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https://github.com/TomNisbet/TommyPROM.git
synced 2024-12-23 00:29:35 +00:00
Fix #17 - pulse both CE and OE during the write verify cycle.
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3c4de71cd8
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@ -66,6 +66,22 @@ bool PromDevice::writeData(byte data[], uint32_t len, uint32_t address)
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return status;
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}
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void PromDevice::resetDebugStats() {
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debugBlockWrites = 0;
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debugLastAddress = 0;
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debugLastExpected = 0;
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debugLastReadback = 0;
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}
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void PromDevice::printDebugStats() {
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Serial.print(F("debugBlockWrites: "));
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Serial.println(debugBlockWrites);
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Serial.print(F("debugLastAddress: "));
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Serial.println(debugLastAddress, HEX);
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Serial.print(F("debugLastExpected: "));
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Serial.println(debugLastExpected, HEX);
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Serial.print(F("debugLastReadback: "));
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Serial.println(debugLastReadback, HEX);
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}
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// BEGIN PRIVATE METHODS
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//
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@ -105,5 +121,3 @@ void PromDevice::writeDataBus(byte data)
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PORTB = (PORTB & 0xfc) | (data >> 6);
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PORTD = (PORTD & 0x03) | (data << 2);
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}
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@ -20,6 +20,8 @@ class PromDevice
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PromDevice(uint32_t size, word blockSize, unsigned maxWriteTime, bool polling);
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bool writeData(byte data[], uint32_t len, uint32_t address);
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byte readData(uint32_t address) { return readByte(address); }
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void resetDebugStats();
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void printDebugStats();
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virtual void begin() = 0;
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virtual const char * getName() = 0;
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@ -32,6 +34,11 @@ class PromDevice
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unsigned int mMaxWriteTime; // Max time (in ms) to wait for write cycle to complete
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bool mSupportsDataPoll; // End of write detected by data polling
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uint32_t debugBlockWrites; // Number of block write operations
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uint32_t debugLastAddress; // Last address with an issue
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uint8_t debugLastExpected; // Last expected readback value
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uint8_t debugLastReadback; // Last actual readback value
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void setDataBusMode(uint8_t mode);
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byte readDataBus();
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void writeDataBus(byte data);
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@ -45,4 +52,3 @@ class PromDevice
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#endif // #define INCLUDE_PROM_DEVICE_H
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@ -138,9 +138,9 @@ bool PromDevice28C::burnByte(byte value, uint32_t address)
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bool PromDevice28C::burnBlock(byte data[], uint32_t len, uint32_t address)
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{
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bool status = false;
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if (len == 0) return true;
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++debugBlockWrites;
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disableOutput();
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disableWrite();
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enableChip();
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@ -162,6 +162,9 @@ bool PromDevice28C::burnBlock(byte data[], uint32_t len, uint32_t address)
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status = waitForWriteCycleEnd(data[len - 1]);
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disableChip();
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if (!status) {
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debugLastAddress = address + len - 1;
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}
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return status;
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}
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@ -174,29 +177,36 @@ bool PromDevice28C::waitForWriteCycleEnd(byte lastValue)
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// value written twice in a row. The D7 bit will read the inverse of last written
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// data and the D6 bit will toggle on each read while in programming mode.
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//
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// Note that the max readcount is set to the device's maxReadTime (in uSecs)
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// divided by two because there are two 1 uSec delays in the loop. In reality,
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// the loop could run for longer because this does not account for the time needed
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// to run all of the loop code. In actual practice, the loop will terminate much
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// This loop code takes about 18uSec to execute. The max readcount is set to the
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// device's maxReadTime (in uSecs) divided by ten rather than eighteen to ensure
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// that it runs at least as long as the chip's timeout value, even if some code
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// optimizations are made later. In actual practice, the loop will terminate much
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// earlier because it will detect the end of the write well before the max time.
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byte b1=0, b2=0;
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setDataBusMode(INPUT);
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delayMicroseconds(1);
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for (int readCount = mMaxWriteTime * 1000 / 2; (readCount > 0); readCount--)
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for (int readCount = 1; (readCount < (mMaxWriteTime * 100)); readCount++)
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{
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enableChip();
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enableOutput();
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delayMicroseconds(1);
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byte b1 = readDataBus();
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b1 = readDataBus();
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disableOutput();
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disableChip();
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enableChip();
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enableOutput();
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delayMicroseconds(1);
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byte b2 = readDataBus();
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b2 = readDataBus();
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disableOutput();
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disableChip();
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if ((b1 == b2) && (b1 == lastValue))
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{
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return true;
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}
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}
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debugLastExpected = lastValue;
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debugLastReadback = b2;
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return false;
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}
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else
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@ -224,4 +234,3 @@ void PromDevice28C::setByte(byte value, uint32_t address)
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}
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#endif // #if defined(PROM_IS_28C)
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@ -19,7 +19,7 @@
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#include "XModem.h"
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static const char * MY_VERSION = "2.3";
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static const char * MY_VERSION = "2.4";
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// Global status
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@ -84,6 +84,7 @@ enum {
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CMD_UNLOCK,
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CMD_WRITE,
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CMD_INFO,
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CMD_SCAN,
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CMD_TEST,
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CMD_ZAP,
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@ -142,6 +143,7 @@ byte parseCommand(char c)
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case 'u': cmd = CMD_UNLOCK; break;
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case 'w': cmd = CMD_WRITE; break;
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case 'i': cmd = CMD_INFO; break;
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case 's': cmd = CMD_SCAN; break;
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case 't': cmd = CMD_TEST; break;
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case 'z': cmd = CMD_ZAP; break;
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@ -583,7 +585,6 @@ void zapTest(uint32_t start)
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0x00, 0xff, 0x55, 0xaa, '0', '1', '2', '3'
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};
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if (!prom.writeData(testData, sizeof(testData), start))
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{
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cmdStatus.error("Write failed");
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@ -676,6 +677,7 @@ void loop()
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break;
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case CMD_FILL:
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prom.resetDebugStats();
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fillBlock(start, end, val);
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break;
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@ -685,6 +687,7 @@ void loop()
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break;
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case CMD_POKE:
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prom.resetDebugStats();
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pokeBytes(line+1);
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break;
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@ -703,6 +706,7 @@ void loop()
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break;
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case CMD_WRITE:
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prom.resetDebugStats();
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Serial.println(F("Send the image file using XMODEM CRC"));
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numBytes = xmodem.ReceiveFile(start);
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if (numBytes)
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@ -717,6 +721,10 @@ void loop()
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break;
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#ifdef ENABLE_DEBUG_COMMANDS
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case CMD_INFO:
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prom.printDebugStats();
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break;
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case CMD_SCAN:
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scanBlock(start, end);
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break;
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@ -726,6 +734,7 @@ void loop()
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break;
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case CMD_ZAP:
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prom.resetDebugStats();
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zapTest(start);
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break;
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#endif /* ENABLE_DEBUG_COMMANDS */
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@ -752,6 +761,7 @@ void loop()
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Serial.println(F(" Wsssss - Write to device from XMODEM CRC file"));
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#ifdef ENABLE_DEBUG_COMMANDS
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Serial.println();
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Serial.println(F(" I - Print debug Info"));
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Serial.println(F(" Ssssss eeeee - Scan addresses (read each 10x)"));
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Serial.println(F(" Tsssss - Test read address (read 100x)"));
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Serial.println(F(" Zsssss - Zap (burn) a 32 byte test pattern"));
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