d2c14ca44f
eviction; this prevents us from having to worry about moving values from stack slot to stack slot, which is hard.
334 lines
9.7 KiB
C
334 lines
9.7 KiB
C
#include "mcg.h"
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/* mcg stack frames are laid out as:
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*
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* | ...params...
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* | --------------- <- ab
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* | old FR
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* | old FP
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* | --------------- <- fp (a.k.a. lb)
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* | locals
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* | ---------------
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* | spills
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* | --------------- <- sb
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* | saved regs
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* | --------------- <- sp, rb
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* V ...user area...
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*
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* st indexes up; lb indexes down.
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*
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* Note that [fp] == old_fp and ab == fp + 8.
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*/
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static ARRAYOF(struct hreg) saved_regs;
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void platform_calculate_offsets(void)
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{
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int i;
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saved_regs.count = 0;
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for (i=0; i<current_proc->usedregs.count; i++)
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{
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struct hreg* hreg = current_proc->usedregs.item[i];
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if (!(hreg->attrs & burm_volatile_ATTR) &&
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((hreg->attrs & burm_long_ATTR) || (hreg->attrs & burm_double_ATTR)))
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{
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hreg->offset = current_proc->saved_size;
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current_proc->saved_size += 8;
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array_append(&saved_regs, hreg);
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}
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}
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for (i=0; i<current_proc->usedregs.count; i++)
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{
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struct hreg* hreg = current_proc->usedregs.item[i];
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if (!(hreg->attrs & burm_volatile_ATTR) &&
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((hreg->attrs & burm_int_ATTR) || (hreg->attrs & burm_float_ATTR)))
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{
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hreg->offset = current_proc->saved_size;
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current_proc->saved_size += 4;
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array_append(&saved_regs, hreg);
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}
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}
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current_proc->fp_to_ab = 8;
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current_proc->fp_to_lb = 0;
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current_proc->fp_to_sb = -(current_proc->locals_size + current_proc->spills_size);
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current_proc->fp_to_rb = current_proc->fp_to_sb - current_proc->saved_size;
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}
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struct hop* platform_prologue(void)
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{
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int i;
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int spoffset = current_proc->saved_size + current_proc->spills_size +
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current_proc->locals_size;
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struct hop* hop = new_hop(current_proc->entry, NULL);
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hop_add_insel(hop, "! locals_size = %d", current_proc->locals_size);
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hop_add_insel(hop, "! spills_size = %d", current_proc->spills_size);
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hop_add_insel(hop, "! saved_size = %d", current_proc->saved_size);
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hop_add_insel(hop, "! params @ fp+%d", current_proc->fp_to_ab);
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hop_add_insel(hop, "! lr @ fp+4");
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hop_add_insel(hop, "! fp @ fp+0");
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hop_add_insel(hop, "! locals @ fp-%d to fp+0",
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current_proc->locals_size);
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hop_add_insel(hop, "! spills @ fp-%d to fp-%d",
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-current_proc->fp_to_sb, current_proc->locals_size);
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for (i=saved_regs.count-1; i>=0; i--)
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{
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struct hreg* hreg = saved_regs.item[i];
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hop_add_insel(hop, "! %s @ fp-%d",
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hreg->id, -(current_proc->fp_to_rb + hreg->offset));
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}
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hop_add_insel(hop, "addi sp, sp, %d", -(spoffset + 8));
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hop_add_insel(hop, "mfspr r0, lr");
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hop_add_insel(hop, "stw fp, %d(sp)", spoffset + 0);
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hop_add_insel(hop, "stw r0, %d(sp)", spoffset + 4);
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hop_add_insel(hop, "addi fp, sp, %d", spoffset);
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/* Saved reg offsets are negative. */
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for (i=0; i<saved_regs.count; i++)
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{
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struct hreg* hreg = saved_regs.item[i];
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if (hreg->attrs & burm_int_ATTR)
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hop_add_insel(hop, "stw %H, %d(fp)",
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hreg, current_proc->fp_to_rb + hreg->offset);
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else if (hreg->attrs & burm_float_ATTR)
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hop_add_insel(hop, "stfs %H, %d(fp)",
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hreg, current_proc->fp_to_rb + hreg->offset);
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}
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return hop;
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}
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struct hop* platform_epilogue(void)
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{
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struct hop* hop = new_hop(current_proc->exit, NULL);
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int i;
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for (i=0; i<saved_regs.count; i++)
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{
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struct hreg* hreg = saved_regs.item[i];
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if (hreg->attrs & burm_int_ATTR)
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hop_add_insel(hop, "lwz %H, %d(fp)",
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hreg, current_proc->fp_to_rb + hreg->offset);
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else if (hreg->attrs & burm_float_ATTR)
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hop_add_insel(hop, "lfs %H, %d(fp)",
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hreg, current_proc->fp_to_rb + hreg->offset);
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}
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hop_add_insel(hop, "lwz r0, 4(fp)");
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hop_add_insel(hop, "mtspr lr, r0");
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hop_add_insel(hop, "lwz r0, 0(fp)"); /* load old fp */
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hop_add_insel(hop, "addi sp, fp, %d", current_proc->fp_to_ab);
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hop_add_insel(hop, "mr fp, r0");
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hop_add_insel(hop, "bclr 20, 0, 0");
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return hop;
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}
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struct hop* platform_move(struct basicblock* bb, struct vreg* vreg, struct hreg* src, struct hreg* dest)
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{
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struct hop* hop = new_hop(bb, NULL);
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if ((src->attrs & TYPE_ATTRS) != (dest->attrs & TYPE_ATTRS))
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{
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assert(!src->is_stacked);
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assert(!dest->is_stacked);
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switch (src->attrs & TYPE_ATTRS)
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{
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case burm_int_ATTR:
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hop_add_insel(hop, "stwu %H, -4(sp)", src);
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break;
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case burm_long_ATTR:
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hop_add_insel(hop, "stwu %0H, -4(sp)", src);
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hop_add_insel(hop, "stwu %1H, -4(sp)", src);
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break;
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case burm_float_ATTR:
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hop_add_insel(hop, "stfsu %H, -4(sp)", src);
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break;
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case burm_double_ATTR:
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hop_add_insel(hop, "stfdu %H, -8(sp)", src);
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break;
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default:
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goto nomove;
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}
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switch (dest->attrs & TYPE_ATTRS)
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{
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case burm_int_ATTR:
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hop_add_insel(hop, "lwz %H, 0(sp)", dest);
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break;
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case burm_long_ATTR:
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hop_add_insel(hop, "lwz %0H, 4(sp)", dest);
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hop_add_insel(hop, "lwz %1H, 0(sp)", dest);
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break;
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case burm_float_ATTR:
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hop_add_insel(hop, "lfs %H, 0(sp)", dest);
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break;
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case burm_double_ATTR:
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hop_add_insel(hop, "lfd %H, 0(sp)", dest);
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break;
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default:
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goto nomove;
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}
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switch (dest->attrs & TYPE_ATTRS)
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{
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case burm_int_ATTR:
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case burm_float_ATTR:
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hop_add_insel(hop, "addi sp, sp, 4");
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break;
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case burm_double_ATTR:
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case burm_long_ATTR:
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hop_add_insel(hop, "addi sp, sp, 8");
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break;
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default:
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goto nomove;
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}
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}
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else
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{
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uint32_t type = src->attrs & TYPE_ATTRS;
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if (!src->is_stacked && dest->is_stacked)
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{
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switch (type)
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{
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case burm_int_ATTR:
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hop_add_insel(hop, "stw %H, %S(fp) ! %H", src, dest, dest);
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break;
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case burm_float_ATTR:
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hop_add_insel(hop, "stfs %H, %S(fp) ! %H", src, dest, dest);
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break;
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case burm_long_ATTR:
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hop_add_insel(hop, "stw %0H, 4+%S(fp) ! %H", src, dest, dest);
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hop_add_insel(hop, "stw %1H, 0+%S(fp) ! %H", src, dest, dest);
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break;
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case burm_double_ATTR:
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hop_add_insel(hop, "stfd %H, %S(fp) ! %H", src, dest, dest);
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break;
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default:
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goto nomove;
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}
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}
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else if (src->is_stacked && !dest->is_stacked)
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{
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switch (type)
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{
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case burm_int_ATTR:
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hop_add_insel(hop, "lwz %H, %S(fp) ! %H", dest, src, src);
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break;
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case burm_float_ATTR:
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hop_add_insel(hop, "lfs %H, %S(fp) ! %H", dest, src, src);
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break;
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case burm_double_ATTR:
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hop_add_insel(hop, "lfd %H, %S(fp) ! %H", dest, src, src);
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break;
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default:
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goto nomove;
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}
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}
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else if (!src->is_stacked && !dest->is_stacked)
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{
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switch (type)
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{
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case burm_int_ATTR:
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hop_add_insel(hop, "mr %H, %H", dest, src);
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break;
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case burm_long_ATTR:
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hop_add_insel(hop, "mr %0H, %0H", dest, src);
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hop_add_insel(hop, "mr %1H, %1H", dest, src);
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break;
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case burm_float_ATTR:
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case burm_double_ATTR:
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hop_add_insel(hop, "fmr %H, %H", dest, src);
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break;
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default:
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goto nomove;
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}
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}
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else
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goto nomove;
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}
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return hop;
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nomove:
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fatal("cannot move %s to %s", src->id, dest->id);
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}
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struct hop* platform_swap(struct basicblock* bb, struct hreg* src, struct hreg* dest)
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{
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struct hop* hop = new_hop(bb, NULL);
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assert(!src->is_stacked);
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assert(!dest->is_stacked);
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assert((src->attrs & TYPE_ATTRS) == (dest->attrs & TYPE_ATTRS));
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switch (src->attrs & TYPE_ATTRS)
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{
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case burm_int_ATTR:
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hop_add_insel(hop, "mr r0, %H", src);
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hop_add_insel(hop, "mr %H, %H", src, dest);
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hop_add_insel(hop, "mr %H, r0", dest);
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break;
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case burm_long_ATTR:
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hop_add_insel(hop, "mr r0, %0H", src);
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hop_add_insel(hop, "mr %0H, %0H", src, dest);
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hop_add_insel(hop, "mr %0H, r0", dest);
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hop_add_insel(hop, "mr r0, %1H", src);
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hop_add_insel(hop, "mr %1H, %1H", src, dest);
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hop_add_insel(hop, "mr %1H, r0", dest);
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break;
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case burm_float_ATTR:
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case burm_double_ATTR:
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hop_add_insel(hop, "fmr f0, %H", src);
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hop_add_insel(hop, "fmr %H, %H", src, dest);
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hop_add_insel(hop, "fmr %H, f0", dest);
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break;
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}
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return hop;
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}
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const char* platform_label(const char* label)
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{
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/* Labels starting with . are internal, not exported, and don't need mangling. */
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if (label[0] == '.')
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return label;
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/* Otherwise, mangle. */
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return aprintf("_%s", label);
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}
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/* vim: set sw=4 ts=4 expandtab : */
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