#include <stdbool.h>
#include <stddef.h>
+#define LIGHTNING_UNALIGNED_32BIT 4
+
typedef void (*lightrec_rec_func_t)(struct lightrec_cstate *, const struct block *, u16);
/* Forward declarations */
static void rec_REGIMM(struct lightrec_cstate *state, const struct block *block, u16 offset);
static void rec_CP0(struct lightrec_cstate *state, const struct block *block, u16 offset);
static void rec_CP2(struct lightrec_cstate *state, const struct block *block, u16 offset);
+static void rec_META(struct lightrec_cstate *state, const struct block *block, u16 offset);
+static void rec_cp2_do_mtc2(struct lightrec_cstate *state,
+ const struct block *block, u16 offset, u8 reg, u8 in_reg);
+static void rec_cp2_do_mfc2(struct lightrec_cstate *state,
+ const struct block *block, u16 offset,
+ u8 reg, u8 out_reg);
-static void unknown_opcode(struct lightrec_cstate *state, const struct block *block, u16 offset)
+static void
+lightrec_jump_to_fn(jit_state_t *_jit, void (*fn)(void))
{
- pr_warn("Unknown opcode: 0x%08x at PC 0x%08x\n",
- block->opcode_list[offset].c.opcode,
- block->pc + (offset << 2));
+ /* Prevent jit_jmpi() from using our cycles register as a temporary */
+ jit_live(LIGHTREC_REG_CYCLE);
+
+ jit_patch_abs(jit_jmpi(), fn);
}
static void
lightrec_jump_to_eob(struct lightrec_cstate *state, jit_state_t *_jit)
{
- /* Prevent jit_jmpi() from using our cycles register as a temporary */
- jit_live(LIGHTREC_REG_CYCLE);
+ lightrec_jump_to_fn(_jit, state->state->eob_wrapper_func);
+}
+
+static void
+lightrec_jump_to_ds_check(struct lightrec_cstate *state, jit_state_t *_jit)
+{
+ lightrec_jump_to_fn(_jit, state->state->ds_check_func);
+}
+
+static void update_ra_register(struct regcache *reg_cache, jit_state_t *_jit,
+ u8 ra_reg, u32 pc, u32 link)
+{
+ u8 link_reg;
- jit_patch_abs(jit_jmpi(), state->state->eob_wrapper_func);
+ link_reg = lightrec_alloc_reg_out(reg_cache, _jit, ra_reg, 0);
+ lightrec_load_imm(reg_cache, _jit, link_reg, pc, link);
+ lightrec_free_reg(reg_cache, link_reg);
}
static void lightrec_emit_end_of_block(struct lightrec_cstate *state,
struct regcache *reg_cache = state->reg_cache;
jit_state_t *_jit = block->_jit;
const struct opcode *op = &block->opcode_list[offset],
- *next = &block->opcode_list[offset + 1];
- u32 cycles = state->cycles + lightrec_cycles_of_opcode(op->c);
+ *ds = get_delay_slot(block->opcode_list, offset);
+ u32 cycles = state->cycles + lightrec_cycles_of_opcode(state->state, op->c);
+ bool has_ds = has_delay_slot(op->c);
jit_note(__FILE__, __LINE__);
- if (link) {
- /* Update the $ra register */
- u8 link_reg = lightrec_alloc_reg_out(reg_cache, _jit, ra_reg, 0);
- jit_movi(link_reg, link);
- lightrec_free_reg(reg_cache, link_reg);
- }
+ if (link && ra_reg != reg_new_pc)
+ update_ra_register(reg_cache, _jit, ra_reg, block->pc, link);
- if (reg_new_pc < 0) {
- reg_new_pc = lightrec_alloc_reg(reg_cache, _jit, JIT_V0);
- lightrec_lock_reg(reg_cache, _jit, reg_new_pc);
+ if (reg_new_pc < 0)
+ lightrec_load_next_pc_imm(reg_cache, _jit, block->pc, imm);
+ else
+ lightrec_load_next_pc(reg_cache, _jit, reg_new_pc);
- jit_movi(reg_new_pc, imm);
+ if (link && ra_reg == reg_new_pc) {
+ /* Handle the special case: JALR $r0, $r0
+ * In that case the target PC should be the old value of the
+ * register. */
+ update_ra_register(reg_cache, _jit, ra_reg, block->pc, link);
}
- if (has_delay_slot(op->c) &&
- !op_flag_no_ds(op->flags) && !op_flag_local_branch(op->flags)) {
- cycles += lightrec_cycles_of_opcode(next->c);
+ if (has_ds && !op_flag_no_ds(op->flags) && !op_flag_local_branch(op->flags)) {
+ cycles += lightrec_cycles_of_opcode(state->state, ds->c);
/* Recompile the delay slot */
- if (next->c.opcode)
+ if (ds->c.opcode)
lightrec_rec_opcode(state, block, offset + 1);
}
/* Clean the remaining registers */
lightrec_clean_regs(reg_cache, _jit);
- jit_movr(JIT_V0, reg_new_pc);
-
if (cycles && update_cycles) {
jit_subi(LIGHTREC_REG_CYCLE, LIGHTREC_REG_CYCLE, cycles);
pr_debug("EOB: %u cycles\n", cycles);
}
- lightrec_jump_to_eob(state, _jit);
+ if (has_ds && op_flag_load_delay(ds->flags)
+ && opcode_is_load(ds->c) && !state->no_load_delay) {
+ /* If the delay slot is a load opcode, its target register
+ * will be written after the first opcode of the target is
+ * executed. Handle this by jumping to a special section of
+ * the dispatcher. It expects the loaded value to be in
+ * REG_TEMP, and the target register number to be in JIT_V1.*/
+ jit_movi(JIT_V1, ds->c.i.rt);
+
+ lightrec_jump_to_ds_check(state, _jit);
+ } else {
+ lightrec_jump_to_eob(state, _jit);
+ }
+
+ lightrec_regcache_reset(reg_cache);
}
-void lightrec_emit_eob(struct lightrec_cstate *state,
- const struct block *block, u16 offset)
+void lightrec_emit_jump_to_interpreter(struct lightrec_cstate *state,
+ const struct block *block, u16 offset)
{
struct regcache *reg_cache = state->reg_cache;
jit_state_t *_jit = block->_jit;
lightrec_clean_regs(reg_cache, _jit);
- jit_movi(JIT_V0, block->pc + (offset << 2));
- jit_subi(LIGHTREC_REG_CYCLE, LIGHTREC_REG_CYCLE, state->cycles);
+ /* Call the interpreter with the block's address in JIT_V1 and the
+ * PC (which might have an offset) in JIT_V0. */
+ lightrec_load_imm(reg_cache, _jit, JIT_V0, block->pc,
+ block->pc + (offset << 2));
+ if (lightrec_store_next_pc()) {
+ jit_stxi_i(offsetof(struct lightrec_state, next_pc),
+ LIGHTREC_REG_STATE, JIT_V0);
+ }
- lightrec_jump_to_eob(state, _jit);
+ jit_movi(JIT_V1, (uintptr_t)block);
+
+ jit_subi(LIGHTREC_REG_CYCLE, LIGHTREC_REG_CYCLE, state->cycles);
+ lightrec_jump_to_fn(_jit, state->state->interpreter_func);
}
-static u8 get_jr_jalr_reg(struct lightrec_cstate *state, const struct block *block, u16 offset)
+static void lightrec_emit_eob(struct lightrec_cstate *state,
+ const struct block *block, u16 offset)
{
struct regcache *reg_cache = state->reg_cache;
jit_state_t *_jit = block->_jit;
- const struct opcode *op = &block->opcode_list[offset];
- u8 rs;
- rs = lightrec_request_reg_in(reg_cache, _jit, op->r.rs, JIT_V0);
- lightrec_lock_reg(reg_cache, _jit, rs);
+ lightrec_clean_regs(reg_cache, _jit);
+
+ lightrec_load_imm(reg_cache, _jit, JIT_V0, block->pc,
+ block->pc + (offset << 2));
+ if (lightrec_store_next_pc()) {
+ jit_stxi_i(offsetof(struct lightrec_state, next_pc),
+ LIGHTREC_REG_STATE, JIT_V0);
+ }
+
+ jit_subi(LIGHTREC_REG_CYCLE, LIGHTREC_REG_CYCLE, state->cycles);
- return rs;
+ lightrec_jump_to_eob(state, _jit);
}
static void rec_special_JR(struct lightrec_cstate *state, const struct block *block, u16 offset)
{
- u8 rs = get_jr_jalr_reg(state, block, offset);
+ union code c = block->opcode_list[offset].c;
_jit_name(block->_jit, __func__);
- lightrec_emit_end_of_block(state, block, offset, rs, 0, 31, 0, true);
+ lightrec_emit_end_of_block(state, block, offset, c.r.rs, 0, 31, 0, true);
}
static void rec_special_JALR(struct lightrec_cstate *state, const struct block *block, u16 offset)
{
- u8 rs = get_jr_jalr_reg(state, block, offset);
union code c = block->opcode_list[offset].c;
_jit_name(block->_jit, __func__);
- lightrec_emit_end_of_block(state, block, offset, rs, 0, c.r.rd,
+ lightrec_emit_end_of_block(state, block, offset, c.r.rs, 0, c.r.rd,
get_branch_pc(block, offset, 2), true);
}
jit_state_t *_jit = block->_jit;
struct lightrec_branch *branch;
const struct opcode *op = &block->opcode_list[offset],
- *next = &block->opcode_list[offset + 1];
+ *ds = get_delay_slot(block->opcode_list, offset);
jit_node_t *addr;
- u8 link_reg, rs, rt;
- bool is_forward = (s16)op->i.imm >= -1;
- int op_cycles = lightrec_cycles_of_opcode(op->c);
+ bool is_forward = (s16)op->i.imm >= 0;
+ int op_cycles = lightrec_cycles_of_opcode(state->state, op->c);
u32 target_offset, cycles = state->cycles + op_cycles;
bool no_indirection = false;
u32 next_pc;
+ u8 rs, rt;
jit_note(__FILE__, __LINE__);
if (!op_flag_no_ds(op->flags))
- cycles += lightrec_cycles_of_opcode(next->c);
+ cycles += lightrec_cycles_of_opcode(state->state, ds->c);
state->cycles = -op_cycles;
lightrec_do_early_unload(state, block, offset);
if (op_flag_local_branch(op->flags) &&
- (op_flag_no_ds(op->flags) || !next->opcode) &&
+ (op_flag_no_ds(op->flags) || !ds->opcode) &&
is_forward && !lightrec_has_dirty_regs(reg_cache))
no_indirection = true;
if (op_flag_local_branch(op->flags)) {
/* Recompile the delay slot */
- if (!op_flag_no_ds(op->flags) && next->opcode)
+ if (!op_flag_no_ds(op->flags) && ds->opcode) {
+ /* Never handle load delays with local branches. */
+ state->no_load_delay = true;
lightrec_rec_opcode(state, block, offset + 1);
-
- if (link) {
- /* Update the $ra register */
- link_reg = lightrec_alloc_reg_out(reg_cache, _jit, 31, 0);
- jit_movi(link_reg, link);
- lightrec_free_reg(reg_cache, link_reg);
}
+ if (link)
+ update_ra_register(reg_cache, _jit, 31, block->pc, link);
+
/* Clean remaining registers */
lightrec_clean_regs(reg_cache, _jit);
if (!op_flag_local_branch(op->flags) || !is_forward) {
next_pc = get_branch_pc(block, offset, 1 + (s16)op->i.imm);
+ state->no_load_delay = op_flag_local_branch(op->flags);
lightrec_emit_end_of_block(state, block, offset, -1, next_pc,
31, link, false);
}
lightrec_regcache_leave_branch(reg_cache, regs_backup);
- if (bz && link) {
- /* Update the $ra register */
- link_reg = lightrec_alloc_reg_out(reg_cache, _jit,
- 31, REG_EXT);
- jit_movi(link_reg, (s32)link);
- lightrec_free_reg(reg_cache, link_reg);
- }
+ if (bz && link)
+ update_ra_register(reg_cache, _jit, 31, block->pc, link);
- if (!op_flag_no_ds(op->flags) && next->opcode)
+ if (!op_flag_no_ds(op->flags) && ds->opcode) {
+ state->no_load_delay = true;
lightrec_rec_opcode(state, block, offset + 1);
+ }
}
}
!op->i.rs, true);
}
+static void rec_alloc_rs_rd(struct regcache *reg_cache,
+ jit_state_t *_jit,
+ const struct opcode *op,
+ u8 rs, u8 rd,
+ u8 in_flags, u8 out_flags,
+ u8 *rs_out, u8 *rd_out)
+{
+ bool unload, discard;
+ u32 unload_flags;
+
+ if (OPT_EARLY_UNLOAD) {
+ unload_flags = LIGHTREC_FLAGS_GET_RS(op->flags);
+ unload = unload_flags == LIGHTREC_REG_UNLOAD;
+ discard = unload_flags == LIGHTREC_REG_DISCARD;
+ }
+
+ if (OPT_EARLY_UNLOAD && rs && rd != rs && (unload || discard)) {
+ rs = lightrec_alloc_reg_in(reg_cache, _jit, rs, in_flags);
+ lightrec_remap_reg(reg_cache, _jit, rs, rd, discard);
+ lightrec_set_reg_out_flags(reg_cache, rs, out_flags);
+ rd = rs;
+ } else {
+ rs = lightrec_alloc_reg_in(reg_cache, _jit, rs, in_flags);
+ rd = lightrec_alloc_reg_out(reg_cache, _jit, rd, out_flags);
+ }
+
+ *rs_out = rs;
+ *rd_out = rd;
+}
+
static void rec_alu_imm(struct lightrec_cstate *state, const struct block *block,
u16 offset, jit_code_t code, bool slti)
{
out_flags |= REG_ZEXT;
jit_note(__FILE__, __LINE__);
- rs = lightrec_alloc_reg_in(reg_cache, _jit, c.i.rs, REG_EXT);
- rt = lightrec_alloc_reg_out(reg_cache, _jit, c.i.rt, out_flags);
+
+ rec_alloc_rs_rd(reg_cache, _jit, &block->opcode_list[offset],
+ c.i.rs, c.i.rt, REG_EXT, out_flags, &rs, &rt);
jit_new_node_www(code, rt, rs, (s32)(s16) c.i.imm);
u8 rd, rt, rs;
jit_note(__FILE__, __LINE__);
- rs = lightrec_alloc_reg_in(reg_cache, _jit, c.r.rs, REG_EXT);
+
rt = lightrec_alloc_reg_in(reg_cache, _jit, c.r.rt, REG_EXT);
- rd = lightrec_alloc_reg_out(reg_cache, _jit, c.r.rd,
- out_ext ? REG_EXT | REG_ZEXT : 0);
+ rec_alloc_rs_rd(reg_cache, _jit, &block->opcode_list[offset],
+ c.r.rs, c.r.rd, REG_EXT,
+ out_ext ? REG_EXT | REG_ZEXT : 0, &rs, &rd);
jit_new_node_www(code, rd, rs, rt);
u8 rd, rt, rs, temp, flags = 0;
jit_note(__FILE__, __LINE__);
- rs = lightrec_alloc_reg_in(reg_cache, _jit, c.r.rs, 0);
if (code == jit_code_rshr)
flags = REG_EXT;
else if (code == jit_code_rshr_u)
flags = REG_ZEXT;
- rt = lightrec_alloc_reg_in(reg_cache, _jit, c.r.rt, flags);
- rd = lightrec_alloc_reg_out(reg_cache, _jit, c.r.rd, flags);
+ rs = lightrec_alloc_reg_in(reg_cache, _jit, c.r.rs, 0);
+ rec_alloc_rs_rd(reg_cache, _jit, &block->opcode_list[offset],
+ c.r.rt, c.r.rd, flags, flags, &rt, &rd);
- if (rs != rd && rt != rd) {
+ if (rt != rd) {
jit_andi(rd, rs, 0x1f);
jit_new_node_www(code, rd, rt, rd);
} else {
union code c = block->opcode_list[offset].c;
jit_state_t *_jit = block->_jit;
u16 flags = REG_EXT;
+ s32 value = (s32)(s16) c.i.imm;
u8 rt;
- if (!(c.i.imm & 0x8000))
+ if (block->opcode_list[offset].flags & LIGHTREC_MOVI)
+ value += (s32)((u32)state->movi_temp[c.i.rt] << 16);
+
+ if (value >= 0)
flags |= REG_ZEXT;
rt = lightrec_alloc_reg_out(reg_cache, _jit, c.i.rt, flags);
- jit_movi(rt, (s32)(s16) c.i.imm);
+ jit_movi(rt, value);
lightrec_free_reg(reg_cache, rt);
}
static void rec_ADDIU(struct lightrec_cstate *state,
const struct block *block, u16 offset)
{
+ const struct opcode *op = &block->opcode_list[offset];
+
_jit_name(block->_jit, __func__);
- if (block->opcode_list[offset].c.i.rs)
+ if (op->i.rs && !(op->flags & LIGHTREC_MOVI))
rec_alu_imm(state, block, offset, jit_code_addi, false);
else
rec_movi(state, block, offset);
_jit_name(block->_jit, __func__);
jit_note(__FILE__, __LINE__);
- rs = lightrec_alloc_reg_in(reg_cache, _jit, c.i.rs, 0);
- rt = lightrec_alloc_reg_out(reg_cache, _jit, c.i.rt,
- REG_EXT | REG_ZEXT);
+
+ rec_alloc_rs_rd(reg_cache, _jit, &block->opcode_list[offset],
+ c.i.rs, c.i.rt, 0, REG_EXT | REG_ZEXT, &rs, &rt);
/* PSX code uses ANDI 0xff / ANDI 0xffff a lot, which are basically
* casts to uint8_t / uint16_t. */
u8 rs, rt, flags;
jit_note(__FILE__, __LINE__);
- rs = lightrec_alloc_reg_in(reg_cache, _jit, c.i.rs, 0);
- rt = lightrec_alloc_reg_out(reg_cache, _jit, c.i.rt, 0);
+
+ rec_alloc_rs_rd(reg_cache, _jit, &block->opcode_list[offset],
+ c.i.rs, c.i.rt, 0, 0, &rs, &rt);
flags = lightrec_get_reg_in_flags(reg_cache, rs);
lightrec_set_reg_out_flags(reg_cache, rt, flags);
static void rec_ORI(struct lightrec_cstate *state,
const struct block *block, u16 offset)
{
- _jit_name(block->_jit, __func__);
- rec_alu_or_xor(state, block, offset, jit_code_ori);
+ const struct opcode *op = &block->opcode_list[offset];
+ struct regcache *reg_cache = state->reg_cache;
+ jit_state_t *_jit = block->_jit;
+ s32 val;
+ u8 rt;
+
+ _jit_name(_jit, __func__);
+
+ if (op->flags & LIGHTREC_MOVI) {
+ rt = lightrec_alloc_reg_out(reg_cache, _jit, op->i.rt, REG_EXT);
+
+ val = ((u32)state->movi_temp[op->i.rt] << 16) | op->i.imm;
+ jit_movi(rt, val);
+
+ lightrec_free_reg(reg_cache, rt);
+ } else {
+ rec_alu_or_xor(state, block, offset, jit_code_ori);
+ }
}
static void rec_XORI(struct lightrec_cstate *state,
jit_state_t *_jit = block->_jit;
u8 rt, flags = REG_EXT;
+ if (block->opcode_list[offset].flags & LIGHTREC_MOVI) {
+ state->movi_temp[c.i.rt] = c.i.imm;
+ return;
+ }
+
jit_name(__func__);
jit_note(__FILE__, __LINE__);
_jit_name(block->_jit, __func__);
jit_note(__FILE__, __LINE__);
- rs = lightrec_alloc_reg_in(reg_cache, _jit, c.r.rs, 0);
+
rt = lightrec_alloc_reg_in(reg_cache, _jit, c.r.rt, 0);
- rd = lightrec_alloc_reg_out(reg_cache, _jit, c.r.rd, 0);
+ rec_alloc_rs_rd(reg_cache, _jit, &block->opcode_list[offset],
+ c.r.rs, c.r.rd, 0, 0, &rs, &rd);
flags_rs = lightrec_get_reg_in_flags(reg_cache, rs);
flags_rt = lightrec_get_reg_in_flags(reg_cache, rt);
u8 rd, rt, rs, flags_rs, flags_rt, flags_rd = 0;
jit_note(__FILE__, __LINE__);
- rs = lightrec_alloc_reg_in(reg_cache, _jit, c.r.rs, 0);
+
rt = lightrec_alloc_reg_in(reg_cache, _jit, c.r.rt, 0);
- rd = lightrec_alloc_reg_out(reg_cache, _jit, c.r.rd, 0);
+ rec_alloc_rs_rd(reg_cache, _jit, &block->opcode_list[offset],
+ c.r.rs, c.r.rd, 0, 0, &rs, &rd);
flags_rs = lightrec_get_reg_in_flags(reg_cache, rs);
flags_rt = lightrec_get_reg_in_flags(reg_cache, rt);
_jit_name(block->_jit, __func__);
jit_note(__FILE__, __LINE__);
- rs = lightrec_alloc_reg_in(reg_cache, _jit, c.r.rs, 0);
+
rt = lightrec_alloc_reg_in(reg_cache, _jit, c.r.rt, 0);
- rd = lightrec_alloc_reg_out(reg_cache, _jit, c.r.rd, 0);
+ rec_alloc_rs_rd(reg_cache, _jit, &block->opcode_list[offset],
+ c.r.rs, c.r.rd, 0, 0, &rs, &rd);
flags_rs = lightrec_get_reg_in_flags(reg_cache, rs);
flags_rt = lightrec_get_reg_in_flags(reg_cache, rt);
struct regcache *reg_cache = state->reg_cache;
union code c = block->opcode_list[offset].c;
jit_state_t *_jit = block->_jit;
- u8 rd, rt, flags = 0;
+ u8 rd, rt, flags = 0, out_flags = 0;
jit_note(__FILE__, __LINE__);
else if (code == jit_code_rshi_u)
flags = REG_ZEXT;
- rt = lightrec_alloc_reg_in(reg_cache, _jit, c.r.rt, flags);
-
/* Input reg is zero-extended, if we SRL at least by one bit, we know
* the output reg will be both zero-extended and sign-extended. */
+ out_flags = flags;
if (code == jit_code_rshi_u && c.r.imm)
- flags |= REG_EXT;
- rd = lightrec_alloc_reg_out(reg_cache, _jit, c.r.rd, flags);
+ out_flags |= REG_EXT;
+
+ rec_alloc_rs_rd(reg_cache, _jit, &block->opcode_list[offset],
+ c.r.rt, c.r.rd, flags, out_flags, &rt, &rd);
jit_new_node_www(code, rd, rt, c.r.imm);
u8 reg_hi = get_mult_div_hi(c);
jit_state_t *_jit = block->_jit;
u8 lo, hi, rs, rt, rflags = 0;
+ bool no_lo = op_flag_no_lo(flags);
+ bool no_hi = op_flag_no_hi(flags);
jit_note(__FILE__, __LINE__);
rs = lightrec_alloc_reg_in(reg_cache, _jit, c.r.rs, rflags);
rt = lightrec_alloc_reg_in(reg_cache, _jit, c.r.rt, rflags);
- if (!op_flag_no_lo(flags))
+ if (!no_lo)
lo = lightrec_alloc_reg_out(reg_cache, _jit, reg_lo, 0);
- else if (__WORDSIZE == 32)
- lo = lightrec_alloc_reg_temp(reg_cache, _jit);
- if (!op_flag_no_hi(flags))
+ if (!no_hi)
hi = lightrec_alloc_reg_out(reg_cache, _jit, reg_hi, REG_EXT);
if (__WORDSIZE == 32) {
/* On 32-bit systems, do a 32*32->64 bit operation, or a 32*32->32 bit
* operation if the MULT was detected a 32-bit only. */
- if (!op_flag_no_hi(flags)) {
+ if (no_lo) {
if (is_signed)
- jit_qmulr(lo, hi, rs, rt);
+ jit_hmulr(hi, rs, rt);
else
- jit_qmulr_u(lo, hi, rs, rt);
- } else {
+ jit_hmulr_u(hi, rs, rt);
+ } else if (no_hi) {
jit_mulr(lo, rs, rt);
+ } else if (is_signed) {
+ jit_qmulr(lo, hi, rs, rt);
+ } else {
+ jit_qmulr_u(lo, hi, rs, rt);
}
} else {
/* On 64-bit systems, do a 64*64->64 bit operation. */
- if (op_flag_no_lo(flags)) {
+ if (no_lo) {
jit_mulr(hi, rs, rt);
jit_rshi(hi, hi, 32);
} else {
jit_mulr(lo, rs, rt);
/* The 64-bit output value is in $lo, store the upper 32 bits in $hi */
- if (!op_flag_no_hi(flags))
+ if (!no_hi)
jit_rshi(hi, lo, 32);
}
}
lightrec_free_reg(reg_cache, rs);
lightrec_free_reg(reg_cache, rt);
- if (!op_flag_no_lo(flags) || __WORDSIZE == 32)
+ if (!no_lo)
lightrec_free_reg(reg_cache, lo);
- if (!op_flag_no_hi(flags))
+ if (!no_hi)
lightrec_free_reg(reg_cache, hi);
}
if (!op_flag_no_lo(flags)) {
if (is_signed) {
- jit_lti(lo, rs, 0);
+ jit_ltr(lo, rs, rt);
jit_lshi(lo, lo, 1);
jit_subi(lo, lo, 1);
} else {
- jit_movi(lo, 0xffffffff);
+ jit_subi(lo, rt, 1);
}
}
}
static void rec_alu_mv_lo_hi(struct lightrec_cstate *state,
- const struct block *block, u8 dst, u8 src)
+ const struct block *block, u16 offset,
+ u8 dst, u8 src)
{
struct regcache *reg_cache = state->reg_cache;
jit_state_t *_jit = block->_jit;
jit_note(__FILE__, __LINE__);
- src = lightrec_alloc_reg_in(reg_cache, _jit, src, 0);
- dst = lightrec_alloc_reg_out(reg_cache, _jit, dst, REG_EXT);
+
+ rec_alloc_rs_rd(reg_cache, _jit, &block->opcode_list[offset],
+ src, dst, 0, REG_EXT, &src, &dst);
jit_extr_i(dst, src);
union code c = block->opcode_list[offset].c;
_jit_name(block->_jit, __func__);
- rec_alu_mv_lo_hi(state, block, c.r.rd, REG_HI);
+ rec_alu_mv_lo_hi(state, block, offset, c.r.rd, REG_HI);
}
static void rec_special_MTHI(struct lightrec_cstate *state,
union code c = block->opcode_list[offset].c;
_jit_name(block->_jit, __func__);
- rec_alu_mv_lo_hi(state, block, REG_HI, c.r.rs);
+ rec_alu_mv_lo_hi(state, block, offset, REG_HI, c.r.rs);
}
static void rec_special_MFLO(struct lightrec_cstate *state,
union code c = block->opcode_list[offset].c;
_jit_name(block->_jit, __func__);
- rec_alu_mv_lo_hi(state, block, c.r.rd, REG_LO);
+ rec_alu_mv_lo_hi(state, block, offset, c.r.rd, REG_LO);
}
static void rec_special_MTLO(struct lightrec_cstate *state,
union code c = block->opcode_list[offset].c;
_jit_name(block->_jit, __func__);
- rec_alu_mv_lo_hi(state, block, REG_LO, c.r.rs);
+ rec_alu_mv_lo_hi(state, block, offset, REG_LO, c.r.rs);
}
static void call_to_c_wrapper(struct lightrec_cstate *state,
u32 flags = block->opcode_list[offset].flags;
bool is_tagged = LIGHTREC_FLAGS_GET_IO_MODE(flags);
u32 lut_entry;
+ u8 zero;
jit_note(__FILE__, __LINE__);
else if (load_rt)
lightrec_clean_reg_if_loaded(reg_cache, _jit, c.i.rt, false);
+ if (op_flag_load_delay(flags) && !state->no_load_delay) {
+ /* Clear state->in_delay_slot_n. This notifies the lightrec_rw
+ * wrapper that it should write the REG_TEMP register instead of
+ * the actual output register of the opcode. */
+ zero = lightrec_alloc_reg_in(reg_cache, _jit, 0, 0);
+ jit_stxi_c(offsetof(struct lightrec_state, in_delay_slot_n),
+ LIGHTREC_REG_STATE, zero);
+ lightrec_free_reg(reg_cache, zero);
+ }
+
if (is_tagged) {
call_to_c_wrapper(state, block, c.opcode, C_WRAPPER_RW);
} else {
}
}
-static u32 rec_ram_mask(struct lightrec_state *state)
+static u32 rec_ram_mask(const struct lightrec_state *state)
{
return (RAM_SIZE << (state->mirrors_mapped * 2)) - 1;
}
{
u32 length = state->maps[PSX_MAP_HW_REGISTERS].length;
- return GENMASK(31 - clz32(length - 1), 0);
+ return 0x1f800000 | GENMASK(31 - clz32(length - 1), 0);
}
static void rec_store_memory(struct lightrec_cstate *cstate,
struct opcode *op = &block->opcode_list[offset];
jit_state_t *_jit = block->_jit;
union code c = op->c;
- u8 rs, rt, tmp, tmp2, tmp3, addr_reg, addr_reg2;
+ u8 rs, rt, tmp = 0, tmp2 = 0, tmp3, addr_reg, addr_reg2;
s16 imm = (s16)c.i.imm;
s32 simm = (s32)imm << (1 - lut_is_32bit(state));
s32 lut_offt = offsetof(struct lightrec_state, code_lut);
bool no_mask = op_flag_no_mask(op->flags);
bool add_imm = c.i.imm &&
- ((!state->mirrors_mapped && !no_mask) || (invalidate &&
+ (c.i.op == OP_META_SWU
+ || (!state->mirrors_mapped && !no_mask) || (invalidate &&
((imm & 0x3) || simm + lut_offt != (s16)(simm + lut_offt))));
- bool need_tmp = !no_mask || addr_offset || add_imm || invalidate;
+ bool need_tmp = !no_mask || add_imm || invalidate;
+ bool swc2 = c.i.op == OP_SWC2;
+ u8 in_reg = swc2 ? REG_TEMP : c.i.rt;
+ s8 reg_imm;
- rt = lightrec_alloc_reg_in(reg_cache, _jit, c.i.rt, 0);
rs = lightrec_alloc_reg_in(reg_cache, _jit, c.i.rs, 0);
if (need_tmp)
tmp = lightrec_alloc_reg_temp(reg_cache, _jit);
if (add_imm) {
jit_addi(tmp, addr_reg, (s16)c.i.imm);
+ lightrec_free_reg(reg_cache, rs);
addr_reg = tmp;
imm = 0;
} else if (simm) {
}
if (!no_mask) {
- jit_andi(tmp, addr_reg, addr_mask);
+ reg_imm = lightrec_alloc_reg_temp_with_value(reg_cache, _jit,
+ addr_mask);
+
+ jit_andr(tmp, addr_reg, reg_imm);
addr_reg = tmp;
+
+ lightrec_free_reg(reg_cache, reg_imm);
}
if (addr_offset) {
+ reg_imm = lightrec_alloc_reg_temp_with_value(reg_cache, _jit,
+ addr_offset);
tmp2 = lightrec_alloc_reg_temp(reg_cache, _jit);
- jit_addi(tmp2, addr_reg, addr_offset);
+ jit_addr(tmp2, addr_reg, reg_imm);
addr_reg2 = tmp2;
+
+ lightrec_free_reg(reg_cache, reg_imm);
} else {
addr_reg2 = addr_reg;
}
- if (is_big_endian() && swap_code && c.i.rt) {
+ rt = lightrec_alloc_reg_in(reg_cache, _jit, in_reg, 0);
+
+ if (is_big_endian() && swap_code && in_reg) {
tmp3 = lightrec_alloc_reg_temp(reg_cache, _jit);
jit_new_node_ww(swap_code, tmp3, rt);
- jit_new_node_www(code, imm, addr_reg2, tmp3);
+
+ if (c.i.op == OP_META_SWU)
+ jit_unstr(addr_reg2, tmp3, LIGHTNING_UNALIGNED_32BIT);
+ else
+ jit_new_node_www(code, imm, addr_reg2, tmp3);
lightrec_free_reg(reg_cache, tmp3);
+ } else if (c.i.op == OP_META_SWU) {
+ jit_unstr(addr_reg2, rt, LIGHTNING_UNALIGNED_32BIT);
} else {
jit_new_node_www(code, imm, addr_reg2, rt);
}
if (addr_reg == rs && c.i.rs == 0) {
addr_reg = LIGHTREC_REG_STATE;
} else {
- jit_addr(tmp, addr_reg, LIGHTREC_REG_STATE);
+ jit_add_state(tmp, addr_reg);
addr_reg = tmp;
}
u16 offset, jit_code_t code,
jit_code_t swap_code, bool invalidate)
{
- struct lightrec_state *state = cstate->state;
+ const struct lightrec_state *state = cstate->state;
_jit_note(block->_jit, __FILE__, __LINE__);
u16 offset, jit_code_t code,
jit_code_t swap_code)
{
- struct lightrec_state *state = cstate->state;
+ const struct lightrec_state *state = cstate->state;
struct regcache *reg_cache = cstate->reg_cache;
union code c = block->opcode_list[offset].c;
jit_state_t *_jit = block->_jit;
jit_node_t *to_not_ram, *to_end;
- u8 tmp, tmp2, rs, rt;
+ bool swc2 = c.i.op == OP_SWC2;
+ u8 tmp, tmp2 = 0, rs, rt, in_reg = swc2 ? REG_TEMP : c.i.rt;
+ u32 addr_mask;
+ s32 reg_imm;
s16 imm;
jit_note(__FILE__, __LINE__);
rs = lightrec_alloc_reg_in(reg_cache, _jit, c.i.rs, 0);
tmp = lightrec_alloc_reg_temp(reg_cache, _jit);
- if (state->offset_ram || state->offset_scratch)
- tmp2 = lightrec_alloc_reg_temp(reg_cache, _jit);
+ if (state->mirrors_mapped)
+ addr_mask = 0x1f800000 | (4 * RAM_SIZE - 1);
+ else
+ addr_mask = 0x1f800000 | (RAM_SIZE - 1);
+
+ reg_imm = lightrec_alloc_reg_temp_with_value(reg_cache, _jit, addr_mask);
/* Convert to KUNSEG and avoid RAM mirrors */
- if (state->mirrors_mapped) {
- imm = (s16)c.i.imm;
- jit_andi(tmp, rs, 0x1f800000 | (4 * RAM_SIZE - 1));
- } else if (c.i.imm) {
+ if ((c.i.op == OP_META_SWU || !state->mirrors_mapped) && c.i.imm) {
imm = 0;
jit_addi(tmp, rs, (s16)c.i.imm);
- jit_andi(tmp, tmp, 0x1f800000 | (RAM_SIZE - 1));
+ jit_andr(tmp, tmp, reg_imm);
} else {
- imm = 0;
- jit_andi(tmp, rs, 0x1f800000 | (RAM_SIZE - 1));
+ imm = (s16)c.i.imm;
+ jit_andr(tmp, rs, reg_imm);
}
lightrec_free_reg(reg_cache, rs);
+ lightrec_free_reg(reg_cache, reg_imm);
if (state->offset_ram != state->offset_scratch) {
+ tmp2 = lightrec_alloc_reg_temp(reg_cache, _jit);
+
to_not_ram = jit_bmsi(tmp, BIT(28));
jit_movi(tmp2, state->offset_ram);
jit_movi(tmp2, state->offset_scratch);
jit_patch(to_end);
} else if (state->offset_ram) {
- jit_movi(tmp2, state->offset_ram);
+ tmp2 = lightrec_alloc_reg_temp_with_value(reg_cache, _jit,
+ state->offset_ram);
}
if (state->offset_ram || state->offset_scratch) {
lightrec_free_reg(reg_cache, tmp2);
}
- rt = lightrec_alloc_reg_in(reg_cache, _jit, c.i.rt, 0);
+ rt = lightrec_alloc_reg_in(reg_cache, _jit, in_reg, 0);
- if (is_big_endian() && swap_code && c.i.rt) {
+ if (is_big_endian() && swap_code && in_reg) {
tmp2 = lightrec_alloc_reg_temp(reg_cache, _jit);
jit_new_node_ww(swap_code, tmp2, rt);
- jit_new_node_www(code, imm, tmp, tmp2);
+
+ if (c.i.op == OP_META_SWU)
+ jit_unstr(tmp, tmp2, LIGHTNING_UNALIGNED_32BIT);
+ else
+ jit_new_node_www(code, imm, tmp, tmp2);
lightrec_free_reg(reg_cache, tmp2);
+ } else if (c.i.op == OP_META_SWU) {
+ jit_unstr(tmp, rt, LIGHTNING_UNALIGNED_32BIT);
} else {
jit_new_node_www(code, imm, tmp, rt);
}
static void rec_store_direct(struct lightrec_cstate *cstate, const struct block *block,
u16 offset, jit_code_t code, jit_code_t swap_code)
{
- struct lightrec_state *state = cstate->state;
+ const struct lightrec_state *state = cstate->state;
u32 ram_size = state->mirrors_mapped ? RAM_SIZE * 4 : RAM_SIZE;
struct regcache *reg_cache = cstate->reg_cache;
union code c = block->opcode_list[offset].c;
jit_state_t *_jit = block->_jit;
jit_node_t *to_not_ram, *to_end;
- u8 tmp, tmp2, tmp3, rs, rt;
+ bool swc2 = c.i.op == OP_SWC2;
+ u8 tmp, tmp2, tmp3, masked_reg, rs, rt;
+ u8 in_reg = swc2 ? REG_TEMP : c.i.rt;
+ u32 addr_mask = 0x1f800000 | (ram_size - 1);
+ bool different_offsets = state->offset_ram != state->offset_scratch;
+ s32 reg_imm;
jit_note(__FILE__, __LINE__);
tmp2 = lightrec_alloc_reg_temp(reg_cache, _jit);
tmp3 = lightrec_alloc_reg_in(reg_cache, _jit, 0, 0);
+ reg_imm = lightrec_alloc_reg_temp_with_value(reg_cache, _jit, addr_mask);
+
/* Convert to KUNSEG and avoid RAM mirrors */
if (c.i.imm) {
jit_addi(tmp2, rs, (s16)c.i.imm);
- jit_andi(tmp2, tmp2, 0x1f800000 | (ram_size - 1));
+ jit_andr(tmp2, tmp2, reg_imm);
} else {
- jit_andi(tmp2, rs, 0x1f800000 | (ram_size - 1));
+ jit_andr(tmp2, rs, reg_imm);
}
lightrec_free_reg(reg_cache, rs);
+ lightrec_free_reg(reg_cache, reg_imm);
tmp = lightrec_alloc_reg_temp(reg_cache, _jit);
- to_not_ram = jit_bgti(tmp2, ram_size);
+ if (different_offsets) {
+ to_not_ram = jit_bgti(tmp2, ram_size);
+ masked_reg = tmp2;
+ } else {
+ jit_lti_u(tmp, tmp2, ram_size);
+ jit_movnr(tmp, tmp2, tmp);
+ masked_reg = tmp;
+ }
/* Compute the offset to the code LUT */
- jit_andi(tmp, tmp2, (RAM_SIZE - 1) & ~3);
+ if (c.i.op == OP_SW)
+ jit_andi(tmp, masked_reg, RAM_SIZE - 1);
+ else
+ jit_andi(tmp, masked_reg, (RAM_SIZE - 1) & ~3);
+
if (!lut_is_32bit(state))
jit_lshi(tmp, tmp, 1);
- jit_addr(tmp, LIGHTREC_REG_STATE, tmp);
+ jit_add_state(tmp, tmp);
/* Write NULL to the code LUT to invalidate any block that's there */
if (lut_is_32bit(state))
else
jit_stxi(offsetof(struct lightrec_state, code_lut), tmp, tmp3);
- if (state->offset_ram != state->offset_scratch) {
+ if (c.i.op == OP_META_SWU) {
+ /* With a SWU opcode, we might have touched the following 32-bit
+ * word, so invalidate it as well */
+ if (lut_is_32bit(state)) {
+ jit_stxi_i(offsetof(struct lightrec_state, code_lut) + 4,
+ tmp, tmp3);
+ } else {
+ jit_stxi(offsetof(struct lightrec_state, code_lut)
+ + sizeof(uintptr_t), tmp, tmp3);
+ }
+ }
+
+ if (different_offsets) {
jit_movi(tmp, state->offset_ram);
to_end = jit_b();
+ jit_patch(to_not_ram);
}
- jit_patch(to_not_ram);
-
if (state->offset_ram || state->offset_scratch)
jit_movi(tmp, state->offset_scratch);
- if (state->offset_ram != state->offset_scratch)
+ if (different_offsets)
jit_patch(to_end);
if (state->offset_ram || state->offset_scratch)
lightrec_free_reg(reg_cache, tmp);
lightrec_free_reg(reg_cache, tmp3);
- rt = lightrec_alloc_reg_in(reg_cache, _jit, c.i.rt, 0);
+ rt = lightrec_alloc_reg_in(reg_cache, _jit, in_reg, 0);
- if (is_big_endian() && swap_code && c.i.rt) {
+ if (is_big_endian() && swap_code && in_reg) {
tmp = lightrec_alloc_reg_temp(reg_cache, _jit);
jit_new_node_ww(swap_code, tmp, rt);
- jit_new_node_www(code, 0, tmp2, tmp);
+
+ if (c.i.op == OP_META_SWU)
+ jit_unstr(tmp2, tmp, LIGHTNING_UNALIGNED_32BIT);
+ else
+ jit_new_node_www(code, 0, tmp2, tmp);
lightrec_free_reg(reg_cache, tmp);
+ } else if (c.i.op == OP_META_SWU) {
+ jit_unstr(tmp2, rt, LIGHTNING_UNALIGNED_32BIT);
} else {
jit_new_node_www(code, 0, tmp2, rt);
}
jit_code_t code, jit_code_t swap_code)
{
u32 flags = block->opcode_list[offset].flags;
+ u32 mode = LIGHTREC_FLAGS_GET_IO_MODE(flags);
bool no_invalidate = op_flag_no_invalidate(flags) ||
- state->state->invalidate_from_dma_only;
+ (state->state->opt_flags & LIGHTREC_OPT_INV_DMA_ONLY);
+ union code c = block->opcode_list[offset].c;
+ bool is_swc2 = c.i.op == OP_SWC2;
+
+ if (is_swc2) {
+ switch (mode) {
+ case LIGHTREC_IO_RAM:
+ case LIGHTREC_IO_SCRATCH:
+ case LIGHTREC_IO_DIRECT:
+ case LIGHTREC_IO_DIRECT_HW:
+ rec_cp2_do_mfc2(state, block, offset, c.i.rt, REG_TEMP);
+ break;
+ default:
+ break;
+ }
+ }
- switch (LIGHTREC_FLAGS_GET_IO_MODE(flags)) {
+ switch (mode) {
case LIGHTREC_IO_RAM:
rec_store_ram(state, block, offset, code,
swap_code, !no_invalidate);
break;
default:
rec_io(state, block, offset, true, false);
- break;
+ return;
}
+
+ if (is_swc2)
+ lightrec_discard_reg_if_loaded(state->reg_cache, REG_TEMP);
}
static void rec_SB(struct lightrec_cstate *state,
const struct block *block, u16 offset)
{
- _jit_name(block->_jit, __func__);
+ union code c = block->opcode_list[offset].c;
+
+ _jit_name(block->_jit, c.i.op == OP_SWC2 ? "rec_SWC2" : "rec_SW");
rec_store(state, block, offset,
jit_code_stxi_i, jit_code_bswapr_ui);
}
rec_io(state, block, offset, true, false);
}
-static void rec_SWC2(struct lightrec_cstate *state,
- const struct block *block, u16 offset)
-{
- _jit_name(block->_jit, __func__);
- rec_io(state, block, offset, false, false);
-}
-
static void rec_load_memory(struct lightrec_cstate *cstate,
const struct block *block, u16 offset,
jit_code_t code, jit_code_t swap_code, bool is_unsigned,
{
struct regcache *reg_cache = cstate->reg_cache;
struct opcode *op = &block->opcode_list[offset];
+ bool load_delay = op_flag_load_delay(op->flags) && !cstate->no_load_delay;
jit_state_t *_jit = block->_jit;
- u8 rs, rt, addr_reg, flags = REG_EXT;
+ u8 rs, rt, out_reg, addr_reg, flags = REG_EXT;
bool no_mask = op_flag_no_mask(op->flags);
union code c = op->c;
+ s8 reg_imm;
s16 imm;
- if (!c.i.rt)
+ if (load_delay || c.i.op == OP_LWC2)
+ out_reg = REG_TEMP;
+ else if (c.i.rt)
+ out_reg = c.i.rt;
+ else
return;
if (is_unsigned)
flags |= REG_ZEXT;
rs = lightrec_alloc_reg_in(reg_cache, _jit, c.i.rs, 0);
- rt = lightrec_alloc_reg_out(reg_cache, _jit, c.i.rt, flags);
+ rt = lightrec_alloc_reg_out(reg_cache, _jit, out_reg, flags);
- if (!cstate->state->mirrors_mapped && c.i.imm && !no_mask) {
+ if ((op->i.op == OP_META_LWU && c.i.imm)
+ || (!cstate->state->mirrors_mapped && c.i.imm && !no_mask)) {
jit_addi(rt, rs, (s16)c.i.imm);
addr_reg = rt;
imm = 0;
imm = (s16)c.i.imm;
}
+ if (op->i.op == OP_META_LWU)
+ imm = LIGHTNING_UNALIGNED_32BIT;
+
if (!no_mask) {
- jit_andi(rt, addr_reg, addr_mask);
+ reg_imm = lightrec_alloc_reg_temp_with_value(reg_cache, _jit,
+ addr_mask);
+
+ jit_andr(rt, addr_reg, reg_imm);
addr_reg = rt;
+
+ lightrec_free_reg(reg_cache, reg_imm);
}
if (addr_offset) {
- jit_addi(rt, addr_reg, addr_offset);
+ reg_imm = lightrec_alloc_reg_temp_with_value(reg_cache, _jit,
+ addr_offset);
+
+ jit_addr(rt, addr_reg, reg_imm);
addr_reg = rt;
+
+ lightrec_free_reg(reg_cache, reg_imm);
}
jit_new_node_www(code, rt, addr_reg, imm);
jit_code_t code, jit_code_t swap_code,
bool is_unsigned)
{
- struct lightrec_state *state = cstate->state;
+ const struct lightrec_state *state = cstate->state;
struct regcache *reg_cache = cstate->reg_cache;
- union code c = block->opcode_list[offset].c;
+ struct opcode *op = &block->opcode_list[offset];
+ bool load_delay = op_flag_load_delay(op->flags) && !cstate->no_load_delay;
jit_state_t *_jit = block->_jit;
jit_node_t *to_not_ram, *to_not_bios, *to_end, *to_end2;
- u8 tmp, rs, rt, addr_reg, flags = REG_EXT;
+ u8 tmp, rs, rt, out_reg, addr_reg, flags = REG_EXT;
+ bool different_offsets = state->offset_bios != state->offset_scratch;
+ union code c = op->c;
+ s32 addr_mask;
+ u32 reg_imm;
+ s8 offt_reg;
s16 imm;
- if (!c.i.rt)
+ if (load_delay || c.i.op == OP_LWC2)
+ out_reg = REG_TEMP;
+ else if (c.i.rt)
+ out_reg = c.i.rt;
+ else
return;
if (is_unsigned)
jit_note(__FILE__, __LINE__);
rs = lightrec_alloc_reg_in(reg_cache, _jit, c.i.rs, 0);
- rt = lightrec_alloc_reg_out(reg_cache, _jit, c.i.rt, flags);
+ rt = lightrec_alloc_reg_out(reg_cache, _jit, out_reg, flags);
if ((state->offset_ram == state->offset_bios &&
state->offset_ram == state->offset_scratch &&
- state->mirrors_mapped) || !c.i.imm) {
+ state->mirrors_mapped && c.i.op != OP_META_LWU)
+ || !c.i.imm) {
addr_reg = rs;
imm = (s16)c.i.imm;
} else {
lightrec_free_reg(reg_cache, rs);
}
+ if (op->i.op == OP_META_LWU)
+ imm = LIGHTNING_UNALIGNED_32BIT;
+
tmp = lightrec_alloc_reg_temp(reg_cache, _jit);
if (state->offset_ram == state->offset_bios &&
state->offset_ram == state->offset_scratch) {
+ if (!state->mirrors_mapped)
+ addr_mask = 0x1f800000 | (RAM_SIZE - 1);
+ else
+ addr_mask = 0x1fffffff;
+
+ reg_imm = lightrec_alloc_reg_temp_with_value(reg_cache, _jit,
+ addr_mask);
if (!state->mirrors_mapped) {
jit_andi(tmp, addr_reg, BIT(28));
jit_rshi_u(tmp, tmp, 28 - 22);
- jit_ori(tmp, tmp, 0x1f800000 | (RAM_SIZE - 1));
+ jit_orr(tmp, tmp, reg_imm);
jit_andr(rt, addr_reg, tmp);
} else {
- jit_andi(rt, addr_reg, 0x1fffffff);
+ jit_andr(rt, addr_reg, reg_imm);
}
- if (state->offset_ram)
- jit_movi(tmp, state->offset_ram);
+ lightrec_free_reg(reg_cache, reg_imm);
+
+ if (state->offset_ram) {
+ offt_reg = lightrec_get_reg_with_value(reg_cache,
+ state->offset_ram);
+ if (offt_reg < 0) {
+ jit_movi(tmp, state->offset_ram);
+ lightrec_temp_set_value(reg_cache, tmp,
+ state->offset_ram);
+ } else {
+ lightrec_free_reg(reg_cache, tmp);
+ tmp = offt_reg;
+ }
+ }
} else {
to_not_ram = jit_bmsi(addr_reg, BIT(28));
jit_patch(to_not_ram);
- if (state->offset_bios != state->offset_scratch)
+ if (different_offsets)
to_not_bios = jit_bmci(addr_reg, BIT(22));
/* Convert to KUNSEG */
jit_movi(tmp, state->offset_bios);
- if (state->offset_bios != state->offset_scratch) {
+ if (different_offsets) {
to_end2 = jit_b();
jit_patch(to_not_bios);
u16 offset, jit_code_t code, jit_code_t swap_code,
bool is_unsigned)
{
- u32 flags = block->opcode_list[offset].flags;
+ const struct opcode *op = &block->opcode_list[offset];
+ u32 flags = op->flags;
switch (LIGHTREC_FLAGS_GET_IO_MODE(flags)) {
case LIGHTREC_IO_RAM:
break;
default:
rec_io(state, block, offset, false, true);
- break;
+ return;
+ }
+
+ if (op->i.op == OP_LWC2) {
+ rec_cp2_do_mtc2(state, block, offset, op->i.rt, REG_TEMP);
+ lightrec_discard_reg_if_loaded(state->reg_cache, REG_TEMP);
}
}
static void rec_LW(struct lightrec_cstate *state, const struct block *block, u16 offset)
{
+ union code c = block->opcode_list[offset].c;
jit_code_t code;
if (is_big_endian() && __WORDSIZE == 64)
else
code = jit_code_ldxi_i;
- _jit_name(block->_jit, __func__);
+ _jit_name(block->_jit, c.i.op == OP_LWC2 ? "rec_LWC2" : "rec_LW");
rec_load(state, block, offset, code, jit_code_bswapr_ui, false);
}
-static void rec_LWC2(struct lightrec_cstate *state, const struct block *block, u16 offset)
-{
- _jit_name(block->_jit, __func__);
- rec_io(state, block, offset, false, false);
-}
-
-static void rec_break_syscall(struct lightrec_cstate *state,
- const struct block *block, u16 offset,
- u32 exit_code)
+static void rec_exit_early(struct lightrec_cstate *state,
+ const struct block *block, u16 offset,
+ u32 exit_code, u32 pc)
{
struct regcache *reg_cache = state->reg_cache;
jit_state_t *_jit = block->_jit;
jit_stxi_i(offsetof(struct lightrec_state, exit_flags),
LIGHTREC_REG_STATE, tmp);
+ jit_ldxi_i(tmp, LIGHTREC_REG_STATE,
+ offsetof(struct lightrec_state, target_cycle));
+ jit_subr(tmp, tmp, LIGHTREC_REG_CYCLE);
+ jit_movi(LIGHTREC_REG_CYCLE, 0);
+ jit_stxi_i(offsetof(struct lightrec_state, target_cycle),
+ LIGHTREC_REG_STATE, tmp);
+ jit_stxi_i(offsetof(struct lightrec_state, current_cycle),
+ LIGHTREC_REG_STATE, tmp);
+
lightrec_free_reg(reg_cache, tmp);
- /* TODO: the return address should be "pc - 4" if we're a delay slot */
- lightrec_emit_end_of_block(state, block, offset, -1,
- get_ds_pc(block, offset, 0),
- 31, 0, true);
+ lightrec_emit_end_of_block(state, block, offset, -1, pc, 31, 0, true);
}
static void rec_special_SYSCALL(struct lightrec_cstate *state,
const struct block *block, u16 offset)
{
_jit_name(block->_jit, __func__);
- rec_break_syscall(state, block, offset, LIGHTREC_EXIT_SYSCALL);
+
+ /* TODO: the return address should be "pc - 4" if we're a delay slot */
+ rec_exit_early(state, block, offset, LIGHTREC_EXIT_SYSCALL,
+ get_ds_pc(block, offset, 0));
}
static void rec_special_BREAK(struct lightrec_cstate *state,
const struct block *block, u16 offset)
{
_jit_name(block->_jit, __func__);
- rec_break_syscall(state, block, offset, LIGHTREC_EXIT_BREAK);
+ rec_exit_early(state, block, offset, LIGHTREC_EXIT_BREAK,
+ get_ds_pc(block, offset, 0));
}
static void rec_mfc(struct lightrec_cstate *state, const struct block *block, u16 offset)
jit_state_t *_jit = block->_jit;
jit_note(__FILE__, __LINE__);
- lightrec_clean_reg_if_loaded(reg_cache, _jit, c.i.rt, true);
+
+ if (c.i.op != OP_SWC2)
+ lightrec_clean_reg_if_loaded(reg_cache, _jit, c.i.rt, true);
call_to_c_wrapper(state, block, c.opcode, C_WRAPPER_MFC);
}
jit_note(__FILE__, __LINE__);
lightrec_clean_reg_if_loaded(reg_cache, _jit, c.i.rs, false);
lightrec_clean_reg_if_loaded(reg_cache, _jit, c.i.rt, false);
+ lightrec_clean_reg_if_loaded(reg_cache, _jit, REG_TEMP, false);
call_to_c_wrapper(state, block, c.opcode, C_WRAPPER_MTC);
lightrec_free_reg(reg_cache, rt);
}
-static bool block_in_bios(const struct lightrec_cstate *state,
- const struct block *block)
+static bool block_uses_icache(const struct lightrec_cstate *state,
+ const struct block *block)
{
- const struct lightrec_mem_map *bios = &state->state->maps[PSX_MAP_BIOS];
+ const struct lightrec_mem_map *map = &state->state->maps[PSX_MAP_KERNEL_USER_RAM];
u32 pc = kunseg(block->pc);
- return pc >= bios->pc && pc < bios->pc + bios->length;
+ if (pc < map->pc || pc >= map->pc + map->length)
+ return false;
+
+ return (block->pc >> 28) < 0xa;
}
static void
break;
}
- if (block_in_bios(state, block) && c.r.rd == 12) {
- /* If we are running code from the BIOS, handle writes to the
- * Status register in C. BIOS code may toggle bit 16 which will
- * map/unmap the RAM, while game code cannot do that. */
+ if (!block_uses_icache(state, block) && c.r.rd == 12) {
+ /* If we are not running code from the RAM through kuseg or
+ * kseg0, handle writes to the Status register in C; as the
+ * code may toggle bit 16 which isolates the cache. Code
+ * running from kuseg or kseg0 in RAM cannot do that. */
rec_mtc(state, block, offset);
return;
}
if (!op_flag_no_ds(block->opcode_list[offset].flags) &&
(c.r.rd == 12 || c.r.rd == 13)) {
- state->cycles += lightrec_cycles_of_opcode(c);
+ state->cycles += lightrec_cycles_of_opcode(state->state, c);
lightrec_emit_eob(state, block, offset + 1);
}
}
return cp2c_i_offset(reg) + is_big_endian() * 2;
}
-static void rec_cp2_basic_MFC2(struct lightrec_cstate *state,
- const struct block *block, u16 offset)
+static void rec_cp2_do_mfc2(struct lightrec_cstate *state,
+ const struct block *block, u16 offset,
+ u8 reg, u8 out_reg)
{
struct regcache *reg_cache = state->reg_cache;
- const union code c = block->opcode_list[offset].c;
jit_state_t *_jit = block->_jit;
const u32 zext_regs = 0x300f0080;
u8 rt, tmp, tmp2, tmp3, out, flags;
- u8 reg = c.r.rd == 15 ? 14 : c.r.rd;
unsigned int i;
_jit_name(block->_jit, __func__);
}
flags = (zext_regs & BIT(reg)) ? REG_ZEXT : REG_EXT;
- rt = lightrec_alloc_reg_out(reg_cache, _jit, c.r.rt, flags);
+ rt = lightrec_alloc_reg_out(reg_cache, _jit, out_reg, flags);
+
+ if (reg == 15)
+ reg = 14;
switch (reg) {
case 1:
lightrec_free_reg(reg_cache, rt);
}
+static void rec_cp2_basic_MFC2(struct lightrec_cstate *state,
+ const struct block *block, u16 offset)
+{
+ const union code c = block->opcode_list[offset].c;
+
+ rec_cp2_do_mfc2(state, block, offset, c.r.rd, c.r.rt);
+}
+
static void rec_cp2_basic_CFC2(struct lightrec_cstate *state,
const struct block *block, u16 offset)
{
lightrec_free_reg(reg_cache, rt);
}
-static void rec_cp2_basic_MTC2(struct lightrec_cstate *state,
- const struct block *block, u16 offset)
+static void rec_cp2_do_mtc2(struct lightrec_cstate *state,
+ const struct block *block, u16 offset,
+ u8 reg, u8 in_reg)
{
struct regcache *reg_cache = state->reg_cache;
- const union code c = block->opcode_list[offset].c;
jit_state_t *_jit = block->_jit;
- jit_node_t *loop, *to_loop;
u8 rt, tmp, tmp2, flags = 0;
_jit_name(block->_jit, __func__);
return;
}
- if (c.r.rd == 31)
+ if (reg == 31)
return;
- if (c.r.rd == 30)
+ if (reg == 30)
flags |= REG_EXT;
- rt = lightrec_alloc_reg_in(reg_cache, _jit, c.r.rt, flags);
+ rt = lightrec_alloc_reg_in(reg_cache, _jit, in_reg, flags);
- switch (c.r.rd) {
+ switch (reg) {
case 15:
tmp = lightrec_alloc_reg_temp(reg_cache, _jit);
jit_ldxi_i(tmp, LIGHTREC_REG_STATE, cp2d_i_offset(13));
break;
case 30:
tmp = lightrec_alloc_reg_temp(reg_cache, _jit);
- tmp2 = lightrec_alloc_reg_temp(reg_cache, _jit);
/* if (rt < 0) rt = ~rt; */
jit_rshi(tmp, rt, 31);
jit_xorr(tmp, rt, tmp);
- /* We know the sign bit is 0. Left-shift by 1 to start the algorithm */
- jit_lshi(tmp, tmp, 1);
- jit_movi(tmp2, 33);
-
- /* Decrement tmp2 and right-shift the value by 1 until it equals zero */
- loop = jit_label();
- jit_subi(tmp2, tmp2, 1);
- jit_rshi_u(tmp, tmp, 1);
- to_loop = jit_bnei(tmp, 0);
+ /* Count leading zeros */
+ jit_clzr(tmp, tmp);
+ if (__WORDSIZE != 32)
+ jit_subi(tmp, tmp, __WORDSIZE - 32);
- jit_patch_at(to_loop, loop);
-
- jit_stxi_i(cp2d_i_offset(31), LIGHTREC_REG_STATE, tmp2);
- jit_stxi_i(cp2d_i_offset(30), LIGHTREC_REG_STATE, rt);
+ jit_stxi_i(cp2d_i_offset(31), LIGHTREC_REG_STATE, tmp);
lightrec_free_reg(reg_cache, tmp);
- lightrec_free_reg(reg_cache, tmp2);
- break;
+ fallthrough;
default:
- jit_stxi_i(cp2d_i_offset(c.r.rd), LIGHTREC_REG_STATE, rt);
+ jit_stxi_i(cp2d_i_offset(reg), LIGHTREC_REG_STATE, rt);
break;
}
lightrec_free_reg(reg_cache, rt);
}
+static void rec_cp2_basic_MTC2(struct lightrec_cstate *state,
+ const struct block *block, u16 offset)
+{
+ const union code c = block->opcode_list[offset].c;
+
+ rec_cp2_do_mtc2(state, block, offset, c.r.rd, c.r.rt);
+}
+
static void rec_cp2_basic_CTC2(struct lightrec_cstate *state,
const struct block *block, u16 offset)
{
const struct block *block, u16 offset)
{
struct regcache *reg_cache = state->reg_cache;
- union code c = block->opcode_list[offset].c;
+ const struct opcode *op = &block->opcode_list[offset];
+ union code c = op->c;
jit_state_t *_jit = block->_jit;
+ bool unload_rd;
+ bool unload_rs, discard_rs;
u8 rs, rd;
_jit_name(block->_jit, __func__);
jit_note(__FILE__, __LINE__);
- if (c.r.rs)
- rs = lightrec_alloc_reg_in(reg_cache, _jit, c.r.rs, 0);
- rd = lightrec_alloc_reg_out(reg_cache, _jit, c.r.rd, REG_EXT);
- if (c.r.rs == 0)
- jit_movi(rd, 0);
- else
- jit_extr_i(rd, rs);
+ unload_rs = OPT_EARLY_UNLOAD
+ && LIGHTREC_FLAGS_GET_RS(op->flags) == LIGHTREC_REG_UNLOAD;
+ discard_rs = OPT_EARLY_UNLOAD
+ && LIGHTREC_FLAGS_GET_RS(op->flags) == LIGHTREC_REG_DISCARD;
+
+ if ((unload_rs || discard_rs) && c.m.rs) {
+ /* If the source register is going to be unloaded or discarded,
+ * then we can simply mark its host register as now pointing to
+ * the destination register. */
+ pr_debug("Remap %s to %s at offset 0x%x\n",
+ lightrec_reg_name(c.m.rs), lightrec_reg_name(c.m.rd),
+ offset << 2);
+ rs = lightrec_alloc_reg_in(reg_cache, _jit, c.m.rs, 0);
+ lightrec_remap_reg(reg_cache, _jit, rs, c.m.rd, discard_rs);
+ lightrec_free_reg(reg_cache, rs);
+ return;
+ }
+
+ unload_rd = OPT_EARLY_UNLOAD
+ && LIGHTREC_FLAGS_GET_RD(op->flags) == LIGHTREC_REG_UNLOAD;
+
+ if (c.m.rs && !lightrec_reg_is_loaded(reg_cache, c.m.rs)) {
+ /* The source register is not yet loaded - we can load its value
+ * from the register cache directly into the target register. */
+ rd = lightrec_alloc_reg_out(reg_cache, _jit, c.m.rd, REG_EXT);
+
+ jit_ldxi_i(rd, LIGHTREC_REG_STATE,
+ offsetof(struct lightrec_state, regs.gpr) + (c.m.rs << 2));
+
+ lightrec_free_reg(reg_cache, rd);
+ } else if (unload_rd) {
+ /* If the destination register will be unloaded right after the
+ * MOV meta-opcode, we don't actually need to write any host
+ * register - we can just store the source register directly to
+ * the register cache, at the offset corresponding to the
+ * destination register. */
+ lightrec_discard_reg_if_loaded(reg_cache, c.m.rd);
+
+ rs = lightrec_alloc_reg_in(reg_cache, _jit, c.m.rs, 0);
+
+ jit_stxi_i(offsetof(struct lightrec_state, regs.gpr)
+ + (c.m.rd << 2), LIGHTREC_REG_STATE, rs);
- if (c.r.rs)
lightrec_free_reg(reg_cache, rs);
- lightrec_free_reg(reg_cache, rd);
+ } else {
+ if (c.m.rs)
+ rs = lightrec_alloc_reg_in(reg_cache, _jit, c.m.rs, 0);
+
+ rd = lightrec_alloc_reg_out(reg_cache, _jit, c.m.rd, REG_EXT);
+
+ if (c.m.rs == 0) {
+ jit_movi(rd, 0);
+ } else {
+ jit_extr_i(rd, rs);
+ lightrec_free_reg(reg_cache, rs);
+ }
+
+ lightrec_free_reg(reg_cache, rd);
+ }
}
static void rec_meta_EXTC_EXTS(struct lightrec_cstate *state,
struct regcache *reg_cache = state->reg_cache;
union code c = block->opcode_list[offset].c;
jit_state_t *_jit = block->_jit;
- u8 rs, rt;
+ u8 rs, rd;
_jit_name(block->_jit, __func__);
jit_note(__FILE__, __LINE__);
- rs = lightrec_alloc_reg_in(reg_cache, _jit, c.i.rs, 0);
- rt = lightrec_alloc_reg_out(reg_cache, _jit, c.i.rt, REG_EXT);
+ rec_alloc_rs_rd(reg_cache, _jit, &block->opcode_list[offset],
+ c.m.rs, c.m.rd, 0, REG_EXT, &rs, &rd);
- if (c.i.op == OP_META_EXTC)
- jit_extr_c(rt, rs);
+ if (c.m.op == OP_META_EXTC)
+ jit_extr_c(rd, rs);
else
- jit_extr_s(rt, rs);
+ jit_extr_s(rd, rs);
lightrec_free_reg(reg_cache, rs);
- lightrec_free_reg(reg_cache, rt);
+ lightrec_free_reg(reg_cache, rd);
}
static void rec_meta_MULT2(struct lightrec_cstate *state,
hi = lightrec_alloc_reg_out(reg_cache, _jit,
reg_hi, hiflags);
- if (c.r.op >= 32)
+ if (c.r.op >= 32) {
jit_lshi(hi, rs, c.r.op - 32);
- else if (is_signed)
- jit_rshi(hi, rs, 32 - c.r.op);
- else
- jit_rshi_u(hi, rs, 32 - c.r.op);
+ } else if (is_signed) {
+ if (c.r.op)
+ jit_rshi(hi, rs, 32 - c.r.op);
+ else
+ jit_rshi(hi, rs, 31);
+ } else {
+ if (c.r.op)
+ jit_rshi_u(hi, rs, 32 - c.r.op);
+ else
+ jit_movi(hi, 0);
+ }
lightrec_free_reg(reg_cache, hi);
}
jit_note(__FILE__, __LINE__);
}
+static void rec_meta_COM(struct lightrec_cstate *state,
+ const struct block *block, u16 offset)
+{
+ struct regcache *reg_cache = state->reg_cache;
+ union code c = block->opcode_list[offset].c;
+ jit_state_t *_jit = block->_jit;
+ u8 rd, rs, flags;
+
+ jit_note(__FILE__, __LINE__);
+
+ rec_alloc_rs_rd(reg_cache, _jit, &block->opcode_list[offset],
+ c.m.rs, c.m.rd, 0, 0, &rs, &rd);
+
+ flags = lightrec_get_reg_in_flags(reg_cache, rs);
+
+ lightrec_set_reg_out_flags(reg_cache, rd,
+ flags & REG_EXT);
+
+ jit_comr(rd, rs);
+
+ lightrec_free_reg(reg_cache, rs);
+ lightrec_free_reg(reg_cache, rd);
+}
+
+static void rec_meta_LWU(struct lightrec_cstate *state,
+ const struct block *block,
+ u16 offset)
+{
+ jit_code_t code;
+
+ if (is_big_endian() && __WORDSIZE == 64)
+ code = jit_code_unldr_u;
+ else
+ code = jit_code_unldr;
+
+ _jit_name(block->_jit, __func__);
+ rec_load(state, block, offset, code, jit_code_bswapr_ui, false);
+}
+
+static void rec_meta_SWU(struct lightrec_cstate *state,
+ const struct block *block,
+ u16 offset)
+{
+ _jit_name(block->_jit, __func__);
+ rec_store(state, block, offset, jit_code_unstr, jit_code_bswapr_ui);
+}
+
+static void unknown_opcode(struct lightrec_cstate *state,
+ const struct block *block, u16 offset)
+{
+ rec_exit_early(state, block, offset, LIGHTREC_EXIT_UNKNOWN_OP,
+ block->pc + (offset << 2));
+}
+
static const lightrec_rec_func_t rec_standard[64] = {
SET_DEFAULT_ELM(rec_standard, unknown_opcode),
[OP_SPECIAL] = rec_SPECIAL,
[OP_SWL] = rec_SWL,
[OP_SW] = rec_SW,
[OP_SWR] = rec_SWR,
- [OP_LWC2] = rec_LWC2,
- [OP_SWC2] = rec_SWC2,
+ [OP_LWC2] = rec_LW,
+ [OP_SWC2] = rec_SW,
- [OP_META_MOV] = rec_meta_MOV,
- [OP_META_EXTC] = rec_meta_EXTC_EXTS,
- [OP_META_EXTS] = rec_meta_EXTC_EXTS,
+ [OP_META] = rec_META,
[OP_META_MULT2] = rec_meta_MULT2,
[OP_META_MULTU2] = rec_meta_MULT2,
+ [OP_META_LWU] = rec_meta_LWU,
+ [OP_META_SWU] = rec_meta_SWU,
};
static const lightrec_rec_func_t rec_special[64] = {
[OP_CP2_BASIC_CTC2] = rec_cp2_basic_CTC2,
};
+static const lightrec_rec_func_t rec_meta[64] = {
+ SET_DEFAULT_ELM(rec_meta, unknown_opcode),
+ [OP_META_MOV] = rec_meta_MOV,
+ [OP_META_EXTC] = rec_meta_EXTC_EXTS,
+ [OP_META_EXTS] = rec_meta_EXTC_EXTS,
+ [OP_META_COM] = rec_meta_COM,
+};
+
static void rec_SPECIAL(struct lightrec_cstate *state,
const struct block *block, u16 offset)
{
rec_CP(state, block, offset);
}
+static void rec_META(struct lightrec_cstate *state,
+ const struct block *block, u16 offset)
+{
+ union code c = block->opcode_list[offset].c;
+ lightrec_rec_func_t f = rec_meta[c.m.op];
+
+ if (!HAS_DEFAULT_ELM && unlikely(!f))
+ unknown_opcode(state, block, offset);
+ else
+ (*f)(state, block, offset);
+}
+
void lightrec_rec_opcode(struct lightrec_cstate *state,
const struct block *block, u16 offset)
{
lightrec_do_early_unload(state, block, unload_offset);
}
+
+ state->no_load_delay = false;
}