Back-ported the iAudio remote LCD driver optimisations to X5 and M5.
git-svn-id: svn://svn.rockbox.org/rockbox/trunk@16810 a1c6a512-1295-4272-9138-f99709370657
This commit is contained in:
parent
40919d7db2
commit
74d678fdbc
3 changed files with 335 additions and 240 deletions
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@ -463,6 +463,7 @@ target/coldfire/ata-as-coldfire.S
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target/coldfire/pcf50606-coldfire.c
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target/coldfire/iaudio/adc-iaudio.c
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target/coldfire/iaudio/ata-iaudio.c
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target/coldfire/iaudio/lcd-remote-as-iaudio.S
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target/coldfire/iaudio/lcd-remote-iaudio.c
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target/coldfire/iaudio/pcf50606-iaudio.c
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target/coldfire/iaudio/powermgmt-iaudio.c
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@ -488,6 +489,7 @@ target/coldfire/ata-as-coldfire.S
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target/coldfire/pcf50606-coldfire.c
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target/coldfire/iaudio/adc-iaudio.c
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target/coldfire/iaudio/ata-iaudio.c
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target/coldfire/iaudio/lcd-remote-as-iaudio.S
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target/coldfire/iaudio/lcd-remote-iaudio.c
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target/coldfire/iaudio/m5/backlight-m5.c
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target/coldfire/iaudio/m5/button-m5.c
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316
firmware/target/coldfire/iaudio/lcd-remote-as-iaudio.S
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316
firmware/target/coldfire/iaudio/lcd-remote-as-iaudio.S
Normal file
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@ -0,0 +1,316 @@
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/***************************************************************************
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* __________ __ ___.
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* Open \______ \ ____ ____ | | _\_ |__ _______ ___
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* Source | _// _ \_/ ___\| |/ /| __ \ / _ \ \/ /
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* Jukebox | | ( <_> ) \___| < | \_\ ( <_> > < <
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* Firmware |____|_ /\____/ \___ >__|_ \|___ /\____/__/\_ \
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* \/ \/ \/ \/ \/
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* $Id$
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*
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* Copyright (C) 2008 by Jens Arnold
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*
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* All files in this archive are subject to the GNU General Public License.
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* See the file COPYING in the source tree root for full license agreement.
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*
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* This software is distributed on an "AS IS" basis, WITHOUT WARRANTY OF ANY
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* KIND, either express or implied.
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*
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****************************************************************************/
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#define CLOCK_MASK 0x00004000
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#define DATA_MASK 0x00002000
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#define RS_MASK 0x00008000
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#define GPIO_OUT_ADDR 0x80000004
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#define CS_MASK 0x00000020
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#define GPIO1_OUT_ADDR 0x800000b4
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.extern cpu_frequency /* Global variable from system.c */
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.section .icode,"ax",@progbits
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/* Output 8 bits to the LCD. Instruction order is devised to maximize the
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* delay between changing the data line and the CLK L->H transition, which
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* makes the LCD controller sample DATA.
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*
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* Custom calling convention:
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* %a0 - GPIO_OUT_ADDR
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* %d3 - data byte
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* %d6 - DATA_MASK
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* %d7 - CLOCK_MASK
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* Clobbers:
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* %d0..%d3
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*/
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.write_byte:
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move.w %sr, %d2
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move.w #0x2700, %sr
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move.l (%a0), %d0 /* Get current state of data port */
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move.l %d0, %d1
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and.l %d6, %d1 /* Check current state of data line */
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beq.s 1f /* and set it as previous-state bit */
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bset #8, %d3
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1:
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move.l %d3, %d1 /* Compute the 'bit derivative', i.e. a value */
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lsr.l #1, %d1 /* with 1's where the data changes from the */
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eor.l %d1, %d3 /* previous state, and 0's where it doesn't */
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swap %d3 /* Shift data to upper byte */
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lsl.l #8, %d3
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eor.l %d7, %d0 /* precalculate opposite state of clock line */
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lsl.l #1,%d3 /* Shift out MSB */
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bcc.s 1f
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eor.l %d6, %d0 /* 1: Flip data bit */
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1:
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move.l %d0, %d1
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move.l %d0, (%a0) /* Output new state and set CLK = 0*/
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eor.l %d7, %d1
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bra.w .wr_bit7
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/* Output 16 bits to the LCD. Instruction order is devised to maximize the
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* delay between changing the data line and the CLK L->H transition, which
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* makes the LCD controller sample DATA.
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*
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* Custom calling convention:
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* %a0 - GPIO_OUT_ADDR
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* %d3 - data word
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* %d6 - DATA_MASK
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* %d7 - CLOCK_MASK
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* Clobbers:
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* %d0..%d3
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*/
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.write_word:
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move.w %sr, %d2
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move.w #0x2700, %sr
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move.l (%a0), %d0 /* Get current state of data port */
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move.l %d0, %d1
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and.l %d6, %d1 /* Check current state of data line */
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beq.s 1f /* and set it as previous-state bit */
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bset #16, %d3
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1:
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move.l %d3, %d1 /* Compute the 'bit derivative', i.e. a value */
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lsr.l #1, %d1 /* with 1's where the data changes from the */
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eor.l %d1, %d3 /* previous state, and 0's where it doesn't */
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swap %d3 /* Shift data to upper word */
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eor.l %d7, %d0 /* precalculate opposite state of clock line */
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lsl.l #1,%d3 /* Shift out MSB */
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bcc.s 1f
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eor.l %d6, %d0 /* 1: Flip data bit */
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1:
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move.l %d0, %d1
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move.l %d0, (%a0) /* Output new state and set CLK = 0*/
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eor.l %d7, %d1
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nop
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.macro bit_out
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lsl.l #1,%d3
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bcc.s 1f
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eor.l %d6, %d0
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1:
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move.l %d1, (%a0) /* Set CLK = 1 (delayed) */
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move.l %d0, %d1
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move.l %d0, (%a0)
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eor.l %d7, %d1
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.endm
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bit_out
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nop
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bit_out
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nop
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bit_out
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nop
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bit_out
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nop
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bit_out
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nop
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bit_out
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nop
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bit_out
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nop
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bit_out
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nop
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.wr_bit7:
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bit_out
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nop
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bit_out
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nop
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bit_out
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nop
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bit_out
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nop
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bit_out
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nop
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bit_out
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nop
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bit_out
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nop
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nop
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move.l %d1, (%a0) /* Set CLK = 1 (delayed) */
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move.w %d2, %sr
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rts
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/* Output 16 bits to the LCD as fast as possible. Use only at < 60MHz.
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*
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* Custom calling convention:
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* %a0 - GPIO_OUT_ADDR
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* %d3 - data word
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* %d6 - DATA_MASK
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* %d7 - CLOCK_MASK
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* Clobbers:
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* %d0..%d3
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*/
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.write_word_fast:
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move.w %sr, %d2 /* Get current interrupt level */
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move.w #0x2700, %sr /* Disable interrupts */
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move.l (%a0), %d0 /* Get current state of data port */
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move.l %d0, %d1
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and.l %d6, %d1 /* Check current state of data line */
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beq.s 1f /* and set it as previous-state bit */
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bset #16, %d3
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1:
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move.l %d3, %d1 /* Compute the 'bit derivative', i.e. a value */
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lsr.l #1, %d1 /* with 1's where the data changes from the */
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eor.l %d1, %d3 /* previous state, and 0's where it doesn't */
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swap %d3 /* Shift data to upper byte */
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move.l %d0, %d1 /* precalculate opposite state of clock line */
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eor.l %d7, %d1
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.macro bit_out_fast
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lsl.l #1,%d3 /* Shift out MSB */
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bcc.s 1f
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eor.l %d6, %d0 /* 1: Flip data bit */
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eor.l %d6, %d1 /* for both clock states */
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1:
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move.l %d1, (%a0) /* Output new state and set CLK = 0*/
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move.l %d0, (%a0) /* set CLK = 1 */
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.endm
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bit_out_fast
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bit_out_fast
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bit_out_fast
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bit_out_fast
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bit_out_fast
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bit_out_fast
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bit_out_fast
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bit_out_fast
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bit_out_fast
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bit_out_fast
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bit_out_fast
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bit_out_fast
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bit_out_fast
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bit_out_fast
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bit_out_fast
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bit_out_fast
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move.w %d2, %sr /* Restore interrupt level */
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rts
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.global lcd_remote_write_command
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.type lcd_remote_write_command, @function
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lcd_remote_write_command:
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lea.l (-4*4, %sp), %sp
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movem.l %d2-%d3/%d6-%d7, (%sp)
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move.l (4*4+4, %sp), %d3 /* cmd */
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lea.l GPIO_OUT_ADDR, %a0
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lea.l GPIO1_OUT_ADDR, %a1
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move.l #DATA_MASK, %d6
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move.l #CLOCK_MASK, %d7
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move.l #~RS_MASK, %d0
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and.l %d0, (%a0)
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move.l #~CS_MASK, %d0
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and.l %d0, (%a1)
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bsr.w .write_byte
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move.l #CS_MASK, %d0
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or.l %d0, (%a1)
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movem.l (%sp), %d2-%d3/%d6-%d7
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lea.l (4*4, %sp), %sp
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rts
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.global lcd_remote_write_command_ex
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.type lcd_remote_write_command_ex, @function
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lcd_remote_write_command_ex:
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lea.l (-4*4, %sp), %sp
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movem.l %d2-%d3/%d6-%d7, (%sp)
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movem.l (4*4+4, %sp), %d2-%d3 /* cmd, data */
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lea.l GPIO_OUT_ADDR, %a0
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lea.l GPIO1_OUT_ADDR, %a1
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move.l #DATA_MASK, %d6
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move.l #CLOCK_MASK, %d7
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move.l #~RS_MASK, %d0
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and.l %d0, (%a0)
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move.l #~CS_MASK, %d0
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and.l %d0, (%a1)
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lsl.l #8, %d2
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or.l %d2, %d3
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bsr.w .write_word
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move.l #CS_MASK, %d0
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or.l %d0, (%a1)
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movem.l (%sp), %d2-%d3/%d6-%d7
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lea.l (4*4, %sp), %sp
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rts
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.global lcd_remote_write_data
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.type lcd_remote_write_data, @function
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lcd_remote_write_data:
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lea.l (-7*4, %sp), %sp
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movem.l %d2-%d4/%d6-%d7/%a2-%a3, (%sp)
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move.l (7*4+4, %sp), %a2 /* p_words */
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move.l (7*4+8, %sp), %d4 /* count */
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lea.l GPIO_OUT_ADDR, %a0
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lea.l GPIO1_OUT_ADDR, %a1
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move.l #DATA_MASK, %d6
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move.l #CLOCK_MASK, %d7
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lea.l .write_word, %a3
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move.l cpu_frequency, %d0
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cmp.l #60000000, %d0
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bhi.b 1f
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lea.l .write_word_fast, %a3
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1:
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move.l #RS_MASK, %d0
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or.l %d0, (%a0)
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move.l #~CS_MASK, %d0
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and.l %d0, (%a1)
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.wd_loop:
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clr.l %d3
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move.w (%a2)+, %d3
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jsr (%a3)
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subq.l #1, %d4
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bne.s .wd_loop
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move.l #CS_MASK, %d0
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or.l %d0, (%a1)
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movem.l (%sp), %d2-%d4/%d6-%d7/%a2-%a3
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lea.l (7*4, %sp), %sp
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rts
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@ -60,234 +60,6 @@ static int cached_contrast = DEFAULT_REMOTE_CONTRAST_SETTING;
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bool remote_initialized = false;
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/* Standard low-level byte writer. Requires CLK high on entry */
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static inline void _write_byte(unsigned data)
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{
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asm volatile (
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"move.l (%[gpo0]), %%d0 \n" /* Get current state of data line */
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"and.l %[dbit], %%d0 \n"
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"beq.s 1f \n" /* and set it as previous-state bit */
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"bset #8, %[data] \n"
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"1: \n"
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"move.l %[data], %%d0 \n" /* Compute the 'bit derivative', i.e. a value */
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"lsr.l #1, %%d0 \n" /* with 1's where the data changes from the */
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"eor.l %%d0, %[data] \n" /* previous state, and 0's where it doesn't */
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"swap %[data] \n" /* Shift data to upper byte */
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"lsl.l #8, %[data] \n"
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"move.l %[cbit], %%d1 \n" /* Prepare mask for flipping CLK */
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"or.l %[dbit], %%d1 \n" /* and DATA at once */
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"lsl.l #1,%[data] \n" /* Shift out MSB */
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"bcc.s 1f \n"
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"eor.l %%d1, (%[gpo0]) \n" /* 1: Flip both CLK and DATA */
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".word 0x51fa \n" /* (trapf.w - shadow next insn) */
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"1: \n"
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"eor.l %[cbit], (%[gpo0]) \n" /* else flip CLK only */
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"eor.l %[cbit], (%[gpo0]) \n" /* Flip CLK again */
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"lsl.l #1,%[data] \n" /* ..unrolled.. */
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"bcc.s 1f \n"
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"eor.l %%d1, (%[gpo0]) \n"
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".word 0x51fa \n"
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"1: \n"
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"eor.l %[cbit], (%[gpo0]) \n"
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"eor.l %[cbit], (%[gpo0]) \n"
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"lsl.l #1,%[data] \n"
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"bcc.s 1f \n"
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"eor.l %%d1, (%[gpo0]) \n"
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".word 0x51fa \n"
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"1: \n"
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"eor.l %[cbit], (%[gpo0]) \n"
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"eor.l %[cbit], (%[gpo0]) \n"
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"lsl.l #1,%[data] \n"
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"bcc.s 1f \n"
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"eor.l %%d1, (%[gpo0]) \n"
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".word 0x51fa \n"
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"1: \n"
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"eor.l %[cbit], (%[gpo0]) \n"
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"eor.l %[cbit], (%[gpo0]) \n"
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"lsl.l #1,%[data] \n"
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"bcc.s 1f \n"
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"eor.l %%d1, (%[gpo0]) \n"
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".word 0x51fa \n"
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"1: \n"
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"eor.l %[cbit], (%[gpo0]) \n"
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"eor.l %[cbit], (%[gpo0]) \n"
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"lsl.l #1,%[data] \n"
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"bcc.s 1f \n"
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"eor.l %%d1, (%[gpo0]) \n"
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".word 0x51fa \n"
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"1: \n"
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"eor.l %[cbit], (%[gpo0]) \n"
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"eor.l %[cbit], (%[gpo0]) \n"
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"lsl.l #1,%[data] \n"
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"bcc.s 1f \n"
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"eor.l %%d1, (%[gpo0]) \n"
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".word 0x51fa \n"
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"1: \n"
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"eor.l %[cbit], (%[gpo0]) \n"
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"eor.l %[cbit], (%[gpo0]) \n"
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"lsl.l #1,%[data] \n"
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"bcc.s 1f \n"
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"eor.l %%d1, (%[gpo0]) \n"
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".word 0x51fa \n"
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"1: \n"
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"eor.l %[cbit], (%[gpo0]) \n"
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"eor.l %[cbit], (%[gpo0]) \n"
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: /* outputs */
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[data]"+d"(data)
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: /* inputs */
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[gpo0]"a"(&GPIO_OUT),
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[cbit]"d"(0x00004000),
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[dbit]"d"(0x00002000)
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: /* clobbers */
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"d0", "d1"
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);
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}
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/* Fast low-level byte writer. Don't use with high CPU clock.
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* Requires CLK high on entry */
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static inline void _write_fast(unsigned data)
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||||
{
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asm volatile (
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"move.w %%sr,%%d3 \n" /* Get current interrupt level */
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||||
"move.w #0x2700,%%sr \n" /* Disable interrupts */
|
||||
|
||||
"move.l (%[gpo0]), %%d0 \n" /* Get current state of data port */
|
||||
"move.l %%d0, %%d1 \n"
|
||||
"and.l %[dbit], %%d1 \n" /* Check current state of data line */
|
||||
"beq.s 1f \n" /* and set it as previous-state bit */
|
||||
"bset #8, %[data] \n"
|
||||
"1: \n"
|
||||
"move.l %[data], %%d1 \n" /* Compute the 'bit derivative', i.e. a value */
|
||||
"lsr.l #1, %%d1 \n" /* with 1's where the data changes from the */
|
||||
"eor.l %%d1, %[data] \n" /* previous state, and 0's where it doesn't */
|
||||
"swap %[data] \n" /* Shift data to upper byte */
|
||||
"lsl.l #8, %[data] \n"
|
||||
|
||||
"move.l %%d0, %%d1 \n" /* precalculate opposite state of clock line */
|
||||
"eor.l %[cbit], %%d1 \n"
|
||||
|
||||
"lsl.l #1,%[data] \n" /* Shift out MSB */
|
||||
"bcc.s 1f \n"
|
||||
"eor.l %[dbit], %%d0 \n" /* 1: Flip data bit */
|
||||
"eor.l %[dbit], %%d1 \n" /* for both clock states */
|
||||
"1: \n"
|
||||
"move.l %%d1, (%[gpo0]) \n" /* Output new state and set CLK */
|
||||
"move.l %%d0, (%[gpo0]) \n" /* reset CLK */
|
||||
|
||||
"lsl.l #1,%[data] \n" /* ..unrolled.. */
|
||||
"bcc.s 1f \n"
|
||||
"eor.l %[dbit], %%d0 \n"
|
||||
"eor.l %[dbit], %%d1 \n"
|
||||
"1: \n"
|
||||
"move.l %%d1, (%[gpo0]) \n"
|
||||
"move.l %%d0, (%[gpo0]) \n"
|
||||
|
||||
"lsl.l #1,%[data] \n"
|
||||
"bcc.s 1f \n"
|
||||
"eor.l %[dbit], %%d0 \n"
|
||||
"eor.l %[dbit], %%d1 \n"
|
||||
"1: \n"
|
||||
"move.l %%d1, (%[gpo0]) \n"
|
||||
"move.l %%d0, (%[gpo0]) \n"
|
||||
|
||||
"lsl.l #1,%[data] \n"
|
||||
"bcc.s 1f \n"
|
||||
"eor.l %[dbit], %%d0 \n"
|
||||
"eor.l %[dbit], %%d1 \n"
|
||||
"1: \n"
|
||||
"move.l %%d1, (%[gpo0]) \n"
|
||||
"move.l %%d0, (%[gpo0]) \n"
|
||||
|
||||
"lsl.l #1,%[data] \n"
|
||||
"bcc.s 1f \n"
|
||||
"eor.l %[dbit], %%d0 \n"
|
||||
"eor.l %[dbit], %%d1 \n"
|
||||
"1: \n"
|
||||
"move.l %%d1, (%[gpo0]) \n"
|
||||
"move.l %%d0, (%[gpo0]) \n"
|
||||
|
||||
"lsl.l #1,%[data] \n"
|
||||
"bcc.s 1f \n"
|
||||
"eor.l %[dbit], %%d0 \n"
|
||||
"eor.l %[dbit], %%d1 \n"
|
||||
"1: \n"
|
||||
"move.l %%d1, (%[gpo0]) \n"
|
||||
"move.l %%d0, (%[gpo0]) \n"
|
||||
|
||||
"lsl.l #1,%[data] \n"
|
||||
"bcc.s 1f \n"
|
||||
"eor.l %[dbit], %%d0 \n"
|
||||
"eor.l %[dbit], %%d1 \n"
|
||||
"1: \n"
|
||||
"move.l %%d1, (%[gpo0]) \n"
|
||||
"move.l %%d0, (%[gpo0]) \n"
|
||||
|
||||
"lsl.l #1,%[data] \n"
|
||||
"bcc.s 1f \n"
|
||||
"eor.l %[dbit], %%d0 \n"
|
||||
"eor.l %[dbit], %%d1 \n"
|
||||
"1: \n"
|
||||
"move.l %%d1, (%[gpo0]) \n"
|
||||
"move.l %%d0, (%[gpo0]) \n"
|
||||
|
||||
"move.w %%d3, %%sr \n" /* Restore interrupt level */
|
||||
: /* outputs */
|
||||
[data]"+d"(data)
|
||||
: /* inputs */
|
||||
[gpo0]"a"(&GPIO_OUT),
|
||||
[cbit]"d"(0x00004000),
|
||||
[dbit]"d"(0x00002000)
|
||||
: /* clobbers */
|
||||
"d0", "d1", "d2", "d3"
|
||||
);
|
||||
}
|
||||
|
||||
void lcd_remote_write_command(int cmd)
|
||||
{
|
||||
RS_LO;
|
||||
CS_LO;
|
||||
_write_byte(cmd);
|
||||
CS_HI;
|
||||
}
|
||||
|
||||
void lcd_remote_write_command_ex(int cmd, int data)
|
||||
{
|
||||
RS_LO;
|
||||
CS_LO;
|
||||
_write_byte(cmd);
|
||||
_write_byte(data);
|
||||
CS_HI;
|
||||
}
|
||||
|
||||
void lcd_remote_write_data(const fb_remote_data *p_words, int count)
|
||||
{
|
||||
const unsigned char *p_bytes = (const unsigned char *)p_words;
|
||||
const unsigned char *p_end = (const unsigned char *)(p_words + count);
|
||||
|
||||
RS_HI;
|
||||
CS_LO;
|
||||
if (cpu_frequency < 50000000)
|
||||
{
|
||||
while (p_bytes < p_end)
|
||||
_write_fast(*p_bytes++);
|
||||
}
|
||||
else
|
||||
{
|
||||
while (p_bytes < p_end)
|
||||
_write_byte(*p_bytes++);
|
||||
}
|
||||
CS_HI;
|
||||
}
|
||||
|
||||
int lcd_remote_default_contrast(void)
|
||||
{
|
||||
return DEFAULT_REMOTE_CONTRAST_SETTING;
|
||||
|
@ -350,7 +122,7 @@ void lcd_remote_on(void)
|
|||
lcd_remote_write_command_ex(LCD_SET_GRAY | 6, 0xcc);
|
||||
lcd_remote_write_command_ex(LCD_SET_GRAY | 7, 0x0c);
|
||||
|
||||
lcd_remote_write_command(LCD_SET_PWM_FRC | 6); /* 4FRC + 12PWM */
|
||||
lcd_remote_write_command(LCD_SET_PWM_FRC | 6); /* 3FRC + 12PWM */
|
||||
|
||||
lcd_remote_write_command(LCD_DISPLAY_ON | 1); /* display on */
|
||||
|
||||
|
@ -439,17 +211,18 @@ void lcd_remote_init_device(void)
|
|||
|
||||
/* Update the display.
|
||||
This must be called after all other LCD functions that change the display. */
|
||||
void lcd_remote_update(void) ICODE_ATTR;
|
||||
void lcd_remote_update(void)
|
||||
{
|
||||
int y;
|
||||
if(remote_initialized) {
|
||||
for(y = 0;y < LCD_REMOTE_FBHEIGHT;y++) {
|
||||
if(remote_initialized)
|
||||
{
|
||||
for(y = 0;y < LCD_REMOTE_FBHEIGHT;y++)
|
||||
{
|
||||
/* Copy display bitmap to hardware.
|
||||
The COM48-COM63 lines are not connected so we have to skip
|
||||
them. Further, the column address doesn't wrap, so we
|
||||
have to update one page at a time. */
|
||||
lcd_remote_write_command(LCD_SET_PAGE | (y>5?y+2:y));
|
||||
lcd_remote_write_command(LCD_SET_PAGE | (y > 5 ? y + 2 : y));
|
||||
lcd_remote_write_command_ex(LCD_SET_COLUMN | 0, 0);
|
||||
lcd_remote_write_data(lcd_remote_framebuffer[y], LCD_REMOTE_WIDTH);
|
||||
}
|
||||
|
@ -457,10 +230,10 @@ void lcd_remote_update(void)
|
|||
}
|
||||
|
||||
/* Update a fraction of the display. */
|
||||
void lcd_remote_update_rect(int, int, int, int) ICODE_ATTR;
|
||||
void lcd_remote_update_rect(int x, int y, int width, int height)
|
||||
{
|
||||
if(remote_initialized) {
|
||||
if(remote_initialized)
|
||||
{
|
||||
int ymax;
|
||||
|
||||
/* The Y coordinates have to work on even 8 pixel rows */
|
||||
|
@ -478,8 +251,8 @@ void lcd_remote_update_rect(int x, int y, int width, int height)
|
|||
COM48-COM63 are not connected, so we need to skip those */
|
||||
for (; y <= ymax; y++)
|
||||
{
|
||||
lcd_remote_write_command(LCD_SET_PAGE |
|
||||
((y > 5?y + 2:y) & 0xf));
|
||||
lcd_remote_write_command(LCD_SET_PAGE
|
||||
| ((y > 5 ? y + 2 : y) & 0xf));
|
||||
lcd_remote_write_command_ex(LCD_SET_COLUMN | ((x >> 4) & 0xf),
|
||||
x & 0xf);
|
||||
|
||||
|
@ -498,12 +271,16 @@ void lcd_remote_set_invert_display(bool yesno)
|
|||
void lcd_remote_set_flip(bool yesno)
|
||||
{
|
||||
cached_flip = yesno;
|
||||
if(remote_initialized) {
|
||||
if(yesno) {
|
||||
if(remote_initialized)
|
||||
{
|
||||
if(yesno)
|
||||
{
|
||||
lcd_remote_write_command(LCD_SELECT_ADC | 0);
|
||||
lcd_remote_write_command(LCD_SELECT_SHL | 0);
|
||||
lcd_remote_write_command_ex(LCD_SET_COM0, 16);
|
||||
} else {
|
||||
}
|
||||
else
|
||||
{
|
||||
lcd_remote_write_command(LCD_SELECT_ADC | 1);
|
||||
lcd_remote_write_command(LCD_SELECT_SHL | 8);
|
||||
lcd_remote_write_command_ex(LCD_SET_COM0, 0);
|
||||
|
|
Loading…
Reference in a new issue