增加从站回环的代码,仅加了一个,但是仿真结果有错误,需要检查

This commit is contained in:
2025-02-10 00:03:16 +08:00
parent fd74e07123
commit 9943b5c044
6 changed files with 273 additions and 501 deletions

View File

@@ -3,21 +3,7 @@
#include "mstMainCfg.h"
#include "sysDef.h"
volatile uint32_t *plic_priority_3 = (uint32_t*)( 0xc000000U + 0X000004 * 3);
volatile uint32_t *plic_priority_4 = (uint32_t*)( 0xc000000U + 0X000004 * 4);
volatile uint32_t *plic_priority_5 = (uint32_t*)( 0xc000000U + 0X000004 * 5);
volatile uint32_t *plic_priority_6 = (uint32_t*)( 0xc000000U + 0X000004 * 6);
volatile uint32_t *plic_priority_TxEnd = (uint32_t*)( 0xc000000U + 0X000004 * CDR_INT_TXEND);
volatile uint32_t *plic_priority_RxError = (uint32_t*)( 0xc000000U + 0X000004 * CDR_INT_RXERROR);
volatile uint32_t *plic_priority_RxStart = (uint32_t*)( 0xc000000U + 0X000004 * CDR_INT_RXSTART);
volatile uint32_t *plic_priority_RxEnd = (uint32_t*)( 0xc000000U + 0X000004 * CDR_INT_RXEND);
volatile uint32_t *plic_priority_18 = (uint32_t*)( 0xc000000U + 0X000004 * 18);
volatile uint32_t *plic_priority_19 = (uint32_t*)( 0xc000000U + 0X000004 * 19);
volatile uint32_t *plic_priority_20 = (uint32_t*)( 0xc000000U + 0X000004 * 20);
volatile uint32_t *plic_priority_21 = (uint32_t*)( 0xc000000U + 0X000004 * 21);
volatile uint32_t *const plic_priority = (uint32_t *)(0xc000000U);
volatile uint32_t *plic_pending_0_31 = (uint32_t*)( 0xc000000U + 0X001000 );
volatile uint32_t *plic_enable_0_31 = (uint32_t*)( 0xc000000U + 0X002000 );
@@ -37,26 +23,8 @@ extern const uint8_t int_svr_code[];
uint32_t (*sys_call)(uint32_t no, ...);
void main()
{
#if 0
uint32_t readDat;
uint32_t operator;
uint32_t downRecvLen;
uint32_t upRecvLen;
uint32_t slvNum;
uint32_t totNum;
uint32_t isLast;
uint32_t crc;
#endif
int i;
/*初始化plic*/
*plic_enable_0_31 = 1 << CDR_INT_TX0END
//| 1 << CDR_INT_TX1END
@@ -77,10 +45,19 @@ void main()
| 1 << CDR_INT_RX1_FIFO_ENQ
;
*plic_priority_TxEnd = 1;
*plic_priority_RxError = 1;
*plic_priority_RxStart = 1;
*plic_priority_RxEnd = 1;
plic_priority[CDR_INT_TX0END] = 1;
plic_priority[CDR_INT_TX1END] = 1;
plic_priority[CDR_INT_RX0ERROR] = 1;
plic_priority[CDR_INT_RX1ERROR] = 1;
plic_priority[CDR_INT_RX0START] = 1;
plic_priority[CDR_INT_RX1START] = 1;
plic_priority[CDR_INT_RX0END] = 1;
plic_priority[CDR_INT_RX1END] = 1;
plic_priority[CDR_INT_TX0_FIFO_DEQ] = 1;
plic_priority[CDR_INT_TX1_FIFO_DEQ] = 1;
plic_priority[CDR_INT_RX0_FIFO_ENQ] = 1;
plic_priority[CDR_INT_RX1_FIFO_ENQ] = 1;
*plic_threshold_0 = 0;
#if 0
@@ -95,6 +72,7 @@ void main()
//延迟等待从机复位,初始化
for (i = 0; i < 100; i++)
asm volatile("nop");
#endif
//while (init_svr_code() != 1);

View File

@@ -6,22 +6,7 @@
#include "tl2cdr.h"
volatile uint32_t *plic_priority_3 = (uint32_t*)( 0xc000000U + 0X000004 * 3);
volatile uint32_t *plic_priority_4 = (uint32_t*)( 0xc000000U + 0X000004 * 4);
volatile uint32_t *plic_priority_5 = (uint32_t*)( 0xc000000U + 0X000004 * 5);
volatile uint32_t *plic_priority_6 = (uint32_t*)( 0xc000000U + 0X000004 * 6);
volatile uint32_t *plic_priority_TxEnd = (uint32_t*)( 0xc000000U + 0X000004 * CDR_INT_TXEND);
volatile uint32_t *plic_priority_RxError = (uint32_t*)( 0xc000000U + 0X000004 * CDR_INT_RXERROR);
volatile uint32_t *plic_priority_RxStart = (uint32_t*)( 0xc000000U + 0X000004 * CDR_INT_RXSTART);
volatile uint32_t *plic_priority_RxEnd = (uint32_t*)( 0xc000000U + 0X000004 * CDR_INT_RXEND);
volatile uint32_t *plic_priority_18 = (uint32_t*)( 0xc000000U + 0X000004 * 18);
volatile uint32_t *plic_priority_19 = (uint32_t*)( 0xc000000U + 0X000004 * 19);
volatile uint32_t *plic_priority_20 = (uint32_t*)( 0xc000000U + 0X000004 * 20);
volatile uint32_t *plic_priority_21 = (uint32_t*)( 0xc000000U + 0X000004 * 21);
volatile uint32_t *const plic_priority = (uint32_t *)(0xc000000U);
volatile uint32_t *plic_pending_0_31 = (uint32_t*)( 0xc000000U + 0X001000 );
volatile uint32_t *plic_enable_0_31 = (uint32_t*)( 0xc000000U + 0X002000 );
@@ -29,38 +14,6 @@ volatile uint32_t *plic_enable_0_31 = (uint32_t*)( 0xc000000U + 0X002000 );
volatile uint32_t *plic_threshold_0 = (uint32_t*)( 0xc000000U + 0X200000 );
volatile uint32_t *plic_claim = (uint32_t*)( 0xc000000U + 0X200004 );
volatile uint32_t flag_intTxEnd = 0;
volatile uint32_t flag_intRxError = 0;
volatile uint32_t flag_intRxStart = 0;
volatile uint32_t flag_intRxEnd = 0;
void plic_handle(){
// 从 PLIC 中获取中断源 ID
uint32_t claim = *plic_claim;
if( claim == CDR_INT_TXEND ){
flag_intTxEnd = 1;
} else if( claim == CDR_INT_RXERROR ){
flag_intRxError = 1;
} else if( claim == CDR_INT_RXSTART ){
flag_intRxStart = 1;
} else if( claim == CDR_INT_RXEND ){
flag_intRxEnd = 1;
}
// 通知 PLIC 完成中断处理
*plic_claim = claim;
return;
}
static inline void error() {
while(1);
}
@@ -68,12 +21,70 @@ static inline void error() {
extern const uint8_t int_svr_code[];
uint32_t (*sys_call)(uint32_t no, ...);
void main()
{
int i;
/*初始化plic*/
*plic_enable_0_31 = 1 << CDR_INT_TX0END
| 1 << CDR_INT_TX1END
| 1 << CDR_INT_RX0ERROR
| 1 << CDR_INT_RX1ERROR
| 1 << CDR_INT_RX0START
| 1 << CDR_INT_RX1START
| 1 << CDR_INT_RX0END
| 1 << CDR_INT_RX1END
//| 1 << CDR_INT_TX0_FIFO_DEQ
//| 1 << CDR_INT_TX1_FIFO_DEQ
| 1 << CDR_INT_RX0_FIFO_ENQ
| 1 << CDR_INT_RX1_FIFO_ENQ
;
plic_priority[CDR_INT_TX0END] = 1;
plic_priority[CDR_INT_TX1END] = 1;
plic_priority[CDR_INT_RX0ERROR] = 1;
plic_priority[CDR_INT_RX1ERROR] = 1;
plic_priority[CDR_INT_RX0START] = 1;
plic_priority[CDR_INT_RX1START] = 1;
plic_priority[CDR_INT_RX0END] = 1;
plic_priority[CDR_INT_RX1END] = 1;
plic_priority[CDR_INT_TX0_FIFO_DEQ] = 1;
plic_priority[CDR_INT_TX1_FIFO_DEQ] = 1;
plic_priority[CDR_INT_RX0_FIFO_ENQ] = 1;
plic_priority[CDR_INT_RX1_FIFO_ENQ] = 1;
*plic_threshold_0 = 0;
sys_call = (void *)int_svr_code;
//复位脉冲
*tx0_softReset = 1;
*tx1_softReset = 1;
*rx0_softReset = 1;
*rx1_softReset = 1;
//tx0 下行
//tx1 上行
//rx0 下行
//rx1 上行
while (1);
#if 0
register uint32_t readDat;
register uint32_t operator;
register uint32_t downRecvLen;
@@ -447,7 +458,7 @@ void main()
// error();
}
}
#endif
}

View File

@@ -65,234 +65,3 @@ _prog_start:
call main
ecall
#if 0
.balign 32
.section .trap_entry, "ax", %progbits
trap_entry:
addi sp,sp,-136
sw ra,4(sp)
sw sp,8(sp)
sw gp,12(sp)
sw tp,16(sp)
sw t0,20(sp)
sw t1,24(sp)
sw t2,28(sp)
sw s0,32(sp)
sw s1,36(sp)
sw a0,40(sp)
sw a1,44(sp)
sw a2,48(sp)
sw a3,52(sp)
sw a4,56(sp)
sw a5,60(sp)
#ifdef __RV32I_MARCH__
sw a6,64(sp)
sw a7,68(sp)
sw s2,72(sp)
sw s3,76(sp)
sw s4,80(sp)
sw s5,84(sp)
sw s6,88(sp)
sw s7,92(sp)
sw s8,96(sp)
sw s9,100(sp)
sw s10,104(sp)
sw s11,108(sp)
sw t3,112(sp)
sw t4,116(sp)
sw t5,120(sp)
sw t6,124(sp)
#endif
#if 0
csrr t0, mstatus # mstatus
andi t0, t0, ~(1 << 3) # MIE ()
csrw mstatus, t0 # mstatus
#endif
call plic_handle
#if 0
csrr t0, mstatus
ori t0, t0, 1<<3
csrw mstatus, t0
#endif
lw ra,4(sp)
lw sp,8(sp)
lw gp,12(sp)
lw tp,16(sp)
lw t0,20(sp)
lw t1,24(sp)
lw t2,28(sp)
lw s0,32(sp)
lw s1,36(sp)
lw a0,40(sp)
lw a1,44(sp)
lw a2,48(sp)
lw a3,52(sp)
lw a4,56(sp)
lw a5,60(sp)
#ifdef __RV32I_MARCH__
lw a6,64(sp)
lw a7,68(sp)
lw s2,72(sp)
lw s3,76(sp)
lw s4,80(sp)
lw s5,84(sp)
lw s6,88(sp)
lw s7,92(sp)
lw s8,96(sp)
lw s9,100(sp)
lw s10,104(sp)
lw s11,108(sp)
lw t3,112(sp)
lw t4,116(sp)
lw t5,120(sp)
lw t6,124(sp)
#endif
addi sp,sp,136
mret
#.macro define_const name, value
# .equ \name, \value
#.endm
## 使
#define_const CDR_INT_TXEND, 14
opt_trap_entry:
addi sp,sp,-136
#sw ra,4(sp)
#sw sp,8(sp)
#sw gp,12(sp)
#sw tp,16(sp)
sw t0,20(sp)
sw t1,24(sp)
#sw t2,28(sp)
sw s0,32(sp)
sw s1,36(sp)
#sw a0,40(sp)
#sw a1,44(sp)
#sw a2,48(sp)
#sw a3,52(sp)
#sw a4,56(sp)
#sw a5,60(sp)
#sw a6,64(sp)
#sw a7,68(sp)
#sw s2,72(sp)
#sw s3,76(sp)
#sw s4,80(sp)
#sw s5,84(sp)
#sw s6,88(sp)
#sw s7,92(sp)
#sw s8,96(sp)
#sw s9,100(sp)
#sw s10,104(sp)
#sw s11,108(sp)
#sw t3,112(sp)
#sw t4,116(sp)
#sw t5,120(sp)
#sw t6,124(sp)
#if 0
csrr t0, mstatus # mstatus
andi t0, t0, ~(1 << 3) # MIE ()
csrw mstatus, t0 # mstatus
#endif
lui t1, %hi(plic_claim)
lw t0, %lo(plic_claim)(t1) # t0 = &plic_claim
lw t1, 0(t0) # t1 = *plic_claim
sw t1, 0(t0) # *plic_claim = t1
li s0, CDR_INT_TXEND
bne t1, s0, 1f #_if (t1 != s0) goto 1f
lui s0,%hi(flag_intTxEnd) #_else
li s1,1
sw s1,%lo(flag_intTxEnd)(s0)
j 4f
1:
li s0, CDR_INT_RXERROR
bne t1, s0, 2f #_if (t1 != s0) goto 2f
lui s0,%hi(flag_intRxError) #_else
li s1,1
sw s1,%lo(flag_intRxError)(s0)
j 4f
2:
li s0, CDR_INT_RXSTART
bne t1, s0, 3f #_if (t1 != s0) goto 3f
lui s0,%hi(flag_intRxStart) #_else
li s1,1
sw s1,%lo(flag_intRxStart)(s0)
j 4f
3:
li s0, CDR_INT_RXEND
bne t1, s0, 4f #_if (t1 != s0) goto 4f
lui s0,%hi(flag_intRxEnd) #_else
li s1,1
sw s1,%lo(flag_intRxEnd)(s0)
4:
#if 0
csrr t0, mstatus
ori t0, t0, 1<<3
csrw mstatus, t0
#endif
#lw ra,4(sp)
#lw sp,8(sp)
#lw gp,12(sp)
#lw tp,16(sp)
lw t0,20(sp)
lw t1,24(sp)
#lw t2,28(sp)
lw s0,32(sp)
lw s1,36(sp)
#lw a0,40(sp)
#lw a1,44(sp)
#lw a2,48(sp)
#lw a3,52(sp)
#lw a4,56(sp)
#lw a5,60(sp)
#lw a6,64(sp)
#lw a7,68(sp)
#lw s2,72(sp)
#lw s3,76(sp)
#lw s4,80(sp)
#lw s5,84(sp)
#lw s6,88(sp)
#lw s7,92(sp)
#lw s8,96(sp)
#lw s9,100(sp)
#lw s10,104(sp)
#lw s11,108(sp)
#lw t3,112(sp)
#lw t4,116(sp)
#lw t5,120(sp)
#lw t6,124(sp)
addi sp,sp,136
mret
#endif

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@@ -4,22 +4,12 @@
#include "tl2cdr.h"
.extern main
.extern plic_handle
.extern int_svr_code
.extern plic_claim
.extern flag_intTxEnd
.extern flag_intRxError
.extern flag_intRxStart
.extern flag_intRxEnd
.globl _prog_start
.section .text.init
_prog_start:
li x1, 0
li x2, 0
li x3, 0
@@ -55,19 +45,14 @@ _prog_start:
#endif
li sp, 0x40011000
li a0, 0
lui t0, %hi(plic_claim)
lw a0, %lo(plic_claim)(t0)
la a1, flag_intTxEnd
la a2, flag_intRxError
la a3, flag_intRxStart
la a4, flag_intRxEnd
lw a1, %lo(plic_claim)(t0)
call int_svr_code
mv t0, a0 #trap_entry,RV32I
#la t0, trap_entry #trap_entryRV32E
csrw mtvec, t0
li t0, 1 << 11
csrw mie, t0
@@ -80,85 +65,3 @@ _prog_start:
ecall
.balign 32
.section .trap_entry, "ax", %progbits
trap_entry:
addi sp,sp,-136
sw ra,4(sp)
sw sp,8(sp)
sw gp,12(sp)
sw tp,16(sp)
sw t0,20(sp)
sw t1,24(sp)
sw t2,28(sp)
sw s0,32(sp)
sw s1,36(sp)
sw a0,40(sp)
sw a1,44(sp)
sw a2,48(sp)
sw a3,52(sp)
sw a4,56(sp)
sw a5,60(sp)
#ifdef __RV32I_MARCH__
sw a6,64(sp)
sw a7,68(sp)
sw s2,72(sp)
sw s3,76(sp)
sw s4,80(sp)
sw s5,84(sp)
sw s6,88(sp)
sw s7,92(sp)
sw s8,96(sp)
sw s9,100(sp)
sw s10,104(sp)
sw s11,108(sp)
sw t3,112(sp)
sw t4,116(sp)
sw t5,120(sp)
sw t6,124(sp)
#endif
call plic_handle
lw ra,4(sp)
lw sp,8(sp)
lw gp,12(sp)
lw tp,16(sp)
lw t0,20(sp)
lw t1,24(sp)
lw t2,28(sp)
lw s0,32(sp)
lw s1,36(sp)
lw a0,40(sp)
lw a1,44(sp)
lw a2,48(sp)
lw a3,52(sp)
lw a4,56(sp)
lw a5,60(sp)
#ifdef __RV32I_MARCH__
lw a6,64(sp)
lw a7,68(sp)
lw s2,72(sp)
lw s3,76(sp)
lw s4,80(sp)
lw s5,84(sp)
lw s6,88(sp)
lw s7,92(sp)
lw s8,96(sp)
lw s9,100(sp)
lw s10,104(sp)
lw s11,108(sp)
lw t3,112(sp)
lw t4,116(sp)
lw t5,120(sp)
lw t6,124(sp)
#endif
addi sp,sp,136
mret

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@@ -1,65 +1,213 @@
#include "tl2cdr.h"
#include "sysDef.h"
#if 0
/*
使RV32E RV32I 使x0, x16~x31
便使ABI使x0, x16~x31x1~x15使ABI
x16~x23, 使
x24, TL2CDR_BASE
x25, 4
x26, 4(tx0_txLen)
x27,
x28, plic_claim
x29, REG_ISR_ADDR
x30,
x31,
*/
#endif
#define REG_TL2CDR_BASE x24
#define REG_rx_data x25
#define REG_tx_data x26
#define REG_tx_data_len x27
#define REG_plic_claim x28
#define REG_ISR_ADDR x29
#define REG_min_isr_num x30
#define REG_max_isr_num x31
#define REG_4 x23
.globl _prog_start
.globl _rv32i_plic_handle
.section .text.init, "ax", %progbits
#if 0
#使RV32E RV32I 使x0, x16~x31
#便使ABI使x0, x16~x31x1~x15使ABI
#endif
_prog_start:
li x16, 0
//a0 call_function no
li x16, SYS_INIT
beqz a0, init_system_func //
mv x17, a0 # plic_claim
mv x18, a1 # flag_intTxEnd
mv x19, a2 # flag_intRxError
mv x20, a3 # flag_intRxStart
mv x21, a4 # flag_intRxEnd
mv x22, x0
li x16, SYS_SEND_DATA
beq a0, x16, send_data_func
#lui x23, %hi(_rv32i_plic_handle)
#lw x24, %lo(_rv32i_plic_handle)(x23)
li x16, SYS_SET_RECV_INFO
beq a0, x16, set_recv_info_func
la x24, _rv32i_plic_handle
10: j 10b //
ret //
li x25, 1
li x26, 0
li x27, 0
li x28, CDR_INT_TXEND
li x29, CDR_INT_RXERROR
li x30, CDR_INT_RXSTART
li x31, CDR_INT_RXEND
mv a0, x24
//
//a1, plic_claim,
init_system_func:
mv REG_plic_claim, a1 # plic_claim
li x23, 0
li x24, 0
la x17, _rv32i_plic_handle
mv a0, x17
li REG_TL2CDR_BASE, TL2CDR_BASE
la REG_ISR_ADDR, isr_hdl_table
li REG_min_isr_num, 14
li REG_max_isr_num, 25
li REG_4, 4
li x21, 0
ret
//
//
//a1,
//a2,
//a3, dummy
//a4, dummy
send_data_func:
mv REG_tx_data, a1
mv REG_tx_data_len, a2
//*tx0_txLen = 8 + tx_len; //前导+长度命令
mv x16, a2
addi x17, x16, 8
sw x17, TX0_WriteTxLen(REG_TL2CDR_BASE)
//*tx0_txFifo = (tx_len << 20) | (0 << 16) | 0x0000;
slli x17, x16, 20
sw x17, TX0_WriteTxFifo(REG_TL2CDR_BASE)
//*tx0_txFifo = data[0]
#lw x17, 0(REG_tx_data)
#sw x17, TX0_WriteTxFifo(REG_TL2CDR_BASE)
#add REG_tx_data, REG_tx_data, REG_4
#sub REG_tx_data_len, REG_tx_data_len, REG_4
li a0, 1
ret
//,
//a1,
set_recv_info_func:
mv REG_rx_data, a1
li a0, 1
ret
//--------------------------------------------
//
.balign 32
_rv32i_plic_handle:
lw x23, 0(x17) # x23 = *plic_claim
sw x23, 0(x17) # *plic_claim = x23
lw x16, 0(REG_plic_claim) # x16 = *plic_claim
sw x16, 0(REG_plic_claim) # *plic_claim = x16
bne x23, x28, 1f #_if (x23 != x24) goto 1f
sw x25, 0(x18) #_else
j 4f
bltu x16, REG_min_isr_num, exit_handle #if x16 < REG_min_isr_num then goto exit_handle
bltu REG_max_isr_num, x16, exit_handle #if REG_max_isr_num < x16 then goto exit_handle
sub x17, x16, REG_min_isr_num
slli x17, x17, 2 # x17 = x17 * 4
add x18, REG_ISR_ADDR, x17 # x18 = REG_ISR_ADDR + x17
jr x18
1:
bne x23, x29, 2f #_if (x23 != x24) goto 2f
sw x25, 0(x19) #_else
j 4f
2:
bne x23, x30, 3f #_if (x23 != x24) goto 3f
sw x25, 0(x20) #_else
j 4f
3:
bne x23, x31, 4f #_if (x23 != x24) goto 4f
sw x25, 0(x21) #_else
4:
exit_handle:
mret
isr_tx0_end_hdl:
#li x17, 1
#sw x17, TX0_WriteSoftReset(REG_TL2CDR_BASE)
mret
isr_tx1_end_hdl:
#li x17, 1
#sw x17, TX0_WriteSoftReset(REG_TL2CDR_BASE)
mret
isr_rx0_err_hdl:
1: j 1b
mret
isr_rx1_err_hdl:
1: j 1b
mret
isr_rx0_start_hdl:
mret
isr_rx1_start_hdl:
#if 0
lw x22, RX1_ReadRxLen(REG_TL2CDR_BASE)
sw x22, 0(REG_rx_data)
add REG_rx_data, REG_rx_data, REG_4
#endif
mret
isr_rx0_end_hdl:
mret
isr_rx1_end_hdl:
mret
isr_tx0_deq_hdl:
#if 0
beqz REG_tx_data_len, 1f //if (REG_tx_data_len > 0)
lw x17, 0(REG_tx_data)
sw x17, TX0_WriteTxLen(REG_TL2CDR_BASE)
add REG_tx_data, REG_tx_data, REG_4
sub REG_tx_data_len, REG_tx_data_len, REG_4
1:
#endif
mret
isr_tx1_deq_hdl:
mret
isr_rx0_enq_hdl:
lw x17, RX0_ReadRxFifo(REG_TL2CDR_BASE)
bnez x21, 1f
srli x16, x17, 20
li x18, 8
add x16, x16, x18
sw x16, TX1_WriteTxLen(REG_TL2CDR_BASE)
1:
add x21, x21, REG_4
sw x17, TX1_WriteTxFifo(REG_TL2CDR_BASE)
mret
isr_rx1_enq_hdl:
#if 0
lw x17, RX1_ReadRxFifo(REG_TL2CDR_BASE)
sw x17, 0(REG_rx_data)
add REG_rx_data, REG_rx_data, REG_4
#endif
mret
isr_hdl_table:
j isr_tx0_end_hdl
j isr_tx1_end_hdl
j isr_rx0_err_hdl
j isr_rx1_err_hdl
j isr_rx0_start_hdl
j isr_rx1_start_hdl
j isr_rx0_end_hdl
j isr_rx1_end_hdl
j isr_tx0_deq_hdl
j isr_tx1_deq_hdl
j isr_rx0_enq_hdl
j isr_rx1_enq_hdl

View File

@@ -7,28 +7,6 @@
#define TL2CDR_BASE 0x10000000U
#define OLD_CODE
#ifdef OLD_CODE
#define CDR_ReadStatus 0x00U
#define CDR_WriteTxLen 0x04U
#define CDR_WriteTxFifo 0x08U
#define CDR_WriteTransDir 0x0cU
#define CDR_WriteSoftReset 0x10U
#define CDR_ReadRxLen 0x18U
#define CDR_ReadRxFifo 0x1cU
#define CDR_ReadIsLast 0x20U
#define CDR_ReadTxCrc 0x24U
#define CDR_ReadRxCrc 0x28U
#define CDR_WriteLimitTimer 0x2cU
#define CDR_INT_TXEND 14U
#define CDR_INT_RXERROR 15U
#define CDR_INT_RXSTART 16U
#define CDR_INT_RXEND 17U
#endif
#define CDR_INT_TX0END 14U
#define CDR_INT_TX1END 15U
#define CDR_INT_RX0ERROR 16U
@@ -42,8 +20,6 @@
#define CDR_INT_RX0_FIFO_ENQ 24U
#define CDR_INT_RX1_FIFO_ENQ 25U
#define TX0_WriteSoftReset 0x00U
#define TX0_WriteTxLen 0x04U
#define TX0_WriteTxFifo 0x08U
@@ -73,19 +49,6 @@
#ifndef __ASSEMBLER__
#ifdef OLD_CODE
extern volatile uint32_t * const cdr_status;
extern volatile uint32_t * const cdr_txLen;
extern volatile uint32_t * const cdr_txFifo;
extern volatile uint32_t * const cdr_direct;
extern volatile uint32_t * const cdr_softReset;
extern volatile uint32_t * const cdr_rxLen;
extern volatile uint32_t * const cdr_rxFifo;
extern volatile uint32_t * const cdr_IsLast;
extern volatile uint32_t * const cdr_rxCrc;
extern volatile uint32_t * const cdr_txCrc;
#endif
extern volatile uint32_t * const tx0_softReset;
extern volatile uint32_t * const tx0_txLen;
extern volatile uint32_t * const tx0_txFifo;