahist_update(state, tag, block_size); } @@ -7293,8 +7445,6 @@ int erts_alcu_gather_alloc_histograms(Process *p, int allocator_num, sched_id, &allocator)) { return 0; - } else if (!allocator->atags) { - return 0; } ensure_atoms_initialized(allocator); diff --git a/erts/emulator/beam/erl_alloc_util.h b/erts/emulator/beam/erl_alloc_util.h index f26ace1534..9ab8589bf3 100644 --- a/erts/emulator/beam/erl_alloc_util.h +++ b/erts/emulator/beam/erl_alloc_util.h @@ -24,6 +24,7 @@ #define ERTS_ALCU_VSN_STR "3.0" #include "erl_alloc_types.h" +#include "erl_alloc.h" #define ERL_THREADS_EMU_INTERNAL__ #include "erl_threads.h" @@ -44,6 +45,7 @@ typedef struct { typedef struct { char *name_prefix; ErtsAlcType_t alloc_no; + ErtsAlcStrat_t alloc_strat; int force; int ix; int ts; @@ -101,6 +103,7 @@ typedef struct { #define ERTS_DEFAULT_ALLCTR_INIT { \ NULL, \ ERTS_ALC_A_INVALID, /* (number) alloc_no: allocator number */\ + ERTS_ALC_S_INVALID, /* (number) alloc_strat: allocator strategy */\ 0, /* (bool) force: force enabled */\ 0, /* (number) ix: instance index */\ 1, /* (bool) ts: thread safe */\ @@ -138,6 +141,7 @@ typedef struct { #define ERTS_DEFAULT_ALLCTR_INIT { \ NULL, \ ERTS_ALC_A_INVALID, /* (number) alloc_no: allocator number */\ + ERTS_ALC_S_INVALID, /* (number) alloc_strat: allocator strategy */\ 0, /* (bool) force: force enabled */\ 0, /* (number) ix: instance index */\ 1, /* (bool) ts: thread safe */\ @@ -188,6 +192,7 @@ Eterm erts_alcu_info(Allctr_t *, int, int, fmtfn_t *, void *, Uint **, Uint *); void erts_alcu_init(AlcUInit_t *); void erts_alcu_current_size(Allctr_t *, AllctrSize_t *, ErtsAlcUFixInfo_t *, int); +void erts_alcu_foreign_size(Allctr_t *, ErtsAlcType_t, AllctrSize_t *); void erts_alcu_check_delayed_dealloc(Allctr_t *, int, int *, ErtsThrPrgrVal *, int *); erts_aint32_t erts_alcu_fix_alloc_shrink(Allctr_t *, erts_aint32_t); @@ -286,10 +291,18 @@ void erts_alcu_sched_spec_data_init(struct ErtsSchedulerData_ *esdp); #define UNIT_FLOOR(X) ((X) & UNIT_MASK) #define UNIT_CEILING(X) UNIT_FLOOR((X) + INV_UNIT_MASK) -#define FLG_MASK INV_UNIT_MASK -#define SBC_BLK_SZ_MASK UNIT_MASK -#define MBC_FBLK_SZ_MASK UNIT_MASK -#define CARRIER_SZ_MASK UNIT_MASK +/* We store flags in the bits that no one will ever use. Generally these are + * the bits below the alignment size, but for blocks we also steal the highest + * bit since the header's a size and no one can expect to be able to allocate + * objects that large. */ +#define HIGHEST_WORD_BIT (((UWord) 1) << (sizeof(UWord) * CHAR_BIT - 1)) + +#define BLK_FLG_MASK (INV_UNIT_MASK | HIGHEST_WORD_BIT) +#define SBC_BLK_SZ_MASK (~BLK_FLG_MASK) +#define MBC_FBLK_SZ_MASK (~BLK_FLG_MASK) + +#define CRR_FLG_MASK INV_UNIT_MASK +#define CRR_SZ_MASK UNIT_MASK #if ERTS_HAVE_MSEG_SUPER_ALIGNED \ || (!HAVE_ERTS_MSEG && ERTS_HAVE_ERTS_SYS_ALIGNED_ALLOC) @@ -299,9 +312,9 @@ void erts_alcu_sched_spec_data_init(struct ErtsSchedulerData_ *esdp); # define ERTS_SUPER_ALIGN_BITS 18 # endif # ifdef ARCH_64 -# define MBC_ABLK_OFFSET_BITS 24 +# define MBC_ABLK_OFFSET_BITS 23 # else -# define MBC_ABLK_OFFSET_BITS 9 +# define MBC_ABLK_OFFSET_BITS 8 /* Affects hard limits for sbct and lmbcs documented in erts_alloc.xml */ # endif # define ERTS_SACRR_UNIT_SHIFT ERTS_SUPER_ALIGN_BITS @@ -322,18 +335,17 @@ void erts_alcu_sched_spec_data_init(struct ErtsSchedulerData_ *esdp); #if MBC_ABLK_OFFSET_BITS # define MBC_ABLK_OFFSET_SHIFT (sizeof(UWord)*8 - MBC_ABLK_OFFSET_BITS) -# define MBC_ABLK_OFFSET_MASK (~((UWord)0) << MBC_ABLK_OFFSET_SHIFT) -# define MBC_ABLK_SZ_MASK (~MBC_ABLK_OFFSET_MASK & ~FLG_MASK) +# define MBC_ABLK_OFFSET_MASK ((~((UWord)0) << MBC_ABLK_OFFSET_SHIFT) & ~BLK_FLG_MASK) +# define MBC_ABLK_SZ_MASK (~MBC_ABLK_OFFSET_MASK & ~BLK_FLG_MASK) #else -# define MBC_ABLK_SZ_MASK (~FLG_MASK) +# define MBC_ABLK_SZ_MASK (~BLK_FLG_MASK) #endif #define MBC_ABLK_SZ(B) (ASSERT(!is_sbc_blk(B)), (B)->bhdr & MBC_ABLK_SZ_MASK) #define MBC_FBLK_SZ(B) (ASSERT(!is_sbc_blk(B)), (B)->bhdr & MBC_FBLK_SZ_MASK) #define SBC_BLK_SZ(B) (ASSERT(is_sbc_blk(B)), (B)->bhdr & SBC_BLK_SZ_MASK) -#define CARRIER_SZ(C) \ - ((C)->chdr & CARRIER_SZ_MASK) +#define CARRIER_SZ(C) ((C)->chdr & CRR_SZ_MASK) typedef union {char c[ERTS_ALLOC_ALIGN_BYTES]; long l; double d;} Unit_t; @@ -351,12 +363,20 @@ typedef struct { #endif } Block_t; -typedef union ErtsAllctrDDBlock_t_ ErtsAllctrDDBlock_t; +typedef struct ErtsAllctrDDBlock__ { + union { + struct ErtsAllctrDDBlock__ *ptr_next; + erts_atomic_t atmc_next; + } u; + ErtsAlcType_t type; + Uint32 flags; +} ErtsAllctrDDBlock_t; -union ErtsAllctrDDBlock_t_ { - erts_atomic_t atmc_next; - ErtsAllctrDDBlock_t *ptr_next; -}; +/* Deallocation was caused by shrinking a fix-list, so usage statistics has + * already been updated. */ +#define DEALLOC_FLG_FIX_SHRINK (1 << 0) +/* Deallocation was redirected to another instance. */ +#define DEALLOC_FLG_REDIRECTED (1 << 1) typedef struct { Block_t blk; @@ -365,11 +385,10 @@ typedef struct { #endif } ErtsFakeDDBlock_t; - - #define THIS_FREE_BLK_HDR_FLG (((UWord) 1) << 0) #define PREV_FREE_BLK_HDR_FLG (((UWord) 1) << 1) #define LAST_BLK_HDR_FLG (((UWord) 1) << 2) +#define ATAG_BLK_HDR_FLG HIGHEST_WORD_BIT #define SBC_BLK_HDR_FLG /* Special flag combo for (allocated) SBC blocks */\ (THIS_FREE_BLK_HDR_FLG | PREV_FREE_BLK_HDR_FLG | LAST_BLK_HDR_FLG) @@ -381,9 +400,9 @@ typedef struct { #define HOMECOMING_MBC_BLK_HDR (THIS_FREE_BLK_HDR_FLG | LAST_BLK_HDR_FLG) #define IS_FREE_LAST_MBC_BLK(B) \ - (((B)->bhdr & FLG_MASK) == (THIS_FREE_BLK_HDR_FLG | LAST_BLK_HDR_FLG)) + (((B)->bhdr & BLK_FLG_MASK) == (THIS_FREE_BLK_HDR_FLG | LAST_BLK_HDR_FLG)) -#define IS_SBC_BLK(B) (((B)->bhdr & FLG_MASK) == SBC_BLK_HDR_FLG) +#define IS_SBC_BLK(B) (((B)->bhdr & SBC_BLK_HDR_FLG) == SBC_BLK_HDR_FLG) #define IS_MBC_BLK(B) (!IS_SBC_BLK((B))) #define IS_FREE_BLK(B) (ASSERT(IS_MBC_BLK(B)), \ (B)->bhdr & THIS_FREE_BLK_HDR_FLG) @@ -394,7 +413,8 @@ typedef struct { # define ABLK_TO_MBC(B) \ (ASSERT(IS_MBC_BLK(B) && !IS_FREE_BLK(B)), \ (Carrier_t*)((ERTS_SACRR_UNIT_FLOOR((UWord)(B)) - \ - (((B)->bhdr >> MBC_ABLK_OFFSET_SHIFT) << ERTS_SACRR_UNIT_SHIFT)))) + ((((B)->bhdr & ~BLK_FLG_MASK) >> MBC_ABLK_OFFSET_SHIFT) \ + << ERTS_SACRR_UNIT_SHIFT)))) # define BLK_TO_MBC(B) (IS_FREE_BLK(B) ? FBLK_TO_MBC(B) : ABLK_TO_MBC(B)) #else # define FBLK_TO_MBC(B) ((B)->carrier) @@ -433,8 +453,9 @@ typedef struct { ErtsThrPrgrVal thr_prgr; erts_atomic_t max_size; UWord abandon_limit; - UWord blocks; - UWord blocks_size; + UWord blocks[ERTS_ALC_A_MAX + 1]; + UWord blocks_size[ERTS_ALC_A_MAX + 1]; + UWord total_blocks_size; enum { ERTS_MBC_IS_HOME, ERTS_MBC_WAS_POOLED, @@ -452,7 +473,7 @@ struct Carrier_t_ { }; #define ERTS_ALC_CARRIER_TO_ALLCTR(C) \ - ((Allctr_t *) (erts_atomic_read_nob(&(C)->allctr) & ~FLG_MASK)) + ((Allctr_t *) (erts_atomic_read_nob(&(C)->allctr) & ~CRR_FLG_MASK)) typedef struct { Carrier_t *first; @@ -530,7 +551,6 @@ typedef struct { } head; } ErtsAllctrDDQueue_t; - typedef struct { size_t type_size; SWord list_size; @@ -549,6 +569,7 @@ typedef struct { UWord used; } cpool; } u; + ErtsAlcType_t type; } ErtsAlcFixList_t; struct Allctr_t_ { @@ -569,6 +590,9 @@ struct Allctr_t_ { /* Allocator number */ ErtsAlcType_t alloc_no; + /* Allocator strategy */ + ErtsAlcStrat_t alloc_strat; + /* Instance index */ int ix; @@ -617,6 +641,9 @@ struct Allctr_t_ { AOFF_RBTree_t* pooled_tree; CarrierList_t dc_list; + /* the sentinel of the cpool we're attached to */ + ErtsAlcCPoolData_t *sentinel; + UWord abandon_limit; int disable_abandon; int check_limit_count; @@ -624,8 +651,8 @@ struct Allctr_t_ { UWord in_pool_limit; /* acnl */ UWord fblk_min_limit; /* acmfl */ struct { - erts_atomic_t blocks_size; - erts_atomic_t no_blocks; + erts_atomic_t blocks_size[ERTS_ALC_A_MAX + 1]; + erts_atomic_t no_blocks[ERTS_ALC_A_MAX + 1]; erts_atomic_t carriers_size; erts_atomic_t no_carriers; CallCounter_t fail_pooled; diff --git a/erts/emulator/beam/erl_ao_firstfit_alloc.c b/erts/emulator/beam/erl_ao_firstfit_alloc.c index 3f0ab33597..0e3e4c890a 100644 --- a/erts/emulator/beam/erl_ao_firstfit_alloc.c +++ b/erts/emulator/beam/erl_ao_firstfit_alloc.c @@ -107,9 +107,11 @@ typedef struct AOFF_Carrier_t_ AOFF_Carrier_t; struct AOFF_Carrier_t_ { Carrier_t crr; - AOFF_RBTree_t rbt_node; /* My node in the carrier tree */ - AOFF_RBTree_t* root; /* Root of my block tree */ + AOFF_RBTree_t rbt_node; /* My node in the carrier tree */ + AOFF_RBTree_t* root; /* Root of my block tree */ + enum AOFFSortOrder blk_order; }; + #define RBT_NODE_TO_MBC(PTR) ErtsContainerStruct((PTR), AOFF_Carrier_t, rbt_node) /* @@ -281,15 +283,28 @@ erts_aoffalc_start(AOFFAllctr_t *alc, sys_memcpy((void *) alc, (void *) &zero.allctr, sizeof(AOFFAllctr_t)); + if (aoffinit->blk_order == FF_CHAOS) { + const enum AOFFSortOrder orders[3] = {FF_AOFF, FF_AOBF, FF_BF}; + int index = init->ix % (sizeof(orders) / sizeof(orders[0])); + + ASSERT(init->alloc_no == ERTS_ALC_A_TEST); + aoffinit->blk_order = orders[index]; + } + + if (aoffinit->crr_order == FF_CHAOS) { + const enum AOFFSortOrder orders[2] = {FF_AGEFF, FF_AOFF}; + int index = init->ix % (sizeof(orders) / sizeof(orders[0])); + + ASSERT(init->alloc_no == ERTS_ALC_A_TEST); + aoffinit->crr_order = orders[index]; + } + alc->blk_order = aoffinit->blk_order; alc->crr_order = aoffinit->crr_order; allctr->mbc_header_size = sizeof(AOFF_Carrier_t); allctr->min_mbc_size = MIN_MBC_SZ; allctr->min_mbc_first_free_size = MIN_MBC_FIRST_FREE_SZ; - allctr->min_block_size = (aoffinit->blk_order == FF_BF - ? (offsetof(AOFF_RBTree_t, u.next) - + ErtsSizeofMember(AOFF_RBTree_t, u.next)) - : offsetof(AOFF_RBTree_t, u)); + allctr->min_block_size = sizeof(AOFF_RBTree_t); allctr->vsn_str = ERTS_ALC_AOFF_ALLOC_VSN_STR; @@ -512,14 +527,15 @@ tree_insert_fixup(AOFF_RBTree_t** root, AOFF_RBTree_t *blk) static void aoff_unlink_free_block(Allctr_t *allctr, Block_t *blk) { - AOFFAllctr_t* alc = (AOFFAllctr_t*)allctr; AOFF_RBTree_t* del = (AOFF_RBTree_t*)blk; AOFF_Carrier_t *crr = (AOFF_Carrier_t*) FBLK_TO_MBC(&del->hdr); + (void)allctr; + ASSERT(crr->rbt_node.hdr.bhdr == crr->root->max_sz); - HARD_CHECK_TREE(&crr->crr, alc->blk_order, crr->root, 0); + HARD_CHECK_TREE(&crr->crr, crr->blk_order, crr->root, 0); - if (alc->blk_order == FF_BF) { + if (crr->blk_order == FF_BF) { ASSERT(del->flags & IS_BF_FLG); if (IS_LIST_ELEM(del)) { /* Remove from list */ @@ -540,14 +556,14 @@ aoff_unlink_free_block(Allctr_t *allctr, Block_t *blk) replace(&crr->root, (AOFF_RBTree_t*)del, LIST_NEXT(del)); - HARD_CHECK_TREE(&crr->crr, alc->blk_order, crr->root, 0); + HARD_CHECK_TREE(&crr->crr, crr->blk_order, crr->root, 0); return; } } rbt_delete(&crr->root, (AOFF_RBTree_t*)del); - HARD_CHECK_TREE(&crr->crr, alc->blk_order, crr->root, 0); + HARD_CHECK_TREE(&crr->crr, crr->blk_order, crr->root, 0); /* Update the carrier tree with a potentially new (lower) max_sz */ @@ -737,17 +753,18 @@ rbt_delete(AOFF_RBTree_t** root, AOFF_RBTree_t* del) static void aoff_link_free_block(Allctr_t *allctr, Block_t *block) { - AOFFAllctr_t* alc = (AOFFAllctr_t*) allctr; AOFF_RBTree_t *blk = (AOFF_RBTree_t *) block; AOFF_RBTree_t *crr_node; AOFF_Carrier_t *blk_crr = (AOFF_Carrier_t*) FBLK_TO_MBC(block); Uint blk_sz = AOFF_BLK_SZ(blk); + (void)allctr; + ASSERT(allctr == ERTS_ALC_CARRIER_TO_ALLCTR(&blk_crr->crr)); ASSERT(blk_crr->rbt_node.hdr.bhdr == (blk_crr->root ? blk_crr->root->max_sz : 0)); - HARD_CHECK_TREE(&blk_crr->crr, alc->blk_order, blk_crr->root, 0); + HARD_CHECK_TREE(&blk_crr->crr, blk_crr->blk_order, blk_crr->root, 0); - rbt_insert(alc->blk_order, &blk_crr->root, blk); + rbt_insert(blk_crr->blk_order, &blk_crr->root, blk); /* * Update carrier tree with a potentially new (larger) max_sz @@ -891,7 +908,7 @@ aoff_get_free_block(Allctr_t *allctr, Uint size, /* Get block within carrier tree */ #ifdef HARD_DEBUG - dbg_blk = HARD_CHECK_TREE(&crr->crr, alc->blk_order, crr->root, size); + dbg_blk = HARD_CHECK_TREE(&crr->crr, crr->blk_order, crr->root, size); #endif blk = rbt_search(crr->root, size); @@ -904,7 +921,7 @@ aoff_get_free_block(Allctr_t *allctr, Uint size, if (!blk) return NULL; - if (cand_blk && cmp_cand_blk(alc->blk_order, cand_blk, blk) < 0) { + if (cand_blk && cmp_cand_blk(crr->blk_order, cand_blk, blk) < 0) { return NULL; /* cand_blk was better */ } @@ -927,21 +944,28 @@ static void aoff_creating_mbc(Allctr_t *allctr, Carrier_t *carrier) AOFFAllctr_t *alc = (AOFFAllctr_t *) allctr; AOFF_Carrier_t *crr = (AOFF_Carrier_t*) carrier; AOFF_RBTree_t **root = &alc->mbc_root; + Sint64 bt = get_birth_time(); HARD_CHECK_TREE(NULL, alc->crr_order, *root, 0); crr->rbt_node.hdr.bhdr = 0; - if (alc->crr_order == FF_AGEFF || IS_DEBUG) { - Sint64 bt = get_birth_time(); - crr->rbt_node.u.birth_time = bt; - crr->crr.cpool.pooled.u.birth_time = bt; - } + + /* While birth time is only used for FF_AGEFF, we have to set it for all + * types as we can be migrated to an instance that uses it and we don't + * want to mess its order up. */ + crr->rbt_node.u.birth_time = bt; + crr->crr.cpool.pooled.u.birth_time = bt; + rbt_insert(alc->crr_order, root, &crr->rbt_node); /* aoff_link_free_block will add free block later */ crr->root = NULL; HARD_CHECK_TREE(NULL, alc->crr_order, *root, 0); + + /* When a carrier has been migrated, its block order may differ from that + * of the allocator it's been migrated to. */ + crr->blk_order = alc->blk_order; } #define IS_CRR_IN_TREE(CRR,ROOT) \ diff --git a/erts/emulator/beam/erl_ao_firstfit_alloc.h b/erts/emulator/beam/erl_ao_firstfit_alloc.h index 68df9e0a49..9c9b98da86 100644 --- a/erts/emulator/beam/erl_ao_firstfit_alloc.h +++ b/erts/emulator/beam/erl_ao_firstfit_alloc.h @@ -32,7 +32,12 @@ enum AOFFSortOrder { FF_AGEFF = 0, /* carrier trees only */ FF_AOFF = 1, FF_AOBF = 2, /* block trees only */ - FF_BF = 3 /* block trees only */ + FF_BF = 3, /* block trees only */ + + FF_CHAOS = -1 /* A test-specific sort order that picks any of the above + * after instance id. Used to test that carriers created + * under one order will work fine after being migrated + * to another. */ }; typedef struct { diff --git a/erts/emulator/beam/erl_bif_binary.c b/erts/emulator/beam/erl_bif_binary.c index a2610bf2e1..ff919082c3 100644 --- a/erts/emulator/beam/erl_bif_binary.c +++ b/erts/emulator/beam/erl_bif_binary.c @@ -208,8 +208,8 @@ typedef struct _ac_trie { typedef struct _bm_data { byte *x; Sint len; + Sint *badshift; Sint *goodshift; - Sint badshift[ALPHABET_SIZE]; } BMData; typedef struct _ac_find_all_state { @@ -319,16 +319,104 @@ static void dump_ac_node(ACNode *node, int indent, int ch); * The needed size of binary data for a search structure - given the * accumulated string lengths. */ -#define BM_SIZE(StrLen) /* StrLen: length of searchstring */ \ -((MYALIGN(sizeof(Sint) * (StrLen))) + /* goodshift array */ \ - MYALIGN(StrLen) + /* searchstring saved */ \ - (MYALIGN(sizeof(BMData)))) /* Structure */ +#define BM_SIZE_SINGLE() /* Single byte search string */ \ +(MYALIGN(1) + /* searchstring saved */ \ + (MYALIGN(sizeof(BMData)))) /* Structure */ + +#define BM_SIZE_MULTI(StrLen) /* StrLen: length of searchstring */ \ +((MYALIGN(sizeof(Uint) * (StrLen))) + /* goodshift array */ \ + (MYALIGN(sizeof(Uint) * ALPHABET_SIZE)) + /* badshift array */ \ + MYALIGN(StrLen) + /* searchstring saved */ \ + (MYALIGN(sizeof(BMData)))) /* Structure */ #define AC_SIZE(StrLens) /* StrLens: sum of all searchstring lengths */ \ ((MYALIGN(sizeof(ACNode)) * \ ((StrLens)+1)) + /* The actual nodes (including rootnode) */ \ MYALIGN(sizeof(ACTrie))) /* Structure */ +/* + * Boyer Moore - most obviously implemented more or less exactly as + * Christian Charras and Thierry Lecroq describe it in "Handbook of + * Exact String-Matching Algorithms" + * http://www-igm.univ-mlv.fr/~lecroq/string/ + */ + +/* + * Call this to compute badshifts array + */ +static void compute_badshifts(BMData *bmd) +{ + Sint i; + Sint m = bmd->len; + + for (i = 0; i < ALPHABET_SIZE; ++i) { + bmd->badshift[i] = m; + } + for (i = 0; i < m - 1; ++i) { + bmd->badshift[bmd->x[i]] = m - i - 1; + } +} + +/* Helper for "compute_goodshifts" */ +static void compute_suffixes(byte *x, Sint m, Sint *suffixes) +{ + int f,g,i; + + suffixes[m - 1] = m; + + f = 0; /* To avoid use before set warning */ + + g = m - 1; + + for (i = m - 2; i >= 0; --i) { + if (i > g && suffixes[i + m - 1 - f] < i - g) { + suffixes[i] = suffixes[i + m - 1 - f]; + } else { + if (i < g) { + g = i; + } + f = i; + while ( g >= 0 && x[g] == x[g + m - 1 - f] ) { + --g; + } + suffixes[i] = f - g; + } + } +} + +/* + * Call this to compute goodshift array + */ +static void compute_goodshifts(BMData *bmd) +{ + Sint m = bmd->len; + byte *x = bmd->x; + Sint i, j; + Sint *suffixes = erts_alloc(ERTS_ALC_T_TMP, m * sizeof(Sint)); + + compute_suffixes(x, m, suffixes); + + for (i = 0; i < m; ++i) { + bmd->goodshift[i] = m; + } + + j = 0; + + for (i = m - 1; i >= -1; --i) { + if (i == -1 || suffixes[i] == i + 1) { + while (j < m - 1 - i) { + if (bmd->goodshift[j] == m) { + bmd->goodshift[j] = m - 1 - i; + } + ++j; + } + } + } + for (i = 0; i <= m - 2; ++i) { + bmd->goodshift[m - 1 - suffixes[i]] = m - 1 - i; + } + erts_free(ERTS_ALC_T_TMP, suffixes); +} /* * Callback for the magic binary @@ -377,11 +465,19 @@ static ACTrie *create_acdata(MyAllocator *my, Uint len, /* * The same initialization of allocator and basic data for Boyer-Moore. + * For single byte, we don't use goodshift and badshift, only memchr. */ static BMData *create_bmdata(MyAllocator *my, byte *x, Uint len, Binary **the_bin /* out */) { - Uint datasize = BM_SIZE(len); + Uint datasize; + + if(len > 1) { + datasize = BM_SIZE_MULTI(len); + } else { + datasize = BM_SIZE_SINGLE(); + } + BMData *bmd; Binary *mb = erts_create_magic_binary(datasize,cleanup_my_data_bm); byte *data = ERTS_MAGIC_BIN_DATA(mb); @@ -390,7 +486,14 @@ static BMData *create_bmdata(MyAllocator *my, byte *x, Uint len, bmd->x = my_alloc(my,len); sys_memcpy(bmd->x,x,len); bmd->len = len; - bmd->goodshift = my_alloc(my,sizeof(Uint) * len); + + if(len > 1) { + bmd->goodshift = my_alloc(my, sizeof(Uint) * len); + bmd->badshift = my_alloc(my, sizeof(Uint) * ALPHABET_SIZE); + compute_badshifts(bmd); + compute_goodshifts(bmd); + } + *the_bin = mb; return bmd; } @@ -711,91 +814,8 @@ static BFReturn ac_find_all_non_overlapping(BinaryFindContext *ctx, byte *haysta return (m == 0) ? BF_NOT_FOUND : BF_OK; } -/* - * Boyer Moore - most obviously implemented more or less exactly as - * Christian Charras and Thierry Lecroq describe it in "Handbook of - * Exact String-Matching Algorithms" - * http://www-igm.univ-mlv.fr/~lecroq/string/ - */ - -/* - * Call this to compute badshifts array - */ -static void compute_badshifts(BMData *bmd) -{ - Sint i; - Sint m = bmd->len; - - for (i = 0; i < ALPHABET_SIZE; ++i) { - bmd->badshift[i] = m; - } - for (i = 0; i < m - 1; ++i) { - bmd->badshift[bmd->x[i]] = m - i - 1; - } -} - -/* Helper for "compute_goodshifts" */ -static void compute_suffixes(byte *x, Sint m, Sint *suffixes) -{ - int f,g,i; - - suffixes[m - 1] = m; - - f = 0; /* To avoid use before set warning */ - - g = m - 1; - - for (i = m - 2; i >= 0; --i) { - if (i > g && suffixes[i + m - 1 - f] < i - g) { - suffixes[i] = suffixes[i + m - 1 - f]; - } else { - if (i < g) { - g = i; - } - f = i; - while ( g >= 0 && x[g] == x[g + m - 1 - f] ) { - --g; - } - suffixes[i] = f - g; - } - } -} - -/* - * Call this to compute goodshift array - */ -static void compute_goodshifts(BMData *bmd) -{ - Sint m = bmd->len; - byte *x = bmd->x; - Sint i, j; - Sint *suffixes = erts_alloc(ERTS_ALC_T_TMP, m * sizeof(Sint)); - - compute_suffixes(x, m, suffixes); - - for (i = 0; i < m; ++i) { - bmd->goodshift[i] = m; - } - - j = 0; - - for (i = m - 1; i >= -1; --i) { - if (i == -1 || suffixes[i] == i + 1) { - while (j < m - 1 - i) { - if (bmd->goodshift[j] == m) { - bmd->goodshift[j] = m - 1 - i; - } - ++j; - } - } - } - for (i = 0; i <= m - 2; ++i) { - bmd->goodshift[m - 1 - suffixes[i]] = m - 1 - i; - } - erts_free(ERTS_ALC_T_TMP, suffixes); -} - #define BM_LOOP_FACTOR 10 /* Should we have a higher value? */ +#define MC_LOOP_FACTOR 8 static void bm_init_find_first_match(BinaryFindContext *ctx) { @@ -819,13 +839,38 @@ static BFReturn bm_find_first_match(BinaryFindContext *ctx, byte *haystack) Sint i; Sint j = state->pos; register Uint reds = *reductions; + byte *pos_pointer; + Sint needle_last = blen - 1; + Sint mem_read = len - needle_last - j; - while (j <= len - blen) { + if (mem_read <= 0) { + return BF_NOT_FOUND; + } + mem_read = MIN(mem_read, reds * MC_LOOP_FACTOR); + ASSERT(mem_read > 0); + + pos_pointer = memchr(&haystack[j + needle_last], needle[needle_last], mem_read); + if (pos_pointer == NULL) { + reds -= mem_read / MC_LOOP_FACTOR; + j += mem_read; + } else { + reds -= (pos_pointer - &haystack[j]) / MC_LOOP_FACTOR; + j = pos_pointer - haystack - needle_last; + } + + // Ensure we have at least one reduction before entering the loop + ++reds; + + for(;;) { + if (j > len - blen) { + *reductions = reds; + return BF_NOT_FOUND; + } if (--reds == 0) { state->pos = j; return BF_RESTART; } - for (i = blen - 1; i >= 0 && needle[i] == haystack[i + j]; --i) + for (i = needle_last; i >= 0 && needle[i] == haystack[i + j]; --i) ; if (i < 0) { /* found */ *reductions = reds; @@ -835,8 +880,6 @@ static BFReturn bm_find_first_match(BinaryFindContext *ctx, byte *haystack) } j += MAX(gs[i],bs[haystack[i+j]] - blen + 1 + i); } - *reductions = reds; - return BF_NOT_FOUND; } static void bm_init_find_all(BinaryFindContext *ctx) @@ -875,14 +918,38 @@ static BFReturn bm_find_all_non_overlapping(BinaryFindContext *ctx, byte *haysta Sint *gs = bmd->goodshift; Sint *bs = bmd->badshift; byte *needle = bmd->x; - Sint i; + Sint i = -1; /* Use memchr on start and on every match */ Sint j = state->pos; Uint m = state->m; Uint allocated = state->allocated; FindallData *out = state->out; register Uint reds = *reductions; + byte *pos_pointer; + Sint needle_last = blen - 1; + Sint mem_read; - while (j <= len - blen) { + for(;;) { + if (i < 0) { + mem_read = len - needle_last - j; + if(mem_read <= 0) { + goto done; + } + mem_read = MIN(mem_read, reds * MC_LOOP_FACTOR); + ASSERT(mem_read > 0); + pos_pointer = memchr(&haystack[j + needle_last], needle[needle_last], mem_read); + if (pos_pointer == NULL) { + reds -= mem_read / MC_LOOP_FACTOR; + j += mem_read; + } else { + reds -= (pos_pointer - &haystack[j]) / MC_LOOP_FACTOR; + j = pos_pointer - haystack - needle_last; + } + // Ensure we have at least one reduction when resuming the loop + ++reds; + } + if (j > len - blen) { + goto done; + } if (--reds == 0) { state->pos = j; state->m = m; @@ -890,7 +957,7 @@ static BFReturn bm_find_all_non_overlapping(BinaryFindContext *ctx, byte *haysta state->out = out; return BF_RESTART; } - for (i = blen - 1; i >= 0 && needle[i] == haystack[i + j]; --i) + for (i = needle_last; i >= 0 && needle[i] == haystack[i + j]; --i) ; if (i < 0) { /* found */ if (m >= allocated) { @@ -912,6 +979,7 @@ static BFReturn bm_find_all_non_overlapping(BinaryFindContext *ctx, byte *haysta j += MAX(gs[i],bs[haystack[i+j]] - blen + 1 + i); } } + done: state->m = m; state->out = out; *reductions = reds; @@ -931,6 +999,7 @@ static int do_binary_match_compile(Eterm argument, Eterm *tag, Binary **binp) Eterm t, b, comp_term = NIL; Uint characters; Uint words; + Uint size; characters = 0; words = 0; @@ -946,11 +1015,12 @@ static int do_binary_match_compile(Eterm argument, Eterm *tag, Binary **binp) if (binary_bitsize(b) != 0) { goto badarg; } - if (binary_size(b) == 0) { + size = binary_size(b); + if (size == 0) { goto badarg; } ++words; - characters += binary_size(b); + characters += size; } if (is_not_nil(t)) { goto badarg; @@ -987,8 +1057,6 @@ static int do_binary_match_compile(Eterm argument, Eterm *tag, Binary **binp) bytes = erts_get_aligned_binary_bytes(comp_term, &temp_alloc); } bmd = create_bmdata(&my, bytes, characters, &bin); - compute_badshifts(bmd); - compute_goodshifts(bmd); erts_free_aligned_binary_bytes(temp_alloc); CHECK_ALLOCATOR(my); *tag = am_bm; @@ -3012,17 +3080,19 @@ static void dump_bm_data(BMData *bm) } } erts_printf(">>\n"); - erts_printf("GoodShift array:\n"); - for (i = 0; i < bm->len; ++i) { - erts_printf("GoodShift[%d]: %ld\n", i, bm->goodshift[i]); - } - erts_printf("BadShift array:\n"); - j = 0; - for (i = 0; i < ALPHABET_SIZE; i += j) { - for (j = 0; i + j < ALPHABET_SIZE && j < 6; ++j) { - erts_printf("BS[%03d]:%02ld, ", i+j, bm->badshift[i+j]); + if(bm->len > 1) { + erts_printf("GoodShift array:\n"); + for (i = 0; i < bm->len; ++i) { + erts_printf("GoodShift[%d]: %ld\n", i, bm->goodshift[i]); + } + erts_printf("BadShift array:\n"); + j = 0; + for (i = 0; i < ALPHABET_SIZE; i += j) { + for (j = 0; i + j < ALPHABET_SIZE && j < 6; ++j) { + erts_printf("BS[%03d]:%02ld, ", i+j, bm->badshift[i+j]); + } + erts_printf("\n"); } - erts_printf("\n"); } } diff --git a/erts/emulator/beam/erl_bif_ddll.c b/erts/emulator/beam/erl_bif_ddll.c index 4cda0948a0..639aee29dc 100644 --- a/erts/emulator/beam/erl_bif_ddll.c +++ b/erts/emulator/beam/erl_bif_ddll.c @@ -829,7 +829,7 @@ BIF_RETTYPE erl_ddll_format_error_int_1(BIF_ALIST_1) "cannot be loaded/unloaded"; break; case am_permanent: - errstring = "DDLL driver is permanent an can not be unloaded/loaded"; + errstring = "DDLL driver is permanent an cannot be unloaded/loaded"; break; case am_not_loaded: errstring = "DDLL driver is not loaded"; diff --git a/erts/emulator/beam/erl_db_tree.c b/erts/emulator/beam/erl_db_tree.c index 788718ab09..2eb874b005 100644 --- a/erts/emulator/beam/erl_db_tree.c +++ b/erts/emulator/beam/erl_db_tree.c @@ -3126,7 +3126,7 @@ static int partly_bound_can_match_lesser(Eterm partly_bound_1, if (ret) erts_fprintf(stderr," can match lesser than "); else - erts_fprintf(stderr," can not match lesser than "); + erts_fprintf(stderr," cannot match lesser than "); erts_fprintf(stderr,"%T\n",partly_bound_2); #endif return ret; @@ -3144,7 +3144,7 @@ static int partly_bound_can_match_greater(Eterm partly_bound_1, if (ret) erts_fprintf(stderr," can match greater than "); else - erts_fprintf(stderr," can not match greater than "); + erts_fprintf(stderr," cannot match greater than "); erts_fprintf(stderr,"%T\n",partly_bound_2); #endif return ret; diff --git a/erts/emulator/beam/erl_init.c b/erts/emulator/beam/erl_init.c index 57c6c10c7f..5da7b43b9e 100644 --- a/erts/emulator/beam/erl_init.c +++ b/erts/emulator/beam/erl_init.c @@ -128,7 +128,7 @@ const Eterm etp_hole_marker = 0; static int modified_sched_thread_suggested_stack_size = 0; -Eterm erts_init_process_id; +Eterm erts_init_process_id = ERTS_INVALID_PID; /* * Note about VxWorks: All variables must be initialized by executable code, @@ -2258,6 +2258,7 @@ erl_start(int argc, char **argv) erts_init_process_id = erl_first_process_otp("otp_ring0", NULL, 0, boot_argc, boot_argv); + ASSERT(erts_init_process_id != ERTS_INVALID_PID); { /* diff --git a/erts/emulator/beam/erl_lock_count.h b/erts/emulator/beam/erl_lock_count.h index 89d95a73cf..0d47b16e0b 100644 --- a/erts/emulator/beam/erl_lock_count.h +++ b/erts/emulator/beam/erl_lock_count.h @@ -532,7 +532,7 @@ ERTS_GLB_INLINE void lcnt_dec_lock_state__(ethr_atomic_t *l_state) { ethr_sint_t state = ethr_atomic_dec_read_acqb(l_state); - /* We can not assume that state is >= -1 here; unlock and unacquire might + /* We cannot assume that state is >= -1 here; unlock and unacquire might * bring it below -1 and race to increment it back. */ if(state < 0) { diff --git a/erts/emulator/beam/erl_map.c b/erts/emulator/beam/erl_map.c index cba17d3e6a..3d6c9eb43f 100644 --- a/erts/emulator/beam/erl_map.c +++ b/erts/emulator/beam/erl_map.c @@ -1505,25 +1505,6 @@ int hashmap_key_hash_cmp(Eterm* ap, Eterm* bp) return ap ? -1 : 1; } -/* maps:new/0 */ - -BIF_RETTYPE maps_new_0(BIF_ALIST_0) { - Eterm* hp; - Eterm tup; - flatmap_t *mp; - - hp = HAlloc(BIF_P, (MAP_HEADER_FLATMAP_SZ + 1)); - tup = make_tuple(hp); - *hp++ = make_arityval(0); - - mp = (flatmap_t*)hp; - mp->thing_word = MAP_HEADER_FLATMAP; - mp->size = 0; - mp->keys = tup; - - BIF_RET(make_flatmap(mp)); -} - /* maps:put/3 */ BIF_RETTYPE maps_put_3(BIF_ALIST_3) { @@ -1707,11 +1688,16 @@ int erts_maps_update(Process *p, Eterm key, Eterm value, Eterm map, Eterm *res) return 0; found_key: - *hp++ = value; - vs++; - if (++i < n) - sys_memcpy(hp, vs, (n - i)*sizeof(Eterm)); - *res = make_flatmap(shp); + if(*vs == value) { + HRelease(p, shp + MAP_HEADER_FLATMAP_SZ + n, shp); + *res = map; + } else { + *hp++ = value; + vs++; + if (++i < n) + sys_memcpy(hp, vs, (n - i)*sizeof(Eterm)); + *res = make_flatmap(shp); + } return 1; } @@ -1767,9 +1753,7 @@ Eterm erts_maps_put(Process *p, Eterm key, Eterm value, Eterm map) { if (is_immed(key)) { for( i = 0; i < n; i ++) { if (ks[i] == key) { - *hp++ = value; - vs++; - c = 1; + goto found_key; } else { *hp++ = *vs++; } @@ -1777,18 +1761,13 @@ Eterm erts_maps_put(Process *p, Eterm key, Eterm value, Eterm map) { } else { for( i = 0; i < n; i ++) { if (EQ(ks[i], key)) { - *hp++ = value; - vs++; - c = 1; + goto found_key; } else { *hp++ = *vs++; } } } - if (c) - return res; - /* the map will grow */ if (n >= MAP_SMALL_MAP_LIMIT) { @@ -1843,6 +1822,18 @@ Eterm erts_maps_put(Process *p, Eterm key, Eterm value, Eterm map) { */ *shp = make_pos_bignum_header(0); return res; + +found_key: + if(*vs == value) { + HRelease(p, shp + MAP_HEADER_FLATMAP_SZ + n, shp); + return map; + } else { + *hp++ = value; + vs++; + if (++i < n) + sys_memcpy(hp, vs, (n - i)*sizeof(Eterm)); + return res; + } } ASSERT(is_hashmap(map)); diff --git a/erts/emulator/beam/erl_nif.c b/erts/emulator/beam/erl_nif.c index ee6e6085b6..7339aa8874 100644 --- a/erts/emulator/beam/erl_nif.c +++ b/erts/emulator/beam/erl_nif.c @@ -1040,7 +1040,7 @@ ERL_NIF_TERM enif_make_copy(ErlNifEnv* dst_env, ERL_NIF_TERM src_term) Eterm* hp; /* * No preserved sharing allowed as long as literals are also preserved. - * Process independent environment can not be reached by purge. + * Process independent environment cannot be reached by purge. */ sz = size_object(src_term); hp = alloc_heap(dst_env, sz); diff --git a/erts/emulator/beam/erl_process_dump.c b/erts/emulator/beam/erl_process_dump.c index 243db4c734..706530023b 100644 --- a/erts/emulator/beam/erl_process_dump.c +++ b/erts/emulator/beam/erl_process_dump.c @@ -963,12 +963,16 @@ dump_module_literals(fmtfn_t to, void *to_arg, ErtsLiteralArea* lit_area) } erts_putc(to, to_arg, '\n'); } - } else if (is_export_header(w)) { + } else if (is_export_header(w) || is_fun_header(w)) { dump_externally(to, to_arg, term); erts_putc(to, to_arg, '\n'); } size = 1 + header_arity(w); switch (w & _HEADER_SUBTAG_MASK) { + case FUN_SUBTAG: + ASSERT(((ErlFunThing*)(htop))->num_free == 0); + size += 1; + break; case MAP_SUBTAG: if (is_flatmap_header(w)) { size += 1 + flatmap_get_size(htop); diff --git a/erts/emulator/beam/instrs.tab b/erts/emulator/beam/instrs.tab index 42c1168f85..da1dd3dc45 100644 --- a/erts/emulator/beam/instrs.tab +++ b/erts/emulator/beam/instrs.tab @@ -559,17 +559,19 @@ update_list(Hd, Dst) { HTOP += 2; } -i_put_tuple := i_put_tuple.make.fill; - -i_put_tuple.make(Dst) { - $Dst = make_tuple(HTOP); -} - -i_put_tuple.fill(Arity) { +put_tuple2(Dst, Arity) { Eterm* hp = HTOP; Eterm arity = $Arity; + /* + * If operands are not packed (in the 32-bit VM), + * is is not safe to use $Dst directly after I + * has been updated. + */ + Eterm* dst_ptr = &($Dst); + //| -no_next + ASSERT(arity != 0); *hp++ = make_arityval(arity); I = $NEXT_INSTRUCTION; do { @@ -586,6 +588,7 @@ i_put_tuple.fill(Arity) { break; } } while (--arity != 0); + *dst_ptr = make_tuple(HTOP); HTOP = hp; ASSERT(VALID_INSTR(* (Eterm *)I)); Goto(*I); diff --git a/erts/emulator/beam/ops.tab b/erts/emulator/beam/ops.tab index e76d896ffc..d859c4bb24 100644 --- a/erts/emulator/beam/ops.tab +++ b/erts/emulator/beam/ops.tab @@ -483,9 +483,16 @@ is_eq f? s s is_ne f? s s # -# Putting things. +# Putting tuples. +# +# Code compiled with OTP 22 and later uses put_tuple2 to +# to construct a tuple. +# +# Code compiled before OTP 22 uses put_tuple + one put instruction +# per element. Translate to put_tuple2. # +i_put_tuple/2 put_tuple Arity Dst => i_put_tuple Dst u i_put_tuple Dst Arity Puts=* | put S1 | put S2 | \ @@ -495,11 +502,13 @@ i_put_tuple Dst Arity Puts=* | put S1 | put S2 | \ i_put_tuple Dst Arity Puts=* | put S => \ tuple_append_put(Arity, Dst, Puts, S) -i_put_tuple/2 +i_put_tuple Dst Arity Puts=* => put_tuple2 Dst Arity Puts -i_put_tuple xy I +put_tuple2 xy I # +# Putting lists. +# # The instruction "put_list Const [] Dst" were generated in rare # circumstances up to and including OTP 18. Starting with OTP 19, # AFAIK, it should never be generated. @@ -1097,23 +1106,29 @@ i_bs_match_string x f W W bs_get_integer2 Fail=f Ms=x Live=u Sz=sq Unit=u Flags=u Dst=d => \ gen_get_integer2(Fail, Ms, Live, Sz, Unit, Flags, Dst) +i_bs_get_integer_small_imm Ms Bits Fail Flags Y=y => \ + i_bs_get_integer_small_imm Ms Bits Fail Flags x | move x Y + +i_bs_get_integer_imm Ms Bits Live Fail Flags Y=y => \ + i_bs_get_integer_imm Ms Bits Live Fail Flags x | move x Y + i_bs_get_integer_small_imm x W f? t x i_bs_get_integer_imm x W t f? t x -i_bs_get_integer f? t t x s x -i_bs_get_integer_8 x f? x -i_bs_get_integer_16 x f? x +i_bs_get_integer f? t t x s xy +i_bs_get_integer_8 x f? xy +i_bs_get_integer_16 x f? xy %if ARCH_64 -i_bs_get_integer_32 x f? x +i_bs_get_integer_32 x f? xy %endif # Fetching binaries from binaries. bs_get_binary2 Fail=f Ms=x Live=u Sz=sq Unit=u Flags=u Dst=d => \ gen_get_binary2(Fail, Ms, Live, Sz, Unit, Flags, Dst) -i_bs_get_binary_imm2 f? x t W t x -i_bs_get_binary2 f x t? s t x -i_bs_get_binary_all2 f? x t t x +i_bs_get_binary_imm2 f? x t W t xy +i_bs_get_binary2 f x t? s t xy +i_bs_get_binary_all2 f? x t t xy i_bs_get_binary_all_reuse x f? t # Fetching float from binaries. @@ -1122,7 +1137,7 @@ bs_get_float2 Fail=f Ms=x Live=u Sz=s Unit=u Flags=u Dst=d => \ bs_get_float2 Fail=f Ms=x Live=u Sz=q Unit=u Flags=u Dst=d => jump Fail -i_bs_get_float2 f? x t s t x +i_bs_get_float2 f? x t s t xy # Miscellanous @@ -1156,14 +1171,14 @@ bs_context_to_binary x # Utf8/utf16/utf32 support. (R12B-5) # bs_get_utf8 Fail=f Ms=x u u Dst=d => i_bs_get_utf8 Ms Fail Dst -i_bs_get_utf8 x f? x +i_bs_get_utf8 x f? xy bs_skip_utf8 Fail=f Ms=x u u => i_bs_get_utf8 Ms Fail x bs_get_utf16 Fail=f Ms=x u Flags=u Dst=d => i_bs_get_utf16 Ms Fail Flags Dst bs_skip_utf16 Fail=f Ms=x u Flags=u => i_bs_get_utf16 Ms Fail Flags x -i_bs_get_utf16 x f? t x +i_bs_get_utf16 x f? t xy bs_get_utf32 Fail=f Ms=x Live=u Flags=u Dst=d => \ bs_get_integer2 Fail Ms Live i=32 u=1 Flags Dst | \ @@ -1182,6 +1197,9 @@ i_bs_validate_unicode_retract j s S bs_init2 Fail Sz Words Regs Flags Dst | binary_too_big(Sz) => system_limit Fail +bs_init2 Fail Sz Words Regs Flags Dst=y => \ + bs_init2 Fail Sz Words Regs Flags x | move x Dst + bs_init2 Fail Sz=u Words=u==0 Regs Flags Dst => i_bs_init Sz Regs Dst bs_init2 Fail Sz=u Words Regs Flags Dst => \ @@ -1202,6 +1220,8 @@ i_bs_init_heap W I t? x bs_init_bits Fail Sz=o Words Regs Flags Dst => system_limit Fail +bs_init_bits Fail Sz Words Regs Flags Dst=y => \ + bs_init_bits Fail Sz Words Regs Flags x | move x Dst bs_init_bits Fail Sz=u Words=u==0 Regs Flags Dst => i_bs_init_bits Sz Regs Dst bs_init_bits Fail Sz=u Words Regs Flags Dst => i_bs_init_bits_heap Sz Words Regs Dst @@ -1230,7 +1250,7 @@ bs_private_append Fail Size Unit Bin Flags Dst => \ bs_init_writable -i_bs_append j? I t? t s x +i_bs_append j? I t? t s xy i_bs_private_append j? t s S x # diff --git a/erts/emulator/beam/utils.c b/erts/emulator/beam/utils.c index 08f8ca9788..996757ef43 100644 --- a/erts/emulator/beam/utils.c +++ b/erts/emulator/beam/utils.c @@ -1569,7 +1569,7 @@ make_hash2(Eterm term) * MUST BE USED AS INPUT FOR THE HASH. Two different terms must always have a * chance of hashing different when salted: hash([Salt|A]) vs hash([Salt|B]). * - * This is why we can not use cached hash values for atoms for example. + * This is why we cannot use cached hash values for atoms for example. * */ |