Simplify node construction in gen_Mulh().
[libfirm] / ir / be / ia32 / ia32_transform.c
index 09fc6ea..12964ac 100644 (file)
@@ -29,6 +29,7 @@
 #endif
 
 #include <limits.h>
+#include <stdbool.h>
 
 #include "irargs_t.h"
 #include "irnode_t.h"
@@ -47,6 +48,7 @@
 #include "irdom.h"
 #include "archop.h"
 #include "error.h"
+#include "array_t.h"
 #include "height.h"
 
 #include "../benode_t.h"
@@ -131,46 +133,46 @@ static ir_node *create_I2I_Conv(ir_mode *src_mode, ir_mode *tgt_mode,
                                 ir_node *op, ir_node *orig_node);
 
 /** Return non-zero is a node represents the 0 constant. */
-static int is_Const_0(ir_node *node) {
+static bool is_Const_0(ir_node *node) {
        return is_Const(node) && is_Const_null(node);
 }
 
 /** Return non-zero is a node represents the 1 constant. */
-static int is_Const_1(ir_node *node) {
+static bool is_Const_1(ir_node *node) {
        return is_Const(node) && is_Const_one(node);
 }
 
 /** Return non-zero is a node represents the -1 constant. */
-static int is_Const_Minus_1(ir_node *node) {
+static bool is_Const_Minus_1(ir_node *node) {
        return is_Const(node) && is_Const_all_one(node);
 }
 
 /**
  * returns true if constant can be created with a simple float command
  */
-static int is_simple_x87_Const(ir_node *node)
+static bool is_simple_x87_Const(ir_node *node)
 {
        tarval *tv = get_Const_tarval(node);
        if (tarval_is_null(tv) || tarval_is_one(tv))
-               return 1;
+               return true;
 
        /* TODO: match all the other float constants */
-       return 0;
+       return false;
 }
 
 /**
  * returns true if constant can be created with a simple float command
  */
-static int is_simple_sse_Const(ir_node *node)
+static bool is_simple_sse_Const(ir_node *node)
 {
        tarval  *tv   = get_Const_tarval(node);
        ir_mode *mode = get_tarval_mode(tv);
 
        if (mode == mode_F)
-               return 1;
+               return true;
 
        if (tarval_is_null(tv) || tarval_is_one(tv))
-               return 1;
+               return true;
 
        if (mode == mode_D) {
                unsigned val = get_tarval_sub_bits(tv, 0) |
@@ -179,11 +181,11 @@ static int is_simple_sse_Const(ir_node *node)
                        (get_tarval_sub_bits(tv, 3) << 24);
                if (val == 0)
                        /* lower 32bit are zero, really a 32bit constant */
-                       return 1;
+                       return true;
        }
 
        /* TODO: match all the other float constants */
-       return 0;
+       return false;
 }
 
 /**
@@ -431,44 +433,6 @@ ir_entity *ia32_gen_fp_known_const(ia32_known_const_t kct) {
        return ent_cache[kct];
 }
 
-static int prevents_AM(ir_node *const block, ir_node *const am_candidate,
-                       ir_node *const other)
-{
-       if (get_nodes_block(other) != block)
-               return 0;
-
-       if (is_Sync(other)) {
-               int i;
-
-               for (i = get_Sync_n_preds(other) - 1; i >= 0; --i) {
-                       ir_node *const pred = get_Sync_pred(other, i);
-
-                       if (get_nodes_block(pred) != block)
-                               continue;
-
-                       /* Do not block ourselves from getting eaten */
-                       if (is_Proj(pred) && get_Proj_pred(pred) == am_candidate)
-                               continue;
-
-                       if (!heights_reachable_in_block(heights, pred, am_candidate))
-                               continue;
-
-                       return 1;
-               }
-
-               return 0;
-       } else {
-               /* Do not block ourselves from getting eaten */
-               if (is_Proj(other) && get_Proj_pred(other) == am_candidate)
-                       return 0;
-
-               if (!heights_reachable_in_block(heights, other, am_candidate))
-                       return 0;
-
-               return 1;
-       }
-}
-
 /**
  * return true if the node is a Proj(Load) and could be used in source address
  * mode for another node. Will return only true if the @p other node is not
@@ -530,6 +494,7 @@ struct ia32_address_mode_t {
        ia32_address_t  addr;
        ir_mode        *ls_mode;
        ir_node        *mem_proj;
+       ir_node        *am_node;
        ia32_op_type_t  op_type;
        ir_node        *new_op1;
        ir_node        *new_op2;
@@ -580,6 +545,7 @@ static void build_address(ia32_address_mode_t *am, ir_node *node)
        am->pinned   = get_irn_pinned(load);
        am->ls_mode  = get_Load_mode(load);
        am->mem_proj = be_get_Proj_for_pn(load, pn_Load_M);
+       am->am_node  = node;
 
        /* construct load address */
        ia32_create_address_mode(addr, ptr, /*force=*/0);
@@ -771,20 +737,19 @@ static void match_arguments(ia32_address_mode_t *am, ir_node *block,
                }
                am->op_type = ia32_AddrModeS;
        } else {
+               am->op_type = ia32_Normal;
+
                if (flags & match_try_am) {
                        am->new_op1 = NULL;
                        am->new_op2 = NULL;
-                       am->op_type = ia32_Normal;
                        return;
                }
 
                new_op1 = (op1 == NULL ? NULL : be_transform_node(op1));
                if (new_op2 == NULL)
                        new_op2 = be_transform_node(op2);
-               am->op_type = ia32_Normal;
-               am->ls_mode = get_irn_mode(op2);
-               if (flags & match_mode_neutral)
-                       am->ls_mode = mode_Iu;
+               am->ls_mode =
+                       (flags & match_mode_neutral ? mode_Iu : get_irn_mode(op2));
        }
        if (addr->base == NULL)
                addr->base = noreg_gp;
@@ -798,6 +763,12 @@ static void match_arguments(ia32_address_mode_t *am, ir_node *block,
        am->commutative = commutative;
 }
 
+static void set_transformed_and_mark(ir_node *const old_node, ir_node *const new_node)
+{
+       mark_irn_visited(old_node);
+       be_set_transformed_node(old_node, new_node);
+}
+
 static ir_node *fix_mem_proj(ir_node *node, ia32_address_mode_t *am)
 {
        ir_mode  *mode;
@@ -810,8 +781,7 @@ static ir_node *fix_mem_proj(ir_node *node, ia32_address_mode_t *am)
        mode = get_irn_mode(node);
        load = get_Proj_pred(am->mem_proj);
 
-       mark_irn_visited(load);
-       be_set_transformed_node(load, node);
+       set_transformed_and_mark(load, node);
 
        if (mode != mode_T) {
                set_irn_mode(node, mode_T);
@@ -849,7 +819,7 @@ static ir_node *gen_binop(ir_node *node, ir_node *op1, ir_node *op2,
        set_am_attributes(new_node, &am);
        /* we can't use source address mode anymore when using immediates */
        if (is_ia32_Immediate(am.new_op1) || is_ia32_Immediate(am.new_op2))
-               set_ia32_am_support(new_node, ia32_am_None, ia32_am_arity_none);
+               set_ia32_am_support(new_node, ia32_am_none);
        SET_IA32_ORIG_NODE(new_node, ia32_get_old_node_name(env_cg, node));
 
        new_node = fix_mem_proj(new_node, &am);
@@ -899,7 +869,7 @@ static ir_node *gen_binop_flags(ir_node *node, construct_binop_flags_func *func,
        set_am_attributes(new_node, &am);
        /* we can't use source address mode anymore when using immediates */
        if(is_ia32_Immediate(am.new_op1) || is_ia32_Immediate(am.new_op2))
-               set_ia32_am_support(new_node, ia32_am_None, ia32_am_arity_none);
+               set_ia32_am_support(new_node, ia32_am_none);
        SET_IA32_ORIG_NODE(new_node, ia32_get_old_node_name(env_cg, node));
 
        new_node = fix_mem_proj(new_node, &am);
@@ -1209,37 +1179,32 @@ static ir_node *gen_Mul(ir_node *node) {
  */
 static ir_node *gen_Mulh(ir_node *node)
 {
-       ir_node  *block     = get_nodes_block(node);
-       ir_node  *new_block = be_transform_node(block);
-       ir_graph *irg       = current_ir_graph;
-       dbg_info *dbgi      = get_irn_dbg_info(node);
-       ir_mode  *mode      = get_irn_mode(node);
-       ir_node  *op1       = get_Mulh_left(node);
-       ir_node  *op2       = get_Mulh_right(node);
-       ir_node  *proj_res_high;
-       ir_node  *new_node;
-       ia32_address_mode_t  am;
-       ia32_address_t      *addr = &am.addr;
+       ir_node              *block     = get_nodes_block(node);
+       ir_node              *new_block = be_transform_node(block);
+       ir_graph             *irg       = current_ir_graph;
+       dbg_info             *dbgi      = get_irn_dbg_info(node);
+       ir_node              *op1       = get_Mulh_left(node);
+       ir_node              *op2       = get_Mulh_right(node);
+       ir_mode              *mode      = get_irn_mode(node);
+       construct_binop_func *func;
+       ir_node              *proj_res_high;
+       ir_node              *new_node;
+       ia32_address_mode_t   am;
+       ia32_address_t       *addr = &am.addr;
 
        assert(!mode_is_float(mode) && "Mulh with float not supported");
        assert(get_mode_size_bits(mode) == 32);
 
        match_arguments(&am, block, op1, op2, NULL, match_commutative | match_am);
 
-       if (mode_is_signed(mode)) {
-               new_node = new_rd_ia32_IMul1OP(dbgi, irg, new_block, addr->base,
-                                              addr->index, addr->mem, am.new_op1,
-                                              am.new_op2);
-       } else {
-               new_node = new_rd_ia32_Mul(dbgi, irg, new_block, addr->base,
-                                          addr->index, addr->mem, am.new_op1,
-                                          am.new_op2);
-       }
+       func     = mode_is_signed(mode) ? new_rd_ia32_IMul1OP : new_rd_ia32_Mul;
+       new_node = func(dbgi, irg, new_block, addr->base, addr->index, addr->mem,
+                       am.new_op1, am.new_op2);
 
        set_am_attributes(new_node, &am);
        /* we can't use source address mode anymore when using immediates */
        if(is_ia32_Immediate(am.new_op1) || is_ia32_Immediate(am.new_op2))
-               set_ia32_am_support(new_node, ia32_am_None, ia32_am_arity_none);
+               set_ia32_am_support(new_node, ia32_am_none);
        SET_IA32_ORIG_NODE(new_node, ia32_get_old_node_name(env_cg, node));
 
        assert(get_irn_mode(new_node) == mode_T);
@@ -2021,12 +1986,6 @@ static int use_dest_am(ir_node *block, ir_node *node, ir_node *mem,
        return 1;
 }
 
-static void set_transformed_and_mark(ir_node *const old_node, ir_node *const new_node)
-{
-       mark_irn_visited(old_node);
-       be_set_transformed_node(old_node, new_node);
-}
-
 static ir_node *dest_am_binop(ir_node *node, ir_node *op1, ir_node *op2,
                               ir_node *mem, ir_node *ptr, ir_mode *mode,
                               construct_binop_dest_func *func,
@@ -2038,6 +1997,7 @@ static ir_node *dest_am_binop(ir_node *node, ir_node *op1, ir_node *op2,
        ir_node  *noreg_gp  = ia32_new_NoReg_gp(env_cg);
        ir_graph *irg      = current_ir_graph;
        dbg_info *dbgi;
+       ir_node  *new_mem;
        ir_node  *new_node;
        ir_node  *new_op;
        ir_node  *mem_proj;
@@ -2067,13 +2027,15 @@ static ir_node *dest_am_binop(ir_node *node, ir_node *op1, ir_node *op2,
        if(addr->mem == NULL)
                addr->mem = new_NoMem();
 
-       dbgi  = get_irn_dbg_info(node);
-       block = be_transform_node(src_block);
+       dbgi    = get_irn_dbg_info(node);
+       block   = be_transform_node(src_block);
+       new_mem = transform_AM_mem(irg, block, am.am_node, mem, addr->mem);
+
        if(get_mode_size_bits(mode) == 8) {
                new_node = func8bit(dbgi, irg, block, addr->base, addr->index,
-                                   addr->mem, new_op);
+                                   new_mem, new_op);
        } else {
-               new_node = func(dbgi, irg, block, addr->base, addr->index, addr->mem,
+               new_node = func(dbgi, irg, block, addr->base, addr->index, new_mem,
                                new_op);
        }
        set_address(new_node, addr);
@@ -2092,12 +2054,13 @@ static ir_node *dest_am_unop(ir_node *node, ir_node *op, ir_node *mem,
                              ir_node *ptr, ir_mode *mode,
                              construct_unop_dest_func *func)
 {
-       ir_graph *irg      = current_ir_graph;
-       ir_node *src_block = get_nodes_block(node);
-       ir_node *block;
+       ir_graph *irg       = current_ir_graph;
+       ir_node  *src_block = get_nodes_block(node);
+       ir_node  *block;
        dbg_info *dbgi;
-       ir_node *new_node;
-       ir_node *mem_proj;
+       ir_node  *new_mem;
+       ir_node  *new_node;
+       ir_node  *mem_proj;
        ia32_address_mode_t  am;
        ia32_address_t *addr = &am.addr;
        memset(&am, 0, sizeof(am));
@@ -2109,7 +2072,8 @@ static ir_node *dest_am_unop(ir_node *node, ir_node *op, ir_node *mem,
 
        dbgi     = get_irn_dbg_info(node);
        block    = be_transform_node(src_block);
-       new_node = func(dbgi, irg, block, addr->base, addr->index, addr->mem);
+       new_mem  = transform_AM_mem(irg, block, am.am_node, mem, addr->mem);
+       new_node = func(dbgi, irg, block, addr->base, addr->index, new_mem);
        set_address(new_node, addr);
        set_ia32_op_type(new_node, ia32_AddrModeD);
        set_ia32_ls_mode(new_node, mode);
@@ -2700,10 +2664,10 @@ static ir_node *create_Ucomi(ir_node *node)
 }
 
 /**
- * helper function: checks wether all Cmp projs are Lg or Eq which is needed
+ * helper function: checks whether all Cmp projs are Lg or Eq which is needed
  * to fold an and into a test node
  */
-static int can_fold_test_and(ir_node *node)
+static bool can_fold_test_and(ir_node *node)
 {
        const ir_edge_t *edge;
 
@@ -2712,10 +2676,84 @@ static int can_fold_test_and(ir_node *node)
                ir_node *proj = get_edge_src_irn(edge);
                pn_Cmp   pnc  = get_Proj_proj(proj);
                if(pnc != pn_Cmp_Eq && pnc != pn_Cmp_Lg)
-                       return 0;
+                       return false;
        }
 
-       return 1;
+       return true;
+}
+
+/**
+ * returns true if it is assured, that the upper bits of a node are "clean"
+ * which means for a 16 or 8 bit value, that the upper bits in the register
+ * are 0 for unsigned and a copy of the last significant bit for unsigned
+ * numbers.
+ */
+static bool upper_bits_clean(ir_node *transformed_node, ir_mode *mode)
+{
+       assert(ia32_mode_needs_gp_reg(mode));
+       if (get_mode_size_bits(mode) >= 32)
+               return true;
+
+       if (is_Proj(transformed_node))
+               return upper_bits_clean(get_Proj_pred(transformed_node), mode);
+
+       if (is_ia32_Conv_I2I(transformed_node)
+                       || is_ia32_Conv_I2I8Bit(transformed_node)) {
+               ir_mode *smaller_mode = get_ia32_ls_mode(transformed_node);
+               if (mode_is_signed(smaller_mode) != mode_is_signed(mode))
+                       return false;
+               if (get_mode_size_bits(smaller_mode) > get_mode_size_bits(mode))
+                       return false;
+
+               return true;
+       }
+
+       if (is_ia32_Shr(transformed_node) && !mode_is_signed(mode)) {
+               ir_node *right = get_irn_n(transformed_node, n_ia32_Shr_count);
+               if (is_ia32_Immediate(right) || is_ia32_Const(right)) {
+                       const ia32_immediate_attr_t *attr
+                               = get_ia32_immediate_attr_const(right);
+                       if (attr->symconst == 0
+                                       && (unsigned) attr->offset >= (32 - get_mode_size_bits(mode))) {
+                               return true;
+                       }
+               }
+               return upper_bits_clean(get_irn_n(transformed_node, n_ia32_Shr_val), mode);
+       }
+
+       if (is_ia32_And(transformed_node) && !mode_is_signed(mode)) {
+               ir_node *right = get_irn_n(transformed_node, n_ia32_And_right);
+               if (is_ia32_Immediate(right) || is_ia32_Const(right)) {
+                       const ia32_immediate_attr_t *attr
+                               = get_ia32_immediate_attr_const(right);
+                       if (attr->symconst == 0
+                                       && (unsigned) attr->offset
+                                       <= (0xffffffff >> (32 - get_mode_size_bits(mode)))) {
+                               return true;
+                       }
+               }
+               /* TODO recurse? */
+       }
+
+       /* TODO recurse on Or, Xor, ... if appropriate? */
+
+       if (is_ia32_Immediate(transformed_node)
+                       || is_ia32_Const(transformed_node)) {
+               const ia32_immediate_attr_t *attr
+                       = get_ia32_immediate_attr_const(transformed_node);
+               if (mode_is_signed(mode)) {
+                       long shifted = attr->offset >> (get_mode_size_bits(mode) - 1);
+                       if (shifted == 0 || shifted == -1)
+                               return true;
+               } else {
+                       unsigned long shifted = (unsigned long) attr->offset;
+                       shifted >>= get_mode_size_bits(mode);
+                       if (shifted == 0)
+                               return true;
+               }
+       }
+
+       return false;
 }
 
 /**
@@ -2754,22 +2792,35 @@ static ir_node *gen_Cmp(ir_node *node)
                /* Test(and_left, and_right) */
                ir_node *and_left  = get_And_left(left);
                ir_node *and_right = get_And_right(left);
-               ir_mode *mode      = get_irn_mode(and_left);
+
+               /* matze: code here used mode instead of cmd_mode, I think it is always
+                * the same as cmp_mode, but I leave this here to see if this is really
+                * true...
+                */
+               assert(get_irn_mode(and_left) == cmp_mode);
 
                match_arguments(&am, block, and_left, and_right, NULL,
                                                                                match_commutative |
                                                                                match_am | match_8bit_am | match_16bit_am |
                                                                                match_am_and_immediates | match_immediate |
                                                                                match_8bit | match_16bit);
-               if (get_mode_size_bits(mode) == 8) {
+
+               /* use 32bit compare mode if possible since the opcode is smaller */
+               if (upper_bits_clean(am.new_op1, cmp_mode) &&
+                   upper_bits_clean(am.new_op2, cmp_mode)) {
+                       cmp_mode = mode_is_signed(cmp_mode) ? mode_Is : mode_Iu;
+               }
+
+               if (get_mode_size_bits(cmp_mode) == 8) {
                        new_node = new_rd_ia32_Test8Bit(dbgi, irg, new_block, addr->base,
-                                                                                                                                                       addr->index, addr->mem, am.new_op1,
-                                                                                                                                                       am.new_op2, am.ins_permuted,
-                                                                                                                                                       cmp_unsigned);
+                                                       addr->index, addr->mem, am.new_op1,
+                                                       am.new_op2, am.ins_permuted,
+                                                       cmp_unsigned);
                } else {
                        new_node = new_rd_ia32_Test(dbgi, irg, new_block, addr->base,
-                                                                                                                                       addr->index, addr->mem, am.new_op1,
-                                                                                                                                       am.new_op2, am.ins_permuted, cmp_unsigned);
+                                                   addr->index, addr->mem, am.new_op1,
+                                                   am.new_op2, am.ins_permuted,
+                                                                               cmp_unsigned);
                }
        } else {
                /* Cmp(left, right) */
@@ -2777,6 +2828,12 @@ static ir_node *gen_Cmp(ir_node *node)
                                match_commutative | match_am | match_8bit_am |
                                match_16bit_am | match_am_and_immediates |
                                match_immediate | match_8bit | match_16bit);
+               /* use 32bit compare mode if possible since the opcode is smaller */
+               if (upper_bits_clean(am.new_op1, cmp_mode) &&
+                   upper_bits_clean(am.new_op2, cmp_mode)) {
+                       cmp_mode = mode_is_signed(cmp_mode) ? mode_Is : mode_Iu;
+               }
+
                if (get_mode_size_bits(cmp_mode) == 8) {
                        new_node = new_rd_ia32_Cmp8Bit(dbgi, irg, new_block, addr->base,
                                                       addr->index, addr->mem, am.new_op1,
@@ -3217,6 +3274,17 @@ static ir_node *create_I2I_Conv(ir_mode *src_mode, ir_mode *tgt_mode,
        match_arguments(&am, block, NULL, op, NULL,
                        match_8bit | match_16bit |
                        match_am | match_8bit_am | match_16bit_am);
+
+       if (upper_bits_clean(am.new_op2, smaller_mode)) {
+               /* unnecessary conv. in theory it shouldn't have been AM */
+               assert(is_ia32_NoReg_GP(addr->base));
+               assert(is_ia32_NoReg_GP(addr->index));
+               assert(is_NoMem(addr->mem));
+               assert(am.addr.offset == 0);
+               assert(am.addr.symconst_ent == NULL);
+               return am.new_op2;
+       }
+
        if (smaller_bits == 8) {
                new_node = new_rd_ia32_Conv_I2I8Bit(dbgi, irg, new_block, addr->base,
                                                    addr->index, addr->mem, am.new_op2,
@@ -3490,8 +3558,7 @@ static ir_node *gen_be_Return(ir_node *node) {
                                  arity, in);
        copy_node_attr(barrier, new_barrier);
        be_duplicate_deps(barrier, new_barrier);
-       be_set_transformed_node(barrier, new_barrier);
-       mark_irn_visited(barrier);
+       set_transformed_and_mark(barrier, new_barrier);
 
        /* transform normally */
        return be_duplicate_node(node);
@@ -3505,7 +3572,8 @@ static ir_node *gen_be_AddSP(ir_node *node)
        ir_node  *sz = get_irn_n(node, be_pos_AddSP_size);
        ir_node  *sp = get_irn_n(node, be_pos_AddSP_old_sp);
 
-       return gen_binop(node, sp, sz, new_rd_ia32_SubSP, match_am);
+       return gen_binop(node, sp, sz, new_rd_ia32_SubSP,
+                        match_am | match_immediate);
 }
 
 /**
@@ -3516,7 +3584,8 @@ static ir_node *gen_be_SubSP(ir_node *node)
        ir_node  *sz = get_irn_n(node, be_pos_SubSP_size);
        ir_node  *sp = get_irn_n(node, be_pos_SubSP_old_sp);
 
-       return gen_binop(node, sp, sz, new_rd_ia32_AddSP, match_am);
+       return gen_binop(node, sp, sz, new_rd_ia32_AddSP,
+                        match_am | match_immediate);
 }
 
 /**
@@ -3913,8 +3982,7 @@ static ir_node *gen_Proj_be_AddSP(ir_node *node) {
                return new_rd_Proj(dbgi, irg, block, new_pred, mode_M, pn_ia32_SubSP_M);
        }
 
-       assert(0);
-       return new_rd_Unknown(irg, get_irn_mode(node));
+       panic("No idea how to transform proj->AddSP");
 }
 
 /**
@@ -3937,8 +4005,7 @@ static ir_node *gen_Proj_be_SubSP(ir_node *node) {
                return new_rd_Proj(dbgi, irg, block, new_pred, mode_M, pn_ia32_AddSP_M);
        }
 
-       assert(0);
-       return new_rd_Unknown(irg, get_irn_mode(node));
+       panic("No idea how to transform proj->SubSP");
 }
 
 /**
@@ -4036,8 +4103,7 @@ static ir_node *gen_Proj_Load(ir_node *node) {
                return new_rd_Proj(dbgi, irg, block, new_pred, mode_M, 1);
        }
 
-       assert(0);
-       return new_rd_Unknown(irg, get_irn_mode(node));
+       panic("No idea how to transform proj");
 }
 
 /**
@@ -4049,7 +4115,6 @@ static ir_node *gen_Proj_DivMod(ir_node *node) {
        ir_node  *new_pred = be_transform_node(pred);
        ir_graph *irg      = current_ir_graph;
        dbg_info *dbgi     = get_irn_dbg_info(node);
-       ir_mode  *mode     = get_irn_mode(node);
        long     proj      = get_Proj_proj(node);
 
        assert(is_ia32_Div(new_pred) || is_ia32_IDiv(new_pred));
@@ -4104,8 +4169,7 @@ static ir_node *gen_Proj_DivMod(ir_node *node) {
                break;
        }
 
-       assert(0);
-       return new_rd_Unknown(irg, mode);
+       panic("No idea how to transform proj->DivMod");
 }
 
 /**
@@ -4117,7 +4181,6 @@ static ir_node *gen_Proj_CopyB(ir_node *node) {
        ir_node  *new_pred = be_transform_node(pred);
        ir_graph *irg      = current_ir_graph;
        dbg_info *dbgi     = get_irn_dbg_info(node);
-       ir_mode  *mode     = get_irn_mode(node);
        long     proj      = get_Proj_proj(node);
 
        switch(proj) {
@@ -4132,8 +4195,7 @@ static ir_node *gen_Proj_CopyB(ir_node *node) {
                break;
        }
 
-       assert(0);
-       return new_rd_Unknown(irg, mode);
+       panic("No idea how to transform proj->CopyB");
 }
 
 /**
@@ -4145,7 +4207,6 @@ static ir_node *gen_Proj_Quot(ir_node *node) {
        ir_node  *new_pred = be_transform_node(pred);
        ir_graph *irg      = current_ir_graph;
        dbg_info *dbgi     = get_irn_dbg_info(node);
-       ir_mode  *mode     = get_irn_mode(node);
        long     proj      = get_Proj_proj(node);
 
        switch(proj) {
@@ -4169,8 +4230,7 @@ static ir_node *gen_Proj_Quot(ir_node *node) {
                break;
        }
 
-       assert(0);
-       return new_rd_Unknown(irg, mode);
+       panic("No idea how to transform proj->Quot");
 }
 
 static ir_node *gen_be_Call(ir_node *node) {
@@ -4350,8 +4410,7 @@ static ir_node *gen_Proj(ir_node *node) {
                if (proj == pn_Store_M) {
                        return be_transform_node(pred);
                } else {
-                       assert(0);
-                       return new_r_Bad(current_ir_graph);
+                       panic("No idea how to transform proj->Store");
                }
        case iro_Load:
                return gen_Proj_Load(node);