mirror of
https://github.com/LNH-team/pico-loader.git
synced 2026-06-02 09:16:49 +02:00
Reduce patch sections space of DATEL platform (#108)
This commit is contained in:
@@ -15,9 +15,13 @@ public:
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{
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return new DatelReadSpiBytePatchCode(patchHeap);
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});
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auto cycleSpi = patchCodeCollection.GetOrAddSharedPatchCode([&]
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{
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return new DatelCycleSpiPatchCode(patchHeap);
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});
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auto sendSdio = patchCodeCollection.GetOrAddSharedPatchCode([&]
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{
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return new DatelSendSdioCommandPatchCode(patchHeap, spi);
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return new DatelSendSdioCommandPatchCode(patchHeap, spi, cycleSpi);
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});
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return patchCodeCollection.GetOrAddSharedPatchCode([&]
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{
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@@ -32,9 +36,13 @@ public:
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{
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return new DatelReadSpiBytePatchCode(patchHeap);
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});
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auto cycleSpi = patchCodeCollection.GetOrAddSharedPatchCode([&]
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{
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return new DatelCycleSpiPatchCode(patchHeap);
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});
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auto sendSdio = patchCodeCollection.GetOrAddSharedPatchCode([&]
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{
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return new DatelSendSdioCommandPatchCode(patchHeap, spi);
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return new DatelSendSdioCommandPatchCode(patchHeap, spi, cycleSpi);
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});
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return patchCodeCollection.GetOrAddSharedPatchCode([&]
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{
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@@ -3,6 +3,7 @@
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#include "patches/PatchCode.h"
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DEFINE_SECTION_SYMBOLS(datel_read_spi);
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DEFINE_SECTION_SYMBOLS(datel_cycle_spi);
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DEFINE_SECTION_SYMBOLS(datel_spi_send);
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extern "C" u8 datel_readSpiByte();
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@@ -11,11 +12,14 @@ extern "C" u16 datel_readSpiShort();
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extern "C" u8 datel_readSpiByteTimeout();
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extern "C" bool datel_waitSpiByteTimeout();
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extern "C" void datel_cycleSpi();
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extern "C" u8 datel_spiSendSDIOCommandR0(u32 arg, u8 cmd);
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extern "C" u8 datel_spiSendSDIOCommand(u32 arg, u8 cmd, int extraBytes);
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extern u32 datel_spiSendSDIOCommandR0_ReadWriteSpiByte;
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extern u32 datel_spiSendSDIOCommandR0_CycleSpi;
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extern u32 datel_spiSendSDIOCommandR0_ReadSpiByteTimeout;
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extern u32 datel_spiSendSDIOCommandR0_ReadWriteSpiByte;
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class DatelReadSpiBytePatchCode : public PatchCode
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{
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@@ -49,14 +53,29 @@ public:
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}
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};
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class DatelCycleSpiPatchCode : public PatchCode
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{
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public:
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explicit DatelCycleSpiPatchCode(PatchHeap& patchHeap)
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: PatchCode(SECTION_START(datel_cycle_spi), SECTION_SIZE(datel_cycle_spi), patchHeap) { }
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const void* GetCycleSpiFunction() const
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{
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return GetAddressAtTarget((void*)datel_cycleSpi);
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}
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};
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class DatelSendSdioCommandPatchCode : public PatchCode
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{
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public:
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DatelSendSdioCommandPatchCode(PatchHeap& patchHeap, const DatelReadSpiBytePatchCode* datelReadSpiBytePatchCode)
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DatelSendSdioCommandPatchCode(PatchHeap& patchHeap,
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const DatelReadSpiBytePatchCode* datelReadSpiBytePatchCode,
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const DatelCycleSpiPatchCode* datelCycleSpiPatchCode)
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: PatchCode(SECTION_START(datel_spi_send), SECTION_SIZE(datel_spi_send), patchHeap)
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{
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datel_spiSendSDIOCommandR0_ReadWriteSpiByte = (u32)datelReadSpiBytePatchCode->GetReadWriteSpiByteFunction();
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datel_spiSendSDIOCommandR0_CycleSpi = (u32)datelCycleSpiPatchCode->GetCycleSpiFunction();
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datel_spiSendSDIOCommandR0_ReadSpiByteTimeout = (u32)datelReadSpiBytePatchCode->GetReadSpiByteTimeoutFunction();
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datel_spiSendSDIOCommandR0_ReadWriteSpiByte = (u32)datelReadSpiBytePatchCode->GetReadWriteSpiByteFunction();
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}
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const void* GetSpiSendSDIOCommandR0Function() const
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@@ -10,7 +10,7 @@ BEGIN_ASM_FUNC datel_readSpiByte
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movs r0, 0xFF
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@u8 datel_readWriteSpiByte(u8);
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BEGIN_ASM_FUNC datel_readWriteSpiByte
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push {r1-r3, lr}
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push {r1-r3}
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ldr r3, =REG_MCCNT0
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@ Wait if there's a transfer in progress (can happen if the random byte sent by the cycle spi function is still on its way)
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1:
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@@ -27,7 +27,8 @@ BEGIN_ASM_FUNC datel_readWriteSpiByte
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@uppper half always 0
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ldrh r0, [r3, #2]
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cmp r0, #0
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pop {r1-r3, pc}
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pop {r1-r3}
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mov pc,lr
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@u16 datel_readWriteSpiShort();
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BEGIN_ASM_FUNC datel_readSpiShort
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@@ -53,12 +54,13 @@ BEGIN_ASM_FUNC datel_readSpiByteTimeout
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subs r4, r4, #1
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bne 1b
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1:
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pop {r1-r4, pc}
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pop {r1-r4,pc}
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@bool datel_waitSpiByteTimeout();
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BEGIN_ASM_FUNC datel_waitSpiByteTimeout
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push {r1-r4, lr}
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@ use a timeout of 0x1000 instead of 0xFFFF, easier to setup
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push {r1-r4}
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push {lr}
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@ use a timeout of 0x10000 instead of 0xFFFF, easier to setup
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@ ldr r2, =DATEL_SD_WRITE_TIMEOUT_LEN
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movs r2, #1
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lsls r2, #16
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@@ -69,15 +71,19 @@ BEGIN_ASM_FUNC datel_waitSpiByteTimeout
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bne 1b
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movs r0, #0
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pop {r1-r4, pc}
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b end
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1:
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movs r0, #1
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pop {r1-r4, pc}
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end:
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pop {r1}
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mov lr,r1
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pop {r1-r4}
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mov pc,lr
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.section "datel_spi_send", "ax"
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.section "datel_cycle_spi", "ax"
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@void datel_cycleSpi();
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datel_cycleSpi:
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BEGIN_ASM_FUNC datel_cycleSpi
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push {r0-r5, lr}
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adr r0, datel_cycleSpi_data
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ldm r0!, {r1,r3,r4}
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@@ -106,7 +112,14 @@ datel_sendNtrCommandF2:
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beq datel_sendNtrCommandF2
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pop {r0-r5, pc}
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.balign 4
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.pool
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datel_cycleSpi_data:
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.word REG_MCCNT0
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.word 0x00FFA040 @ MCCNT0_MODE_SPI | MCCNT0_SPI_HOLD_CS | MCCNT0_ENABLE in lower 16 bit, 0xFF in upper 16
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.word 0xA07F6000 @ MCCNT1_RESET_OFF | MCCNT1_CMD_SCRAMBLE | MCCNT1_READ_DATA_DESCRAMBLE | MCCNT1_CLOCK_SCRAMBLER | MCCNT1_LATENCY2(0x3F)
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.section "datel_spi_send", "ax"
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@ NOTE!!!: This function needs to set r0 last with mov or something similar so that it updates the zero flags
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@u8 datel_spiSendSDIOCommandR0(u32 arg, u8 cmd);
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BEGIN_ASM_FUNC datel_spiSendSDIOCommandR0
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@@ -115,12 +128,14 @@ BEGIN_ASM_FUNC datel_spiSendSDIOCommandR0
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BEGIN_ASM_FUNC datel_spiSendSDIOCommand
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push {r0-r7, lr}
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bl datel_cycleSpi
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ldr r3, datel_spiSendSDIOCommandR0_CycleSpi
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@ branch to datel_cycleSpi
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bl datel_spiSendSDIOCommandR0_InterworkR3
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adr r4, datel_spiSendSDIOCommandR0_ReadSpiByteTimeout
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adr r3, datel_spiSendSDIOCommandR0_ReadSpiByteTimeout
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@ r3 contains ReadSpiByteTimeout
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@ r7 contains ReadWriteSpiByte
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ldm r4!, {r3,r7}
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ldm r3, {r3,r7}
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@ we use the cmd and arg directly from the stack
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@ r0 is on top, r1 is right below, we read the command id as the last byte pushed of r1,
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@@ -157,7 +172,9 @@ BEGIN_ASM_FUNC datel_spiSendSDIOCommand
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bcc datel_spiSendSDIOCommandR0_Interwork
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movs r0, r6
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pop {r1}
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pop {r1-r7, pc}
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pop {r1-r7}
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pop {r2}
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mov pc,r2
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datel_spiSendSDIOCommandR0_Interwork:
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bx r7
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@@ -165,10 +182,9 @@ datel_spiSendSDIOCommandR0_InterworkR3:
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bx r3
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.balign 4
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.pool
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datel_cycleSpi_data:
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.word REG_MCCNT0
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.word 0x00FFA040 @ MCCNT0_MODE_SPI | MCCNT0_SPI_HOLD_CS | MCCNT0_ENABLE in lower 16 bit, 0xFF in upper 16
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.word 0xA07F6000 @ MCCNT1_RESET_OFF | MCCNT1_CMD_SCRAMBLE | MCCNT1_READ_DATA_DESCRAMBLE | MCCNT1_CLOCK_SCRAMBLER | MCCNT1_LATENCY2(0x3F)
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.global datel_spiSendSDIOCommandR0_CycleSpi
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datel_spiSendSDIOCommandR0_CycleSpi:
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.word 0
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.global datel_spiSendSDIOCommandR0_ReadSpiByteTimeout
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datel_spiSendSDIOCommandR0_ReadSpiByteTimeout:
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.word 0
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@@ -29,7 +29,10 @@ datel_writeSectorSdhcLabel:
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movs r1, DATEL_SDIO_CMD25_WRITE_MULTIPLE_BLOCK
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movs r2, #1
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ldr r7, datel_SDWriteMultipleSector_SpiSendSDIOCommand
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bl datel_SDWriteMultipleSector_Interwork
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@ call datel_readSpiByte
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mov lr,pc
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mov pc,r7
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bne CMD25_not_ok
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@ r6 contains datel_SDWriteMultipleSector_WaitSpiByteTimeout
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@@ -49,11 +52,15 @@ write_next_sector:
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@ Send start token
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movs r0, DATEL_SPI_MULTI_BLOCK_WRITE_TOKEN
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bl datel_SDWriteMultipleSector_InterworkR1 @ call datel_readWriteSpiByte
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@ call datel_readWriteSpiByte
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mov lr,pc
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mov pc,r1
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write_next_byte:
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ldrb r0, [r4, r5]
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bl datel_SDWriteMultipleSector_InterworkR1 @ call datel_readWriteSpiByte
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@ call datel_readWriteSpiByte
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mov lr,pc
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mov pc,r1
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adds r5, #1
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@ Shifting left by 0x17 will set the Zero flag if the number that was shifted is a multiple
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@@ -61,11 +68,17 @@ write_next_byte:
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lsls r0, r5, #0x17
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bne write_next_byte
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@ write dummy crc
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bl datel_SDWriteMultipleSector_Interwork @ call datel_readSpiByte
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bl datel_SDWriteMultipleSector_Interwork @ call datel_readSpiByte
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@ write dummy crc (ignore result)
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@ call datel_readSpiByte
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mov lr,pc
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mov pc,r7
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@ call datel_readSpiByte
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mov lr,pc
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mov pc,r7
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bl datel_SDWriteMultipleSector_Interwork @ call datel_readSpiByte
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@ call datel_readSpiByte
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mov lr,pc
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mov pc,r7
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@ we check if the lower nibble is equal to DATEL_SD_WRITE_OK
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subs r0, DATEL_SD_WRITE_OK
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@@ -73,7 +86,9 @@ write_next_byte:
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bne write_command_failed
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@ Wait for card to write data
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bl datel_SDWriteMultipleSector_InterworkR6 @ call datel_waitSpiByteTimeout
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@ call datel_waitSpiByteTimeout
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mov lr,pc
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mov pc,r6
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beq sector_write_timeout_expired
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@ r3 holds the total number of bytes to write
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@@ -82,13 +97,21 @@ write_next_byte:
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@ send stop token
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movs r0, DATEL_SPI_END_MULTI_BLOCK_WRITE
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bl datel_SDWriteMultipleSector_InterworkR1 @ call datel_readWriteSpiByte
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@ call datel_readWriteSpiByte
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mov lr,pc
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mov pc,r1
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@ send 1 byte clock
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bl datel_SDWriteMultipleSector_Interwork @ call datel_readSpiByte
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bl datel_SDWriteMultipleSector_InterworkR6 @ call datel_waitSpiByteTimeout
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@ call datel_readSpiByte
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mov lr,pc
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mov pc,r7
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@ call datel_waitSpiByteTimeout
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mov lr,pc
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mov pc,r6
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@ pop {r1-r7, pc}
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CMD25_not_ok:
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@@ -97,12 +120,6 @@ sector_write_timeout_expired:
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@ movs r0, #0
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pop {r1-r7, pc}
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datel_SDWriteMultipleSector_Interwork:
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bx r7
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datel_SDWriteMultipleSector_InterworkR6:
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bx r6
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datel_SDWriteMultipleSector_InterworkR1:
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bx r1
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.balign 4
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.pool
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