Read depth simulation is now compatible with plate caching
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@@ -264,7 +264,6 @@ public class InteractiveInterface {
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System.out.print("\nPlease enter name of an existing sample plate file: ");
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plateFile = sc.next();
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System.out.println("\nEnable simulation of sequence read depth and sequence read errors? (y/n)");
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System.out.println("NOTE: sample plate data cannot be cached when simulating read errors");
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String ans = sc.next();
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Pattern pattern = Pattern.compile("(?:yes|y)", Pattern.CASE_INSENSITIVE);
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Matcher matcher = pattern.matcher(ans);
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@@ -272,8 +271,6 @@ public class InteractiveInterface {
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simulateReadDepth = true;
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}
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if (simulateReadDepth) {
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BiGpairSEQ.setCachePlate(false);
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BiGpairSEQ.clearPlateInMemory();
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System.out.print("\nPlease enter read depth (the integer number of reads per sequence): ");
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readDepth = sc.nextInt();
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if(readDepth < 1) {
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@@ -282,11 +279,10 @@ public class InteractiveInterface {
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System.out.print("\nPlease enter probability of a sequence read error (0.0 to 1.0): ");
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readErrorRate = sc.nextDouble();
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if(readErrorRate < 0.0 || readErrorRate > 1.0) {
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throw new InputMismatchException("The read error rate must be in the range [0.0, 1.0]");
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throw new InputMismatchException("The read error probability must be in the range [0.0, 1.0]");
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}
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System.out.println("\nPlease enter the probability of read error collision");
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System.out.println("(the likelihood that two read errors produce the same spurious sequence)");
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System.out.print("(0.0 to 1.0): ");
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System.out.println("\nPlease enter the probability of read error collision (0.0 to 1.0)");
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System.out.print("(The probability that two misreads produce the same spurious sequence): ");
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errorCollisionRate = sc.nextDouble();
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if(errorCollisionRate < 0.0 || errorCollisionRate > 1.0) {
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throw new InputMismatchException("The error collision probability must be an in the range [0.0, 1.0]");
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