static const uint16_t *src_index_table;
static bool
-set_control_index(struct brw_context *brw, brw_compact_inst *dst, brw_inst *src)
+set_control_index(const struct brw_device_info *devinfo,
+ brw_compact_inst *dst, brw_inst *src)
{
- uint32_t uncompacted = brw->gen >= 8 /* 17b/G45; 19b/IVB+ */
+ uint32_t uncompacted = devinfo->gen >= 8 /* 17b/G45; 19b/IVB+ */
? (brw_inst_bits(src, 33, 31) << 16) | /* 3b */
(brw_inst_bits(src, 23, 12) << 4) | /* 12b */
(brw_inst_bits(src, 10, 9) << 2) | /* 2b */
/* On gen7, the flag register and subregister numbers are integrated into
* the control index.
*/
- if (brw->gen == 7)
+ if (devinfo->gen == 7)
uncompacted |= brw_inst_bits(src, 90, 89) << 17; /* 2b */
for (int i = 0; i < 32; i++) {
}
static bool
-set_datatype_index(struct brw_context *brw, brw_compact_inst *dst,
+set_datatype_index(const struct brw_device_info *devinfo, brw_compact_inst *dst,
brw_inst *src)
{
- uint32_t uncompacted = brw->gen >= 8 /* 18b/G45+; 21b/BDW+ */
+ uint32_t uncompacted = devinfo->gen >= 8 /* 18b/G45+; 21b/BDW+ */
? (brw_inst_bits(src, 63, 61) << 18) | /* 3b */
(brw_inst_bits(src, 94, 89) << 12) | /* 6b */
(brw_inst_bits(src, 46, 35)) /* 12b */
}
static bool
-set_subreg_index(struct brw_context *brw, brw_compact_inst *dst, brw_inst *src,
- bool is_immediate)
+set_subreg_index(const struct brw_device_info *devinfo, brw_compact_inst *dst,
+ brw_inst *src, bool is_immediate)
{
uint16_t uncompacted = /* 15b */
(brw_inst_bits(src, 52, 48) << 0) | /* 5b */
}
static bool
-set_src0_index(struct brw_context *brw, brw_compact_inst *dst, brw_inst *src)
+set_src0_index(const struct brw_device_info *devinfo,
+ brw_compact_inst *dst, brw_inst *src)
{
uint16_t compacted;
uint16_t uncompacted = brw_inst_bits(src, 88, 77); /* 12b */
}
static bool
-set_src1_index(struct brw_context *brw, brw_compact_inst *dst, brw_inst *src,
- bool is_immediate)
+set_src1_index(const struct brw_device_info *devinfo, brw_compact_inst *dst,
+ brw_inst *src, bool is_immediate)
{
uint16_t compacted;
if (is_immediate) {
- compacted = (brw_inst_imm_ud(brw->intelScreen->devinfo, src) >> 8) & 0x1f;
+ compacted = (brw_inst_imm_ud(devinfo, src) >> 8) & 0x1f;
} else {
uint16_t uncompacted = brw_inst_bits(src, 120, 109); /* 12b */
}
static bool
-set_3src_control_index(struct brw_context *brw, brw_compact_inst *dst, brw_inst *src)
+set_3src_control_index(const struct brw_device_info *devinfo,
+ brw_compact_inst *dst, brw_inst *src)
{
- assert(brw->gen >= 8);
+ assert(devinfo->gen >= 8);
uint32_t uncompacted = /* 24b/BDW; 26b/CHV */
(brw_inst_bits(src, 34, 32) << 21) | /* 3b */
(brw_inst_bits(src, 28, 8)); /* 21b */
- if (brw->gen >= 9 || brw->is_cherryview)
+ if (devinfo->gen >= 9 || devinfo->is_cherryview)
uncompacted |= brw_inst_bits(src, 36, 35) << 24; /* 2b */
for (int i = 0; i < ARRAY_SIZE(gen8_3src_control_index_table); i++) {
}
static bool
-set_3src_source_index(struct brw_context *brw, brw_compact_inst *dst, brw_inst *src)
+set_3src_source_index(const struct brw_device_info *devinfo,
+ brw_compact_inst *dst, brw_inst *src)
{
- assert(brw->gen >= 8);
+ assert(devinfo->gen >= 8);
uint64_t uncompacted = /* 46b/BDW; 49b/CHV */
(brw_inst_bits(src, 83, 83) << 43) | /* 1b */
(brw_inst_bits(src, 72, 65) << 19) | /* 8b */
(brw_inst_bits(src, 55, 37)); /* 19b */
- if (brw->gen >= 9 || brw->is_cherryview) {
+ if (devinfo->gen >= 9 || devinfo->is_cherryview) {
uncompacted |=
(brw_inst_bits(src, 126, 125) << 47) | /* 2b */
(brw_inst_bits(src, 105, 104) << 45) | /* 2b */
}
static bool
-has_unmapped_bits(struct brw_context *brw, brw_inst *src)
+has_unmapped_bits(const struct brw_device_info *devinfo, brw_inst *src)
{
/* Check for instruction bits that don't map to any of the fields of the
* compacted instruction. The instruction cannot be compacted if any of
* - Imm64[27:31] (bits 91-95 on Gen7, bit 95 on Gen8)
* - UIP[31] (bit 95 on Gen8)
*/
- if (brw->gen >= 8) {
+ if (devinfo->gen >= 8) {
assert(!brw_inst_bits(src, 7, 7));
return brw_inst_bits(src, 95, 95) ||
brw_inst_bits(src, 47, 47) ||
brw_inst_bits(src, 11, 11);
} else {
assert(!brw_inst_bits(src, 7, 7) &&
- !(brw->gen < 7 && brw_inst_bits(src, 90, 90)));
+ !(devinfo->gen < 7 && brw_inst_bits(src, 90, 90)));
return brw_inst_bits(src, 95, 91) ||
brw_inst_bits(src, 47, 47);
}
}
static bool
-has_3src_unmapped_bits(struct brw_context *brw, brw_inst *src)
+has_3src_unmapped_bits(const struct brw_device_info *devinfo, brw_inst *src)
{
/* Check for three-source instruction bits that don't map to any of the
* fields of the compacted instruction. All of them seem to be reserved
* bits currently.
*/
- if (brw->gen >= 9 || brw->is_cherryview) {
+ if (devinfo->gen >= 9 || devinfo->is_cherryview) {
assert(!brw_inst_bits(src, 127, 127) &&
!brw_inst_bits(src, 7, 7));
} else {
- assert(brw->gen >= 8);
+ assert(devinfo->gen >= 8);
assert(!brw_inst_bits(src, 127, 126) &&
!brw_inst_bits(src, 105, 105) &&
!brw_inst_bits(src, 84, 84) &&
}
static bool
-brw_try_compact_3src_instruction(struct brw_context *brw, brw_compact_inst *dst,
- brw_inst *src)
+brw_try_compact_3src_instruction(const struct brw_device_info *devinfo,
+ brw_compact_inst *dst, brw_inst *src)
{
- assert(brw->gen >= 8);
+ assert(devinfo->gen >= 8);
- if (has_3src_unmapped_bits(brw, src))
+ if (has_3src_unmapped_bits(devinfo, src))
return false;
- const struct brw_device_info *devinfo = brw->intelScreen->devinfo;
#define compact(field) \
brw_compact_inst_set_3src_##field(dst, brw_inst_3src_##field(devinfo, src))
compact(opcode);
- if (!set_3src_control_index(brw, dst, src))
+ if (!set_3src_control_index(devinfo, dst, src))
return false;
- if (!set_3src_source_index(brw, dst, src))
+ if (!set_3src_source_index(devinfo, dst, src))
return false;
compact(dst_reg_nr);
* brw_compact_instructions().
*/
bool
-brw_try_compact_instruction(struct brw_context *brw, brw_compact_inst *dst,
- brw_inst *src)
+brw_try_compact_instruction(const struct brw_device_info *devinfo,
+ brw_compact_inst *dst, brw_inst *src)
{
- const struct brw_device_info *devinfo = brw->intelScreen->devinfo;
brw_compact_inst temp;
assert(brw_inst_cmpt_control(devinfo, src) == 0);
if (is_3src(brw_inst_opcode(devinfo, src))) {
- if (brw->gen >= 8) {
+ if (devinfo->gen >= 8) {
memset(&temp, 0, sizeof(temp));
- if (brw_try_compact_3src_instruction(brw, &temp, src)) {
+ if (brw_try_compact_3src_instruction(devinfo, &temp, src)) {
*dst = temp;
return true;
} else {
brw_inst_src0_reg_file(devinfo, src) == BRW_IMMEDIATE_VALUE ||
brw_inst_src1_reg_file(devinfo, src) == BRW_IMMEDIATE_VALUE;
if (is_immediate &&
- (brw->gen < 6 || !is_compactable_immediate(brw_inst_imm_ud(devinfo, src)))) {
+ (devinfo->gen < 6 ||
+ !is_compactable_immediate(brw_inst_imm_ud(devinfo, src)))) {
return false;
}
- if (has_unmapped_bits(brw, src))
+ if (has_unmapped_bits(devinfo, src))
return false;
memset(&temp, 0, sizeof(temp));
brw_compact_inst_set_opcode(&temp, brw_inst_opcode(devinfo, src));
brw_compact_inst_set_debug_control(&temp, brw_inst_debug_control(devinfo, src));
- if (!set_control_index(brw, &temp, src))
+ if (!set_control_index(devinfo, &temp, src))
return false;
- if (!set_datatype_index(brw, &temp, src))
+ if (!set_datatype_index(devinfo, &temp, src))
return false;
- if (!set_subreg_index(brw, &temp, src, is_immediate))
+ if (!set_subreg_index(devinfo, &temp, src, is_immediate))
return false;
brw_compact_inst_set_acc_wr_control(&temp,
brw_inst_acc_wr_control(devinfo, src));
brw_compact_inst_set_cond_modifier(&temp,
brw_inst_cond_modifier(devinfo, src));
- if (brw->gen <= 6)
+ if (devinfo->gen <= 6)
brw_compact_inst_set_flag_subreg_nr(&temp,
brw_inst_flag_subreg_nr(devinfo, src));
brw_compact_inst_set_cmpt_control(&temp, true);
- if (!set_src0_index(brw, &temp, src))
+ if (!set_src0_index(devinfo, &temp, src))
return false;
- if (!set_src1_index(brw, &temp, src, is_immediate))
+ if (!set_src1_index(devinfo, &temp, src, is_immediate))
return false;
brw_compact_inst_set_dst_reg_nr(&temp, brw_inst_dst_da_reg_nr(devinfo, src));
brw_compact_inst_set_src0_reg_nr(&temp, brw_inst_src0_da_reg_nr(devinfo, src));
}
static void
-set_uncompacted_control(struct brw_context *brw, brw_inst *dst,
+set_uncompacted_control(const struct brw_device_info *devinfo, brw_inst *dst,
brw_compact_inst *src)
{
uint32_t uncompacted =
control_index_table[brw_compact_inst_control_index(src)];
- if (brw->gen >= 8) {
+ if (devinfo->gen >= 8) {
brw_inst_set_bits(dst, 33, 31, (uncompacted >> 16));
brw_inst_set_bits(dst, 23, 12, (uncompacted >> 4) & 0xfff);
brw_inst_set_bits(dst, 10, 9, (uncompacted >> 2) & 0x3);
brw_inst_set_bits(dst, 31, 31, (uncompacted >> 16) & 0x1);
brw_inst_set_bits(dst, 23, 8, (uncompacted & 0xffff));
- if (brw->gen == 7)
+ if (devinfo->gen == 7)
brw_inst_set_bits(dst, 90, 89, uncompacted >> 17);
}
}
static void
-set_uncompacted_datatype(struct brw_context *brw, brw_inst *dst,
+set_uncompacted_datatype(const struct brw_device_info *devinfo, brw_inst *dst,
brw_compact_inst *src)
{
uint32_t uncompacted = datatype_table[brw_compact_inst_datatype_index(src)];
- if (brw->gen >= 8) {
+ if (devinfo->gen >= 8) {
brw_inst_set_bits(dst, 63, 61, (uncompacted >> 18));
brw_inst_set_bits(dst, 94, 89, (uncompacted >> 12) & 0x3f);
brw_inst_set_bits(dst, 46, 35, (uncompacted >> 0) & 0xfff);
}
static void
-set_uncompacted_subreg(struct brw_context *brw, brw_inst *dst,
+set_uncompacted_subreg(const struct brw_device_info *devinfo, brw_inst *dst,
brw_compact_inst *src)
{
uint16_t uncompacted = subreg_table[brw_compact_inst_subreg_index(src)];
}
static void
-set_uncompacted_src0(struct brw_context *brw, brw_inst *dst,
+set_uncompacted_src0(const struct brw_device_info *devinfo, brw_inst *dst,
brw_compact_inst *src)
{
uint32_t compacted = brw_compact_inst_src0_index(src);
}
static void
-set_uncompacted_src1(struct brw_context *brw, brw_inst *dst,
+set_uncompacted_src1(const struct brw_device_info *devinfo, brw_inst *dst,
brw_compact_inst *src, bool is_immediate)
{
if (is_immediate) {
signed high5 = brw_compact_inst_src1_index(src);
/* Replicate top bit of src1_index into high 20 bits of the immediate. */
- brw_inst_set_imm_ud(brw->intelScreen->devinfo, dst, (high5 << 27) >> 19);
+ brw_inst_set_imm_ud(devinfo, dst, (high5 << 27) >> 19);
} else {
uint16_t uncompacted = src_index_table[brw_compact_inst_src1_index(src)];
}
static void
-set_uncompacted_3src_control_index(struct brw_context *brw, brw_inst *dst,
- brw_compact_inst *src)
+set_uncompacted_3src_control_index(const struct brw_device_info *devinfo,
+ brw_inst *dst, brw_compact_inst *src)
{
- assert(brw->gen >= 8);
+ assert(devinfo->gen >= 8);
uint32_t compacted = brw_compact_inst_3src_control_index(src);
uint32_t uncompacted = gen8_3src_control_index_table[compacted];
brw_inst_set_bits(dst, 34, 32, (uncompacted >> 21) & 0x7);
brw_inst_set_bits(dst, 28, 8, (uncompacted >> 0) & 0x1fffff);
- if (brw->gen >= 9 || brw->is_cherryview)
+ if (devinfo->gen >= 9 || devinfo->is_cherryview)
brw_inst_set_bits(dst, 36, 35, (uncompacted >> 24) & 0x3);
}
static void
-set_uncompacted_3src_source_index(struct brw_context *brw, brw_inst *dst,
- brw_compact_inst *src)
+set_uncompacted_3src_source_index(const struct brw_device_info *devinfo,
+ brw_inst *dst, brw_compact_inst *src)
{
- assert(brw->gen >= 8);
+ assert(devinfo->gen >= 8);
uint32_t compacted = brw_compact_inst_3src_source_index(src);
uint64_t uncompacted = gen8_3src_source_index_table[compacted];
brw_inst_set_bits(dst, 72, 65, (uncompacted >> 19) & 0xff);
brw_inst_set_bits(dst, 55, 37, (uncompacted >> 0) & 0x7ffff);
- if (brw->gen >= 9 || brw->is_cherryview) {
+ if (devinfo->gen >= 9 || devinfo->is_cherryview) {
brw_inst_set_bits(dst, 126, 125, (uncompacted >> 47) & 0x3);
brw_inst_set_bits(dst, 105, 104, (uncompacted >> 45) & 0x3);
brw_inst_set_bits(dst, 84, 84, (uncompacted >> 44) & 0x1);
}
static void
-brw_uncompact_3src_instruction(struct brw_context *brw, brw_inst *dst,
- brw_compact_inst *src)
+brw_uncompact_3src_instruction(const struct brw_device_info *devinfo,
+ brw_inst *dst, brw_compact_inst *src)
{
- assert(brw->gen >= 8);
+ assert(devinfo->gen >= 8);
- const struct brw_device_info *devinfo = brw->intelScreen->devinfo;
#define uncompact(field) \
brw_inst_set_3src_##field(devinfo, dst, brw_compact_inst_3src_##field(src))
uncompact(opcode);
- set_uncompacted_3src_control_index(brw, dst, src);
- set_uncompacted_3src_source_index(brw, dst, src);
+ set_uncompacted_3src_control_index(devinfo, dst, src);
+ set_uncompacted_3src_source_index(devinfo, dst, src);
uncompact(dst_reg_nr);
uncompact(src0_rep_ctrl);
}
void
-brw_uncompact_instruction(struct brw_context *brw, brw_inst *dst,
+brw_uncompact_instruction(const struct brw_device_info *devinfo, brw_inst *dst,
brw_compact_inst *src)
{
memset(dst, 0, sizeof(*dst));
- const struct brw_device_info *devinfo = brw->intelScreen->devinfo;
- if (brw->gen >= 8 && is_3src(brw_compact_inst_3src_opcode(src))) {
- brw_uncompact_3src_instruction(brw, dst, src);
+ if (devinfo->gen >= 8 && is_3src(brw_compact_inst_3src_opcode(src))) {
+ brw_uncompact_3src_instruction(devinfo, dst, src);
return;
}
brw_inst_set_opcode(devinfo, dst, brw_compact_inst_opcode(src));
brw_inst_set_debug_control(devinfo, dst, brw_compact_inst_debug_control(src));
- set_uncompacted_control(brw, dst, src);
- set_uncompacted_datatype(brw, dst, src);
+ set_uncompacted_control(devinfo, dst, src);
+ set_uncompacted_datatype(devinfo, dst, src);
/* src0/1 register file fields are in the datatype table. */
bool is_immediate = brw_inst_src0_reg_file(devinfo, dst) == BRW_IMMEDIATE_VALUE ||
brw_inst_src1_reg_file(devinfo, dst) == BRW_IMMEDIATE_VALUE;
- set_uncompacted_subreg(brw, dst, src);
+ set_uncompacted_subreg(devinfo, dst, src);
brw_inst_set_acc_wr_control(devinfo, dst, brw_compact_inst_acc_wr_control(src));
brw_inst_set_cond_modifier(devinfo, dst, brw_compact_inst_cond_modifier(src));
- if (brw->gen <= 6)
+ if (devinfo->gen <= 6)
brw_inst_set_flag_subreg_nr(devinfo, dst,
brw_compact_inst_flag_subreg_nr(src));
- set_uncompacted_src0(brw, dst, src);
- set_uncompacted_src1(brw, dst, src, is_immediate);
+ set_uncompacted_src0(devinfo, dst, src);
+ set_uncompacted_src1(devinfo, dst, src, is_immediate);
brw_inst_set_dst_da_reg_nr(devinfo, dst, brw_compact_inst_dst_reg_nr(src));
brw_inst_set_src0_da_reg_nr(devinfo, dst, brw_compact_inst_src0_reg_nr(src));
if (is_immediate) {
}
static void
-update_uip_jip(struct brw_context *brw, brw_inst *insn,
+update_uip_jip(const struct brw_device_info *devinfo, brw_inst *insn,
int this_old_ip, int *compacted_counts)
{
- const struct brw_device_info *devinfo = brw->intelScreen->devinfo;
/* JIP and UIP are in units of:
* - bytes on Gen8+; and
* - compacted instructions on Gen6+.
*/
- int shift = brw->gen >= 8 ? 3 : 0;
+ int shift = devinfo->gen >= 8 ? 3 : 0;
int32_t jip_compacted = brw_inst_jip(devinfo, insn) >> shift;
jip_compacted -= compacted_between(this_old_ip,
if (brw_inst_opcode(devinfo, insn) == BRW_OPCODE_ENDIF ||
brw_inst_opcode(devinfo, insn) == BRW_OPCODE_WHILE ||
- (brw_inst_opcode(devinfo, insn) == BRW_OPCODE_ELSE && brw->gen <= 7))
+ (brw_inst_opcode(devinfo, insn) == BRW_OPCODE_ELSE && devinfo->gen <= 7))
return;
int32_t uip_compacted = brw_inst_uip(devinfo, insn) >> shift;
}
static void
-update_gen4_jump_count(struct brw_context *brw, brw_inst *insn,
+update_gen4_jump_count(const struct brw_device_info *devinfo, brw_inst *insn,
int this_old_ip, int *compacted_counts)
{
- assert(brw->gen == 5 || brw->is_g4x);
+ assert(devinfo->gen == 5 || devinfo->is_g4x);
- const struct brw_device_info *devinfo = brw->intelScreen->devinfo;
/* Jump Count is in units of:
* - uncompacted instructions on G45; and
* - compacted instructions on Gen5.
*/
- int shift = brw->is_g4x ? 1 : 0;
+ int shift = devinfo->is_g4x ? 1 : 0;
int jump_count_compacted = brw_inst_gen4_jump_count(devinfo, insn) << shift;
*/
int old_ip[(p->next_insn_offset - start_offset) / sizeof(brw_compact_inst)];
- if (brw->gen == 4 && !brw->is_g4x)
+ if (devinfo->gen == 4 && !devinfo->is_g4x)
return;
int offset = 0;
brw_inst saved = *src;
- if (brw_try_compact_instruction(brw, dst, src)) {
+ if (brw_try_compact_instruction(devinfo, dst, src)) {
compacted_count++;
if (INTEL_DEBUG) {
brw_inst uncompacted;
- brw_uncompact_instruction(brw, &uncompacted, dst);
+ brw_uncompact_instruction(devinfo, &uncompacted, dst);
if (memcmp(&saved, &uncompacted, sizeof(uncompacted))) {
brw_debug_compact_uncompact(brw, &saved, &uncompacted);
}
(((brw_inst_opcode(devinfo, src) == BRW_OPCODE_SEND ||
brw_inst_opcode(devinfo, src) == BRW_OPCODE_SENDC) &&
brw_inst_eot(devinfo, src)) ||
- brw->is_g4x)) {
+ devinfo->is_g4x)) {
brw_compact_inst *align = store + offset;
memset(align, 0, sizeof(*align));
- brw_compact_inst_set_opcode(align, brw->is_g4x ? BRW_OPCODE_NENOP :
- BRW_OPCODE_NOP);
+ brw_compact_inst_set_opcode(align,
+ devinfo->is_g4x ? BRW_OPCODE_NENOP :
+ BRW_OPCODE_NOP);
brw_compact_inst_set_cmpt_control(align, true);
offset += sizeof(brw_compact_inst);
compacted_count--;
case BRW_OPCODE_BREAK:
case BRW_OPCODE_CONTINUE:
case BRW_OPCODE_HALT:
- if (brw->gen >= 6) {
- update_uip_jip(brw, insn, this_old_ip, compacted_counts);
+ if (devinfo->gen >= 6) {
+ update_uip_jip(devinfo, insn, this_old_ip, compacted_counts);
} else {
- update_gen4_jump_count(brw, insn, this_old_ip, compacted_counts);
+ update_gen4_jump_count(devinfo, insn, this_old_ip,
+ compacted_counts);
}
break;
case BRW_OPCODE_ELSE:
case BRW_OPCODE_ENDIF:
case BRW_OPCODE_WHILE:
- if (brw->gen >= 7) {
+ if (devinfo->gen >= 7) {
if (brw_inst_cmpt_control(devinfo, insn)) {
brw_inst uncompacted;
- brw_uncompact_instruction(brw, &uncompacted,
+ brw_uncompact_instruction(devinfo, &uncompacted,
(brw_compact_inst *)insn);
- update_uip_jip(brw, &uncompacted, this_old_ip, compacted_counts);
+ update_uip_jip(devinfo, &uncompacted, this_old_ip,
+ compacted_counts);
- bool ret = brw_try_compact_instruction(brw,
+ bool ret = brw_try_compact_instruction(devinfo,
(brw_compact_inst *)insn,
&uncompacted);
assert(ret); (void)ret;
} else {
- update_uip_jip(brw, insn, this_old_ip, compacted_counts);
+ update_uip_jip(devinfo, insn, this_old_ip, compacted_counts);
}
- } else if (brw->gen == 6) {
+ } else if (devinfo->gen == 6) {
assert(!brw_inst_cmpt_control(devinfo, insn));
/* Jump Count is in units of compacted instructions on Gen6. */
jump_count_compacted -= (target_compacted_count - this_compacted_count);
brw_inst_set_gen6_jump_count(devinfo, insn, jump_count_compacted);
} else {
- update_gen4_jump_count(brw, insn, this_old_ip, compacted_counts);
+ update_gen4_jump_count(devinfo, insn, this_old_ip,
+ compacted_counts);
}
break;