2 * bfin_serial.h - Blackfin UART/Serial definitions
4 * Copyright 2006-2010 Analog Devices Inc.
6 * Licensed under the GPL-2 or later.
9 #ifndef __BFIN_ASM_SERIAL_H__
10 #define __BFIN_ASM_SERIAL_H__
12 #include <linux/serial_core.h>
13 #include <mach/anomaly.h>
14 #include <mach/bfin_serial.h>
16 #if defined(CONFIG_BFIN_UART0_CTSRTS) || \
17 defined(CONFIG_BFIN_UART1_CTSRTS) || \
18 defined(CONFIG_BFIN_UART2_CTSRTS) || \
19 defined(CONFIG_BFIN_UART3_CTSRTS)
20 # ifdef BFIN_UART_BF54X_STYLE
21 # define CONFIG_SERIAL_BFIN_HARD_CTSRTS
23 # define CONFIG_SERIAL_BFIN_CTSRTS
31 struct bfin_serial_port {
32 struct uart_port port;
33 unsigned int old_status;
35 #ifndef BFIN_UART_BF54X_STYLE
38 #ifdef CONFIG_SERIAL_BFIN_DMA
41 struct circ_buf rx_dma_buf;
42 struct timer_list rx_dma_timer;
44 unsigned int tx_dma_channel;
45 unsigned int rx_dma_channel;
46 struct work_struct tx_dma_workqueue;
47 #elif ANOMALY_05000363
48 unsigned int anomaly_threshold;
50 #ifdef CONFIG_SERIAL_BFIN_HARD_CTSRTS
53 #if defined(CONFIG_SERIAL_BFIN_CTSRTS) || \
54 defined(CONFIG_SERIAL_BFIN_HARD_CTSRTS)
61 #define WLS(x) (((x)-5) & 0x03) /* Word Length Select */
62 #define STB 0x04 /* Stop Bits */
63 #define PEN 0x08 /* Parity Enable */
64 #define EPS 0x10 /* Even Parity Select */
65 #define STP 0x20 /* Stick Parity */
66 #define SB 0x40 /* Set Break */
67 #define DLAB 0x80 /* Divisor Latch Access */
70 #define DR 0x01 /* Data Ready */
71 #define OE 0x02 /* Overrun Error */
72 #define PE 0x04 /* Parity Error */
73 #define FE 0x08 /* Framing Error */
74 #define BI 0x10 /* Break Interrupt */
75 #define THRE 0x20 /* THR Empty */
76 #define TEMT 0x40 /* TSR and UART_THR Empty */
77 #define TFI 0x80 /* Transmission Finished Indicator */
80 #define ERBFI 0x01 /* Enable Receive Buffer Full Interrupt */
81 #define ETBEI 0x02 /* Enable Transmit Buffer Empty Interrupt */
82 #define ELSI 0x04 /* Enable RX Status Interrupt */
83 #define EDSSI 0x08 /* Enable Modem Status Interrupt */
84 #define EDTPTI 0x10 /* Enable DMA Transmit PIRQ Interrupt */
85 #define ETFI 0x20 /* Enable Transmission Finished Interrupt */
86 #define ERFCI 0x40 /* Enable Receive FIFO Count Interrupt */
89 #define XOFF 0x01 /* Transmitter Off */
90 #define MRTS 0x02 /* Manual Request To Send */
91 #define RFIT 0x04 /* Receive FIFO IRQ Threshold */
92 #define RFRT 0x08 /* Receive FIFO RTS Threshold */
93 #define LOOP_ENA 0x10 /* Loopback Mode Enable */
94 #define FCPOL 0x20 /* Flow Control Pin Polarity */
95 #define ARTS 0x40 /* Automatic Request To Send */
96 #define ACTS 0x80 /* Automatic Clear To Send */
99 #define SCTS 0x01 /* Sticky CTS */
100 #define CTS 0x10 /* Clear To Send */
101 #define RFCS 0x20 /* Receive FIFO Count Status */
103 /* UART_GCTL Masks */
104 #define UCEN 0x01 /* Enable UARTx Clocks */
105 #define IREN 0x02 /* Enable IrDA Mode */
106 #define TPOLC 0x04 /* IrDA TX Polarity Change */
107 #define RPOLC 0x08 /* IrDA RX Polarity Change */
108 #define FPE 0x10 /* Force Parity Error On Transmit */
109 #define FFE 0x20 /* Force Framing Error On Transmit */
111 #ifdef BFIN_UART_BF54X_STYLE
112 # define OFFSET_DLL 0x00 /* Divisor Latch (Low-Byte) */
113 # define OFFSET_DLH 0x04 /* Divisor Latch (High-Byte) */
114 # define OFFSET_GCTL 0x08 /* Global Control Register */
115 # define OFFSET_LCR 0x0C /* Line Control Register */
116 # define OFFSET_MCR 0x10 /* Modem Control Register */
117 # define OFFSET_LSR 0x14 /* Line Status Register */
118 # define OFFSET_MSR 0x18 /* Modem Status Register */
119 # define OFFSET_SCR 0x1C /* SCR Scratch Register */
120 # define OFFSET_IER_SET 0x20 /* Set Interrupt Enable Register */
121 # define OFFSET_IER_CLEAR 0x24 /* Clear Interrupt Enable Register */
122 # define OFFSET_THR 0x28 /* Transmit Holding register */
123 # define OFFSET_RBR 0x2C /* Receive Buffer register */
124 #else /* BF533 style */
125 # define OFFSET_THR 0x00 /* Transmit Holding register */
126 # define OFFSET_RBR 0x00 /* Receive Buffer register */
127 # define OFFSET_DLL 0x00 /* Divisor Latch (Low-Byte) */
128 # define OFFSET_DLH 0x04 /* Divisor Latch (High-Byte) */
129 # define OFFSET_IER 0x04 /* Interrupt Enable Register */
130 # define OFFSET_IIR 0x08 /* Interrupt Identification Register */
131 # define OFFSET_LCR 0x0C /* Line Control Register */
132 # define OFFSET_MCR 0x10 /* Modem Control Register */
133 # define OFFSET_LSR 0x14 /* Line Status Register */
134 # define OFFSET_MSR 0x18 /* Modem Status Register */
135 # define OFFSET_SCR 0x1C /* SCR Scratch Register */
136 # define OFFSET_GCTL 0x24 /* Global Control Register */
137 /* code should not need IIR, so force build error if they use it */
142 * All Blackfin system MMRs are padded to 32bits even if the register
143 * itself is only 16bits. So use a helper macro to streamline this.
145 #define __BFP(m) u16 m; u16 __pad_##m
146 struct bfin_uart_regs {
147 #ifdef BFIN_UART_BF54X_STYLE
185 # define port_membase(p) (((struct bfin_serial_port *)(p))->port.membase)
188 #define UART_GET_CHAR(p) bfin_read16(port_membase(p) + OFFSET_RBR)
189 #define UART_GET_DLL(p) bfin_read16(port_membase(p) + OFFSET_DLL)
190 #define UART_GET_DLH(p) bfin_read16(port_membase(p) + OFFSET_DLH)
191 #define UART_GET_GCTL(p) bfin_read16(port_membase(p) + OFFSET_GCTL)
192 #define UART_GET_LCR(p) bfin_read16(port_membase(p) + OFFSET_LCR)
193 #define UART_GET_MCR(p) bfin_read16(port_membase(p) + OFFSET_MCR)
194 #define UART_GET_MSR(p) bfin_read16(port_membase(p) + OFFSET_MSR)
196 #define UART_PUT_CHAR(p, v) bfin_write16(port_membase(p) + OFFSET_THR, v)
197 #define UART_PUT_DLL(p, v) bfin_write16(port_membase(p) + OFFSET_DLL, v)
198 #define UART_PUT_DLH(p, v) bfin_write16(port_membase(p) + OFFSET_DLH, v)
199 #define UART_PUT_GCTL(p, v) bfin_write16(port_membase(p) + OFFSET_GCTL, v)
200 #define UART_PUT_LCR(p, v) bfin_write16(port_membase(p) + OFFSET_LCR, v)
201 #define UART_PUT_MCR(p, v) bfin_write16(port_membase(p) + OFFSET_MCR, v)
203 #ifdef BFIN_UART_BF54X_STYLE
205 #define UART_CLEAR_IER(p, v) bfin_write16(port_membase(p) + OFFSET_IER_CLEAR, v)
206 #define UART_GET_IER(p) bfin_read16(port_membase(p) + OFFSET_IER_SET)
207 #define UART_SET_IER(p, v) bfin_write16(port_membase(p) + OFFSET_IER_SET, v)
209 #define UART_CLEAR_DLAB(p) /* MMRs not muxed on BF54x */
210 #define UART_SET_DLAB(p) /* MMRs not muxed on BF54x */
212 #define UART_CLEAR_LSR(p) bfin_write16(port_membase(p) + OFFSET_LSR, -1)
213 #define UART_GET_LSR(p) bfin_read16(port_membase(p) + OFFSET_LSR)
214 #define UART_PUT_LSR(p, v) bfin_write16(port_membase(p) + OFFSET_LSR, v)
216 /* This handles hard CTS/RTS */
217 #define BFIN_UART_CTSRTS_HARD
218 #define UART_CLEAR_SCTS(p) bfin_write16((port_membase(p) + OFFSET_MSR), SCTS)
219 #define UART_GET_CTS(x) (UART_GET_MSR(x) & CTS)
220 #define UART_DISABLE_RTS(x) UART_PUT_MCR(x, UART_GET_MCR(x) & ~(ARTS | MRTS))
221 #define UART_ENABLE_RTS(x) UART_PUT_MCR(x, UART_GET_MCR(x) | MRTS | ARTS)
222 #define UART_ENABLE_INTS(x, v) UART_SET_IER(x, v)
223 #define UART_DISABLE_INTS(x) UART_CLEAR_IER(x, 0xF)
225 #else /* BF533 style */
227 #define UART_CLEAR_IER(p, v) UART_PUT_IER(p, UART_GET_IER(p) & ~(v))
228 #define UART_GET_IER(p) bfin_read16(port_membase(p) + OFFSET_IER)
229 #define UART_PUT_IER(p, v) bfin_write16(port_membase(p) + OFFSET_IER, v)
230 #define UART_SET_IER(p, v) UART_PUT_IER(p, UART_GET_IER(p) | (v))
232 #define UART_CLEAR_DLAB(p) do { UART_PUT_LCR(p, UART_GET_LCR(p) & ~DLAB); SSYNC(); } while (0)
233 #define UART_SET_DLAB(p) do { UART_PUT_LCR(p, UART_GET_LCR(p) | DLAB); SSYNC(); } while (0)
235 #ifndef put_lsr_cache
236 # define put_lsr_cache(p, v) (((struct bfin_serial_port *)(p))->lsr = (v))
238 #ifndef get_lsr_cache
239 # define get_lsr_cache(p) (((struct bfin_serial_port *)(p))->lsr)
242 /* The hardware clears the LSR bits upon read, so we need to cache
243 * some of the more fun bits in software so they don't get lost
244 * when checking the LSR in other code paths (TX).
246 static inline void UART_CLEAR_LSR(void *p)
249 bfin_write16(port_membase(p) + OFFSET_LSR, -1);
251 static inline unsigned int UART_GET_LSR(void *p)
253 unsigned int lsr = bfin_read16(port_membase(p) + OFFSET_LSR);
254 put_lsr_cache(p, get_lsr_cache(p) | (lsr & (BI|FE|PE|OE)));
255 return lsr | get_lsr_cache(p);
257 static inline void UART_PUT_LSR(void *p, uint16_t val)
259 put_lsr_cache(p, get_lsr_cache(p) & ~val);
262 /* This handles soft CTS/RTS */
263 #define UART_GET_CTS(x) gpio_get_value((x)->cts_pin)
264 #define UART_DISABLE_RTS(x) gpio_set_value((x)->rts_pin, 1)
265 #define UART_ENABLE_RTS(x) gpio_set_value((x)->rts_pin, 0)
266 #define UART_ENABLE_INTS(x, v) UART_PUT_IER(x, v)
267 #define UART_DISABLE_INTS(x) UART_PUT_IER(x, 0)
271 #ifndef BFIN_UART_TX_FIFO_SIZE
272 # define BFIN_UART_TX_FIFO_SIZE 2
275 #endif /* __BFIN_ASM_SERIAL_H__ */