#include "irgopt.h"
#include "irbitset.h"
#include "iropt_t.h"
-#include "height.h"
+#include "heights.h"
#include "pdeq.h"
#include "irtools.h"
#include "raw_bitset.h"
DEBUG_ONLY(static firm_dbg_module_t *dbg;)
-typedef struct _be_abi_call_arg_t {
+typedef struct be_abi_call_arg_t {
unsigned is_res : 1; /**< 1: the call argument is a return value. 0: it's a call parameter. */
unsigned in_reg : 1; /**< 1: this argument is transmitted in registers. */
unsigned on_stack : 1; /**< 1: this argument is transmitted on the stack. */
unsigned space_after; /**< allocate space after */
} be_abi_call_arg_t;
-struct _be_abi_call_t {
+struct be_abi_call_t {
be_abi_call_flags_t flags; /**< Flags describing the ABI behavior on calls */
int pop; /**< number of bytes the stack frame is shrinked by the callee on return. */
const be_abi_callbacks_t *cb;
/**
* The ABI information for the current graph.
*/
-struct _be_abi_irg_t {
+struct be_abi_irg_t {
survive_dce_t *dce_survivor;
be_abi_call_t *call; /**< The ABI call information. */
pset *ignore_regs; /**< Additional registers which shall be ignored. */
ir_node **calls; /**< flexible array containing all be_Call nodes */
-
- arch_register_req_t *sp_req;
};
-static heights_t *ir_heights;
+static ir_heights_t *ir_heights;
/** Flag: if set, try to omit the frame pointer in all routines. */
static int be_omit_fp = 1;
-/** Flag: if set, try to omit the frame pointer in leaf routines only. */
-static int be_omit_leaf_fp = 1;
-
/*
_ ____ ___ ____ _ _ _ _
/ \ | __ )_ _| / ___|__ _| | | |__ __ _ ___| | _____
call->cb = NULL;
call->cls_addr = cls_addr;
- call->flags.bits.try_omit_fp = be_omit_fp | be_omit_leaf_fp;
+ call->flags.bits.try_omit_fp = be_omit_fp;
return call;
}
free(call);
}
-/*
- _____ _ _ _ _ _
- | ___| __ __ _ _ __ ___ ___ | | | | __ _ _ __ __| | (_)_ __ __ _
- | |_ | '__/ _` | '_ ` _ \ / _ \ | |_| |/ _` | '_ \ / _` | | | '_ \ / _` |
- | _|| | | (_| | | | | | | __/ | _ | (_| | | | | (_| | | | | | | (_| |
- |_| |_| \__,_|_| |_| |_|\___| |_| |_|\__,_|_| |_|\__,_|_|_|_| |_|\__, |
- |___/
-
- Handling of the stack frame. It is composed of three types:
- 1) The type of the arguments which are pushed on the stack.
- 2) The "between type" which consists of stuff the call of the
- function pushes on the stack (like the return address and
- the old base pointer for ia32).
- 3) The Firm frame type which consists of all local variables
- and the spills.
-*/
-
-static int get_stack_entity_offset(be_stack_layout_t *frame, ir_entity *ent,
- int bias)
-{
- ir_type *t = get_entity_owner(ent);
- int ofs = get_entity_offset(ent);
-
- int index;
-
- /* Find the type the entity is contained in. */
- for (index = 0; index < N_FRAME_TYPES; ++index) {
- if (frame->order[index] == t)
- break;
- /* Add the size of all the types below the one of the entity to the entity's offset */
- ofs += get_type_size_bytes(frame->order[index]);
- }
-
- /* correct the offset by the initial position of the frame pointer */
- ofs -= frame->initial_offset;
-
- /* correct the offset with the current bias. */
- ofs += bias;
-
- return ofs;
-}
-
-/**
- * Retrieve the entity with given offset from a frame type.
- */
-static ir_entity *search_ent_with_offset(ir_type *t, int offset)
-{
- int i, n;
-
- for (i = 0, n = get_compound_n_members(t); i < n; ++i) {
- ir_entity *ent = get_compound_member(t, i);
- if (get_entity_offset(ent) == offset)
- return ent;
- }
-
- return NULL;
-}
-
-static int stack_frame_compute_initial_offset(be_stack_layout_t *frame)
-{
- ir_type *base = frame->stack_dir < 0 ? frame->between_type : frame->frame_type;
- ir_entity *ent = search_ent_with_offset(base, 0);
-
- if (ent == NULL) {
- frame->initial_offset
- = frame->stack_dir < 0 ? get_type_size_bytes(frame->frame_type) : get_type_size_bytes(frame->between_type);
- } else {
- frame->initial_offset = get_stack_entity_offset(frame, ent, 0);
- }
-
- return frame->initial_offset;
-}
-
/**
* Initializes the frame layout from parts
*
if (stack_dir > 0) {
frame->order[0] = args;
frame->order[2] = locals;
- }
- else {
+ } else {
/* typical decreasing stack: locals have the
* lowest addresses, arguments the highest */
frame->order[0] = locals;
int n_stack_params = 0;
int n_ins;
- pset_new_t destroyed_regs, states;
- pset_new_iterator_t iter;
+ const arch_register_t **states = NEW_ARR_F(const arch_register_t*, 0);
+ const arch_register_t **destroyed_regs = NEW_ARR_F(const arch_register_t*, 0);
ir_node *low_call;
ir_node **in;
ir_node **res_projs;
int n_reg_results = 0;
- const arch_register_t *reg;
const ir_edge_t *edge;
int *reg_param_idxs;
int *stack_param_idx;
int i, n, destroy_all_regs;
dbg_info *dbgi;
- pset_new_init(&destroyed_regs);
- pset_new_init(&states);
-
/* Let the isa fill out the abi description for that call node. */
arch_env_get_call_abi(arch_env, call_tp, call);
assert(mode_is_reference(get_irn_mode(param)));
copy = new_rd_CopyB(dbgi, bl, curr_mem, addr, param, param_type);
- mem = new_r_Proj(copy, mode_M, pn_CopyB_M_regular);
+ mem = new_r_Proj(copy, mode_M, pn_CopyB_M);
}
curr_ofs += param_size;
destroy_all_regs = 1;
}
- /* Put caller save into the destroyed set and state registers in the states set */
+ /* Put caller save into the destroyed set and state registers in the states
+ * set */
for (i = 0, n = arch_env_get_n_reg_class(arch_env); i < n; ++i) {
unsigned j;
const arch_register_class_t *cls = arch_env_get_reg_class(arch_env, i);
for (j = 0; j < cls->n_regs; ++j) {
const arch_register_t *reg = arch_register_for_index(cls, j);
- if (destroy_all_regs || arch_register_type_is(reg, caller_save)) {
- if (! arch_register_type_is(reg, ignore))
- pset_new_insert(&destroyed_regs, (void *) reg);
- }
+ /* even if destroyed all is specified, neither SP nor FP are
+ * destroyed (else bad things will happen) */
+ if (reg == arch_env->sp || reg == arch_env->bp)
+ continue;
+
if (arch_register_type_is(reg, state)) {
- pset_new_insert(&destroyed_regs, (void*) reg);
- pset_new_insert(&states, (void*) reg);
+ ARR_APP1(const arch_register_t*, destroyed_regs, reg);
+ ARR_APP1(const arch_register_t*, states, reg);
+ /* we're already in the destroyed set so no need for further
+ * checking */
+ continue;
+ }
+ if (destroy_all_regs || arch_register_type_is(reg, caller_save)) {
+ if (! arch_register_type_is(reg, ignore)) {
+ ARR_APP1(const arch_register_t*, destroyed_regs, reg);
+ }
}
}
}
- if (destroy_all_regs) {
- /* even if destroyed all is specified, neither SP nor FP are destroyed (else bad things will happen) */
- pset_new_remove(&destroyed_regs, arch_env->sp);
- pset_new_remove(&destroyed_regs, arch_env->bp);
- }
-
/* search the largest result proj number */
res_projs = ALLOCANZ(ir_node*, n_res);
n_reg_results = n_res;
n_ins = 0;
- in = ALLOCAN(ir_node*, n_reg_params + pset_new_size(&states));
+ in = ALLOCAN(ir_node*, n_reg_params + ARR_LEN(states));
/* make the back end call node and set its register requirements. */
for (i = 0; i < n_reg_params; ++i) {
}
/* add state registers ins */
- foreach_pset_new(&states, reg, iter) {
+ for (i = 0; i < ARR_LEN(states); ++i) {
+ const arch_register_t *reg = states[i];
const arch_register_class_t *cls = arch_register_get_class(reg);
#if 0
ir_node *regnode = be_abi_reg_map_get(env->regs, reg);
ir_node *regnode = new_r_Unknown(irg, arch_register_class_mode(cls));
in[n_ins++] = regnode;
}
- assert(n_ins == (int) (n_reg_params + pset_new_size(&states)));
+ assert(n_ins == (int) (n_reg_params + ARR_LEN(states)));
/* ins collected, build the call */
if (env->call->flags.bits.call_has_imm && is_SymConst(call_ptr)) {
/* direct call */
low_call = be_new_Call(dbgi, irg, bl, curr_mem, curr_sp, curr_sp,
- n_reg_results + pn_be_Call_first_res + pset_new_size(&destroyed_regs),
+ n_reg_results + pn_be_Call_first_res + ARR_LEN(destroyed_regs),
n_ins, in, get_Call_type(irn));
be_Call_set_entity(low_call, get_SymConst_entity(call_ptr));
} else {
/* indirect call */
low_call = be_new_Call(dbgi, irg, bl, curr_mem, curr_sp, call_ptr,
- n_reg_results + pn_be_Call_first_res + pset_new_size(&destroyed_regs),
+ n_reg_results + pn_be_Call_first_res + ARR_LEN(destroyed_regs),
n_ins, in, get_Call_type(irn));
}
be_Call_set_pop(low_call, call->pop);
}
if (arg->in_reg) {
- pset_new_remove(&destroyed_regs, arg->reg);
+ /* remove register from destroyed regs */
+ int j;
+ int n = ARR_LEN(destroyed_regs);
+ for (j = 0; j < n; ++j) {
+ if (destroyed_regs[j] == arg->reg) {
+ destroyed_regs[j] = destroyed_regs[n-1];
+ ARR_SHRINKLEN(destroyed_regs,n-1);
+ break;
+ }
+ }
}
}
/* Make additional projs for the caller save registers
and the Keep node which keeps them alive. */
{
- const arch_register_t *reg;
ir_node **in, *keep;
int i;
int n = 0;
int curr_res_proj = pn_be_Call_first_res + n_reg_results;
- pset_new_iterator_t iter;
int n_ins;
- n_ins = (int)pset_new_size(&destroyed_regs) + n_reg_results + 1;
+ n_ins = ARR_LEN(destroyed_regs) + n_reg_results + 1;
in = ALLOCAN(ir_node *, n_ins);
/* also keep the stack pointer */
set_irn_link(curr_sp, (void*) sp);
in[n++] = curr_sp;
- foreach_pset_new(&destroyed_regs, reg, iter) {
+ for (i = 0; i < ARR_LEN(destroyed_regs); ++i) {
+ const arch_register_t *reg = destroyed_regs[i];
ir_node *proj = new_r_Proj(low_call, reg->reg_class->mode, curr_res_proj);
/* memorize the register in the link field. we need afterwards to set the register class of the keep correctly. */
be_abi_call_free(call);
- pset_new_destroy(&states);
- pset_new_destroy(&destroyed_regs);
+ DEL_ARR_F(states);
+ DEL_ARR_F(destroyed_regs);
return curr_sp;
}
bet_type = call->cb->get_between_type(env->cb);
stack_frame_init(stack_layout, arg_type, bet_type,
get_irg_frame_type(irg), arch_env->stack_dir, param_map);
+ stack_layout->sp_relative = call->flags.bits.try_omit_fp;
/* Count the register params and add them to the number of Projs for the RegParams node */
for (i = 0; i < n_params; ++i) {
&& !(get_entity_linkage(entity) & IR_LINKAGE_MERGE);
}
+static ir_node *get_pic_base(ir_graph *irg)
+{
+ const arch_env_t *arch_env = be_get_irg_arch_env(irg);
+ if (arch_env->impl->get_pic_base == NULL)
+ return NULL;
+ return arch_env->impl->get_pic_base(irg);
+}
+
/** patches SymConsts to work in position independent code */
static void fix_pic_symconsts(ir_node *node, void *data)
{
- ir_node *pic_base;
- ir_node *add;
- ir_node *block;
- ir_mode *mode;
- ir_node *load;
- ir_node *load_res;
- ir_graph *irg = get_irn_irg(node);
- int arity, i;
- be_main_env_t *be = be_get_irg_main_env(irg);
+ ir_graph *irg = get_irn_irg(node);
+ be_main_env_t *be = be_get_irg_main_env(irg);
+ ir_node *pic_base;
+ ir_node *add;
+ ir_node *block;
+ ir_mode *mode;
+ ir_node *load;
+ ir_node *load_res;
+ int arity, i;
(void) data;
arity = get_irn_arity(node);
/* everything else is accessed relative to EIP */
mode = get_irn_mode(pred);
- pic_base = arch_code_generator_get_pic_base(be_get_irg_cg(irg));
+ pic_base = get_pic_base(irg);
/* all ok now for locally constructed stuff */
if (can_address_relative(entity)) {
be_abi_irg_t *be_abi_introduce(ir_graph *irg)
{
- be_abi_irg_t *env = XMALLOC(be_abi_irg_t);
+ be_abi_irg_t *env = XMALLOCZ(be_abi_irg_t);
ir_node *old_frame = get_irg_frame(irg);
- struct obstack *obst = be_get_be_obst(irg);
be_options_t *options = be_get_irg_options(irg);
const arch_env_t *arch_env = be_get_irg_arch_env(irg);
ir_entity *entity = get_irg_entity(irg);
pmap_entry *ent;
ir_node *dummy;
- unsigned *limited_bitset;
- arch_register_req_t *sp_req;
-
- be_omit_fp = options->omit_fp;
- be_omit_leaf_fp = options->omit_leaf_fp;
-
- obstack_init(obst);
-
- env->call = be_abi_call_new(arch_env->sp->reg_class);
- arch_env_get_call_abi(arch_env, method_type, env->call);
env->ignore_regs = pset_new_ptr_default();
- env->keep_map = pmap_create();
- env->dce_survivor = new_survive_dce();
-
- sp_req = OALLOCZ(obst, arch_register_req_t);
- env->sp_req = sp_req;
-
- sp_req->type = arch_register_req_type_limited
- | arch_register_req_type_produces_sp;
- sp_req->cls = arch_register_get_class(arch_env->sp);
-
- limited_bitset = rbitset_obstack_alloc(obst, sp_req->cls->n_regs);
- rbitset_set(limited_bitset, arch_register_get_index(arch_env->sp));
- sp_req->limited = limited_bitset;
- if (arch_env->sp->type & arch_register_type_ignore) {
- sp_req->type |= arch_register_req_type_ignore;
- }
/* break here if backend provides a custom API.
* Note: we shouldn't have to setup any be_abi_irg_t* stuff at all,
* but need more cleanup to make this work
*/
+ be_set_irg_abi(irg, env);
if (arch_env->custom_abi)
return env;
- env->init_sp = dummy = new_r_Dummy(irg, arch_env->sp->reg_class->mode);
+ be_omit_fp = options->omit_fp;
- env->calls = NEW_ARR_F(ir_node*, 0);
- be_set_irg_abi(irg, env);
+ env->dce_survivor = new_survive_dce();
+ env->keep_map = pmap_create();
+ env->call = be_abi_call_new(arch_env->sp->reg_class);
+ arch_env_get_call_abi(arch_env, method_type, env->call);
+
+ env->init_sp = dummy = new_r_Dummy(irg, arch_env->sp->reg_class->mode);
+ env->calls = NEW_ARR_F(ir_node*, 0);
if (options->pic) {
irg_walk_graph(irg, fix_pic_symconsts, NULL, env);
Beware: init backend abi call object after processing calls,
otherwise some information might be not yet available.
*/
- env->cb = env->call->cb->init(env->call, arch_env, irg);
+ env->cb = env->call->cb->init(env->call, irg);
/* Process the IRG */
modify_irg(irg);
{
be_abi_irg_t *env = be_get_irg_abi(irg);
- be_abi_call_free(env->call);
- free_survive_dce(env->dce_survivor);
- del_pset(env->ignore_regs);
- pmap_destroy(env->regs);
+ if (env->call != NULL)
+ be_abi_call_free(env->call);
+ if (env->dce_survivor != NULL)
+ free_survive_dce(env->dce_survivor);
+ if (env->ignore_regs != NULL)
+ del_pset(env->ignore_regs);
+ if (env->regs != NULL)
+ pmap_destroy(env->regs);
free(env);
be_set_irg_abi(irg, NULL);
}
}
-/*
- _____ _ ____ _ _
- | ___(_)_ __ / ___|| |_ __ _ ___| | __
- | |_ | \ \/ / \___ \| __/ _` |/ __| |/ /
- | _| | |> < ___) | || (_| | (__| <
- |_| |_/_/\_\ |____/ \__\__,_|\___|_|\_\
-
-*/
-
-typedef ir_node **node_array;
-
-typedef struct fix_stack_walker_env_t {
- node_array sp_nodes;
-} fix_stack_walker_env_t;
-
-/**
- * Walker. Collect all stack modifying nodes.
- */
-static void collect_stack_nodes_walker(ir_node *node, void *data)
-{
- ir_node *insn = node;
- fix_stack_walker_env_t *env = data;
- const arch_register_req_t *req;
-
- if (is_Proj(node)) {
- insn = get_Proj_pred(node);
- }
-
- if (arch_irn_get_n_outs(insn) == 0)
- return;
- if (get_irn_mode(node) == mode_T)
- return;
-
- req = arch_get_register_req_out(node);
- if (! (req->type & arch_register_req_type_produces_sp))
- return;
-
- ARR_APP1(ir_node*, env->sp_nodes, node);
-}
-
-void be_abi_fix_stack_nodes(ir_graph *irg)
-{
- be_abi_irg_t *abi = be_get_irg_abi(irg);
- be_lv_t *lv = be_get_irg_liveness(irg);
- const arch_env_t *arch_env = be_get_irg_arch_env(irg);
- be_ssa_construction_env_t senv;
- int i, len;
- ir_node **phis;
- fix_stack_walker_env_t walker_env;
-
- walker_env.sp_nodes = NEW_ARR_F(ir_node*, 0);
-
- irg_walk_graph(irg, collect_stack_nodes_walker, NULL, &walker_env);
-
- /* nothing to be done if we didn't find any node, in fact we mustn't
- * continue, as for endless loops incsp might have had no users and is bad
- * now.
- */
- len = ARR_LEN(walker_env.sp_nodes);
- if (len == 0) {
- DEL_ARR_F(walker_env.sp_nodes);
- return;
- }
-
- be_ssa_construction_init(&senv, irg);
- be_ssa_construction_add_copies(&senv, walker_env.sp_nodes,
- ARR_LEN(walker_env.sp_nodes));
- be_ssa_construction_fix_users_array(&senv, walker_env.sp_nodes,
- ARR_LEN(walker_env.sp_nodes));
-
- if (lv != NULL) {
- len = ARR_LEN(walker_env.sp_nodes);
- for (i = 0; i < len; ++i) {
- be_liveness_update(lv, walker_env.sp_nodes[i]);
- }
- be_ssa_construction_update_liveness_phis(&senv, lv);
- }
-
- phis = be_ssa_construction_get_new_phis(&senv);
-
- /* set register requirements for stack phis */
- len = ARR_LEN(phis);
- for (i = 0; i < len; ++i) {
- ir_node *phi = phis[i];
- be_set_phi_reg_req(phi, abi->sp_req);
- arch_set_irn_register(phi, arch_env->sp);
- }
- be_ssa_construction_destroy(&senv);
-
- DEL_ARR_F(walker_env.sp_nodes);
-}
-
-/**
- * Fix all stack accessing operations in the block bl.
- *
- * @param env the abi environment
- * @param bl the block to process
- * @param real_bias the bias value
- *
- * @return the bias at the end of this block
- */
-static int process_stack_bias(be_abi_irg_t *env, ir_node *bl, int real_bias)
-{
- int omit_fp = env->call->flags.bits.try_omit_fp;
- int wanted_bias = real_bias;
- ir_graph *irg = get_Block_irg(bl);
- be_stack_layout_t *layout = be_get_irg_stack_layout(irg);
- const arch_env_t *arch_env = be_get_irg_arch_env(irg);
- ir_node *irn;
-
- sched_foreach(bl, irn) {
- int ofs;
-
- /*
- Check, if the node relates to an entity on the stack frame.
- If so, set the true offset (including the bias) for that
- node.
- */
- ir_entity *ent = arch_get_frame_entity(irn);
- if (ent != NULL) {
- int bias = omit_fp ? real_bias : 0;
- int offset = get_stack_entity_offset(layout, ent, bias);
- arch_set_frame_offset(irn, offset);
- DBG((dbg, LEVEL_2, "%F has offset %d (including bias %d)\n",
- ent, offset, bias));
- }
-
- /*
- * If the node modifies the stack pointer by a constant offset,
- * record that in the bias.
- */
- ofs = arch_get_sp_bias(irn);
-
- if (be_is_IncSP(irn)) {
- /* fill in real stack frame size */
- if (ofs == BE_STACK_FRAME_SIZE_EXPAND) {
- ir_type *frame_type = get_irg_frame_type(irg);
- ofs = (int) get_type_size_bytes(frame_type);
- be_set_IncSP_offset(irn, ofs);
- } else if (ofs == BE_STACK_FRAME_SIZE_SHRINK) {
- ir_type *frame_type = get_irg_frame_type(irg);
- ofs = - (int)get_type_size_bytes(frame_type);
- be_set_IncSP_offset(irn, ofs);
- } else {
- if (be_get_IncSP_align(irn)) {
- /* patch IncSP to produce an aligned stack pointer */
- ir_type *between_type = layout->between_type;
- int between_size = get_type_size_bytes(between_type);
- int alignment = 1 << arch_env->stack_alignment;
- int delta = (real_bias + ofs + between_size) & (alignment - 1);
- assert(ofs >= 0);
- if (delta > 0) {
- be_set_IncSP_offset(irn, ofs + alignment - delta);
- real_bias += alignment - delta;
- }
- } else {
- /* adjust so real_bias corresponds with wanted_bias */
- int delta = wanted_bias - real_bias;
- assert(delta <= 0);
- if (delta != 0) {
- be_set_IncSP_offset(irn, ofs + delta);
- real_bias += delta;
- }
- }
- }
- }
-
- real_bias += ofs;
- wanted_bias += ofs;
- }
-
- assert(real_bias == wanted_bias);
- return real_bias;
-}
-
-/**
- * A helper struct for the bias walker.
- */
-struct bias_walk {
- be_abi_irg_t *env; /**< The ABI irg environment. */
- int start_block_bias; /**< The bias at the end of the start block. */
- int between_size;
- ir_node *start_block; /**< The start block of the current graph. */
-};
-
-/**
- * Block-Walker: fix all stack offsets for all blocks
- * except the start block
- */
-static void stack_bias_walker(ir_node *bl, void *data)
-{
- struct bias_walk *bw = data;
- if (bl != bw->start_block) {
- process_stack_bias(bw->env, bl, bw->start_block_bias);
- }
-}
-
-/**
- * Walker: finally lower all Sels of outer frame or parameter
- * entities.
- */
-static void lower_outer_frame_sels(ir_node *sel, void *ctx)
-{
- ir_node *ptr;
- ir_entity *ent;
- ir_type *owner;
- be_stack_layout_t *layout;
- ir_graph *irg;
- (void) ctx;
-
- if (! is_Sel(sel))
- return;
-
- ent = get_Sel_entity(sel);
- owner = get_entity_owner(ent);
- ptr = get_Sel_ptr(sel);
- irg = get_irn_irg(sel);
- layout = be_get_irg_stack_layout(irg);
-
- if (owner == layout->frame_type || owner == layout->arg_type) {
- /* found access to outer frame or arguments */
- int offset = get_stack_entity_offset(layout, ent, 0);
-
- if (offset != 0) {
- ir_node *bl = get_nodes_block(sel);
- dbg_info *dbgi = get_irn_dbg_info(sel);
- ir_mode *mode = get_irn_mode(sel);
- ir_mode *mode_UInt = get_reference_mode_unsigned_eq(mode);
- ir_node *cnst = new_r_Const_long(current_ir_graph, mode_UInt, offset);
-
- ptr = new_rd_Add(dbgi, bl, ptr, cnst, mode);
- }
- exchange(sel, ptr);
- }
-}
-
-void be_abi_fix_stack_bias(ir_graph *irg)
-{
- be_abi_irg_t *env = be_get_irg_abi(irg);
- be_stack_layout_t *stack_layout = be_get_irg_stack_layout(irg);
- ir_type *frame_tp;
- int i;
- struct bias_walk bw;
-
- stack_frame_compute_initial_offset(stack_layout);
- // stack_layout_dump(stdout, stack_layout);
-
- /* Determine the stack bias at the end of the start block. */
- bw.start_block_bias = process_stack_bias(env, get_irg_start_block(irg),
- stack_layout->initial_bias);
- bw.between_size = get_type_size_bytes(stack_layout->between_type);
-
- /* fix the bias is all other blocks */
- bw.env = env;
- bw.start_block = get_irg_start_block(irg);
- irg_block_walk_graph(irg, stack_bias_walker, NULL, &bw);
-
- /* fix now inner functions: these still have Sel node to outer
- frame and parameter entities */
- frame_tp = get_irg_frame_type(irg);
- for (i = get_class_n_members(frame_tp) - 1; i >= 0; --i) {
- ir_entity *ent = get_class_member(frame_tp, i);
- ir_graph *irg = get_entity_irg(ent);
-
- if (irg != NULL) {
- irg_walk_graph(irg, NULL, lower_outer_frame_sels, env);
- }
- }
-}
-
ir_node *be_abi_get_callee_save_irn(be_abi_irg_t *abi, const arch_register_t *reg)
{
assert(arch_register_type_is(reg, callee_save));
return pmap_get(abi->regs, (void *) reg);
}
-/**
- * Returns non-zero if the ABI has omitted the frame pointer in
- * the current graph.
- */
-int be_abi_omit_fp(const be_abi_irg_t *abi)
-{
- return abi->call->flags.bits.try_omit_fp;
-}
-
BE_REGISTER_MODULE_CONSTRUCTOR(be_init_abi);
void be_init_abi(void)
{