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Blackfin: serial: convert to bfin_{read,write} helpers
Since the serial struct declares the sizes for us, no need to hardcode them in the accessor functions. Let the bfin_{read,write} helpers do it for us. Signed-off-by: Mike Frysinger <vapier@gentoo.org>
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@ -19,6 +19,8 @@
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#include <asm/mach-common/bits/pll.h>
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#include <asm/mach-common/bits/uart.h>
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#define BUG() while (1) { asm volatile("emuexcpt;"); }
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#include "serial.h"
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__attribute__((always_inline))
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@ -63,7 +63,7 @@ static size_t cache_count;
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static uint16_t uart_lsr_save;
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static uint16_t uart_lsr_read(uint32_t uart_base)
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{
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uint16_t lsr = bfin_read16(&pUART->lsr);
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uint16_t lsr = bfin_read(&pUART->lsr);
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uart_lsr_save |= (lsr & (OE|PE|FE|BI));
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return lsr | uart_lsr_save;
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}
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@ -71,7 +71,7 @@ static uint16_t uart_lsr_read(uint32_t uart_base)
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static void uart_lsr_clear(uint32_t uart_base)
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{
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uart_lsr_save = 0;
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bfin_write16(&pUART->lsr, bfin_read16(&pUART->lsr) | -1);
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bfin_write(&pUART->lsr, bfin_read(&pUART->lsr) | -1);
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}
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#else
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/* When debugging is disabled, we only care about the DR bit, so if other
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@ -80,11 +80,11 @@ static void uart_lsr_clear(uint32_t uart_base)
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*/
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static inline uint16_t uart_lsr_read(uint32_t uart_base)
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{
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return bfin_read16(&pUART->lsr);
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return bfin_read(&pUART->lsr);
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}
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static void uart_lsr_clear(uint32_t uart_base)
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{
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bfin_write16(&pUART->lsr, bfin_read16(&pUART->lsr) | -1);
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bfin_write(&pUART->lsr, bfin_read(&pUART->lsr) | -1);
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}
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#endif
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@ -101,7 +101,7 @@ static void uart_putc(uint32_t uart_base, const char c)
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continue;
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/* queue the character for transmission */
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bfin_write16(&pUART->thr, c);
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bfin_write(&pUART->thr, c);
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SSYNC();
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WATCHDOG_RESET();
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@ -122,7 +122,7 @@ static int uart_getc(uint32_t uart_base)
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continue;
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/* grab the new byte */
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uart_rbr_val = bfin_read16(&pUART->rbr);
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uart_rbr_val = bfin_read(&pUART->rbr);
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#ifdef CONFIG_DEBUG_SERIAL
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/* grab & clear the LSR */
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@ -136,8 +136,8 @@ static int uart_getc(uint32_t uart_base)
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uint16_t dll, dlh;
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printf("\n[SERIAL ERROR]\n");
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ACCESS_LATCH();
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dll = bfin_read16(&pUART->dll);
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dlh = bfin_read16(&pUART->dlh);
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dll = bfin_read(&pUART->dll);
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dlh = bfin_read(&pUART->dlh);
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ACCESS_PORT_IER();
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printf("\tDLL=0x%x DLH=0x%x\n", dll, dlh);
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do {
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@ -101,9 +101,9 @@ struct bfin_mmr_serial {
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# define ACCESS_PORT_IER()
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#else
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# define ACCESS_LATCH() \
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bfin_write16(&pUART->lcr, bfin_read16(&pUART->lcr) | DLAB)
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bfin_write(&pUART->lcr, bfin_read(&pUART->lcr) | DLAB)
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# define ACCESS_PORT_IER() \
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bfin_write16(&pUART->lcr, bfin_read16(&pUART->lcr) & ~DLAB)
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bfin_write(&pUART->lcr, bfin_read(&pUART->lcr) & ~DLAB)
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#endif
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__attribute__((always_inline))
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@ -173,10 +173,10 @@ __attribute__((always_inline))
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static inline int uart_init(uint32_t uart_base)
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{
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/* always enable UART -- avoids anomalies 05000309 and 05000350 */
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bfin_write16(&pUART->gctl, UCEN);
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bfin_write(&pUART->gctl, UCEN);
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/* Set LCR to Word Lengh 8-bit word select */
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bfin_write16(&pUART->lcr, WLS_8);
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bfin_write(&pUART->lcr, WLS_8);
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SSYNC();
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@ -196,7 +196,7 @@ __attribute__((always_inline))
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static inline int serial_early_uninit(uint32_t uart_base)
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{
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/* disable the UART by clearing UCEN */
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bfin_write16(&pUART->gctl, 0);
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bfin_write(&pUART->gctl, 0);
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return 0;
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}
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@ -209,8 +209,8 @@ static inline void serial_early_put_div(uint32_t uart_base, uint16_t divisor)
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SSYNC();
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/* Program the divisor to get the baud rate we want */
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bfin_write16(&pUART->dll, LOB(divisor));
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bfin_write16(&pUART->dlh, HIB(divisor));
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bfin_write(&pUART->dll, LOB(divisor));
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bfin_write(&pUART->dlh, HIB(divisor));
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SSYNC();
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/* Clear DLAB in LCR to Access THR RBR IER */
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@ -227,8 +227,8 @@ static inline uint16_t serial_early_get_div(void)
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ACCESS_LATCH();
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SSYNC();
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uint8_t dll = bfin_read16(&pUART->dll);
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uint8_t dlh = bfin_read16(&pUART->dlh);
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uint8_t dll = bfin_read(&pUART->dll);
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uint8_t dlh = bfin_read(&pUART->dlh);
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uint16_t divisor = (dlh << 8) | dll;
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/* Clear DLAB in LCR to Access THR RBR IER */
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