Cortex-A8: use the new inheritance/nesting scheme

Use target_to_armv7a() etc, replacing needless pointer traversals.
Stop using X->arch_info scheme in most ARMv7-A and Cortex-A8 code.

Signed-off-by: David Brownell <dbrownell@users.sourceforge.net>
This commit is contained in:
David Brownell 2009-11-05 22:04:13 -08:00
parent fec3c4763a
commit a81df55f39
4 changed files with 51 additions and 125 deletions

View File

@ -176,10 +176,7 @@ reg_t armv7a_gdb_dummy_fp_reg =
void armv7a_show_fault_registers(target_t *target) void armv7a_show_fault_registers(target_t *target)
{ {
uint32_t dfsr, ifsr, dfar, ifar; uint32_t dfsr, ifsr, dfar, ifar;
struct armv7a_common_s *armv7a = target_to_armv7a(target);
/* get pointers to arch-specific information */
armv4_5_common_t *armv4_5 = target->arch_info;
armv7a_common_t *armv7a = armv4_5->arch_info;
armv7a->read_cp15(target, 0, 0, 5, 0, &dfsr); armv7a->read_cp15(target, 0, 0, 5, 0, &dfsr);
armv7a->read_cp15(target, 0, 1, 5, 0, &ifsr); armv7a->read_cp15(target, 0, 1, 5, 0, &ifsr);
@ -200,8 +197,8 @@ int armv7a_arch_state(struct target_s *target)
"disabled", "enabled" "disabled", "enabled"
}; };
armv4_5_common_t *armv4_5 = target->arch_info; struct armv7a_common_s *armv7a = target_to_armv7a(target);
armv7a_common_t *armv7a = armv4_5->arch_info; struct armv4_5_common_s *armv4_5 = &armv7a->armv4_5_common;
if (armv4_5->common_magic != ARMV4_5_COMMON_MAGIC) if (armv4_5->common_magic != ARMV4_5_COMMON_MAGIC)
{ {
@ -237,8 +234,7 @@ static int handle_dap_baseaddr_command(struct command_context_s *cmd_ctx,
char *cmd, char **args, int argc) char *cmd, char **args, int argc)
{ {
target_t *target = get_current_target(cmd_ctx); target_t *target = get_current_target(cmd_ctx);
armv4_5_common_t *armv4_5 = target->arch_info; struct armv7a_common_s *armv7a = target_to_armv7a(target);
armv7a_common_t *armv7a = armv4_5->arch_info;
swjdp_common_t *swjdp = &armv7a->swjdp_info; swjdp_common_t *swjdp = &armv7a->swjdp_info;
return dap_baseaddr_command(cmd_ctx, swjdp, args, argc); return dap_baseaddr_command(cmd_ctx, swjdp, args, argc);
@ -248,8 +244,7 @@ static int handle_dap_memaccess_command(struct command_context_s *cmd_ctx,
char *cmd, char **args, int argc) char *cmd, char **args, int argc)
{ {
target_t *target = get_current_target(cmd_ctx); target_t *target = get_current_target(cmd_ctx);
armv4_5_common_t *armv4_5 = target->arch_info; struct armv7a_common_s *armv7a = target_to_armv7a(target);
armv7a_common_t *armv7a = armv4_5->arch_info;
swjdp_common_t *swjdp = &armv7a->swjdp_info; swjdp_common_t *swjdp = &armv7a->swjdp_info;
return dap_memaccess_command(cmd_ctx, swjdp, args, argc); return dap_memaccess_command(cmd_ctx, swjdp, args, argc);
@ -259,8 +254,7 @@ static int handle_dap_apsel_command(struct command_context_s *cmd_ctx,
char *cmd, char **args, int argc) char *cmd, char **args, int argc)
{ {
target_t *target = get_current_target(cmd_ctx); target_t *target = get_current_target(cmd_ctx);
armv4_5_common_t *armv4_5 = target->arch_info; struct armv7a_common_s *armv7a = target_to_armv7a(target);
armv7a_common_t *armv7a = armv4_5->arch_info;
swjdp_common_t *swjdp = &armv7a->swjdp_info; swjdp_common_t *swjdp = &armv7a->swjdp_info;
return dap_apsel_command(cmd_ctx, swjdp, args, argc); return dap_apsel_command(cmd_ctx, swjdp, args, argc);
@ -270,8 +264,7 @@ static int handle_dap_apid_command(struct command_context_s *cmd_ctx,
char *cmd, char **args, int argc) char *cmd, char **args, int argc)
{ {
target_t *target = get_current_target(cmd_ctx); target_t *target = get_current_target(cmd_ctx);
armv4_5_common_t *armv4_5 = target->arch_info; struct armv7a_common_s *armv7a = target_to_armv7a(target);
armv7a_common_t *armv7a = armv4_5->arch_info;
swjdp_common_t *swjdp = &armv7a->swjdp_info; swjdp_common_t *swjdp = &armv7a->swjdp_info;
return dap_apid_command(cmd_ctx, swjdp, args, argc); return dap_apid_command(cmd_ctx, swjdp, args, argc);
@ -281,8 +274,7 @@ static int handle_dap_info_command(struct command_context_s *cmd_ctx,
char *cmd, char **args, int argc) char *cmd, char **args, int argc)
{ {
target_t *target = get_current_target(cmd_ctx); target_t *target = get_current_target(cmd_ctx);
armv4_5_common_t *armv4_5 = target->arch_info; struct armv7a_common_s *armv7a = target_to_armv7a(target);
armv7a_common_t *armv7a = armv4_5->arch_info;
swjdp_common_t *swjdp = &armv7a->swjdp_info; swjdp_common_t *swjdp = &armv7a->swjdp_info;
uint32_t apsel; uint32_t apsel;
@ -305,7 +297,7 @@ handle_armv7a_disassemble_command(struct command_context_s *cmd_ctx,
char *cmd, char **args, int argc) char *cmd, char **args, int argc)
{ {
target_t *target = get_current_target(cmd_ctx); target_t *target = get_current_target(cmd_ctx);
armv4_5_common_t *armv4_5 = target->arch_info; struct armv4_5_common_s *armv4_5 = target_to_armv4_5(target);
int thumb = 0; int thumb = 0;
int count = 1; int count = 1;
uint32_t address; uint32_t address;
@ -342,7 +334,7 @@ handle_armv7a_disassemble_command(struct command_context_s *cmd_ctx,
default: default:
usage: usage:
command_print(cmd_ctx, command_print(cmd_ctx,
"usage: armv4_5 disassemble <address> [<count> ['thumb']]"); "usage: armv7a disassemble <address> [<count> ['thumb']]");
return ERROR_OK; return ERROR_OK;
} }

View File

@ -107,7 +107,6 @@ typedef struct armv7a_common_s
/* Cache and Memory Management Unit */ /* Cache and Memory Management Unit */
armv4_5_mmu_common_t armv4_5_mmu; armv4_5_mmu_common_t armv4_5_mmu;
armv4_5_common_t armv4_5_common; armv4_5_common_t armv4_5_common;
void *arch_info;
// int (*full_context)(struct target_s *target); // int (*full_context)(struct target_s *target);
// int (*read_core_reg)(struct target_s *target, int num, enum armv7a_mode mode); // int (*read_core_reg)(struct target_s *target, int num, enum armv7a_mode mode);

View File

@ -128,9 +128,7 @@ target_type_t cortexa8_target =
*/ */
int cortex_a8_init_debug_access(target_t *target) int cortex_a8_init_debug_access(target_t *target)
{ {
/* get pointers to arch-specific information */ struct armv7a_common_s *armv7a = target_to_armv7a(target);
armv4_5_common_t *armv4_5 = target->arch_info;
armv7a_common_t *armv7a = armv4_5->arch_info;
swjdp_common_t *swjdp = &armv7a->swjdp_info; swjdp_common_t *swjdp = &armv7a->swjdp_info;
int retval; int retval;
@ -160,9 +158,7 @@ int cortex_a8_exec_opcode(target_t *target, uint32_t opcode)
{ {
uint32_t dscr; uint32_t dscr;
int retval; int retval;
/* get pointers to arch-specific information */ struct armv7a_common_s *armv7a = target_to_armv7a(target);
armv4_5_common_t *armv4_5 = target->arch_info;
armv7a_common_t *armv7a = armv4_5->arch_info;
swjdp_common_t *swjdp = &armv7a->swjdp_info; swjdp_common_t *swjdp = &armv7a->swjdp_info;
LOG_DEBUG("exec opcode 0x%08" PRIx32, opcode); LOG_DEBUG("exec opcode 0x%08" PRIx32, opcode);
@ -203,9 +199,7 @@ int cortex_a8_read_regs_through_mem(target_t *target, uint32_t address,
uint32_t * regfile) uint32_t * regfile)
{ {
int retval = ERROR_OK; int retval = ERROR_OK;
/* get pointers to arch-specific information */ struct armv7a_common_s *armv7a = target_to_armv7a(target);
armv4_5_common_t *armv4_5 = target->arch_info;
armv7a_common_t *armv7a = armv4_5->arch_info;
swjdp_common_t *swjdp = &armv7a->swjdp_info; swjdp_common_t *swjdp = &armv7a->swjdp_info;
cortex_a8_dap_read_coreregister_u32(target, regfile, 0); cortex_a8_dap_read_coreregister_u32(target, regfile, 0);
@ -222,9 +216,7 @@ int cortex_a8_read_cp(target_t *target, uint32_t *value, uint8_t CP,
uint8_t op1, uint8_t CRn, uint8_t CRm, uint8_t op2) uint8_t op1, uint8_t CRn, uint8_t CRm, uint8_t op2)
{ {
int retval; int retval;
/* get pointers to arch-specific information */ struct armv7a_common_s *armv7a = target_to_armv7a(target);
armv4_5_common_t *armv4_5 = target->arch_info;
armv7a_common_t *armv7a = armv4_5->arch_info;
swjdp_common_t *swjdp = &armv7a->swjdp_info; swjdp_common_t *swjdp = &armv7a->swjdp_info;
cortex_a8_exec_opcode(target, ARMV4_5_MRC(CP, op1, 0, CRn, CRm, op2)); cortex_a8_exec_opcode(target, ARMV4_5_MRC(CP, op1, 0, CRn, CRm, op2));
@ -243,10 +235,7 @@ int cortex_a8_write_cp(target_t *target, uint32_t value,
{ {
int retval; int retval;
uint32_t dscr; uint32_t dscr;
struct armv7a_common_s *armv7a = target_to_armv7a(target);
/* get pointers to arch-specific information */
armv4_5_common_t *armv4_5 = target->arch_info;
armv7a_common_t *armv7a = armv4_5->arch_info;
swjdp_common_t *swjdp = &armv7a->swjdp_info; swjdp_common_t *swjdp = &armv7a->swjdp_info;
LOG_DEBUG("CP%i, CRn %i, value 0x%08" PRIx32, CP, CRn, value); LOG_DEBUG("CP%i, CRn %i, value 0x%08" PRIx32, CP, CRn, value);
@ -310,10 +299,7 @@ int cortex_a8_dap_read_coreregister_u32(target_t *target,
int retval = ERROR_OK; int retval = ERROR_OK;
uint8_t reg = regnum&0xFF; uint8_t reg = regnum&0xFF;
uint32_t dscr; uint32_t dscr;
struct armv7a_common_s *armv7a = target_to_armv7a(target);
/* get pointers to arch-specific information */
armv4_5_common_t *armv4_5 = target->arch_info;
armv7a_common_t *armv7a = armv4_5->arch_info;
swjdp_common_t *swjdp = &armv7a->swjdp_info; swjdp_common_t *swjdp = &armv7a->swjdp_info;
if (reg > 16) if (reg > 16)
@ -354,10 +340,7 @@ int cortex_a8_dap_write_coreregister_u32(target_t *target, uint32_t value, int r
int retval = ERROR_OK; int retval = ERROR_OK;
uint8_t Rd = regnum&0xFF; uint8_t Rd = regnum&0xFF;
uint32_t dscr; uint32_t dscr;
struct armv7a_common_s *armv7a = target_to_armv7a(target);
/* get pointers to arch-specific information */
armv4_5_common_t *armv4_5 = target->arch_info;
armv7a_common_t *armv7a = armv4_5->arch_info;
swjdp_common_t *swjdp = &armv7a->swjdp_info; swjdp_common_t *swjdp = &armv7a->swjdp_info;
LOG_DEBUG("register %i, value 0x%08" PRIx32, regnum, value); LOG_DEBUG("register %i, value 0x%08" PRIx32, regnum, value);
@ -404,10 +387,7 @@ int cortex_a8_dap_write_coreregister_u32(target_t *target, uint32_t value, int r
int cortex_a8_dap_write_memap_register_u32(target_t *target, uint32_t address, uint32_t value) int cortex_a8_dap_write_memap_register_u32(target_t *target, uint32_t address, uint32_t value)
{ {
int retval; int retval;
struct armv7a_common_s *armv7a = target_to_armv7a(target);
/* get pointers to arch-specific information */
armv4_5_common_t *armv4_5 = target->arch_info;
armv7a_common_t *armv7a = armv4_5->arch_info;
swjdp_common_t *swjdp = &armv7a->swjdp_info; swjdp_common_t *swjdp = &armv7a->swjdp_info;
retval = mem_ap_write_atomic_u32(swjdp, address, value); retval = mem_ap_write_atomic_u32(swjdp, address, value);
@ -423,16 +403,12 @@ int cortex_a8_poll(target_t *target)
{ {
int retval = ERROR_OK; int retval = ERROR_OK;
uint32_t dscr; uint32_t dscr;
/* get pointers to arch-specific information */ struct cortex_a8_common_s *cortex_a8 = target_to_cortex_a8(target);
armv4_5_common_t *armv4_5 = target->arch_info; struct armv7a_common_s *armv7a = &cortex_a8->armv7a_common;
armv7a_common_t *armv7a = armv4_5->arch_info;
cortex_a8_common_t *cortex_a8 = armv7a->arch_info;
swjdp_common_t *swjdp = &armv7a->swjdp_info; swjdp_common_t *swjdp = &armv7a->swjdp_info;
enum target_state prev_target_state = target->state; enum target_state prev_target_state = target->state;
uint8_t saved_apsel = dap_ap_get_select(swjdp); uint8_t saved_apsel = dap_ap_get_select(swjdp);
dap_ap_select(swjdp, swjdp_debugap); dap_ap_select(swjdp, swjdp_debugap);
retval = mem_ap_read_atomic_u32(swjdp, retval = mem_ap_read_atomic_u32(swjdp,
armv7a->debug_base + CPUDBG_DSCR, &dscr); armv7a->debug_base + CPUDBG_DSCR, &dscr);
@ -492,12 +468,8 @@ int cortex_a8_halt(target_t *target)
{ {
int retval = ERROR_OK; int retval = ERROR_OK;
uint32_t dscr; uint32_t dscr;
struct armv7a_common_s *armv7a = target_to_armv7a(target);
/* get pointers to arch-specific information */
armv4_5_common_t *armv4_5 = target->arch_info;
armv7a_common_t *armv7a = armv4_5->arch_info;
swjdp_common_t *swjdp = &armv7a->swjdp_info; swjdp_common_t *swjdp = &armv7a->swjdp_info;
uint8_t saved_apsel = dap_ap_get_select(swjdp); uint8_t saved_apsel = dap_ap_get_select(swjdp);
dap_ap_select(swjdp, swjdp_debugap); dap_ap_select(swjdp, swjdp_debugap);
@ -533,9 +505,8 @@ out:
int cortex_a8_resume(struct target_s *target, int current, int cortex_a8_resume(struct target_s *target, int current,
uint32_t address, int handle_breakpoints, int debug_execution) uint32_t address, int handle_breakpoints, int debug_execution)
{ {
/* get pointers to arch-specific information */ struct armv7a_common_s *armv7a = target_to_armv7a(target);
armv4_5_common_t *armv4_5 = target->arch_info; struct armv4_5_common_s *armv4_5 = &armv7a->armv4_5_common;
armv7a_common_t *armv7a = armv4_5->arch_info;
swjdp_common_t *swjdp = &armv7a->swjdp_info; swjdp_common_t *swjdp = &armv7a->swjdp_info;
// breakpoint_t *breakpoint = NULL; // breakpoint_t *breakpoint = NULL;
@ -658,11 +629,9 @@ int cortex_a8_debug_entry(target_t *target)
uint32_t regfile[16], pc, cpsr, dscr; uint32_t regfile[16], pc, cpsr, dscr;
int retval = ERROR_OK; int retval = ERROR_OK;
working_area_t *regfile_working_area = NULL; working_area_t *regfile_working_area = NULL;
struct cortex_a8_common_s *cortex_a8 = target_to_cortex_a8(target);
/* get pointers to arch-specific information */ struct armv7a_common_s *armv7a = target_to_armv7a(target);
armv4_5_common_t *armv4_5 = target->arch_info; struct armv4_5_common_s *armv4_5 = &armv7a->armv4_5_common;
armv7a_common_t *armv7a = armv4_5->arch_info;
cortex_a8_common_t *cortex_a8 = armv7a->arch_info;
swjdp_common_t *swjdp = &armv7a->swjdp_info; swjdp_common_t *swjdp = &armv7a->swjdp_info;
LOG_DEBUG("dscr = 0x%08" PRIx32, cortex_a8->cpudbg_dscr); LOG_DEBUG("dscr = 0x%08" PRIx32, cortex_a8->cpudbg_dscr);
@ -785,10 +754,8 @@ int cortex_a8_debug_entry(target_t *target)
void cortex_a8_post_debug_entry(target_t *target) void cortex_a8_post_debug_entry(target_t *target)
{ {
/* get pointers to arch-specific information */ struct cortex_a8_common_s *cortex_a8 = target_to_cortex_a8(target);
armv4_5_common_t *armv4_5 = target->arch_info; struct armv7a_common_s *armv7a = &cortex_a8->armv7a_common;
armv7a_common_t *armv7a = armv4_5->arch_info;
cortex_a8_common_t *cortex_a8 = armv7a->arch_info;
// cortex_a8_read_cp(target, &cp15_control_register, 15, 0, 1, 0, 0); // cortex_a8_read_cp(target, &cp15_control_register, 15, 0, 1, 0, 0);
/* examine cp15 control reg */ /* examine cp15 control reg */
@ -820,9 +787,8 @@ void cortex_a8_post_debug_entry(target_t *target)
int cortex_a8_step(struct target_s *target, int current, uint32_t address, int cortex_a8_step(struct target_s *target, int current, uint32_t address,
int handle_breakpoints) int handle_breakpoints)
{ {
/* get pointers to arch-specific information */ struct armv7a_common_s *armv7a = target_to_armv7a(target);
armv4_5_common_t *armv4_5 = target->arch_info; struct armv4_5_common_s *armv4_5 = &armv7a->armv4_5_common;
armv7a_common_t *armv7a = armv4_5->arch_info;
breakpoint_t *breakpoint = NULL; breakpoint_t *breakpoint = NULL;
breakpoint_t stepbreakpoint; breakpoint_t stepbreakpoint;
@ -901,10 +867,8 @@ int cortex_a8_restore_context(target_t *target)
{ {
int i; int i;
uint32_t value; uint32_t value;
struct armv7a_common_s *armv7a = target_to_armv7a(target);
/* get pointers to arch-specific information */ struct armv4_5_common_s *armv4_5 = &armv7a->armv4_5_common;
armv4_5_common_t *armv4_5 = target->arch_info;
armv7a_common_t *armv7a = armv4_5->arch_info;
LOG_DEBUG(" "); LOG_DEBUG(" ");
@ -939,8 +903,7 @@ int cortex_a8_load_core_reg_u32(struct target_s *target, int num,
armv4_5_mode_t mode, uint32_t * value) armv4_5_mode_t mode, uint32_t * value)
{ {
int retval; int retval;
/* get pointers to arch-specific information */ struct armv4_5_common_s *armv4_5 = target_to_armv4_5(target);
armv4_5_common_t *armv4_5 = target->arch_info;
if ((num <= ARM_CPSR)) if ((num <= ARM_CPSR))
{ {
@ -978,9 +941,7 @@ int cortex_a8_store_core_reg_u32(struct target_s *target, int num,
{ {
int retval; int retval;
// uint32_t reg; // uint32_t reg;
struct armv4_5_common_s *armv4_5 = target_to_armv4_5(target);
/* get pointers to arch-specific information */
armv4_5_common_t *armv4_5 = target->arch_info;
#ifdef ARMV7_GDB_HACKS #ifdef ARMV7_GDB_HACKS
/* If the LR register is being modified, make sure it will put us /* If the LR register is being modified, make sure it will put us
@ -1021,7 +982,8 @@ int cortex_a8_read_core_reg(struct target_s *target, int num,
{ {
uint32_t value; uint32_t value;
int retval; int retval;
armv4_5_common_t *armv4_5 = target->arch_info; struct armv4_5_common_s *armv4_5 = target_to_armv4_5(target);
cortex_a8_dap_read_coreregister_u32(target, &value, num); cortex_a8_dap_read_coreregister_u32(target, &value, num);
if ((retval = jtag_execute_queue()) != ERROR_OK) if ((retval = jtag_execute_queue()) != ERROR_OK)
@ -1041,7 +1003,7 @@ int cortex_a8_write_core_reg(struct target_s *target, int num,
enum armv4_5_mode mode, uint32_t value) enum armv4_5_mode mode, uint32_t value)
{ {
int retval; int retval;
armv4_5_common_t *armv4_5 = target->arch_info; struct armv4_5_common_s *armv4_5 = target_to_armv4_5(target);
cortex_a8_dap_write_coreregister_u32(target, value, num); cortex_a8_dap_write_coreregister_u32(target, value, num);
if ((retval = jtag_execute_queue()) != ERROR_OK) if ((retval = jtag_execute_queue()) != ERROR_OK)
@ -1068,12 +1030,8 @@ int cortex_a8_set_breakpoint(struct target_s *target,
int brp_i=0; int brp_i=0;
uint32_t control; uint32_t control;
uint8_t byte_addr_select = 0x0F; uint8_t byte_addr_select = 0x0F;
struct cortex_a8_common_s *cortex_a8 = target_to_cortex_a8(target);
struct armv7a_common_s *armv7a = &cortex_a8->armv7a_common;
/* get pointers to arch-specific information */
armv4_5_common_t *armv4_5 = target->arch_info;
armv7a_common_t *armv7a = armv4_5->arch_info;
cortex_a8_common_t *cortex_a8 = armv7a->arch_info;
cortex_a8_brp_t * brp_list = cortex_a8->brp_list; cortex_a8_brp_t * brp_list = cortex_a8->brp_list;
if (breakpoint->set) if (breakpoint->set)
@ -1143,10 +1101,8 @@ int cortex_a8_set_breakpoint(struct target_s *target,
int cortex_a8_unset_breakpoint(struct target_s *target, breakpoint_t *breakpoint) int cortex_a8_unset_breakpoint(struct target_s *target, breakpoint_t *breakpoint)
{ {
int retval; int retval;
/* get pointers to arch-specific information */ struct cortex_a8_common_s *cortex_a8 = target_to_cortex_a8(target);
armv4_5_common_t *armv4_5 = target->arch_info; struct armv7a_common_s *armv7a = &cortex_a8->armv7a_common;
armv7a_common_t *armv7a = armv4_5->arch_info;
cortex_a8_common_t *cortex_a8 = armv7a->arch_info;
cortex_a8_brp_t * brp_list = cortex_a8->brp_list; cortex_a8_brp_t * brp_list = cortex_a8->brp_list;
if (!breakpoint->set) if (!breakpoint->set)
@ -1202,10 +1158,7 @@ int cortex_a8_unset_breakpoint(struct target_s *target, breakpoint_t *breakpoint
int cortex_a8_add_breakpoint(struct target_s *target, breakpoint_t *breakpoint) int cortex_a8_add_breakpoint(struct target_s *target, breakpoint_t *breakpoint)
{ {
/* get pointers to arch-specific information */ struct cortex_a8_common_s *cortex_a8 = target_to_cortex_a8(target);
armv4_5_common_t *armv4_5 = target->arch_info;
armv7a_common_t *armv7a = armv4_5->arch_info;
cortex_a8_common_t *cortex_a8 = armv7a->arch_info;
if ((breakpoint->type == BKPT_HARD) && (cortex_a8->brp_num_available < 1)) if ((breakpoint->type == BKPT_HARD) && (cortex_a8->brp_num_available < 1))
{ {
@ -1222,10 +1175,7 @@ int cortex_a8_add_breakpoint(struct target_s *target, breakpoint_t *breakpoint)
int cortex_a8_remove_breakpoint(struct target_s *target, breakpoint_t *breakpoint) int cortex_a8_remove_breakpoint(struct target_s *target, breakpoint_t *breakpoint)
{ {
/* get pointers to arch-specific information */ struct cortex_a8_common_s *cortex_a8 = target_to_cortex_a8(target);
armv4_5_common_t *armv4_5 = target->arch_info;
armv7a_common_t *armv7a = armv4_5->arch_info;
cortex_a8_common_t *cortex_a8 = armv7a->arch_info;
#if 0 #if 0
/* It is perfectly possible to remove brakpoints while the taget is running */ /* It is perfectly possible to remove brakpoints while the taget is running */
@ -1291,9 +1241,7 @@ int cortex_a8_deassert_reset(target_t *target)
int cortex_a8_read_memory(struct target_s *target, uint32_t address, int cortex_a8_read_memory(struct target_s *target, uint32_t address,
uint32_t size, uint32_t count, uint8_t *buffer) uint32_t size, uint32_t count, uint8_t *buffer)
{ {
/* get pointers to arch-specific information */ struct armv7a_common_s *armv7a = target_to_armv7a(target);
armv4_5_common_t *armv4_5 = target->arch_info;
armv7a_common_t *armv7a = armv4_5->arch_info;
swjdp_common_t *swjdp = &armv7a->swjdp_info; swjdp_common_t *swjdp = &armv7a->swjdp_info;
int retval = ERROR_OK; int retval = ERROR_OK;
@ -1328,9 +1276,7 @@ int cortex_a8_read_memory(struct target_s *target, uint32_t address,
int cortex_a8_write_memory(struct target_s *target, uint32_t address, int cortex_a8_write_memory(struct target_s *target, uint32_t address,
uint32_t size, uint32_t count, uint8_t *buffer) uint32_t size, uint32_t count, uint8_t *buffer)
{ {
/* get pointers to arch-specific information */ struct armv7a_common_s *armv7a = target_to_armv7a(target);
armv4_5_common_t *armv4_5 = target->arch_info;
armv7a_common_t *armv7a = armv4_5->arch_info;
swjdp_common_t *swjdp = &armv7a->swjdp_info; swjdp_common_t *swjdp = &armv7a->swjdp_info;
int retval; int retval;
@ -1416,11 +1362,9 @@ int cortex_a8_handle_target_request(void *priv)
target_t *target = priv; target_t *target = priv;
if (!target->type->examined) if (!target->type->examined)
return ERROR_OK; return ERROR_OK;
armv4_5_common_t *armv4_5 = target->arch_info; struct armv7a_common_s *armv7a = target_to_armv7a(target);
armv7a_common_t *armv7a = armv4_5->arch_info;
swjdp_common_t *swjdp = &armv7a->swjdp_info; swjdp_common_t *swjdp = &armv7a->swjdp_info;
if (!target->dbg_msg_enabled) if (!target->dbg_msg_enabled)
return ERROR_OK; return ERROR_OK;
@ -1457,13 +1401,9 @@ int cortex_a8_handle_target_request(void *priv)
int cortex_a8_examine(struct target_s *target) int cortex_a8_examine(struct target_s *target)
{ {
/* get pointers to arch-specific information */ struct cortex_a8_common_s *cortex_a8 = target_to_cortex_a8(target);
armv4_5_common_t *armv4_5 = target->arch_info; struct armv7a_common_s *armv7a = &cortex_a8->armv7a_common;
armv7a_common_t *armv7a = armv4_5->arch_info;
cortex_a8_common_t *cortex_a8 = armv7a->arch_info;
swjdp_common_t *swjdp = &armv7a->swjdp_info; swjdp_common_t *swjdp = &armv7a->swjdp_info;
int i; int i;
int retval = ERROR_OK; int retval = ERROR_OK;
uint32_t didr, ctypr, ttypr, cpuid; uint32_t didr, ctypr, ttypr, cpuid;
@ -1559,8 +1499,7 @@ int cortex_a8_examine(struct target_s *target)
void cortex_a8_build_reg_cache(target_t *target) void cortex_a8_build_reg_cache(target_t *target)
{ {
reg_cache_t **cache_p = register_get_last_cache_p(&target->reg_cache); reg_cache_t **cache_p = register_get_last_cache_p(&target->reg_cache);
/* get pointers to arch-specific information */ struct armv4_5_common_s *armv4_5 = target_to_armv4_5(target);
armv4_5_common_t *armv4_5 = target->arch_info;
(*cache_p) = armv4_5_build_reg_cache(target, armv4_5); (*cache_p) = armv4_5_build_reg_cache(target, armv4_5);
armv4_5->core_cache = (*cache_p); armv4_5->core_cache = (*cache_p);
@ -1586,8 +1525,6 @@ int cortex_a8_init_arch_info(target_t *target,
/* Setup cortex_a8_common_t */ /* Setup cortex_a8_common_t */
cortex_a8->common_magic = CORTEX_A8_COMMON_MAGIC; cortex_a8->common_magic = CORTEX_A8_COMMON_MAGIC;
cortex_a8->arch_info = NULL;
armv7a->arch_info = cortex_a8;
armv4_5->arch_info = armv7a; armv4_5->arch_info = armv7a;
armv4_5_init_arch_info(target, armv4_5); armv4_5_init_arch_info(target, armv4_5);
@ -1656,8 +1593,7 @@ static int cortex_a8_handle_cache_info_command(struct command_context_s *cmd_ctx
char *cmd, char **args, int argc) char *cmd, char **args, int argc)
{ {
target_t *target = get_current_target(cmd_ctx); target_t *target = get_current_target(cmd_ctx);
armv4_5_common_t *armv4_5 = target->arch_info; struct armv7a_common_s *armv7a = target_to_armv7a(target);
armv7a_common_t *armv7a = armv4_5->arch_info;
return armv4_5_handle_cache_info_command(cmd_ctx, return armv4_5_handle_cache_info_command(cmd_ctx,
&armv7a->armv4_5_mmu.armv4_5_cache); &armv7a->armv4_5_mmu.armv4_5_cache);

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@ -134,7 +134,6 @@ typedef struct cortex_a8_common_s
int fast_reg_read; int fast_reg_read;
armv7a_common_t armv7a_common; armv7a_common_t armv7a_common;
void *arch_info;
} cortex_a8_common_t; } cortex_a8_common_t;
static inline struct cortex_a8_common_s * static inline struct cortex_a8_common_s *